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1 /*
2  * net/sched/sch_generic.c      Generic packet scheduler routines.
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:     Alexey Kuznetsov, <kuznet@ms2.inr.ac.ru>
10  *              Jamal Hadi Salim, <hadi@cyberus.ca> 990601
11  *              - Ingress support
12  */
13
14 #include <linux/bitops.h>
15 #include <linux/module.h>
16 #include <linux/types.h>
17 #include <linux/kernel.h>
18 #include <linux/sched.h>
19 #include <linux/string.h>
20 #include <linux/errno.h>
21 #include <linux/netdevice.h>
22 #include <linux/skbuff.h>
23 #include <linux/rtnetlink.h>
24 #include <linux/init.h>
25 #include <linux/rcupdate.h>
26 #include <linux/list.h>
27 #include <linux/slab.h>
28 #include <linux/if_vlan.h>
29 #include <net/sch_generic.h>
30 #include <net/pkt_sched.h>
31 #include <net/dst.h>
32
33 /* Qdisc to use by default */
34 const struct Qdisc_ops *default_qdisc_ops = &pfifo_fast_ops;
35 EXPORT_SYMBOL(default_qdisc_ops);
36
37 /* Main transmission queue. */
38
39 /* Modifications to data participating in scheduling must be protected with
40  * qdisc_lock(qdisc) spinlock.
41  *
42  * The idea is the following:
43  * - enqueue, dequeue are serialized via qdisc root lock
44  * - ingress filtering is also serialized via qdisc root lock
45  * - updates to tree and tree walking are only done under the rtnl mutex.
46  */
47
48 static inline int dev_requeue_skb(struct sk_buff *skb, struct Qdisc *q)
49 {
50         q->gso_skb = skb;
51         q->qstats.requeues++;
52         qdisc_qstats_backlog_inc(q, skb);
53         q->q.qlen++;    /* it's still part of the queue */
54         __netif_schedule(q);
55
56         return 0;
57 }
58
59 static void try_bulk_dequeue_skb(struct Qdisc *q,
60                                  struct sk_buff *skb,
61                                  const struct netdev_queue *txq,
62                                  int *packets)
63 {
64         int bytelimit = qdisc_avail_bulklimit(txq) - skb->len;
65
66         while (bytelimit > 0) {
67                 struct sk_buff *nskb = q->dequeue(q);
68
69                 if (!nskb)
70                         break;
71
72                 bytelimit -= nskb->len; /* covers GSO len */
73                 skb->next = nskb;
74                 skb = nskb;
75                 (*packets)++; /* GSO counts as one pkt */
76         }
77         skb->next = NULL;
78 }
79
80 /* This variant of try_bulk_dequeue_skb() makes sure
81  * all skbs in the chain are for the same txq
82  */
83 static void try_bulk_dequeue_skb_slow(struct Qdisc *q,
84                                       struct sk_buff *skb,
85                                       int *packets)
86 {
87         int mapping = skb_get_queue_mapping(skb);
88         struct sk_buff *nskb;
89         int cnt = 0;
90
91         do {
92                 nskb = q->dequeue(q);
93                 if (!nskb)
94                         break;
95                 if (unlikely(skb_get_queue_mapping(nskb) != mapping)) {
96                         q->skb_bad_txq = nskb;
97                         qdisc_qstats_backlog_inc(q, nskb);
98                         q->q.qlen++;
99                         break;
100                 }
101                 skb->next = nskb;
102                 skb = nskb;
103         } while (++cnt < 8);
104         (*packets) += cnt;
105         skb->next = NULL;
106 }
107
108 /* Note that dequeue_skb can possibly return a SKB list (via skb->next).
109  * A requeued skb (via q->gso_skb) can also be a SKB list.
110  */
111 static struct sk_buff *dequeue_skb(struct Qdisc *q, bool *validate,
112                                    int *packets)
113 {
114         struct sk_buff *skb = q->gso_skb;
115         const struct netdev_queue *txq = q->dev_queue;
116
117         *packets = 1;
118         if (unlikely(skb)) {
119                 /* skb in gso_skb were already validated */
120                 *validate = false;
121                 /* check the reason of requeuing without tx lock first */
122                 txq = skb_get_tx_queue(txq->dev, skb);
123                 if (!netif_xmit_frozen_or_stopped(txq)) {
124                         q->gso_skb = NULL;
125                         qdisc_qstats_backlog_dec(q, skb);
126                         q->q.qlen--;
127                 } else
128                         skb = NULL;
129                 return skb;
130         }
131         *validate = true;
132         skb = q->skb_bad_txq;
133         if (unlikely(skb)) {
134                 /* check the reason of requeuing without tx lock first */
135                 txq = skb_get_tx_queue(txq->dev, skb);
136                 if (!netif_xmit_frozen_or_stopped(txq)) {
137                         q->skb_bad_txq = NULL;
138                         qdisc_qstats_backlog_dec(q, skb);
139                         q->q.qlen--;
140                         goto bulk;
141                 }
142                 return NULL;
143         }
144         if (!(q->flags & TCQ_F_ONETXQUEUE) ||
145             !netif_xmit_frozen_or_stopped(txq))
146                 skb = q->dequeue(q);
147         if (skb) {
148 bulk:
149                 if (qdisc_may_bulk(q))
150                         try_bulk_dequeue_skb(q, skb, txq, packets);
151                 else
152                         try_bulk_dequeue_skb_slow(q, skb, packets);
153         }
154         return skb;
155 }
156
157 /*
158  * Transmit possibly several skbs, and handle the return status as
159  * required. Owning running seqcount bit guarantees that
160  * only one CPU can execute this function.
