2 * Linux native AIO support.
4 * Copyright (C) 2009 IBM, Corp.
5 * Copyright (C) 2009 Red Hat, Inc.
7 * This work is licensed under the terms of the GNU GPL, version 2 or later.
8 * See the COPYING file in the top-level directory.
10 #include "qemu-common.h"
11 #include "block/aio.h"
12 #include "qemu/queue.h"
13 #include "block/raw-aio.h"
14 #include "qemu/event_notifier.h"
19 * Queue size (per-device).
21 * XXX: eventually we need to communicate this to the guest and/or make it
22 * tunable by the guest. If we get more outstanding requests at a time
23 * than this we will get EAGAIN from io_submit which is communicated to
24 * the guest as an I/O error.
26 #define MAX_EVENTS 128
28 #define MAX_QUEUED_IO 128
31 BlockDriverAIOCB common
;
32 struct qemu_laio_state
*ctx
;
38 QLIST_ENTRY(qemu_laiocb
) node
;
42 struct iocb
*iocbs
[MAX_QUEUED_IO
];
48 struct qemu_laio_state
{
52 /* io queue for submit at batch */
55 /* I/O completion processing */
56 QEMUBH
*completion_bh
;
57 struct io_event events
[MAX_EVENTS
];
62 static inline ssize_t
io_event_ret(struct io_event
*ev
)
64 return (ssize_t
)(((uint64_t)ev
->res2
<< 32) | ev
->res
);
68 * Completes an AIO request (calls the callback and frees the ACB).
70 static void qemu_laio_process_completion(struct qemu_laio_state
*s
,
71 struct qemu_laiocb
*laiocb
)
76 if (ret
!= -ECANCELED
) {
77 if (ret
== laiocb
->nbytes
) {
79 } else if (ret
>= 0) {
80 /* Short reads mean EOF, pad with zeros. */
81 if (laiocb
->is_read
) {
82 qemu_iovec_memset(laiocb
->qiov
, ret
, 0,
83 laiocb
->qiov
->size
- ret
);
89 laiocb
->common
.cb(laiocb
->common
.opaque
, ret
);
91 qemu_aio_unref(laiocb
);
94 /* The completion BH fetches completed I/O requests and invokes their
97 * The function is somewhat tricky because it supports nested event loops, for
98 * example when a request callback invokes aio_poll(). In order to do this,
99 * the completion events array and index are kept in qemu_laio_state. The BH
100 * reschedules itself as long as there are completions pending so it will
101 * either be called again in a nested event loop or will be called after all
102 * events have been completed. When there are no events left to complete, the
103 * BH returns without rescheduling.
105 static void qemu_laio_completion_bh(void *opaque
)
107 struct qemu_laio_state
*s
= opaque
;
109 /* Fetch more completion events when empty */
110 if (s
->event_idx
== s
->event_max
) {
112 struct timespec ts
= { 0 };
113 s
->event_max
= io_getevents(s
->ctx
, MAX_EVENTS
, MAX_EVENTS
,
115 } while (s
->event_max
== -EINTR
);
118 if (s
->event_max
<= 0) {
120 return; /* no more events */
124 /* Reschedule so nested event loops see currently pending completions */
125 qemu_bh_schedule(s
->completion_bh
);
127 /* Process completion events */
128 while (s
->event_idx
< s
->event_max
) {
129 struct iocb
*iocb
= s
->events
[s
->event_idx
].obj
;
130 struct qemu_laiocb
*laiocb
=
131 container_of(iocb
, struct qemu_laiocb
, iocb
);
133 laiocb
->ret
= io_event_ret(&s
->events
[s
->event_idx
]);
136 qemu_laio_process_completion(s
, laiocb
);
140 static void qemu_laio_completion_cb(EventNotifier
*e
)
142 struct qemu_laio_state
*s
= container_of(e
, struct qemu_laio_state
, e
);
144 if (event_notifier_test_and_clear(&s
->e
)) {
145 qemu_bh_schedule(s
->completion_bh
);
149 static void laio_cancel(BlockDriverAIOCB
*blockacb
)
151 struct qemu_laiocb
*laiocb
= (struct qemu_laiocb
*)blockacb
