2 * Block driver for RAW files (posix)
4 * Copyright (c) 2006 Fabrice Bellard
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to deal
8 * in the Software without restriction, including without limitation the rights
9 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10 * copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
24 #include "qemu/osdep.h"
25 #include "qapi/error.h"
26 #include "qemu/cutils.h"
27 #include "qemu/error-report.h"
28 #include "qemu/timer.h"
30 #include "block/block_int.h"
31 #include "qemu/module.h"
33 #include "block/thread-pool.h"
36 #include "qapi/util.h"
37 #include "qapi/qmp/qstring.h"
39 #if defined(__APPLE__) && (__MACH__)
41 #include <sys/param.h>
42 #include <IOKit/IOKitLib.h>
43 #include <IOKit/IOBSD.h>
44 #include <IOKit/storage/IOMediaBSDClient.h>
45 #include <IOKit/storage/IOMedia.h>
46 #include <IOKit/storage/IOCDMedia.h>
47 //#include <IOKit/storage/IOCDTypes.h>
48 #include <IOKit/storage/IODVDMedia.h>
49 #include <CoreFoundation/CoreFoundation.h>
53 #define _POSIX_PTHREAD_SEMANTICS 1
57 #include <sys/ioctl.h>
58 #include <sys/param.h>
59 #include <linux/cdrom.h>
62 #include <linux/hdreg.h>
68 #define FS_NOCOW_FL 0x00800000 /* Do not cow file */
71 #if defined(CONFIG_FALLOCATE_PUNCH_HOLE) || defined(CONFIG_FALLOCATE_ZERO_RANGE)
72 #include <linux/falloc.h>
74 #if defined (__FreeBSD__) || defined(__FreeBSD_kernel__)
80 #include <sys/ioctl.h>
81 #include <sys/disklabel.h>
86 #include <sys/ioctl.h>
87 #include <sys/disklabel.h>
93 #include <sys/ioctl.h>
94 #include <sys/diskslice.h>
101 //#define DEBUG_BLOCK
104 # define DEBUG_BLOCK_PRINT 1
106 # define DEBUG_BLOCK_PRINT 0
108 #define DPRINTF(fmt, ...) \
110 if (DEBUG_BLOCK_PRINT) { \
111 printf(fmt, ## __VA_ARGS__); \
115 /* OS X does not have O_DSYNC */
118 #define O_DSYNC O_SYNC
119 #elif defined(O_FSYNC)
120 #define O_DSYNC O_FSYNC
124 /* Approximate O_DIRECT with O_DSYNC if O_DIRECT isn't available */
126 #define O_DIRECT O_DSYNC
132 #define MAX_BLOCKSIZE 4096
134 typedef struct BDRVRawState
{
140 #ifdef CONFIG_LINUX_AIO
142 LinuxAioState
*aio_ctx
;
148 bool has_write_zeroes
:1;
149 bool discard_zeroes
:1;
151 bool needs_alignment
;
154 typedef struct BDRVRawReopenState
{
157 #ifdef CONFIG_LINUX_AIO
160 } BDRVRawReopenState
;
162 static int fd_open(BlockDriverState
*bs
);
163 static int64_t raw_getlength(BlockDriverState
*bs
);
165 typedef struct RawPosixAIOData
{
166 BlockDriverState
*bs
;
169 struct iovec
*aio_iov
;
174 #define aio_ioctl_cmd aio_nbytes /* for QEMU_AIO_IOCTL */
179 #if defined(__FreeBSD__) || defined(__FreeBSD_kernel__)
180 static int cdrom_reopen(BlockDriverState
*bs
);
183 #if defined(__NetBSD__)
184 static int raw_normalize_devicepath(const char **filename
)
186 static char namebuf
[PATH_MAX
];
187 const char *dp
, *fname
;
191 dp
= strrchr(fname
, '/');
192 if (lstat(fname
, &sb
) < 0) {
193 fprintf(stderr
, "%s: stat failed: %s\n",
194 fname
, strerror(errno
));
198 if (!S_ISBLK(sb
.st_mode
)) {
203 snprintf(namebuf
, PATH_MAX
, "r%s", fname
);
205 snprintf(namebuf
, PATH_MAX
, "%.*s/r%s",
206 (int)(dp
- fname
), fname
, dp
+ 1);
208 fprintf(stderr
, "%s is a block device", fname
);
210 fprintf(stderr
, ", using %s\n", *filename
);
215 static int raw_normalize_devicepath(const char **filename
)
222 * Get logical block size via ioctl. On success store it in @sector_size_p.
224 static int probe_logical_blocksize(int fd
, unsigned int *sector_size_p
)
226 unsigned int sector_size
;
227 bool success
= false;
231 /* Try a few ioctls to get the right size */
233 if (ioctl(fd
, BLKSSZGET
, §or_size
) >= 0) {
234 *sector_size_p
= sector_size
;
238 #ifdef DKIOCGETBLOCKSIZE
239 if (ioctl(fd
, DKIOCGETBLOCKSIZE
, §or_size
) >= 0) {
240 *sector_size_p
= sector_size
;
244 #ifdef DIOCGSECTORSIZE
245 if (ioctl(fd
, DIOCGSECTORSIZE
, §or_size
) >= 0) {
246 *sector_size_p
= sector_size
;
251 return success
? 0 : -errno
;
255 * Get physical block size of @fd.
256 * On success, store it in @blk_size and return 0.
257 * On failure, return -errno.
259 static int probe_physical_blocksize(int fd
, unsigned int *blk_size
)
262 if (ioctl(fd
, BLKPBSZGET
, blk_size
) < 0) {
271 /* Check if read is allowed with given memory buffer and length.
273 * This function is used to check O_DIRECT memory buffer and request alignment.
275 static bool raw_is_io_aligned(int fd
, void *buf
, size_t len
)
277 ssize_t ret
= pread(fd
, buf
, len
, 0);
284 /* The Linux kernel returns EINVAL for misaligned O_DIRECT reads. Ignore
285 * other errors (e.g. real I/O error), which could happen on a failed
286 * drive, since we only care about probing alignment.
288 if (errno
!= EINVAL
) {
296 static void raw_probe_alignment(BlockDriverState
*bs
, int fd
, Error
**errp
)
298 BDRVRawState
*s
= bs
->opaque
;
300 size_t max_align
= MAX(MAX_BLOCKSIZE
, getpagesize());
302 /* For SCSI generic devices the alignment is not really used.
303 With buffered I/O, we don't have any restrictions. */
304 if (bdrv_is_sg(bs
) || !s
->needs_alignment
) {
305 bs
->request_alignment
= 1;
310 bs
->request_alignment
= 0;
312 /* Let's try to use the logical blocksize for the alignment. */
313 if (probe_logical_blocksize(fd
, &bs
->request_alignment
) < 0) {
314 bs
->request_alignment
= 0;
319 if (xfsctl(NULL
, fd
, XFS_IOC_DIOINFO
, &da
) >= 0) {
320 bs
->request_alignment
= da
.d_miniosz
;
321 /* The kernel returns wrong information for d_mem */
322 /* s->buf_align = da.d_mem; */
327 /* If we could not get the sizes so far, we can only guess them */
330 buf
= qemu_memalign(max_align
, 2 * max_align
);
331 for (align
= 512; align
<= max_align
; align
<<= 1) {
332 if (raw_is_io_aligned(fd
, buf
+ align
, max_align
)) {
333 s
->buf_align
= align
;
340 if (!bs
->request_alignment
) {
342 buf
= qemu_memalign(s
->buf_align
, max_align
);
343 for (align
= 512; align
<= max_align
; align
<<= 1) {
344 if (raw_is_io_aligned(fd
, buf
, align
)) {
345 bs
->request_alignment
= align
;
352 if (!s
->buf_align
|| !bs
->request_alignment
) {
353 error_setg(errp
, "Could not find working O_DIRECT alignment. "
354 "Try cache.direct=off.");
358 static void raw_parse_flags(int bdrv_flags
, int *open_flags
)
360 assert(open_flags
!= NULL
);
362 *open_flags
|= O_BINARY
;
363 *open_flags
&= ~O_ACCMODE
;
364 if (bdrv_flags
& BDRV_O_RDWR
) {
365 *open_flags
|= O_RDWR
;
367 *open_flags
|= O_RDONLY
;
370 /* Use O_DSYNC for write-through caching, no flags for write-back caching,
371 * and O_DIRECT for no caching. */
372 if ((bdrv_flags
& BDRV_O_NOCACHE
)) {
373 *open_flags
|= O_DIRECT
;
377 static void raw_detach_aio_context(BlockDriverState
*bs
)
379 #ifdef CONFIG_LINUX_AIO
380 BDRVRawState
*s
= bs
->opaque
;
383 laio_detach_aio_context(s
->aio_ctx
, bdrv_get_aio_context(bs
));
388 static void raw_attach_aio_context(BlockDriverState
*bs
,
389 AioContext
*new_context
)
391 #ifdef CONFIG_LINUX_AIO
392 BDRVRawState
*s
= bs
->opaque
;
395 laio_attach_aio_context(s
->aio_ctx
, new_context
);
400 #ifdef CONFIG_LINUX_AIO
401 static int raw_set_aio(LinuxAioState
**aio_ctx
, int *use_aio
, int bdrv_flags
)
404 assert(aio_ctx
!= NULL
);
405 assert(use_aio
!= NULL
);
407 * Currently Linux do AIO only for files opened with O_DIRECT
408 * specified so check NOCACHE flag too
410 if ((bdrv_flags
& (BDRV_O_NOCACHE
|BDRV_O_NATIVE_AIO
)) ==
411 (BDRV_O_NOCACHE
|BDRV_O_NATIVE_AIO
)) {
413 /* if non-NULL, laio_init() has already been run */
414 if (*aio_ctx
== NULL
) {
415 *aio_ctx
= laio_init();
