net: sched: do not acquire qdisc spinlock in qdisc/class stats dump
[deliverable/linux.git] / net / sched / sch_htb.c
CommitLineData
87990467 1/*
1da177e4
LT
2 * net/sched/sch_htb.c Hierarchical token bucket, feed tree version
3 *
4 * This program is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU General Public License
6 * as published by the Free Software Foundation; either version
7 * 2 of the License, or (at your option) any later version.
8 *
9 * Authors: Martin Devera, <devik@cdi.cz>
10 *
11 * Credits (in time order) for older HTB versions:
12 * Stef Coene <stef.coene@docum.org>
13 * HTB support at LARTC mailing list
10297b99 14 * Ondrej Kraus, <krauso@barr.cz>
1da177e4
LT
15 * found missing INIT_QDISC(htb)
16 * Vladimir Smelhaus, Aamer Akhter, Bert Hubert
17 * helped a lot to locate nasty class stall bug
18 * Andi Kleen, Jamal Hadi, Bert Hubert
19 * code review and helpful comments on shaping
20 * Tomasz Wrona, <tw@eter.tym.pl>
21 * created test case so that I was able to fix nasty bug
22 * Wilfried Weissmann
23 * spotted bug in dequeue code and helped with fix
24 * Jiri Fojtasek
25 * fixed requeue routine
26 * and many others. thanks.
1da177e4 27 */
1da177e4 28#include <linux/module.h>
47083fc0 29#include <linux/moduleparam.h>
1da177e4
LT
30#include <linux/types.h>
31#include <linux/kernel.h>
1da177e4 32#include <linux/string.h>
1da177e4 33#include <linux/errno.h>
1da177e4
LT
34#include <linux/skbuff.h>
35#include <linux/list.h>
36#include <linux/compiler.h>
0ba48053 37#include <linux/rbtree.h>
1224736d 38#include <linux/workqueue.h>
5a0e3ad6 39#include <linux/slab.h>
dc5fc579 40#include <net/netlink.h>
292f1c7f 41#include <net/sch_generic.h>
1da177e4 42#include <net/pkt_sched.h>
1da177e4
LT
43
44/* HTB algorithm.
45 Author: devik@cdi.cz
46 ========================================================================
47 HTB is like TBF with multiple classes. It is also similar to CBQ because
10297b99 48 it allows to assign priority to each class in hierarchy.
1da177e4
LT
49 In fact it is another implementation of Floyd's formal sharing.
50
51 Levels:
10297b99 52 Each class is assigned level. Leaf has ALWAYS level 0 and root
1da177e4
LT
53 classes have level TC_HTB_MAXDEPTH-1. Interior nodes has level
54 one less than their parent.
55*/
56
47083fc0 57static int htb_hysteresis __read_mostly = 0; /* whether to use mode hysteresis for speedup */
87990467 58#define HTB_VER 0x30011 /* major must be matched with number suplied by TC as version */
1da177e4
LT
59
60#if HTB_VER >> 16 != TC_HTB_PROTOVER
61#error "Mismatched sch_htb.c and pkt_sch.h"
62#endif
63
47083fc0
JDB
64/* Module parameter and sysfs export */
65module_param (htb_hysteresis, int, 0640);
66MODULE_PARM_DESC(htb_hysteresis, "Hysteresis mode, less CPU load, less accurate");
67
64153ce0
ED
68static int htb_rate_est = 0; /* htb classes have a default rate estimator */
69module_param(htb_rate_est, int, 0640);
70MODULE_PARM_DESC(htb_rate_est, "setup a default rate estimator (4sec 16sec) for htb classes");
71
1da177e4
LT
72/* used internaly to keep status of single class */
73enum htb_cmode {
87990467
SH
74 HTB_CANT_SEND, /* class can't send and can't borrow */
75 HTB_MAY_BORROW, /* class can't send but may borrow */
76 HTB_CAN_SEND /* class can send */
1da177e4
LT
77};
78
c9364636
ED
79struct htb_prio {
80 union {
81 struct rb_root row;
82 struct rb_root feed;
83 };
84 struct rb_node *ptr;
85 /* When class changes from state 1->2 and disconnects from
86 * parent's feed then we lost ptr value and start from the
87 * first child again. Here we store classid of the
88 * last valid ptr (used when ptr is NULL).
89 */
90 u32 last_ptr_id;
91};
92
ca4ec90b
ED
93/* interior & leaf nodes; props specific to leaves are marked L:
94 * To reduce false sharing, place mostly read fields at beginning,
95 * and mostly written ones at the end.
96 */
87990467 97struct htb_class {
f4c1f3e0 98 struct Qdisc_class_common common;
ca4ec90b
ED
99 struct psched_ratecfg rate;
100 struct psched_ratecfg ceil;
101 s64 buffer, cbuffer;/* token bucket depth/rate */
102 s64 mbuffer; /* max wait time */
cbd37556 103 u32 prio; /* these two are used only by leaves... */
ca4ec90b
ED
104 int quantum; /* but stored for parent-to-leaf return */
105
25d8c0d5 106 struct tcf_proto __rcu *filter_list; /* class attached filters */
ca4ec90b
ED
107 int filter_cnt;
108 int refcnt; /* usage count of this class */
109
110 int level; /* our level (see above) */
111 unsigned int children;
112 struct htb_class *parent; /* parent class */
113
45203a3b 114 struct gnet_stats_rate_est64 rate_est;
1da177e4 115
ca4ec90b
ED
116 /*
117 * Written often fields
118 */
119 struct gnet_stats_basic_packed bstats;
120 struct gnet_stats_queue qstats;
121 struct tc_htb_xstats xstats; /* our special stats */
87990467 122
ca4ec90b
ED
123 /* token bucket parameters */
124 s64 tokens, ctokens;/* current number of tokens */
125 s64 t_c; /* checkpoint time */
c19f7a34 126
87990467
SH
127 union {
128 struct htb_class_leaf {
87990467 129 struct list_head drop_list;
c9364636
ED
130 int deficit[TC_HTB_MAXDEPTH];
131 struct Qdisc *q;
87990467
SH
132 } leaf;
133 struct htb_class_inner {
c9364636 134 struct htb_prio clprio[TC_HTB_NUMPRIO];
87990467
SH
135 } inner;
136 } un;
ca4ec90b 137 s64 pq_key;
87990467 138
ca4ec90b
ED
139 int prio_activity; /* for which prios are we active */
140 enum htb_cmode cmode; /* current mode of the class */
141 struct rb_node pq_node; /* node for event queue */
142 struct rb_node node[TC_HTB_NUMPRIO]; /* node for self or feed tree */
1da177e4
LT
143};
144
c9364636
ED
145struct htb_level {
146 struct rb_root wait_pq;
147 struct htb_prio hprio[TC_HTB_NUMPRIO];
148};
149
87990467 150struct htb_sched {
f4c1f3e0 151 struct Qdisc_class_hash clhash;
c9364636
ED
152 int defcls; /* class where unclassified flows go to */
153 int rate2quantum; /* quant = rate / rate2quantum */
1da177e4 154
c9364636 155 /* filters for qdisc itself */
25d8c0d5 156 struct tcf_proto __rcu *filter_list;
1da177e4 157
c9364636
ED
158#define HTB_WARN_TOOMANYEVENTS 0x1
159 unsigned int warned; /* only one warning */
160 int direct_qlen;
161 struct work_struct work;
1da177e4 162
c9364636
ED
163 /* non shaped skbs; let them go directly thru */
164 struct sk_buff_head direct_queue;
165 long direct_pkts;
1da177e4 166
c9364636 167 struct qdisc_watchdog watchdog;
1da177e4 168
c9364636
ED
169 s64 now; /* cached dequeue time */
170 struct list_head drops[TC_HTB_NUMPRIO];/* active leaves (for drops) */
1da177e4 171
c9364636
ED
172 /* time of nearest event per level (row) */
173 s64 near_ev_cache[TC_HTB_MAXDEPTH];
87990467 174
c9364636 175 int row_mask[TC_HTB_MAXDEPTH];
e82181de 176
c9364636 177 struct htb_level hlevel[TC_HTB_MAXDEPTH];
1da177e4
LT
178};
179
1da177e4 180/* find class in global hash table using given handle */
87990467 181static inline struct htb_class *htb_find(u32 handle, struct Qdisc *sch)
1da177e4
LT
182{
183 struct htb_sched *q = qdisc_priv(sch);
f4c1f3e0 184 struct Qdisc_class_common *clc;
0cef296d 185
f4c1f3e0
PM
186 clc = qdisc_class_find(&q->clhash, handle);
187 if (clc == NULL)
1da177e4 188 return NULL;
f4c1f3e0 189 return container_of(clc, struct htb_class, common);
1da177e4
LT
190}
191
192/**
193 * htb_classify - classify a packet into class
194 *
195 * It returns NULL if the packet should be dropped or -1 if the packet
196 * should be passed directly thru. In all other cases leaf class is returned.
197 * We allow direct class selection by classid in priority. The we examine
198 * filters in qdisc and in inner nodes (if higher filter points to the inner
199 * node). If we end up with classid MAJOR:0 we enqueue the skb into special
10297b99 200 * internal fifo (direct). These packets then go directly thru. If we still
25985edc 201 * have no valid leaf we try to use MAJOR:default leaf. It still unsuccessful
1da177e4
LT
202 * then finish and return direct queue.
