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11#include <linux/kernel.h>
12#include <linux/init.h>
13#include <linux/errno.h>
14#include <linux/time.h>
15#include <linux/aio_abi.h>
16#include <linux/module.h>
17#include <linux/syscalls.h>
18
19#define DEBUG 0
20
21#include <linux/sched.h>
22#include <linux/fs.h>
23#include <linux/file.h>
24#include <linux/mm.h>
25#include <linux/mman.h>
26#include <linux/slab.h>
27#include <linux/timer.h>
28#include <linux/aio.h>
29#include <linux/highmem.h>
30#include <linux/workqueue.h>
31#include <linux/security.h>
32
33#include <asm/kmap_types.h>
34#include <asm/uaccess.h>
35#include <asm/mmu_context.h>
36
37#if DEBUG > 1
38#define dprintk printk
39#else
40#define dprintk(x...) do { ; } while (0)
41#endif
42
43
44static DEFINE_SPINLOCK(aio_nr_lock);
45unsigned long aio_nr;
46unsigned long aio_max_nr = 0x10000;
47
48
49static kmem_cache_t *kiocb_cachep;
50static kmem_cache_t *kioctx_cachep;
51
52static struct workqueue_struct *aio_wq;
53
54
55static void aio_fput_routine(void *);
56static DECLARE_WORK(fput_work, aio_fput_routine, NULL);
57
58static DEFINE_SPINLOCK(fput_lock);
59static LIST_HEAD(fput_head);
60
61static void aio_kick_handler(void *);
62static void aio_queue_work(struct kioctx *);
63
64
65
66
67
68static int __init aio_setup(void)
69{
70 kiocb_cachep = kmem_cache_create("kiocb", sizeof(struct kiocb),
71 0, SLAB_HWCACHE_ALIGN|SLAB_PANIC, NULL, NULL);
72 kioctx_cachep = kmem_cache_create("kioctx", sizeof(struct kioctx),
73 0, SLAB_HWCACHE_ALIGN|SLAB_PANIC, NULL, NULL);
74
75 aio_wq = create_workqueue("aio");
76
77 pr_debug("aio_setup: sizeof(struct page) = %d\n", (int)sizeof(struct page));
78
79 return 0;
80}
81
82static void aio_free_ring(struct kioctx *ctx)
83{
84 struct aio_ring_info *info = &ctx->ring_info;
85 long i;
86
87 for (i=0; i<info->nr_pages; i++)
88 put_page(info->ring_pages[i]);
89
90 if (info->mmap_size) {
91 down_write(&ctx->mm->mmap_sem);
92 do_munmap(ctx->mm, info->mmap_base, info->mmap_size);
93 up_write(&ctx->mm->mmap_sem);
94 }
95
96 if (info->ring_pages && info->ring_pages != info->internal_pages)
97 kfree(info->ring_pages);
98 info->ring_pages = NULL;
99 info->nr = 0;
100}
101
102static int aio_setup_ring(struct kioctx *ctx)
103{
104 struct aio_ring *ring;
105 struct aio_ring_info *info = &ctx->ring_info;
106 unsigned nr_events = ctx->max_reqs;
107 unsigned long size;
108 int nr_pages;
109
110
111 nr_events += 2;
112
113 size = sizeof(struct aio_ring);
114 size += sizeof(struct io_event) * nr_events;
115 nr_pages = (size + PAGE_SIZE-1) >> PAGE_SHIFT;
116
117 if (nr_pages < 0)
118 return -EINVAL;
119
120 nr_events = (PAGE_SIZE * nr_pages - sizeof(struct aio_ring)) / sizeof(struct io_event);
121
122 info->nr = 0;
123 info->ring_pages = info->internal_pages;
124 if (nr_pages > AIO_RING_PAGES) {
125 info->ring_pages = kcalloc(nr_pages, sizeof(struct page *), GFP_KERNEL);
126 if (!info->ring_pages)
127 return -ENOMEM;
128 }
129
130 info->mmap_size = nr_pages * PAGE_SIZE;
131 dprintk("attempting mmap of %lu bytes\n", info->mmap_size);
132 down_write(&ctx->mm->mmap_sem);
133 info->mmap_base = do_mmap(NULL, 0, info->mmap_size,
134 PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE,
135 0);
136 if (IS_ERR((void *)info->mmap_base)) {
137 up_write(&ctx->mm->mmap_sem);
138 printk("mmap err: %ld\n", -info->mmap_base);
139 info->mmap_size = 0;
140 aio_free_ring(ctx);
141 return -EAGAIN;
142 }
143
144 dprintk("mmap address: 0x%08lx\n", info->mmap_base);
145 info->nr_pages = get_user_pages(current, ctx->mm,
146 info->mmap_base, nr_pages,
147 1, 0, info->ring_pages, NULL);
148 up_write(&ctx->mm->mmap_sem);
149
150 if (unlikely(info->nr_pages != nr_pages)) {
151 aio_free_ring(ctx);
152 return -EAGAIN;
153 }
154
155 ctx->user_id = info->mmap_base;
156
157 info->nr = nr_events;
158
159 ring = kmap_atomic(info->ring_pages[0], KM_USER0);
160 ring->nr = nr_events;
161 ring->id = ctx->user_id;
162 ring->head = ring->tail = 0;
163 ring->magic = AIO_RING_MAGIC;
164 ring->compat_features = AIO_RING_COMPAT_FEATURES;
165 ring->incompat_features = AIO_RING_INCOMPAT_FEATURES;
166 ring->header_length = sizeof(struct aio_ring);
167 kunmap_atomic(ring, KM_USER0);
168
169 return 0;
170}
171
172
173
174
175
176#define AIO_EVENTS_PER_PAGE (PAGE_SIZE / sizeof(struct io_event))