432 static void raw_parse_filename(const char *filename
, QDict
*options
,
435 /* The filename does not have to be prefixed by the protocol name, since
436 * "file" is the default protocol; therefore, the return value of this
437 * function call can be ignored. */
438 strstart(filename
, "file:", &filename
);
440 qdict_put_obj(options
, "filename", QOBJECT(qstring_from_str(filename
)));
443 static QemuOptsList raw_runtime_opts
= {
445 .head
= QTAILQ_HEAD_INITIALIZER(raw_runtime_opts
.head
),
449 .type
= QEMU_OPT_STRING
,
450 .help
= "File name of the image",
452 { /* end of list */ }
456 static int raw_open_common(BlockDriverState
*bs
, QDict
*options
,
457 int bdrv_flags
, int open_flags
, Error
**errp
)
459 BDRVRawState
*s
= bs
->opaque
;
461 Error
*local_err
= NULL
;
462 const char *filename
= NULL
;
466 opts
= qemu_opts_create(&raw_runtime_opts
, NULL
, 0, &error_abort
);
467 qemu_opts_absorb_qdict(opts
, options
, &local_err
);
469 error_propagate(errp
, local_err
);
474 filename
= qemu_opt_get(opts
, "filename");
476 ret
= raw_normalize_devicepath(&filename
);
478 error_setg_errno(errp
, -ret
, "Could not normalize device path");
482 s
->open_flags
= open_flags
;
483 raw_parse_flags(bdrv_flags
, &s
->open_flags
);
486 fd
= qemu_open(filename
, s
->open_flags
, 0644);
496 #ifdef CONFIG_LINUX_AIO
497 if (raw_set_aio(&s
->aio_ctx
, &s
->use_aio
, bdrv_flags
)) {
500 error_setg_errno(errp
, -ret
, "Could not set AIO state");
503 if (!s
->use_aio
&& (bdrv_flags
& BDRV_O_NATIVE_AIO
)) {
504 error_setg(errp
, "aio=native was specified, but it requires "
505 "cache.direct=on, which was not specified.");
510 if (bdrv_flags
& BDRV_O_NATIVE_AIO
) {
511 error_setg(errp
, "aio=native was specified, but is not supported "
516 #endif /* !defined(CONFIG_LINUX_AIO) */
518 s
->has_discard
= true;
519 s
->has_write_zeroes
= true;
520 bs
->supported_zero_flags
= BDRV_REQ_MAY_UNMAP
;
521 if ((bs
->open_flags
& BDRV_O_NOCACHE
) != 0) {
522 s
->needs_alignment
= true;
525 if (fstat(s
->fd
, &st
) < 0) {
527 error_setg_errno(errp
, errno
, "Could not stat file");
530 if (S_ISREG(st
.st_mode
)) {
531 s
->discard_zeroes
= true;
532 s
->has_fallocate
= true;
534 if (S_ISBLK(st
.st_mode
)) {
535 #ifdef BLKDISCARDZEROES
537 if (ioctl(s
->fd
, BLKDISCARDZEROES
, &arg
) == 0 && arg
) {
538 s
->discard_zeroes
= true;
542 /* On Linux 3.10, BLKDISCARD leaves stale data in the page cache. Do
543 * not rely on the contents of discarded blocks unless using O_DIRECT.
544 * Same for BLKZEROOUT.
546 if (!(bs
->open_flags
& BDRV_O_NOCACHE
)) {
547 s
->discard_zeroes
= false;
548 s
->has_write_zeroes
= false;
553 if (S_ISCHR(st
.st_mode
)) {
555 * The file is a char device (disk), which on FreeBSD isn't behind
556 * a pager, so force all requests to be aligned. This is needed
557 * so QEMU makes sure all IO operations on the device are aligned
558 * to sector size, or else FreeBSD will reject them with EINVAL.
560 s
->needs_alignment
= true;
565 if (platform_test_xfs_fd(s
->fd
)) {
570 raw_attach_aio_context(bs
, bdrv_get_aio_context(bs
));
574 if (filename
&& (bdrv_flags
& BDRV_O_TEMPORARY
)) {
581 static int raw_open(BlockDriverState
*bs
, QDict
*options
, int flags
,
584 BDRVRawState
*s
= bs
->opaque
;
585 Error
*local_err
= NULL
;
588 s
->type
= FTYPE_FILE
;
589 ret
= raw_open_common(bs
, options
, flags
, 0, &local_err
);
591 error_propagate(errp
, local_err
);
596 static int raw_reopen_prepare(BDRVReopenState
*state
,
597 BlockReopenQueue
*queue
, Error
**errp
)
600 BDRVRawReopenState
*raw_s
;
602 Error
*local_err
= NULL
;
604 assert(state
!= NULL
);
605 assert(state
->bs
!= NULL
);
607 s
= state
->bs
->opaque
;
609 state
->opaque
= g_new0(BDRVRawReopenState
, 1);
610 raw_s
= state
->opaque
;
612 #ifdef CONFIG_LINUX_AIO
613 raw_s
->use_aio
= s
->use_aio
;
615 /* we can use s->aio_ctx instead of a copy, because the use_aio flag is
616 * valid in the 'false' condition even if aio_ctx is set, and raw_set_aio()
617 * won't override aio_ctx if aio_ctx is non-NULL */
618 if (raw_set_aio(&s
->aio_ctx
, &raw_s
->use_aio
, state
->flags
)) {
619 error_setg(errp
, "Could not set AIO state");
624 if (s
->type
== FTYPE_CD
) {
625 raw_s
->open_flags
|= O_NONBLOCK
;
628 raw_parse_flags(state
->flags
, &raw_s
->open_flags
);
632 int fcntl_flags
= O_APPEND
| O_NONBLOCK
;
634 fcntl_flags
|= O_NOATIME
;
638 /* Not all operating systems have O_ASYNC, and those that don't
639 * will not let us track the state into raw_s->open_flags (typically
640 * you achieve the same effect with an ioctl, for example I_SETSIG
641 * on Solaris). But we do not use O_ASYNC, so that's fine.
643 assert((s
->open_flags
& O_ASYNC
) == 0);
646 if ((raw_s
->open_flags
& ~fcntl_flags
) == (s
->open_flags
& ~fcntl_flags
)) {
647 /* dup the original fd */
648 /* TODO: use qemu fcntl wrapper */
649 #ifdef F_DUPFD_CLOEXEC
650 raw_s
->fd
= fcntl(s
->fd
, F_DUPFD_CLOEXEC
, 0);
652 raw_s
->fd
= dup(s
->fd
);
653 if (raw_s
->fd
!= -1) {
654 qemu_set_cloexec(raw_s
->fd
);
657 if (raw_s
->fd
>= 0) {
658 ret
= fcntl_setfl(raw_s
->fd
, raw_s
->open_flags
);
660 qemu_close(raw_s
->fd
);
666 /* If we cannot use fcntl, or fcntl failed, fall back to qemu_open() */
667 if (raw_s
->fd
== -1) {
668 const char *normalized_filename
= state
->bs
->filename
;
669 ret
= raw_normalize_devicepath(&normalized_filename
);
671 error_setg_errno(errp
, -ret
, "Could not normalize device path");
673 assert(!(raw_s
->open_flags
& O_CREAT
));
674 raw_s
->fd
= qemu_open(normalized_filename
, raw_s
->open_flags
);
675 if (raw_s
->fd
== -1) {
676 error_setg_errno(errp
, errno
, "Could not reopen file");
682 /* Fail already reopen_prepare() if we can't get a working O_DIRECT
683 * alignment with the new fd. */
684 if (raw_s
->fd
!= -1) {
685 raw_probe_alignment(state
->bs
, raw_s
->fd
, &local_err
);
687 qemu_close(raw_s
->fd
);
689 error_propagate(errp
, local_err
);
697 static void raw_reopen_commit(BDRVReopenState
*state
)
699 BDRVRawReopenState
*raw_s
= state
->opaque
;
700 BDRVRawState
*s
= state
->bs
->opaque
;
702 s
->open_flags
= raw_s
->open_flags
;
706 #ifdef CONFIG_LINUX_AIO
707 s
->use_aio
= raw_s
->use_aio
;
710 g_free(state
->opaque
);
711 state
->opaque
= NULL
;
715 static void raw_reopen_abort(BDRVReopenState
*state
)
717 BDRVRawReopenState
*raw_s
= state
->opaque
;
719 /* nothing to do if NULL, we didn't get far enough */
724 if (raw_s
->fd
>= 0) {
725 qemu_close(raw_s
->fd
);
728 g_free(state
->opaque
);
729 state
->opaque
= NULL
;
732 static void raw_refresh_limits(BlockDriverState
*bs
, Error
**errp
)
734 BDRVRawState
*s
= bs
->opaque
;
736 raw_probe_alignment(bs
, s
->fd
, errp
);
737 bs
->bl
.min_mem_alignment
= s
->buf_align
;
738 bs
->bl
.opt_mem_alignment
= MAX(s
->buf_align
, getpagesize());
741 static int check_for_dasd(int fd
)
744 struct dasd_information2_t info
= {0};
746 return ioctl(fd
, BIODASDINFO2
, &info
);
753 * Try to get @bs's logical and physical block size.
754 * On success, store them in @bsz and return zero.
755 * On failure, return negative errno.
757 static int hdev_probe_blocksizes(BlockDriverState
*bs
, BlockSizes
*bsz
)
759 BDRVRawState
*s
= bs
->opaque
;
762 /* If DASD, get blocksizes */
763 if (check_for_dasd(s
->fd
) < 0) {
766 ret
= probe_logical_blocksize(s
->fd
, &bsz
->log
);
770 return probe_physical_blocksize(s
->fd
, &bsz
->phys
);
774 * Try to get @bs's geometry: cyls, heads, sectors.
775 * On success, store them in @geo and return 0.
776 * On failure return -errno.