203 */
cc7ec456 204#define HTB_DIRECT ((struct htb_class *)-1L)
1da177e4 205
87990467
SH
206static struct htb_class *htb_classify(struct sk_buff *skb, struct Qdisc *sch,
207 int *qerr)
1da177e4
LT
208{
209 struct htb_sched *q = qdisc_priv(sch);
210 struct htb_class *cl;
211 struct tcf_result res;
212 struct tcf_proto *tcf;
213 int result;
214
215 /* allow to select class by setting skb->priority to valid classid;
cc7ec456
ED
216 * note that nfmark can be used too by attaching filter fw with no
217 * rules in it
218 */
1da177e4 219 if (skb->priority == sch->handle)
87990467 220 return HTB_DIRECT; /* X:0 (direct flow) selected */
cc7ec456 221 cl = htb_find(skb->priority, sch);
29824310
HM
222 if (cl) {
223 if (cl->level == 0)
224 return cl;
225 /* Start with inner filter chain if a non-leaf class is selected */
25d8c0d5 226 tcf = rcu_dereference_bh(cl->filter_list);
29824310 227 } else {
25d8c0d5 228 tcf = rcu_dereference_bh(q->filter_list);
29824310 229 }
1da177e4 230
c27f339a 231 *qerr = NET_XMIT_SUCCESS | __NET_XMIT_BYPASS;
3b3ae880 232 while (tcf && (result = tc_classify(skb, tcf, &res, false)) >= 0) {
1da177e4
LT
233#ifdef CONFIG_NET_CLS_ACT
234 switch (result) {
235 case TC_ACT_QUEUED:
87990467 236 case TC_ACT_STOLEN:
378a2f09 237 *qerr = NET_XMIT_SUCCESS | __NET_XMIT_STOLEN;
1da177e4
LT
238 case TC_ACT_SHOT:
239 return NULL;
240 }
1da177e4 241#endif
cc7ec456
ED
242 cl = (void *)res.class;
243 if (!cl) {
1da177e4 244 if (res.classid == sch->handle)
87990467 245 return HTB_DIRECT; /* X:0 (direct flow) */
cc7ec456
ED
246 cl = htb_find(res.classid, sch);
247 if (!cl)
87990467 248 break; /* filter selected invalid classid */
1da177e4
LT
249 }
250 if (!cl->level)
87990467 251 return cl; /* we hit leaf; return it */
1da177e4
LT
252
253 /* we have got inner class; apply inner filter chain */
25d8c0d5 254 tcf = rcu_dereference_bh(cl->filter_list);
1da177e4
LT
255 }
256 /* classification failed; try to use default class */
87990467 257 cl = htb_find(TC_H_MAKE(TC_H_MAJ(sch->handle), q->defcls), sch);
1da177e4 258 if (!cl || cl->level)
87990467 259 return HTB_DIRECT; /* bad default .. this is safe bet */
1da177e4
LT
260 return cl;
261}
262
1da177e4
LT
263/**
264 * htb_add_to_id_tree - adds class to the round robin list
265 *
266 * Routine adds class to the list (actually tree) sorted by classid.
267 * Make sure that class is not already on such list for given prio.
268 */
87990467
SH
269static void htb_add_to_id_tree(struct rb_root *root,
270 struct htb_class *cl, int prio)
1da177e4
LT
271{
272 struct rb_node **p = &root->rb_node, *parent = NULL;
3bf72957 273
1da177e4 274 while (*p) {
87990467
SH
275 struct htb_class *c;
276 parent = *p;
1da177e4 277 c = rb_entry(parent, struct htb_class, node[prio]);
3bf72957 278
f4c1f3e0 279 if (cl->common.classid > c->common.classid)
1da177e4 280 p = &parent->rb_right;
87990467 281 else
1da177e4
LT
282 p = &parent->rb_left;
283 }
284 rb_link_node(&cl->node[prio], parent, p);
285 rb_insert_color(&cl->node[prio], root);
286}
287
288/**
289 * htb_add_to_wait_tree - adds class to the event queue with delay
290 *
291 * The class is added to priority event queue to indicate that class will
292 * change its mode in cl->pq_key microseconds. Make sure that class is not
293 * already in the queue.
294 */
87990467 295static void htb_add_to_wait_tree(struct htb_sched *q,
56b765b7 296 struct htb_class *cl, s64 delay)
1da177e4 297{
c9364636 298 struct rb_node **p = &q->hlevel[cl->level].wait_pq.rb_node, *parent = NULL;
3bf72957 299
fb983d45
PM
300 cl->pq_key = q->now + delay;
301 if (cl->pq_key == q->now)
1da177e4
LT
302 cl->pq_key++;
303
304 /* update the nearest event cache */
fb983d45 305 if (q->near_ev_cache[cl->level] > cl->pq_key)
1da177e4 306 q->near_ev_cache[cl->level] = cl->pq_key;
87990467 307
1da177e4 308 while (*p) {
87990467
SH
309 struct htb_class *c;
310 parent = *p;
1da177e4 311 c = rb_entry(parent, struct htb_class, pq_node);
fb983d45 312 if (cl->pq_key >= c->pq_key)
1da177e4 313 p = &parent->rb_right;
87990467 314 else
1da177e4
LT
315 p = &parent->rb_left;
316 }
317 rb_link_node(&cl->pq_node, parent, p);
c9364636 318 rb_insert_color(&cl->pq_node, &q->hlevel[cl->level].wait_pq);
1da177e4
LT
319}
320
321/**
322 * htb_next_rb_node - finds next node in binary tree
323 *
324 * When we are past last key we return NULL.
325 * Average complexity is 2 steps per call.
326 */
3696f625 327static inline void htb_next_rb_node(struct rb_node **n)
1da177e4
LT
328{
329 *n = rb_next(*n);
330}
331
332/**
333 * htb_add_class_to_row - add class to its row
334 *
335 * The class is added to row at priorities marked in mask.
336 * It does nothing if mask == 0.
337 */
87990467
SH
338static inline void htb_add_class_to_row(struct htb_sched *q,
339 struct htb_class *cl, int mask)
1da177e4 340{
1da177e4
LT
341 q->row_mask[cl->level] |= mask;
342 while (mask) {
343 int prio = ffz(~mask);
344 mask &= ~(1 << prio);
c9364636 345 htb_add_to_id_tree(&q->hlevel[cl->level].hprio[prio].row, cl, prio);
1da177e4
LT
346 }
347}
348
3696f625
SH
349/* If this triggers, it is a bug in this code, but it need not be fatal */
350static void htb_safe_rb_erase(struct rb_node *rb, struct rb_root *root)
351{
81771b3b 352 if (RB_EMPTY_NODE(rb)) {
3696f625
SH
353 WARN_ON(1);
354 } else {
355 rb_erase(rb, root);
356 RB_CLEAR_NODE(rb);
357 }
358}
359
360
1da177e4
LT
361/**
362 * htb_remove_class_from_row - removes class from its row
363 *
364 * The class is removed from row at priorities marked in mask.
365 * It does nothing if mask == 0.
366 */
87990467
SH
367static inline void htb_remove_class_from_row(struct htb_sched *q,
368 struct htb_class *cl, int mask)
1da177e4
LT
369{
370 int m = 0;
c9364636 371 struct htb_level *hlevel = &q->hlevel[cl->level];
3bf72957 372
1da177e4
LT
373 while (mask) {
374 int prio = ffz(~mask);
c9364636 375 struct htb_prio *hprio = &hlevel->hprio[prio];
3696f625 376
1da177e4 377 mask &= ~(1 << prio);
c9364636
ED
378 if (hprio->ptr == cl->node + prio)
379 htb_next_rb_node(&hprio->ptr);
3696f625 380
c9364636
ED
381 htb_safe_rb_erase(cl->node + prio, &hprio->row);
382 if (!hprio->row.rb_node)
1da177e4
LT
383 m |= 1 << prio;
384 }
1da177e4
LT
385 q->row_mask[cl->level] &= ~m;
386}
387
388/**
389 * htb_activate_prios - creates active classe's feed chain
390 *
391 * The class is connected to ancestors and/or appropriate rows
10297b99 392 * for priorities it is participating on. cl->cmode must be new
1da177e4
LT
393 * (activated) mode. It does nothing if cl->prio_activity == 0.
394 */
87990467 395static void htb_activate_prios(struct htb_sched *q, struct htb_class *cl)
1da177e4
LT
396{
397 struct htb_class *p = cl->parent;
87990467 398 long m, mask = cl->prio_activity;
1da177e4
LT
399
400 while (cl->cmode == HTB_MAY_BORROW && p && mask) {
87990467
SH
401 m = mask;
402 while (m) {
1da177e4
LT
403 int prio = ffz(~m);
404 m &= ~(1 << prio);
87990467 405
c9364636 406 if (p->un.inner.clprio[prio].feed.rb_node)
1da177e4 407 /* parent already has its feed in use so that
cc7ec456
ED
408 * reset bit in mask as parent is already ok
409 */
1da177e4 410 mask &= ~(1 << prio);
87990467 411
c9364636 412 htb_add_to_id_tree(&p->un.inner.clprio[prio].feed, cl, prio);
1da177e4 413 }
1da177e4 414 p->prio_activity |= mask;
87990467
SH
415 cl = p;
416 p = cl->parent;
3bf72957 417
1da177e4
LT
418 }
419 if (cl->cmode == HTB_CAN_SEND && mask)
87990467 420 htb_add_class_to_row(q, cl, mask);
1da177e4
LT
421}
422
423/**
424 * htb_deactivate_prios - remove class from feed chain
425 *
10297b99 426 * cl->cmode must represent old mode (before deactivation). It does
1da177e4
LT
427 * nothing if cl->prio_activity == 0. Class is removed from all feed
428 * chains and rows.
