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Thomas Grafa7834742005-11-05 21:14:03 +01001#ifndef __NET_SCHED_RED_H
2#define __NET_SCHED_RED_H
3
Thomas Grafa7834742005-11-05 21:14:03 +01004#include <linux/types.h>
Paul Gortmaker187f1882011-11-23 20:12:59 -05005#include <linux/bug.h>
Thomas Grafa7834742005-11-05 21:14:03 +01006#include <net/pkt_sched.h>
7#include <net/inet_ecn.h>
8#include <net/dsfield.h>
Eric Dumazet8af2a212011-12-08 06:06:03 +00009#include <linux/reciprocal_div.h>
Thomas Grafa7834742005-11-05 21:14:03 +010010
11/* Random Early Detection (RED) algorithm.
12 =======================================
13
14 Source: Sally Floyd and Van Jacobson, "Random Early Detection Gateways
15 for Congestion Avoidance", 1993, IEEE/ACM Transactions on Networking.
16
17 This file codes a "divisionless" version of RED algorithm
18 as written down in Fig.17 of the paper.
19
20 Short description.
21 ------------------
22
23 When a new packet arrives we calculate the average queue length:
24
25 avg = (1-W)*avg + W*current_queue_len,
26
27 W is the filter time constant (chosen as 2^(-Wlog)), it controls
28 the inertia of the algorithm. To allow larger bursts, W should be
29 decreased.
30
31 if (avg > th_max) -> packet marked (dropped).
32 if (avg < th_min) -> packet passes.
33 if (th_min < avg < th_max) we calculate probability:
34
35 Pb = max_P * (avg - th_min)/(th_max-th_min)
36
37 and mark (drop) packet with this probability.
38 Pb changes from 0 (at avg==th_min) to max_P (avg==th_max).
39 max_P should be small (not 1), usually 0.01..0.02 is good value.
40
41 max_P is chosen as a number, so that max_P/(th_max-th_min)
42 is a negative power of two in order arithmetics to contain
43 only shifts.
44
45
46 Parameters, settable by user:
47 -----------------------------
48
49 qth_min - bytes (should be < qth_max/2)
50 qth_max - bytes (should be at least 2*qth_min and less limit)
51 Wlog - bits (<32) log(1/W).
52 Plog - bits (<32)
53
54 Plog is related to max_P by formula:
55
56 max_P = (qth_max-qth_min)/2^Plog;
57
58 F.e. if qth_max=128K and qth_min=32K, then Plog=22
59 corresponds to max_P=0.02
60
61 Scell_log
62 Stab
63
64 Lookup table for log((1-W)^(t/t_ave).
65
66
67 NOTES:
68
69 Upper bound on W.
70 -----------------
71
72 If you want to allow bursts of L packets of size S,
73 you should choose W:
74
75 L + 1 - th_min/S < (1-(1-W)^L)/W
76
77 th_min/S = 32 th_min/S = 4
78
79 log(W) L
80 -1 33
81 -2 35
82 -3 39
83 -4 46
84 -5 57
85 -6 75
86 -7 101
87 -8 135
88 -9 190
89 etc.
90 */
91
Eric Dumazet8af2a212011-12-08 06:06:03 +000092/*
93 * Adaptative RED : An Algorithm for Increasing the Robustness of RED's AQM
94 * (Sally FLoyd, Ramakrishna Gummadi, and Scott Shenker) August 2001
95 *
96 * Every 500 ms:
97 * if (avg > target and max_p <= 0.5)
98 * increase max_p : max_p += alpha;
99 * else if (avg < target and max_p >= 0.01)
100 * decrease max_p : max_p *= beta;
101 *
102 * target :[qth_min + 0.4*(qth_min - qth_max),
103 * qth_min + 0.6*(qth_min - qth_max)].