777 * (Allows block driver to assign default geometry values that guest sees)
780 static int hdev_probe_geometry(BlockDriverState
*bs
, HDGeometry
*geo
)
782 BDRVRawState
*s
= bs
->opaque
;
783 struct hd_geometry ioctl_geo
= {0};
785 /* If DASD, get its geometry */
786 if (check_for_dasd(s
->fd
) < 0) {
789 if (ioctl(s
->fd
, HDIO_GETGEO
, &ioctl_geo
) < 0) {
792 /* HDIO_GETGEO may return success even though geo contains zeros
793 (e.g. certain multipath setups) */
794 if (!ioctl_geo
.heads
|| !ioctl_geo
.sectors
|| !ioctl_geo
.cylinders
) {
797 /* Do not return a geometry for partition */
798 if (ioctl_geo
.start
!= 0) {
801 geo
->heads
= ioctl_geo
.heads
;
802 geo
->sectors
= ioctl_geo
.sectors
;
803 geo
->cylinders
= ioctl_geo
.cylinders
;
807 #else /* __linux__ */
808 static int hdev_probe_geometry(BlockDriverState
*bs
, HDGeometry
*geo
)
814 static ssize_t
handle_aiocb_ioctl(RawPosixAIOData
*aiocb
)
818 ret
= ioctl(aiocb
->aio_fildes
, aiocb
->aio_ioctl_cmd
, aiocb
->aio_ioctl_buf
);
826 static ssize_t
handle_aiocb_flush(RawPosixAIOData
*aiocb
)
830 ret
= qemu_fdatasync(aiocb
->aio_fildes
);
839 static bool preadv_present
= true;
842 qemu_preadv(int fd
, const struct iovec
*iov
, int nr_iov
, off_t offset
)
844 return preadv(fd
, iov
, nr_iov
, offset
);
848 qemu_pwritev(int fd
, const struct iovec
*iov
, int nr_iov
, off_t offset
)
850 return pwritev(fd
, iov
, nr_iov
, offset
);
855 static bool preadv_present
= false;
858 qemu_preadv(int fd
, const struct iovec
*iov
, int nr_iov
, off_t offset
)
864 qemu_pwritev(int fd
, const struct iovec
*iov
, int nr_iov
, off_t offset
)
871 static ssize_t
handle_aiocb_rw_vector(RawPosixAIOData
*aiocb
)
876 if (aiocb
->aio_type
& QEMU_AIO_WRITE
)
877 len
= qemu_pwritev(aiocb
->aio_fildes
,
882 len
= qemu_preadv(aiocb
->aio_fildes
,
886 } while (len
== -1 && errno
== EINTR
);
895 * Read/writes the data to/from a given linear buffer.
897 * Returns the number of bytes handles or -errno in case of an error. Short
898 * reads are only returned if the end of the file is reached.
900 static ssize_t
handle_aiocb_rw_linear(RawPosixAIOData
*aiocb
, char *buf
)
905 while (offset
< aiocb
->aio_nbytes
) {
906 if (aiocb
->aio_type
& QEMU_AIO_WRITE
) {
907 len
= pwrite(aiocb
->aio_fildes
,
908 (const char *)buf
+ offset
,
909 aiocb
->aio_nbytes
- offset
,
910 aiocb
->aio_offset
+ offset
);
912 len
= pread(aiocb
->aio_fildes
,
914 aiocb
->aio_nbytes
- offset
,
915 aiocb
->aio_offset
+ offset
);
917 if (len
== -1 && errno
== EINTR
) {
919 } else if (len
== -1 && errno
== EINVAL
&&
920 (aiocb
->bs
->open_flags
& BDRV_O_NOCACHE
) &&
921 !(aiocb
->aio_type
& QEMU_AIO_WRITE
) &&
923 /* O_DIRECT pread() may fail with EINVAL when offset is unaligned
924 * after a short read. Assume that O_DIRECT short reads only occur
925 * at EOF. Therefore this is a short read, not an I/O error.
928 } else if (len
== -1) {
931 } else if (len
== 0) {
940 static ssize_t
handle_aiocb_rw(RawPosixAIOData
*aiocb
)
945 if (!(aiocb
->aio_type
& QEMU_AIO_MISALIGNED
)) {
947 * If there is just a single buffer, and it is properly aligned
948 * we can just use plain pread/pwrite without any problems.
950 if (aiocb
->aio_niov
== 1) {
951 return handle_aiocb_rw_linear(aiocb
, aiocb
->aio_iov
->iov_base
);
954 * We have more than one iovec, and all are properly aligned.
956 * Try preadv/pwritev first and fall back to linearizing the
957 * buffer if it's not supported.
959 if (preadv_present
) {
960 nbytes
= handle_aiocb_rw_vector(aiocb
);
961 if (nbytes
== aiocb
->aio_nbytes
||
962 (nbytes
< 0 && nbytes
!= -ENOSYS
)) {
965 preadv_present
= false;
969 * XXX(hch): short read/write. no easy way to handle the reminder
970 * using these interfaces. For now retry using plain
976 * Ok, we have to do it the hard way, copy all segments into
977 * a single aligned buffer.
979 buf
= qemu_try_blockalign(aiocb
->bs
, aiocb
->aio_nbytes
);
984 if (aiocb
->aio_type
& QEMU_AIO_WRITE
) {
988 for (i
= 0; i
< aiocb
->aio_niov
; ++i
) {
989 memcpy(p
, aiocb
->aio_iov
[i
].iov_base
, aiocb
->aio_iov
[i
].iov_len
);
990 p
+= aiocb
->aio_iov
[i
].iov_len
;
992 assert(p
- buf
== aiocb
->aio_nbytes
);
995 nbytes
= handle_aiocb_rw_linear(aiocb
, buf
);
996 if (!(aiocb
->aio_type
& QEMU_AIO_WRITE
)) {
998 size_t count
= aiocb
->aio_nbytes
, copy
;
1001 for (i
= 0; i
< aiocb
->aio_niov
&& count
; ++i
) {
1003 if (copy
> aiocb
->aio_iov
[i
].iov_len
) {
1004 copy
= aiocb
->aio_iov
[i
].iov_len
;
1006 memcpy(aiocb
->aio_iov
[i
].iov_base
, p
, copy
);
1007 assert(count
>= copy
);
1019 static int xfs_write_zeroes(BDRVRawState
*s
, int64_t offset
, uint64_t bytes
)
1021 struct xfs_flock64 fl
;
1024 memset(&fl
, 0, sizeof(fl
));
1025 fl
.l_whence
= SEEK_SET
;
1026 fl
.l_start
= offset
;
1029 if (xfsctl(NULL
, s
->fd
, XFS_IOC_ZERO_RANGE
, &fl
) < 0) {
1031 DPRINTF("cannot write zero range (%s)\n", strerror(errno
));
1038 static int xfs_discard(BDRVRawState
*s
, int64_t offset
, uint64_t bytes
)
1040 struct xfs_flock64 fl
;
1043 memset(&fl
, 0, sizeof(fl
));
1044 fl
.l_whence
= SEEK_SET
;
1045 fl
.l_start
= offset
;
1048 if (xfsctl(NULL
, s
->fd
, XFS_IOC_UNRESVSP64
, &fl
) < 0) {
1050 DPRINTF("cannot punch hole (%s)\n", strerror(errno
));
1058 static int translate_err(int err
)
1060 if (err
== -ENODEV
|| err
== -ENOSYS
|| err
== -EOPNOTSUPP
||
1067 #ifdef CONFIG_FALLOCATE
1068 static int do_fallocate(int fd
, int mode
, off_t offset
, off_t len
)
1071 if (fallocate(fd
, mode
, offset
, len
) == 0) {
1074 } while (errno
== EINTR
);
1075 return translate_err(-errno
);
1079 static ssize_t
handle_aiocb_write_zeroes_block(RawPosixAIOData
*aiocb
)
1082 BDRVRawState
*s
= aiocb
->bs
->opaque
;
1084 if (!s
->has_write_zeroes
) {
1090 uint64_t range
[2] = { aiocb
->aio_offset
, aiocb
->aio_nbytes
};
1091 if (ioctl(aiocb
->aio_fildes
, BLKZEROOUT
, range
) == 0) {
1094 } while (errno
== EINTR
);
1096 ret
= translate_err(-errno
);
1099 if (ret
== -ENOTSUP
) {
1100 s
->has_write_zeroes
= false;
1105 static ssize_t
handle_aiocb_write_zeroes(RawPosixAIOData
*aiocb
)
1107 #if defined(CONFIG_FALLOCATE) || defined(CONFIG_XFS)
1108 BDRVRawState
*s
= aiocb
->bs
->opaque
;
1111 if (aiocb
->aio_type
& QEMU_AIO_BLKDEV
) {
1112 return handle_aiocb_write_zeroes_block(aiocb
);
1117 return xfs_write_zeroes(s
, aiocb
->aio_offset
, aiocb
->aio_nbytes
);
1121 #ifdef CONFIG_FALLOCATE_ZERO_RANGE
1122 if (s
->has_write_zeroes
) {
1123 int ret
= do_fallocate(s
->fd
, FALLOC_FL_ZERO_RANGE
,
1124 aiocb
->aio_offset
, aiocb
->aio_nbytes
);
1125 if (ret
== 0 || ret
!= -ENOTSUP
) {
1128 s
->has_write_zeroes
= false;
1132 #ifdef CONFIG_FALLOCATE_PUNCH_HOLE
1133 if (s
->has_discard
&& s
->has_fallocate
) {
1134 int ret
= do_fallocate(s
->fd
,
1135 FALLOC_FL_PUNCH_HOLE
| FALLOC_FL_KEEP_SIZE
,
1136 aiocb
->aio_offset
, aiocb
->aio_nbytes
);
1138 ret
= do_fallocate(s
->fd
, 0, aiocb
->aio_offset
, aiocb
->aio_nbytes
);
1139 if (ret
== 0 || ret