177#define AIO_EVENTS_FIRST_PAGE ((PAGE_SIZE - sizeof(struct aio_ring)) / sizeof(struct io_event))
178#define AIO_EVENTS_OFFSET (AIO_EVENTS_PER_PAGE - AIO_EVENTS_FIRST_PAGE)
179
180#define aio_ring_event(info, nr, km) ({ \
181 unsigned pos = (nr) + AIO_EVENTS_OFFSET; \
182 struct io_event *__event; \
183 __event = kmap_atomic( \
184 (info)->ring_pages[pos / AIO_EVENTS_PER_PAGE], km); \
185 __event += pos % AIO_EVENTS_PER_PAGE; \
186 __event; \
187})
188
189#define put_aio_ring_event(event, km) do { \
190 struct io_event *__event = (event); \
191 (void)__event; \
192 kunmap_atomic((void *)((unsigned long)__event & PAGE_MASK), km); \
193} while(0)
194
195
196
197
198static struct kioctx *ioctx_alloc(unsigned nr_events)
199{
200 struct mm_struct *mm;
201 struct kioctx *ctx;
202
203
204 if ((nr_events > (0x10000000U / sizeof(struct io_event))) ||
205 (nr_events > (0x10000000U / sizeof(struct kiocb)))) {
206 pr_debug("ENOMEM: nr_events too high\n");
207 return ERR_PTR(-EINVAL);
208 }
209
210 if ((unsigned long)nr_events > aio_max_nr)
211 return ERR_PTR(-EAGAIN);
212
213 ctx = kmem_cache_alloc(kioctx_cachep, GFP_KERNEL);
214 if (!ctx)
215 return ERR_PTR(-ENOMEM);
216
217 memset(ctx, 0, sizeof(*ctx));
218 ctx->max_reqs = nr_events;
219 mm = ctx->mm = current->mm;
220 atomic_inc(&mm->mm_count);
221
222 atomic_set(&ctx->users, 1);
223 spin_lock_init(&ctx->ctx_lock);
224 spin_lock_init(&ctx->ring_info.ring_lock);
225 init_waitqueue_head(&ctx->wait);
226
227 INIT_LIST_HEAD(&ctx->active_reqs);
228 INIT_LIST_HEAD(&ctx->run_list);
229 INIT_WORK(&ctx->wq, aio_kick_handler, ctx);
230
231 if (aio_setup_ring(ctx) < 0)
232 goto out_freectx;
233
234
235 spin_lock(&aio_nr_lock);
236 if (aio_nr + ctx->max_reqs > aio_max_nr ||
237 aio_nr + ctx->max_reqs < aio_nr)
238 ctx->max_reqs = 0;
239 else
240 aio_nr += ctx->max_reqs;
241 spin_unlock(&aio_nr_lock);
242 if (ctx->max_reqs == 0)
243 goto out_cleanup;
244
245
246 write_lock(&mm->ioctx_list_lock);
247 ctx->next = mm->ioctx_list;
248 mm->ioctx_list = ctx;
249 write_unlock(&mm->ioctx_list_lock);
250
251 dprintk("aio: allocated ioctx %p[%ld]: mm=%p mask=0x%x\n",
252 ctx, ctx->user_id, current->mm, ctx->ring_info.nr);
253 return ctx;
254
255out_cleanup:
256 __put_ioctx(ctx);
257 return ERR_PTR(-EAGAIN);
258
259out_freectx:
260 mmdrop(mm);
261 kmem_cache_free(kioctx_cachep, ctx);
262 ctx = ERR_PTR(-ENOMEM);
263
264 dprintk("aio: error allocating ioctx %p\n", ctx);
265 return ctx;
266}
267
268
269
270
271
272
273static void aio_cancel_all(struct kioctx *ctx)
274{
275 int (*cancel)(struct kiocb *, struct io_event *);
276 struct io_event res;
277 spin_lock_irq(&ctx->ctx_lock);
278 ctx->dead = 1;
279 while (!list_empty(&ctx->active_reqs)) {
280 struct list_head *pos = ctx->active_reqs.next;
281 struct kiocb *iocb = list_kiocb(pos);
282 list_del_init(&iocb->ki_list);
283 cancel = iocb->ki_cancel;
284 kiocbSetCancelled(iocb);
285 if (cancel) {
286 iocb->ki_users++;
287 spin_unlock_irq(&ctx->ctx_lock);
288 cancel(iocb, &res);
289 spin_lock_irq(&ctx->ctx_lock);
290 }
291 }
292 spin_unlock_irq(&ctx->ctx_lock);
293}
294
295static void wait_for_all_aios(struct kioctx *ctx)
296{
297 struct task_struct *tsk = current;
298 DECLARE_WAITQUEUE(wait, tsk);
299
300 if (!ctx->reqs_active)
301 return;
302
303 add_wait_queue(&ctx->wait, &wait);
304 set_task_state(tsk, TASK_UNINTERRUPTIBLE);
305 while (ctx->reqs_active) {
306 schedule();
307 set_task_state(tsk, TASK_UNINTERRUPTIBLE);
308 }
309 __set_task_state(tsk, TASK_RUNNING);
310 remove_wait_queue(&ctx->wait, &wait);
311}
312
313
314
315
316ssize_t fastcall wait_on_sync_kiocb(struct kiocb *iocb)
317{
318 while (iocb->ki_users) {
319 set_current_state(TASK_UNINTERRUPTIBLE);
320 if (!iocb->ki_users)
321 break;
322 schedule();
323 }
324 __set_current_state(TASK_RUNNING);
325 return iocb->ki_user_data;
326}
327
328
329
330
331
332
333
334
335void fastcall exit_aio(struct mm_struct *mm)
336{
337 struct kioctx *ctx = mm->ioctx_list;
338 mm->ioctx_list = NULL;
339 while (ctx) {
340 struct kioctx *next = ctx->next;
341 ctx->next = NULL;
342 aio_cancel_all(ctx);
343
344 wait_for_all_aios(ctx);
345
346
347
348
349 flush_workqueue(aio_wq);
350
351 if (1 != atomic_read(&ctx->users))
352 printk(KERN_DEBUG
353 "exit_aio:ioctx still alive: %d %d %d\n",