104 * alpha : min(0.01, max_p / 4)
105 * beta : 0.9
106 * max_P is a Q0.32 fixed point number (with 32 bits mantissa)
107 * max_P between 0.01 and 0.5 (1% - 50%) [ Its no longer a negative power of two ]
108 */
109#define RED_ONE_PERCENT ((u32)DIV_ROUND_CLOSEST(1ULL<<32, 100))
110
111#define MAX_P_MIN (1 * RED_ONE_PERCENT)
112#define MAX_P_MAX (50 * RED_ONE_PERCENT)
113#define MAX_P_ALPHA(val) min(MAX_P_MIN, val / 4)
114
Thomas Grafa7834742005-11-05 21:14:03 +0100115#define RED_STAB_SIZE 256
116#define RED_STAB_MASK (RED_STAB_SIZE - 1)
117
Eric Dumazetfd2c3ef2009-11-03 03:26:03 +0000118struct red_stats {
Thomas Grafa7834742005-11-05 21:14:03 +0100119 u32 prob_drop; /* Early probability drops */
120 u32 prob_mark; /* Early probability marks */
121 u32 forced_drop; /* Forced drops, qavg > max_thresh */
122 u32 forced_mark; /* Forced marks, qavg > max_thresh */
123 u32 pdrop; /* Drops due to queue limits */
124 u32 other; /* Drops due to drop() calls */
Thomas Grafa7834742005-11-05 21:14:03 +0100125};
126
Eric Dumazetfd2c3ef2009-11-03 03:26:03 +0000127struct red_parms {
Thomas Grafa7834742005-11-05 21:14:03 +0100128 /* Parameters */
Eric Dumazet8af2a212011-12-08 06:06:03 +0000129 u32 qth_min; /* Min avg length threshold: Wlog scaled */
130 u32 qth_max; /* Max avg length threshold: Wlog scaled */
Thomas Grafa7834742005-11-05 21:14:03 +0100131 u32 Scell_max;
Eric Dumazet8af2a212011-12-08 06:06:03 +0000132 u32 max_P; /* probability, [0 .. 1.0] 32 scaled */
Hannes Frederic Sowa809fa972014-01-22 02:29:41 +0100133 /* reciprocal_value(max_P / qth_delta) */
134 struct reciprocal_value max_P_reciprocal;
Eric Dumazet8af2a212011-12-08 06:06:03 +0000135 u32 qth_delta; /* max_th - min_th */
136 u32 target_min; /* min_th + 0.4*(max_th - min_th) */
137 u32 target_max; /* min_th + 0.6*(max_th - min_th) */
Thomas Grafa7834742005-11-05 21:14:03 +0100138 u8 Scell_log;
139 u8 Wlog; /* log(W) */
140 u8 Plog; /* random number bits */
141 u8 Stab[RED_STAB_SIZE];
Eric Dumazeteeca6682012-01-05 02:25:16 +0000142};
Thomas Grafa7834742005-11-05 21:14:03 +0100143
Eric Dumazeteeca6682012-01-05 02:25:16 +0000144struct red_vars {
Thomas Grafa7834742005-11-05 21:14:03 +0100145 /* Variables */
146 int qcount; /* Number of packets since last random
147 number generation */
148 u32 qR; /* Cached random number */
149
Eric Dumazet8af2a212011-12-08 06:06:03 +0000150 unsigned long qavg; /* Average queue length: Wlog scaled */
Eric Dumazetea6a5d32011-11-30 12:10:53 +0000151 ktime_t qidlestart; /* Start of current idle period */
Thomas Grafa7834742005-11-05 21:14:03 +0100152};
153
Eric Dumazet8af2a212011-12-08 06:06:03 +0000154static inline u32 red_maxp(u8 Plog)
Thomas Grafa7834742005-11-05 21:14:03 +0100155{
Eric Dumazet8af2a212011-12-08 06:06:03 +0000156 return Plog < 32 ? (~0U >> Plog) : ~0U;
Thomas Grafa7834742005-11-05 21:14:03 +0100157}
158
Eric Dumazeteeca6682012-01-05 02:25:16 +0000159static inline void red_set_vars(struct red_vars *v)
160{
161 /* Reset average queue length, the value is strictly bound
162 * to the parameters below, reseting hurts a bit but leaving
163 * it might result in an unreasonable qavg for a while. --TGR
164 */
165 v->qavg = 0;
166
167 v->qcount = -1;
168}
Eric Dumazet8af2a212011-12-08 06:06:03 +0000169
Nogah Frankela0514c02017-12-04 13:31:11 +0200170static inline bool red_check_params(u32 qth_min, u32 qth_max, u8 Wlog)
171{
172 if (fls(qth_min) + Wlog > 32)
173 return false;
174 if (fls(qth_max) + Wlog > 32)
175 return false;
176 if (qth_max < qth_min)
177 return false;
178 return true;
179}
180
Thomas Grafa7834742005-11-05 21:14:03 +0100181static inline void red_set_parms(struct red_parms *p,
182 u32 qth_min, u32 qth_max, u8 Wlog, u8 Plog,
Eric Dumazeta73ed262011-12-09 02:46:45 +0000183 u8 Scell_log, u8 *stab, u32 max_P)
Thomas Grafa7834742005-11-05 21:14:03 +0100184{
Eric Dumazet8af2a212011-12-08 06:06:03 +0000185 int delta = qth_max - qth_min;
Eric Dumazeta73ed262011-12-09 02:46:45 +0000186 u32 max_p_delta;
Eric Dumazet8af2a212011-12-08 06:06:03 +0000187
Thomas Grafa7834742005-11-05 21:14:03 +0100188 p->qth_min = qth_min << Wlog;
189 p->qth_max = qth_max << Wlog;
190 p->Wlog = Wlog;
191 p->Plog = Plog;
Nogah Frankel1c039032017-12-04 13:31:10 +0200192 if (delta <= 0)
Eric Dumazet8af2a212011-12-08 06:06:03 +0000193 delta = 1;
194 p->qth_delta = delta;
Eric Dumazeta73ed262011-12-09 02:46:45 +0000195 if (!max_P) {
196 max_P = red_maxp(Plog);
197 max_P *= delta; /* max_P = (qth_max - qth_min)/2^Plog */
198 }
199 p->max_P = max_P;
200 max_p_delta = max_P / delta;
201 max_p_delta = max(max_p_delta, 1U);
202 p->max_P_reciprocal = reciprocal_value(max_p_delta);
Eric Dumazet8af2a212011-12-08 06:06:03 +0000203
204 /* RED Adaptative target :
205 * [min_th + 0.4*(min_th - max_th),
206 * min_th + 0.6*(min_th - max_th)].
