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Ben Cheng224b54f2013-10-15 18:26:18 -07001#ifndef __LINUX_PKT_SCHED_H
2#define __LINUX_PKT_SCHED_H
3
4#include <linux/types.h>
5
6/* Logical priority bands not depending on specific packet scheduler.
7 Every scheduler will map them to real traffic classes, if it has
8 no more precise mechanism to classify packets.
9
10 These numbers have no special meaning, though their coincidence
11 with obsolete IPv6 values is not occasional :-). New IPv6 drafts
12 preferred full anarchy inspired by diffserv group.
13
14 Note: TC_PRIO_BESTEFFORT does not mean that it is the most unhappy
15 class, actually, as rule it will be handled with more care than
16 filler or even bulk.
17 */
18
19#define TC_PRIO_BESTEFFORT 0
20#define TC_PRIO_FILLER 1
21#define TC_PRIO_BULK 2
22#define TC_PRIO_INTERACTIVE_BULK 4
23#define TC_PRIO_INTERACTIVE 6
24#define TC_PRIO_CONTROL 7
25
26#define TC_PRIO_MAX 15
27
28/* Generic queue statistics, available for all the elements.
29 Particular schedulers may have also their private records.
30 */
31
32struct tc_stats {
33 __u64 bytes; /* Number of enqueued bytes */
34 __u32 packets; /* Number of enqueued packets */
35 __u32 drops; /* Packets dropped because of lack of resources */
36 __u32 overlimits; /* Number of throttle events when this
37 * flow goes out of allocated bandwidth */
38 __u32 bps; /* Current flow byte rate */
39 __u32 pps; /* Current flow packet rate */
40 __u32 qlen;
41 __u32 backlog;
42};
43
44struct tc_estimator {
45 signed char interval;
46 unsigned char ewma_log;
47};
48
49/* "Handles"
50 ---------
51
52 All the traffic control objects have 32bit identifiers, or "handles".
53
54 They can be considered as opaque numbers from user API viewpoint,
55 but actually they always consist of two fields: major and
56 minor numbers, which are interpreted by kernel specially,
57 that may be used by applications, though not recommended.
58
59 F.e. qdisc handles always have minor number equal to zero,
60 classes (or flows) have major equal to parent qdisc major, and
61 minor uniquely identifying class inside qdisc.
62
63 Macros to manipulate handles:
64 */
65
66#define TC_H_MAJ_MASK (0xFFFF0000U)
67#define TC_H_MIN_MASK (0x0000FFFFU)
68#define TC_H_MAJ(h) ((h)&TC_H_MAJ_MASK)
69#define TC_H_MIN(h) ((h)&TC_H_MIN_MASK)
70#define TC_H_MAKE(maj,min) (((maj)&TC_H_MAJ_MASK)|((min)&TC_H_MIN_MASK))
71
72#define TC_H_UNSPEC (0U)
73#define TC_H_ROOT (0xFFFFFFFFU)
74#define TC_H_INGRESS (0xFFFFFFF1U)
75
76/* Need to corrospond to iproute2 tc/tc_core.h "enum link_layer" */
77enum tc_link_layer {
78 TC_LINKLAYER_UNAWARE, /* Indicate unaware old iproute2 util */
79 TC_LINKLAYER_ETHERNET,
80 TC_LINKLAYER_ATM,
81};
82#define TC_LINKLAYER_MASK 0x0F /* limit use to lower 4 bits */
83
84struct tc_ratespec {
85 unsigned char cell_log;
86 __u8 linklayer; /* lower 4 bits */
87 unsigned short overhead;
88 short cell_align;
89 unsigned short mpu;
90 __u32 rate;
91};
92
93#define TC_RTAB_SIZE 1024
94
95struct tc_sizespec {
96 unsigned char cell_log;
97 unsigned char size_log;
98 short cell_align;
99 int overhead;
100 unsigned int linklayer;
101 unsigned int mpu;
102 unsigned int mtu;
103 unsigned int tsize;
104};
105
106enum {
107 TCA_STAB_UNSPEC,
108 TCA_STAB_BASE,
109 TCA_STAB_DATA,
110 __TCA_STAB_MAX
111};
112
113#define TCA_STAB_MAX (__TCA_STAB_MAX - 1)
114
115/* FIFO section */
116
117struct tc_fifo_qopt {
118 __u32 limit; /* Queue length: bytes for bfifo, packets for pfifo */
119};
120
121/* PRIO section */
122
123#define TCQ_PRIO_BANDS 16
124#define TCQ_MIN_PRIO_BANDS 2
125
126struct tc_prio_qopt {
127 int bands; /* Number of bands */
128 __u8 priomap[TC_PRIO_MAX+1]; /* Map: logical priority -> PRIO band */
129};
130
131/* MULTIQ section */
132
133struct tc_multiq_qopt {
134 __u16 bands; /* Number of bands */
135 __u16 max_bands; /* Maximum number of queues */
136};
137
138/* PLUG section */
139
140#define TCQ_PLUG_BUFFER 0
141#define TCQ_PLUG_RELEASE_ONE 1
142#define TCQ_PLUG_RELEASE_INDEFINITE 2
143#define TCQ_PLUG_LIMIT 3
144
145struct tc_plug_qopt {
146 /* TCQ_PLUG_BUFFER: Inset a plug into the queue and
147 * buffer any incoming packets
148 * TCQ_PLUG_RELEASE_ONE: Dequeue packets from queue head
149 * to beginning of the next plug.