161  *
162  * Returns to the caller:
163  *                              0  - queue is empty or throttled.
164  *                              >0 - queue is not empty.
165  */
166 int sch_direct_xmit(struct sk_buff *skb, struct Qdisc *q,
167                     struct net_device *dev, struct netdev_queue *txq,
168                     spinlock_t *root_lock, bool validate)
169 {
170         int ret = NETDEV_TX_BUSY;
171
172         /* And release qdisc */
173         spin_unlock(root_lock);
174
175         /* Note that we validate skb (GSO, checksum, ...) outside of locks */
176         if (validate)
177                 skb = validate_xmit_skb_list(skb, dev);
178
179         if (likely(skb)) {
180                 HARD_TX_LOCK(dev, txq, smp_processor_id());
181                 if (!netif_xmit_frozen_or_stopped(txq))
182                         skb = dev_hard_start_xmit(skb, dev, txq, &ret);
183
184                 HARD_TX_UNLOCK(dev, txq);
185         } else {
186                 spin_lock(root_lock);
187                 return qdisc_qlen(q);
188         }
189         spin_lock(root_lock);
190
191         if (dev_xmit_complete(ret)) {
192                 /* Driver sent out skb successfully or skb was consumed */
193                 ret = qdisc_qlen(q);
194         } else {
195                 /* Driver returned NETDEV_TX_BUSY - requeue skb */
196                 if (unlikely(ret != NETDEV_TX_BUSY))
197                         net_warn_ratelimited("BUG %s code %d qlen %d\n",
198                                              dev->name, ret, q->q.qlen);
199
200                 ret = dev_requeue_skb(skb, q);
201         }
202
203         if (ret && netif_xmit_frozen_or_stopped(txq))
204                 ret = 0;
205
206         return ret;
207 }
208
209 /*
210  * NOTE: Called under qdisc_lock(q) with locally disabled BH.
211  *
212  * running seqcount guarantees only one CPU can process
213  * this qdisc at a time. qdisc_lock(q) serializes queue accesses for
214  * this queue.
215  *
216  *  netif_tx_lock serializes accesses to device driver.
217  *
218  *  qdisc_lock(q) and netif_tx_lock are mutually exclusive,
219  *  if one is grabbed, another must be free.
220  *
221  * Note, that this procedure can be called by a watchdog timer
222  *
223  * Returns to the caller:
224  *                              0  - queue is empty or throttled.
225  *                              >0 - queue is not empty.
226  *
227  */
228 static inline int qdisc_restart(struct Qdisc *q, int *packets)
229 {
230         struct netdev_queue *txq;
231         struct net_device *dev;
232         spinlock_t *root_lock;
233         struct sk_buff *skb;
234         bool validate;
235
236         /* Dequeue packet */
237         skb = dequeue_skb(q, &validate, packets);
238         if (unlikely(!skb))
239                 return 0;
240
241         root_lock = qdisc_lock(q);
242         dev = qdisc_dev(q);
243         txq = skb_get_tx_queue(dev, skb);
244
245         return sch_direct_xmit(skb, q, dev, txq, root_lock, validate);
246 }
247
248 void __qdisc_run(struct Qdisc *q)
249 {
250         int quota = weight_p;
251         int packets;
252
253         while (qdisc_restart(q, &packets)) {
254                 /*
255                  * Ordered by possible occurrence: Postpone processing if
256                  * 1. we've exceeded packet quota
257                  * 2. another process needs the CPU;
258                  */
259                 quota -= packets;
260                 if (quota <= 0 || need_resched()) {
261                         __netif_schedule(q);
262                         break;
263                 }
264         }
265
266         qdisc_run_end(q);
267 }
268
269 unsigned long dev_trans_start(struct net_device *dev)
270 {
271         unsigned long val, res;
272         unsigned int i;
273
274         if (is_vlan_dev(dev))
275                 dev = vlan_dev_real_dev(dev);
276         res = netdev_get_tx_queue(dev, 0)->trans_start;
277         for (i = 1; i < dev->num_tx_queues; i++) {
278                 val = netdev_get_tx_queue(dev, i)->trans_start;
279                 if (val && time_after(val, res))
280                         res = val;