!= -ENOTSUP
) {
1142 s
->has_fallocate
= false;
1143 } else if (ret
!= -ENOTSUP
) {
1146 s
->has_discard
= false;
1151 #ifdef CONFIG_FALLOCATE
1152 if (s
->has_fallocate
&& aiocb
->aio_offset
>= bdrv_getlength(aiocb
->bs
)) {
1153 int ret
= do_fallocate(s
->fd
, 0, aiocb
->aio_offset
, aiocb
->aio_nbytes
);
1154 if (ret
== 0 || ret
!= -ENOTSUP
) {
1157 s
->has_fallocate
= false;
1164 static ssize_t
handle_aiocb_discard(RawPosixAIOData
*aiocb
)
1166 int ret
= -EOPNOTSUPP
;
1167 BDRVRawState
*s
= aiocb
->bs
->opaque
;
1169 if (!s
->has_discard
) {
1173 if (aiocb
->aio_type
& QEMU_AIO_BLKDEV
) {
1176 uint64_t range
[2] = { aiocb
->aio_offset
, aiocb
->aio_nbytes
};
1177 if (ioctl(aiocb
->aio_fildes
, BLKDISCARD
, range
) == 0) {
1180 } while (errno
== EINTR
);
1187 return xfs_discard(s
, aiocb
->aio_offset
, aiocb
->aio_nbytes
);
1191 #ifdef CONFIG_FALLOCATE_PUNCH_HOLE
1192 ret
= do_fallocate(s
->fd
, FALLOC_FL_PUNCH_HOLE
| FALLOC_FL_KEEP_SIZE
,
1193 aiocb
->aio_offset
, aiocb
->aio_nbytes
);
1197 ret
= translate_err(ret
);
1198 if (ret
== -ENOTSUP
) {
1199 s
->has_discard
= false;
1204 static int aio_worker(void *arg
)
1206 RawPosixAIOData
*aiocb
= arg
;
1209 switch (aiocb
->aio_type
& QEMU_AIO_TYPE_MASK
) {
1211 ret
= handle_aiocb_rw(aiocb
);
1212 if (ret
>= 0 && ret
< aiocb
->aio_nbytes
) {
1213 iov_memset(aiocb
->aio_iov
, aiocb
->aio_niov
, ret
,
1214 0, aiocb
->aio_nbytes
- ret
);
1216 ret
= aiocb
->aio_nbytes
;
1218 if (ret
== aiocb
->aio_nbytes
) {
1220 } else if (ret
>= 0 && ret
< aiocb
->aio_nbytes
) {
1224 case QEMU_AIO_WRITE
:
1225 ret
= handle_aiocb_rw(aiocb
);
1226 if (ret
== aiocb
->aio_nbytes
) {
1228 } else if (ret
>= 0 && ret
< aiocb
->aio_nbytes
) {
1232 case QEMU_AIO_FLUSH
:
1233 ret
= handle_aiocb_flush(aiocb
);
1235 case QEMU_AIO_IOCTL
:
1236 ret
= handle_aiocb_ioctl(aiocb
);
1238 case QEMU_AIO_DISCARD
:
1239 ret
= handle_aiocb_discard(aiocb
);
1241 case QEMU_AIO_WRITE_ZEROES
:
1242 ret
= handle_aiocb_write_zeroes(aiocb
);
1245 fprintf(stderr
, "invalid aio request (0x%x)\n", aiocb
->aio_type
);
1254 static int paio_submit_co(BlockDriverState
*bs
, int fd
,
1255 int64_t sector_num
, QEMUIOVector
*qiov
, int nb_sectors
,
1258 RawPosixAIOData
*acb
= g_new(RawPosixAIOData
, 1);
1262 acb
->aio_type
= type
;
1263 acb
->aio_fildes
= fd
;
1265 acb
->aio_nbytes
= nb_sectors
* BDRV_SECTOR_SIZE
;
1266 acb
->aio_offset
= sector_num
* BDRV_SECTOR_SIZE
;
1269 acb
->aio_iov
= qiov
->iov
;
1270 acb
->aio_niov
= qiov
->niov
;
1271 assert(qiov
->size
== acb
->aio_nbytes
);
1274 trace_paio_submit_co(sector_num
, nb_sectors
, type
);
1275 pool
= aio_get_thread_pool(bdrv_get_aio_context(bs
));
1276 return thread_pool_submit_co(pool
, aio_worker
, acb
);
1279 static BlockAIOCB
*paio_submit(BlockDriverState
*bs
, int fd
,
1280 int64_t sector_num
, QEMUIOVector
*qiov
, int nb_sectors
,
1281 BlockCompletionFunc
*cb
, void *opaque
, int type
)
1283 RawPosixAIOData
*acb
= g_new(RawPosixAIOData
, 1);
1287 acb
->aio_type
= type
;
1288 acb
->aio_fildes
= fd
;
1290 acb
->aio_nbytes
= nb_sectors
* BDRV_SECTOR_SIZE
;
1291 acb
->aio_offset
= sector_num
* BDRV_SECTOR_SIZE
;
1294 acb
->aio_iov
= qiov
->iov
;
1295 acb
->aio_niov
= qiov
->niov
;
1296 assert(qiov
->size
== acb
->aio_nbytes
);
1299 trace_paio_submit(acb
, opaque
, sector_num
, nb_sectors
, type
);
1300 pool
= aio_get_thread_pool(bdrv_get_aio_context(bs
));
1301 return thread_pool_submit_aio(pool
, aio_worker
, acb
, cb
, opaque
);
1304 static BlockAIOCB
*raw_aio_submit(BlockDriverState
*bs
,
1305 int64_t sector_num
, QEMUIOVector
*qiov
, int nb_sectors
,
1306 BlockCompletionFunc
*cb
, void *opaque
, int type
)
1308 BDRVRawState
*s
= bs
->opaque
;
1310 if (fd_open(bs
) < 0)
1314 * Check if the underlying device requires requests to be aligned,
1315 * and if the request we are trying to submit is aligned or not.
1316 * If this is the case tell the low-level driver that it needs
1317 * to copy the buffer.
1319 if (s
->needs_alignment
) {
1320 if (!bdrv_qiov_is_aligned(bs
, qiov
)) {
1321 type
|= QEMU_AIO_MISALIGNED
;
1322 #ifdef CONFIG_LINUX_AIO
1323 } else if (s
->use_aio
) {
1324 return laio_submit(bs
, s
->aio_ctx
, s
->fd
, sector_num
, qiov
,
1325 nb_sectors
, cb
, opaque
, type
);
1330 return paio_submit(bs
, s
->fd
, sector_num
, qiov
, nb_sectors
,
1334 static void raw_aio_plug(BlockDriverState
*bs
)
1336 #ifdef CONFIG_LINUX_AIO
1337 BDRVRawState
*s
= bs
->opaque
;
1339 laio_io_plug(bs
, s
->aio_ctx
);
1344 static void raw_aio_unplug(BlockDriverState
*bs
)
1346 #ifdef CONFIG_LINUX_AIO
1347 BDRVRawState
*s
= bs
->opaque
;
1349 laio_io_unplug(bs
, s
->aio_ctx
);
1354 static BlockAIOCB
*raw_aio_readv(BlockDriverState
*bs
,
1355 int64_t sector_num
, QEMUIOVector
*qiov
, int nb_sectors
,
1356 BlockCompletionFunc
*cb
, void *opaque
)
1358 return raw_aio_submit(bs
, sector_num
, qiov
, nb_sectors
,
1359 cb
, opaque
, QEMU_AIO_READ
);
1362 static BlockAIOCB
*raw_aio_writev(BlockDriverState
*bs
,
1363 int64_t sector_num
, QEMUIOVector
*qiov
, int nb_sectors
,
1364 BlockCompletionFunc
*cb
, void *opaque
)
1366 return raw_aio_submit(bs
, sector_num
, qiov
, nb_sectors
,
1367 cb
, opaque
, QEMU_AIO_WRITE
);
1370 static BlockAIOCB
*raw_aio_flush(BlockDriverState
*bs
,
1371 BlockCompletionFunc
*cb
, void *opaque
)
1373 BDRVRawState
*s
= bs
->opaque
;
1375 if (fd_open(bs
) < 0)
1378 return paio_submit(bs
, s
->fd
, 0, NULL
, 0, cb
, opaque
, QEMU_AIO_FLUSH
);
1381 static void raw_close(BlockDriverState
*bs
)
1383 BDRVRawState
*s
= bs
->opaque
;
1385 raw_detach_aio_context(bs
);
1387 #ifdef CONFIG_LINUX_AIO
1389 laio_cleanup(s
->aio_ctx
);
1398 static int raw_truncate(BlockDriverState
*bs
, int64_t offset
)
1400 BDRVRawState
*s
= bs
->opaque
;
1403 if (fstat(s
->fd
, &st
)) {
1407 if (S_ISREG(st
.st_mode
)) {
1408 if (ftruncate(s
->fd
, offset
) < 0) {
1411 } else if (S_ISCHR(st
.st_mode
) || S_ISBLK(st
.st_mode
)) {
1412 if (offset
> raw_getlength(bs
)) {
1423 static int64_t raw_getlength(BlockDriverState
*bs
)
1425 BDRVRawState
*s
= bs
->opaque
;
1431 if (S_ISCHR(st
.st_mode
) || S_ISBLK(st
.st_mode
)) {
1432 struct disklabel dl
;
1434 if (ioctl(fd
, DIOCGDINFO
, &dl
))
1436 return (uint64_t)dl
.d_secsize
*
1437 dl
.d_partitions
[DISKPART(st
.st_rdev
)].p_size
;
1441 #elif defined(__NetBSD__)
1442 static int64_t raw_getlength(BlockDriverState
*bs
)
1444 BDRVRawState
*s
= bs
->opaque
;
1450 if (S_ISCHR(st
.st_mode
) || S_ISBLK(st
.st_mode
)) {
1451 struct dkwedge_info dkw
;
1453 if (ioctl(fd
, DIOCGWEDGEINFO
, &dkw
) != -1) {
1454 return dkw
.dkw_size
* 512;
1456 struct disklabel dl
;
1458 if (ioctl(fd
, DIOCGDINFO
, &dl
))
1460 return (uint64_t)dl
.d_secsize
*
1461 dl
.d_partitions
[DISKPART(st
.st_rdev
)].p_size
;
1466 #elif defined(__sun__)
1467 static int64_t raw_getlength(BlockDriverState
*bs
)
1469 BDRVRawState
*s
= bs
->opaque
;
1470 struct dk_minfo minfo
;
1480 * Use the DKIOCGMEDIAINFO ioctl to read the size.