150 * TCQ_PLUG_RELEASE_INDEFINITE: Dequeue all packets from queue.
151 * Stop buffering packets until the next TCQ_PLUG_BUFFER
152 * command is received (just act as a pass-thru queue).
153 * TCQ_PLUG_LIMIT: Increase/decrease queue size
154 */
155 int action;
156 __u32 limit;
157};
158
159/* TBF section */
160
161struct tc_tbf_qopt {
162 struct tc_ratespec rate;
163 struct tc_ratespec peakrate;
164 __u32 limit;
165 __u32 buffer;
166 __u32 mtu;
167};
168
169enum {
170 TCA_TBF_UNSPEC,
171 TCA_TBF_PARMS,
172 TCA_TBF_RTAB,
173 TCA_TBF_PTAB,
174 __TCA_TBF_MAX,
175};
176
177#define TCA_TBF_MAX (__TCA_TBF_MAX - 1)
178
179
180/* TEQL section */
181
182/* TEQL does not require any parameters */
183
184/* SFQ section */
185
186struct tc_sfq_qopt {
187 unsigned quantum; /* Bytes per round allocated to flow */
188 int perturb_period; /* Period of hash perturbation */
189 __u32 limit; /* Maximal packets in queue */
190 unsigned divisor; /* Hash divisor */
191 unsigned flows; /* Maximal number of flows */
192};
193
194struct tc_sfqred_stats {
195 __u32 prob_drop; /* Early drops, below max threshold */
196 __u32 forced_drop; /* Early drops, after max threshold */
197 __u32 prob_mark; /* Marked packets, below max threshold */
198 __u32 forced_mark; /* Marked packets, after max threshold */
199 __u32 prob_mark_head; /* Marked packets, below max threshold */
200 __u32 forced_mark_head;/* Marked packets, after max threshold */
201};
202
203struct tc_sfq_qopt_v1 {
204 struct tc_sfq_qopt v0;
205 unsigned int depth; /* max number of packets per flow */
206 unsigned int headdrop;
207/* SFQRED parameters */
208 __u32 limit; /* HARD maximal flow queue length (bytes) */
209 __u32 qth_min; /* Min average length threshold (bytes) */
210 __u32 qth_max; /* Max average length threshold (bytes) */
211 unsigned char Wlog; /* log(W) */
212 unsigned char Plog; /* log(P_max/(qth_max-qth_min)) */
213 unsigned char Scell_log; /* cell size for idle damping */
214 unsigned char flags;
215 __u32 max_P; /* probability, high resolution */
216/* SFQRED stats */
217 struct tc_sfqred_stats stats;
218};
219
220
221struct tc_sfq_xstats {
222 __s32 allot;
223};
224
225/* RED section */
226
227enum {
228 TCA_RED_UNSPEC,
229 TCA_RED_PARMS,
230 TCA_RED_STAB,
231 TCA_RED_MAX_P,
232 __TCA_RED_MAX,
233};
234
235#define TCA_RED_MAX (__TCA_RED_MAX - 1)
236
237struct tc_red_qopt {
238 __u32 limit; /* HARD maximal queue length (bytes) */
239 __u32 qth_min; /* Min average length threshold (bytes) */
240 __u32 qth_max; /* Max average length threshold (bytes) */
241 unsigned char Wlog; /* log(W) */
242 unsigned char Plog; /* log(P_max/(qth_max-qth_min)) */
243 unsigned char Scell_log; /* cell size for idle damping */
244 unsigned char flags;
245#define TC_RED_ECN 1
246#define TC_RED_HARDDROP 2
247#define TC_RED_ADAPTATIVE 4