429 */
430static void htb_deactivate_prios(struct htb_sched *q, struct htb_class *cl)
431{
432 struct htb_class *p = cl->parent;
87990467 433 long m, mask = cl->prio_activity;
1da177e4
LT
434
435 while (cl->cmode == HTB_MAY_BORROW && p && mask) {
87990467
SH
436 m = mask;
437 mask = 0;
1da177e4
LT
438 while (m) {
439 int prio = ffz(~m);
440 m &= ~(1 << prio);
87990467 441
c9364636 442 if (p->un.inner.clprio[prio].ptr == cl->node + prio) {
1da177e4 443 /* we are removing child which is pointed to from
cc7ec456
ED
444 * parent feed - forget the pointer but remember
445 * classid
446 */
c9364636
ED
447 p->un.inner.clprio[prio].last_ptr_id = cl->common.classid;
448 p->un.inner.clprio[prio].ptr = NULL;
1da177e4 449 }
87990467 450
c9364636
ED
451 htb_safe_rb_erase(cl->node + prio,
452 &p->un.inner.clprio[prio].feed);
87990467 453
c9364636 454 if (!p->un.inner.clprio[prio].feed.rb_node)
1da177e4
LT
455 mask |= 1 << prio;
456 }
3bf72957 457
1da177e4 458 p->prio_activity &= ~mask;
87990467
SH
459 cl = p;
460 p = cl->parent;
3bf72957 461
1da177e4 462 }
87990467
SH
463 if (cl->cmode == HTB_CAN_SEND && mask)
464 htb_remove_class_from_row(q, cl, mask);
1da177e4
LT
465}
466
56b765b7 467static inline s64 htb_lowater(const struct htb_class *cl)
18a63e86 468{
47083fc0
JDB
469 if (htb_hysteresis)
470 return cl->cmode != HTB_CANT_SEND ? -cl->cbuffer : 0;
471 else
472 return 0;
18a63e86 473}
56b765b7 474static inline s64 htb_hiwater(const struct htb_class *cl)
18a63e86 475{
47083fc0
JDB
476 if (htb_hysteresis)
477 return cl->cmode == HTB_CAN_SEND ? -cl->buffer : 0;
478 else
479 return 0;
18a63e86 480}
47083fc0 481
18a63e86 482
1da177e4
LT
483/**
484 * htb_class_mode - computes and returns current class mode
485 *
486 * It computes cl's mode at time cl->t_c+diff and returns it. If mode
487 * is not HTB_CAN_SEND then cl->pq_key is updated to time difference
10297b99 488 * from now to time when cl will change its state.
1da177e4 489 * Also it is worth to note that class mode doesn't change simply
10297b99 490 * at cl->{c,}tokens == 0 but there can rather be hysteresis of
1da177e4
LT
491 * 0 .. -cl->{c,}buffer range. It is meant to limit number of
492 * mode transitions per time unit. The speed gain is about 1/6.
493 */
87990467 494static inline enum htb_cmode
56b765b7 495htb_class_mode(struct htb_class *cl, s64 *diff)
1da177e4 496{
56b765b7 497 s64 toks;
1da177e4 498
87990467
SH
499 if ((toks = (cl->ctokens + *diff)) < htb_lowater(cl)) {
500 *diff = -toks;
501 return HTB_CANT_SEND;
502 }
18a63e86 503
87990467
SH
504 if ((toks = (cl->tokens + *diff)) >= htb_hiwater(cl))
505 return HTB_CAN_SEND;
1da177e4 506
87990467
SH
507 *diff = -toks;
508 return HTB_MAY_BORROW;
1da177e4
LT
509}
510
511/**
512 * htb_change_class_mode - changes classe's mode
513 *
514 * This should be the only way how to change classe's mode under normal
515 * cirsumstances. Routine will update feed lists linkage, change mode
516 * and add class to the wait event queue if appropriate. New mode should
517 * be different from old one and cl->pq_key has to be valid if changing
518 * to mode other than HTB_CAN_SEND (see htb_add_to_wait_tree).
519 */
87990467 520static void
56b765b7 521htb_change_class_mode(struct htb_sched *q, struct htb_class *cl, s64 *diff)
87990467
SH
522{
523 enum htb_cmode new_mode = htb_class_mode(cl, diff);
1da177e4
LT
524
525 if (new_mode == cl->cmode)
87990467
SH
526 return;
527
528 if (cl->prio_activity) { /* not necessary: speed optimization */
529 if (cl->cmode != HTB_CANT_SEND)
530 htb_deactivate_prios(q, cl);
1da177e4 531 cl->cmode = new_mode;
87990467
SH
532 if (new_mode != HTB_CANT_SEND)
533 htb_activate_prios(q, cl);
534 } else
1da177e4
LT
535 cl->cmode = new_mode;
536}
537
538/**
10297b99 539 * htb_activate - inserts leaf cl into appropriate active feeds
1da177e4
LT
540 *
541 * Routine learns (new) priority of leaf and activates feed chain
542 * for the prio. It can be called on already active leaf safely.
543 * It also adds leaf into droplist.
544 */
87990467 545static inline void htb_activate(struct htb_sched *q, struct htb_class *cl)
1da177e4 546{
547b792c 547 WARN_ON(cl->level || !cl->un.leaf.q || !cl->un.leaf.q->q.qlen);
3bf72957 548
1da177e4 549 if (!cl->prio_activity) {
c19f7a34 550 cl->prio_activity = 1 << cl->prio;
87990467
SH
551 htb_activate_prios(q, cl);
552 list_add_tail(&cl->un.leaf.drop_list,
c19f7a34 553 q->drops + cl->prio);
1da177e4
LT
554 }
555}
556
557/**
10297b99 558 * htb_deactivate - remove leaf cl from active feeds
1da177e4
LT
559 *
560 * Make sure that leaf is active. In the other words it can't be called
561 * with non-active leaf. It also removes class from the drop list.
562 */
87990467 563static inline void htb_deactivate(struct htb_sched *q, struct htb_class *cl)
1da177e4 564{
547b792c 565 WARN_ON(!cl->prio_activity);
3bf72957 566
87990467 567 htb_deactivate_prios(q, cl);
1da177e4
LT
568 cl->prio_activity = 0;
569 list_del_init(&cl->un.leaf.drop_list);
570}
571
572static int htb_enqueue(struct sk_buff *skb, struct Qdisc *sch)
573{
f30ab418 574 int uninitialized_var(ret);
87990467
SH
575 struct htb_sched *q = qdisc_priv(sch);
576 struct htb_class *cl = htb_classify(skb, sch, &ret);
577
578 if (cl == HTB_DIRECT) {
579 /* enqueue to helper queue */
580 if (q->direct_queue.qlen < q->direct_qlen) {
581 __skb_queue_tail(&q->direct_queue, skb);
582 q->direct_pkts++;
583 } else {
17045755 584 return qdisc_drop(skb, sch);
87990467 585 }
1da177e4 586#ifdef CONFIG_NET_CLS_ACT
87990467 587 } else if (!cl) {
c27f339a 588 if (ret & __NET_XMIT_BYPASS)
25331d6c 589 qdisc_qstats_drop(sch);
87990467
SH
590 kfree_skb(skb);
591 return ret;
1da177e4 592#endif
378a2f09
JP
593 } else if ((ret = qdisc_enqueue(skb, cl->un.leaf.q)) != NET_XMIT_SUCCESS) {
594 if (net_xmit_drop_count(ret)) {
25331d6c 595 qdisc_qstats_drop(sch);
378a2f09
JP
596 cl->qstats.drops++;
597 }
69747650 598 return ret;
87990467 599 } else {
87990467
SH
600 htb_activate(q, cl);
601 }
602
431e3a8e 603 qdisc_qstats_backlog_inc(sch, skb);
87990467 604 sch->q.qlen++;
87990467 605 return NET_XMIT_SUCCESS;
1da177e4
LT
606}
607
56b765b7 608static inline void htb_accnt_tokens(struct htb_class *cl, int bytes, s64 diff)
59e4220a 609{
56b765b7 610 s64 toks = diff + cl->tokens;
59e4220a
JP
611
612 if (toks > cl->buffer)
613 toks = cl->buffer;
292f1c7f 614 toks -= (s64) psched_l2t_ns(&cl->rate, bytes);
59e4220a
JP
615 if (toks <= -cl->mbuffer)
616 toks = 1 - cl->mbuffer;
617
618 cl->tokens = toks;
619}
620
56b765b7 621static inline void htb_accnt_ctokens(struct htb_class *cl, int bytes, s64 diff)
59e4220a 622{
56b765b7 623 s64 toks = diff + cl->ctokens;
59e4220a
JP
624
625 if (toks > cl->cbuffer)
626 toks = cl->cbuffer;
292f1c7f 627 toks -= (s64) psched_l2t_ns(&cl->ceil, bytes);
59e4220a
JP
628 if (toks <= -cl->mbuffer)
629 toks = 1 - cl->mbuffer;
630
631 cl->ctokens = toks;
632}
633
1da177e4
LT
634/**
635 * htb_charge_class - charges amount "bytes" to leaf and ancestors
636 *
637 * Routine assumes that packet "bytes" long was dequeued from leaf cl
638 * borrowing from "level". It accounts bytes to ceil leaky bucket for
639 * leaf and all ancestors and to rate bucket for ancestors at levels
640 * "level" and higher. It also handles possible change of mode resulting
641 * from the update. Note that mode can also increase here (MAY_BORROW to
642 * CAN_SEND) because we can use more precise clock that event queue here.
