xref: /openbmc/linux/kernel/padata.c (revision 23966841)
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * padata.c - generic interface to process data streams in parallel
4  *
5  * See Documentation/padata.txt for an api documentation.
6  *
7  * Copyright (C) 2008, 2009 secunet Security Networks AG
8  * Copyright (C) 2008, 2009 Steffen Klassert <steffen.klassert@secunet.com>
9  *
10  * This program is free software; you can redistribute it and/or modify it
11  * under the terms and conditions of the GNU General Public License,
12  * version 2, as published by the Free Software Foundation.
13  *
14  * This program is distributed in the hope it will be useful, but WITHOUT
15  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
16  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
17  * more details.
18  *
19  * You should have received a copy of the GNU General Public License along with
20  * this program; if not, write to the Free Software Foundation, Inc.,
21  * 51 Franklin St - Fifth Floor, Boston, MA 02110-1301 USA.
22  */
23 
24 #include <linux/export.h>
25 #include <linux/cpumask.h>
26 #include <linux/err.h>
27 #include <linux/cpu.h>
28 #include <linux/padata.h>
29 #include <linux/mutex.h>
30 #include <linux/sched.h>
31 #include <linux/slab.h>
32 #include <linux/sysfs.h>
33 #include <linux/rcupdate.h>
34 #include <linux/module.h>
35 
36 #define MAX_OBJ_NUM 1000
37 
38 static int padata_index_to_cpu(struct parallel_data *pd, int cpu_index)
39 {
40 	int cpu, target_cpu;
41 
42 	target_cpu = cpumask_first(pd->cpumask.pcpu);
43 	for (cpu = 0; cpu < cpu_index; cpu++)
44 		target_cpu = cpumask_next(target_cpu, pd->cpumask.pcpu);
45 
46 	return target_cpu;
47 }
48 
49 static int padata_cpu_hash(struct parallel_data *pd)
50 {
51 	unsigned int seq_nr;
52 	int cpu_index;
53 
54 	/*
55 	 * Hash the sequence numbers to the cpus by taking
56 	 * seq_nr mod. number of cpus in use.
57 	 */
58 
59 	seq_nr = atomic_inc_return(&pd->seq_nr);
60 	cpu_index = seq_nr % cpumask_weight(pd->cpumask.pcpu);
61 
62 	return padata_index_to_cpu(pd, cpu_index);
63 }
64 
65 static void padata_parallel_worker(struct work_struct *parallel_work)
66 {
67 	struct padata_parallel_queue *pqueue;
68 	LIST_HEAD(local_list);
69 
70 	local_bh_disable();
71 	pqueue = container_of(parallel_work,
72 			      struct padata_parallel_queue, work);
73 
74 	spin_lock(&pqueue->parallel.lock);
75 	list_replace_init(&pqueue->parallel.list, &local_list);
76 	spin_unlock(&pqueue->parallel.lock);
77 
78 	while (!list_empty(&local_list)) {
79 		struct padata_priv *padata;
80 
81 		padata = list_entry(local_list.next,
82 				    struct padata_priv, list);
83 
84 		list_del_init(&padata->list);
85 
86 		padata->parallel(padata);
87 	}
88 
89 	local_bh_enable();
90 }
91 
92 /**
93  * padata_do_parallel - padata parallelization function
94  *
95  * @pinst: padata instance
96  * @padata: object to be parallelized
97  * @cb_cpu: cpu the serialization callback function will run on,
98  *          must be in the serial cpumask of padata(i.e. cpumask.cbcpu).
99  *
100  * The parallelization callback function will run with BHs off.
101  * Note: Every object which is parallelized by padata_do_parallel
102  * must be seen by padata_do_serial.
103  */
104 int padata_do_parallel(struct padata_instance *pinst,
105 		       struct padata_priv *padata, int cb_cpu)
106 {
107 	int target_cpu, err;
108 	struct padata_parallel_queue *queue;
109 	struct parallel_data *pd;
110 
111 	rcu_read_lock_bh();
112 
113 	pd = rcu_dereference_bh(pinst->pd);
114 
115 	err = -EINVAL;
116 	if (!(pinst->flags & PADATA_INIT) || pinst->flags & PADATA_INVALID)
117 		goto out;
118 
119 	if (!cpumask_test_cpu(cb_cpu, pd->cpumask.cbcpu))
120 		goto out;
121 
122 	err =  -EBUSY;
123 	if ((pinst->flags & PADATA_RESET))
124 		goto out;
125 
126 	if (atomic_read(&pd->refcnt) >= MAX_OBJ_NUM)
127 		goto out;
128 
129 	err = 0;
130 	atomic_inc(&pd->refcnt);
131 	padata->pd = pd;
132 	padata->cb_cpu = cb_cpu;
133 
134 	target_cpu = padata_cpu_hash(pd);
135 	padata->cpu = target_cpu;
136 	queue = per_cpu_ptr(pd->pqueue, target_cpu);
137 
138 	spin_lock(&queue->parallel.lock);
139 	list_add_tail(&padata->list, &queue->parallel.list);
140 	spin_unlock(&queue->parallel.lock);
141 
142 	queue_work_on(target_cpu, pinst->wq, &queue->work);
143 
144 out:
145 	rcu_read_unlock_bh();
146 
147 	return err;
148 }
149 EXPORT_SYMBOL(padata_do_parallel);
150 
151 /*
152  * padata_get_next - Get the next object that needs serialization.