;
152 struct io_event event
;
155 if (laiocb
->ret
!= -EINPROGRESS
) {
158 ret
= io_cancel(laiocb
->ctx
->ctx
, &laiocb
->iocb
, &event
);
159 laiocb
->ret
= -ECANCELED
;
161 /* iocb is not cancelled, cb will be called by the event loop later */
165 laiocb
->common
.cb(laiocb
->common
.opaque
, laiocb
->ret
);
168 static const AIOCBInfo laio_aiocb_info
= {
169 .aiocb_size
= sizeof(struct qemu_laiocb
),
170 .cancel_async
= laio_cancel
,
173 static void ioq_init(LaioQueue
*io_q
)
175 io_q
->size
= MAX_QUEUED_IO
;
180 static int ioq_submit(struct qemu_laio_state
*s
)
183 int len
= s
->io_q
.idx
;
186 ret
= io_submit(s
->ctx
, len
, s
->io_q
.iocbs
);
187 } while (i
++ < 3 && ret
== -EAGAIN
);
198 for (; i
< len
; i
++) {
199 struct qemu_laiocb
*laiocb
=
200 container_of(s
->io_q
.iocbs
[i
], struct qemu_laiocb
, iocb
);
202 laiocb
->ret
= (ret
< 0) ? ret
: -EIO
;
203 qemu_laio_process_completion(s
, laiocb
);
208 static void ioq_enqueue(struct qemu_laio_state
*s
, struct iocb
*iocb
)
210 unsigned int idx
= s
->io_q
.idx
;
212 s
->io_q
.iocbs
[idx
++] = iocb
;
215 /* submit immediately if queue is full */
216 if (idx
== s
->io_q
.size
) {
221 void laio_io_plug(BlockDriverState
*bs
, void *aio_ctx
)
223 struct qemu_laio_state
*s
= aio_ctx
;
228 int laio_io_unplug(BlockDriverState
*bs
, void *aio_ctx
, bool unplug
)
230 struct qemu_laio_state
*s
= aio_ctx
;
233 assert(s
->io_q
.plugged
> 0 || !unplug
);
235 if (unplug
&& --s
->io_q
.plugged
> 0) {
239 if (s
->io_q
.idx
> 0) {
246 BlockDriverAIOCB
*laio_submit(BlockDriverState
*bs
, void *aio_ctx
, int fd
,
247 int64_t sector_num
, QEMUIOVector
*qiov
, int nb_sectors
,
248 BlockDriverCompletionFunc
*cb
, void *opaque
, int type
)
250 struct qemu_laio_state
*s
= aio_ctx
;
251 struct qemu_laiocb
*laiocb
;
253 off_t offset
= sector_num
* 512;
255 laiocb
= qemu_aio_get(&laio_aiocb_info
, bs
, cb
, opaque
);
256 laiocb
->nbytes
= nb_sectors
* 512;
258 laiocb
->ret
= -EINPROGRESS
;
259 laiocb
->is_read
= (type
== QEMU_AIO_READ
);
262 iocbs
= &laiocb
->iocb
;
266 io_prep_pwritev(iocbs
, fd
, qiov
->iov
, qiov
->niov
, offset
);
269 io_prep_preadv(iocbs
, fd
, qiov
->iov
, qiov
->niov
, offset
);
271 /* Currently Linux kernel does not support other operations */
273 fprintf(stderr
, "%s: invalid AIO request type 0x%x.\n",
277 io_set_eventfd(&laiocb
->iocb
, event_notifier_get_fd(&s
->e
));
279 if (!s
->io_q
.plugged
) {
280 if (io_submit(s
->ctx
, 1, &iocbs
) < 0) {
284 ioq_enqueue(s
, iocbs
);
286 return &laiocb
->common
;
289 qemu_aio_unref(laiocb
);
293 void laio_detach_aio_context(void *s_
, AioContext
*old_context
)
295 struct qemu_laio_state
*s
= s_
;
297 aio_set_event_notifier(old_context
, &s
->e
, NULL
);
298 qemu_bh_delete(s
->completion_bh
);
301 void laio_attach_aio_context(void *s_
, AioContext
*new_context
)
303 struct qemu_laio_state
*s
= s_
;
305 s
->completion_bh
= aio_bh_new(new_context
, qemu_laio_completion_bh
, s
);
306 aio_set_event_notifier(new_context
, &s
->e
, qemu_laio_completion_cb
);
309 void *laio_init(void)
311 struct qemu_laio_state
*s
;
313 s
= g_malloc0(sizeof(*s
));
314 if (event_notifier_init(&s
->e
, false) < 0) {
318 if (io_setup(MAX_EVENTS
, &s
->ctx
) != 0) {
327 event_notifier_cleanup(&s
->e
);
333 void laio_cleanup(void *s_
)
335 struct qemu_laio_state
*s
= s_
;
337 event_notifier_cleanup(&s
->e
);
339 if (io_destroy(s
->ctx
) != 0) {
340 fprintf(stderr
, "%s: destroy AIO context %p failed\n",