248};
249
250struct tc_red_xstats {
251 __u32 early; /* Early drops */
252 __u32 pdrop; /* Drops due to queue limits */
253 __u32 other; /* Drops due to drop() calls */
254 __u32 marked; /* Marked packets */
255};
256
257/* GRED section */
258
259#define MAX_DPs 16
260
261enum {
262 TCA_GRED_UNSPEC,
263 TCA_GRED_PARMS,
264 TCA_GRED_STAB,
265 TCA_GRED_DPS,
266 TCA_GRED_MAX_P,
267 __TCA_GRED_MAX,
268};
269
270#define TCA_GRED_MAX (__TCA_GRED_MAX - 1)
271
272struct tc_gred_qopt {
273 __u32 limit; /* HARD maximal queue length (bytes) */
274 __u32 qth_min; /* Min average length threshold (bytes) */
275 __u32 qth_max; /* Max average length threshold (bytes) */
276 __u32 DP; /* up to 2^32 DPs */
277 __u32 backlog;
278 __u32 qave;
279 __u32 forced;
280 __u32 early;
281 __u32 other;
282 __u32 pdrop;
283 __u8 Wlog; /* log(W) */
284 __u8 Plog; /* log(P_max/(qth_max-qth_min)) */
285 __u8 Scell_log; /* cell size for idle damping */
286 __u8 prio; /* prio of this VQ */
287 __u32 packets;
288 __u32 bytesin;
289};
290
291/* gred setup */
292struct tc_gred_sopt {
293 __u32 DPs;
294 __u32 def_DP;
295 __u8 grio;
296 __u8 flags;
297 __u16 pad1;
298};
299
300/* CHOKe section */
301
302enum {
303 TCA_CHOKE_UNSPEC,
304 TCA_CHOKE_PARMS,
305 TCA_CHOKE_STAB,
306 TCA_CHOKE_MAX_P,
307 __TCA_CHOKE_MAX,
308};
309
310#define TCA_CHOKE_MAX (__TCA_CHOKE_MAX - 1)
311
312struct tc_choke_qopt {
313 __u32 limit; /* Hard queue length (packets) */
314 __u32 qth_min; /* Min average threshold (packets) */
315 __u32 qth_max; /* Max average threshold (packets) */
316 unsigned char Wlog; /* log(W) */
317 unsigned char Plog; /* log(P_max/(qth_max-qth_min)) */
318 unsigned char Scell_log; /* cell size for idle damping */
319 unsigned char flags; /* see RED flags */
320};
321
322struct tc_choke_xstats {
323 __u32 early; /* Early drops */
324 __u32 pdrop; /* Drops due to queue limits */
325 __u32 other; /* Drops due to drop() calls */
326 __u32 marked; /* Marked packets */
327 __u32 matched; /* Drops due to flow match */
328};
329
330/* HTB section */
331#define TC_HTB_NUMPRIO 8
332#define TC_HTB_MAXDEPTH 8
333#define TC_HTB_PROTOVER 3 /* the same as HTB and TC's major */
334
335struct tc_htb_opt {
336 struct tc_ratespec rate;
337 struct tc_ratespec ceil;
338 __u32 buffer;
339 __u32 cbuffer;
340 __u32 quantum;
341 __u32 level; /* out only */
342 __u32 prio;
343};
344struct tc_htb_glob {
345 __u32 version; /* to match HTB/TC */
346 __u32 rate2quantum; /* bps->quantum divisor */
347 __u32 defcls; /* default class number */
348 __u32 debug; /* debug flags */
349
350 /* stats */
351 __u32 direct_pkts; /* count of non shaped packets */
352};
353enum {
354 TCA_HTB_UNSPEC,
355 TCA_HTB_PARMS,
356 TCA_HTB_INIT,
357 TCA_HTB_CTAB,
358 TCA_HTB_RTAB,
359 TCA_HTB_DIRECT_QLEN,
360 __TCA_HTB_MAX,
361};
362