281         }
282
283         return res;
284 }
285 EXPORT_SYMBOL(dev_trans_start);
286
287 static void dev_watchdog(unsigned long arg)
288 {
289         struct net_device *dev = (struct net_device *)arg;
290
291         netif_tx_lock(dev);
292         if (!qdisc_tx_is_noop(dev)) {
293                 if (netif_device_present(dev) &&
294                     netif_running(dev) &&
295                     netif_carrier_ok(dev)) {
296                         int some_queue_timedout = 0;
297                         unsigned int i;
298                         unsigned long trans_start;
299
300                         for (i = 0; i < dev->num_tx_queues; i++) {
301                                 struct netdev_queue *txq;
302
303                                 txq = netdev_get_tx_queue(dev, i);
304                                 trans_start = txq->trans_start;
305                                 if (netif_xmit_stopped(txq) &&
306                                     time_after(jiffies, (trans_start +
307                                                          dev->watchdog_timeo))) {
308                                         some_queue_timedout = 1;
309                                         txq->trans_timeout++;
310                                         break;
311                                 }
312                         }
313
314                         if (some_queue_timedout) {
315                                 WARN_ONCE(1, KERN_INFO "NETDEV WATCHDOG: %s (%s): transmit queue %u timed out\n",
316                                        dev->name, netdev_drivername(dev), i);
317                                 dev->netdev_ops->ndo_tx_timeout(dev);
318                         }
319                         if (!mod_timer(&dev->watchdog_timer,
320                                        round_jiffies(jiffies +
321                                                      dev->watchdog_timeo)))
322                                 dev_hold(dev);
323                 }
324         }
325         netif_tx_unlock(dev);
326
327         dev_put(dev);
328 }
329
330 void __netdev_watchdog_up(struct net_device *dev)
331 {
332         if (dev->netdev_ops->ndo_tx_timeout) {
333                 if (dev->watchdog_timeo <= 0)
334                         dev->watchdog_timeo = 5*HZ;
335                 if (!mod_timer(&dev->watchdog_timer,
336                                round_jiffies(jiffies + dev->watchdog_timeo)))
337                         dev_hold(dev);
338         }
339 }
340
341 static void dev_watchdog_up(struct net_device *dev)
342 {
343         __netdev_watchdog_up(dev);
344 }
345
346 static void dev_watchdog_down(struct net_device *dev)
347 {
348         netif_tx_lock_bh(dev);
349         if (del_timer(&dev->watchdog_timer))
350                 dev_put(dev);
351         netif_tx_unlock_bh(dev);
352 }
353
354 /**
355  *      netif_carrier_on - set carrier
356  *      @dev: network device
357  *
358  * Device has detected that carrier.
359  */
360 void netif_carrier_on(struct net_device *dev)
361 {
362         if (test_and_clear_bit(__LINK_STATE_NOCARRIER, &dev->state)) {
363                 if (dev->reg_state == NETREG_UNINITIALIZED)
364                         return;
365                 atomic_inc(&dev->carrier_changes);
366                 linkwatch_fire_event(dev);
367                 if (netif_running(dev))
368                         __netdev_watchdog_up(dev);
369         }
370 }
371 EXPORT_SYMBOL(netif_carrier_on);
372
373 /**
374  *      netif_carrier_off - clear carrier
375  *      @dev: network device
376  *
377  * Device has detected loss of carrier.
378  */
379 void netif_carrier_off(struct net_device *dev)
380 {
381         if (!test_and_set_bit(__LINK_STATE_NOCARRIER, &dev->state)) {
382                 if (dev->reg_state == NETREG_UNINITIALIZED)
383                         return;
384                 atomic_inc(&dev->carrier_changes);
385                 linkwatch_fire_event(dev);
386         }
387 }
388 EXPORT_SYMBOL(netif_carrier_off);
389
390 /* "NOOP" scheduler: the best scheduler, recommended for all interfaces
391    under all circumstances. It is difficult to invent anything faster or
392    cheaper.
