1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * padata.c - generic interface to process data streams in parallel
4 *
5 * See Documentation/core-api/padata.rst for more information.
6 *
7 * Copyright (C) 2008, 2009 secunet Security Networks AG
8 * Copyright (C) 2008, 2009 Steffen Klassert <steffen.klassert@secunet.com>
9 *
10 * Copyright (c) 2020 Oracle and/or its affiliates.
11 * Author: Daniel Jordan <daniel.m.jordan@oracle.com>
12 */
13
14 #include <linux/completion.h>
15 #include <linux/export.h>
16 #include <linux/cpumask.h>
17 #include <linux/err.h>
18 #include <linux/cpu.h>
19 #include <linux/padata.h>
20 #include <linux/mutex.h>
21 #include <linux/sched.h>
22 #include <linux/slab.h>
23 #include <linux/sysfs.h>
24 #include <linux/rcupdate.h>
25
26 #define PADATA_WORK_ONSTACK 1 /* Work's memory is on stack */
27
28 struct padata_work {
29 struct work_struct pw_work;
30 struct list_head pw_list; /* padata_free_works linkage */
31 void *pw_data;
32 };
33
34 static DEFINE_SPINLOCK(padata_works_lock);
35 static struct padata_work *padata_works;
36 static LIST_HEAD(padata_free_works);
37
38 struct padata_mt_job_state {
39 spinlock_t lock;
40 struct completion completion;
41 struct padata_mt_job *job;
42 int nworks;
43 int nworks_fini;
44 unsigned long chunk_size;
45 };
46
47 static void padata_free_pd(struct parallel_data *pd);
48 static void __init padata_mt_helper(struct work_struct *work);
49
padata_get_pd(struct parallel_data * pd)50 static inline void padata_get_pd(struct parallel_data *pd)
51 {
52 refcount_inc(&pd->refcnt);
53 }
54
padata_put_pd_cnt(struct parallel_data * pd,int cnt)55 static inline void padata_put_pd_cnt(struct parallel_data *pd, int cnt)
56 {
57 if (refcount_sub_and_test(cnt, &pd->refcnt))
58 padata_free_pd(pd);
59 }
60
padata_put_pd(struct parallel_data * pd)61 static inline void padata_put_pd(struct parallel_data *pd)
62 {
63 padata_put_pd_cnt(pd, 1);
64 }
65
padata_index_to_cpu(struct parallel_data * pd,int cpu_index)66 static int padata_index_to_cpu(struct parallel_data *pd, int cpu_index)
67 {
68 int cpu, target_cpu;
69
70 target_cpu = cpumask_first(pd->cpumask.pcpu);
71 for (cpu = 0; cpu < cpu_index; cpu++)
72 target_cpu = cpumask_next(target_cpu, pd->cpumask.pcpu);
73
74 return target_cpu;
75 }
76
padata_cpu_hash(struct parallel_data * pd,unsigned int seq_nr)77 static int padata_cpu_hash(struct parallel_data *pd, unsigned int seq_nr)
78 {
79 /*
80 * Hash the sequence numbers to the cpus by taking
81 * seq_nr mod. number of cpus in use.
82 */
83 int cpu_index = seq_nr % cpumask_weight(pd->cpumask.pcpu);
84
85 return padata_index_to_cpu(pd, cpu_index);
86 }
87
padata_work_alloc(void)88 static struct padata_work *padata_work_alloc(void)
89 {
90 struct padata_work *pw;
91
92 lockdep_assert_held(&padata_works_lock);
93
94 if (list_empty(&padata_free_works))
95 return NULL; /* No more work items allowed to be queued. */
96
97 pw = list_first_entry(&padata_free_works, struct padata_work, pw_list);
98 list_del(&pw->pw_list);
99 return pw;
100 }
101
102 /*
103 * This function is marked __ref because this function may be optimized in such
104 * a way that it directly refers to work_fn's address, which causes modpost to
105 * complain when work_fn is marked __init. This scenario was observed with clang
106 * LTO, where padata_work_init() was optimized to refer directly to
107 * padata_mt_helper() because the calls to padata_work_init() with other work_fn
108 * values were eliminated or inlined.
109 */
padata_work_init(struct padata_work * pw,work_func_t work_fn,void * data,int flags)110 static void __ref padata_work_init(struct padata_work *pw, work_func_t work_fn,
111 void *data, int flags)
112 {
113 if (flags & PADATA_WORK_ONSTACK)
114 INIT_WORK_ONSTACK(&pw->pw_work, work_fn);
115 else
116 INIT_WORK(&pw->pw_work, work_fn);
117 pw->pw_data = data;
118 }
119
padata_work_alloc_mt(int nworks,void * data,struct list_head * head)120 static int __init padata_work_alloc_mt(int nworks, void *data,
121 struct list_head *head)
122 {
123 int i;
124
125 spin_lock_bh(&padata_works_lock);
126 /* Start at 1 because the current task participates in the job. */
127 for (i = 1; i < nworks; ++i) {
128 struct padata_work *pw = padata_work_alloc();
129
130 if (!pw)
131 break;
132 padata_work_init(pw, padata_mt_helper, data, 0);
133 list_add(&pw->pw_list, head);
134 }
135 spin_unlock_bh(&padata_works_lock);
136
137 return i;
138 }
139
padata_work_free(struct padata_work * pw)140 static void padata_work_free(struct padata_work *pw)
141 {
142 lockdep_assert_held(&padata_works_lock);
143 list_add(&pw->pw_list, &padata_free_works);
144 }
145
padata_works_free(struct list_head * works)146 static void __init padata_works_free(struct list_head *works)
147 {
148 struct padata_work *cur, *next;
149
150 if (list_empty(works))
151 return;
152
153 spin_lock_bh(&padata_works_lock);
154 list_for_each_entry_safe(cur, next, works, pw_list) {
155 list_del(&cur->pw_list);
156 padata_work_free(cur);
157 }
158 spin_unlock_bh(&padata_works_lock);
159 }
160
padata_parallel_worker(struct work_struct * parallel_work)161 static void padata_parallel_worker(struct work_struct *parallel_work)
162 {
163 struct padata_work *pw = container_of(parallel_work, struct padata_work,
164 pw_work);
165 struct padata_priv *padata = pw->pw_data;
166
167 local_bh_disable();
168 padata->parallel(padata);
169 spin_lock(&padata_works_lock);
170 padata_work_free(pw);
171 spin_unlock(&padata_works_lock);
172 local_bh_enable();
173 }
174
175 /**
176 * padata_do_parallel - padata parallelization function
177 *
178 * @ps: padatashell
179 * @padata: object to be parallelized
180 * @cb_cpu: pointer to the CPU that the serialization callback function should
181 * run on. If it's not in the serial cpumask of @pinst
182 * (i.e. cpumask.cbcpu), this function selects a fallback CPU and if
183 * none found, returns -EINVAL.
