blob: eab0ecd3ce997224236cff7a65266f656b6363fb [file] [log] [blame]
Kyle Swenson8d8f6542021-03-15 11:02:55 -06001/*
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 */
Kyle Swensone01461f2021-03-15 11:14:57 -060034const struct Qdisc_ops *default_qdisc_ops = &fq_codel_qdisc_ops;
Kyle Swenson8d8f6542021-03-15 11:02:55 -060035EXPORT_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
48static inline int dev_requeue_skb(struct sk_buff *skb, struct Qdisc *q)
49{
50 q->gso_skb = skb;
51 q->qstats.requeues++;
52 q->q.qlen++; /* it's still part of the queue */
53 __netif_schedule(q);
54
55 return 0;
56}
57
58static void try_bulk_dequeue_skb(struct Qdisc *q,
59 struct sk_buff *skb,
60 const struct netdev_queue *txq,
61 int *packets)
62{
63 int bytelimit = qdisc_avail_bulklimit(txq) - skb->len;
64
65 while (bytelimit > 0) {
66 struct sk_buff *nskb = q->dequeue(q);
67
68 if (!nskb)
69 break;
70
71 bytelimit -= nskb->len; /* covers GSO len */
72 skb->next = nskb;
73 skb = nskb;
74 (*packets)++; /* GSO counts as one pkt */
75 }
76 skb->next = NULL;
77}
78
79/* Note that dequeue_skb can possibly return a SKB list (via skb->next).
80 * A requeued skb (via q->gso_skb) can also be a SKB list.
81 */
82static struct sk_buff *dequeue_skb(struct Qdisc *q, bool *validate,
83 int *packets)
84{
85 struct sk_buff *skb = q->gso_skb;
86 const struct netdev_queue *txq = q->dev_queue;
87
88 *packets = 1;
89 *validate = true;
90 if (unlikely(skb)) {
91 /* check the reason of requeuing without tx lock first */
92 txq = skb_get_tx_queue(txq->dev, skb);
93 if (!netif_xmit_frozen_or_stopped(txq)) {
94 q->gso_skb = NULL;
95 q->q.qlen--;
96 } else
97 skb = NULL;
98 /* skb in gso_skb were already validated */
99 *validate = false;
100 } else {
101 if (!(q->flags & TCQ_F_ONETXQUEUE) ||
102 !netif_xmit_frozen_or_stopped(txq)) {
103 skb = q->dequeue(q);
104 if (skb && qdisc_may_bulk(q))
105 try_bulk_dequeue_skb(q, skb, txq, packets);
106 }
107 }
108 return skb;
109}
110
111static inline int handle_dev_cpu_collision(struct sk_buff *skb,
112 struct netdev_queue *dev_queue,
113 struct Qdisc *q)
114{
115 int ret;
116
117 if (unlikely(dev_queue->xmit_lock_owner == smp_processor_id())) {
118 /*
119 * Same CPU holding the lock. It may be a transient
120 * configuration error, when hard_start_xmit() recurses. We
121 * detect it by checking xmit owner and drop the packet when
122 * deadloop is detected. Return OK to try the next skb.
123 */
124 kfree_skb_list(skb);
125 net_warn_ratelimited("Dead loop on netdevice %s, fix it urgently!\n",
126 dev_queue->dev->name);
127 ret = qdisc_qlen(q);
128 } else {
129 /*
130 * Another cpu is holding lock, requeue & delay xmits for
131 * some time.
132 */
133 __this_cpu_inc(softnet_data.cpu_collision);
134 ret = dev_requeue_skb(skb, q);
135 }
136
137 return ret;
138}
139
140/*
141 * Transmit possibly several skbs, and handle the return status as
142 * required. Holding the __QDISC___STATE_RUNNING bit guarantees that
143 * only one CPU can execute this function.
144 *
145 * Returns to the caller:
146 * 0 - queue is empty or throttled.
147 * >0 - queue is not empty.