207 */
208 delta /= 5;
209 p->target_min = qth_min + 2*delta;
210 p->target_max = qth_min + 3*delta;
211
Thomas Grafa7834742005-11-05 21:14:03 +0100212 p->Scell_log = Scell_log;
213 p->Scell_max = (255 << Scell_log);
214
Eric Dumazetddecf0f2012-01-06 06:31:44 +0000215 if (stab)
216 memcpy(p->Stab, stab, sizeof(p->Stab));
Thomas Grafa7834742005-11-05 21:14:03 +0100217}
218
Eric Dumazeteeca6682012-01-05 02:25:16 +0000219static inline int red_is_idling(const struct red_vars *v)
Thomas Grafa7834742005-11-05 21:14:03 +0100220{
Eric Dumazeteeca6682012-01-05 02:25:16 +0000221 return v->qidlestart.tv64 != 0;
Thomas Grafa7834742005-11-05 21:14:03 +0100222}
223
Eric Dumazeteeca6682012-01-05 02:25:16 +0000224static inline void red_start_of_idle_period(struct red_vars *v)
Thomas Grafa7834742005-11-05 21:14:03 +0100225{
Eric Dumazeteeca6682012-01-05 02:25:16 +0000226 v->qidlestart = ktime_get();
Thomas Grafa7834742005-11-05 21:14:03 +0100227}
228
Eric Dumazeteeca6682012-01-05 02:25:16 +0000229static inline void red_end_of_idle_period(struct red_vars *v)
Thomas Grafa7834742005-11-05 21:14:03 +0100230{
Eric Dumazeteeca6682012-01-05 02:25:16 +0000231 v->qidlestart.tv64 = 0;
Thomas Grafa7834742005-11-05 21:14:03 +0100232}
233
Eric Dumazeteeca6682012-01-05 02:25:16 +0000234static inline void red_restart(struct red_vars *v)
Thomas Grafa7834742005-11-05 21:14:03 +0100235{
Eric Dumazeteeca6682012-01-05 02:25:16 +0000236 red_end_of_idle_period(v);
237 v->qavg = 0;
238 v->qcount = -1;
Thomas Grafa7834742005-11-05 21:14:03 +0100239}
240
Eric Dumazeteeca6682012-01-05 02:25:16 +0000241static inline unsigned long red_calc_qavg_from_idle_time(const struct red_parms *p,
242 const struct red_vars *v)
Thomas Grafa7834742005-11-05 21:14:03 +0100243{
Eric Dumazeteeca6682012-01-05 02:25:16 +0000244 s64 delta = ktime_us_delta(ktime_get(), v->qidlestart);
Eric Dumazetea6a5d32011-11-30 12:10:53 +0000245 long us_idle = min_t(s64, delta, p->Scell_max);
Thomas Grafa7834742005-11-05 21:14:03 +0100246 int shift;
247
Thomas Grafa7834742005-11-05 21:14:03 +0100248 /*
249 * The problem: ideally, average length queue recalcultion should
250 * be done over constant clock intervals. This is too expensive, so
251 * that the calculation is driven by outgoing packets.
252 * When the queue is idle we have to model this clock by hand.
253 *
254 * SF+VJ proposed to "generate":
255 *
256 * m = idletime / (average_pkt_size / bandwidth)
257 *
258 * dummy packets as a burst after idle time, i.e.