393  */
394
395 static int noop_enqueue(struct sk_buff *skb, struct Qdisc *qdisc,
396                         struct sk_buff **to_free)
397 {
398         __qdisc_drop(skb, to_free);
399         return NET_XMIT_CN;
400 }
401
402 static struct sk_buff *noop_dequeue(struct Qdisc *qdisc)
403 {
404         return NULL;
405 }
406
407 struct Qdisc_ops noop_qdisc_ops __read_mostly = {
408         .id             =       "noop",
409         .priv_size      =       0,
410         .enqueue        =       noop_enqueue,
411         .dequeue        =       noop_dequeue,
412         .peek           =       noop_dequeue,
413         .owner          =       THIS_MODULE,
414 };
415
416 static struct netdev_queue noop_netdev_queue = {
417         .qdisc          =       &noop_qdisc,
418         .qdisc_sleeping =       &noop_qdisc,
419 };
420
421 struct Qdisc noop_qdisc = {
422         .enqueue        =       noop_enqueue,
423         .dequeue        =       noop_dequeue,
424         .flags          =       TCQ_F_BUILTIN,
425         .ops            =       &noop_qdisc_ops,
426         .q.lock         =       __SPIN_LOCK_UNLOCKED(noop_qdisc.q.lock),
427         .dev_queue      =       &noop_netdev_queue,
428 #ifdef CONFIG_PREEMPT_RT_BASE
429         .running        =       __SEQLOCK_UNLOCKED(noop_qdisc.running),
430 #else
431         .running        =       SEQCNT_ZERO(noop_qdisc.running),
432 #endif
433         .busylock       =       __SPIN_LOCK_UNLOCKED(noop_qdisc.busylock),
434 };
435 EXPORT_SYMBOL(noop_qdisc);
436
437 static int noqueue_init(struct Qdisc *qdisc, struct nlattr *opt)
438 {
439         /* register_qdisc() assigns a default of noop_enqueue if unset,
440          * but __dev_queue_xmit() treats noqueue only as such
441          * if this is NULL - so clear it here. */
442         qdisc->enqueue = NULL;
443         return 0;
444 }
445
446 struct Qdisc_ops noqueue_qdisc_ops __read_mostly = {
447         .id             =       "noqueue",
448         .priv_size      =       0,
449         .init           =       noqueue_init,
450         .enqueue        =       noop_enqueue,
451         .dequeue        =       noop_dequeue,
452         .peek           =       noop_dequeue,
453         .owner          =       THIS_MODULE,
454 };
455
456 static const u8 prio2band[TC_PRIO_MAX + 1] = {
457         1, 2, 2, 2, 1, 2, 0, 0 , 1, 1, 1, 1, 1, 1, 1, 1
458 };
459
460 /* 3-band FIFO queue: old style, but should be a bit faster than
461    generic prio+fifo combination.
462  */
463
464 #define PFIFO_FAST_BANDS 3
465
466 /*
467  * Private data for a pfifo_fast scheduler containing:
468  *      - queues for the three band
469  *      - bitmap indicating which of the bands contain skbs
470  */
471 struct pfifo_fast_priv {
472         u32 bitmap;
473         struct qdisc_skb_head q[PFIFO_FAST_BANDS];
474 };
475
476 /*
477  * Convert a bitmap to the first band number where an skb is queued, where:
478  *      bitmap=0 means there are no skbs on any band.
479  *      bitmap=1 means there is an skb on band 0.
480  *      bitmap=7 means there are skbs on all 3 bands, etc.
481  */
482 static const int bitmap2band[] = {-1, 0, 1, 0, 2, 0, 1, 0};
483
484 static inline struct qdisc_skb_head *band2list(struct pfifo_fast_priv *priv,
485                                              int band)
486 {
487         return priv->q + band;
488 }
489
490 static int pfifo_fast_enqueue(struct sk_buff *skb, struct Qdisc *qdisc,
491                               struct sk_buff **to_free)
492 {
493         if (qdisc->q.qlen < qdisc_dev(qdisc)->tx_queue_len) {
494                 int band = prio2band[skb->priority & TC_PRIO_MAX];
495                 struct pfifo_fast_priv *priv = qdisc_priv(qdisc);
496                 struct qdisc_skb_head *list = band2list(priv, band);
497
498                 priv->bitmap |= (1 << band);
499                 qdisc->q.qlen++;
500                 return __qdisc_enqueue_tail(skb, qdisc, list);
501         }
502
503         return qdisc_drop(skb, qdisc, to_free);
504 }
505
506 static struct sk_buff *pfifo_fast_dequeue(struct Qdisc *qdisc)
507 {
508         struct pfifo_fast_priv *priv = qdisc_priv(qdisc);
509         int band = bitmap2band[priv->bitmap];
510
511         if (likely(band >= 0)) {
512                 struct qdisc_skb_head *qh = band2list(priv, band);
513                 struct sk_buff *skb = __qdisc_dequeue_head(qh);
514
515                 if (likely(skb != NULL)) {
