13c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#ifndef __LINUX_PKT_SCHED_H
23c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define __LINUX_PKT_SCHED_H
33c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
43c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#include <linux/types.h>
53c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
63c827367444ee418f129b2c238299f49d3264554Jarkko Poyry/* Logical priority bands not depending on specific packet scheduler.
73c827367444ee418f129b2c238299f49d3264554Jarkko Poyry   Every scheduler will map them to real traffic classes, if it has
83c827367444ee418f129b2c238299f49d3264554Jarkko Poyry   no more precise mechanism to classify packets.
93c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
103c827367444ee418f129b2c238299f49d3264554Jarkko Poyry   These numbers have no special meaning, though their coincidence
113c827367444ee418f129b2c238299f49d3264554Jarkko Poyry   with obsolete IPv6 values is not occasional :-). New IPv6 drafts
123c827367444ee418f129b2c238299f49d3264554Jarkko Poyry   preferred full anarchy inspired by diffserv group.
133c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
143c827367444ee418f129b2c238299f49d3264554Jarkko Poyry   Note: TC_PRIO_BESTEFFORT does not mean that it is the most unhappy
153c827367444ee418f129b2c238299f49d3264554Jarkko Poyry   class, actually, as rule it will be handled with more care than
163c827367444ee418f129b2c238299f49d3264554Jarkko Poyry   filler or even bulk.
173c827367444ee418f129b2c238299f49d3264554Jarkko Poyry */
183c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
193c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_PRIO_BESTEFFORT		0
203c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_PRIO_FILLER			1
213c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_PRIO_BULK			2
223c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_PRIO_INTERACTIVE_BULK	4
233c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_PRIO_INTERACTIVE		6
243c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_PRIO_CONTROL			7
253c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
263c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_PRIO_MAX			15
273c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
283c827367444ee418f129b2c238299f49d3264554Jarkko Poyry/* Generic queue statistics, available for all the elements.
293c827367444ee418f129b2c238299f49d3264554Jarkko Poyry   Particular schedulers may have also their private records.
303c827367444ee418f129b2c238299f49d3264554Jarkko Poyry */
313c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
323c827367444ee418f129b2c238299f49d3264554Jarkko Poyrystruct tc_stats {
333c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	__u64	bytes;			/* Number of enqueued bytes */
343c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	__u32	packets;		/* Number of enqueued packets	*/
353c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	__u32	drops;			/* Packets dropped because of lack of resources */
363c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	__u32	overlimits;		/* Number of throttle events when this
373c827367444ee418f129b2c238299f49d3264554Jarkko Poyry					 * flow goes out of allocated bandwidth */
383c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	__u32	bps;			/* Current flow byte rate */
393c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	__u32	pps;			/* Current flow packet rate */
403c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	__u32	qlen;
413c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	__u32	backlog;
423c827367444ee418f129b2c238299f49d3264554Jarkko Poyry};
433c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
443c827367444ee418f129b2c238299f49d3264554Jarkko Poyrystruct tc_estimator {
453c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	signed char	interval;
463c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	unsigned char	ewma_log;
473c827367444ee418f129b2c238299f49d3264554Jarkko Poyry};
483c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
493c827367444ee418f129b2c238299f49d3264554Jarkko Poyry/* "Handles"
503c827367444ee418f129b2c238299f49d3264554Jarkko Poyry   ---------
513c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
523c827367444ee418f129b2c238299f49d3264554Jarkko Poyry    All the traffic control objects have 32bit identifiers, or "handles".
533c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
543c827367444ee418f129b2c238299f49d3264554Jarkko Poyry    They can be considered as opaque numbers from user API viewpoint,
553c827367444ee418f129b2c238299f49d3264554Jarkko Poyry    but actually they always consist of two fields: major and
563c827367444ee418f129b2c238299f49d3264554Jarkko Poyry    minor numbers, which are interpreted by kernel specially,
573c827367444ee418f129b2c238299f49d3264554Jarkko Poyry    that may be used by applications, though not recommended.