153  *
154  * Return values are:
155  *
156  * A pointer to the control struct of the next object that needs
157  * serialization, if present in one of the percpu reorder queues.
158  *
159  * -EINPROGRESS, if the next object that needs serialization will
160  *  be parallel processed by another cpu and is not yet present in
161  *  the cpu's reorder queue.
162  *
163  * -ENODATA, if this cpu has to do the parallel processing for
164  *  the next object.
165  */
166 static struct padata_priv *padata_get_next(struct parallel_data *pd)
167 {
168 	struct padata_parallel_queue *next_queue;
169 	struct padata_priv *padata;
170 	struct padata_list *reorder;
171 	int cpu = pd->cpu;
172 
173 	next_queue = per_cpu_ptr(pd->pqueue, cpu);
174 	reorder = &next_queue->reorder;
175 
176 	spin_lock(&reorder->lock);
177 	if (!list_empty(&reorder->list)) {
178 		padata = list_entry(reorder->list.next,
179 				    struct padata_priv, list);
180 
181 		list_del_init(&padata->list);
182 		atomic_dec(&pd->reorder_objects);
183 
184 		pd->cpu = cpumask_next_wrap(cpu, pd->cpumask.pcpu, -1,
185 					    false);
186 
187 		spin_unlock(&reorder->lock);
188 		goto out;
189 	}
190 	spin_unlock(&reorder->lock);
191 
192 	if (__this_cpu_read(pd->pqueue->cpu_index) == next_queue->cpu_index) {
193 		padata = ERR_PTR(-ENODATA);
194 		goto out;
195 	}
196 
197 	padata = ERR_PTR(-EINPROGRESS);
198 out:
199 	return padata;
200 }
201 
202 static void padata_reorder(struct parallel_data *pd)
203 {
204 	int cb_cpu;
205 	struct padata_priv *padata;
206 	struct padata_serial_queue *squeue;
207 	struct padata_instance *pinst = pd->pinst;
208 	struct padata_parallel_queue *next_queue;
209 
210 	/*
211 	 * We need to ensure that only one cpu can work on dequeueing of
212 	 * the reorder queue the time. Calculating in which percpu reorder
213 	 * queue the next object will arrive takes some time. A spinlock
214 	 * would be highly contended. Also it is not clear in which order
215 	 * the objects arrive to the reorder queues. So a cpu could wait to
216 	 * get the lock just to notice that there is nothing to do at the
217 	 * moment. Therefore we use a trylock and let the holder of the lock
218 	 * care for all the objects enqueued during the holdtime of the lock.
219 	 */
220 	if (!spin_trylock_bh(&pd->lock))
221 		return;
222 
223 	while (1) {
224 		padata = padata_get_next(pd);
225 
226 		/*
227 		 * If the next object that needs serialization is parallel
228 		 * processed by another cpu and is still on it's way to the
229 		 * cpu's reorder queue, nothing to do for now.
230 		 */
231 		if (PTR_ERR(padata) == -EINPROGRESS)
232 			break;
233 
234 		/*
235 		 * This cpu has to do the parallel processing of the next
236 		 * object. It's waiting in the cpu's parallelization queue,
237 		 * so exit immediately.
238 		 */
239 		if (PTR_ERR(padata) == -ENODATA) {
240 			spin_unlock_bh(&pd->lock);
241 			return;
242 		}
243 
244 		cb_cpu = padata->cb_cpu;
245 		squeue = per_cpu_ptr(pd->squeue, cb_cpu);
246 
247 		spin_lock(&squeue->serial.lock);
248 		list_add_tail(&padata->list, &squeue->serial.list);
249 		spin_unlock(&squeue->serial.lock);
250 
251 		queue_work_on(cb_cpu, pinst->wq, &squeue->work);
252 	}
253 
254 	spin_unlock_bh(&pd->lock);
255 
256 	/*
257 	 * The next object that needs serialization might have arrived to
258 	 * the reorder queues in the meantime.
259 	 *
260 	 * Ensure reorder queue is read after pd->lock is dropped so we see
261 	 * new objects from another task in padata_do_serial.  Pairs with
262 	 * smp_mb__after_atomic in padata_do_serial.
