net_dim.h 9.9 KB
Newer Older
1 2
/*
 * Copyright (c) 2016, Mellanox Technologies. All rights reserved.
3
 * Copyright (c) 2017-2018, Broadcom Limited. All rights reserved.
4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33
 *
 * This software is available to you under a choice of one of two
 * licenses.  You may choose to be licensed under the terms of the GNU
 * General Public License (GPL) Version 2, available from the file
 * COPYING in the main directory of this source tree, or the
 * OpenIB.org BSD license below:
 *
 *     Redistribution and use in source and binary forms, with or
 *     without modification, are permitted provided that the following
 *     conditions are met:
 *
 *      - Redistributions of source code must retain the above
 *        copyright notice, this list of conditions and the following
 *        disclaimer.
 *
 *      - Redistributions in binary form must reproduce the above
 *        copyright notice, this list of conditions and the following
 *        disclaimer in the documentation and/or other materials
 *        provided with the distribution.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
 * SOFTWARE.
 */

34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101
#ifndef NET_DIM_H
#define NET_DIM_H

#include <linux/module.h>

struct net_dim_cq_moder {
	u16 usec;
	u16 pkts;
	u8 cq_period_mode;
};

struct net_dim_sample {
	ktime_t time;
	u32     pkt_ctr;
	u32     byte_ctr;
	u16     event_ctr;
};

struct net_dim_stats {
	int ppms; /* packets per msec */
	int bpms; /* bytes per msec */
	int epms; /* events per msec */
};

struct net_dim { /* Adaptive Moderation */
	u8                                      state;
	struct net_dim_stats                    prev_stats;
	struct net_dim_sample                   start_sample;
	struct work_struct                      work;
	u8                                      profile_ix;
	u8                                      mode;
	u8                                      tune_state;
	u8                                      steps_right;
	u8                                      steps_left;
	u8                                      tired;
};

enum {
	NET_DIM_CQ_PERIOD_MODE_START_FROM_EQE = 0x0,
	NET_DIM_CQ_PERIOD_MODE_START_FROM_CQE = 0x1,
	NET_DIM_CQ_PERIOD_NUM_MODES
};

/* Adaptive moderation logic */
enum {
	NET_DIM_START_MEASURE,
	NET_DIM_MEASURE_IN_PROGRESS,
	NET_DIM_APPLY_NEW_PROFILE,
};

enum {
	NET_DIM_PARKING_ON_TOP,
	NET_DIM_PARKING_TIRED,
	NET_DIM_GOING_RIGHT,
	NET_DIM_GOING_LEFT,
};

enum {
	NET_DIM_STATS_WORSE,
	NET_DIM_STATS_SAME,
	NET_DIM_STATS_BETTER,
};

enum {
	NET_DIM_STEPPED,
	NET_DIM_TOO_TIRED,
	NET_DIM_ON_EDGE,
};
102

103
#define NET_DIM_PARAMS_NUM_PROFILES 5
104
/* Adaptive moderation profiles */
105 106 107 108 109 110 111 112 113 114 115
#define NET_DIM_DEFAULT_RX_CQ_MODERATION_PKTS_FROM_EQE 256
#define NET_DIM_DEF_PROFILE_CQE 1
#define NET_DIM_DEF_PROFILE_EQE 1

/* All profiles sizes must be NET_PARAMS_DIM_NUM_PROFILES */
#define NET_DIM_EQE_PROFILES { \
	{1,   NET_DIM_DEFAULT_RX_CQ_MODERATION_PKTS_FROM_EQE}, \
	{8,   NET_DIM_DEFAULT_RX_CQ_MODERATION_PKTS_FROM_EQE}, \
	{64,  NET_DIM_DEFAULT_RX_CQ_MODERATION_PKTS_FROM_EQE}, \
	{128, NET_DIM_DEFAULT_RX_CQ_MODERATION_PKTS_FROM_EQE}, \
	{256, NET_DIM_DEFAULT_RX_CQ_MODERATION_PKTS_FROM_EQE}, \
116 117
}

118
#define NET_DIM_CQE_PROFILES { \
119 120 121 122 123 124 125
	{2,  256},             \
	{8,  128},             \
	{16, 64},              \
	{32, 64},              \
	{64, 64}               \
}

126 127 128 129
static const struct net_dim_cq_moder
profile[NET_DIM_CQ_PERIOD_NUM_MODES][NET_DIM_PARAMS_NUM_PROFILES] = {
	NET_DIM_EQE_PROFILES,
	NET_DIM_CQE_PROFILES,
130 131
};

132 133
static inline struct net_dim_cq_moder net_dim_get_profile(u8 cq_period_mode,
							  int ix)
134
{
135
	struct net_dim_cq_moder cq_moder;
136 137 138 139

	cq_moder = profile[cq_period_mode][ix];
	cq_moder.cq_period_mode = cq_period_mode;
	return cq_moder;
140 141
}