184 *
185 * The parallelization callback function will run with BHs off.
186 * Note: Every object which is parallelized by padata_do_parallel
187 * must be seen by padata_do_serial.
188 *
189 * Return: 0 on success or else negative error code.
190 */
padata_do_parallel(struct padata_shell * ps,struct padata_priv * padata,int * cb_cpu)191 int padata_do_parallel(struct padata_shell *ps,
192 struct padata_priv *padata, int *cb_cpu)
193 {
194 struct padata_instance *pinst = ps->pinst;
195 int i, cpu, cpu_index, err;
196 struct parallel_data *pd;
197 struct padata_work *pw;
198
199 rcu_read_lock_bh();
200
201 pd = rcu_dereference_bh(ps->pd);
202
203 err = -EINVAL;
204 if (!(pinst->flags & PADATA_INIT) || pinst->flags & PADATA_INVALID)
205 goto out;
206
207 if (!cpumask_test_cpu(*cb_cpu, pd->cpumask.cbcpu)) {
208 if (cpumask_empty(pd->cpumask.cbcpu))
209 goto out;
210
211 /* Select an alternate fallback CPU and notify the caller. */
212 cpu_index = *cb_cpu % cpumask_weight(pd->cpumask.cbcpu);
213
214 cpu = cpumask_first(pd->cpumask.cbcpu);
215 for (i = 0; i < cpu_index; i++)
216 cpu = cpumask_next(cpu, pd->cpumask.cbcpu);
217
218 *cb_cpu = cpu;
219 }
220
221 err = -EBUSY;
222 if ((pinst->flags & PADATA_RESET))
223 goto out;
224
225 padata_get_pd(pd);
226 padata->pd = pd;
227 padata->cb_cpu = *cb_cpu;
228
229 spin_lock(&padata_works_lock);
230 padata->seq_nr = ++pd->seq_nr;
231 pw = padata_work_alloc();
232 spin_unlock(&padata_works_lock);
233
234 if (!pw) {
235 /* Maximum works limit exceeded, run in the current task. */
236 padata->parallel(padata);
237 }
238
239 rcu_read_unlock_bh();
240
241 if (pw) {
242 padata_work_init(pw, padata_parallel_worker, padata, 0);
243 queue_work(pinst->parallel_wq, &pw->pw_work);
244 }
245
246 return 0;
247 out:
248 rcu_read_unlock_bh();
249
250 return err;
251 }
252 EXPORT_SYMBOL(padata_do_parallel);
253
254 /*
255 * padata_find_next - Find the next object that needs serialization.
256 *
257 * Return:
258 * * A pointer to the control struct of the next object that needs
259 * serialization, if present in one of the percpu reorder queues.
260 * * NULL, if the next object that needs serialization will
261 * be parallel processed by another cpu and is not yet present in
262 * the cpu's reorder queue.
263 */
padata_find_next(struct parallel_data * pd,bool remove_object)264 static struct padata_priv *padata_find_next(struct parallel_data *pd,
265 bool remove_object)
266 {
267 struct padata_priv *padata;
268 struct padata_list *reorder;
269 int cpu = pd->cpu;
270
271 reorder = per_cpu_ptr(pd->reorder_list, cpu);
272
273 spin_lock(&reorder->lock);
274 if (list_empty(&reorder->list)) {
275 spin_unlock(&reorder->lock);
276 return NULL;
277 }
278
279 padata = list_entry(reorder->list.next, struct padata_priv, list);
280
281 /*
282 * Checks the rare case where two or more parallel jobs have hashed to
283 * the same CPU and one of the later ones finishes first.
284 */
285 if (padata->seq_nr != pd->processed) {
286 spin_unlock(&reorder->lock);
287 return NULL;
288 }
289
290 if (remove_object) {
291 list_del_init(&padata->list);
292 ++pd->processed;
293 pd->cpu = cpumask_next_wrap(cpu, pd->cpumask.pcpu, -1, false);
294 }
295
296 spin_unlock(&reorder->lock);
297 return padata;
298 }
299
padata_reorder(struct parallel_data * pd)300 static void padata_reorder(struct parallel_data *pd)
301 {
302 struct padata_instance *pinst = pd->ps->pinst;
303 int cb_cpu;
304 struct padata_priv *padata;
305 struct padata_serial_queue *squeue;
306 struct padata_list *reorder;
307
308 /*
309 * We need to ensure that only one cpu can work on dequeueing of
310 * the reorder queue the time. Calculating in which percpu reorder
311 * queue the next object will arrive takes some time. A spinlock
312 * would be highly contended. Also it is not clear in which order
313 * the objects arrive to the reorder queues. So a cpu could wait to
314 * get the lock just to notice that there is nothing to do at the
315 * moment. Therefore we use a trylock and let the holder of the lock
316 * care for all the objects enqueued during the holdtime of the lock.