263 	 */
264 	smp_mb();
265 
266 	next_queue = per_cpu_ptr(pd->pqueue, pd->cpu);
267 	if (!list_empty(&next_queue->reorder.list))
268 		queue_work(pinst->wq, &pd->reorder_work);
269 }
270 
271 static void invoke_padata_reorder(struct work_struct *work)
272 {
273 	struct parallel_data *pd;
274 
275 	local_bh_disable();
276 	pd = container_of(work, struct parallel_data, reorder_work);
277 	padata_reorder(pd);
278 	local_bh_enable();
279 }
280 
281 static void padata_serial_worker(struct work_struct *serial_work)
282 {
283 	struct padata_serial_queue *squeue;
284 	struct parallel_data *pd;
285 	LIST_HEAD(local_list);
286 
287 	local_bh_disable();
288 	squeue = container_of(serial_work, struct padata_serial_queue, work);
289 	pd = squeue->pd;
290 
291 	spin_lock(&squeue->serial.lock);
292 	list_replace_init(&squeue->serial.list, &local_list);
293 	spin_unlock(&squeue->serial.lock);
294 
295 	while (!list_empty(&local_list)) {
296 		struct padata_priv *padata;
297 
298 		padata = list_entry(local_list.next,
299 				    struct padata_priv, list);
300 
301 		list_del_init(&padata->list);
302 
303 		padata->serial(padata);
304 		atomic_dec(&pd->refcnt);
305 	}
306 	local_bh_enable();
307 }
308 
309 /**
310  * padata_do_serial - padata serialization function
311  *
312  * @padata: object to be serialized.
313  *
314  * padata_do_serial must be called for every parallelized object.
315  * The serialization callback function will run with BHs off.
316  */
317 void padata_do_serial(struct padata_priv *padata)
318 {
319 	struct parallel_data *pd = padata->pd;
320 	struct padata_parallel_queue *pqueue = per_cpu_ptr(pd->pqueue,
321 							   padata->cpu);
322 
323 	spin_lock(&pqueue->reorder.lock);
324 	list_add_tail(&padata->list, &pqueue->reorder.list);
325 	atomic_inc(&pd->reorder_objects);
326 	spin_unlock(&pqueue->reorder.lock);
327 
328 	/*
329 	 * Ensure the addition to the reorder list is ordered correctly
330 	 * with the trylock of pd->lock in padata_reorder.  Pairs with smp_mb
331 	 * in padata_reorder.
332 	 */
333 	smp_mb__after_atomic();
334 
335 	padata_reorder(pd);
336 }
337 EXPORT_SYMBOL(padata_do_serial);
338 
339 static int padata_setup_cpumasks(struct parallel_data *pd,
340 				 const struct cpumask *pcpumask,
341 				 const struct cpumask *cbcpumask)
342 {
343 	if (!alloc_cpumask_var(&pd->cpumask.pcpu, GFP_KERNEL))
344 		return -ENOMEM;
345 
346 	cpumask_and(pd->cpumask.pcpu, pcpumask, cpu_online_mask);
347 	if (!alloc_cpumask_var(&pd->cpumask.cbcpu, GFP_KERNEL)) {
348 		free_cpumask_var(pd->cpumask.pcpu);
349 		return -ENOMEM;
350 	}
351 
352 	cpumask_and(pd->cpumask.cbcpu, cbcpumask, cpu_online_mask);
353 	return 0;
354 }
355 
356 static void __padata_list_init(struct padata_list *pd_list)
357 {
358 	INIT_LIST_HEAD(&pd_list->list);
359 	spin_lock_init(&pd_list->lock);
360 }
361 
362 /* Initialize all percpu queues used by serial workers */
363 static void padata_init_squeues(struct parallel_data *pd)
364 {
365 	int cpu;
366 	struct padata_serial_queue *squeue;
367 
368 	for_each_cpu(cpu, pd->cpumask.cbcpu) {
369 		squeue = per_cpu_ptr(pd->squeue, cpu);
370 		squeue->pd = pd;
371 		__padata_list_init(&squeue->serial);
372 		INIT_WORK(&squeue->work, padata_serial_worker);
373 	}
374 }
375 
376 /* Initialize all percpu queues used by parallel workers */
377 static void padata_init_pqueues(struct parallel_data *pd)
378 {
379 	int cpu_index, cpu;
380 	struct padata_parallel_queue *pqueue;
381 
382 	cpu_index = 0;
383 	for_each_possible_cpu(cpu) {
384 		pqueue = per_cpu_ptr(pd->pqueue, cpu);
385 
386 		if (!cpumask_test_cpu(cpu, pd->cpumask.pcpu)) {
387 			pqueue->cpu_index = -1;
388 			continue;
389 		}
390 
391 		pqueue->cpu_index = cpu_index;
392 		cpu_index++;
393 