583c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
593c827367444ee418f129b2c238299f49d3264554Jarkko Poyry    F.e. qdisc handles always have minor number equal to zero,
603c827367444ee418f129b2c238299f49d3264554Jarkko Poyry    classes (or flows) have major equal to parent qdisc major, and
613c827367444ee418f129b2c238299f49d3264554Jarkko Poyry    minor uniquely identifying class inside qdisc.
623c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
633c827367444ee418f129b2c238299f49d3264554Jarkko Poyry    Macros to manipulate handles:
643c827367444ee418f129b2c238299f49d3264554Jarkko Poyry */
653c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
663c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_H_MAJ_MASK (0xFFFF0000U)
673c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_H_MIN_MASK (0x0000FFFFU)
683c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_H_MAJ(h) ((h)&TC_H_MAJ_MASK)
693c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_H_MIN(h) ((h)&TC_H_MIN_MASK)
703c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_H_MAKE(maj,min) (((maj)&TC_H_MAJ_MASK)|((min)&TC_H_MIN_MASK))
713c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
723c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_H_UNSPEC	(0U)
733c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_H_ROOT	(0xFFFFFFFFU)
743c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_H_INGRESS    (0xFFFFFFF1U)
753c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
763c827367444ee418f129b2c238299f49d3264554Jarkko Poyry/* Need to corrospond to iproute2 tc/tc_core.h "enum link_layer" */
773c827367444ee418f129b2c238299f49d3264554Jarkko Poyryenum tc_link_layer {
783c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	TC_LINKLAYER_UNAWARE, /* Indicate unaware old iproute2 util */
793c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	TC_LINKLAYER_ETHERNET,
803c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	TC_LINKLAYER_ATM,
813c827367444ee418f129b2c238299f49d3264554Jarkko Poyry};
823c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_LINKLAYER_MASK 0x0F /* limit use to lower 4 bits */
833c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
843c827367444ee418f129b2c238299f49d3264554Jarkko Poyrystruct tc_ratespec {
853c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	unsigned char	cell_log;
863c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	__u8		linklayer; /* lower 4 bits */
873c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	unsigned short	overhead;
883c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	short		cell_align;
893c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	unsigned short	mpu;
903c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	__u32		rate;
913c827367444ee418f129b2c238299f49d3264554Jarkko Poyry};
923c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
933c827367444ee418f129b2c238299f49d3264554Jarkko Poyry#define TC_RTAB_SIZE	1024
943c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
953c827367444ee418f129b2c238299f49d3264554Jarkko Poyrystruct tc_sizespec {