363#define TCA_HTB_MAX (__TCA_HTB_MAX - 1)
364
365struct tc_htb_xstats {
366 __u32 lends;
367 __u32 borrows;
368 __u32 giants; /* too big packets (rate will not be accurate) */
369 __u32 tokens;
370 __u32 ctokens;
371};
372
373/* HFSC section */
374
375struct tc_hfsc_qopt {
376 __u16 defcls; /* default class */
377};
378
379struct tc_service_curve {
380 __u32 m1; /* slope of the first segment in bps */
381 __u32 d; /* x-projection of the first segment in us */
382 __u32 m2; /* slope of the second segment in bps */
383};
384
385struct tc_hfsc_stats {
386 __u64 work; /* total work done */
387 __u64 rtwork; /* work done by real-time criteria */
388 __u32 period; /* current period */
389 __u32 level; /* class level in hierarchy */
390};
391
392enum {
393 TCA_HFSC_UNSPEC,
394 TCA_HFSC_RSC,
395 TCA_HFSC_FSC,
396 TCA_HFSC_USC,
397 __TCA_HFSC_MAX,
398};
399
400#define TCA_HFSC_MAX (__TCA_HFSC_MAX - 1)
401
402
403/* CBQ section */
404
405#define TC_CBQ_MAXPRIO 8
406#define TC_CBQ_MAXLEVEL 8
407#define TC_CBQ_DEF_EWMA 5
408
409struct tc_cbq_lssopt {
410 unsigned char change;
411 unsigned char flags;
412#define TCF_CBQ_LSS_BOUNDED 1
413#define TCF_CBQ_LSS_ISOLATED 2
414 unsigned char ewma_log;
415 unsigned char level;
416#define TCF_CBQ_LSS_FLAGS 1
417#define TCF_CBQ_LSS_EWMA 2
418#define TCF_CBQ_LSS_MAXIDLE 4
419#define TCF_CBQ_LSS_MINIDLE 8
420#define TCF_CBQ_LSS_OFFTIME 0x10
421#define TCF_CBQ_LSS_AVPKT 0x20
422 __u32 maxidle;
423 __u32 minidle;
424 __u32 offtime;
425 __u32 avpkt;
426};
427
428struct tc_cbq_wrropt {
429 unsigned char flags;
430 unsigned char priority;
431 unsigned char cpriority;
432 unsigned char __reserved;
433 __u32 allot;
434 __u32 weight;
435};
436
437struct tc_cbq_ovl {
438 unsigned char strategy;
439#define TC_CBQ_OVL_CLASSIC 0
440#define TC_CBQ_OVL_DELAY 1
441#define TC_CBQ_OVL_LOWPRIO 2
442#define TC_CBQ_OVL_DROP 3
443#define TC_CBQ_OVL_RCLASSIC 4
444 unsigned char priority2;
445 __u16 pad;
446 __u32 penalty;
447};
448
449struct tc_cbq_police {
450 unsigned char police;
451 unsigned char __res1;
452 unsigned short __res2;
453};
454
455struct tc_cbq_fopt {
456 __u32 split;
457 __u32 defmap;
458 __u32 defchange;
459};
460
461struct tc_cbq_xstats {
462 __u32 borrows;
463 __u32 overactions;
464 __s32 avgidle;
465 __s32 undertime;
466};
467
468enum {
469 TCA_CBQ_UNSPEC,
470 TCA_CBQ_LSSOPT,
471 TCA_CBQ_WRROPT,
472 TCA_CBQ_FOPT,
473 TCA_CBQ_OVL_STRATEGY,
474 TCA_CBQ_RATE,
475 TCA_CBQ_RTAB,
476 TCA_CBQ_POLICE,
477 __TCA_CBQ_MAX,
478};
479
480#define TCA_CBQ_MAX (__TCA_CBQ_MAX - 1)
481
482/* dsmark section */
483
484enum {
485 TCA_DSMARK_UNSPEC,
486 TCA_DSMARK_INDICES,
487 TCA_DSMARK_DEFAULT_INDEX,
488 TCA_DSMARK_SET_TC_INDEX,
489 TCA_DSMARK_MASK,
490 TCA_DSMARK_VALUE,
491 __TCA_DSMARK_MAX,
492};
493
494#define TCA_DSMARK_MAX (__TCA_DSMARK_MAX - 1)
495
496/* ATM section */