394 		__padata_list_init(&pqueue->reorder);
395 		__padata_list_init(&pqueue->parallel);
396 		INIT_WORK(&pqueue->work, padata_parallel_worker);
397 		atomic_set(&pqueue->num_obj, 0);
398 	}
399 }
400 
401 /* Allocate and initialize the internal cpumask dependend resources. */
402 static struct parallel_data *padata_alloc_pd(struct padata_instance *pinst,
403 					     const struct cpumask *pcpumask,
404 					     const struct cpumask *cbcpumask)
405 {
406 	struct parallel_data *pd;
407 
408 	pd = kzalloc(sizeof(struct parallel_data), GFP_KERNEL);
409 	if (!pd)
410 		goto err;
411 
412 	pd->pqueue = alloc_percpu(struct padata_parallel_queue);
413 	if (!pd->pqueue)
414 		goto err_free_pd;
415 
416 	pd->squeue = alloc_percpu(struct padata_serial_queue);
417 	if (!pd->squeue)
418 		goto err_free_pqueue;
419 	if (padata_setup_cpumasks(pd, pcpumask, cbcpumask) < 0)
420 		goto err_free_squeue;
421 
422 	padata_init_pqueues(pd);
423 	padata_init_squeues(pd);
424 	atomic_set(&pd->seq_nr, -1);
425 	atomic_set(&pd->reorder_objects, 0);
426 	atomic_set(&pd->refcnt, 0);
427 	pd->pinst = pinst;
428 	spin_lock_init(&pd->lock);
429 	pd->cpu = cpumask_first(pd->cpumask.pcpu);
430 	INIT_WORK(&pd->reorder_work, invoke_padata_reorder);
431 
432 	return pd;
433 
434 err_free_squeue:
435 	free_percpu(pd->squeue);
436 err_free_pqueue:
437 	free_percpu(pd->pqueue);
438 err_free_pd:
439 	kfree(pd);
440 err:
441 	return NULL;
442 }
443 
444 static void padata_free_pd(struct parallel_data *pd)
445 {
446 	free_cpumask_var(pd->cpumask.pcpu);
447 	free_cpumask_var(pd->cpumask.cbcpu);
448 	free_percpu(pd->pqueue);
449 	free_percpu(pd->squeue);
450 	kfree(pd);
451 }
452 
453 /* Flush all objects out of the padata queues. */
454 static void padata_flush_queues(struct parallel_data *pd)
455 {
456 	int cpu;
457 	struct padata_parallel_queue *pqueue;
458 	struct padata_serial_queue *squeue;
459 
460 	for_each_cpu(cpu, pd->cpumask.pcpu) {
461 		pqueue = per_cpu_ptr(pd->pqueue, cpu);
462 		flush_work(&pqueue->work);
463 	}
464 
465 	if (atomic_read(&pd->reorder_objects))
466 		padata_reorder(pd);
467 
468 	for_each_cpu(cpu, pd->cpumask.cbcpu) {
469 		squeue = per_cpu_ptr(pd->squeue, cpu);
470 		flush_work(&squeue->work);
471 	}
472 
473 	BUG_ON(atomic_read(&pd->refcnt) != 0);
474 }
475 
476 static void __padata_start(struct padata_instance *pinst)
477 {
478 	pinst->flags |= PADATA_INIT;
479 }
480 
481 static void __padata_stop(struct padata_instance *pinst)
482 {
483 	if (!(pinst->flags & PADATA_INIT))
484 		return;
485 
486 	pinst->flags &= ~PADATA_INIT;
487 
488 	synchronize_rcu();
489 
490 	get_online_cpus();
491 	padata_flush_queues(pinst->pd);
492 	put_online_cpus();
493 }
494 
495 /* Replace the internal control structure with a new one. */
496 static void padata_replace(struct padata_instance *pinst,
497 			   struct parallel_data *pd_new)
498 {
499 	struct parallel_data *pd_old = pinst->pd;
500 	int notification_mask = 0;
501 
502 	pinst->flags |= PADATA_RESET;
503 
504 	rcu_assign_pointer(pinst->pd, pd_new);
505 
506 	synchronize_rcu();
507 
508 	if (!cpumask_equal(pd_old->cpumask.pcpu, pd_new->cpumask.pcpu))
509 		notification_mask |= PADATA_CPU_PARALLEL;
510 	if (!cpumask_equal(pd_old->cpumask.cbcpu, pd_new->cpumask.cbcpu))
511 		notification_mask |= PADATA_CPU_SERIAL;
512 
513 	padata_flush_queues(pd_old);
514 	padata_free_pd(pd_old);
515 
516 	if (notification_mask)
517 		blocking_notifier_call_chain(&pinst->cpumask_change_notifier,
518 					     notification_mask,
519 					     &pd_new->cpumask);
520 
521 	pinst->flags &= ~PADATA_RESET;
522 }
523 
524 /**
525  * padata_register_cpumask_notifier - Registers a notifier that will be called
526  *                             if either pcpu or cbcpu or both cpumasks change.
