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 ¶llel_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