516                         qdisc_qstats_backlog_dec(qdisc, skb);
517                         qdisc_bstats_update(qdisc, skb);
518                 }
519
520                 qdisc->q.qlen--;
521                 if (qh->qlen == 0)
522                         priv->bitmap &= ~(1 << band);
523
524                 return skb;
525         }
526
527         return NULL;
528 }
529
530 static struct sk_buff *pfifo_fast_peek(struct Qdisc *qdisc)
531 {
532         struct pfifo_fast_priv *priv = qdisc_priv(qdisc);
533         int band = bitmap2band[priv->bitmap];
534
535         if (band >= 0) {
536                 struct qdisc_skb_head *qh = band2list(priv, band);
537
538                 return qh->head;
539         }
540
541         return NULL;
542 }
543
544 static void pfifo_fast_reset(struct Qdisc *qdisc)
545 {
546         int prio;
547         struct pfifo_fast_priv *priv = qdisc_priv(qdisc);
548
549         for (prio = 0; prio < PFIFO_FAST_BANDS; prio++)
550                 __qdisc_reset_queue(band2list(priv, prio));
551
552         priv->bitmap = 0;
553         qdisc->qstats.backlog = 0;
554         qdisc->q.qlen = 0;
555 }
556
557 static int pfifo_fast_dump(struct Qdisc *qdisc, struct sk_buff *skb)
558 {
559         struct tc_prio_qopt opt = { .bands = PFIFO_FAST_BANDS };
560
561         memcpy(&opt.priomap, prio2band, TC_PRIO_MAX + 1);
562         if (nla_put(skb, TCA_OPTIONS, sizeof(opt), &opt))
563                 goto nla_put_failure;
564         return skb->len;
565
566 nla_put_failure:
567         return -1;
568 }
569
570 static int pfifo_fast_init(struct Qdisc *qdisc, struct nlattr *opt)
571 {
572         int prio;
573         struct pfifo_fast_priv *priv = qdisc_priv(qdisc);
574
575         for (prio = 0; prio < PFIFO_FAST_BANDS; prio++)
576                 qdisc_skb_head_init(band2list(priv, prio));
577
578         /* Can by-pass the queue discipline */
579         qdisc->flags |= TCQ_F_CAN_BYPASS;
580         return 0;
581 }
582
583 struct Qdisc_ops pfifo_fast_ops __read_mostly = {
584         .id             =       "pfifo_fast",
585         .priv_size      =       sizeof(struct pfifo_fast_priv),
586         .enqueue        =       pfifo_fast_enqueue,
587         .dequeue        =       pfifo_fast_dequeue,
588         .peek           =       pfifo_fast_peek,
589         .init           =       pfifo_fast_init,
590         .reset          =       pfifo_fast_reset,
591         .dump           =       pfifo_fast_dump,
592         .owner          =       THIS_MODULE,
593 };
594 EXPORT_SYMBOL(pfifo_fast_ops);
595
596 static struct lock_class_key qdisc_tx_busylock;
597 static struct lock_class_key qdisc_running_key;
598
599 struct Qdisc *qdisc_alloc(struct netdev_queue *dev_queue,
600                           const struct Qdisc_ops *ops)
601 {
602         void *p;
603         struct Qdisc *sch;
604         unsigned int size = QDISC_ALIGN(sizeof(*sch)) + ops->priv_size;
605         int err = -ENOBUFS;
606         struct net_device *dev = dev_queue->dev;
607
608         p = kzalloc_node(size, GFP_KERNEL,
609                          netdev_queue_numa_node_read(dev_queue));
610
611         if (!p)
612                 goto errout;
613         sch = (struct Qdisc *) QDISC_ALIGN((unsigned long) p);
614         /* if we got non aligned memory, ask more and do alignment ourself */
615         if (sch != p) {
616                 kfree(p);
617                 p = kzalloc_node(size + QDISC_ALIGNTO - 1, GFP_KERNEL,
618                                  netdev_queue_numa_node_read(dev_queue));
619                 if (!p)
620                         goto errout;
621                 sch = (struct Qdisc *) QDISC_ALIGN((unsigned long) p);
622                 sch->padded = (char *) sch - (char *) p;
623         }
624         qdisc_skb_head_init(&sch->q);
625         spin_lock_init(&sch->q.lock);
626
627         spin_lock_init(&sch->busylock);
628         lockdep_set_class(&sch->busylock,
629                           dev->qdisc_tx_busylock ?: &qdisc_tx_busylock);
630
631 #ifdef CONFIG_PREEMPT_RT_BASE
632         seqlock_init(&sch->running);
633         lockdep_set_class(&sch->running.seqcount,
634                           dev->qdisc_running_key ?: &qdisc_running_key);
635         lockdep_set_class(&sch->running.lock,
636                           dev->qdisc_running_key ?: &qdisc_running_key);
637 #else
638         seqcount_init(&sch->running);
639         lockdep_set_class(&sch->running,
640                           dev->qdisc_running_key ?: &qdisc_running_key);