317 */
318 if (!spin_trylock_bh(&pd->lock))
319 return;
320
321 while (1) {
322 padata = padata_find_next(pd, true);
323
324 /*
325 * If the next object that needs serialization is parallel
326 * processed by another cpu and is still on it's way to the
327 * cpu's reorder queue, nothing to do for now.
328 */
329 if (!padata)
330 break;
331
332 cb_cpu = padata->cb_cpu;
333 squeue = per_cpu_ptr(pd->squeue, cb_cpu);
334
335 spin_lock(&squeue->serial.lock);
336 list_add_tail(&padata->list, &squeue->serial.list);
337 spin_unlock(&squeue->serial.lock);
338
339 queue_work_on(cb_cpu, pinst->serial_wq, &squeue->work);
340 }
341
342 spin_unlock_bh(&pd->lock);
343
344 /*
345 * The next object that needs serialization might have arrived to
346 * the reorder queues in the meantime.
347 *
348 * Ensure reorder queue is read after pd->lock is dropped so we see
349 * new objects from another task in padata_do_serial. Pairs with
350 * smp_mb in padata_do_serial.
351 */
352 smp_mb();
353
354 reorder = per_cpu_ptr(pd->reorder_list, pd->cpu);
355 if (!list_empty(&reorder->list) && padata_find_next(pd, false)) {
356 /*
357 * Other context(eg. the padata_serial_worker) can finish the request.
358 * To avoid UAF issue, add pd ref here, and put pd ref after reorder_work finish.
359 */
360 padata_get_pd(pd);
361 if (!queue_work(pinst->serial_wq, &pd->reorder_work))
362 padata_put_pd(pd);
363 }
364 }
365
invoke_padata_reorder(struct work_struct * work)366 static void invoke_padata_reorder(struct work_struct *work)
367 {
368 struct parallel_data *pd;
369
370 local_bh_disable();
371 pd = container_of(work, struct parallel_data, reorder_work);
372 padata_reorder(pd);
373 local_bh_enable();
374 /* Pairs with putting the reorder_work in the serial_wq */
375 padata_put_pd(pd);
376 }
377
padata_serial_worker(struct work_struct * serial_work)378 static void padata_serial_worker(struct work_struct *serial_work)
379 {
380 struct padata_serial_queue *squeue;
381 struct parallel_data *pd;
382 LIST_HEAD(local_list);
383 int cnt;
384
385 local_bh_disable();
386 squeue = container_of(serial_work, struct padata_serial_queue, work);
387 pd = squeue->pd;
388
389 spin_lock(&squeue->serial.lock);
390 list_replace_init(&squeue->serial.list, &local_list);
391 spin_unlock(&squeue->serial.lock);
392
393 cnt = 0;
394
395 while (!list_empty(&local_list)) {
396 struct padata_priv *padata;
397
398 padata = list_entry(local_list.next,
399 struct padata_priv, list);
400
401 list_del_init(&padata->list);
402
403 padata->serial(padata);
404 cnt++;
405 }
406 local_bh_enable();
407
408 padata_put_pd_cnt(pd, cnt);
409 }
410
411 /**
412 * padata_do_serial - padata serialization function
413 *
414 * @padata: object to be serialized.
415 *
416 * padata_do_serial must be called for every parallelized object.
417 * The serialization callback function will run with BHs off.
418 */
padata_do_serial(struct padata_priv * padata)419 void padata_do_serial(struct padata_priv *padata)
420 {
421 struct parallel_data *pd = padata->pd;
422 int hashed_cpu = padata_cpu_hash(pd, padata->seq_nr);
423 struct padata_list *reorder = per_cpu_ptr(pd->reorder_list, hashed_cpu);
424 struct padata_priv *cur;
425 struct list_head *pos;
426
427 spin_lock(&reorder->lock);
428 /* Sort in ascending order of sequence number. */
429 list_for_each_prev(pos, &reorder->list) {
430 cur = list_entry(pos, struct padata_priv, list);
431 /* Compare by difference to consider integer wrap around */
432 if ((signed int)(cur->seq_nr - padata->seq_nr) < 0)
433 break;
434 }
435 list_add(&padata->list, pos);
436 spin_unlock(&reorder->lock);
437
438 /*
439 * Ensure the addition to the reorder list is ordered correctly
440 * with the trylock of pd->lock in padata_reorder. Pairs with smp_mb
441 * in padata_reorder.