963c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	unsigned char	cell_log;
973c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	unsigned char	size_log;
983c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	short		cell_align;
993c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	int		overhead;
1003c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	unsigned int	linklayer;
1013c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	unsigned int	mpu;
1023c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	unsigned int	mtu;
1033c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	unsigned int	tsize;
1043c827367444ee418f129b2c238299f49d3264554Jarkko Poyry};
1053c827367444ee418f129b2c238299f49d3264554Jarkko Poyry
1063c827367444ee418f129b2c238299f49d3264554Jarkko Poyryenum {
1073c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	TCA_STAB_UNSPEC,
1083c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	TCA_STAB_BASE,
1093c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	TCA_STAB_DATA,
1103c827367444ee418f129b2c238299f49d3264554Jarkko Poyry	__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_RATE64,
175	TCA_TBF_PRATE64,
176	TCA_TBF_BURST,
177	TCA_TBF_PBURST,
178	__TCA_TBF_MAX,
179};
180
181#define TCA_TBF_MAX (__TCA_TBF_MAX - 1)
182
183
184/* TEQL section */
185
186/* TEQL does not require any parameters */
187
188/* SFQ section */
189
190struct tc_sfq_qopt {
191	unsigned	quantum;	/* Bytes per round allocated to flow */
192	int		perturb_period;	/* Period of hash perturbation */
193	__u32		limit;		/* Maximal packets in queue */
194	unsigned	divisor;	/* Hash divisor  */
195	unsigned	flows;		/* Maximal number of flows  */
196};
197
198struct tc_sfqred_stats {
199	__u32           prob_drop;      /* Early drops, below max threshold */
200	__u32           forced_drop;	/* Early drops, after max threshold */
201	__u32           prob_mark;      /* Marked packets, below max threshold */
202	__u32           forced_mark;    /* Marked packets, after max threshold */
203	__u32           prob_mark_head; /* Marked packets, below max threshold */
204	__u32           forced_mark_head;/* Marked packets, after max threshold */
205};
206
207struct tc_sfq_qopt_v1 {
208	struct tc_sfq_qopt v0;
209	unsigned int	depth;		/* max number of packets per flow */
210	unsigned int	headdrop;
211/* SFQRED parameters */
212	__u32		limit;		/* HARD maximal flow queue length (bytes) */
213	__u32		qth_min;	/* Min average length threshold (bytes) */
214	__u32		qth_max;	/* Max average length threshold (bytes) */
215	unsigned char   Wlog;		/* log(W)		*/
216	unsigned char   Plog;		/* log(P_max/(qth_max-qth_min))	*/
217	unsigned char   Scell_log;	/* cell size for idle damping */
218	unsigned char	flags;
219	__u32		max_P;		/* probability, high resolution */
220/* SFQRED stats */
221	struct tc_sfqred_stats stats;
222};
223
224
225struct tc_sfq_xstats {
226	__s32		allot;
227};
228
229/* RED section */
230
231enum {
232	TCA_RED_UNSPEC,
233	TCA_RED_PARMS,
234	TCA_RED_STAB,
235	TCA_RED_MAX_P,
236	__TCA_RED_MAX,
237};
238
239#define TCA_RED_MAX (__TCA_RED_MAX - 1)
240
241struct tc_red_qopt {