1482 ret
= ioctl(s
->fd
, DKIOCGMEDIAINFO
, &minfo
);
1484 return minfo
.dki_lbsize
* minfo
.dki_capacity
;
1488 * There are reports that lseek on some devices fails, but
1489 * irc discussion said that contingency on contingency was overkill.
1491 size
= lseek(s
->fd
, 0, SEEK_END
);
1497 #elif defined(CONFIG_BSD)
1498 static int64_t raw_getlength(BlockDriverState
*bs
)
1500 BDRVRawState
*s
= bs
->opaque
;
1504 #if defined (__FreeBSD__) || defined(__FreeBSD_kernel__)
1513 #if defined (__FreeBSD__) || defined(__FreeBSD_kernel__)
1516 if (!fstat(fd
, &sb
) && (S_IFCHR
& sb
.st_mode
)) {
1517 #ifdef DIOCGMEDIASIZE
1518 if (ioctl(fd
, DIOCGMEDIASIZE
, (off_t
*)&size
))
1519 #elif defined(DIOCGPART)
1522 if (ioctl(fd
, DIOCGPART
, &pi
) == 0)
1523 size
= pi
.media_size
;
1529 #if defined(__APPLE__) && defined(__MACH__)
1531 uint64_t sectors
= 0;
1532 uint32_t sector_size
= 0;
1534 if (ioctl(fd
, DKIOCGETBLOCKCOUNT
, §ors
) == 0
1535 && ioctl(fd
, DKIOCGETBLOCKSIZE
, §or_size
) == 0) {
1536 size
= sectors
* sector_size
;
1538 size
= lseek(fd
, 0LL, SEEK_END
);
1545 size
= lseek(fd
, 0LL, SEEK_END
);
1550 #if defined(__FreeBSD__) || defined(__FreeBSD_kernel__)
1553 /* XXX FreeBSD acd returns UINT_MAX sectors for an empty drive */
1554 if (size
== 2048LL * (unsigned)-1)
1556 /* XXX no disc? maybe we need to reopen... */
1557 if (size
<= 0 && !reopened
&& cdrom_reopen(bs
) >= 0) {
1564 size
= lseek(fd
, 0, SEEK_END
);
1572 static int64_t raw_getlength(BlockDriverState
*bs
)
1574 BDRVRawState
*s
= bs
->opaque
;
1583 size
= lseek(s
->fd
, 0, SEEK_END
);
1591 static int64_t raw_get_allocated_file_size(BlockDriverState
*bs
)
1594 BDRVRawState
*s
= bs
->opaque
;
1596 if (fstat(s
->fd
, &st
) < 0) {
1599 return (int64_t)st
.st_blocks
* 512;
1602 static int raw_create(const char *filename
, QemuOpts
*opts
, Error
**errp
)
1606 int64_t total_size
= 0;
1608 PreallocMode prealloc
;
1610 Error
*local_err
= NULL
;
1612 strstart(filename
, "file:", &filename
);
1614 /* Read out options */
1615 total_size
= ROUND_UP(qemu_opt_get_size_del(opts
, BLOCK_OPT_SIZE
, 0),
1617 nocow
= qemu_opt_get_bool(opts
, BLOCK_OPT_NOCOW
, false);
1618 buf
= qemu_opt_get_del(opts
, BLOCK_OPT_PREALLOC
);
1619 prealloc
= qapi_enum_parse(PreallocMode_lookup
, buf
,
1620 PREALLOC_MODE__MAX
, PREALLOC_MODE_OFF
,
1624 error_propagate(errp
, local_err
);
1629 fd
= qemu_open(filename
, O_RDWR
| O_CREAT
| O_TRUNC
| O_BINARY
,
1633 error_setg_errno(errp
, -result
, "Could not create file");
1639 /* Set NOCOW flag to solve performance issue on fs like btrfs.
1640 * This is an optimisation. The FS_IOC_SETFLAGS ioctl return value
1641 * will be ignored since any failure of this operation should not
1642 * block the left work.
1645 if (ioctl(fd
, FS_IOC_GETFLAGS
, &attr
) == 0) {
1646 attr
|= FS_NOCOW_FL
;
1647 ioctl(fd
, FS_IOC_SETFLAGS
, &attr
);
1652 if (ftruncate(fd
, total_size
) != 0) {
1654 error_setg_errno(errp
, -result
, "Could not resize file");
1659 #ifdef CONFIG_POSIX_FALLOCATE
1660 case PREALLOC_MODE_FALLOC
:
1661 /* posix_fallocate() doesn't set errno. */
1662 result
= -posix_fallocate(fd
, 0, total_size
);
1664 error_setg_errno(errp
, -result
,
1665 "Could not preallocate data for the new file");
1669 case PREALLOC_MODE_FULL
:
1671 int64_t num
= 0, left
= total_size
;
1672 buf
= g_malloc0(65536);
1675 num
= MIN(left
, 65536);
1676 result
= write(fd
, buf
, num
);
1679 error_setg_errno(errp
, -result
,
1680 "Could not write to the new file");
1689 error_setg_errno(errp
, -result
,
1690 "Could not flush new file to disk");
1696 case PREALLOC_MODE_OFF
:
1700 error_setg(errp
, "Unsupported preallocation mode: %s",
1701 PreallocMode_lookup
[prealloc
]);
1706 if (qemu_close(fd
) != 0 && result
== 0) {
1708 error_setg_errno(errp
, -result
, "Could not close the new file");
1715 * Find allocation range in @bs around offset @start.
1716 * May change underlying file descriptor's file offset.
1717 * If @start is not in a hole, store @start in @data, and the
1718 * beginning of the next hole in @hole, and return 0.
1719 * If @start is in a non-trailing hole, store @start in @hole and the
1720 * beginning of the next non-hole in @data, and return 0.
1721 * If @start is in a trailing hole or beyond EOF, return -ENXIO.
1722 * If we can't find out, return a negative errno other than -ENXIO.
1724 static int find_allocation(BlockDriverState
*bs
, off_t start
,
1725 off_t
*data
, off_t
*hole
)
1727 #if defined SEEK_HOLE && defined SEEK_DATA
1728 BDRVRawState
*s
= bs
->opaque
;
1733 * D1. offs == start: start is in data
1734 * D2. offs > start: start is in a hole, next data at offs
1735 * D3. offs < 0, errno = ENXIO: either start is in a trailing hole
1736 * or start is beyond EOF
1737 * If the latter happens, the file has been truncated behind
1738 * our back since we opened it. All bets are off then.
1739 * Treating like a trailing hole is simplest.
1740 * D4. offs < 0, errno != ENXIO: we learned nothing
1742 offs
= lseek(s
->fd
, start
, SEEK_DATA
);
1744 return -errno
; /* D3 or D4 */
1746 assert(offs
>= start
);
1749 /* D2: in hole, next data at offs */
1755 /* D1: in data, end not yet known */
1759 * H1. offs == start: start is in a hole
1760 * If this happens here, a hole has been dug behind our back
1761 * since the previous lseek().
1762 * H2. offs > start: either start is in data, next hole at offs,
1763 * or start is in trailing hole, EOF at offs
1764 * Linux treats trailing holes like any other hole: offs ==
1765 * start. Solaris seeks to EOF instead: offs > start (blech).
1766 * If that happens here, a hole has been dug behind our back
1767 * since the previous lseek().
1768 * H3. offs < 0, errno = ENXIO: start is beyond EOF
1769 * If this happens, the file has been truncated behind our
1770 * back since we opened it. Treat it like a trailing hole.
1771 * H4. offs < 0, errno != ENXIO: we learned nothing
1772 * Pretend we know nothing at all, i.e. "forget" about D1.
1774 offs
= lseek(s
->fd
, start
, SEEK_HOLE
);
1776 return -errno
; /* D1 and (H3 or H4) */
1778 assert(offs
>= start
);
1782 * D1 and H2: either in data, next hole at offs, or it was in
1783 * data but is now in a trailing hole. In the latter case,
1784 * all bets are off. Treating it as if it there was data all
1785 * the way to EOF is safe, so simply do that.
1800 * Returns the allocation status of the specified sectors.
1802 * If 'sector_num' is beyond the end of the disk image the return value is 0
1803 * and 'pnum' is set to 0.
1805 * 'pnum' is set to the number of sectors (including and immediately following
1806 * the specified sector) that are known to be in the same
1807 * allocated/unallocated state.
1809 * 'nb_sectors' is the max value 'pnum' should be set to. If nb_sectors goes
1810 * beyond the end of the disk image it will be clamped.