497
498enum {
499 TCA_ATM_UNSPEC,
500 TCA_ATM_FD, /* file/socket descriptor */
501 TCA_ATM_PTR, /* pointer to descriptor - later */
502 TCA_ATM_HDR, /* LL header */
503 TCA_ATM_EXCESS, /* excess traffic class (0 for CLP) */
504 TCA_ATM_ADDR, /* PVC address (for output only) */
505 TCA_ATM_STATE, /* VC state (ATM_VS_*; for output only) */
506 __TCA_ATM_MAX,
507};
508
509#define TCA_ATM_MAX (__TCA_ATM_MAX - 1)
510
511/* Network emulator */
512
513enum {
514 TCA_NETEM_UNSPEC,
515 TCA_NETEM_CORR,
516 TCA_NETEM_DELAY_DIST,
517 TCA_NETEM_REORDER,
518 TCA_NETEM_CORRUPT,
519 TCA_NETEM_LOSS,
520 TCA_NETEM_RATE,
521 TCA_NETEM_ECN,
522 __TCA_NETEM_MAX,
523};
524
525#define TCA_NETEM_MAX (__TCA_NETEM_MAX - 1)
526
527struct tc_netem_qopt {
528 __u32 latency; /* added delay (us) */
529 __u32 limit; /* fifo limit (packets) */
530 __u32 loss; /* random packet loss (0=none ~0=100%) */
531 __u32 gap; /* re-ordering gap (0 for none) */
532 __u32 duplicate; /* random packet dup (0=none ~0=100%) */
533 __u32 jitter; /* random jitter in latency (us) */
534};
535
536struct tc_netem_corr {
537 __u32 delay_corr; /* delay correlation */
538 __u32 loss_corr; /* packet loss correlation */
539 __u32 dup_corr; /* duplicate correlation */
540};
541
542struct tc_netem_reorder {
543 __u32 probability;
544 __u32 correlation;
545};
546
547struct tc_netem_corrupt {
548 __u32 probability;
549 __u32 correlation;
550};
551
552struct tc_netem_rate {
553 __u32 rate; /* byte/s */
554 __s32 packet_overhead;
555 __u32 cell_size;
556 __s32 cell_overhead;
557};
558
559enum {
560 NETEM_LOSS_UNSPEC,
561 NETEM_LOSS_GI, /* General Intuitive - 4 state model */
562 NETEM_LOSS_GE, /* Gilbert Elliot models */
563 __NETEM_LOSS_MAX
564};
565#define NETEM_LOSS_MAX (__NETEM_LOSS_MAX - 1)
566
567/* State transition probabilities for 4 state model */
568struct tc_netem_gimodel {
569 __u32 p13;
570 __u32 p31;
571 __u32 p32;
572 __u32 p14;
573 __u32 p23;
574};
575
576/* Gilbert-Elliot models */
577struct tc_netem_gemodel {
578 __u32 p;
579 __u32 r;
580 __u32 h;
581 __u32 k1;
582};
583
584#define NETEM_DIST_SCALE 8192
585#define NETEM_DIST_MAX 16384
586
587/* DRR */
588
589enum {
590 TCA_DRR_UNSPEC,
591 TCA_DRR_QUANTUM,
592 __TCA_DRR_MAX
593};
594
595#define TCA_DRR_MAX (__TCA_DRR_MAX - 1)
596
597struct tc_drr_stats {
598 __u32 deficit;
599};
600
601/* MQPRIO */
602#define TC_QOPT_BITMASK 15
603#define TC_QOPT_MAX_QUEUE 16
604
605struct tc_mqprio_qopt {
606 __u8 num_tc;
607 __u8 prio_tc_map[TC_QOPT_BITMASK + 1];
608 __u8 hw;
609 __u16 count[TC_QOPT_MAX_QUEUE];
610 __u16 offset[TC_QOPT_MAX_QUEUE];
611};
612
613/* SFB */
614
615enum {
616 TCA_SFB_UNSPEC,
617 TCA_SFB_PARMS,
618 __TCA_SFB_MAX,
619};
620
621#define TCA_SFB_MAX (__TCA_SFB_MAX - 1)
622
623/*
624 * Note: increment, decrement are Q0.16 fixed-point values.