242	__u32		limit;		/* HARD maximal queue length (bytes)	*/
243	__u32		qth_min;	/* Min average length threshold (bytes) */
244	__u32		qth_max;	/* Max average length threshold (bytes) */
245	unsigned char   Wlog;		/* log(W)		*/
246	unsigned char   Plog;		/* log(P_max/(qth_max-qth_min))	*/
247	unsigned char   Scell_log;	/* cell size for idle damping */
248	unsigned char	flags;
249#define TC_RED_ECN		1
250#define TC_RED_HARDDROP		2
251#define TC_RED_ADAPTATIVE	4
252};
253
254struct tc_red_xstats {
255	__u32           early;          /* Early drops */
256	__u32           pdrop;          /* Drops due to queue limits */
257	__u32           other;          /* Drops due to drop() calls */
258	__u32           marked;         /* Marked packets */
259};
260
261/* GRED section */
262
263#define MAX_DPs 16
264
265enum {
266       TCA_GRED_UNSPEC,
267       TCA_GRED_PARMS,
268       TCA_GRED_STAB,
269       TCA_GRED_DPS,
270       TCA_GRED_MAX_P,
271       TCA_GRED_LIMIT,
272       __TCA_GRED_MAX,
273};
274
275#define TCA_GRED_MAX (__TCA_GRED_MAX - 1)
276
277struct tc_gred_qopt {
278	__u32		limit;        /* HARD maximal queue length (bytes)    */
279	__u32		qth_min;      /* Min average length threshold (bytes) */
280	__u32		qth_max;      /* Max average length threshold (bytes) */
281	__u32		DP;           /* up to 2^32 DPs */
282	__u32		backlog;
283	__u32		qave;
284	__u32		forced;
285	__u32		early;
286	__u32		other;
287	__u32		pdrop;
288	__u8		Wlog;         /* log(W)               */
289	__u8		Plog;         /* log(P_max/(qth_max-qth_min)) */
290	__u8		Scell_log;    /* cell size for idle damping */
291	__u8		prio;         /* prio of this VQ */
292	__u32		packets;
293	__u32		bytesin;
294};
295
296/* gred setup */
297struct tc_gred_sopt {
298	__u32		DPs;
299	__u32		def_DP;
300	__u8		grio;
301	__u8		flags;
302	__u16		pad1;
303};
304
305/* CHOKe section */
306
307enum {
308	TCA_CHOKE_UNSPEC,
309	TCA_CHOKE_PARMS,
310	TCA_CHOKE_STAB,
311	TCA_CHOKE_MAX_P,
312	__TCA_CHOKE_MAX,
313};
314
315#define TCA_CHOKE_MAX (__TCA_CHOKE_MAX - 1)
316
317struct tc_choke_qopt {
318	__u32		limit;		/* Hard queue length (packets)	*/
319	__u32		qth_min;	/* Min average threshold (packets) */
320	__u32		qth_max;	/* Max average threshold (packets) */
321	unsigned char   Wlog;		/* log(W)		*/
322	unsigned char   Plog;		/* log(P_max/(qth_max-qth_min))	*/
323	unsigned char   Scell_log;	/* cell size for idle damping */
324	unsigned char	flags;		/* see RED flags */
325};
326
327struct tc_choke_xstats {
328	__u32		early;          /* Early drops */
329	__u32		pdrop;          /* Drops due to queue limits */
330	__u32		other;          /* Drops due to drop() calls */
331	__u32		marked;         /* Marked packets */
332	__u32		matched;	/* Drops due to flow match */
333};
334
335/* HTB section */
336#define TC_HTB_NUMPRIO		8
337#define TC_HTB_MAXDEPTH		8
338#define TC_HTB_PROTOVER		3 /* the same as HTB and TC's major */
339
340struct tc_htb_opt {
341	struct tc_ratespec 	rate;
342	struct tc_ratespec 	ceil;
343	__u32	buffer;
344	__u32	cbuffer;
345	__u32	quantum;
346	__u32	level;		/* out only */
347	__u32	prio;