1812 static int64_t coroutine_fn
raw_co_get_block_status(BlockDriverState
*bs
,
1814 int nb_sectors
, int *pnum
,
1815 BlockDriverState
**file
)
1817 off_t start
, data
= 0, hole
= 0;
1826 start
= sector_num
* BDRV_SECTOR_SIZE
;
1827 total_size
= bdrv_getlength(bs
);
1828 if (total_size
< 0) {
1830 } else if (start
>= total_size
) {
1833 } else if (start
+ nb_sectors
* BDRV_SECTOR_SIZE
> total_size
) {
1834 nb_sectors
= DIV_ROUND_UP(total_size
- start
, BDRV_SECTOR_SIZE
);
1837 ret
= find_allocation(bs
, start
, &data
, &hole
);
1838 if (ret
== -ENXIO
) {
1841 ret
= BDRV_BLOCK_ZERO
;
1842 } else if (ret
< 0) {
1843 /* No info available, so pretend there are no holes */
1845 ret
= BDRV_BLOCK_DATA
;
1846 } else if (data
== start
) {
1847 /* On a data extent, compute sectors to the end of the extent,
1848 * possibly including a partial sector at EOF. */
1849 *pnum
= MIN(nb_sectors
, DIV_ROUND_UP(hole
- start
, BDRV_SECTOR_SIZE
));
1850 ret
= BDRV_BLOCK_DATA
;
1852 /* On a hole, compute sectors to the beginning of the next extent. */
1853 assert(hole
== start
);
1854 *pnum
= MIN(nb_sectors
, (data
- start
) / BDRV_SECTOR_SIZE
);
1855 ret
= BDRV_BLOCK_ZERO
;
1858 return ret
| BDRV_BLOCK_OFFSET_VALID
| start
;
1861 static coroutine_fn BlockAIOCB
*raw_aio_discard(BlockDriverState
*bs
,
1862 int64_t sector_num
, int nb_sectors
,
1863 BlockCompletionFunc
*cb
, void *opaque
)
1865 BDRVRawState
*s
= bs
->opaque
;
1867 return paio_submit(bs
, s
->fd
, sector_num
, NULL
, nb_sectors
,
1868 cb
, opaque
, QEMU_AIO_DISCARD
);
1871 static int coroutine_fn
raw_co_write_zeroes(
1872 BlockDriverState
*bs
, int64_t sector_num
,
1873 int nb_sectors
, BdrvRequestFlags flags
)
1875 BDRVRawState
*s
= bs
->opaque
;
1877 if (!(flags
& BDRV_REQ_MAY_UNMAP
)) {
1878 return paio_submit_co(bs
, s
->fd
, sector_num
, NULL
, nb_sectors
,
1879 QEMU_AIO_WRITE_ZEROES
);
1880 } else if (s
->discard_zeroes
) {
1881 return paio_submit_co(bs
, s
->fd
, sector_num
, NULL
, nb_sectors
,
1887 static int raw_get_info(BlockDriverState
*bs
, BlockDriverInfo
*bdi
)
1889 BDRVRawState
*s
= bs
->opaque
;
1891 bdi
->unallocated_blocks_are_zero
= s
->discard_zeroes
;
1892 bdi
->can_write_zeroes_with_unmap
= s
->discard_zeroes
;
1896 static QemuOptsList raw_create_opts
= {
1897 .name
= "raw-create-opts",
1898 .head
= QTAILQ_HEAD_INITIALIZER(raw_create_opts
.head
),
1901 .name
= BLOCK_OPT_SIZE
,
1902 .type
= QEMU_OPT_SIZE
,
1903 .help
= "Virtual disk size"
1906 .name
= BLOCK_OPT_NOCOW
,
1907 .type
= QEMU_OPT_BOOL
,
1908 .help
= "Turn off copy-on-write (valid only on btrfs)"
1911 .name
= BLOCK_OPT_PREALLOC
,
1912 .type
= QEMU_OPT_STRING
,
1913 .help
= "Preallocation mode (allowed values: off, falloc, full)"
1915 { /* end of list */ }
1919 BlockDriver bdrv_file
= {
1920 .format_name
= "file",
1921 .protocol_name
= "file",
1922 .instance_size
= sizeof(BDRVRawState
),
1923 .bdrv_needs_filename
= true,
1924 .bdrv_probe
= NULL
, /* no probe for protocols */
1925 .bdrv_parse_filename
= raw_parse_filename
,
1926 .bdrv_file_open
= raw_open
,
1927 .bdrv_reopen_prepare
= raw_reopen_prepare
,
1928 .bdrv_reopen_commit
= raw_reopen_commit
,
1929 .bdrv_reopen_abort
= raw_reopen_abort
,
1930 .bdrv_close
= raw_close
,
1931 .bdrv_create
= raw_create
,
1932 .bdrv_has_zero_init
= bdrv_has_zero_init_1
,
1933 .bdrv_co_get_block_status
= raw_co_get_block_status
,
1934 .bdrv_co_write_zeroes
= raw_co_write_zeroes
,
1936 .bdrv_aio_readv
= raw_aio_readv
,
1937 .bdrv_aio_writev
= raw_aio_writev
,
1938 .bdrv_aio_flush
= raw_aio_flush
,
1939 .bdrv_aio_discard
= raw_aio_discard
,
1940 .bdrv_refresh_limits
= raw_refresh_limits
,
1941 .bdrv_io_plug
= raw_aio_plug
,
1942 .bdrv_io_unplug
= raw_aio_unplug
,
1944 .bdrv_truncate
= raw_truncate
,
1945 .bdrv_getlength
= raw_getlength
,
1946 .bdrv_get_info
= raw_get_info
,
1947 .bdrv_get_allocated_file_size
1948 = raw_get_allocated_file_size
,
1950 .bdrv_detach_aio_context
= raw_detach_aio_context
,
1951 .bdrv_attach_aio_context
= raw_attach_aio_context
,
1953 .create_opts
= &raw_create_opts
,
1956 /***********************************************/
1959 #if defined(__APPLE__) && defined(__MACH__)
1960 static kern_return_t
GetBSDPath(io_iterator_t mediaIterator
, char *bsdPath
,
1961 CFIndex maxPathSize
, int flags
);
1962 static char *FindEjectableOpticalMedia(io_iterator_t
*mediaIterator
)
1964 kern_return_t kernResult
= KERN_FAILURE
;
1965 mach_port_t masterPort
;
1966 CFMutableDictionaryRef classesToMatch
;
1967 const char *matching_array
[] = {kIODVDMediaClass
, kIOCDMediaClass
};
1968 char *mediaType
= NULL
;
1970 kernResult
= IOMasterPort( MACH_PORT_NULL
, &masterPort
);
1971 if ( KERN_SUCCESS
!= kernResult
) {
1972 printf( "IOMasterPort returned %d\n", kernResult
);
1976 for (index
= 0; index
< ARRAY_SIZE(matching_array
); index
++) {
1977 classesToMatch
= IOServiceMatching(matching_array
[index
]);
1978 if (classesToMatch
== NULL
) {
1979 error_report("IOServiceMatching returned NULL for %s",
1980 matching_array
[index
]);
1983 CFDictionarySetValue(classesToMatch
, CFSTR(kIOMediaEjectableKey
),
1985 kernResult
= IOServiceGetMatchingServices(masterPort
, classesToMatch
,
1987 if (kernResult
!= KERN_SUCCESS
) {
1988 error_report("Note: IOServiceGetMatchingServices returned %d",
1993 /* If a match was found, leave the loop */
1994 if (*mediaIterator
!= 0) {
1995 DPRINTF("Matching using %s\n", matching_array
[index
]);
1996 mediaType
= g_strdup(matching_array
[index
]);
2003 kern_return_t
GetBSDPath(io_iterator_t mediaIterator
, char *bsdPath
,
2004 CFIndex maxPathSize
, int flags
)
2006 io_object_t nextMedia
;
2007 kern_return_t kernResult
= KERN_FAILURE
;
2009 nextMedia
= IOIteratorNext( mediaIterator
);
2012 CFTypeRef bsdPathAsCFString
;
2013 bsdPathAsCFString
= IORegistryEntryCreateCFProperty( nextMedia
, CFSTR( kIOBSDNameKey
), kCFAllocatorDefault
, 0 );
2014 if ( bsdPathAsCFString
) {
2015 size_t devPathLength
;
2016 strcpy( bsdPath
, _PATH_DEV
);
2017 if (flags
& BDRV_O_NOCACHE
) {
2018 strcat(bsdPath
, "r");
2020 devPathLength
= strlen( bsdPath
);
2021 if ( CFStringGetCString( bsdPathAsCFString
, bsdPath
+ devPathLength
, maxPathSize
- devPathLength
, kCFStringEncodingASCII
) ) {
2022 kernResult
= KERN_SUCCESS
;
2024 CFRelease( bsdPathAsCFString
);
2026 IOObjectRelease( nextMedia
);
2032 /* Sets up a real cdrom for use in QEMU */
2033 static bool setup_cdrom(char *bsd_path
, Error
**errp
)
2035 int index
, num_of_test_partitions
= 2, fd
;
2036 char test_partition
[MAXPATHLEN
];
2037 bool partition_found
= false;
2039 /* look for a working partition */
2040 for (index
= 0; index
< num_of_test_partitions
; index
++) {
2041 snprintf(test_partition
, sizeof(test_partition
), "%ss%d", bsd_path
,
2043 fd
= qemu_open(test_partition
, O_RDONLY
| O_BINARY
| O_LARGEFILE
);
2045 partition_found
= true;
2051 /* if a working partition on the device was not found */
2052 if (partition_found
== false) {
2053 error_setg(errp
, "Failed to find a working partition on disc");
2055 DPRINTF("Using %s as optical disc\n", test_partition
);
2056 pstrcpy(bsd_path
, MAXPATHLEN
, test_partition
);
2058 return partition_found
;
2061 /* Prints directions on mounting and unmounting a device */
2062 static void print_unmounting_directions(const char *file_name
)
2064 error_report("If device %s is mounted on the desktop, unmount"
2065 " it first before using it in QEMU", file_name
);
2066 error_report("Command to unmount device: diskutil unmountDisk %s",
2068 error_report("Command to mount device: diskutil mountDisk %s", file_name
);
2071 #endif /* defined(__APPLE__) && defined(__MACH__) */
2073 static int hdev_probe_device(const char *filename
)
2077 /* allow a dedicated CD-ROM driver to match with a higher priority */
2078 if (strstart(filename
, "/dev/cdrom", NULL
))
2081 if (stat(filename
, &st
) >= 0 &&
2082 (S_ISCHR(st
.st_mode
) || S_ISBLK(st
.st_mode
))) {
2089 static int check_hdev_writable(BDRVRawState
*s
)
2091 #if defined(BLKROGET)
2092 /* Linux block devices can be configured "read-only" using blockdev(8).