442 */
443 smp_mb();
444
445 padata_reorder(pd);
446 }
447 EXPORT_SYMBOL(padata_do_serial);
448
padata_setup_cpumasks(struct padata_instance * pinst)449 static int padata_setup_cpumasks(struct padata_instance *pinst)
450 {
451 struct workqueue_attrs *attrs;
452 int err;
453
454 attrs = alloc_workqueue_attrs();
455 if (!attrs)
456 return -ENOMEM;
457
458 /* Restrict parallel_wq workers to pd->cpumask.pcpu. */
459 cpumask_copy(attrs->cpumask, pinst->cpumask.pcpu);
460 err = apply_workqueue_attrs(pinst->parallel_wq, attrs);
461 free_workqueue_attrs(attrs);
462
463 return err;
464 }
465
padata_mt_helper(struct work_struct * w)466 static void __init padata_mt_helper(struct work_struct *w)
467 {
468 struct padata_work *pw = container_of(w, struct padata_work, pw_work);
469 struct padata_mt_job_state *ps = pw->pw_data;
470 struct padata_mt_job *job = ps->job;
471 bool done;
472
473 spin_lock(&ps->lock);
474
475 while (job->size > 0) {
476 unsigned long start, size, end;
477
478 start = job->start;
479 /* So end is chunk size aligned if enough work remains. */
480 size = roundup(start + 1, ps->chunk_size) - start;
481 size = min(size, job->size);
482 end = start + size;
483
484 job->start = end;
485 job->size -= size;
486
487 spin_unlock(&ps->lock);
488 job->thread_fn(start, end, job->fn_arg);
489 spin_lock(&ps->lock);
490 }
491
492 ++ps->nworks_fini;
493 done = (ps->nworks_fini == ps->nworks);
494 spin_unlock(&ps->lock);
495
496 if (done)
497 complete(&ps->completion);
498 }
499
500 /**
501 * padata_do_multithreaded - run a multithreaded job
502 * @job: Description of the job.
503 *
504 * See the definition of struct padata_mt_job for more details.
505 */
padata_do_multithreaded(struct padata_mt_job * job)506 void __init padata_do_multithreaded(struct padata_mt_job *job)
507 {
508 /* In case threads finish at different times. */
509 static const unsigned long load_balance_factor = 4;
510 struct padata_work my_work, *pw;
511 struct padata_mt_job_state ps;
512 LIST_HEAD(works);
513 int nworks;
514
515 if (job->size == 0)
516 return;
517
518 /* Ensure at least one thread when size < min_chunk. */
519 nworks = max(job->size / max(job->min_chunk, job->align), 1ul);
520 nworks = min(nworks, job->max_threads);
521
522 if (nworks == 1) {
523 /* Single thread, no coordination needed, cut to the chase. */
524 job->thread_fn(job->start, job->start + job->size, job->fn_arg);
525 return;
526 }
527
528 spin_lock_init(&ps.lock);
529 init_completion(&ps.completion);
530 ps.job = job;
531 ps.nworks = padata_work_alloc_mt(nworks, &ps, &works);
532 ps.nworks_fini = 0;
533
534 /*
535 * Chunk size is the amount of work a helper does per call to the
536 * thread function. Load balance large jobs between threads by
537 * increasing the number of chunks, guarantee at least the minimum
538 * chunk size from the caller, and honor the caller's alignment.
539 * Ensure chunk_size is at least 1 to prevent divide-by-0
540 * panic in padata_mt_helper().
541 */
542 ps.chunk_size = job->size / (ps.nworks * load_balance_factor);
543 ps.chunk_size = max(ps.chunk_size, job->min_chunk);
544 ps.chunk_size = max(ps.chunk_size, 1ul);
545 ps.chunk_size = roundup(ps.chunk_size, job->align);
546
547 /*
548 * chunk_size can be 0 if the caller sets min_chunk to 0. So force it
549 * to at least 1 to prevent divide-by-0 panic in padata_mt_helper().`
550 */
551 if (!ps.chunk_size)
552 ps.chunk_size = 1U;
553
554 list_for_each_entry(pw, &works, pw_list)
555 queue_work(system_unbound_wq, &pw->pw_work);
556
557 /* Use the current thread, which saves starting a workqueue worker. */
558 padata_work_init(&my_work, padata_mt_helper, &ps, PADATA_WORK_ONSTACK);
559 padata_mt_helper(&my_work.pw_work);
560
561 /* Wait for all the helpers to finish. */
562 wait_for_completion(&ps.completion);
563
564 destroy_work_on_stack(&my_work.pw_work);
565 padata_works_free(&works);
566 }
567
__padata_list_init(struct padata_list * pd_list)568 static void __padata_list_init(struct padata_list *pd_list)
569 {
570 INIT_LIST_HEAD(&pd_list->list);
571 spin_lock_init(&pd_list->lock);
572 }
573
574 /* Initialize all percpu queues used by serial workers */
padata_init_squeues(struct parallel_data * pd)575 static void padata_init_squeues(struct parallel_data *pd)
576 {
577 int cpu;
578 struct padata_serial_queue *squeue;
579
580 for_each_cpu(cpu, pd->cpumask.cbcpu) {
581 squeue = per_cpu_ptr(pd->squeue, cpu);
582 squeue->pd = pd;
583 __padata_list_init(&squeue->serial);
584 INIT_WORK(&squeue->work, padata_serial_worker);
585 }
586 }
587
588 /* Initialize per-CPU reorder lists */
padata_init_reorder_list(struct parallel_data * pd)589 static void padata_init_reorder_list(struct parallel_data *pd)
590 {
591 int cpu;