625 */
626struct tc_sfb_qopt {
627 __u32 rehash_interval; /* delay between hash move, in ms */
628 __u32 warmup_time; /* double buffering warmup time in ms (warmup_time < rehash_interval) */
629 __u32 max; /* max len of qlen_min */
630 __u32 bin_size; /* maximum queue length per bin */
631 __u32 increment; /* probability increment, (d1 in Blue) */
632 __u32 decrement; /* probability decrement, (d2 in Blue) */
633 __u32 limit; /* max SFB queue length */
634 __u32 penalty_rate; /* inelastic flows are rate limited to 'rate' pps */
635 __u32 penalty_burst;
636};
637
638struct tc_sfb_xstats {
639 __u32 earlydrop;
640 __u32 penaltydrop;
641 __u32 bucketdrop;
642 __u32 queuedrop;
643 __u32 childdrop; /* drops in child qdisc */
644 __u32 marked;
645 __u32 maxqlen;
646 __u32 maxprob;
647 __u32 avgprob;
648};
649
650#define SFB_MAX_PROB 0xFFFF
651
652/* QFQ */
653enum {
654 TCA_QFQ_UNSPEC,
655 TCA_QFQ_WEIGHT,
656 TCA_QFQ_LMAX,
657 __TCA_QFQ_MAX
658};
659
660#define TCA_QFQ_MAX (__TCA_QFQ_MAX - 1)
661
662struct tc_qfq_stats {
663 __u32 weight;
664 __u32 lmax;
665};
666
667/* CODEL */
668
669enum {
670 TCA_CODEL_UNSPEC,
671 TCA_CODEL_TARGET,
672 TCA_CODEL_LIMIT,
673 TCA_CODEL_INTERVAL,
674 TCA_CODEL_ECN,
675 __TCA_CODEL_MAX
676};
677
678#define TCA_CODEL_MAX (__TCA_CODEL_MAX - 1)
679
680struct tc_codel_xstats {
681 __u32 maxpacket; /* largest packet we've seen so far */
682 __u32 count; /* how many drops we've done since the last time we
683 * entered dropping state
684 */
685 __u32 lastcount; /* count at entry to dropping state */
686 __u32 ldelay; /* in-queue delay seen by most recently dequeued packet */
687 __s32 drop_next; /* time to drop next packet */
688 __u32 drop_overlimit; /* number of time max qdisc packet limit was hit */
689 __u32 ecn_mark; /* number of packets we ECN marked instead of dropped */
690 __u32 dropping; /* are we in dropping state ? */
691};
692
693/* FQ_CODEL */
694
695enum {
696 TCA_FQ_CODEL_UNSPEC,
697 TCA_FQ_CODEL_TARGET,
698 TCA_FQ_CODEL_LIMIT,
699 TCA_FQ_CODEL_INTERVAL,
700 TCA_FQ_CODEL_ECN,
701 TCA_FQ_CODEL_FLOWS,
702 TCA_FQ_CODEL_QUANTUM,
703 __TCA_FQ_CODEL_MAX
704};
705
706#define TCA_FQ_CODEL_MAX (__TCA_FQ_CODEL_MAX - 1)
707
708enum {
709 TCA_FQ_CODEL_XSTATS_QDISC,
710 TCA_FQ_CODEL_XSTATS_CLASS,
711};
712
713struct tc_fq_codel_qd_stats {
714 __u32 maxpacket; /* largest packet we've seen so far */
715 __u32 drop_overlimit; /* number of time max qdisc
716 * packet limit was hit
717 */
718 __u32 ecn_mark; /* number of packets we ECN marked
719 * instead of being dropped
720 */
721 __u32 new_flow_count; /* number of time packets
722 * created a 'new flow'
723 */
724 __u32 new_flows_len; /* count of flows in new list */
725 __u32 old_flows_len; /* count of flows in old list */
726};
727
728struct tc_fq_codel_cl_stats {
729 __s32 deficit;
730 __u32 ldelay; /* in-queue delay seen by most recently
731 * dequeued packet
732 */
733 __u32 count;
734 __u32 lastcount;
735 __u32 dropping;
736 __s32 drop_next;
737};
738
739struct tc_fq_codel_xstats {
740 __u32 type;
741 union {
742 struct tc_fq_codel_qd_stats qdisc_stats;
743 struct tc_fq_codel_cl_stats class_stats;
744 };
745};
746
747#endif