259 *
David Ward4362aaf2012-04-16 03:17:22 +0000260 * v->qavg *= (1-W)^m
Thomas Grafa7834742005-11-05 21:14:03 +0100261 *
262 * This is an apparently overcomplicated solution (f.e. we have to
263 * precompute a table to make this calculation in reasonable time)
264 * I believe that a simpler model may be used here,
265 * but it is field for experiments.
266 */
267
268 shift = p->Stab[(us_idle >> p->Scell_log) & RED_STAB_MASK];
269
270 if (shift)
Eric Dumazeteeca6682012-01-05 02:25:16 +0000271 return v->qavg >> shift;
Thomas Grafa7834742005-11-05 21:14:03 +0100272 else {
273 /* Approximate initial part of exponent with linear function:
274 *
275 * (1-W)^m ~= 1-mW + ...
276 *
277 * Seems, it is the best solution to
278 * problem of too coarse exponent tabulation.
279 */
Eric Dumazeteeca6682012-01-05 02:25:16 +0000280 us_idle = (v->qavg * (u64)us_idle) >> p->Scell_log;
Thomas Grafa7834742005-11-05 21:14:03 +0100281
Eric Dumazeteeca6682012-01-05 02:25:16 +0000282 if (us_idle < (v->qavg >> 1))
283 return v->qavg - us_idle;
Thomas Grafa7834742005-11-05 21:14:03 +0100284 else
Eric Dumazeteeca6682012-01-05 02:25:16 +0000285 return v->qavg >> 1;
Thomas Grafa7834742005-11-05 21:14:03 +0100286 }
287}
288
Eric Dumazet8af2a212011-12-08 06:06:03 +0000289static inline unsigned long red_calc_qavg_no_idle_time(const struct red_parms *p,
Eric Dumazeteeca6682012-01-05 02:25:16 +0000290 const struct red_vars *v,
Thomas Grafa7834742005-11-05 21:14:03 +0100291 unsigned int backlog)
292{
293 /*
David Ward4362aaf2012-04-16 03:17:22 +0000294 * NOTE: v->qavg is fixed point number with point at Wlog.
Thomas Grafa7834742005-11-05 21:14:03 +0100295 * The formula below is equvalent to floating point
296 * version:
297 *
298 * qavg = qavg*(1-W) + backlog*W;
299 *
300 * --ANK (980924)
301 */
Eric Dumazeteeca6682012-01-05 02:25:16 +0000302 return v->qavg + (backlog - (v->qavg >> p->Wlog));
Thomas Grafa7834742005-11-05 21:14:03 +0100303}
304
Eric Dumazet8af2a212011-12-08 06:06:03 +0000305static inline unsigned long red_calc_qavg(const struct red_parms *p,
Eric Dumazeteeca6682012-01-05 02:25:16 +0000306 const struct red_vars *v,
Thomas Grafa7834742005-11-05 21:14:03 +0100307 unsigned int backlog)
308{
Eric Dumazeteeca6682012-01-05 02:25:16 +0000309 if (!red_is_idling(v))
310 return red_calc_qavg_no_idle_time(p, v, backlog);
Thomas Grafa7834742005-11-05 21:14:03 +0100311 else
Eric Dumazeteeca6682012-01-05 02:25:16 +0000312 return red_calc_qavg_from_idle_time(p, v);
Thomas Grafa7834742005-11-05 21:14:03 +0100313}
314
Eric Dumazet8af2a212011-12-08 06:06:03 +0000315
316static inline u32 red_random(const struct red_parms *p)
Thomas Grafa7834742005-11-05 21:14:03 +0100317{
Aruna-Hewapathirane63862b52014-01-11 07:15:59 -0500318 return reciprocal_divide(prandom_u32(), p->max_P_reciprocal);
Thomas Grafa7834742005-11-05 21:14:03 +0100319}
320
Eric Dumazeteeca6682012-01-05 02:25:16 +0000321static inline int red_mark_probability(const struct red_parms *p,
322 const struct red_vars *v,
323 unsigned long qavg)
Thomas Grafa7834742005-11-05 21:14:03 +0100324{
325 /* The formula used below causes questions.
326
Eric Dumazet8af2a212011-12-08 06:06:03 +0000327 OK. qR is random number in the interval
328 (0..1/max_P)*(qth_max-qth_min)
Thomas Grafa7834742005-11-05 21:14:03 +0100329 i.e. 0..(2^Plog). If we used floating point
330 arithmetics, it would be: (2^Plog)*rnd_num,
331 where rnd_num is less 1.