592 struct padata_list *list;
593
594 for_each_cpu(cpu, pd->cpumask.pcpu) {
595 list = per_cpu_ptr(pd->reorder_list, cpu);
596 __padata_list_init(list);
597 }
598 }
599
600 /* Allocate and initialize the internal cpumask dependend resources. */
padata_alloc_pd(struct padata_shell * ps)601 static struct parallel_data *padata_alloc_pd(struct padata_shell *ps)
602 {
603 struct padata_instance *pinst = ps->pinst;
604 struct parallel_data *pd;
605
606 pd = kzalloc(sizeof(struct parallel_data), GFP_KERNEL);
607 if (!pd)
608 goto err;
609
610 pd->reorder_list = alloc_percpu(struct padata_list);
611 if (!pd->reorder_list)
612 goto err_free_pd;
613
614 pd->squeue = alloc_percpu(struct padata_serial_queue);
615 if (!pd->squeue)
616 goto err_free_reorder_list;
617
618 pd->ps = ps;
619
620 if (!alloc_cpumask_var(&pd->cpumask.pcpu, GFP_KERNEL))
621 goto err_free_squeue;
622 if (!alloc_cpumask_var(&pd->cpumask.cbcpu, GFP_KERNEL))
623 goto err_free_pcpu;
624
625 cpumask_and(pd->cpumask.pcpu, pinst->cpumask.pcpu, cpu_online_mask);
626 cpumask_and(pd->cpumask.cbcpu, pinst->cpumask.cbcpu, cpu_online_mask);
627
628 padata_init_reorder_list(pd);
629 padata_init_squeues(pd);
630 pd->seq_nr = -1;
631 refcount_set(&pd->refcnt, 1);
632 spin_lock_init(&pd->lock);
633 pd->cpu = cpumask_first(pd->cpumask.pcpu);
634 INIT_WORK(&pd->reorder_work, invoke_padata_reorder);
635
636 return pd;
637
638 err_free_pcpu:
639 free_cpumask_var(pd->cpumask.pcpu);
640 err_free_squeue:
641 free_percpu(pd->squeue);
642 err_free_reorder_list:
643 free_percpu(pd->reorder_list);
644 err_free_pd:
645 kfree(pd);
646 err:
647 return NULL;
648 }
649
padata_free_pd(struct parallel_data * pd)650 static void padata_free_pd(struct parallel_data *pd)
651 {
652 free_cpumask_var(pd->cpumask.pcpu);
653 free_cpumask_var(pd->cpumask.cbcpu);
654 free_percpu(pd->reorder_list);
655 free_percpu(pd->squeue);
656 kfree(pd);
657 }
658
__padata_start(struct padata_instance * pinst)659 static void __padata_start(struct padata_instance *pinst)
660 {
661 pinst->flags |= PADATA_INIT;
662 }
663
__padata_stop(struct padata_instance * pinst)664 static void __padata_stop(struct padata_instance *pinst)
665 {
666 if (!(pinst->flags & PADATA_INIT))
667 return;
668
669 pinst->flags &= ~PADATA_INIT;
670
671 synchronize_rcu();
672 }
673
674 /* Replace the internal control structure with a new one. */
padata_replace_one(struct padata_shell * ps)675 static int padata_replace_one(struct padata_shell *ps)
676 {
677 struct parallel_data *pd_new;
678
679 pd_new = padata_alloc_pd(ps);
680 if (!pd_new)
681 return -ENOMEM;
682
683 ps->opd = rcu_dereference_protected(ps->pd, 1);
684 rcu_assign_pointer(ps->pd, pd_new);
685
686 return 0;
687 }
688
padata_replace(struct padata_instance * pinst)689 static int padata_replace(struct padata_instance *pinst)
690 {
691 struct padata_shell *ps;
692 int err = 0;
693
694 pinst->flags |= PADATA_RESET;
695
696 list_for_each_entry(ps, &pinst->pslist, list) {
697 err = padata_replace_one(ps);
698 if (err)
699 break;
700 }
701
702 synchronize_rcu();
703
704 list_for_each_entry_continue_reverse(ps, &pinst->pslist, list)
705 padata_put_pd(ps->opd);
706
707 pinst->flags &= ~PADATA_RESET;
708
709 return err;
710 }
711
712 /* If cpumask contains no active cpu, we mark the instance as invalid. */
padata_validate_cpumask(struct padata_instance * pinst,const struct cpumask * cpumask)713 static bool padata_validate_cpumask(struct padata_instance *pinst,
714 const struct cpumask *cpumask)
715 {
716 if (!cpumask_intersects(cpumask, cpu_online_mask)) {
717 pinst->flags |= PADATA_INVALID;
718 return false;
719 }
720
721 pinst->flags &= ~PADATA_INVALID;
722 return true;
723 }
724
__padata_set_cpumasks(struct padata_instance * pinst,cpumask_var_t pcpumask,cpumask_var_t cbcpumask)725 static int __padata_set_cpumasks(struct padata_instance *pinst,
726 cpumask_var_t pcpumask,
727 cpumask_var_t cbcpumask)
728 {
729 int valid;
730 int err;
731
732 valid = padata_validate_cpumask(pinst, pcpumask);
733 if (!valid) {
734 __padata_stop(pinst);
735 goto out_replace;
736 }
737
738 valid = padata_validate_cpumask(pinst, cbcpumask);
739 if (!valid)
740 __padata_stop(pinst);
741
742 out_replace:
743 cpumask_copy(pinst->cpumask.pcpu, pcpumask);
744 cpumask_copy(pinst->cpumask.cbcpu, cbcpumask);
745
746 err = padata_setup_cpumasks(pinst) ?: padata_replace(pinst);
747
748 if (valid)
749 __padata_start(pinst);
750
751 return err;
752 }
753
754 /**
755 * padata_set_cpumask - Sets specified by @cpumask_type cpumask to the value
756 * equivalent to @cpumask.
757 * @pinst: padata instance
758 * @cpumask_type: PADATA_CPU_SERIAL or PADATA_CPU_PARALLEL corresponding
759 * to parallel and serial cpumasks respectively.