348};
349struct tc_htb_glob {
350	__u32 version;		/* to match HTB/TC */
351    	__u32 rate2quantum;	/* bps->quantum divisor */
352    	__u32 defcls;		/* default class number */
353	__u32 debug;		/* debug flags */
354
355	/* stats */
356	__u32 direct_pkts; /* count of non shaped packets */
357};
358enum {
359	TCA_HTB_UNSPEC,
360	TCA_HTB_PARMS,
361	TCA_HTB_INIT,
362	TCA_HTB_CTAB,
363	TCA_HTB_RTAB,
364	TCA_HTB_DIRECT_QLEN,
365	TCA_HTB_RATE64,
366	TCA_HTB_CEIL64,
367	__TCA_HTB_MAX,
368};
369
370#define TCA_HTB_MAX (__TCA_HTB_MAX - 1)
371
372struct tc_htb_xstats {
373	__u32 lends;
374	__u32 borrows;
375	__u32 giants;	/* too big packets (rate will not be accurate) */
376	__u32 tokens;
377	__u32 ctokens;
378};
379
380/* HFSC section */
381
382struct tc_hfsc_qopt {
383	__u16	defcls;		/* default class */
384};
385
386struct tc_service_curve {
387	__u32	m1;		/* slope of the first segment in bps */
388	__u32	d;		/* x-projection of the first segment in us */
389	__u32	m2;		/* slope of the second segment in bps */
390};
391
392struct tc_hfsc_stats {
393	__u64	work;		/* total work done */
394	__u64	rtwork;		/* work done by real-time criteria */
395	__u32	period;		/* current period */
396	__u32	level;		/* class level in hierarchy */
397};
398
399enum {
400	TCA_HFSC_UNSPEC,
401	TCA_HFSC_RSC,
402	TCA_HFSC_FSC,
403	TCA_HFSC_USC,
404	__TCA_HFSC_MAX,
405};
406
407#define TCA_HFSC_MAX (__TCA_HFSC_MAX - 1)
408
409
410/* CBQ section */
411
412#define TC_CBQ_MAXPRIO		8
413#define TC_CBQ_MAXLEVEL		8
414#define TC_CBQ_DEF_EWMA		5
415
416struct tc_cbq_lssopt {
417	unsigned char	change;
418	unsigned char	flags;
419#define TCF_CBQ_LSS_BOUNDED	1
420#define TCF_CBQ_LSS_ISOLATED	2
421	unsigned char  	ewma_log;
422	unsigned char  	level;
423#define TCF_CBQ_LSS_FLAGS	1
424#define TCF_CBQ_LSS_EWMA	2
425#define TCF_CBQ_LSS_MAXIDLE	4
426#define TCF_CBQ_LSS_MINIDLE	8
427#define TCF_CBQ_LSS_OFFTIME	0x10
428#define TCF_CBQ_LSS_AVPKT	0x20
429	__u32		maxidle;
430	__u32		minidle;
431	__u32		offtime;
432	__u32		avpkt;
433};
434
435struct tc_cbq_wrropt {
436	unsigned char	flags;
437	unsigned char	priority;
438	unsigned char	cpriority;
439	unsigned char	__reserved;
440	__u32		allot;
441	__u32		weight;
442};
443
444struct tc_cbq_ovl {
445	unsigned char	strategy;
446#define	TC_CBQ_OVL_CLASSIC	0
447#define	TC_CBQ_OVL_DELAY	1
448#define	TC_CBQ_OVL_LOWPRIO	2
449#define	TC_CBQ_OVL_DROP		3
450#define	TC_CBQ_OVL_RCLASSIC	4
451	unsigned char	priority2;
452	__u16		pad;
453	__u32		penalty;
454};
455
456struct tc_cbq_police {
457	unsigned char	police;
458	unsigned char	__res1;
459	unsigned short	__res2;
460};
461
462struct tc_cbq_fopt {
463	__u32		split;
464	__u32		defmap;
465	__u32		defchange;
466};
467
468struct tc_cbq_xstats {
469	__u32		borrows;
470	__u32		overactions;
471	__s32		avgidle;
472	__s32		undertime;
473};
474
475enum {
476	TCA_CBQ_UNSPEC,
477	TCA_CBQ_LSSOPT,
478	TCA_CBQ_WRROPT,
479	TCA_CBQ_FOPT,
480	TCA_CBQ_OVL_STRATEGY,
481	TCA_CBQ_RATE,
482	TCA_CBQ_RTAB,
483	TCA_CBQ_POLICE,
484	__TCA_CBQ_MAX,
485};
486
487#define TCA_CBQ_MAX	(__TCA_CBQ_MAX - 1)
488
489/* dsmark section */
490
491enum {