354 atomic_read(&ctx->users), ctx->dead,
355 ctx->reqs_active);
356 put_ioctx(ctx);
357 ctx = next;
358 }
359}
360
361
362
363
364
365void fastcall __put_ioctx(struct kioctx *ctx)
366{
367 unsigned nr_events = ctx->max_reqs;
368
369 if (unlikely(ctx->reqs_active))
370 BUG();
371
372 cancel_delayed_work(&ctx->wq);
373 flush_workqueue(aio_wq);
374 aio_free_ring(ctx);
375 mmdrop(ctx->mm);
376 ctx->mm = NULL;
377 pr_debug("__put_ioctx: freeing %p\n", ctx);
378 kmem_cache_free(kioctx_cachep, ctx);
379
380 if (nr_events) {
381 spin_lock(&aio_nr_lock);
382 BUG_ON(aio_nr - nr_events > aio_nr);
383 aio_nr -= nr_events;
384 spin_unlock(&aio_nr_lock);
385 }
386}
387
388
389
390
391
392
393
394
395
396
397
398static struct kiocb *FASTCALL(__aio_get_req(struct kioctx *ctx));
399static struct kiocb fastcall *__aio_get_req(struct kioctx *ctx)
400{
401 struct kiocb *req = NULL;
402 struct aio_ring *ring;
403 int okay = 0;
404
405 req = kmem_cache_alloc(kiocb_cachep, GFP_KERNEL);
406 if (unlikely(!req))
407 return NULL;
408
409 req->ki_flags = 0;
410 req->ki_users = 2;
411 req->ki_key = 0;
412 req->ki_ctx = ctx;
413 req->ki_cancel = NULL;
414 req->ki_retry = NULL;
415 req->ki_dtor = NULL;
416 req->private = NULL;
417 INIT_LIST_HEAD(&req->ki_run_list);
418
419
420
421
422 spin_lock_irq(&ctx->ctx_lock);
423 ring = kmap_atomic(ctx->ring_info.ring_pages[0], KM_USER0);
424 if (ctx->reqs_active < aio_ring_avail(&ctx->ring_info, ring)) {
425 list_add(&req->ki_list, &ctx->active_reqs);
426 get_ioctx(ctx);
427 ctx->reqs_active++;
428 okay = 1;
429 }
430 kunmap_atomic(ring, KM_USER0);
431 spin_unlock_irq(&ctx->ctx_lock);
432
433 if (!okay) {
434 kmem_cache_free(kiocb_cachep, req);
435 req = NULL;
436 }
437
438 return req;
439}
440
441static inline struct kiocb *aio_get_req(struct kioctx *ctx)
442{
443 struct kiocb *req;
444
445
446
447
448 req = __aio_get_req(ctx);
449 if (unlikely(NULL == req)) {
450 aio_fput_routine(NULL);
451 req = __aio_get_req(ctx);
452 }
453 return req;
454}
455
456static inline void really_put_req(struct kioctx *ctx, struct kiocb *req)
457{
458 assert_spin_locked(&ctx->ctx_lock);
459
460 if (req->ki_dtor)
461 req->ki_dtor(req);
462 kmem_cache_free(kiocb_cachep, req);
463 ctx->reqs_active--;
464
465 if (unlikely(!ctx->reqs_active && ctx->dead))
466 wake_up(&ctx->wait);
467}
468
469static void aio_fput_routine(void *data)
470{
471 spin_lock_irq(&fput_lock);
472 while (likely(!list_empty(&fput_head))) {
473 struct kiocb *req = list_kiocb(fput_head.next);
474 struct kioctx *ctx = req->ki_ctx;
475
476 list_del(&req->ki_list);
477 spin_unlock_irq(&fput_lock);
478
479
480 __fput(req->ki_filp);
481
482
483 spin_lock_irq(&ctx->ctx_lock);
484 really_put_req(ctx, req);
485 spin_unlock_irq(&ctx->ctx_lock);
486
487 put_ioctx(ctx);
488 spin_lock_irq(&fput_lock);
489 }
490 spin_unlock_irq(&fput_lock);
491}
492
493
494
495
496static int __aio_put_req(struct kioctx *ctx, struct kiocb *req)
497{
498 dprintk(KERN_DEBUG "aio_put(%p): f_count=%d\n",
499 req, atomic_read(&req->ki_filp->f_count));
500
501 assert_spin_locked(&ctx->ctx_lock);
502
503 req->ki_users --;
504 if (unlikely(req->ki_users < 0))
505 BUG();
506 if (likely(req->ki_users))
507 return 0;
508 list_del(&req->ki_list);
509 req->ki_cancel = NULL;
510 req->ki_retry = NULL;
511
512
513
514
515 if (unlikely(atomic_dec_and_test(&req->ki_filp->f_count))) {
516 get_ioctx(ctx);
517 spin_lock(&fput_lock);
518 list_add(&req->ki_list, &fput_head);
519 spin_unlock(&fput_lock);
520 queue_work(aio_wq, &fput_work);
521 } else
522 really_put_req(ctx, req);
523 return 1;
524}
525
526
527
528
529
530int fastcall aio_put_req(struct kiocb *req)
531{
532 struct kioctx *ctx = req->ki_ctx;
533 int ret;
534 spin_lock_irq(&ctx->ctx_lock);
535 ret = __aio_put_req(ctx, req);
536 spin_unlock_irq(&ctx->ctx_lock);
537 if (ret)
538 put_ioctx(ctx);
539 return ret;
540}
541
542
543
544
545struct kioctx *lookup_ioctx(unsigned long ctx_id)
546{
547 struct kioctx *ioctx;
548 struct mm_struct *mm;
549
550 mm = current->mm;
551 read_lock(&mm->ioctx_list_lock);
552 for (ioctx = mm->ioctx_list; ioctx; ioctx = ioctx->next)
553 if (likely(ioctx->user_id == ctx_id && !ioctx->dead)) {
554 get_ioctx(ioctx);
555 break;
556 }
557 read_unlock(&mm->ioctx_list_lock);
558
559 return ioctx;
560}
561
562
563