148 */
149int sch_direct_xmit(struct sk_buff *skb, struct Qdisc *q,
150 struct net_device *dev, struct netdev_queue *txq,
151 spinlock_t *root_lock, bool validate)
152{
153 int ret = NETDEV_TX_BUSY;
154
155 /* And release qdisc */
156 spin_unlock(root_lock);
157
158 /* Note that we validate skb (GSO, checksum, ...) outside of locks */
159 if (validate)
160 skb = validate_xmit_skb_list(skb, dev);
161
162 if (likely(skb)) {
163 HARD_TX_LOCK(dev, txq, smp_processor_id());
164 if (!netif_xmit_frozen_or_stopped(txq))
165 skb = dev_hard_start_xmit(skb, dev, txq, &ret);
166
167 HARD_TX_UNLOCK(dev, txq);
168 } else {
169 spin_lock(root_lock);
170 return qdisc_qlen(q);
171 }
172 spin_lock(root_lock);
173
174 if (dev_xmit_complete(ret)) {
175 /* Driver sent out skb successfully or skb was consumed */
176 ret = qdisc_qlen(q);
177 } else if (ret == NETDEV_TX_LOCKED) {
178 /* Driver try lock failed */
179 ret = handle_dev_cpu_collision(skb, txq, q);
180 } else {
181 /* Driver returned NETDEV_TX_BUSY - requeue skb */
182 if (unlikely(ret != NETDEV_TX_BUSY))
183 net_warn_ratelimited("BUG %s code %d qlen %d\n",
184 dev->name, ret, q->q.qlen);
185
186 ret = dev_requeue_skb(skb, q);
187 }
188
189 if (ret && netif_xmit_frozen_or_stopped(txq))
190 ret = 0;
191
192 return ret;
193}
194
195/*
196 * NOTE: Called under qdisc_lock(q) with locally disabled BH.
197 *
198 * __QDISC___STATE_RUNNING guarantees only one CPU can process
199 * this qdisc at a time. qdisc_lock(q) serializes queue accesses for
200 * this queue.
201 *
202 * netif_tx_lock serializes accesses to device driver.
203 *
204 * qdisc_lock(q) and netif_tx_lock are mutually exclusive,
205 * if one is grabbed, another must be free.
206 *
207 * Note, that this procedure can be called by a watchdog timer
208 *
209 * Returns to the caller:
210 * 0 - queue is empty or throttled.
211 * >0 - queue is not empty.
212 *
213 */
214static inline int qdisc_restart(struct Qdisc *q, int *packets)
215{
216 struct netdev_queue *txq;
217 struct net_device *dev;
218 spinlock_t *root_lock;
219 struct sk_buff *skb;
220 bool validate;
221
222 /* Dequeue packet */
223 skb = dequeue_skb(q, &validate, packets);
224 if (unlikely(!skb))
225 return 0;
226
227 root_lock = qdisc_lock(q);
228 dev = qdisc_dev(q);
229 txq = skb_get_tx_queue(dev, skb);
230
231 return sch_direct_xmit(skb, q, dev, txq, root_lock, validate);
232}
233
234void __qdisc_run(struct Qdisc *q)
235{
236 int quota = weight_p;
237 int packets;
238
239 while (qdisc_restart(q, &packets)) {
240 /*
241 * Ordered by possible occurrence: Postpone processing if
242 * 1. we've exceeded packet quota
243 * 2. another process needs the CPU;
244 */
245 quota -= packets;
246 if (quota <= 0 || need_resched()) {
247 __netif_schedule(q);
248 break;
249 }
250 }
251
252 qdisc_run_end(q);
253}
254
255unsigned long dev_trans_start(struct net_device *dev)
256{
257 unsigned long val, res;
258 unsigned int i;
259
260 if (is_vlan_dev(dev))
261 dev = vlan_dev_real_dev(dev);
262 res = dev->trans_start;
263 for (i = 0; i < dev->num_tx_queues; i++) {