527  *
528  * @pinst: A poineter to padata instance
529  * @nblock: A pointer to notifier block.
530  */
531 int padata_register_cpumask_notifier(struct padata_instance *pinst,
532 				     struct notifier_block *nblock)
533 {
534 	return blocking_notifier_chain_register(&pinst->cpumask_change_notifier,
535 						nblock);
536 }
537 EXPORT_SYMBOL(padata_register_cpumask_notifier);
538 
539 /**
540  * padata_unregister_cpumask_notifier - Unregisters cpumask notifier
541  *        registered earlier  using padata_register_cpumask_notifier
542  *
543  * @pinst: A pointer to data instance.
544  * @nlock: A pointer to notifier block.
545  */
546 int padata_unregister_cpumask_notifier(struct padata_instance *pinst,
547 				       struct notifier_block *nblock)
548 {
549 	return blocking_notifier_chain_unregister(
550 		&pinst->cpumask_change_notifier,
551 		nblock);
552 }
553 EXPORT_SYMBOL(padata_unregister_cpumask_notifier);
554 
555 
556 /* If cpumask contains no active cpu, we mark the instance as invalid. */
557 static bool padata_validate_cpumask(struct padata_instance *pinst,
558 				    const struct cpumask *cpumask)
559 {
560 	if (!cpumask_intersects(cpumask, cpu_online_mask)) {
561 		pinst->flags |= PADATA_INVALID;
562 		return false;
563 	}
564 
565 	pinst->flags &= ~PADATA_INVALID;
566 	return true;
567 }
568 
569 static int __padata_set_cpumasks(struct padata_instance *pinst,
570 				 cpumask_var_t pcpumask,
571 				 cpumask_var_t cbcpumask)
572 {
573 	int valid;
574 	struct parallel_data *pd;
575 
576 	valid = padata_validate_cpumask(pinst, pcpumask);
577 	if (!valid) {
578 		__padata_stop(pinst);
579 		goto out_replace;
580 	}
581 
582 	valid = padata_validate_cpumask(pinst, cbcpumask);
583 	if (!valid)
584 		__padata_stop(pinst);
585 
586 out_replace:
587 	pd = padata_alloc_pd(pinst, pcpumask, cbcpumask);
588 	if (!pd)
589 		return -ENOMEM;
590 
591 	cpumask_copy(pinst->cpumask.pcpu, pcpumask);
592 	cpumask_copy(pinst->cpumask.cbcpu, cbcpumask);
593 
594 	padata_replace(pinst, pd);
595 
596 	if (valid)
597 		__padata_start(pinst);
598 
599 	return 0;
600 }
601 
602 /**
603  * padata_set_cpumask: Sets specified by @cpumask_type cpumask to the value
604  *                     equivalent to @cpumask.
605  *
606  * @pinst: padata instance
607  * @cpumask_type: PADATA_CPU_SERIAL or PADATA_CPU_PARALLEL corresponding
608  *                to parallel and serial cpumasks respectively.
609  * @cpumask: the cpumask to use
610  */
611 int padata_set_cpumask(struct padata_instance *pinst, int cpumask_type,
612 		       cpumask_var_t cpumask)
613 {
614 	struct cpumask *serial_mask, *parallel_mask;
615 	int err = -EINVAL;
616 
617 	mutex_lock(&pinst->lock);
618 	get_online_cpus();
619 
620 	switch (cpumask_type) {
621 	case PADATA_CPU_PARALLEL:
622 		serial_mask = pinst->cpumask.cbcpu;
623 		parallel_mask = cpumask;
624 		break;
625 	case PADATA_CPU_SERIAL:
626 		parallel_mask = pinst->cpumask.pcpu;
627 		serial_mask = cpumask;
628 		break;
629 	default:
630 		 goto out;
631 	}
632 
633 	err =  __padata_set_cpumasks(pinst, parallel_mask, serial_mask);
634 
635 out:
636 	put_online_cpus();
637 	mutex_unlock(&pinst->lock);
638 
639 	return err;
640 }
641 EXPORT_SYMBOL(padata_set_cpumask);
642 
643 /**
644  * padata_start - start the parallel processing
645  *
646  * @pinst: padata instance to start
647  */
648 int padata_start(struct padata_instance *pinst)
649 {
650 	int err = 0;
651 
652 	mutex_lock(&pinst->lock);
653 
654 	if (pinst->flags & PADATA_INVALID)
655 		err = -EINVAL;
656 
657 	__padata_start(pinst);
658 
659 	mutex_unlock(&pinst->lock);
660 
661 	return err;
662 }
663 EXPORT_SYMBOL(padata_start);
664 
665 /**
666  * padata_stop - stop the parallel processing
667  *
668  * @pinst: padata instance to stop
669  */
670 void padata_stop(struct padata_instance *pinst)
671 {
672 	mutex_lock(&pinst->lock);