142
static inline struct net_dim_cq_moder net_dim_get_def_profile(u8 rx_cq_period_mode)
143 144 145
{
	int default_profile_ix;

146 147 148 149
	if (rx_cq_period_mode == NET_DIM_CQ_PERIOD_MODE_START_FROM_CQE)
		default_profile_ix = NET_DIM_DEF_PROFILE_CQE;
	else /* NET_DIM_CQ_PERIOD_MODE_START_FROM_EQE */
		default_profile_ix = NET_DIM_DEF_PROFILE_EQE;
150

151
	return net_dim_get_profile(rx_cq_period_mode, default_profile_ix);
152 153
}

154
static inline bool net_dim_on_top(struct net_dim *dim)
155
{
156 157 158
	switch (dim->tune_state) {
	case NET_DIM_PARKING_ON_TOP:
	case NET_DIM_PARKING_TIRED:
159
		return true;
160 161 162 163
	case NET_DIM_GOING_RIGHT:
		return (dim->steps_left > 1) && (dim->steps_right == 1);
	default: /* NET_DIM_GOING_LEFT */
		return (dim->steps_right > 1) && (dim->steps_left == 1);
164 165 166
	}
}

167
static inline void net_dim_turn(struct net_dim *dim)
168
{
169 170 171
	switch (dim->tune_state) {
	case NET_DIM_PARKING_ON_TOP:
	case NET_DIM_PARKING_TIRED:
172
		break;
173 174 175
	case NET_DIM_GOING_RIGHT:
		dim->tune_state = NET_DIM_GOING_LEFT;
		dim->steps_left = 0;
176
		break;
177 178 179
	case NET_DIM_GOING_LEFT:
		dim->tune_state = NET_DIM_GOING_RIGHT;
		dim->steps_right = 0;
180 181 182 183
		break;
	}
}

184
static inline int net_dim_step(struct net_dim *dim)
185
{
186 187
	if (dim->tired == (NET_DIM_PARAMS_NUM_PROFILES * 2))
		return NET_DIM_TOO_TIRED;
188

189 190 191
	switch (dim->tune_state) {
	case NET_DIM_PARKING_ON_TOP:
	case NET_DIM_PARKING_TIRED:
192
		break;
193 194 195 196 197
	case NET_DIM_GOING_RIGHT:
		if (dim->profile_ix == (NET_DIM_PARAMS_NUM_PROFILES - 1))
			return NET_DIM_ON_EDGE;
		dim->profile_ix++;
		dim->steps_right++;
198
		break;
199 200 201 202 203
	case NET_DIM_GOING_LEFT:
		if (dim->profile_ix == 0)
			return NET_DIM_ON_EDGE;
		dim->profile_ix--;
		dim->steps_left++;
204 205 206
		break;
	}

207 208
	dim->tired++;
	return NET_DIM_STEPPED;
209 210
}

211
static inline void net_dim_park_on_top(struct net_dim *dim)
212
{
213 214 215 216
	dim->steps_right  = 0;
	dim->steps_left   = 0;
	dim->tired        = 0;
	dim->tune_state   = NET_DIM_PARKING_ON_TOP;
217 218
}

219
static inline void net_dim_park_tired(struct net_dim *dim)
220
{
221 222 223
	dim->steps_right  = 0;
	dim->steps_left   = 0;
	dim->tune_state   = NET_DIM_PARKING_TIRED;
224 225
}

226
static inline void net_dim_exit_parking(struct net_dim *dim)
227
{
228 229 230
	dim->tune_state = dim->profile_ix ? NET_DIM_GOING_LEFT :
					  NET_DIM_GOING_RIGHT;
	net_dim_step(dim);
231 232
}

233 234 235
#define IS_SIGNIFICANT_DIFF(val, ref) \
	(((100 * abs((val) - (ref))) / (ref)) > 10) /* more than 10% difference */

236 237
static inline int net_dim_stats_compare(struct net_dim_stats *curr,
					struct net_dim_stats *prev)
238
{
239
	if (!prev->bpms)
240 241
		return curr->bpms ? NET_DIM_STATS_BETTER :
				    NET_DIM_STATS_SAME;
242

243
	if (IS_SIGNIFICANT_DIFF(curr->bpms, prev->bpms))
244 245
		return (curr->bpms > prev->bpms) ? NET_DIM_STATS_BETTER :
						   NET_DIM_STATS_WORSE;
246

247
	if (IS_SIGNIFICANT_DIFF(curr->ppms, prev->ppms))
248 249
		return (curr->ppms > prev->ppms) ? NET_DIM_STATS_BETTER :
						   NET_DIM_STATS_WORSE;
250

251
	if (IS_SIGNIFICANT_DIFF(curr->epms, prev->epms))
252 253
		return (curr->epms < prev->epms) ? NET_DIM_STATS_BETTER :
						   NET_DIM_STATS_WORSE;
254