264 val = netdev_get_tx_queue(dev, i)->trans_start;
265 if (val && time_after(val, res))
266 res = val;
267 }
268 dev->trans_start = res;
269
270 return res;
271}
272EXPORT_SYMBOL(dev_trans_start);
273
274static void dev_watchdog(unsigned long arg)
275{
276 struct net_device *dev = (struct net_device *)arg;
277
278 netif_tx_lock(dev);
279 if (!qdisc_tx_is_noop(dev)) {
280 if (netif_device_present(dev) &&
281 netif_running(dev) &&
282 netif_carrier_ok(dev)) {
283 int some_queue_timedout = 0;
284 unsigned int i;
285 unsigned long trans_start;
286
287 for (i = 0; i < dev->num_tx_queues; i++) {
288 struct netdev_queue *txq;
289
290 txq = netdev_get_tx_queue(dev, i);
291 /*
292 * old device drivers set dev->trans_start
293 */
294 trans_start = txq->trans_start ? : dev->trans_start;
295 if (netif_xmit_stopped(txq) &&
296 time_after(jiffies, (trans_start +
297 dev->watchdog_timeo))) {
298 some_queue_timedout = 1;
299 txq->trans_timeout++;
300 break;
301 }
302 }
303
304 if (some_queue_timedout) {
305 WARN_ONCE(1, KERN_INFO "NETDEV WATCHDOG: %s (%s): transmit queue %u timed out\n",
306 dev->name, netdev_drivername(dev), i);
307 dev->netdev_ops->ndo_tx_timeout(dev);
308 }
309 if (!mod_timer(&dev->watchdog_timer,
310 round_jiffies(jiffies +
311 dev->watchdog_timeo)))
312 dev_hold(dev);
313 }
314 }
315 netif_tx_unlock(dev);
316
317 dev_put(dev);
318}
319
320void __netdev_watchdog_up(struct net_device *dev)
321{
322 if (dev->netdev_ops->ndo_tx_timeout) {
323 if (dev->watchdog_timeo <= 0)
324 dev->watchdog_timeo = 5*HZ;
325 if (!mod_timer(&dev->watchdog_timer,
326 round_jiffies(jiffies + dev->watchdog_timeo)))
327 dev_hold(dev);
328 }
329}
330
331static void dev_watchdog_up(struct net_device *dev)
332{
333 __netdev_watchdog_up(dev);
334}
335
336static void dev_watchdog_down(struct net_device *dev)
337{
338 netif_tx_lock_bh(dev);
339 if (del_timer(&dev->watchdog_timer))
340 dev_put(dev);
341 netif_tx_unlock_bh(dev);
342}
343
344/**
345 * netif_carrier_on - set carrier
346 * @dev: network device
347 *
348 * Device has detected that carrier.
349 */
350void netif_carrier_on(struct net_device *dev)
351{
352 if (test_and_clear_bit(__LINK_STATE_NOCARRIER, &dev->state)) {
353 if (dev->reg_state == NETREG_UNINITIALIZED)
354 return;
355 atomic_inc(&dev->carrier_changes);
356 linkwatch_fire_event(dev);
357 if (netif_running(dev))
358 __netdev_watchdog_up(dev);
359 }
360}
361EXPORT_SYMBOL(netif_carrier_on);
362
363/**
364 * netif_carrier_off - clear carrier
365 * @dev: network device
366 *
367 * Device has detected loss of carrier.
368 */
369void netif_carrier_off(struct net_device *dev)
370{
371 if (!test_and_set_bit(__LINK_STATE_NOCARRIER, &dev->state)) {
372 if (dev->reg_state == NETREG_UNINITIALIZED)
373 return;
374 atomic_inc(&dev->carrier_changes);
375 linkwatch_fire_event(dev);
376 }
377}
378EXPORT_SYMBOL(netif_carrier_off);
379
380/* "NOOP" scheduler: the best scheduler, recommended for all interfaces
381 under all circumstances. It is difficult to invent anything faster or
382 cheaper.