492	TCA_DSMARK_UNSPEC,
493	TCA_DSMARK_INDICES,
494	TCA_DSMARK_DEFAULT_INDEX,
495	TCA_DSMARK_SET_TC_INDEX,
496	TCA_DSMARK_MASK,
497	TCA_DSMARK_VALUE,
498	__TCA_DSMARK_MAX,
499};
500
501#define TCA_DSMARK_MAX (__TCA_DSMARK_MAX - 1)
502
503/* ATM  section */
504
505enum {
506	TCA_ATM_UNSPEC,
507	TCA_ATM_FD,		/* file/socket descriptor */
508	TCA_ATM_PTR,		/* pointer to descriptor - later */
509	TCA_ATM_HDR,		/* LL header */
510	TCA_ATM_EXCESS,		/* excess traffic class (0 for CLP)  */
511	TCA_ATM_ADDR,		/* PVC address (for output only) */
512	TCA_ATM_STATE,		/* VC state (ATM_VS_*; for output only) */
513	__TCA_ATM_MAX,
514};
515
516#define TCA_ATM_MAX	(__TCA_ATM_MAX - 1)
517
518/* Network emulator */
519
520enum {
521	TCA_NETEM_UNSPEC,
522	TCA_NETEM_CORR,
523	TCA_NETEM_DELAY_DIST,
524	TCA_NETEM_REORDER,
525	TCA_NETEM_CORRUPT,
526	TCA_NETEM_LOSS,
527	TCA_NETEM_RATE,
528	TCA_NETEM_ECN,
529	TCA_NETEM_RATE64,
530	__TCA_NETEM_MAX,
531};
532
533#define TCA_NETEM_MAX (__TCA_NETEM_MAX - 1)
534
535struct tc_netem_qopt {
536	__u32	latency;	/* added delay (us) */
537	__u32   limit;		/* fifo limit (packets) */
538	__u32	loss;		/* random packet loss (0=none ~0=100%) */
539	__u32	gap;		/* re-ordering gap (0 for none) */
540	__u32   duplicate;	/* random packet dup  (0=none ~0=100%) */
541	__u32	jitter;		/* random jitter in latency (us) */
542};
543
544struct tc_netem_corr {
545	__u32	delay_corr;	/* delay correlation */
546	__u32	loss_corr;	/* packet loss correlation */
547	__u32	dup_corr;	/* duplicate correlation  */
548};
549
550struct tc_netem_reorder {
551	__u32	probability;
552	__u32	correlation;
553};
554
555struct tc_netem_corrupt {
556	__u32	probability;
557	__u32	correlation;
558};
559
560struct tc_netem_rate {
561	__u32	rate;	/* byte/s */
562	__s32	packet_overhead;
563	__u32	cell_size;
564	__s32	cell_overhead;
565};
566
567enum {
568	NETEM_LOSS_UNSPEC,
569	NETEM_LOSS_GI,		/* General Intuitive - 4 state model */
570	NETEM_LOSS_GE,		/* Gilbert Elliot models */
571	__NETEM_LOSS_MAX
572};
573#define NETEM_LOSS_MAX (__NETEM_LOSS_MAX - 1)
574
575/* State transition probabilities for 4 state model */
576struct tc_netem_gimodel {
577	__u32	p13;
578	__u32	p31;
579	__u32	p32;
580	__u32	p14;
581	__u32	p23;
582};
583
584/* Gilbert-Elliot models */
585struct tc_netem_gemodel {
586	__u32 p;
587	__u32 r;
588	__u32 h;
589	__u32 k1;
590};
591
592#define NETEM_DIST_SCALE	8192
593#define NETEM_DIST_MAX		16384
594
595/* DRR */
596
597enum {
598	TCA_DRR_UNSPEC,
599	TCA_DRR_QUANTUM,
600	__TCA_DRR_MAX
601};
602
603#define TCA_DRR_MAX	(__TCA_DRR_MAX - 1)
604
605struct tc_drr_stats {
606	__u32	deficit;
607};
608
609/* MQPRIO */
610#define TC_QOPT_BITMASK 15
611#define TC_QOPT_MAX_QUEUE 16
612
613struct tc_mqprio_qopt {
614	__u8	num_tc;
615	__u8	prio_tc_map[TC_QOPT_BITMASK + 1];
616	__u8	hw;
617	__u16	count[TC_QOPT_MAX_QUEUE];
618	__u16	offset[TC_QOPT_MAX_QUEUE];
619};
620
621/* SFB */
622
623enum {
624	TCA_SFB_UNSPEC,
625	TCA_SFB_PARMS,
626	__TCA_SFB_MAX,
627};
628
629#define TCA_SFB_MAX (__TCA_SFB_MAX - 1)
630
631/*
632 * Note: increment, decrement are Q0.16 fixed-point values.