564
565
566
567
568
569
570
571
572static void use_mm(struct mm_struct *mm)
573{
574 struct mm_struct *active_mm;
575 struct task_struct *tsk = current;
576
577 task_lock(tsk);
578 tsk->flags |= PF_BORROWED_MM;
579 active_mm = tsk->active_mm;
580 atomic_inc(&mm->mm_count);
581 tsk->mm = mm;
582 tsk->active_mm = mm;
583
584
585
586
587 activate_mm(active_mm, mm);
588 task_unlock(tsk);
589
590 mmdrop(active_mm);
591}
592
593
594
595
596
597
598
599
600
601
602
603
604static void unuse_mm(struct mm_struct *mm)
605{
606 struct task_struct *tsk = current;
607
608 task_lock(tsk);
609 tsk->flags &= ~PF_BORROWED_MM;
610 tsk->mm = NULL;
611
612 enter_lazy_tlb(mm, tsk);
613 task_unlock(tsk);
614}
615
616
617
618
619
620
621
622
623
624
625static inline int __queue_kicked_iocb(struct kiocb *iocb)
626{
627 struct kioctx *ctx = iocb->ki_ctx;
628
629 assert_spin_locked(&ctx->ctx_lock);
630
631 if (list_empty(&iocb->ki_run_list)) {
632 list_add_tail(&iocb->ki_run_list,
633 &ctx->run_list);
634 return 1;
635 }
636 return 0;
637}
638
639
640
641
642
643
644
645
646
647
648
649
650
651
652
653
654
655
656
657
658
659
660
661static ssize_t aio_run_iocb(struct kiocb *iocb)
662{
663 struct kioctx *ctx = iocb->ki_ctx;
664 ssize_t (*retry)(struct kiocb *);
665 ssize_t ret;
666
667 if (iocb->ki_retried++ > 1024*1024) {
668 printk("Maximal retry count. Bytes done %Zd\n",
669 iocb->ki_nbytes - iocb->ki_left);
670 return -EAGAIN;
671 }
672
673 if (!(iocb->ki_retried & 0xff)) {
674 pr_debug("%ld retry: %d of %d\n", iocb->ki_retried,
675 iocb->ki_nbytes - iocb->ki_left, iocb->ki_nbytes);
676 }
677
678 if (!(retry = iocb->ki_retry)) {
679 printk("aio_run_iocb: iocb->ki_retry = NULL\n");
680 return 0;
681 }
682
683
684
685
686
687
688
689
690
691
692
693
694
695
696
697
698
699
700
701
702 kiocbClearKicked(iocb);
703
704
705
706
707
708
709
710 iocb->ki_run_list.next = iocb->ki_run_list.prev = NULL;
711 spin_unlock_irq(&ctx->ctx_lock);
712
713
714 if (kiocbIsCancelled(iocb)) {
715 ret = -EINTR;
716 aio_complete(iocb, ret, 0);
717
718 goto out;
719 }
720
721
722
723
724
725
726
727
728
729
730
731 BUG_ON(current->io_wait != NULL);
732 current->io_wait = &iocb->ki_wait;
733 ret = retry(iocb);
734 current->io_wait = NULL;
735
736 if (ret != -EIOCBRETRY && ret != -EIOCBQUEUED) {
737 BUG_ON(!list_empty(&iocb->ki_wait.task_list));
738 aio_complete(iocb, ret, 0);
739 }
740out:
741 spin_lock_irq(&ctx->ctx_lock);
742
743 if (-EIOCBRETRY == ret) {
744
745
746
747
748
749
750
751
752 INIT_LIST_HEAD(&iocb->ki_run_list);
753
754
755 if (kiocbIsKicked(iocb)) {
756 __queue_kicked_iocb(iocb);
757
758
759
760
761
762
763
764 aio_queue_work(ctx);
765 }
766 }
767 return ret;
768}
769
770
771
772
773
774
775
776
777static int __aio_run_iocbs(struct kioctx *ctx)
778{
779 struct kiocb *iocb;
780 struct list_head run_list;
781
782 assert_spin_locked(&ctx->ctx_lock);
783
784 list_replace_init(&ctx->run_list, &run_list);
785 while (!list_empty(&run_list)) {
786 iocb = list_entry(run_list.next, struct kiocb,
787 ki_run_list);
788 list_del(&iocb->ki_run_list);
789
790
791
792 iocb->ki_users++;
793 aio_run_iocb(iocb);
794 if (__aio_put_req(ctx, iocb))
795 put_ioctx(ctx);
796 }
797 if (!list_empty(&ctx->run_list))
798 return 1;
799 return 0;
800}
801
802static void aio_queue_work(struct kioctx * ctx)
803{
804 unsigned long timeout;
805
806
807
808
809 smp_mb();
810 if (waitqueue_active(&ctx->wait))
811 timeout = 1;
812 else
813 timeout = HZ/10;
814 queue_delayed_work(aio_wq, &ctx->wq, timeout);
815}
816
817
818
819
820
821
822
823
824
825static inline void aio_run_iocbs(struct kioctx *ctx)
826{
827 int requeue;
828
829 spin_lock_irq(&ctx->ctx_lock);
830
831 requeue = __aio_run_iocbs(ctx);
832 spin_unlock_irq(&ctx->ctx_lock);
833 if (requeue)
834 aio_queue_work(ctx);
835}
836
837
838
839
840
841static inline void aio_run_all_iocbs(struct kioctx *ctx)
842{
843 spin_lock_irq(&ctx->ctx_lock);
844 while (__aio_run_iocbs(ctx))
845 ;
846 spin_unlock_irq(&ctx->ctx_lock);
847}
848
849
850
851
852
853
854
855
856
857
858static void aio_kick_handler(void *data)
859{
860 struct kioctx *ctx = data;
861 mm_segment_t oldfs = get_fs();
862 int requeue;
863
864 set_fs(USER_DS);
865 use_mm(ctx->mm);
866 spin_lock_irq(&ctx->ctx_lock);
867 requeue =__aio_run_iocbs(ctx);