641 #endif
642
643         sch->ops = ops;
644         sch->enqueue = ops->enqueue;
645         sch->dequeue = ops->dequeue;
646         sch->dev_queue = dev_queue;
647         dev_hold(dev);
648         atomic_set(&sch->refcnt, 1);
649
650         return sch;
651 errout:
652         return ERR_PTR(err);
653 }
654
655 struct Qdisc *qdisc_create_dflt(struct netdev_queue *dev_queue,
656                                 const struct Qdisc_ops *ops,
657                                 unsigned int parentid)
658 {
659         struct Qdisc *sch;
660
661         if (!try_module_get(ops->owner))
662                 return NULL;
663
664         sch = qdisc_alloc(dev_queue, ops);
665         if (IS_ERR(sch)) {
666                 module_put(ops->owner);
667                 return NULL;
668         }
669         sch->parent = parentid;
670
671         if (!ops->init || ops->init(sch, NULL) == 0)
672                 return sch;
673
674         qdisc_destroy(sch);
675         return NULL;
676 }
677 EXPORT_SYMBOL(qdisc_create_dflt);
678
679 /* Under qdisc_lock(qdisc) and BH! */
680
681 void qdisc_reset(struct Qdisc *qdisc)
682 {
683         const struct Qdisc_ops *ops = qdisc->ops;
684
685         if (ops->reset)
686                 ops->reset(qdisc);
687
688         kfree_skb(qdisc->skb_bad_txq);
689         qdisc->skb_bad_txq = NULL;
690
691         if (qdisc->gso_skb) {
692                 kfree_skb_list(qdisc->gso_skb);
693                 qdisc->gso_skb = NULL;
694         }
695         qdisc->q.qlen = 0;
696 }
697 EXPORT_SYMBOL(qdisc_reset);
698
699 static void qdisc_rcu_free(struct rcu_head *head)
700 {
701         struct Qdisc *qdisc = container_of(head, struct Qdisc, rcu_head);
702
703         if (qdisc_is_percpu_stats(qdisc)) {
704                 free_percpu(qdisc->cpu_bstats);
705                 free_percpu(qdisc->cpu_qstats);
706         }
707
708         kfree((char *) qdisc - qdisc->padded);
709 }
710
711 void qdisc_destroy(struct Qdisc *qdisc)
712 {
713         const struct Qdisc_ops  *ops = qdisc->ops;
714
715         if (qdisc->flags & TCQ_F_BUILTIN ||
716             !atomic_dec_and_test(&qdisc->refcnt))
717                 return;
718
719 #ifdef CONFIG_NET_SCHED
720         qdisc_hash_del(qdisc);
721
722         qdisc_put_stab(rtnl_dereference(qdisc->stab));
723 #endif
724         gen_kill_estimator(&qdisc->bstats, &qdisc->rate_est);
725         if (ops->reset)
726                 ops->reset(qdisc);
727         if (ops->destroy)
728                 ops->destroy(qdisc);
729
730         module_put(ops->owner);
731         dev_put(qdisc_dev(qdisc));
732
733         kfree_skb_list(qdisc->gso_skb);
734         kfree_skb(qdisc->skb_bad_txq);
735         /*
736          * gen_estimator est_timer() might access qdisc->q.lock,
737          * wait a RCU grace period before freeing qdisc.
738          */
739         call_rcu(&qdisc->rcu_head, qdisc_rcu_free);
740 }
741 EXPORT_SYMBOL(qdisc_destroy);
742
743 /* Attach toplevel qdisc to device queue. */
744 struct Qdisc *dev_graft_qdisc(struct netdev_queue *dev_queue,
745                               struct Qdisc *qdisc)
746 {
747         struct Qdisc *oqdisc = dev_queue->qdisc_sleeping;
748         spinlock_t *root_lock;
749
750         root_lock = qdisc_lock(oqdisc);
751         spin_lock_bh(root_lock);
752
753         /* Prune old scheduler */
754         if (oqdisc && atomic_read(&oqdisc->refcnt) <= 1)
755                 qdisc_reset(oqdisc);
756
757         /* ... and graft new one */
758         if (qdisc == NULL)
759                 qdisc = &noop_qdisc;
760         dev_queue->qdisc_sleeping = qdisc;
761         rcu_assign_pointer(dev_queue->qdisc, &noop_qdisc);
762
763         spin_unlock_bh(root_lock);
764
765         return oqdisc;
766 }
767 EXPORT_SYMBOL(dev_graft_qdisc);
768
769 static void attach_one_default_qdisc(struct net_device *dev,
770                                      struct netdev_queue *dev_queue,
771                                      void *_unused)
772 {
773         struct Qdisc *qdisc;
774         const struct Qdisc_ops *ops = default_qdisc_ops;
775
776         if (dev->priv_flags & IFF_NO_QUEUE)
777                 ops = &noqueue_qdisc_ops;
778
779         qdisc = qdisc_create_dflt(dev_queue, ops, TC_H_ROOT);
780         if (!qdisc) {
781                 netdev_info(dev, "activation failed\n");
782                 return;
783         }
784         if (!netif_is_multiqueue(dev))