2093 * This is independent of device node permissions and therefore open(2)
2094 * with O_RDWR succeeds. Actual writes fail with EPERM.
2096 * bdrv_open() is supposed to fail if the disk is read-only. Explicitly
2097 * check for read-only block devices so that Linux block devices behave
2103 if (fstat(s
->fd
, &st
)) {
2107 if (!S_ISBLK(st
.st_mode
)) {
2111 if (ioctl(s
->fd
, BLKROGET
, &readonly
) < 0) {
2118 #endif /* defined(BLKROGET) */
2122 static void hdev_parse_filename(const char *filename
, QDict
*options
,
2125 /* The prefix is optional, just as for "file". */
2126 strstart(filename
, "host_device:", &filename
);
2128 qdict_put_obj(options
, "filename", QOBJECT(qstring_from_str(filename
)));
2131 static bool hdev_is_sg(BlockDriverState
*bs
)
2134 #if defined(__linux__)
2137 struct sg_scsi_id scsiid
;
2140 if (stat(bs
->filename
, &st
) >= 0 && S_ISCHR(st
.st_mode
) &&
2141 !bdrv_ioctl(bs
, SG_GET_VERSION_NUM
, &sg_version
) &&
2142 !bdrv_ioctl(bs
, SG_GET_SCSI_ID
, &scsiid
)) {
2143 DPRINTF("SG device found: type=%d, version=%d\n",
2144 scsiid
.scsi_type
, sg_version
);
2153 static int hdev_open(BlockDriverState
*bs
, QDict
*options
, int flags
,
2156 BDRVRawState
*s
= bs
->opaque
;
2157 Error
*local_err
= NULL
;
2160 #if defined(__APPLE__) && defined(__MACH__)
2161 const char *filename
= qdict_get_str(options
, "filename");
2162 char bsd_path
[MAXPATHLEN
] = "";
2163 bool error_occurred
= false;
2165 /* If using a real cdrom */
2166 if (strcmp(filename
, "/dev/cdrom") == 0) {
2167 char *mediaType
= NULL
;
2168 kern_return_t ret_val
;
2169 io_iterator_t mediaIterator
= 0;
2171 mediaType
= FindEjectableOpticalMedia(&mediaIterator
);
2172 if (mediaType
== NULL
) {
2173 error_setg(errp
, "Please make sure your CD/DVD is in the optical"
2175 error_occurred
= true;
2176 goto hdev_open_Mac_error
;
2179 ret_val
= GetBSDPath(mediaIterator
, bsd_path
, sizeof(bsd_path
), flags
);
2180 if (ret_val
!= KERN_SUCCESS
) {
2181 error_setg(errp
, "Could not get BSD path for optical drive");
2182 error_occurred
= true;
2183 goto hdev_open_Mac_error
;
2186 /* If a real optical drive was not found */
2187 if (bsd_path
[0] == '\0') {
2188 error_setg(errp
, "Failed to obtain bsd path for optical drive");
2189 error_occurred
= true;
2190 goto hdev_open_Mac_error
;
2193 /* If using a cdrom disc and finding a partition on the disc failed */
2194 if (strncmp(mediaType
, kIOCDMediaClass
, 9) == 0 &&
2195 setup_cdrom(bsd_path
, errp
) == false) {
2196 print_unmounting_directions(bsd_path
);
2197 error_occurred
= true;
2198 goto hdev_open_Mac_error
;
2201 qdict_put(options
, "filename", qstring_from_str(bsd_path
));
2203 hdev_open_Mac_error
:
2205 if (mediaIterator
) {
2206 IOObjectRelease(mediaIterator
);
2208 if (error_occurred
) {
2212 #endif /* defined(__APPLE__) && defined(__MACH__) */
2214 s
->type
= FTYPE_FILE
;
2216 ret
= raw_open_common(bs
, options
, flags
, 0, &local_err
);
2219 error_propagate(errp
, local_err
);
2221 #if defined(__APPLE__) && defined(__MACH__)
2223 filename
= bsd_path
;
2225 /* if a physical device experienced an error while being opened */
2226 if (strncmp(filename
, "/dev/", 5) == 0) {
2227 print_unmounting_directions(filename
);
2229 #endif /* defined(__APPLE__) && defined(__MACH__) */
2233 /* Since this does ioctl the device must be already opened */
2234 bs
->sg
= hdev_is_sg(bs
);
2236 if (flags
& BDRV_O_RDWR
) {
2237 ret
= check_hdev_writable(s
);
2240 error_setg_errno(errp
, -ret
, "The device is not writable");
2248 #if defined(__linux__)
2250 static BlockAIOCB
*hdev_aio_ioctl(BlockDriverState
*bs
,
2251 unsigned long int req
, void *buf
,
2252 BlockCompletionFunc
*cb
, void *opaque
)
2254 BDRVRawState
*s
= bs
->opaque
;
2255 RawPosixAIOData
*acb
;
2258 if (fd_open(bs
) < 0)
2261 acb
= g_new(RawPosixAIOData
, 1);
2263 acb
->aio_type
= QEMU_AIO_IOCTL
;
2264 acb
->aio_fildes
= s
->fd
;
2265 acb
->aio_offset
= 0;
2266 acb
->aio_ioctl_buf
= buf
;
2267 acb
->aio_ioctl_cmd
= req
;
2268 pool
= aio_get_thread_pool(bdrv_get_aio_context(bs
));
2269 return thread_pool_submit_aio(pool
, aio_worker
, acb
, cb
, opaque
);
2273 static int fd_open(BlockDriverState
*bs
)
2275 BDRVRawState
*s
= bs
->opaque
;
2277 /* this is just to ensure s->fd is sane (its called by io ops) */
2283 static coroutine_fn BlockAIOCB
*hdev_aio_discard(BlockDriverState
*bs
,
2284 int64_t sector_num
, int nb_sectors
,
2285 BlockCompletionFunc
*cb
, void *opaque
)
2287 BDRVRawState
*s
= bs
->opaque
;
2289 if (fd_open(bs
) < 0) {
2292 return paio_submit(bs
, s
->fd
, sector_num
, NULL
, nb_sectors
,
2293 cb
, opaque
, QEMU_AIO_DISCARD
|QEMU_AIO_BLKDEV
);
2296 static coroutine_fn
int hdev_co_write_zeroes(BlockDriverState
*bs
,
2297 int64_t sector_num
, int nb_sectors
, BdrvRequestFlags flags
)
2299 BDRVRawState
*s
= bs
->opaque
;
2306 if (!(flags
& BDRV_REQ_MAY_UNMAP
)) {
2307 return paio_submit_co(bs
, s
->fd
, sector_num
, NULL
, nb_sectors
,
2308 QEMU_AIO_WRITE_ZEROES
|QEMU_AIO_BLKDEV
);
2309 } else if (s
->discard_zeroes
) {
2310 return paio_submit_co(bs
, s
->fd
, sector_num
, NULL
, nb_sectors
,
2311 QEMU_AIO_DISCARD
|QEMU_AIO_BLKDEV
);
2316 static int hdev_create(const char *filename
, QemuOpts
*opts
,
2321 struct stat stat_buf
;
2322 int64_t total_size
= 0;
2325 /* This function is used by both protocol block drivers and therefore either
2326 * of these prefixes may be given.