868 unuse_mm(ctx->mm);
869 spin_unlock_irq(&ctx->ctx_lock);
870 set_fs(oldfs);
871
872
873
874 if (requeue)
875 queue_work(aio_wq, &ctx->wq);
876}
877
878
879
880
881
882
883
884static void try_queue_kicked_iocb(struct kiocb *iocb)
885{
886 struct kioctx *ctx = iocb->ki_ctx;
887 unsigned long flags;
888 int run = 0;
889
890
891
892
893
894
895 BUG_ON((!list_empty(&iocb->ki_wait.task_list)));
896
897 spin_lock_irqsave(&ctx->ctx_lock, flags);
898
899
900 if (!kiocbTryKick(iocb))
901 run = __queue_kicked_iocb(iocb);
902 spin_unlock_irqrestore(&ctx->ctx_lock, flags);
903 if (run)
904 aio_queue_work(ctx);
905}
906
907
908
909
910
911
912
913
914void fastcall kick_iocb(struct kiocb *iocb)
915{
916
917
918 if (is_sync_kiocb(iocb)) {
919 kiocbSetKicked(iocb);
920 wake_up_process(iocb->ki_obj.tsk);
921 return;
922 }
923
924 try_queue_kicked_iocb(iocb);
925}
926EXPORT_SYMBOL(kick_iocb);
927
928
929
930
931
932
933int fastcall aio_complete(struct kiocb *iocb, long res, long res2)
934{
935 struct kioctx *ctx = iocb->ki_ctx;
936 struct aio_ring_info *info;
937 struct aio_ring *ring;
938 struct io_event *event;
939 unsigned long flags;
940 unsigned long tail;
941 int ret;
942
943
944
945
946
947
948
949
950 if (is_sync_kiocb(iocb)) {
951 BUG_ON(iocb->ki_users != 1);
952 iocb->ki_user_data = res;
953 iocb->ki_users = 0;
954 wake_up_process(iocb->ki_obj.tsk);
955 return 1;
956 }
957
958 info = &ctx->ring_info;
959
960
961
962
963
964
965
966 spin_lock_irqsave(&ctx->ctx_lock, flags);
967
968 if (iocb->ki_run_list.prev && !list_empty(&iocb->ki_run_list))
969 list_del_init(&iocb->ki_run_list);
970
971
972
973
974
975 if (kiocbIsCancelled(iocb))
976 goto put_rq;
977
978 ring = kmap_atomic(info->ring_pages[0], KM_IRQ1);
979
980 tail = info->tail;
981 event = aio_ring_event(info, tail, KM_IRQ0);
982 if (++tail >= info->nr)
983 tail = 0;
984
985 event->obj = (u64)(unsigned long)iocb->ki_obj.user;
986 event->data = iocb->ki_user_data;
987 event->res = res;
988 event->res2 = res2;
989
990 dprintk("aio_complete: %p[%lu]: %p: %p %Lx %lx %lx\n",
991 ctx, tail, iocb, iocb->ki_obj.user, iocb->ki_user_data,
992 res, res2);
993
994
995
996
997 smp_wmb();
998
999 info->tail = tail;
1000 ring->tail = tail;
1001
1002 put_aio_ring_event(event, KM_IRQ0);
1003 kunmap_atomic(ring, KM_IRQ1);
1004
1005 pr_debug("added to ring %p at [%lu]\n", iocb, tail);
1006
1007 pr_debug("%ld retries: %d of %d\n", iocb->ki_retried,
1008 iocb->ki_nbytes - iocb->ki_left, iocb->ki_nbytes);
1009put_rq:
1010
1011 ret = __aio_put_req(ctx, iocb);
1012
1013 spin_unlock_irqrestore(&ctx->ctx_lock, flags);
1014
1015 if (waitqueue_active(&ctx->wait))
1016 wake_up(&ctx->wait);
1017
1018 if (ret)
1019 put_ioctx(ctx);
1020
1021 return ret;
1022}
1023
1024
1025
1026
1027
1028
1029
1030static int aio_read_evt(struct kioctx *ioctx, struct io_event *ent)
1031{
1032 struct aio_ring_info *info = &ioctx->ring_info;
1033 struct aio_ring *ring;
1034 unsigned long head;
1035 int ret = 0;
1036
1037 ring = kmap_atomic(info->ring_pages[0], KM_USER0);
1038 dprintk("in aio_read_evt h%lu t%lu m%lu\n",
1039 (unsigned long)ring->head, (unsigned long)ring->tail,
1040 (unsigned long)ring->nr);
1041
1042 if (ring->head == ring->tail)
1043 goto out;
1044
1045 spin_lock(&info->ring_lock);
1046
1047 head = ring->head % info->nr;
1048 if (head != ring->tail) {
1049 struct io_event *evp = aio_ring_event(info, head, KM_USER1);
1050 *ent = *evp;
1051 head = (head + 1) % info->nr;
1052 smp_mb();
1053 ring->head = head;
1054 ret = 1;
1055 put_aio_ring_event(evp, KM_USER1);
1056 }
1057 spin_unlock(&info->ring_lock);
1058
1059out:
1060 kunmap_atomic(ring, KM_USER0);
1061 dprintk("leaving aio_read_evt: %d h%lu t%lu\n", ret,
1062 (unsigned long)ring->head, (unsigned long)ring->tail);
1063 return ret;
1064}
1065
1066struct aio_timeout {
1067 struct timer_list timer;
1068 int timed_out;
1069 struct task_struct *p;
1070};
1071
1072static void timeout_func(unsigned long data)
1073{
1074 struct aio_timeout *to = (struct aio_timeout *)data;
1075
1076 to->timed_out = 1;
1077 wake_up_process(to->p);
1078}
1079
1080static inline void init_timeout(struct aio_timeout *to)
1081{
1082 init_timer(&to->timer);
1083 to->timer.data = (unsigned long)to;
1084 to->timer.function = timeout_func;
1085 to->timed_out = 0;
1086 to->p = current;