643 * In such case we remove class from event queue first.
644 */
87990467 645static void htb_charge_class(struct htb_sched *q, struct htb_class *cl,
c9726d68 646 int level, struct sk_buff *skb)
87990467 647{
0abf77e5 648 int bytes = qdisc_pkt_len(skb);
1da177e4 649 enum htb_cmode old_mode;
56b765b7 650 s64 diff;
1da177e4
LT
651
652 while (cl) {
56b765b7 653 diff = min_t(s64, q->now - cl->t_c, cl->mbuffer);
1da177e4 654 if (cl->level >= level) {
87990467
SH
655 if (cl->level == level)
656 cl->xstats.lends++;
59e4220a 657 htb_accnt_tokens(cl, bytes, diff);
1da177e4
LT
658 } else {
659 cl->xstats.borrows++;
87990467 660 cl->tokens += diff; /* we moved t_c; update tokens */
1da177e4 661 }
59e4220a 662 htb_accnt_ctokens(cl, bytes, diff);
1da177e4 663 cl->t_c = q->now;
1da177e4 664
87990467
SH
665 old_mode = cl->cmode;
666 diff = 0;
667 htb_change_class_mode(q, cl, &diff);
1da177e4
LT
668 if (old_mode != cl->cmode) {
669 if (old_mode != HTB_CAN_SEND)
c9364636 670 htb_safe_rb_erase(&cl->pq_node, &q->hlevel[cl->level].wait_pq);
1da177e4 671 if (cl->cmode != HTB_CAN_SEND)
87990467 672 htb_add_to_wait_tree(q, cl, diff);
1da177e4 673 }
1da177e4 674
bfe0d029
ED
675 /* update basic stats except for leaves which are already updated */
676 if (cl->level)
677 bstats_update(&cl->bstats, skb);
678
1da177e4
LT
679 cl = cl->parent;
680 }
681}
682
683/**
684 * htb_do_events - make mode changes to classes at the level
685 *
fb983d45 686 * Scans event queue for pending events and applies them. Returns time of
1224736d 687 * next pending event (0 for no event in pq, q->now for too many events).
fb983d45 688 * Note: Applied are events whose have cl->pq_key <= q->now.
1da177e4 689 */
c9364636 690static s64 htb_do_events(struct htb_sched *q, const int level,
5343a7f8 691 unsigned long start)
1da177e4 692{
8f3ea33a 693 /* don't run for longer than 2 jiffies; 2 is used instead of
cc7ec456
ED
694 * 1 to simplify things when jiffy is going to be incremented
695 * too soon
696 */
a73be040 697 unsigned long stop_at = start + 2;
c9364636
ED
698 struct rb_root *wait_pq = &q->hlevel[level].wait_pq;
699
8f3ea33a 700 while (time_before(jiffies, stop_at)) {
1da177e4 701 struct htb_class *cl;
56b765b7 702 s64 diff;
c9364636 703 struct rb_node *p = rb_first(wait_pq);
30bdbe39 704
87990467
SH
705 if (!p)
706 return 0;
1da177e4
LT
707
708 cl = rb_entry(p, struct htb_class, pq_node);
fb983d45
PM
709 if (cl->pq_key > q->now)
710 return cl->pq_key;
711
c9364636 712 htb_safe_rb_erase(p, wait_pq);
56b765b7 713 diff = min_t(s64, q->now - cl->t_c, cl->mbuffer);
87990467 714 htb_change_class_mode(q, cl, &diff);
1da177e4 715 if (cl->cmode != HTB_CAN_SEND)
87990467 716 htb_add_to_wait_tree(q, cl, diff);
1da177e4 717 }
1224736d
JP
718
719 /* too much load - let's continue after a break for scheduling */
e82181de 720 if (!(q->warned & HTB_WARN_TOOMANYEVENTS)) {
c17988a9 721 pr_warn("htb: too many events!\n");
e82181de
JP
722 q->warned |= HTB_WARN_TOOMANYEVENTS;
723 }
1224736d
JP
724
725 return q->now;
1da177e4
LT
726}
727
728/* Returns class->node+prio from id-tree where classe's id is >= id. NULL
cc7ec456
ED
729 * is no such one exists.
730 */
87990467
SH
731static struct rb_node *htb_id_find_next_upper(int prio, struct rb_node *n,
732 u32 id)
1da177e4
LT
733{
734 struct rb_node *r = NULL;
735 while (n) {
87990467
SH
736 struct htb_class *cl =
737 rb_entry(n, struct htb_class, node[prio]);
87990467 738
f4c1f3e0 739 if (id > cl->common.classid) {
1da177e4 740 n = n->rb_right;
1b5c0077 741 } else if (id < cl->common.classid) {
1da177e4
LT
742 r = n;
743 n = n->rb_left;
1b5c0077
JP
744 } else {
745 return n;
1da177e4
LT
746 }
747 }
748 return r;
749}
750
751/**
752 * htb_lookup_leaf - returns next leaf class in DRR order
753 *
754 * Find leaf where current feed pointers points to.
755 */
c9364636 756static struct htb_class *htb_lookup_leaf(struct htb_prio *hprio, const int prio)
1da177e4
LT
757{
758 int i;
759 struct {
760 struct rb_node *root;
761 struct rb_node **pptr;
762 u32 *pid;
87990467
SH
763 } stk[TC_HTB_MAXDEPTH], *sp = stk;
764
c9364636
ED
765 BUG_ON(!hprio->row.rb_node);
766 sp->root = hprio->row.rb_node;
767 sp->pptr = &hprio->ptr;
768 sp->pid = &hprio->last_ptr_id;
1da177e4
LT
769
770 for (i = 0; i < 65535; i++) {
87990467 771 if (!*sp->pptr && *sp->pid) {
10297b99 772 /* ptr was invalidated but id is valid - try to recover
cc7ec456
ED
773 * the original or next ptr
774 */
87990467
SH
775 *sp->pptr =
776 htb_id_find_next_upper(prio, sp->root, *sp->pid);
1da177e4 777 }
87990467 778 *sp->pid = 0; /* ptr is valid now so that remove this hint as it
cc7ec456
ED
779 * can become out of date quickly
780 */
87990467 781 if (!*sp->pptr) { /* we are at right end; rewind & go up */
1da177e4 782 *sp->pptr = sp->root;
87990467 783 while ((*sp->pptr)->rb_left)
1da177e4
LT
784 *sp->pptr = (*sp->pptr)->rb_left;
785 if (sp > stk) {
786 sp--;
512bb43e
JP
787 if (!*sp->pptr) {
788 WARN_ON(1);
87990467 789 return NULL;
512bb43e 790 }
87990467 791 htb_next_rb_node(sp->pptr);
1da177e4
LT
792 }
793 } else {
794 struct htb_class *cl;
c9364636
ED
795 struct htb_prio *clp;
796
87990467
SH
797 cl = rb_entry(*sp->pptr, struct htb_class, node[prio]);
798 if (!cl->level)
1da177e4 799 return cl;
c9364636
ED
800 clp = &cl->un.inner.clprio[prio];
801 (++sp)->root = clp->feed.rb_node;
802 sp->pptr = &clp->ptr;
803 sp->pid = &clp->last_ptr_id;
1da177e4
LT
804 }
805 }
547b792c 806 WARN_ON(1);
1da177e4
LT
807 return NULL;
808}
809
810/* dequeues packet at given priority and level; call only if
cc7ec456
ED
811 * you are sure that there is active class at prio/level
812 */
c9364636
ED
813static struct sk_buff *htb_dequeue_tree(struct htb_sched *q, const int prio,
814 const int level)
1da177e4
LT
815{
816 struct sk_buff *skb = NULL;
87990467 817 struct htb_class *cl, *start;
c9364636
ED
818 struct htb_level *hlevel = &q->hlevel[level];
819 struct htb_prio *hprio = &hlevel->hprio[prio];
820
1da177e4 821 /* look initial class up in the row */
c9364636 822 start = cl = htb_lookup_leaf(hprio, prio);
87990467 823
1da177e4
LT
824 do {
825next:
512bb43e 826 if (unlikely(!cl))
87990467 827 return NULL;
1da177e4
LT
828
829 /* class can be empty - it is unlikely but can be true if leaf
cc7ec456
ED
830 * qdisc drops packets in enqueue routine or if someone used
831 * graft operation on the leaf since last dequeue;
832 * simply deactivate and skip such class
833 */
1da177e4
LT
834 if (unlikely(cl->un.leaf.q->q.qlen == 0)) {
835 struct htb_class *next;
87990467 836 htb_deactivate(q, cl);
1da177e4
LT
837
838 /* row/level might become empty */
839 if ((q->row_mask[level] & (1 << prio)) == 0)
87990467 840 return NULL;
1da177e4 841
c9364636 842 next = htb_lookup_leaf(hprio, prio);
87990467
SH
843
844 if (cl == start) /* fix start if we just deleted it */
1da177e4
LT
845 start = next;
846 cl = next;
847 goto next;
848 }
87990467
SH
849
850 skb = cl->un.leaf.q->dequeue(cl->un.leaf.q);
851 if (likely(skb != NULL))
1da177e4 852 break;
633fe66e 853
b00355db 854 qdisc_warn_nonwc("htb", cl->un.leaf.q);
c9364636
ED