633 */
634struct tc_sfb_qopt {
635	__u32 rehash_interval;	/* delay between hash move, in ms */
636	__u32 warmup_time;	/* double buffering warmup time in ms (warmup_time < rehash_interval) */
637	__u32 max;		/* max len of qlen_min */
638	__u32 bin_size;		/* maximum queue length per bin */
639	__u32 increment;	/* probability increment, (d1 in Blue) */
640	__u32 decrement;	/* probability decrement, (d2 in Blue) */
641	__u32 limit;		/* max SFB queue length */
642	__u32 penalty_rate;	/* inelastic flows are rate limited to 'rate' pps */
643	__u32 penalty_burst;
644};
645
646struct tc_sfb_xstats {
647	__u32 earlydrop;
648	__u32 penaltydrop;
649	__u32 bucketdrop;
650	__u32 queuedrop;
651	__u32 childdrop; /* drops in child qdisc */
652	__u32 marked;
653	__u32 maxqlen;
654	__u32 maxprob;
655	__u32 avgprob;
656};
657
658#define SFB_MAX_PROB 0xFFFF
659
660/* QFQ */
661enum {
662	TCA_QFQ_UNSPEC,
663	TCA_QFQ_WEIGHT,
664	TCA_QFQ_LMAX,
665	__TCA_QFQ_MAX
666};
667
668#define TCA_QFQ_MAX	(__TCA_QFQ_MAX - 1)
669
670struct tc_qfq_stats {
671	__u32 weight;
672	__u32 lmax;
673};
674
675/* CODEL */
676
677enum {
678	TCA_CODEL_UNSPEC,
679	TCA_CODEL_TARGET,
680	TCA_CODEL_LIMIT,
681	TCA_CODEL_INTERVAL,
682	TCA_CODEL_ECN,
683	TCA_CODEL_CE_THRESHOLD,
684	__TCA_CODEL_MAX
685};
686
687#define TCA_CODEL_MAX	(__TCA_CODEL_MAX - 1)
688
689struct tc_codel_xstats {
690	__u32	maxpacket; /* largest packet we've seen so far */
691	__u32	count;	   /* how many drops we've done since the last time we
692			    * entered dropping state
693			    */
694	__u32	lastcount; /* count at entry to dropping state */
695	__u32	ldelay;    /* in-queue delay seen by most recently dequeued packet */
696	__s32	drop_next; /* time to drop next packet */
697	__u32	drop_overlimit; /* number of time max qdisc packet limit was hit */
698	__u32	ecn_mark;  /* number of packets we ECN marked instead of dropped */
699	__u32	dropping;  /* are we in dropping state ? */
700	__u32	ce_mark;   /* number of CE marked packets because of ce_threshold */
701};
702
703/* FQ_CODEL */
704
705enum {
706	TCA_FQ_CODEL_UNSPEC,
707	TCA_FQ_CODEL_TARGET,
708	TCA_FQ_CODEL_LIMIT,
709	TCA_FQ_CODEL_INTERVAL,
710	TCA_FQ_CODEL_ECN,
711	TCA_FQ_CODEL_FLOWS,
712	TCA_FQ_CODEL_QUANTUM,
713	TCA_FQ_CODEL_CE_THRESHOLD,
714	__TCA_FQ_CODEL_MAX
715};
716
717#define TCA_FQ_CODEL_MAX	(__TCA_FQ_CODEL_MAX - 1)
718
719enum {
720	TCA_FQ_CODEL_XSTATS_QDISC,
721	TCA_FQ_CODEL_XSTATS_CLASS,
722};
723
724struct tc_fq_codel_qd_stats {
725	__u32	maxpacket;	/* largest packet we've seen so far */
726	__u32	drop_overlimit; /* number of time max qdisc
727				 * packet limit was hit
728				 */
729	__u32	ecn_mark;	/* number of packets we ECN marked
730				 * instead of being dropped
731				 */
732	__u32	new_flow_count; /* number of time packets
733				 * created a 'new flow'
734				 */
735	__u32	new_flows_len;	/* count of flows in new list */
736	__u32	old_flows_len;	/* count of flows in old list */
737	__u32	ce_mark;	/* packets above ce_threshold */