1087}
1088
1089static inline void set_timeout(long start_jiffies, struct aio_timeout *to,
1090 const struct timespec *ts)
1091{
1092 to->timer.expires = start_jiffies + timespec_to_jiffies(ts);
1093 if (time_after(to->timer.expires, jiffies))
1094 add_timer(&to->timer);
1095 else
1096 to->timed_out = 1;
1097}
1098
1099static inline void clear_timeout(struct aio_timeout *to)
1100{
1101 del_singleshot_timer_sync(&to->timer);
1102}
1103
1104static int read_events(struct kioctx *ctx,
1105 long min_nr, long nr,
1106 struct io_event __user *event,
1107 struct timespec __user *timeout)
1108{
1109 long start_jiffies = jiffies;
1110 struct task_struct *tsk = current;
1111 DECLARE_WAITQUEUE(wait, tsk);
1112 int ret;
1113 int i = 0;
1114 struct io_event ent;
1115 struct aio_timeout to;
1116 int retry = 0;
1117
1118
1119
1120
1121 memset(&ent, 0, sizeof(ent));
1122retry:
1123 ret = 0;
1124 while (likely(i < nr)) {
1125 ret = aio_read_evt(ctx, &ent);
1126 if (unlikely(ret <= 0))
1127 break;
1128
1129 dprintk("read event: %Lx %Lx %Lx %Lx\n",
1130 ent.data, ent.obj, ent.res, ent.res2);
1131
1132
1133 ret = -EFAULT;
1134 if (unlikely(copy_to_user(event, &ent, sizeof(ent)))) {
1135 dprintk("aio: lost an event due to EFAULT.\n");
1136 break;
1137 }
1138 ret = 0;
1139
1140
1141 event ++;
1142 i ++;
1143 }
1144
1145 if (min_nr <= i)
1146 return i;
1147 if (ret)
1148 return ret;
1149
1150
1151
1152
1153 if (!retry && unlikely(!list_empty(&ctx->run_list))) {
1154 retry = 1;
1155 aio_run_all_iocbs(ctx);
1156 goto retry;
1157 }
1158
1159 init_timeout(&to);
1160 if (timeout) {
1161 struct timespec ts;
1162 ret = -EFAULT;
1163 if (unlikely(copy_from_user(&ts, timeout, sizeof(ts))))
1164 goto out;
1165
1166 set_timeout(start_jiffies, &to, &ts);
1167 }
1168
1169 while (likely(i < nr)) {
1170 add_wait_queue_exclusive(&ctx->wait, &wait);
1171 do {
1172 set_task_state(tsk, TASK_INTERRUPTIBLE);
1173 ret = aio_read_evt(ctx, &ent);
1174 if (ret)
1175 break;
1176 if (min_nr <= i)
1177 break;
1178 ret = 0;
1179 if (to.timed_out)
1180 break;
1181 schedule();
1182 if (signal_pending(tsk)) {
1183 ret = -EINTR;
1184 break;
1185 }
1186
1187 } while (1) ;
1188
1189 set_task_state(tsk, TASK_RUNNING);
1190 remove_wait_queue(&ctx->wait, &wait);
1191
1192 if (unlikely(ret <= 0))
1193 break;
1194
1195 ret = -EFAULT;
1196 if (unlikely(copy_to_user(event, &ent, sizeof(ent)))) {
1197 dprintk("aio: lost an event due to EFAULT.\n");
1198 break;
1199 }
1200
1201
1202 event ++;
1203 i ++;
1204 }
1205
1206 if (timeout)
1207 clear_timeout(&to);
1208out:
1209 return i ? i : ret;
1210}
1211
1212
1213
1214
1215static void io_destroy(struct kioctx *ioctx)
1216{
1217 struct mm_struct *mm = current->mm;
1218 struct kioctx **tmp;
1219 int was_dead;
1220
1221
1222 write_lock(&mm->ioctx_list_lock);
1223 was_dead = ioctx->dead;
1224 ioctx->dead = 1;
1225 for (tmp = &mm->ioctx_list; *tmp && *tmp != ioctx;
1226 tmp = &(*tmp)->next)
1227 ;
1228 if (*tmp)
1229 *tmp = ioctx->next;
1230 write_unlock(&mm->ioctx_list_lock);
1231
1232 dprintk("aio_release(%p)\n", ioctx);
1233 if (likely(!was_dead))
1234 put_ioctx(ioctx);
1235
1236 aio_cancel_all(ioctx);
1237 wait_for_all_aios(ioctx);
1238 put_ioctx(ioctx);
1239}
1240
1241
1242
1243
1244
1245
1246
1247
1248
1249
1250
1251
1252
1253
1254asmlinkage long sys_io_setup(unsigned nr_events, aio_context_t __user *ctxp)
1255{
1256 struct kioctx *ioctx = NULL;
1257 unsigned long ctx;
1258 long ret;
1259
1260 ret = get_user(ctx, ctxp);
1261 if (unlikely(ret))
1262 goto out;
1263
1264 ret = -EINVAL;
1265 if (unlikely(ctx || nr_events == 0)) {
1266 pr_debug("EINVAL: io_setup: ctx %lu nr_events %u\n",
1267 ctx, nr_events);
1268 goto out;
1269 }
1270
1271 ioctx = ioctx_alloc(nr_events);
1272 ret = PTR_ERR(ioctx);
1273 if (!IS_ERR(ioctx)) {
1274 ret = put_user(ioctx->user_id, ctxp);
1275 if (!ret)
1276 return 0;
1277
1278 get_ioctx(ioctx);
1279 io_destroy(ioctx);
1280 }
1281
1282out:
1283 return ret;
1284}
1285
1286
1287
1288
1289
1290
1291
1292asmlinkage long sys_io_destroy(aio_context_t ctx)
1293{
1294 struct kioctx *ioctx = lookup_ioctx(ctx);
1295 if (likely(NULL != ioctx)) {
1296 io_destroy(ioctx);
1297 return 0;
1298 }
1299 pr_debug("EINVAL: io_destroy: invalid context id\n");
1300 return -EINVAL;
1301}
1302
1303
1304
1305
1306
1307
1308