785                 qdisc->flags |= TCQ_F_ONETXQUEUE | TCQ_F_NOPARENT;
786         dev_queue->qdisc_sleeping = qdisc;
787 }
788
789 static void attach_default_qdiscs(struct net_device *dev)
790 {
791         struct netdev_queue *txq;
792         struct Qdisc *qdisc;
793
794         txq = netdev_get_tx_queue(dev, 0);
795
796         if (!netif_is_multiqueue(dev) ||
797             dev->priv_flags & IFF_NO_QUEUE) {
798                 netdev_for_each_tx_queue(dev, attach_one_default_qdisc, NULL);
799                 dev->qdisc = txq->qdisc_sleeping;
800                 atomic_inc(&dev->qdisc->refcnt);
801         } else {
802                 qdisc = qdisc_create_dflt(txq, &mq_qdisc_ops, TC_H_ROOT);
803                 if (qdisc) {
804                         dev->qdisc = qdisc;
805                         qdisc->ops->attach(qdisc);
806                 }
807         }
808 #ifdef CONFIG_NET_SCHED
809         if (dev->qdisc)
810                 qdisc_hash_add(dev->qdisc);
811 #endif
812 }
813
814 static void transition_one_qdisc(struct net_device *dev,
815                                  struct netdev_queue *dev_queue,
816                                  void *_need_watchdog)
817 {
818         struct Qdisc *new_qdisc = dev_queue->qdisc_sleeping;
819         int *need_watchdog_p = _need_watchdog;
820
821         if (!(new_qdisc->flags & TCQ_F_BUILTIN))
822                 clear_bit(__QDISC_STATE_DEACTIVATED, &new_qdisc->state);
823
824         rcu_assign_pointer(dev_queue->qdisc, new_qdisc);
825         if (need_watchdog_p) {
826                 dev_queue->trans_start = 0;
827                 *need_watchdog_p = 1;
828         }
829 }
830
831 void dev_activate(struct net_device *dev)
832 {
833         int need_watchdog;
834
835         /* No queueing discipline is attached to device;
836          * create default one for devices, which need queueing
837          * and noqueue_qdisc for virtual interfaces
838          */
839
840         if (dev->qdisc == &noop_qdisc)
841                 attach_default_qdiscs(dev);
842
843         if (!netif_carrier_ok(dev))
844                 /* Delay activation until next carrier-on event */
845                 return;
846
847         need_watchdog = 0;
848         netdev_for_each_tx_queue(dev, transition_one_qdisc, &need_watchdog);
849         if (dev_ingress_queue(dev))
850                 transition_one_qdisc(dev, dev_ingress_queue(dev), NULL);
851
852         if (need_watchdog) {
853                 netif_trans_update(dev);
854                 dev_watchdog_up(dev);
855         }
856 }
857 EXPORT_SYMBOL(dev_activate);
858
859 static void dev_deactivate_queue(struct net_device *dev,
860                                  struct netdev_queue *dev_queue,
861                                  void *_qdisc_default)
862 {
863         struct Qdisc *qdisc_default = _qdisc_default;
864         struct Qdisc *qdisc;
865
866         qdisc = rtnl_dereference(dev_queue->qdisc);
867         if (qdisc) {
868                 spin_lock_bh(qdisc_lock(qdisc));
869
870                 if (!(qdisc->flags & TCQ_F_BUILTIN))
871                         set_bit(__QDISC_STATE_DEACTIVATED, &qdisc->state);
872
873                 rcu_assign_pointer(dev_queue->qdisc, qdisc_default);
874                 qdisc_reset(qdisc);
875
876                 spin_unlock_bh(qdisc_lock(qdisc));
877         }
878 }
879
880 static bool some_qdisc_is_busy(struct net_device *dev)
881 {
882         unsigned int i;
883
884         for (i = 0; i < dev->num_tx_queues; i++) {
885                 struct netdev_queue *dev_queue;
886                 spinlock_t *root_lock;
887                 struct Qdisc *q;
888                 int val;
889
890                 dev_queue = netdev_get_tx_queue(dev, i);
891                 q = dev_queue->qdisc_sleeping;
892                 root_lock = qdisc_lock(q);
893
894                 spin_lock_bh(root_lock);
895
896                 val = (qdisc_is_running(q) ||
897                        test_bit(__QDISC_STATE_SCHED, &q->state));
898
899                 spin_unlock_bh(root_lock);
900
901                 if (val)
902                         return true;
903         }
904         return false;
905 }
906
907 /**
908  *      dev_deactivate_many - deactivate transmissions on several devices
909  *      @head: list of devices to deactivate
910  *
911  *      This function returns only when all outstanding transmissions
912  *      have completed, unless all devices are in dismantle phase.