2327 * The return value has to be stored somewhere, otherwise this is an error
2328 * due to -Werror=unused-value. */
2330 strstart(filename
, "host_device:", &filename
) ||
2331 strstart(filename
, "host_cdrom:" , &filename
);
2335 ret
= raw_normalize_devicepath(&filename
);
2337 error_setg_errno(errp
, -ret
, "Could not normalize device path");
2341 /* Read out options */
2342 total_size
= ROUND_UP(qemu_opt_get_size_del(opts
, BLOCK_OPT_SIZE
, 0),
2345 fd
= qemu_open(filename
, O_WRONLY
| O_BINARY
);
2348 error_setg_errno(errp
, -ret
, "Could not open device");
2352 if (fstat(fd
, &stat_buf
) < 0) {
2354 error_setg_errno(errp
, -ret
, "Could not stat device");
2355 } else if (!S_ISBLK(stat_buf
.st_mode
) && !S_ISCHR(stat_buf
.st_mode
)) {
2357 "The given file is neither a block nor a character device");
2359 } else if (lseek(fd
, 0, SEEK_END
) < total_size
) {
2360 error_setg(errp
, "Device is too small");
2368 static BlockDriver bdrv_host_device
= {
2369 .format_name
= "host_device",
2370 .protocol_name
= "host_device",
2371 .instance_size
= sizeof(BDRVRawState
),
2372 .bdrv_needs_filename
= true,
2373 .bdrv_probe_device
= hdev_probe_device
,
2374 .bdrv_parse_filename
= hdev_parse_filename
,
2375 .bdrv_file_open
= hdev_open
,
2376 .bdrv_close
= raw_close
,
2377 .bdrv_reopen_prepare
= raw_reopen_prepare
,
2378 .bdrv_reopen_commit
= raw_reopen_commit
,
2379 .bdrv_reopen_abort
= raw_reopen_abort
,
2380 .bdrv_create
= hdev_create
,
2381 .create_opts
= &raw_create_opts
,
2382 .bdrv_co_write_zeroes
= hdev_co_write_zeroes
,
2384 .bdrv_aio_readv
= raw_aio_readv
,
2385 .bdrv_aio_writev
= raw_aio_writev
,
2386 .bdrv_aio_flush
= raw_aio_flush
,
2387 .bdrv_aio_discard
= hdev_aio_discard
,
2388 .bdrv_refresh_limits
= raw_refresh_limits
,
2389 .bdrv_io_plug
= raw_aio_plug
,
2390 .bdrv_io_unplug
= raw_aio_unplug
,
2392 .bdrv_truncate
= raw_truncate
,
2393 .bdrv_getlength
= raw_getlength
,
2394 .bdrv_get_info
= raw_get_info
,
2395 .bdrv_get_allocated_file_size
2396 = raw_get_allocated_file_size
,
2397 .bdrv_probe_blocksizes
= hdev_probe_blocksizes
,
2398 .bdrv_probe_geometry
= hdev_probe_geometry
,
2400 .bdrv_detach_aio_context
= raw_detach_aio_context
,
2401 .bdrv_attach_aio_context
= raw_attach_aio_context
,
2403 /* generic scsi device */
2405 .bdrv_aio_ioctl
= hdev_aio_ioctl
,
2409 #if defined(__linux__) || defined(__FreeBSD__) || defined(__FreeBSD_kernel__)
2410 static void cdrom_parse_filename(const char *filename
, QDict
*options
,
2413 /* The prefix is optional, just as for "file". */
2414 strstart(filename
, "host_cdrom:", &filename
);
2416 qdict_put_obj(options
, "filename", QOBJECT(qstring_from_str(filename
)));
2421 static int cdrom_open(BlockDriverState
*bs
, QDict
*options
, int flags
,
2424 BDRVRawState
*s
= bs
->opaque
;
2425 Error
*local_err
= NULL
;
2430 /* open will not fail even if no CD is inserted, so add O_NONBLOCK */
2431 ret
= raw_open_common(bs
, options
, flags
, O_NONBLOCK
, &local_err
);
2433 error_propagate(errp
, local_err
);
2438 static int cdrom_probe_device(const char *filename
)
2444 fd
= qemu_open(filename
, O_RDONLY
| O_NONBLOCK
);
2448 ret
= fstat(fd
, &st
);
2449 if (ret
== -1 || !S_ISBLK(st
.st_mode
)) {
2453 /* Attempt to detect via a CDROM specific ioctl */
2454 ret
= ioctl(fd
, CDROM_DRIVE_STATUS
, CDSL_CURRENT
);
2464 static bool cdrom_is_inserted(BlockDriverState
*bs
)
2466 BDRVRawState
*s
= bs
->opaque
;
2469 ret
= ioctl(s
->fd
, CDROM_DRIVE_STATUS
, CDSL_CURRENT
);
2470 return ret
== CDS_DISC_OK
;
2473 static void cdrom_eject(BlockDriverState
*bs
, bool eject_flag
)
2475 BDRVRawState
*s
= bs
->opaque
;
2478 if (ioctl(s
->fd
, CDROMEJECT
, NULL
) < 0)
2479 perror("CDROMEJECT");
2481 if (ioctl(s
->fd
, CDROMCLOSETRAY
, NULL
) < 0)
2482 perror("CDROMEJECT");
2486 static void cdrom_lock_medium(BlockDriverState
*bs
, bool locked
)
2488 BDRVRawState
*s
= bs
->opaque
;
2490 if (ioctl(s
->fd
, CDROM_LOCKDOOR
, locked
) < 0) {
2492 * Note: an error can happen if the distribution automatically
2495 /* perror("CDROM_LOCKDOOR"); */
2499 static BlockDriver bdrv_host_cdrom
= {
2500 .format_name
= "host_cdrom",
2501 .protocol_name
= "host_cdrom",
2502 .instance_size
= sizeof(BDRVRawState
),
2503 .bdrv_needs_filename
= true,
2504 .bdrv_probe_device
= cdrom_probe_device
,
2505 .bdrv_parse_filename
= cdrom_parse_filename
,
2506 .bdrv_file_open
= cdrom_open
,
2507 .bdrv_close
= raw_close
,
2508 .bdrv_reopen_prepare
= raw_reopen_prepare
,
2509 .bdrv_reopen_commit
= raw_reopen_commit
,
2510 .bdrv_reopen_abort
= raw_reopen_abort
,
2511 .bdrv_create
= hdev_create
,
2512 .create_opts
= &raw_create_opts
,
2514 .bdrv_aio_readv
= raw_aio_readv
,
2515 .bdrv_aio_writev
= raw_aio_writev
,
2516 .bdrv_aio_flush
= raw_aio_flush
,
2517 .bdrv_refresh_limits
= raw_refresh_limits
,
2518 .bdrv_io_plug
= raw_aio_plug
,
2519 .bdrv_io_unplug
= raw_aio_unplug
,
2521 .bdrv_truncate
= raw_truncate
,
2522 .bdrv_getlength
= raw_getlength
,
2523 .has_variable_length
= true,
2524 .bdrv_get_allocated_file_size
2525 = raw_get_allocated_file_size
,
2527 .bdrv_detach_aio_context
= raw_detach_aio_context
,
2528 .bdrv_attach_aio_context
= raw_attach_aio_context
,
2530 /* removable device support */
2531 .bdrv_is_inserted
= cdrom_is_inserted
,
2532 .bdrv_eject
= cdrom_eject
,
2533 .bdrv_lock_medium
= cdrom_lock_medium
,
2535 /* generic scsi device */
2536 .bdrv_aio_ioctl
= hdev_aio_ioctl
,
2538 #endif /* __linux__ */
2540 #if defined (__FreeBSD__) || defined(__FreeBSD_kernel__)
2541 static int cdrom_open(BlockDriverState
*bs
, QDict
*options
, int flags
,
2544 BDRVRawState
*s
= bs
->opaque
;
2545 Error
*local_err
= NULL
;
2550 ret
= raw_open_common(bs
, options
, flags
, 0, &local_err
);
2553 error_propagate(errp
, local_err
);
2558 /* make sure the door isn't locked at this time */
2559 ioctl(s
->fd
, CDIOCALLOW
);
2563 static int cdrom_probe_device(const char *filename
)
2565 if (strstart(filename
, "/dev/cd", NULL
) ||
2566 strstart(filename
, "/dev/acd", NULL
))
2571 static int cdrom_reopen(BlockDriverState
*bs
)
2573 BDRVRawState
*s
= bs
->opaque
;
2577 * Force reread of possibly changed/newly loaded disc,
2578 * FreeBSD seems to not notice sometimes...
2582 fd
= qemu_open(bs
->filename
, s
->open_flags
, 0644);
2589 /* make sure the door isn't locked at this time */
2590 ioctl(s
->fd
, CDIOCALLOW
);
2594 static bool cdrom_is_inserted(BlockDriverState
*bs
)
2596 return raw_getlength(bs
) > 0;
2599 static void cdrom_eject(BlockDriverState
*bs
, bool eject_flag
)
2601 BDRVRawState
*s
= bs
->opaque
;
2606 (void) ioctl(s
->fd
, CDIOCALLOW
);
2609 if (ioctl(s
->fd
, CDIOCEJECT
) < 0)
2610 perror("CDIOCEJECT");
2612 if (ioctl(s
->fd
, CDIOCCLOSE
) < 0)
2613 perror("CDIOCCLOSE");
2619 static void cdrom_lock_medium(BlockDriverState
*bs
, bool locked
)
2621 BDRVRawState
*s
= bs
->opaque
;
2625 if (ioctl(s
->fd
, (locked
? CDIOCPREVENT
: CDIOCALLOW
)) < 0) {
2627 * Note: an error can happen if the distribution automatically
2630 /* perror("CDROM_LOCKDOOR"); */
2634 static BlockDriver bdrv_host_cdrom
= {
2635 .format_name
= "host_cdrom",
2636 .protocol_name
= "host_cdrom",
2637 .instance_size
= sizeof(BDRVRawState
),
2638 .bdrv_needs_filename
= true,
2639 .bdrv_probe_device
= cdrom_probe_device
,
2640 .bdrv_parse_filename
= cdrom_parse_filename
,
2641 .bdrv_file_open
= cdrom_open
,
2642 .bdrv_close
= raw_close
,
2643 .bdrv_reopen_prepare
= raw_reopen_prepare
,
2644 .bdrv_reopen_commit
= raw_reopen_commit
,
2645 .bdrv_reopen_abort
= raw_reopen_abort
,
2646 .bdrv_create
= hdev_create
,
2647 .create_opts
= &raw_create_opts
,
2649 .bdrv_aio_readv
= raw_aio_readv
,
2650 .bdrv_aio_writev
= raw_aio_writev
,
2651 .bdrv_aio_flush
= raw_aio_flush
,
2652 .bdrv_refresh_limits
= raw_refresh_limits
,
2653 .bdrv_io_plug
= raw_aio_plug
,
2654 .bdrv_io_unplug
= raw_aio_unplug
,
2656 .bdrv_truncate
= raw_truncate
,
2657 .bdrv_getlength
= raw_getlength
,
2658 .has_variable_length
= true,
2659 .bdrv_get_allocated_file_size
2660 = raw_get_allocated_file_size
,
2662 .bdrv_detach_aio_context
= raw_detach_aio_context
,
2663 .bdrv_attach_aio_context
= raw_attach_aio_context
,
2665 /* removable device support */
2666 .bdrv_is_inserted
= cdrom_is_inserted
,
2667 .bdrv_eject
= cdrom_eject
,
2668 .bdrv_lock_medium
= cdrom_lock_medium
,
2670 #endif /* __FreeBSD__ */
2672 static void bdrv_file_init(void)
2675 * Register all the drivers. Note that order is important, the driver
2676 * registered last will get probed first.
2678 bdrv_register(&bdrv_file
);
2679 bdrv_register(&bdrv_host_device
);
2681 bdrv_register(&bdrv_host_cdrom
);
2683 #if defined(__FreeBSD__) || defined(__FreeBSD_kernel__)
2684 bdrv_register(&bdrv_host_cdrom
);
2688 block_init(bdrv_file_init
);