855 htb_next_rb_node(level ? &cl->parent->un.inner.clprio[prio].ptr:
856 &q->hlevel[0].hprio[prio].ptr);
857 cl = htb_lookup_leaf(hprio, prio);
1da177e4
LT
858
859 } while (cl != start);
860
861 if (likely(skb != NULL)) {
196d97f6 862 bstats_update(&cl->bstats, skb);
0abf77e5
JK
863 cl->un.leaf.deficit[level] -= qdisc_pkt_len(skb);
864 if (cl->un.leaf.deficit[level] < 0) {
c19f7a34 865 cl->un.leaf.deficit[level] += cl->quantum;
c9364636
ED
866 htb_next_rb_node(level ? &cl->parent->un.inner.clprio[prio].ptr :
867 &q->hlevel[0].hprio[prio].ptr);
1da177e4
LT
868 }
869 /* this used to be after charge_class but this constelation
cc7ec456
ED
870 * gives us slightly better performance
871 */
1da177e4 872 if (!cl->un.leaf.q->q.qlen)
87990467 873 htb_deactivate(q, cl);
c9726d68 874 htb_charge_class(q, cl, level, skb);
1da177e4
LT
875 }
876 return skb;
877}
878
1da177e4
LT
879static struct sk_buff *htb_dequeue(struct Qdisc *sch)
880{
9190b3b3 881 struct sk_buff *skb;
1da177e4
LT
882 struct htb_sched *q = qdisc_priv(sch);
883 int level;
5343a7f8 884 s64 next_event;
a73be040 885 unsigned long start_at;
1da177e4
LT
886
887 /* try to dequeue direct packets as high prio (!) to minimize cpu work */
87990467
SH
888 skb = __skb_dequeue(&q->direct_queue);
889 if (skb != NULL) {
9190b3b3
ED
890ok:
891 qdisc_bstats_update(sch, skb);
fd245a4a 892 qdisc_unthrottled(sch);
431e3a8e 893 qdisc_qstats_backlog_dec(sch, skb);
1da177e4
LT
894 sch->q.qlen--;
895 return skb;
896 }
897
87990467
SH
898 if (!sch->q.qlen)
899 goto fin;
d2de875c 900 q->now = ktime_get_ns();
a73be040 901 start_at = jiffies;
1da177e4 902
d2fe85da 903 next_event = q->now + 5LLU * NSEC_PER_SEC;
633fe66e 904
1da177e4
LT
905 for (level = 0; level < TC_HTB_MAXDEPTH; level++) {
906 /* common case optimization - skip event handler quickly */
907 int m;
c9364636 908 s64 event = q->near_ev_cache[level];
fb983d45 909
c9364636 910 if (q->now >= event) {
a73be040 911 event = htb_do_events(q, level, start_at);
2e4b3b0e 912 if (!event)
56b765b7 913 event = q->now + NSEC_PER_SEC;
2e4b3b0e 914 q->near_ev_cache[level] = event;
c9364636 915 }
fb983d45 916
c0851347 917 if (next_event > event)
fb983d45 918 next_event = event;
87990467 919
1da177e4
LT
920 m = ~q->row_mask[level];
921 while (m != (int)(-1)) {
87990467 922 int prio = ffz(m);
cc7ec456 923
1da177e4 924 m |= 1 << prio;
87990467 925 skb = htb_dequeue_tree(q, prio, level);
9190b3b3
ED
926 if (likely(skb != NULL))
927 goto ok;
1da177e4
LT
928 }
929 }
25331d6c 930 qdisc_qstats_overlimit(sch);
a9efad8b
ED
931 if (likely(next_event > q->now))
932 qdisc_watchdog_schedule_ns(&q->watchdog, next_event, true);
933 else
1224736d 934 schedule_work(&q->work);
1da177e4 935fin:
1da177e4
LT
936 return skb;
937}
938
939/* try to drop from each class (by prio) until one succeed */
87990467 940static unsigned int htb_drop(struct Qdisc *sch)
1da177e4
LT
941{
942 struct htb_sched *q = qdisc_priv(sch);
943 int prio;
944
945 for (prio = TC_HTB_NUMPRIO - 1; prio >= 0; prio--) {
946 struct list_head *p;
87990467 947 list_for_each(p, q->drops + prio) {
1da177e4
LT
948 struct htb_class *cl = list_entry(p, struct htb_class,
949 un.leaf.drop_list);
950 unsigned int len;
87990467
SH
951 if (cl->un.leaf.q->ops->drop &&
952 (len = cl->un.leaf.q->ops->drop(cl->un.leaf.q))) {
431e3a8e 953 sch->qstats.backlog -= len;
1da177e4
LT
954 sch->q.qlen--;
955 if (!cl->un.leaf.q->q.qlen)
87990467 956 htb_deactivate(q, cl);
1da177e4
LT
957 return len;
958 }
959 }
960 }
961 return 0;
962}
963
964/* reset all classes */
965/* always caled under BH & queue lock */
87990467 966static void htb_reset(struct Qdisc *sch)
1da177e4
LT
967{
968 struct htb_sched *q = qdisc_priv(sch);
f4c1f3e0 969 struct htb_class *cl;
f4c1f3e0 970 unsigned int i;
0cef296d 971
f4c1f3e0 972 for (i = 0; i < q->clhash.hashsize; i++) {
b67bfe0d 973 hlist_for_each_entry(cl, &q->clhash.hash[i], common.hnode) {
1da177e4 974 if (cl->level)
87990467 975 memset(&cl->un.inner, 0, sizeof(cl->un.inner));
1da177e4 976 else {
87990467 977 if (cl->un.leaf.q)
1da177e4
LT
978 qdisc_reset(cl->un.leaf.q);
979 INIT_LIST_HEAD(&cl->un.leaf.drop_list);
980 }
981 cl->prio_activity = 0;
982 cl->cmode = HTB_CAN_SEND;
1da177e4
LT
983 }
984 }
fb983d45 985 qdisc_watchdog_cancel(&q->watchdog);
1da177e4
LT
986 __skb_queue_purge(&q->direct_queue);
987 sch->q.qlen = 0;
431e3a8e 988 sch->qstats.backlog = 0;
c9364636 989 memset(q->hlevel, 0, sizeof(q->hlevel));
87990467 990 memset(q->row_mask, 0, sizeof(q->row_mask));
1da177e4 991 for (i = 0; i < TC_HTB_NUMPRIO; i++)
87990467 992 INIT_LIST_HEAD(q->drops + i);
1da177e4
LT
993}
994
27a3421e
PM
995static const struct nla_policy htb_policy[TCA_HTB_MAX + 1] = {
996 [TCA_HTB_PARMS] = { .len = sizeof(struct tc_htb_opt) },
997 [TCA_HTB_INIT] = { .len = sizeof(struct tc_htb_glob) },
998 [TCA_HTB_CTAB] = { .type = NLA_BINARY, .len = TC_RTAB_SIZE },
999 [TCA_HTB_RTAB] = { .type = NLA_BINARY, .len = TC_RTAB_SIZE },
6906f4ed 1000 [TCA_HTB_DIRECT_QLEN] = { .type = NLA_U32 },
df62cdf3
ED
1001 [TCA_HTB_RATE64] = { .type = NLA_U64 },
1002 [TCA_HTB_CEIL64] = { .type = NLA_U64 },
27a3421e
PM
1003};
1004
1224736d
JP
1005static void htb_work_func(struct work_struct *work)
1006{
1007 struct htb_sched *q = container_of(work, struct htb_sched, work);
1008 struct Qdisc *sch = q->watchdog.qdisc;
1009
1010 __netif_schedule(qdisc_root(sch));
1011}
1012
1e90474c 1013static int htb_init(struct Qdisc *sch, struct nlattr *opt)
1da177e4
LT
1014{
1015 struct htb_sched *q = qdisc_priv(sch);
6906f4ed 1016 struct nlattr *tb[TCA_HTB_MAX + 1];
1da177e4 1017 struct tc_htb_glob *gopt;
cee63723 1018 int err;
1da177e4 1019 int i;
cee63723
PM
1020
1021 if (!opt)
1022 return -EINVAL;
1023
6906f4ed 1024 err = nla_parse_nested(tb, TCA_HTB_MAX, opt, htb_policy);
cee63723
PM
1025 if (err < 0)
1026 return err;
1027
6906f4ed 1028 if (!tb[TCA_HTB_INIT])
1da177e4 1029 return -EINVAL;
6906f4ed 1030
1e90474c 1031 gopt = nla_data(tb[TCA_HTB_INIT]);
6906f4ed 1032 if (gopt->version != HTB_VER >> 16)
1da177e4 1033 return -EINVAL;
1da177e4 1034
f4c1f3e0
PM
1035 err = qdisc_class_hash_init(&q->clhash);
1036 if (err < 0)
1037 return err;
1da177e4 1038 for (i = 0; i < TC_HTB_NUMPRIO; i++)
87990467 1039 INIT_LIST_HEAD(q->drops + i);
1da177e4 1040
fb983d45 1041 qdisc_watchdog_init(&q->watchdog, sch);
1224736d 1042 INIT_WORK(&q->work, htb_work_func);
ab34f648 1043 __skb_queue_head_init(&q->direct_queue);
1da177e4 1044
6906f4ed
ED
1045 if (tb[TCA_HTB_DIRECT_QLEN])
1046 q->direct_qlen = nla_get_u32(tb[TCA_HTB_DIRECT_QLEN]);
348e3435 1047 else
6906f4ed 1048 q->direct_qlen = qdisc_dev(sch)->tx_queue_len;
348e3435 1049
1da177e4
LT
1050 if ((q->rate2quantum = gopt->rate2quantum) < 1)
1051 q->rate2quantum = 1;
1052 q->defcls = gopt->defcls;
1053
1054 return 0;
1055}
1056
1057static int htb_dump(struct Qdisc *sch, struct sk_buff *skb)
1058{
1059 struct htb_sched *q = qdisc_priv(sch);
4b3550ef 1060 struct nlattr *nest;
1da177e4 1061 struct tc_htb_glob gopt;
4b3550ef 1062
6f542efc
ED
1063 /* Its safe to not acquire qdisc lock. As we hold RTNL,
1064 * no change can happen on the qdisc parameters.