383 */
384
385static int noop_enqueue(struct sk_buff *skb, struct Qdisc *qdisc)
386{
387 kfree_skb(skb);
388 return NET_XMIT_CN;
389}
390
391static struct sk_buff *noop_dequeue(struct Qdisc *qdisc)
392{
393 return NULL;
394}
395
396struct Qdisc_ops noop_qdisc_ops __read_mostly = {
397 .id = "noop",
398 .priv_size = 0,
399 .enqueue = noop_enqueue,
400 .dequeue = noop_dequeue,
401 .peek = noop_dequeue,
402 .owner = THIS_MODULE,
403};
404
405static struct netdev_queue noop_netdev_queue = {
406 .qdisc = &noop_qdisc,
407 .qdisc_sleeping = &noop_qdisc,
408};
409
410struct Qdisc noop_qdisc = {
411 .enqueue = noop_enqueue,
412 .dequeue = noop_dequeue,
413 .flags = TCQ_F_BUILTIN,
414 .ops = &noop_qdisc_ops,
415 .list = LIST_HEAD_INIT(noop_qdisc.list),
416 .q.lock = __SPIN_LOCK_UNLOCKED(noop_qdisc.q.lock),
417 .dev_queue = &noop_netdev_queue,
418 .busylock = __SPIN_LOCK_UNLOCKED(noop_qdisc.busylock),
419};
420EXPORT_SYMBOL(noop_qdisc);
421
422static int noqueue_init(struct Qdisc *qdisc, struct nlattr *opt)
423{
424 /* register_qdisc() assigns a default of noop_enqueue if unset,
425 * but __dev_queue_xmit() treats noqueue only as such
426 * if this is NULL - so clear it here. */
427 qdisc->enqueue = NULL;
428 return 0;
429}
430
431struct Qdisc_ops noqueue_qdisc_ops __read_mostly = {
432 .id = "noqueue",
433 .priv_size = 0,
434 .init = noqueue_init,
435 .enqueue = noop_enqueue,
436 .dequeue = noop_dequeue,
437 .peek = noop_dequeue,
438 .owner = THIS_MODULE,
439};
440
Kyle Swenson8d8f6542021-03-15 11:02:55 -0600441static struct lock_class_key qdisc_tx_busylock;
442
443struct Qdisc *qdisc_alloc(struct netdev_queue *dev_queue,
444 const struct Qdisc_ops *ops)
445{
446 void *p;
447 struct Qdisc *sch;
448 unsigned int size = QDISC_ALIGN(sizeof(*sch)) + ops->priv_size;
449 int err = -ENOBUFS;
450 struct net_device *dev = dev_queue->dev;
451
452 p = kzalloc_node(size, GFP_KERNEL,
453 netdev_queue_numa_node_read(dev_queue));
454
455 if (!p)
456 goto errout;
457 sch = (struct Qdisc *) QDISC_ALIGN((unsigned long) p);
458 /* if we got non aligned memory, ask more and do alignment ourself */
459 if (sch != p) {
460 kfree(p);
461 p = kzalloc_node(size + QDISC_ALIGNTO - 1, GFP_KERNEL,
462 netdev_queue_numa_node_read(dev_queue));
463 if (!p)
464 goto errout;
465 sch = (struct Qdisc *) QDISC_ALIGN((unsigned long) p);
466 sch->padded = (char *) sch - (char *) p;
467 }
468 INIT_LIST_HEAD(&sch->list);
469 skb_queue_head_init(&sch->q);
470
471 spin_lock_init(&sch->busylock);
472 lockdep_set_class(&sch->busylock,
473 dev->qdisc_tx_busylock ?: &qdisc_tx_busylock);
474
475 sch->ops = ops;
476 sch->enqueue = ops->enqueue;
477 sch->dequeue = ops->dequeue;
478 sch->dev_queue = dev_queue;
479 dev_hold(dev);
480 atomic_set(&sch->refcnt, 1);
481
482 return sch;
483errout:
484 return ERR_PTR(err);
485}
486
487struct Qdisc *qdisc_create_dflt(struct netdev_queue *dev_queue,
488 const struct Qdisc_ops *ops,
489 unsigned int parentid)
490{
491 struct Qdisc *sch;
492
493 if (!try_module_get(ops->owner))
494 goto errout;
495
496 sch = qdisc_alloc(dev_queue, ops);
497 if (IS_ERR(sch))
498 goto errout;
499 sch->parent = parentid;
500
501 if (!ops->init || ops->init(sch, NULL) == 0)
502 return sch;
503
504 qdisc_destroy(sch);
505errout:
506 return NULL;
507}
508EXPORT_SYMBOL(qdisc_create_dflt);
509
510/* Under qdisc_lock(qdisc) and BH! */
511
512void qdisc_reset(struct Qdisc *qdisc)
513{
514 const struct Qdisc_ops *ops = qdisc->ops;
515
516 if (ops->reset)
517 ops->reset(qdisc);
518
519 if (qdisc->gso_skb) {
520 kfree_skb_list(qdisc->gso_skb);
521 qdisc->gso_skb = NULL;
522 qdisc->q.qlen = 0;
523 }
524}
525EXPORT_SYMBOL(qdisc_reset);
526
527static void qdisc_rcu_free(struct rcu_head *head)
528{
529 struct Qdisc *qdisc = container_of(head, struct Qdisc, rcu_head);
530
531 if (qdisc_is_percpu_stats(qdisc)) {
532 free_percpu(qdisc->cpu_bstats);
533 free_percpu(qdisc->cpu_qstats);
534 }
535
536 kfree((char *) qdisc - qdisc->padded);
537}
538
539void qdisc_destroy(struct Qdisc *qdisc)
540{
541 const struct Qdisc_ops *ops = qdisc->ops;
542
543 if (qdisc->flags & TCQ_F_BUILTIN ||
544 !atomic_dec_and_test(&qdisc->refcnt))
545 return;
546
547#ifdef CONFIG_NET_SCHED
548 qdisc_list_del(qdisc);
549
550 qdisc_put_stab(rtnl_dereference(qdisc->stab));
551#endif
552 gen_kill_estimator(&qdisc->bstats, &qdisc->rate_est);
553 if (ops->reset)
554 ops->reset(qdisc);
555 if (ops->destroy)
556 ops->destroy(qdisc);
557
558 module_put(ops->owner);
559 dev_put(qdisc_dev(qdisc));
560
561 kfree_skb_list(qdisc->gso_skb);
562 /*
563 * gen_estimator est_timer() might access qdisc->q.lock,
564 * wait a RCU grace period before freeing qdisc.
565 */
566 call_rcu(&qdisc->rcu_head, qdisc_rcu_free);
567}
568EXPORT_SYMBOL(qdisc_destroy);
569
570/* Attach toplevel qdisc to device queue. */
571struct Qdisc *dev_graft_qdisc(struct netdev_queue *dev_queue,
572 struct Qdisc *qdisc)
573{
574 struct Qdisc *oqdisc = dev_queue->qdisc_sleeping;
575 spinlock_t *root_lock;
576
577 root_lock = qdisc_lock(oqdisc);
578 spin_lock_bh(root_lock);
579
580 /* Prune old scheduler */
581 if (oqdisc && atomic_read(&oqdisc->refcnt) <= 1)
582 qdisc_reset(oqdisc);
583
584 /* ... and graft new one */
585 if (qdisc == NULL)
586 qdisc = &noop_qdisc;
587 dev_queue->qdisc_sleeping = qdisc;
588 rcu_assign_pointer(dev_queue->qdisc, &noop_qdisc);
589
590 spin_unlock_bh(root_lock);
591
592 return oqdisc;
593}
594EXPORT_SYMBOL(dev_graft_qdisc);
595
596static void attach_one_default_qdisc(struct net_device *dev,
597 struct netdev_queue *dev_queue,
598 void *_unused)
599{
600 struct Qdisc *qdisc;
Kyle Swensone01461f2021-03-15 11:14:57 -0600601 const struct Qdisc_ops *ops = &fq_codel_qdisc_ops;
Kyle Swenson8d8f6542021-03-15 11:02:55 -0600602
603 if (dev->priv_flags & IFF_NO_QUEUE)
604 ops = &noqueue_qdisc_ops;
605
606 qdisc = qdisc_create_dflt(dev_queue, ops, TC_H_ROOT);
607 if (!qdisc) {
608 netdev_info(dev, "activation failed\n");
609 return;
610 }
611 if (!netif_is_multiqueue(dev))
612 qdisc->flags |= TCQ_F_ONETXQUEUE | TCQ_F_NOPARENT;
613 dev_queue->qdisc_sleeping = qdisc;
614}
615
616static void attach_default_qdiscs(struct net_device *dev)
617{
618 struct netdev_queue *txq;
619 struct Qdisc *qdisc;
620
621 txq = netdev_get_tx_queue(dev, 0);
622
623 if (!netif_is_multiqueue(dev) ||
624 dev->priv_flags & IFF_NO_QUEUE) {
625 netdev_for_each_tx_queue(dev, attach_one_default_qdisc, NULL);
626 dev->qdisc = txq->qdisc_sleeping;
627 atomic_inc(&dev->qdisc->refcnt);
628 } else {