1309
1310static ssize_t aio_pread(struct kiocb *iocb)
1311{
1312 struct file *file = iocb->ki_filp;
1313 struct address_space *mapping = file->f_mapping;
1314 struct inode *inode = mapping->host;
1315 ssize_t ret = 0;
1316
1317 do {
1318 ret = file->f_op->aio_read(iocb, iocb->ki_buf,
1319 iocb->ki_left, iocb->ki_pos);
1320
1321
1322
1323
1324 if (ret > 0) {
1325 iocb->ki_buf += ret;
1326 iocb->ki_left -= ret;
1327 }
1328
1329
1330
1331
1332
1333
1334 } while (ret > 0 && iocb->ki_left > 0 &&
1335 !S_ISFIFO(inode->i_mode) && !S_ISSOCK(inode->i_mode));
1336
1337
1338
1339 if ((ret == 0) || (iocb->ki_left == 0))
1340 ret = iocb->ki_nbytes - iocb->ki_left;
1341
1342 return ret;
1343}
1344
1345
1346static ssize_t aio_pwrite(struct kiocb *iocb)
1347{
1348 struct file *file = iocb->ki_filp;
1349 ssize_t ret = 0;
1350
1351 do {
1352 ret = file->f_op->aio_write(iocb, iocb->ki_buf,
1353 iocb->ki_left, iocb->ki_pos);
1354 if (ret > 0) {
1355 iocb->ki_buf += ret;
1356 iocb->ki_left -= ret;
1357 }
1358 } while (ret > 0 && iocb->ki_left > 0);
1359
1360 if ((ret == 0) || (iocb->ki_left == 0))
1361 ret = iocb->ki_nbytes - iocb->ki_left;
1362
1363 return ret;
1364}
1365
1366static ssize_t aio_fdsync(struct kiocb *iocb)
1367{
1368 struct file *file = iocb->ki_filp;
1369 ssize_t ret = -EINVAL;
1370
1371 if (file->f_op->aio_fsync)
1372 ret = file->f_op->aio_fsync(iocb, 1);
1373 return ret;
1374}
1375
1376static ssize_t aio_fsync(struct kiocb *iocb)
1377{
1378 struct file *file = iocb->ki_filp;
1379 ssize_t ret = -EINVAL;
1380
1381 if (file->f_op->aio_fsync)
1382 ret = file->f_op->aio_fsync(iocb, 0);
1383 return ret;
1384}
1385
1386
1387
1388
1389
1390
1391static ssize_t aio_setup_iocb(struct kiocb *kiocb)
1392{
1393 struct file *file = kiocb->ki_filp;
1394 ssize_t ret = 0;
1395
1396 switch (kiocb->ki_opcode) {
1397 case IOCB_CMD_PREAD:
1398 ret = -EBADF;
1399 if (unlikely(!(file->f_mode & FMODE_READ)))
1400 break;
1401 ret = -EFAULT;
1402 if (unlikely(!access_ok(VERIFY_WRITE, kiocb->ki_buf,
1403 kiocb->ki_left)))
1404 break;
1405 ret = security_file_permission(file, MAY_READ);
1406 if (unlikely(ret))
1407 break;
1408 ret = -EINVAL;
1409 if (file->f_op->aio_read)
1410 kiocb->ki_retry = aio_pread;
1411 break;
1412 case IOCB_CMD_PWRITE:
1413 ret = -EBADF;
1414 if (unlikely(!(file->f_mode & FMODE_WRITE)))
1415 break;
1416 ret = -EFAULT;
1417 if (unlikely(!access_ok(VERIFY_READ, kiocb->ki_buf,
1418 kiocb->ki_left)))
1419 break;
1420 ret = security_file_permission(file, MAY_WRITE);
1421 if (unlikely(ret))
1422 break;
1423 ret = -EINVAL;
1424 if (file->f_op->aio_write)
1425 kiocb->ki_retry = aio_pwrite;
1426 break;
1427 case IOCB_CMD_FDSYNC:
1428 ret = -EINVAL;
1429 if (file->f_op->aio_fsync)
1430 kiocb->ki_retry = aio_fdsync;
1431 break;
1432 case IOCB_CMD_FSYNC:
1433 ret = -EINVAL;
1434 if (file->f_op->aio_fsync)
1435 kiocb->ki_retry = aio_fsync;
1436 break;
1437 default:
1438 dprintk("EINVAL: io_submit: no operation provided\n");
1439 ret = -EINVAL;
1440 }
1441
1442 if (!kiocb->ki_retry)
1443 return ret;
1444
1445 return 0;
1446}
1447
1448
1449
1450
1451
1452
1453
1454
1455
1456
1457
1458
1459
1460
1461
1462
1463
1464
1465
1466static int aio_wake_function(wait_queue_t *wait, unsigned mode,
1467 int sync, void *key)
1468{
1469 struct kiocb *iocb = container_of(wait, struct kiocb, ki_wait);
1470
1471 list_del_init(&wait->task_list);
1472 kick_iocb(iocb);
1473 return 1;
1474}
1475
1476int fastcall io_submit_one(struct kioctx *ctx, struct iocb __user *user_iocb,
1477 struct iocb *iocb)
1478{
1479 struct kiocb *req;
1480 struct file *file;
1481 ssize_t ret;
1482
1483
1484 if (unlikely(iocb->aio_reserved1 || iocb->aio_reserved2 ||
1485 iocb->aio_reserved3)) {
1486 pr_debug("EINVAL: io_submit: reserve field set\n");
1487 return -EINVAL;
1488 }
1489
1490
1491 if (unlikely(
1492 (iocb->aio_buf != (unsigned long)iocb->aio_buf) ||
1493 (iocb->aio_nbytes != (size_t)iocb->aio_nbytes) ||
1494 ((ssize_t)iocb->aio_nbytes < 0)
1495 )) {
1496 pr_debug("EINVAL: io_submit: overflow check\n");
1497 return -EINVAL;
1498 }
1499
1500 file = fget(iocb->aio_fildes);
1501 if (unlikely(!file))
1502 return -EBADF;
1503
1504 req = aio_get_req(ctx);
1505 if (unlikely(!req)) {
1506 fput(file);
1507 return -EAGAIN;
1508 }
1509
1510 req->ki_filp = file;