332
333 Taking into account, that qavg have fixed
Eric Dumazet8af2a212011-12-08 06:06:03 +0000334 point at Wlog, two lines
Thomas Grafa7834742005-11-05 21:14:03 +0100335 below have the following floating point equivalent:
336
337 max_P*(qavg - qth_min)/(qth_max-qth_min) < rnd/qcount
338
339 Any questions? --ANK (980924)
340 */
Eric Dumazeteeca6682012-01-05 02:25:16 +0000341 return !(((qavg - p->qth_min) >> p->Wlog) * v->qcount < v->qR);
Thomas Grafa7834742005-11-05 21:14:03 +0100342}
343
344enum {
345 RED_BELOW_MIN_THRESH,
346 RED_BETWEEN_TRESH,
347 RED_ABOVE_MAX_TRESH,
348};
349
Eric Dumazeteeca6682012-01-05 02:25:16 +0000350static inline int red_cmp_thresh(const struct red_parms *p, unsigned long qavg)
Thomas Grafa7834742005-11-05 21:14:03 +0100351{
352 if (qavg < p->qth_min)
353 return RED_BELOW_MIN_THRESH;
354 else if (qavg >= p->qth_max)
355 return RED_ABOVE_MAX_TRESH;
356 else
357 return RED_BETWEEN_TRESH;
358}
359
360enum {
361 RED_DONT_MARK,
362 RED_PROB_MARK,
363 RED_HARD_MARK,
364};
365
Eric Dumazeteeca6682012-01-05 02:25:16 +0000366static inline int red_action(const struct red_parms *p,
367 struct red_vars *v,
368 unsigned long qavg)
Thomas Grafa7834742005-11-05 21:14:03 +0100369{
370 switch (red_cmp_thresh(p, qavg)) {
371 case RED_BELOW_MIN_THRESH:
Eric Dumazeteeca6682012-01-05 02:25:16 +0000372 v->qcount = -1;
Thomas Grafa7834742005-11-05 21:14:03 +0100373 return RED_DONT_MARK;
374
375 case RED_BETWEEN_TRESH:
Eric Dumazeteeca6682012-01-05 02:25:16 +0000376 if (++v->qcount) {
377 if (red_mark_probability(p, v, qavg)) {
378 v->qcount = 0;
379 v->qR = red_random(p);
Thomas Grafa7834742005-11-05 21:14:03 +0100380 return RED_PROB_MARK;
381 }
382 } else
Eric Dumazeteeca6682012-01-05 02:25:16 +0000383 v->qR = red_random(p);
Thomas Grafa7834742005-11-05 21:14:03 +0100384
385 return RED_DONT_MARK;
386
387 case RED_ABOVE_MAX_TRESH:
Eric Dumazeteeca6682012-01-05 02:25:16 +0000388 v->qcount = -1;
Thomas Grafa7834742005-11-05 21:14:03 +0100389 return RED_HARD_MARK;
390 }
391
392 BUG();
393 return RED_DONT_MARK;
394}
395
Eric Dumazeteeca6682012-01-05 02:25:16 +0000396static inline void red_adaptative_algo(struct red_parms *p, struct red_vars *v)
Eric Dumazet8af2a212011-12-08 06:06:03 +0000397{
398 unsigned long qavg;
399 u32 max_p_delta;
400
Eric Dumazeteeca6682012-01-05 02:25:16 +0000401 qavg = v->qavg;
402 if (red_is_idling(v))
403 qavg = red_calc_qavg_from_idle_time(p, v);
Eric Dumazet8af2a212011-12-08 06:06:03 +0000404
David Ward4362aaf2012-04-16 03:17:22 +0000405 /* v->qavg is fixed point number with point at Wlog */
Eric Dumazet8af2a212011-12-08 06:06:03 +0000406 qavg >>= p->Wlog;
407
408 if (qavg > p->target_max && p->max_P <= MAX_P_MAX)
409 p->max_P += MAX_P_ALPHA(p->max_P); /* maxp = maxp + alpha */
410 else if (qavg < p->target_min && p->max_P >= MAX_P_MIN)
411 p->max_P = (p->max_P/10)*9; /* maxp = maxp * Beta */
412
413 max_p_delta = DIV_ROUND_CLOSEST(p->max_P, p->qth_delta);
Eric Dumazeta73ed262011-12-09 02:46:45 +0000414 max_p_delta = max(max_p_delta, 1U);
Eric Dumazet8af2a212011-12-08 06:06:03 +0000415 p->max_P_reciprocal = reciprocal_value(max_p_delta);
416}
Thomas Grafa7834742005-11-05 21:14:03 +0100417#endif