1065 */
1da177e4 1066
4b3550ef 1067 gopt.direct_pkts = q->direct_pkts;
1da177e4
LT
1068 gopt.version = HTB_VER;
1069 gopt.rate2quantum = q->rate2quantum;
1070 gopt.defcls = q->defcls;
3bf72957 1071 gopt.debug = 0;
4b3550ef
PM
1072
1073 nest = nla_nest_start(skb, TCA_OPTIONS);
1074 if (nest == NULL)
1075 goto nla_put_failure;
6906f4ed
ED
1076 if (nla_put(skb, TCA_HTB_INIT, sizeof(gopt), &gopt) ||
1077 nla_put_u32(skb, TCA_HTB_DIRECT_QLEN, q->direct_qlen))
1b34ec43 1078 goto nla_put_failure;
4b3550ef 1079
6f542efc 1080 return nla_nest_end(skb, nest);
4b3550ef 1081
1e90474c 1082nla_put_failure:
4b3550ef 1083 nla_nest_cancel(skb, nest);
1da177e4
LT
1084 return -1;
1085}
1086
1087static int htb_dump_class(struct Qdisc *sch, unsigned long arg,
87990467 1088 struct sk_buff *skb, struct tcmsg *tcm)
1da177e4 1089{
87990467 1090 struct htb_class *cl = (struct htb_class *)arg;
4b3550ef 1091 struct nlattr *nest;
1da177e4
LT
1092 struct tc_htb_opt opt;
1093
6f542efc
ED
1094 /* Its safe to not acquire qdisc lock. As we hold RTNL,
1095 * no change can happen on the class parameters.
1096 */
f4c1f3e0
PM
1097 tcm->tcm_parent = cl->parent ? cl->parent->common.classid : TC_H_ROOT;
1098 tcm->tcm_handle = cl->common.classid;
1da177e4
LT
1099 if (!cl->level && cl->un.leaf.q)
1100 tcm->tcm_info = cl->un.leaf.q->handle;
1101
4b3550ef
PM
1102 nest = nla_nest_start(skb, TCA_OPTIONS);
1103 if (nest == NULL)
1104 goto nla_put_failure;
1da177e4 1105
87990467 1106 memset(&opt, 0, sizeof(opt));
1da177e4 1107
01cb71d2 1108 psched_ratecfg_getrate(&opt.rate, &cl->rate);
9c10f411 1109 opt.buffer = PSCHED_NS2TICKS(cl->buffer);
01cb71d2 1110 psched_ratecfg_getrate(&opt.ceil, &cl->ceil);
9c10f411 1111 opt.cbuffer = PSCHED_NS2TICKS(cl->cbuffer);
c19f7a34
JP
1112 opt.quantum = cl->quantum;
1113 opt.prio = cl->prio;
87990467 1114 opt.level = cl->level;
1b34ec43
DM
1115 if (nla_put(skb, TCA_HTB_PARMS, sizeof(opt), &opt))
1116 goto nla_put_failure;
df62cdf3 1117 if ((cl->rate.rate_bytes_ps >= (1ULL << 32)) &&
2a51c1e8
ND
1118 nla_put_u64_64bit(skb, TCA_HTB_RATE64, cl->rate.rate_bytes_ps,
1119 TCA_HTB_PAD))
df62cdf3
ED
1120 goto nla_put_failure;
1121 if ((cl->ceil.rate_bytes_ps >= (1ULL << 32)) &&
2a51c1e8
ND
1122 nla_put_u64_64bit(skb, TCA_HTB_CEIL64, cl->ceil.rate_bytes_ps,
1123 TCA_HTB_PAD))
df62cdf3 1124 goto nla_put_failure;
4b3550ef 1125
6f542efc 1126 return nla_nest_end(skb, nest);
4b3550ef 1127
1e90474c 1128nla_put_failure:
4b3550ef 1129 nla_nest_cancel(skb, nest);
1da177e4
LT
1130 return -1;
1131}
1132
1133static int
87990467 1134htb_dump_class_stats(struct Qdisc *sch, unsigned long arg, struct gnet_dump *d)
1da177e4 1135{
87990467 1136 struct htb_class *cl = (struct htb_class *)arg;
64015853 1137 __u32 qlen = 0;
1da177e4 1138
1da177e4 1139 if (!cl->level && cl->un.leaf.q)
64015853 1140 qlen = cl->un.leaf.q->q.qlen;
5343a7f8
ED
1141 cl->xstats.tokens = PSCHED_NS2TICKS(cl->tokens);
1142 cl->xstats.ctokens = PSCHED_NS2TICKS(cl->ctokens);
1da177e4 1143
edb09eb1
ED
1144 if (gnet_stats_copy_basic(qdisc_root_sleeping_running(sch),
1145 d, NULL, &cl->bstats) < 0 ||
d250a5f9 1146 gnet_stats_copy_rate_est(d, NULL, &cl->rate_est) < 0 ||
b0ab6f92 1147 gnet_stats_copy_queue(d, NULL, &cl->qstats, qlen) < 0)
1da177e4
LT
1148 return -1;
1149
1150 return gnet_stats_copy_app(d, &cl->xstats, sizeof(cl->xstats));
1151}
1152
1153static int htb_graft(struct Qdisc *sch, unsigned long arg, struct Qdisc *new,
87990467 1154 struct Qdisc **old)
1da177e4 1155{
87990467 1156 struct htb_class *cl = (struct htb_class *)arg;
1da177e4 1157
5b9a9ccf
PM
1158 if (cl->level)
1159 return -EINVAL;
1160 if (new == NULL &&
3511c913 1161 (new = qdisc_create_dflt(sch->dev_queue, &pfifo_qdisc_ops,
5b9a9ccf
PM
1162 cl->common.classid)) == NULL)
1163 return -ENOBUFS;
1164
86a7996c 1165 *old = qdisc_replace(sch, new, &cl->un.leaf.q);
5b9a9ccf 1166 return 0;
1da177e4
LT
1167}
1168
87990467 1169static struct Qdisc *htb_leaf(struct Qdisc *sch, unsigned long arg)
1da177e4 1170{
87990467 1171 struct htb_class *cl = (struct htb_class *)arg;
5b9a9ccf 1172 return !cl->level ? cl->un.leaf.q : NULL;
1da177e4
LT
1173}
1174
256d61b8
PM
1175static void htb_qlen_notify(struct Qdisc *sch, unsigned long arg)
1176{
1177 struct htb_class *cl = (struct htb_class *)arg;
1178
1179 if (cl->un.leaf.q->q.qlen == 0)
1180 htb_deactivate(qdisc_priv(sch), cl);
1181}
1182
1da177e4
LT
1183static unsigned long htb_get(struct Qdisc *sch, u32 classid)
1184{
87990467
SH
1185 struct htb_class *cl = htb_find(classid, sch);
1186 if (cl)
1da177e4
LT
1187 cl->refcnt++;
1188 return (unsigned long)cl;
1189}
1190
160d5e10
JP
1191static inline int htb_parent_last_child(struct htb_class *cl)
1192{
1193 if (!cl->parent)
1194 /* the root class */
1195 return 0;
42077599 1196 if (cl->parent->children > 1)
160d5e10
JP
1197 /* not the last child */
1198 return 0;
160d5e10
JP
1199 return 1;
1200}
1201
3ba08b00
JP
1202static void htb_parent_to_leaf(struct htb_sched *q, struct htb_class *cl,
1203 struct Qdisc *new_q)
160d5e10
JP
1204{
1205 struct htb_class *parent = cl->parent;
1206
547b792c 1207 WARN_ON(cl->level || !cl->un.leaf.q || cl->prio_activity);
160d5e10 1208
3ba08b00 1209 if (parent->cmode != HTB_CAN_SEND)
c9364636
ED
1210 htb_safe_rb_erase(&parent->pq_node,
1211 &q->hlevel[parent->level].wait_pq);
3ba08b00 1212
160d5e10
JP
1213 parent->level = 0;
1214 memset(&parent->un.inner, 0, sizeof(parent->un.inner));
1215 INIT_LIST_HEAD(&parent->un.leaf.drop_list);
1216 parent->un.leaf.q = new_q ? new_q : &noop_qdisc;
160d5e10
JP
1217 parent->tokens = parent->buffer;
1218 parent->ctokens = parent->cbuffer;
d2de875c 1219 parent->t_c = ktime_get_ns();
160d5e10
JP
1220 parent->cmode = HTB_CAN_SEND;
1221}
1222
87990467 1223static void htb_destroy_class(struct Qdisc *sch, struct htb_class *cl)
1da177e4 1224{
1da177e4 1225 if (!cl->level) {
547b792c 1226 WARN_ON(!cl->un.leaf.q);
1da177e4
LT
1227 qdisc_destroy(cl->un.leaf.q);
1228 }
ee39e10c 1229 gen_kill_estimator(&cl->bstats, &cl->rate_est);
ff31ab56 1230 tcf_destroy_chain(&cl->filter_list);
1da177e4
LT
1231 kfree(cl);
1232}
1233
87990467 1234static void htb_destroy(struct Qdisc *sch)
1da177e4
LT
1235{
1236 struct htb_sched *q = qdisc_priv(sch);
b67bfe0d 1237 struct hlist_node *next;
fbd8f137
PM
1238 struct htb_class *cl;
1239 unsigned int i;
1da177e4 1240
1224736d 1241 cancel_work_sync(&q->work);
fb983d45 1242 qdisc_watchdog_cancel(&q->watchdog);
1da177e4 1243 /* This line used to be after htb_destroy_class call below
cc7ec456
ED
1244 * and surprisingly it worked in 2.4. But it must precede it
1245 * because filter need its target class alive to be able to call
1246 * unbind_filter on it (without Oops).