673 	__padata_stop(pinst);
674 	mutex_unlock(&pinst->lock);
675 }
676 EXPORT_SYMBOL(padata_stop);
677 
678 #ifdef CONFIG_HOTPLUG_CPU
679 
680 static int __padata_add_cpu(struct padata_instance *pinst, int cpu)
681 {
682 	struct parallel_data *pd;
683 
684 	if (cpumask_test_cpu(cpu, cpu_online_mask)) {
685 		pd = padata_alloc_pd(pinst, pinst->cpumask.pcpu,
686 				     pinst->cpumask.cbcpu);
687 		if (!pd)
688 			return -ENOMEM;
689 
690 		padata_replace(pinst, pd);
691 
692 		if (padata_validate_cpumask(pinst, pinst->cpumask.pcpu) &&
693 		    padata_validate_cpumask(pinst, pinst->cpumask.cbcpu))
694 			__padata_start(pinst);
695 	}
696 
697 	return 0;
698 }
699 
700 static int __padata_remove_cpu(struct padata_instance *pinst, int cpu)
701 {
702 	struct parallel_data *pd = NULL;
703 
704 	if (cpumask_test_cpu(cpu, cpu_online_mask)) {
705 
706 		if (!padata_validate_cpumask(pinst, pinst->cpumask.pcpu) ||
707 		    !padata_validate_cpumask(pinst, pinst->cpumask.cbcpu))
708 			__padata_stop(pinst);
709 
710 		pd = padata_alloc_pd(pinst, pinst->cpumask.pcpu,
711 				     pinst->cpumask.cbcpu);
712 		if (!pd)
713 			return -ENOMEM;
714 
715 		padata_replace(pinst, pd);
716 
717 		cpumask_clear_cpu(cpu, pd->cpumask.cbcpu);
718 		cpumask_clear_cpu(cpu, pd->cpumask.pcpu);
719 	}
720 
721 	return 0;
722 }
723 
724  /**
725  * padata_remove_cpu - remove a cpu from the one or both(serial and parallel)
726  *                     padata cpumasks.
727  *
728  * @pinst: padata instance
729  * @cpu: cpu to remove
730  * @mask: bitmask specifying from which cpumask @cpu should be removed
731  *        The @mask may be any combination of the following flags:
732  *          PADATA_CPU_SERIAL   - serial cpumask
733  *          PADATA_CPU_PARALLEL - parallel cpumask
734  */
735 int padata_remove_cpu(struct padata_instance *pinst, int cpu, int mask)
736 {
737 	int err;
738 
739 	if (!(mask & (PADATA_CPU_SERIAL | PADATA_CPU_PARALLEL)))
740 		return -EINVAL;
741 
742 	mutex_lock(&pinst->lock);
743 
744 	get_online_cpus();
745 	if (mask & PADATA_CPU_SERIAL)
746 		cpumask_clear_cpu(cpu, pinst->cpumask.cbcpu);
747 	if (mask & PADATA_CPU_PARALLEL)
748 		cpumask_clear_cpu(cpu, pinst->cpumask.pcpu);
749 
750 	err = __padata_remove_cpu(pinst, cpu);
751 	put_online_cpus();
752 
753 	mutex_unlock(&pinst->lock);
754 
755 	return err;
756 }
757 EXPORT_SYMBOL(padata_remove_cpu);
758 
759 static inline int pinst_has_cpu(struct padata_instance *pinst, int cpu)
760 {
761 	return cpumask_test_cpu(cpu, pinst->cpumask.pcpu) ||
762 		cpumask_test_cpu(cpu, pinst->cpumask.cbcpu);
763 }
764 
765 static int padata_cpu_online(unsigned int cpu, struct hlist_node *node)
766 {
767 	struct padata_instance *pinst;
768 	int ret;
769 
770 	pinst = hlist_entry_safe(node, struct padata_instance, node);
771 	if (!pinst_has_cpu(pinst, cpu))
772 		return 0;
773 
774 	mutex_lock(&pinst->lock);
775 	ret = __padata_add_cpu(pinst, cpu);
776 	mutex_unlock(&pinst->lock);
777 	return ret;
778 }
779 
780 static int padata_cpu_prep_down(unsigned int cpu, struct hlist_node *node)
781 {
782 	struct padata_instance *pinst;
783 	int ret;
784 
785 	pinst = hlist_entry_safe(node, struct padata_instance, node);
786 	if (!pinst_has_cpu(pinst, cpu))
787 		return 0;
788 
789 	mutex_lock(&pinst->lock);
790 	ret = __padata_remove_cpu(pinst, cpu);
791 	mutex_unlock(&pinst->lock);
792 	return ret;
793 }
794 
795 static enum cpuhp_state hp_online;
796 #endif
797 
798 static void __padata_free(struct padata_instance *pinst)
799 {
800 #ifdef CONFIG_HOTPLUG_CPU
801 	cpuhp_state_remove_instance_nocalls(hp_online, &pinst->node);
802 #endif
803 
804 	padata_stop(pinst);
805 	padata_free_pd(pinst->pd);
806 	free_cpumask_var(pinst->cpumask.pcpu);
807 	free_cpumask_var(pinst->cpumask.cbcpu);
808 	kfree(pinst);
809 }
810 
811 #define kobj2pinst(_kobj)					\