629 qdisc = qdisc_create_dflt(txq, &mq_qdisc_ops, TC_H_ROOT);
630 if (qdisc) {
631 dev->qdisc = qdisc;
632 qdisc->ops->attach(qdisc);
633 }
634 }
635}
636
637static void transition_one_qdisc(struct net_device *dev,
638 struct netdev_queue *dev_queue,
639 void *_need_watchdog)
640{
641 struct Qdisc *new_qdisc = dev_queue->qdisc_sleeping;
642 int *need_watchdog_p = _need_watchdog;
643
644 if (!(new_qdisc->flags & TCQ_F_BUILTIN))
645 clear_bit(__QDISC_STATE_DEACTIVATED, &new_qdisc->state);
646
647 rcu_assign_pointer(dev_queue->qdisc, new_qdisc);
648 if (need_watchdog_p) {
649 dev_queue->trans_start = 0;
650 *need_watchdog_p = 1;
651 }
652}
653
654void dev_activate(struct net_device *dev)
655{
656 int need_watchdog;
657
658 /* No queueing discipline is attached to device;
659 * create default one for devices, which need queueing
660 * and noqueue_qdisc for virtual interfaces
661 */
662
663 if (dev->qdisc == &noop_qdisc)
664 attach_default_qdiscs(dev);
665
666 if (!netif_carrier_ok(dev))
667 /* Delay activation until next carrier-on event */
668 return;
669
670 need_watchdog = 0;
671 netdev_for_each_tx_queue(dev, transition_one_qdisc, &need_watchdog);
672 if (dev_ingress_queue(dev))
673 transition_one_qdisc(dev, dev_ingress_queue(dev), NULL);
674
675 if (need_watchdog) {
676 dev->trans_start = jiffies;
677 dev_watchdog_up(dev);
678 }
679}
680EXPORT_SYMBOL(dev_activate);
681
682static void dev_deactivate_queue(struct net_device *dev,
683 struct netdev_queue *dev_queue,
684 void *_qdisc_default)
685{
686 struct Qdisc *qdisc_default = _qdisc_default;
687 struct Qdisc *qdisc;
688
689 qdisc = rtnl_dereference(dev_queue->qdisc);
690 if (qdisc) {
691 spin_lock_bh(qdisc_lock(qdisc));
692
693 if (!(qdisc->flags & TCQ_F_BUILTIN))
694 set_bit(__QDISC_STATE_DEACTIVATED, &qdisc->state);
695
696 rcu_assign_pointer(dev_queue->qdisc, qdisc_default);
697 qdisc_reset(qdisc);
698
699 spin_unlock_bh(qdisc_lock(qdisc));
700 }
701}
702
703static bool some_qdisc_is_busy(struct net_device *dev)
704{
705 unsigned int i;
706
707 for (i = 0; i < dev->num_tx_queues; i++) {
708 struct netdev_queue *dev_queue;
709 spinlock_t *root_lock;
710 struct Qdisc *q;
711 int val;
712
713 dev_queue = netdev_get_tx_queue(dev, i);
714 q = dev_queue->qdisc_sleeping;
715 root_lock = qdisc_lock(q);
716
717 spin_lock_bh(root_lock);
718
719 val = (qdisc_is_running(q) ||
720 test_bit(__QDISC_STATE_SCHED, &q->state));
721
722 spin_unlock_bh(root_lock);
723
724 if (val)
725 return true;
726 }
727 return false;
728}
729
730/**
731 * dev_deactivate_many - deactivate transmissions on several devices
732 * @head: list of devices to deactivate
733 *
734 * This function returns only when all outstanding transmissions
735 * have completed, unless all devices are in dismantle phase.
736 */
737void dev_deactivate_many(struct list_head *head)
738{
739 struct net_device *dev;
740 bool sync_needed = false;
741
742 list_for_each_entry(dev, head, close_list) {
743 netdev_for_each_tx_queue(dev, dev_deactivate_queue,
744 &noop_qdisc);
745 if (dev_ingress_queue(dev))
746 dev_deactivate_queue(dev, dev_ingress_queue(dev),
747 &noop_qdisc);
748
749 dev_watchdog_down(dev);
750 sync_needed |= !dev->dismantle;
751 }
752
753 /* Wait for outstanding qdisc-less dev_queue_xmit calls.