1247 */
ff31ab56 1248 tcf_destroy_chain(&q->filter_list);
87990467 1249
f4c1f3e0 1250 for (i = 0; i < q->clhash.hashsize; i++) {
b67bfe0d 1251 hlist_for_each_entry(cl, &q->clhash.hash[i], common.hnode)
fbd8f137
PM
1252 tcf_destroy_chain(&cl->filter_list);
1253 }
f4c1f3e0 1254 for (i = 0; i < q->clhash.hashsize; i++) {
b67bfe0d 1255 hlist_for_each_entry_safe(cl, next, &q->clhash.hash[i],
f4c1f3e0 1256 common.hnode)
fbd8f137
PM
1257 htb_destroy_class(sch, cl);
1258 }
f4c1f3e0 1259 qdisc_class_hash_destroy(&q->clhash);
1da177e4
LT
1260 __skb_queue_purge(&q->direct_queue);
1261}
1262
1263static int htb_delete(struct Qdisc *sch, unsigned long arg)
1264{
1265 struct htb_sched *q = qdisc_priv(sch);
87990467 1266 struct htb_class *cl = (struct htb_class *)arg;
160d5e10
JP
1267 struct Qdisc *new_q = NULL;
1268 int last_child = 0;
1da177e4 1269
a071d272
YY
1270 /* TODO: why don't allow to delete subtree ? references ? does
1271 * tc subsys guarantee us that in htb_destroy it holds no class
1272 * refs so that we can remove children safely there ?
1273 */
42077599 1274 if (cl->children || cl->filter_cnt)
1da177e4 1275 return -EBUSY;
87990467 1276
160d5e10 1277 if (!cl->level && htb_parent_last_child(cl)) {
3511c913 1278 new_q = qdisc_create_dflt(sch->dev_queue, &pfifo_qdisc_ops,
bb949fbd 1279 cl->parent->common.classid);
160d5e10
JP
1280 last_child = 1;
1281 }
1282
1da177e4 1283 sch_tree_lock(sch);
87990467 1284
814a175e 1285 if (!cl->level) {
2ccccf5f
WC
1286 unsigned int qlen = cl->un.leaf.q->q.qlen;
1287 unsigned int backlog = cl->un.leaf.q->qstats.backlog;
1288
814a175e 1289 qdisc_reset(cl->un.leaf.q);
2ccccf5f 1290 qdisc_tree_reduce_backlog(cl->un.leaf.q, qlen, backlog);
814a175e
PM
1291 }
1292
f4c1f3e0
PM
1293 /* delete from hash and active; remainder in destroy_class */
1294 qdisc_class_hash_remove(&q->clhash, &cl->common);
26b284de
JP
1295 if (cl->parent)
1296 cl->parent->children--;
c38c83cb 1297
1da177e4 1298 if (cl->prio_activity)
87990467 1299 htb_deactivate(q, cl);
1da177e4 1300
fbd8f137 1301 if (cl->cmode != HTB_CAN_SEND)
c9364636
ED
1302 htb_safe_rb_erase(&cl->pq_node,
1303 &q->hlevel[cl->level].wait_pq);
fbd8f137 1304
160d5e10 1305 if (last_child)
3ba08b00 1306 htb_parent_to_leaf(q, cl, new_q);
160d5e10 1307
7cd0a638
JP
1308 BUG_ON(--cl->refcnt == 0);
1309 /*
1310 * This shouldn't happen: we "hold" one cops->get() when called
1311 * from tc_ctl_tclass; the destroy method is done from cops->put().
1312 */
1da177e4
LT
1313
1314 sch_tree_unlock(sch);
1315 return 0;
1316}
1317
1318static void htb_put(struct Qdisc *sch, unsigned long arg)
1319{
87990467 1320 struct htb_class *cl = (struct htb_class *)arg;
1da177e4
LT
1321
1322 if (--cl->refcnt == 0)
87990467 1323 htb_destroy_class(sch, cl);
1da177e4
LT
1324}
1325
87990467 1326static int htb_change_class(struct Qdisc *sch, u32 classid,
1e90474c 1327 u32 parentid, struct nlattr **tca,
87990467 1328 unsigned long *arg)
1da177e4
LT
1329{
1330 int err = -EINVAL;
1331 struct htb_sched *q = qdisc_priv(sch);
87990467 1332 struct htb_class *cl = (struct htb_class *)*arg, *parent;
1e90474c 1333 struct nlattr *opt = tca[TCA_OPTIONS];
6906f4ed 1334 struct nlattr *tb[TCA_HTB_MAX + 1];
1da177e4 1335 struct tc_htb_opt *hopt;
df62cdf3 1336 u64 rate64, ceil64;
1da177e4
LT
1337
1338 /* extract all subattrs from opt attr */
cee63723
PM
1339 if (!opt)
1340 goto failure;
1341
e18434c4 1342 err = nla_parse_nested(tb, TCA_HTB_MAX, opt, htb_policy);
cee63723
PM
1343 if (err < 0)
1344 goto failure;
1345
1346 err = -EINVAL;
27a3421e 1347 if (tb[TCA_HTB_PARMS] == NULL)
1da177e4 1348 goto failure;
1da177e4 1349
87990467
SH
1350 parent = parentid == TC_H_ROOT ? NULL : htb_find(parentid, sch);
1351
1e90474c 1352 hopt = nla_data(tb[TCA_HTB_PARMS]);
196d97f6 1353 if (!hopt->rate.rate || !hopt->ceil.rate)
87990467 1354 goto failure;
1da177e4 1355
8a8e3d84 1356 /* Keeping backward compatible with rate_table based iproute2 tc */
6b1dd856
YY
1357 if (hopt->rate.linklayer == TC_LINKLAYER_UNAWARE)
1358 qdisc_put_rtab(qdisc_get_rtab(&hopt->rate, tb[TCA_HTB_RTAB]));
1359
1360 if (hopt->ceil.linklayer == TC_LINKLAYER_UNAWARE)
1361 qdisc_put_rtab(qdisc_get_rtab(&hopt->ceil, tb[TCA_HTB_CTAB]));
8a8e3d84 1362
87990467 1363 if (!cl) { /* new class */
1da177e4 1364 struct Qdisc *new_q;
3696f625 1365 int prio;
ee39e10c 1366 struct {
1e90474c 1367 struct nlattr nla;
ee39e10c
PM
1368 struct gnet_estimator opt;
1369 } est = {
1e90474c
PM
1370 .nla = {
1371 .nla_len = nla_attr_size(sizeof(est.opt)),
1372 .nla_type = TCA_RATE,
ee39e10c
PM
1373 },
1374 .opt = {
1375 /* 4s interval, 16s averaging constant */
1376 .interval = 2,
1377 .ewma_log = 2,
1378 },
1379 };
3696f625 1380
1da177e4 1381 /* check for valid classid */
f64f9e71
JP
1382 if (!classid || TC_H_MAJ(classid ^ sch->handle) ||
1383 htb_find(classid, sch))
1da177e4
LT
1384 goto failure;
1385
1386 /* check maximal depth */
1387 if (parent && parent->parent && parent->parent->level < 2) {
cc7ec456 1388 pr_err("htb: tree is too deep\n");
1da177e4
LT
1389 goto failure;
1390 }
1391 err = -ENOBUFS;
cc7ec456
ED
1392 cl = kzalloc(sizeof(*cl), GFP_KERNEL);
1393 if (!cl)
1da177e4 1394 goto failure;
87990467 1395
64153ce0 1396 if (htb_rate_est || tca[TCA_RATE]) {
22e0f8b9
JF
1397 err = gen_new_estimator(&cl->bstats, NULL,
1398 &cl->rate_est,
edb09eb1
ED
1399 NULL,
1400 qdisc_root_sleeping_running(sch),
64153ce0
ED
1401 tca[TCA_RATE] ? : &est.nla);
1402 if (err) {
1403 kfree(cl);
1404 goto failure;
1405 }
71bcb09a
SH
1406 }
1407
1da177e4 1408 cl->refcnt = 1;
42077599 1409 cl->children = 0;
1da177e4 1410 INIT_LIST_HEAD(&cl->un.leaf.drop_list);
3696f625
SH
1411 RB_CLEAR_NODE(&cl->pq_node);
1412
1413 for (prio = 0; prio < TC_HTB_NUMPRIO; prio++)
1414 RB_CLEAR_NODE(&cl->node[prio]);
1da177e4
LT
1415
1416 /* create leaf qdisc early because it uses kmalloc(GFP_KERNEL)
cc7ec456
ED
1417 * so that can't be used inside of sch_tree_lock
1418 * -- thanks to Karlis Peisenieks
1419 */
3511c913 1420 new_q = qdisc_create_dflt(sch->dev_queue,
bb949fbd 1421 &pfifo_qdisc_ops, classid);
1da177e4
LT
1422 sch_tree_lock(sch);
1423 if (parent && !parent->level) {
256d61b8 1424 unsigned int qlen = parent->un.leaf.q->q.qlen;
2ccccf5f 1425 unsigned int backlog = parent->un.leaf.q->qstats.backlog;
256d61b8 1426
1da177e4 1427 /* turn parent into inner node */
256d61b8 1428 qdisc_reset(parent->un.leaf.q);
2ccccf5f 1429 qdisc_tree_reduce_backlog(parent->un.leaf.q, qlen, backlog);
87990467
SH
1430 qdisc_destroy(parent->un.leaf.q);