760 * @cpumask: the cpumask to use
761 *
762 * Return: 0 on success or negative error code
763 */
padata_set_cpumask(struct padata_instance * pinst,int cpumask_type,cpumask_var_t cpumask)764 int padata_set_cpumask(struct padata_instance *pinst, int cpumask_type,
765 cpumask_var_t cpumask)
766 {
767 struct cpumask *serial_mask, *parallel_mask;
768 int err = -EINVAL;
769
770 cpus_read_lock();
771 mutex_lock(&pinst->lock);
772
773 switch (cpumask_type) {
774 case PADATA_CPU_PARALLEL:
775 serial_mask = pinst->cpumask.cbcpu;
776 parallel_mask = cpumask;
777 break;
778 case PADATA_CPU_SERIAL:
779 parallel_mask = pinst->cpumask.pcpu;
780 serial_mask = cpumask;
781 break;
782 default:
783 goto out;
784 }
785
786 err = __padata_set_cpumasks(pinst, parallel_mask, serial_mask);
787
788 out:
789 mutex_unlock(&pinst->lock);
790 cpus_read_unlock();
791
792 return err;
793 }
794 EXPORT_SYMBOL(padata_set_cpumask);
795
796 #ifdef CONFIG_HOTPLUG_CPU
797
__padata_add_cpu(struct padata_instance * pinst,int cpu)798 static int __padata_add_cpu(struct padata_instance *pinst, int cpu)
799 {
800 int err = 0;
801
802 if (cpumask_test_cpu(cpu, cpu_online_mask)) {
803 err = padata_replace(pinst);
804
805 if (padata_validate_cpumask(pinst, pinst->cpumask.pcpu) &&
806 padata_validate_cpumask(pinst, pinst->cpumask.cbcpu))
807 __padata_start(pinst);
808 }
809
810 return err;
811 }
812
__padata_remove_cpu(struct padata_instance * pinst,int cpu)813 static int __padata_remove_cpu(struct padata_instance *pinst, int cpu)
814 {
815 int err = 0;
816
817 if (!cpumask_test_cpu(cpu, cpu_online_mask)) {
818 if (!padata_validate_cpumask(pinst, pinst->cpumask.pcpu) ||
819 !padata_validate_cpumask(pinst, pinst->cpumask.cbcpu))
820 __padata_stop(pinst);
821
822 err = padata_replace(pinst);
823 }
824
825 return err;
826 }
827
pinst_has_cpu(struct padata_instance * pinst,int cpu)828 static inline int pinst_has_cpu(struct padata_instance *pinst, int cpu)
829 {
830 return cpumask_test_cpu(cpu, pinst->cpumask.pcpu) ||
831 cpumask_test_cpu(cpu, pinst->cpumask.cbcpu);
832 }
833
padata_cpu_online(unsigned int cpu,struct hlist_node * node)834 static int padata_cpu_online(unsigned int cpu, struct hlist_node *node)
835 {
836 struct padata_instance *pinst;
837 int ret;
838
839 pinst = hlist_entry_safe(node, struct padata_instance, cpu_online_node);
840 if (!pinst_has_cpu(pinst, cpu))
841 return 0;
842
843 mutex_lock(&pinst->lock);
844 ret = __padata_add_cpu(pinst, cpu);
845 mutex_unlock(&pinst->lock);
846 return ret;
847 }
848
padata_cpu_dead(unsigned int cpu,struct hlist_node * node)849 static int padata_cpu_dead(unsigned int cpu, struct hlist_node *node)
850 {
851 struct padata_instance *pinst;
852 int ret;
853
854 pinst = hlist_entry_safe(node, struct padata_instance, cpu_dead_node);
855 if (!pinst_has_cpu(pinst, cpu))
856 return 0;
857
858 mutex_lock(&pinst->lock);
859 ret = __padata_remove_cpu(pinst, cpu);
860 mutex_unlock(&pinst->lock);
861 return ret;
862 }
863
864 static enum cpuhp_state hp_online;
865 #endif
866
__padata_free(struct padata_instance * pinst)867 static void __padata_free(struct padata_instance *pinst)
868 {
869 #ifdef CONFIG_HOTPLUG_CPU
870 cpuhp_state_remove_instance_nocalls(CPUHP_PADATA_DEAD,
871 &pinst->cpu_dead_node);
872 cpuhp_state_remove_instance_nocalls(hp_online, &pinst->cpu_online_node);
873 #endif
874
875 WARN_ON(!list_empty(&pinst->pslist));
876
877 free_cpumask_var(pinst->cpumask.pcpu);
878 free_cpumask_var(pinst->cpumask.cbcpu);
879 destroy_workqueue(pinst->serial_wq);
880 destroy_workqueue(pinst->parallel_wq);
881 kfree(pinst);
882 }
883
884 #define kobj2pinst(_kobj) \
885 container_of(_kobj, struct padata_instance, kobj)
886 #define attr2pentry(_attr) \
887 container_of(_attr, struct padata_sysfs_entry, attr)
888
padata_sysfs_release(struct kobject * kobj)889 static void padata_sysfs_release(struct kobject *kobj)
890 {
891 struct padata_instance *pinst = kobj2pinst(kobj);
892 __padata_free(pinst);
893 }
894
895 struct padata_sysfs_entry {
896 struct attribute attr;
897 ssize_t (*show)(struct padata_instance *, struct attribute *, char *);
898 ssize_t (*store)(struct padata_instance *, struct attribute *,
899 const char *, size_t);
900 };
901
show_cpumask(struct padata_instance * pinst,struct attribute * attr,char * buf)902 static ssize_t show_cpumask(struct padata_instance *pinst,
903 struct attribute *attr, char *buf)
904 {
905 struct cpumask *cpumask;
906 ssize_t len;
907
908 mutex_lock(&pinst->lock);
909 if (!strcmp(attr->name, "serial_cpumask"))
910 cpumask = pinst->cpumask.cbcpu;
911 else
912 cpumask = pinst->cpumask.pcpu;
913
914 len = snprintf(buf, PAGE_SIZE, "%*pb\n",
915 nr_cpu_ids, cpumask_bits(cpumask));
916 mutex_unlock(&pinst->lock);
917 return len < PAGE_SIZE ? len : -EINVAL;
918 }
919
store_cpumask(struct padata_instance * pinst,struct attribute * attr,const char * buf,size_t count)920 static ssize_t store_cpumask(struct padata_instance *pinst,
921 struct attribute *attr,
922 const char *buf, size_t count)
923 {
924 cpumask_var_t new_cpumask;
925 ssize_t ret;
926 int mask_type;
927
928 if (!alloc_cpumask_var(&new_cpumask, GFP_KERNEL))
929 return -ENOMEM;
930
931 ret = bitmap_parse(buf, count, cpumask_bits(new_cpumask),
932 nr_cpumask_bits);
933 if (ret < 0)
934 goto out;
935
936 mask_type = !strcmp(attr->name, "serial_cpumask") ?