913  */
914 void dev_deactivate_many(struct list_head *head)
915 {
916         struct net_device *dev;
917         bool sync_needed = false;
918
919         list_for_each_entry(dev, head, close_list) {
920                 netdev_for_each_tx_queue(dev, dev_deactivate_queue,
921                                          &noop_qdisc);
922                 if (dev_ingress_queue(dev))
923                         dev_deactivate_queue(dev, dev_ingress_queue(dev),
924                                              &noop_qdisc);
925
926                 dev_watchdog_down(dev);
927                 sync_needed |= !dev->dismantle;
928         }
929
930         /* Wait for outstanding qdisc-less dev_queue_xmit calls.
931          * This is avoided if all devices are in dismantle phase :
932          * Caller will call synchronize_net() for us
933          */
934         if (sync_needed)
935                 synchronize_net();
936
937         /* Wait for outstanding qdisc_run calls. */
938         list_for_each_entry(dev, head, close_list)
939                 while (some_qdisc_is_busy(dev))
940                         msleep(1);
941 }
942
943 void dev_deactivate(struct net_device *dev)
944 {
945         LIST_HEAD(single);
946
947         list_add(&dev->close_list, &single);
948         dev_deactivate_many(&single);
949         list_del(&single);
950 }
951 EXPORT_SYMBOL(dev_deactivate);
952
953 static void dev_init_scheduler_queue(struct net_device *dev,
954                                      struct netdev_queue *dev_queue,
955                                      void *_qdisc)
956 {
957         struct Qdisc *qdisc = _qdisc;
958
959         rcu_assign_pointer(dev_queue->qdisc, qdisc);
960         dev_queue->qdisc_sleeping = qdisc;
961 }
962
963 void dev_init_scheduler(struct net_device *dev)
964 {
965         dev->qdisc = &noop_qdisc;
966         netdev_for_each_tx_queue(dev, dev_init_scheduler_queue, &noop_qdisc);
967         if (dev_ingress_queue(dev))
968                 dev_init_scheduler_queue(dev, dev_ingress_queue(dev), &noop_qdisc);
969
970         setup_timer(&dev->watchdog_timer, dev_watchdog, (unsigned long)dev);
971 }
972
973 static void shutdown_scheduler_queue(struct net_device *dev,
974                                      struct netdev_queue *dev_queue,
975                                      void *_qdisc_default)
976 {
977         struct Qdisc *qdisc = dev_queue->qdisc_sleeping;
978         struct Qdisc *qdisc_default = _qdisc_default;
979
980         if (qdisc) {
981                 rcu_assign_pointer(dev_queue->qdisc, qdisc_default);
982                 dev_queue->qdisc_sleeping = qdisc_default;
983
984                 qdisc_destroy(qdisc);
985         }
986 }
987
988 void dev_shutdown(struct net_device *dev)
989 {
990         netdev_for_each_tx_queue(dev, shutdown_scheduler_queue, &noop_qdisc);
991         if (dev_ingress_queue(dev))
992                 shutdown_scheduler_queue(dev, dev_ingress_queue(dev), &noop_qdisc);
993         qdisc_destroy(dev->qdisc);
994         dev->qdisc = &noop_qdisc;
995
996         WARN_ON(timer_pending(&dev->watchdog_timer));
997 }
998
999 void psched_ratecfg_precompute(struct psched_ratecfg *r,
1000                                const struct tc_ratespec *conf,
1001                                u64 rate64)
1002 {
1003         memset(r, 0, sizeof(*r));
1004         r->overhead = conf->overhead;
1005         r->rate_bytes_ps = max_t(u64, conf->rate, rate64);
1006         r->linklayer = (conf->linklayer & TC_LINKLAYER_MASK);
1007         r->mult = 1;
1008         /*
1009          * The deal here is to replace a divide by a reciprocal one
1010          * in fast path (a reciprocal divide is a multiply and a shift)
1011          *
1012          * Normal formula would be :
1013          *  time_in_ns = (NSEC_PER_SEC * len) / rate_bps
1014          *
1015          * We compute mult/shift to use instead :
1016          *  time_in_ns = (len * mult) >> shift;
1017          *
1018          * We try to get the highest possible mult value for accuracy,
1019          * but have to make sure no overflows will ever happen.
1020          */
1021         if (r->rate_bytes_ps > 0) {
1022                 u64 factor = NSEC_PER_SEC;
1023
1024                 for (;;) {
1025                         r->mult = div64_u64(factor, r->rate_bytes_ps);
1026                         if (r->mult & (1U << 31) || factor & (1ULL << 63))
1027                                 break;
1028                         factor <<= 1;
1029                         r->shift++;
1030                 }
1031         }
1032 }
1033 EXPORT_SYMBOL(psched_ratecfg_precompute);