1431 if (parent->prio_activity)
1432 htb_deactivate(q, parent);
1da177e4
LT
1433
1434 /* remove from evt list because of level change */
1435 if (parent->cmode != HTB_CAN_SEND) {
c9364636 1436 htb_safe_rb_erase(&parent->pq_node, &q->hlevel[0].wait_pq);
1da177e4
LT
1437 parent->cmode = HTB_CAN_SEND;
1438 }
1439 parent->level = (parent->parent ? parent->parent->level
87990467
SH
1440 : TC_HTB_MAXDEPTH) - 1;
1441 memset(&parent->un.inner, 0, sizeof(parent->un.inner));
1da177e4
LT
1442 }
1443 /* leaf (we) needs elementary qdisc */
1444 cl->un.leaf.q = new_q ? new_q : &noop_qdisc;
1445
f4c1f3e0 1446 cl->common.classid = classid;
87990467 1447 cl->parent = parent;
1da177e4
LT
1448
1449 /* set class to be in HTB_CAN_SEND state */
b9a7afde
JP
1450 cl->tokens = PSCHED_TICKS2NS(hopt->buffer);
1451 cl->ctokens = PSCHED_TICKS2NS(hopt->cbuffer);
5343a7f8 1452 cl->mbuffer = 60ULL * NSEC_PER_SEC; /* 1min */
d2de875c 1453 cl->t_c = ktime_get_ns();
1da177e4
LT
1454 cl->cmode = HTB_CAN_SEND;
1455
1456 /* attach to the hash list and parent's family */
f4c1f3e0 1457 qdisc_class_hash_insert(&q->clhash, &cl->common);
42077599
PM
1458 if (parent)
1459 parent->children++;
ee39e10c 1460 } else {
71bcb09a 1461 if (tca[TCA_RATE]) {
22e0f8b9
JF
1462 err = gen_replace_estimator(&cl->bstats, NULL,
1463 &cl->rate_est,
edb09eb1
ED
1464 NULL,
1465 qdisc_root_sleeping_running(sch),
71bcb09a
SH
1466 tca[TCA_RATE]);
1467 if (err)
1468 return err;
1469 }
87990467 1470 sch_tree_lock(sch);
ee39e10c 1471 }
1da177e4 1472
1598f7cb
YY
1473 rate64 = tb[TCA_HTB_RATE64] ? nla_get_u64(tb[TCA_HTB_RATE64]) : 0;
1474
1475 ceil64 = tb[TCA_HTB_CEIL64] ? nla_get_u64(tb[TCA_HTB_CEIL64]) : 0;
1476
1477 psched_ratecfg_precompute(&cl->rate, &hopt->rate, rate64);
1478 psched_ratecfg_precompute(&cl->ceil, &hopt->ceil, ceil64);
1479
1da177e4 1480 /* it used to be a nasty bug here, we have to check that node
cc7ec456
ED
1481 * is really leaf before changing cl->un.leaf !
1482 */
1da177e4 1483 if (!cl->level) {
1598f7cb
YY
1484 u64 quantum = cl->rate.rate_bytes_ps;
1485
1486 do_div(quantum, q->rate2quantum);
1487 cl->quantum = min_t(u64, quantum, INT_MAX);
1488
c19f7a34 1489 if (!hopt->quantum && cl->quantum < 1000) {
c17988a9
YY
1490 pr_warn("HTB: quantum of class %X is small. Consider r2q change.\n",
1491 cl->common.classid);
c19f7a34 1492 cl->quantum = 1000;
1da177e4 1493 }
c19f7a34 1494 if (!hopt->quantum && cl->quantum > 200000) {
c17988a9
YY
1495 pr_warn("HTB: quantum of class %X is big. Consider r2q change.\n",
1496 cl->common.classid);
c19f7a34 1497 cl->quantum = 200000;
1da177e4
LT
1498 }
1499 if (hopt->quantum)
c19f7a34
JP
1500 cl->quantum = hopt->quantum;
1501 if ((cl->prio = hopt->prio) >= TC_HTB_NUMPRIO)
1502 cl->prio = TC_HTB_NUMPRIO - 1;
1da177e4
LT
1503 }
1504
324f5aa5 1505 cl->buffer = PSCHED_TICKS2NS(hopt->buffer);
f3ad857e 1506 cl->cbuffer = PSCHED_TICKS2NS(hopt->cbuffer);
56b765b7 1507
1da177e4
LT
1508 sch_tree_unlock(sch);
1509
f4c1f3e0
PM
1510 qdisc_class_hash_grow(sch, &q->clhash);
1511
1da177e4
LT
1512 *arg = (unsigned long)cl;
1513 return 0;
1514
1515failure:
1da177e4
LT
1516 return err;
1517}
1518
25d8c0d5
JF
1519static struct tcf_proto __rcu **htb_find_tcf(struct Qdisc *sch,
1520 unsigned long arg)
1da177e4
LT
1521{
1522 struct htb_sched *q = qdisc_priv(sch);
1523 struct htb_class *cl = (struct htb_class *)arg;
25d8c0d5 1524 struct tcf_proto __rcu **fl = cl ? &cl->filter_list : &q->filter_list;
3bf72957 1525
1da177e4
LT
1526 return fl;
1527}
1528
1529static unsigned long htb_bind_filter(struct Qdisc *sch, unsigned long parent,
87990467 1530 u32 classid)
1da177e4 1531{
87990467 1532 struct htb_class *cl = htb_find(classid, sch);
3bf72957 1533
1da177e4 1534 /*if (cl && !cl->level) return 0;
cc7ec456
ED
1535 * The line above used to be there to prevent attaching filters to
1536 * leaves. But at least tc_index filter uses this just to get class
1537 * for other reasons so that we have to allow for it.
1538 * ----
1539 * 19.6.2002 As Werner explained it is ok - bind filter is just
1540 * another way to "lock" the class - unlike "get" this lock can
1541 * be broken by class during destroy IIUC.
1da177e4 1542 */
87990467
SH
1543 if (cl)
1544 cl->filter_cnt++;
1da177e4
LT
1545 return (unsigned long)cl;
1546}
1547
1548static void htb_unbind_filter(struct Qdisc *sch, unsigned long arg)
1549{
1da177e4 1550 struct htb_class *cl = (struct htb_class *)arg;
3bf72957 1551
87990467
SH
1552 if (cl)
1553 cl->filter_cnt--;
1da177e4
LT
1554}
1555
1556static void htb_walk(struct Qdisc *sch, struct qdisc_walker *arg)
1557{
1558 struct htb_sched *q = qdisc_priv(sch);
f4c1f3e0 1559 struct htb_class *cl;
f4c1f3e0 1560 unsigned int i;
1da177e4
LT
1561
1562 if (arg->stop)
1563 return;
1564
f4c1f3e0 1565 for (i = 0; i < q->clhash.hashsize; i++) {
b67bfe0d 1566 hlist_for_each_entry(cl, &q->clhash.hash[i], common.hnode) {
1da177e4
LT
1567 if (arg->count < arg->skip) {
1568 arg->count++;
1569 continue;
1570 }
1571 if (arg->fn(sch, (unsigned long)cl, arg) < 0) {
1572 arg->stop = 1;
1573 return;
1574 }
1575 arg->count++;
1576 }
1577 }
1578}
1579
20fea08b 1580static const struct Qdisc_class_ops htb_class_ops = {
1da177e4
LT
1581 .graft = htb_graft,
1582 .leaf = htb_leaf,
256d61b8 1583 .qlen_notify = htb_qlen_notify,
1da177e4
LT
1584 .get = htb_get,
1585 .put = htb_put,
1586 .change = htb_change_class,
1587 .delete = htb_delete,
1588 .walk = htb_walk,
1589 .tcf_chain = htb_find_tcf,
1590 .bind_tcf = htb_bind_filter,
1591 .unbind_tcf = htb_unbind_filter,
1592 .dump = htb_dump_class,
1593 .dump_stats = htb_dump_class_stats,
1594};
1595
20fea08b 1596static struct Qdisc_ops htb_qdisc_ops __read_mostly = {
1da177e4
LT
1597 .cl_ops = &htb_class_ops,
1598 .id = "htb",
1599 .priv_size = sizeof(struct htb_sched),
1600 .enqueue = htb_enqueue,
1601 .dequeue = htb_dequeue,
77be155c 1602 .peek = qdisc_peek_dequeued,
1da177e4
LT
1603 .drop = htb_drop,
1604 .init = htb_init,
1605 .reset = htb_reset,
1606 .destroy = htb_destroy,
1da177e4
LT
1607 .dump = htb_dump,
1608 .owner = THIS_MODULE,
1609};
1610
1611static int __init htb_module_init(void)
1612{
87990467 1613 return register_qdisc(&htb_qdisc_ops);
1da177e4 1614}
87990467 1615static void __exit htb_module_exit(void)
1da177e4 1616{
87990467 1617 unregister_qdisc(&htb_qdisc_ops);
1da177e4 1618}
87990467 1619
1da177e4
LT
1620module_init(htb_module_init)
1621module_exit(htb_module_exit)
1622MODULE_LICENSE("GPL");
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