738};
739
740struct tc_fq_codel_cl_stats {
741	__s32	deficit;
742	__u32	ldelay;		/* in-queue delay seen by most recently
743				 * dequeued packet
744				 */
745	__u32	count;
746	__u32	lastcount;
747	__u32	dropping;
748	__s32	drop_next;
749};
750
751struct tc_fq_codel_xstats {
752	__u32	type;
753	union {
754		struct tc_fq_codel_qd_stats qdisc_stats;
755		struct tc_fq_codel_cl_stats class_stats;
756	};
757};
758
759/* FQ */
760
761enum {
762	TCA_FQ_UNSPEC,
763
764	TCA_FQ_PLIMIT,		/* limit of total number of packets in queue */
765
766	TCA_FQ_FLOW_PLIMIT,	/* limit of packets per flow */
767
768	TCA_FQ_QUANTUM,		/* RR quantum */
769
770	TCA_FQ_INITIAL_QUANTUM,		/* RR quantum for new flow */
771
772	TCA_FQ_RATE_ENABLE,	/* enable/disable rate limiting */
773
774	TCA_FQ_FLOW_DEFAULT_RATE,/* obsolete, do not use */
775
776	TCA_FQ_FLOW_MAX_RATE,	/* per flow max rate */
777
778	TCA_FQ_BUCKETS_LOG,	/* log2(number of buckets) */
779
780	TCA_FQ_FLOW_REFILL_DELAY,	/* flow credit refill delay in usec */
781
782	TCA_FQ_ORPHAN_MASK,	/* mask applied to orphaned skb hashes */
783
784	__TCA_FQ_MAX
785};
786
787#define TCA_FQ_MAX	(__TCA_FQ_MAX - 1)
788
789struct tc_fq_qd_stats {
790	__u64	gc_flows;
791	__u64	highprio_packets;
792	__u64	tcp_retrans;
793	__u64	throttled;
794	__u64	flows_plimit;
795	__u64	pkts_too_long;
796	__u64	allocation_errors;
797	__s64	time_next_delayed_flow;
798	__u32	flows;
799	__u32	inactive_flows;
800	__u32	throttled_flows;
801	__u32	pad;
802};
803
804/* Heavy-Hitter Filter */
805
806enum {
807	TCA_HHF_UNSPEC,
808	TCA_HHF_BACKLOG_LIMIT,
809	TCA_HHF_QUANTUM,
810	TCA_HHF_HH_FLOWS_LIMIT,
811	TCA_HHF_RESET_TIMEOUT,
812	TCA_HHF_ADMIT_BYTES,
813	TCA_HHF_EVICT_TIMEOUT,
814	TCA_HHF_NON_HH_WEIGHT,
815	__TCA_HHF_MAX
816};
817
818#define TCA_HHF_MAX	(__TCA_HHF_MAX - 1)
819
820struct tc_hhf_xstats {
821	__u32	drop_overlimit; /* number of times max qdisc packet limit
822				 * was hit
823				 */
824	__u32	hh_overlimit;   /* number of times max heavy-hitters was hit */
825	__u32	hh_tot_count;   /* number of captured heavy-hitters so far */
826	__u32	hh_cur_count;   /* number of current heavy-hitters */
827};
828
829/* PIE */
830enum {
831	TCA_PIE_UNSPEC,
832	TCA_PIE_TARGET,
833	TCA_PIE_LIMIT,
834	TCA_PIE_TUPDATE,
835	TCA_PIE_ALPHA,
836	TCA_PIE_BETA,
837	TCA_PIE_ECN,
838	TCA_PIE_BYTEMODE,
839	__TCA_PIE_MAX
840};
841#define TCA_PIE_MAX   (__TCA_PIE_MAX - 1)
842
843struct tc_pie_xstats {
844	__u32 prob;             /* current probability */
845	__u32 delay;            /* current delay in ms */
846	__u32 avg_dq_rate;      /* current average dq_rate in bits/pie_time */
847	__u32 packets_in;       /* total number of packets enqueued */
848	__u32 dropped;          /* packets dropped due to pie_action */
849	__u32 overlimit;        /* dropped due to lack of space in queue */
850	__u32 maxq;             /* maximum queue size */
851	__u32 ecn_mark;         /* packets marked with ecn*/
852};
853#endif
854