937 PADATA_CPU_SERIAL : PADATA_CPU_PARALLEL;
938 ret = padata_set_cpumask(pinst, mask_type, new_cpumask);
939 if (!ret)
940 ret = count;
941
942 out:
943 free_cpumask_var(new_cpumask);
944 return ret;
945 }
946
947 #define PADATA_ATTR_RW(_name, _show_name, _store_name) \
948 static struct padata_sysfs_entry _name##_attr = \
949 __ATTR(_name, 0644, _show_name, _store_name)
950 #define PADATA_ATTR_RO(_name, _show_name) \
951 static struct padata_sysfs_entry _name##_attr = \
952 __ATTR(_name, 0400, _show_name, NULL)
953
954 PADATA_ATTR_RW(serial_cpumask, show_cpumask, store_cpumask);
955 PADATA_ATTR_RW(parallel_cpumask, show_cpumask, store_cpumask);
956
957 /*
958 * Padata sysfs provides the following objects:
959 * serial_cpumask [RW] - cpumask for serial workers
960 * parallel_cpumask [RW] - cpumask for parallel workers
961 */
962 static struct attribute *padata_default_attrs[] = {
963 &serial_cpumask_attr.attr,
964 ¶llel_cpumask_attr.attr,
965 NULL,
966 };
967 ATTRIBUTE_GROUPS(padata_default);
968
padata_sysfs_show(struct kobject * kobj,struct attribute * attr,char * buf)969 static ssize_t padata_sysfs_show(struct kobject *kobj,
970 struct attribute *attr, char *buf)
971 {
972 struct padata_instance *pinst;
973 struct padata_sysfs_entry *pentry;
974 ssize_t ret = -EIO;
975
976 pinst = kobj2pinst(kobj);
977 pentry = attr2pentry(attr);
978 if (pentry->show)
979 ret = pentry->show(pinst, attr, buf);
980
981 return ret;
982 }
983
padata_sysfs_store(struct kobject * kobj,struct attribute * attr,const char * buf,size_t count)984 static ssize_t padata_sysfs_store(struct kobject *kobj, struct attribute *attr,
985 const char *buf, size_t count)
986 {
987 struct padata_instance *pinst;
988 struct padata_sysfs_entry *pentry;
989 ssize_t ret = -EIO;
990
991 pinst = kobj2pinst(kobj);
992 pentry = attr2pentry(attr);
993 if (pentry->store)
994 ret = pentry->store(pinst, attr, buf, count);
995
996 return ret;
997 }
998
999 static const struct sysfs_ops padata_sysfs_ops = {
1000 .show = padata_sysfs_show,
1001 .store = padata_sysfs_store,
1002 };
1003
1004 static const struct kobj_type padata_attr_type = {
1005 .sysfs_ops = &padata_sysfs_ops,
1006 .default_groups = padata_default_groups,
1007 .release = padata_sysfs_release,
1008 };
1009
1010 /**
1011 * padata_alloc - allocate and initialize a padata instance
1012 * @name: used to identify the instance
1013 *
1014 * Return: new instance on success, NULL on error
1015 */
padata_alloc(const char * name)1016 struct padata_instance *padata_alloc(const char *name)
1017 {
1018 struct padata_instance *pinst;
1019
1020 pinst = kzalloc(sizeof(struct padata_instance), GFP_KERNEL);
1021 if (!pinst)
1022 goto err;
1023
1024 pinst->parallel_wq = alloc_workqueue("%s_parallel", WQ_UNBOUND, 0,
1025 name);
1026 if (!pinst->parallel_wq)
1027 goto err_free_inst;
1028
1029 cpus_read_lock();
1030
1031 pinst->serial_wq = alloc_workqueue("%s_serial", WQ_MEM_RECLAIM |
1032 WQ_CPU_INTENSIVE, 1, name);
1033 if (!pinst->serial_wq)
1034 goto err_put_cpus;
1035
1036 if (!alloc_cpumask_var(&pinst->cpumask.pcpu, GFP_KERNEL))
1037 goto err_free_serial_wq;
1038 if (!alloc_cpumask_var(&pinst->cpumask.cbcpu, GFP_KERNEL)) {
1039 free_cpumask_var(pinst->cpumask.pcpu);
1040 goto err_free_serial_wq;
1041 }
1042
1043 INIT_LIST_HEAD(&pinst->pslist);
1044
1045 cpumask_copy(pinst->cpumask.pcpu, cpu_possible_mask);
1046 cpumask_copy(pinst->cpumask.cbcpu, cpu_possible_mask);
1047
1048 if (padata_setup_cpumasks(pinst))
1049 goto err_free_masks;
1050
1051 __padata_start(pinst);
1052
1053 kobject_init(&pinst->kobj, &padata_attr_type);