1511 ret = put_user(req->ki_key, &user_iocb->aio_key);
1512 if (unlikely(ret)) {
1513 dprintk("EFAULT: aio_key\n");
1514 goto out_put_req;
1515 }
1516
1517 req->ki_obj.user = user_iocb;
1518 req->ki_user_data = iocb->aio_data;
1519 req->ki_pos = iocb->aio_offset;
1520
1521 req->ki_buf = (char __user *)(unsigned long)iocb->aio_buf;
1522 req->ki_left = req->ki_nbytes = iocb->aio_nbytes;
1523 req->ki_opcode = iocb->aio_lio_opcode;
1524 init_waitqueue_func_entry(&req->ki_wait, aio_wake_function);
1525 INIT_LIST_HEAD(&req->ki_wait.task_list);
1526 req->ki_retried = 0;
1527
1528 ret = aio_setup_iocb(req);
1529
1530 if (ret)
1531 goto out_put_req;
1532
1533 spin_lock_irq(&ctx->ctx_lock);
1534 aio_run_iocb(req);
1535 if (!list_empty(&ctx->run_list)) {
1536
1537 while (__aio_run_iocbs(ctx))
1538 ;
1539 }
1540 spin_unlock_irq(&ctx->ctx_lock);
1541 aio_put_req(req);
1542 return 0;
1543
1544out_put_req:
1545 aio_put_req(req);
1546 aio_put_req(req);
1547 return ret;
1548}
1549
1550
1551
1552
1553
1554
1555
1556
1557
1558
1559
1560
1561
1562asmlinkage long sys_io_submit(aio_context_t ctx_id, long nr,
1563 struct iocb __user * __user *iocbpp)
1564{
1565 struct kioctx *ctx;
1566 long ret = 0;
1567 int i;
1568
1569 if (unlikely(nr < 0))
1570 return -EINVAL;
1571
1572 if (unlikely(!access_ok(VERIFY_READ, iocbpp, (nr*sizeof(*iocbpp)))))
1573 return -EFAULT;
1574
1575 ctx = lookup_ioctx(ctx_id);
1576 if (unlikely(!ctx)) {
1577 pr_debug("EINVAL: io_submit: invalid context id\n");
1578 return -EINVAL;
1579 }
1580
1581
1582
1583
1584
1585 for (i=0; i<nr; i++) {
1586 struct iocb __user *user_iocb;
1587 struct iocb tmp;
1588
1589 if (unlikely(__get_user(user_iocb, iocbpp + i))) {
1590 ret = -EFAULT;
1591 break;
1592 }
1593
1594 if (unlikely(copy_from_user(&tmp, user_iocb, sizeof(tmp)))) {
1595 ret = -EFAULT;
1596 break;
1597 }
1598
1599 ret = io_submit_one(ctx, user_iocb, &tmp);
1600 if (ret)
1601 break;
1602 }
1603
1604 put_ioctx(ctx);
1605 return i ? i : ret;
1606}
1607
1608
1609
1610
1611static struct kiocb *lookup_kiocb(struct kioctx *ctx, struct iocb __user *iocb,
1612 u32 key)
1613{
1614 struct list_head *pos;
1615
1616 assert_spin_locked(&ctx->ctx_lock);
1617
1618
1619 list_for_each(pos, &ctx->active_reqs) {
1620 struct kiocb *kiocb = list_kiocb(pos);
1621 if (kiocb->ki_obj.user == iocb && kiocb->ki_key == key)
1622 return kiocb;
1623 }
1624 return NULL;
1625}
1626
1627
1628
1629
1630
1631
1632
1633
1634
1635
1636
1637asmlinkage long sys_io_cancel(aio_context_t ctx_id, struct iocb __user *iocb,
1638 struct io_event __user *result)
1639{
1640 int (*cancel)(struct kiocb *iocb, struct io_event *res);
1641 struct kioctx *ctx;
1642 struct kiocb *kiocb;
1643 u32 key;
1644 int ret;
1645
1646 ret = get_user(key, &iocb->aio_key);
1647 if (unlikely(ret))
1648 return -EFAULT;
1649
1650 ctx = lookup_ioctx(ctx_id);
1651 if (unlikely(!ctx))
1652 return -EINVAL;
1653
1654 spin_lock_irq(&ctx->ctx_lock);
1655 ret = -EAGAIN;
1656 kiocb = lookup_kiocb(ctx, iocb, key);
1657 if (kiocb && kiocb->ki_cancel) {
1658 cancel = kiocb->ki_cancel;
1659 kiocb->ki_users ++;
1660 kiocbSetCancelled(kiocb);
1661 } else
1662 cancel = NULL;
1663 spin_unlock_irq(&ctx->ctx_lock);
1664
1665 if (NULL != cancel) {
1666 struct io_event tmp;
1667 pr_debug("calling cancel\n");
1668 memset(&tmp, 0, sizeof(tmp));
1669 tmp.obj = (u64)(unsigned long)kiocb->ki_obj.user;
1670 tmp.data = kiocb->ki_user_data;
1671 ret = cancel(kiocb, &tmp);
1672 if (!ret) {
1673
1674
1675
1676 if (copy_to_user(result, &tmp, sizeof(tmp)))
1677 ret = -EFAULT;
1678 }
1679 } else
1680 ret = -EINVAL;
1681
1682 put_ioctx(ctx);
1683
1684 return ret;
1685}
1686
1687
1688
1689
1690
1691
1692
1693
1694
1695
1696
1697
1698
1699asmlinkage long sys_io_getevents(aio_context_t ctx_id,
1700 long min_nr,
1701 long nr,
1702 struct io_event __user *events,
1703 struct timespec __user *timeout)
1704{
1705 struct kioctx *ioctx = lookup_ioctx(ctx_id);
1706 long ret = -EINVAL;
1707
1708 if (likely(ioctx)) {
1709 if (likely(min_nr <= nr && min_nr >= 0 && nr >= 0))
1710 ret = read_events(ioctx, min_nr, nr, events, timeout);
1711 put_ioctx(ioctx);
1712 }
1713
1714 return ret;
1715}
1716
1717__initcall(aio_setup);
1718
1719EXPORT_SYMBOL(aio_complete);
1720EXPORT_SYMBOL(aio_put_req);
1721EXPORT_SYMBOL(wait_on_sync_kiocb);
1722