812 	container_of(_kobj, struct padata_instance, kobj)
813 #define attr2pentry(_attr)					\
814 	container_of(_attr, struct padata_sysfs_entry, attr)
815 
816 static void padata_sysfs_release(struct kobject *kobj)
817 {
818 	struct padata_instance *pinst = kobj2pinst(kobj);
819 	__padata_free(pinst);
820 }
821 
822 struct padata_sysfs_entry {
823 	struct attribute attr;
824 	ssize_t (*show)(struct padata_instance *, struct attribute *, char *);
825 	ssize_t (*store)(struct padata_instance *, struct attribute *,
826 			 const char *, size_t);
827 };
828 
829 static ssize_t show_cpumask(struct padata_instance *pinst,
830 			    struct attribute *attr,  char *buf)
831 {
832 	struct cpumask *cpumask;
833 	ssize_t len;
834 
835 	mutex_lock(&pinst->lock);
836 	if (!strcmp(attr->name, "serial_cpumask"))
837 		cpumask = pinst->cpumask.cbcpu;
838 	else
839 		cpumask = pinst->cpumask.pcpu;
840 
841 	len = snprintf(buf, PAGE_SIZE, "%*pb\n",
842 		       nr_cpu_ids, cpumask_bits(cpumask));
843 	mutex_unlock(&pinst->lock);
844 	return len < PAGE_SIZE ? len : -EINVAL;
845 }
846 
847 static ssize_t store_cpumask(struct padata_instance *pinst,
848 			     struct attribute *attr,
849 			     const char *buf, size_t count)
850 {
851 	cpumask_var_t new_cpumask;
852 	ssize_t ret;
853 	int mask_type;
854 
855 	if (!alloc_cpumask_var(&new_cpumask, GFP_KERNEL))
856 		return -ENOMEM;
857 
858 	ret = bitmap_parse(buf, count, cpumask_bits(new_cpumask),
859 			   nr_cpumask_bits);
860 	if (ret < 0)
861 		goto out;
862 
863 	mask_type = !strcmp(attr->name, "serial_cpumask") ?
864 		PADATA_CPU_SERIAL : PADATA_CPU_PARALLEL;
865 	ret = padata_set_cpumask(pinst, mask_type, new_cpumask);
866 	if (!ret)
867 		ret = count;
868 
869 out:
870 	free_cpumask_var(new_cpumask);
871 	return ret;
872 }
873 
874 #define PADATA_ATTR_RW(_name, _show_name, _store_name)		\
875 	static struct padata_sysfs_entry _name##_attr =		\
876 		__ATTR(_name, 0644, _show_name, _store_name)
877 #define PADATA_ATTR_RO(_name, _show_name)		\
878 	static struct padata_sysfs_entry _name##_attr = \
879 		__ATTR(_name, 0400, _show_name, NULL)
880 
881 PADATA_ATTR_RW(serial_cpumask, show_cpumask, store_cpumask);
882 PADATA_ATTR_RW(parallel_cpumask, show_cpumask, store_cpumask);
883 
884 /*
885  * Padata sysfs provides the following objects:
886  * serial_cpumask   [RW] - cpumask for serial workers
887  * parallel_cpumask [RW] - cpumask for parallel workers
888  */
889 static struct attribute *padata_default_attrs[] = {
890 	&serial_cpumask_attr.attr,
891 	&parallel_cpumask_attr.attr,
892 	NULL,
893 };
894 ATTRIBUTE_GROUPS(padata_default);
895 
896 static ssize_t padata_sysfs_show(struct kobject *kobj,
897 				 struct attribute *attr, char *buf)
898 {
899 	struct padata_instance *pinst;
900 	struct padata_sysfs_entry *pentry;
901 	ssize_t ret = -EIO;
902 
903 	pinst = kobj2pinst(kobj);
904 	pentry = attr2pentry(attr);
905 	if (pentry->show)
906 		ret = pentry->show(pinst, attr, buf);
907 
908 	return ret;
909 }
910 
911 static ssize_t padata_sysfs_store(struct kobject *kobj, struct attribute *attr,
912 				  const char *buf, size_t count)
913 {
914 	struct padata_instance *pinst;
915 	struct padata_sysfs_entry *pentry;
916 	ssize_t ret = -EIO;
917 
918 	pinst = kobj2pinst(kobj);
919 	pentry = attr2pentry(attr);
920 	if (pentry->show)
921 		ret = pentry->store(pinst, attr, buf, count);
922 
923 	return ret;
924 }
925 
926 static const struct sysfs_ops padata_sysfs_ops = {
927 	.show = padata_sysfs_show,
928 	.store = padata_sysfs_store,
929 };
930 
931 static struct kobj_type padata_attr_type = {
932 	.sysfs_ops = &padata_sysfs_ops,
933 	.default_groups = padata_default_groups,
934 	.release = padata_sysfs_release,
935 };
936 
937 /**
938  * padata_alloc - allocate and initialize a padata instance and specify
939  *                cpumasks for serial and parallel workers.