255
	return NET_DIM_STATS_SAME;
256 257
}

258 259
static inline bool net_dim_decision(struct net_dim_stats *curr_stats,
				    struct net_dim *dim)
260
{
261 262
	int prev_state = dim->tune_state;
	int prev_ix = dim->profile_ix;
263 264 265
	int stats_res;
	int step_res;

266 267 268 269 270
	switch (dim->tune_state) {
	case NET_DIM_PARKING_ON_TOP:
		stats_res = net_dim_stats_compare(curr_stats, &dim->prev_stats);
		if (stats_res != NET_DIM_STATS_SAME)
			net_dim_exit_parking(dim);
271 272
		break;

273 274 275 276
	case NET_DIM_PARKING_TIRED:
		dim->tired--;
		if (!dim->tired)
			net_dim_exit_parking(dim);
277 278
		break;

279 280 281 282 283
	case NET_DIM_GOING_RIGHT:
	case NET_DIM_GOING_LEFT:
		stats_res = net_dim_stats_compare(curr_stats, &dim->prev_stats);
		if (stats_res != NET_DIM_STATS_BETTER)
			net_dim_turn(dim);
284

285 286
		if (net_dim_on_top(dim)) {
			net_dim_park_on_top(dim);
287 288 289
			break;
		}

290
		step_res = net_dim_step(dim);
291
		switch (step_res) {
292 293
		case NET_DIM_ON_EDGE:
			net_dim_park_on_top(dim);
294
			break;
295 296
		case NET_DIM_TOO_TIRED:
			net_dim_park_tired(dim);
297 298 299 300 301 302
			break;
		}

		break;
	}

303 304 305
	if ((prev_state      != NET_DIM_PARKING_ON_TOP) ||
	    (dim->tune_state != NET_DIM_PARKING_ON_TOP))
		dim->prev_stats = *curr_stats;
306

307
	return dim->profile_ix != prev_ix;
308 309
}

310 311 312 313
static inline void net_dim_sample(u16 event_ctr,
				  u64 packets,
				  u64 bytes,
				  struct net_dim_sample *s)
314 315
{
	s->time	     = ktime_get();
316 317 318
	s->pkt_ctr   = packets;
	s->byte_ctr  = bytes;
	s->event_ctr = event_ctr;
319 320
}

321
#define NET_DIM_NEVENTS 64
322 323
#define BITS_PER_TYPE(type) (sizeof(type) * BITS_PER_BYTE)
#define BIT_GAP(bits, end, start) ((((end) - (start)) + BIT_ULL(bits)) & (BIT_ULL(bits) - 1))
324

325 326 327
static inline void net_dim_calc_stats(struct net_dim_sample *start,
				      struct net_dim_sample *end,
				      struct net_dim_stats *curr_stats)
328 329 330
{
	/* u32 holds up to 71 minutes, should be enough */
	u32 delta_us = ktime_us_delta(end->time, start->time);
331 332 333
	u32 npkts = BIT_GAP(BITS_PER_TYPE(u32), end->pkt_ctr, start->pkt_ctr);
	u32 nbytes = BIT_GAP(BITS_PER_TYPE(u32), end->byte_ctr,
			     start->byte_ctr);
334

335
	if (!delta_us)
336 337
		return;

338 339
	curr_stats->ppms = DIV_ROUND_UP(npkts * USEC_PER_MSEC, delta_us);
	curr_stats->bpms = DIV_ROUND_UP(nbytes * USEC_PER_MSEC, delta_us);
340
	curr_stats->epms = DIV_ROUND_UP(NET_DIM_NEVENTS * USEC_PER_MSEC,
341
					delta_us);
342 343
}

344 345 346 347
static inline void net_dim(struct net_dim *dim,
			   u16 event_ctr,
			   u64 packets,
			   u64 bytes)
348
{
349 350
	struct net_dim_sample end_sample;
	struct net_dim_stats curr_stats;
351 352
	u16 nevents;

353 354
	switch (dim->state) {
	case NET_DIM_MEASURE_IN_PROGRESS:
355
		nevents = BIT_GAP(BITS_PER_TYPE(u16), event_ctr,
356 357
				  dim->start_sample.event_ctr);
		if (nevents < NET_DIM_NEVENTS)
358
			break;
359 360 361 362 363 364
		net_dim_sample(event_ctr, packets, bytes, &end_sample);
		net_dim_calc_stats(&dim->start_sample, &end_sample,
				   &curr_stats);
		if (net_dim_decision(&curr_stats, dim)) {
			dim->state = NET_DIM_APPLY_NEW_PROFILE;
			schedule_work(&dim->work);
365 366 367
			break;
		}
		/* fall through */
368 369 370
	case NET_DIM_START_MEASURE:
		net_dim_sample(event_ctr, packets, bytes, &dim->start_sample);
		dim->state = NET_DIM_MEASURE_IN_PROGRESS;
371
		break;
372
	case NET_DIM_APPLY_NEW_PROFILE:
373 374 375
		break;
	}
}
376 377

#endif /* NET_DIM_H */