1054 mutex_init(&pinst->lock);
1055
1056 #ifdef CONFIG_HOTPLUG_CPU
1057 cpuhp_state_add_instance_nocalls_cpuslocked(hp_online,
1058 &pinst->cpu_online_node);
1059 cpuhp_state_add_instance_nocalls_cpuslocked(CPUHP_PADATA_DEAD,
1060 &pinst->cpu_dead_node);
1061 #endif
1062
1063 cpus_read_unlock();
1064
1065 return pinst;
1066
1067 err_free_masks:
1068 free_cpumask_var(pinst->cpumask.pcpu);
1069 free_cpumask_var(pinst->cpumask.cbcpu);
1070 err_free_serial_wq:
1071 destroy_workqueue(pinst->serial_wq);
1072 err_put_cpus:
1073 cpus_read_unlock();
1074 destroy_workqueue(pinst->parallel_wq);
1075 err_free_inst:
1076 kfree(pinst);
1077 err:
1078 return NULL;
1079 }
1080 EXPORT_SYMBOL(padata_alloc);
1081
1082 /**
1083 * padata_free - free a padata instance
1084 *
1085 * @pinst: padata instance to free
1086 */
padata_free(struct padata_instance * pinst)1087 void padata_free(struct padata_instance *pinst)
1088 {
1089 kobject_put(&pinst->kobj);
1090 }
1091 EXPORT_SYMBOL(padata_free);
1092
1093 /**
1094 * padata_alloc_shell - Allocate and initialize padata shell.
1095 *
1096 * @pinst: Parent padata_instance object.
1097 *
1098 * Return: new shell on success, NULL on error
1099 */
padata_alloc_shell(struct padata_instance * pinst)1100 struct padata_shell *padata_alloc_shell(struct padata_instance *pinst)
1101 {
1102 struct parallel_data *pd;
1103 struct padata_shell *ps;
1104
1105 ps = kzalloc(sizeof(*ps), GFP_KERNEL);
1106 if (!ps)
1107 goto out;
1108
1109 ps->pinst = pinst;
1110
1111 cpus_read_lock();
1112 pd = padata_alloc_pd(ps);
1113 cpus_read_unlock();
1114
1115 if (!pd)
1116 goto out_free_ps;
1117
1118 mutex_lock(&pinst->lock);
1119 RCU_INIT_POINTER(ps->pd, pd);
1120 list_add(&ps->list, &pinst->pslist);
1121 mutex_unlock(&pinst->lock);
1122
1123 return ps;
1124
1125 out_free_ps:
1126 kfree(ps);
1127 out:
1128 return NULL;
1129 }
1130 EXPORT_SYMBOL(padata_alloc_shell);
1131
1132 /**
1133 * padata_free_shell - free a padata shell
1134 *
1135 * @ps: padata shell to free
1136 */
padata_free_shell(struct padata_shell * ps)1137 void padata_free_shell(struct padata_shell *ps)
1138 {
1139 struct parallel_data *pd;
1140
1141 if (!ps)
1142 return;
1143
1144 /*
1145 * Wait for all _do_serial calls to finish to avoid touching
1146 * freed pd's and ps's.
1147 */
1148 synchronize_rcu();
1149
1150 mutex_lock(&ps->pinst->lock);
1151 list_del(&ps->list);
1152 pd = rcu_dereference_protected(ps->pd, 1);
1153 padata_put_pd(pd);
1154 mutex_unlock(&ps->pinst->lock);
1155
1156 kfree(ps);
1157 }
1158 EXPORT_SYMBOL(padata_free_shell);
1159
padata_init(void)1160 void __init padata_init(void)
1161 {
1162 unsigned int i, possible_cpus;
1163 #ifdef CONFIG_HOTPLUG_CPU
1164 int ret;
1165
1166 ret = cpuhp_setup_state_multi(CPUHP_AP_ONLINE_DYN, "padata:online",
1167 padata_cpu_online, NULL);
1168 if (ret < 0)
1169 goto err;
1170 hp_online = ret;
1171
1172 ret = cpuhp_setup_state_multi(CPUHP_PADATA_DEAD, "padata:dead",
1173 NULL, padata_cpu_dead);
1174 if (ret < 0)
1175 goto remove_online_state;
1176 #endif
1177
1178 possible_cpus = num_possible_cpus();
1179 padata_works = kmalloc_array(possible_cpus, sizeof(struct padata_work),
1180 GFP_KERNEL);
1181 if (!padata_works)
1182 goto remove_dead_state;
1183
1184 for (i = 0; i < possible_cpus; ++i)
1185 list_add(&padata_works[i].pw_list, &padata_free_works);
1186
1187 return;
1188
1189 remove_dead_state:
1190 #ifdef CONFIG_HOTPLUG_CPU
1191 cpuhp_remove_multi_state(CPUHP_PADATA_DEAD);
1192 remove_online_state:
1193 cpuhp_remove_multi_state(hp_online);
1194 err:
1195 #endif
1196 pr_warn("padata: initialization failed\n");
1197 }
1198