754 * This is avoided if all devices are in dismantle phase :
755 * Caller will call synchronize_net() for us
756 */
757 if (sync_needed)
758 synchronize_net();
759
760 /* Wait for outstanding qdisc_run calls. */
761 list_for_each_entry(dev, head, close_list)
762 while (some_qdisc_is_busy(dev))
763 yield();
764}
765
766void dev_deactivate(struct net_device *dev)
767{
768 LIST_HEAD(single);
769
770 list_add(&dev->close_list, &single);
771 dev_deactivate_many(&single);
772 list_del(&single);
773}
774EXPORT_SYMBOL(dev_deactivate);
775
776static void dev_init_scheduler_queue(struct net_device *dev,
777 struct netdev_queue *dev_queue,
778 void *_qdisc)
779{
780 struct Qdisc *qdisc = _qdisc;
781
782 rcu_assign_pointer(dev_queue->qdisc, qdisc);
783 dev_queue->qdisc_sleeping = qdisc;
784}
785
786void dev_init_scheduler(struct net_device *dev)
787{
788 dev->qdisc = &noop_qdisc;
789 netdev_for_each_tx_queue(dev, dev_init_scheduler_queue, &noop_qdisc);
790 if (dev_ingress_queue(dev))
791 dev_init_scheduler_queue(dev, dev_ingress_queue(dev), &noop_qdisc);
792
793 setup_timer(&dev->watchdog_timer, dev_watchdog, (unsigned long)dev);
794}
795
796static void shutdown_scheduler_queue(struct net_device *dev,
797 struct netdev_queue *dev_queue,
798 void *_qdisc_default)
799{
800 struct Qdisc *qdisc = dev_queue->qdisc_sleeping;
801 struct Qdisc *qdisc_default = _qdisc_default;
802
803 if (qdisc) {
804 rcu_assign_pointer(dev_queue->qdisc, qdisc_default);
805 dev_queue->qdisc_sleeping = qdisc_default;
806
807 qdisc_destroy(qdisc);
808 }
809}
810
811void dev_shutdown(struct net_device *dev)
812{
813 netdev_for_each_tx_queue(dev, shutdown_scheduler_queue, &noop_qdisc);
814 if (dev_ingress_queue(dev))
815 shutdown_scheduler_queue(dev, dev_ingress_queue(dev), &noop_qdisc);
816 qdisc_destroy(dev->qdisc);
817 dev->qdisc = &noop_qdisc;
818
819 WARN_ON(timer_pending(&dev->watchdog_timer));
820}
821
822void psched_ratecfg_precompute(struct psched_ratecfg *r,
823 const struct tc_ratespec *conf,
824 u64 rate64)
825{
826 memset(r, 0, sizeof(*r));
827 r->overhead = conf->overhead;
828 r->rate_bytes_ps = max_t(u64, conf->rate, rate64);
829 r->linklayer = (conf->linklayer & TC_LINKLAYER_MASK);
830 r->mult = 1;
831 /*
832 * The deal here is to replace a divide by a reciprocal one
833 * in fast path (a reciprocal divide is a multiply and a shift)
834 *
835 * Normal formula would be :
836 * time_in_ns = (NSEC_PER_SEC * len) / rate_bps
837 *
838 * We compute mult/shift to use instead :
839 * time_in_ns = (len * mult) >> shift;
840 *
841 * We try to get the highest possible mult value for accuracy,
842 * but have to make sure no overflows will ever happen.
843 */
844 if (r->rate_bytes_ps > 0) {
845 u64 factor = NSEC_PER_SEC;
846
847 for (;;) {
848 r->mult = div64_u64(factor, r->rate_bytes_ps);
849 if (r->mult & (1U << 31) || factor & (1ULL << 63))
850 break;
851 factor <<= 1;
852 r->shift++;
853 }
854 }
855}
856EXPORT_SYMBOL(psched_ratecfg_precompute);