940  *
941  * @wq: workqueue to use for the allocated padata instance
942  * @pcpumask: cpumask that will be used for padata parallelization
943  * @cbcpumask: cpumask that will be used for padata serialization
944  *
945  * Must be called from a cpus_read_lock() protected region
946  */
947 static struct padata_instance *padata_alloc(struct workqueue_struct *wq,
948 					    const struct cpumask *pcpumask,
949 					    const struct cpumask *cbcpumask)
950 {
951 	struct padata_instance *pinst;
952 	struct parallel_data *pd = NULL;
953 
954 	pinst = kzalloc(sizeof(struct padata_instance), GFP_KERNEL);
955 	if (!pinst)
956 		goto err;
957 
958 	if (!alloc_cpumask_var(&pinst->cpumask.pcpu, GFP_KERNEL))
959 		goto err_free_inst;
960 	if (!alloc_cpumask_var(&pinst->cpumask.cbcpu, GFP_KERNEL)) {
961 		free_cpumask_var(pinst->cpumask.pcpu);
962 		goto err_free_inst;
963 	}
964 	if (!padata_validate_cpumask(pinst, pcpumask) ||
965 	    !padata_validate_cpumask(pinst, cbcpumask))
966 		goto err_free_masks;
967 
968 	pd = padata_alloc_pd(pinst, pcpumask, cbcpumask);
969 	if (!pd)
970 		goto err_free_masks;
971 
972 	rcu_assign_pointer(pinst->pd, pd);
973 
974 	pinst->wq = wq;
975 
976 	cpumask_copy(pinst->cpumask.pcpu, pcpumask);
977 	cpumask_copy(pinst->cpumask.cbcpu, cbcpumask);
978 
979 	pinst->flags = 0;
980 
981 	BLOCKING_INIT_NOTIFIER_HEAD(&pinst->cpumask_change_notifier);
982 	kobject_init(&pinst->kobj, &padata_attr_type);
983 	mutex_init(&pinst->lock);
984 
985 #ifdef CONFIG_HOTPLUG_CPU
986 	cpuhp_state_add_instance_nocalls_cpuslocked(hp_online, &pinst->node);
987 #endif
988 	return pinst;
989 
990 err_free_masks:
991 	free_cpumask_var(pinst->cpumask.pcpu);
992 	free_cpumask_var(pinst->cpumask.cbcpu);
993 err_free_inst:
994 	kfree(pinst);
995 err:
996 	return NULL;
997 }
998 
999 /**
1000  * padata_alloc_possible - Allocate and initialize padata instance.
1001  *                         Use the cpu_possible_mask for serial and
1002  *                         parallel workers.
1003  *
1004  * @wq: workqueue to use for the allocated padata instance
1005  *
1006  * Must be called from a cpus_read_lock() protected region
1007  */
1008 struct padata_instance *padata_alloc_possible(struct workqueue_struct *wq)
1009 {
1010 	lockdep_assert_cpus_held();
1011 	return padata_alloc(wq, cpu_possible_mask, cpu_possible_mask);
1012 }
1013 EXPORT_SYMBOL(padata_alloc_possible);
1014 
1015 /**
1016  * padata_free - free a padata instance
1017  *
1018  * @padata_inst: padata instance to free
1019  */
1020 void padata_free(struct padata_instance *pinst)
1021 {
1022 	kobject_put(&pinst->kobj);
1023 }
1024 EXPORT_SYMBOL(padata_free);
1025 
1026 #ifdef CONFIG_HOTPLUG_CPU
1027 
1028 static __init int padata_driver_init(void)
1029 {
1030 	int ret;
1031 
1032 	ret = cpuhp_setup_state_multi(CPUHP_AP_ONLINE_DYN, "padata:online",
1033 				      padata_cpu_online,
1034 				      padata_cpu_prep_down);
1035 	if (ret < 0)
1036 		return ret;
1037 	hp_online = ret;
1038 	return 0;
1039 }
1040 module_init(padata_driver_init);
1041 
1042 static __exit void padata_driver_exit(void)
1043 {
1044 	cpuhp_remove_multi_state(hp_online);
1045 }
1046 module_exit(padata_driver_exit);
1047 #endif
1048