2 * Copyright (C) 2009-2010 Nippon Telegraph and Telephone Corporation.
4 * This program is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU General Public License version
6 * 2 as published by the Free Software Foundation.
8 * You should have received a copy of the GNU General Public License
9 * along with this program. If not, see <http://www.gnu.org/licenses/>.
11 * Contributions after 2012-01-13 are licensed under the terms of the
12 * GNU GPL, version 2 or (at your option) any later version.
15 #include "qemu-common.h"
17 #include "qemu/error-report.h"
18 #include "qemu/sockets.h"
19 #include "block/block_int.h"
20 #include "qemu/bitops.h"
22 #define SD_PROTO_VER 0x01
24 #define SD_DEFAULT_ADDR "localhost"
25 #define SD_DEFAULT_PORT 7000
27 #define SD_OP_CREATE_AND_WRITE_OBJ 0x01
28 #define SD_OP_READ_OBJ 0x02
29 #define SD_OP_WRITE_OBJ 0x03
31 #define SD_OP_NEW_VDI 0x11
32 #define SD_OP_LOCK_VDI 0x12
33 #define SD_OP_RELEASE_VDI 0x13
34 #define SD_OP_GET_VDI_INFO 0x14
35 #define SD_OP_READ_VDIS 0x15
36 #define SD_OP_FLUSH_VDI 0x16
38 #define SD_FLAG_CMD_WRITE 0x01
39 #define SD_FLAG_CMD_COW 0x02
40 #define SD_FLAG_CMD_CACHE 0x04 /* Writeback mode for cache */
41 #define SD_FLAG_CMD_DIRECT 0x08 /* Don't use cache */
43 #define SD_RES_SUCCESS 0x00 /* Success */
44 #define SD_RES_UNKNOWN 0x01 /* Unknown error */
45 #define SD_RES_NO_OBJ 0x02 /* No object found */
46 #define SD_RES_EIO 0x03 /* I/O error */
47 #define SD_RES_VDI_EXIST 0x04 /* Vdi exists already */
48 #define SD_RES_INVALID_PARMS 0x05 /* Invalid parameters */
49 #define SD_RES_SYSTEM_ERROR 0x06 /* System error */
50 #define SD_RES_VDI_LOCKED 0x07 /* Vdi is locked */
51 #define SD_RES_NO_VDI 0x08 /* No vdi found */
52 #define SD_RES_NO_BASE_VDI 0x09 /* No base vdi found */
53 #define SD_RES_VDI_READ 0x0A /* Cannot read requested vdi */
54 #define SD_RES_VDI_WRITE 0x0B /* Cannot write requested vdi */
55 #define SD_RES_BASE_VDI_READ 0x0C /* Cannot read base vdi */
56 #define SD_RES_BASE_VDI_WRITE 0x0D /* Cannot write base vdi */
57 #define SD_RES_NO_TAG 0x0E /* Requested tag is not found */
58 #define SD_RES_STARTUP 0x0F /* Sheepdog is on starting up */
59 #define SD_RES_VDI_NOT_LOCKED 0x10 /* Vdi is not locked */
60 #define SD_RES_SHUTDOWN 0x11 /* Sheepdog is shutting down */
61 #define SD_RES_NO_MEM 0x12 /* Cannot allocate memory */
62 #define SD_RES_FULL_VDI 0x13 /* we already have the maximum vdis */
63 #define SD_RES_VER_MISMATCH 0x14 /* Protocol version mismatch */
64 #define SD_RES_NO_SPACE 0x15 /* Server has no room for new objects */
65 #define SD_RES_WAIT_FOR_FORMAT 0x16 /* Waiting for a format operation */
66 #define SD_RES_WAIT_FOR_JOIN 0x17 /* Waiting for other nodes joining */
67 #define SD_RES_JOIN_FAILED 0x18 /* Target node had failed to join sheepdog */
68 #define SD_RES_HALT 0x19 /* Sheepdog is stopped serving IO request */
73 * 0 - 19 (20 bits): data object space
74 * 20 - 31 (12 bits): reserved data object space
75 * 32 - 55 (24 bits): vdi object space
76 * 56 - 59 ( 4 bits): reserved vdi object space
77 * 60 - 63 ( 4 bits): object type identifier space
80 #define VDI_SPACE_SHIFT 32
81 #define VDI_BIT (UINT64_C(1) << 63)
82 #define VMSTATE_BIT (UINT64_C(1) << 62)
83 #define MAX_DATA_OBJS (UINT64_C(1) << 20)
84 #define MAX_CHILDREN 1024
85 #define SD_MAX_VDI_LEN 256
86 #define SD_MAX_VDI_TAG_LEN 256
87 #define SD_NR_VDIS (1U << 24)
88 #define SD_DATA_OBJ_SIZE (UINT64_C(1) << 22)
89 #define SD_MAX_VDI_SIZE (SD_DATA_OBJ_SIZE * MAX_DATA_OBJS)
90 #define SECTOR_SIZE 512
92 #define SD_INODE_SIZE (sizeof(SheepdogInode))
93 #define CURRENT_VDI_ID 0
95 typedef struct SheepdogReq
{
101 uint32_t data_length
;
102 uint32_t opcode_specific
[8];
105 typedef struct SheepdogRsp
{
111 uint32_t data_length
;
113 uint32_t opcode_specific
[7];
116 typedef struct SheepdogObjReq
{
122 uint32_t data_length
;
130 typedef struct SheepdogObjRsp
{
136 uint32_t data_length
;
142 typedef struct SheepdogVdiReq
{
148 uint32_t data_length
;
156 typedef struct SheepdogVdiRsp
{
162 uint32_t data_length
;
169 typedef struct SheepdogInode
{
170 char name
[SD_MAX_VDI_LEN
];
171 char tag
[SD_MAX_VDI_TAG_LEN
];
174 uint64_t vm_clock_nsec
;
176 uint64_t vm_state_size
;
177 uint16_t copy_policy
;
179 uint8_t block_size_shift
;
182 uint32_t parent_vdi_id
;
183 uint32_t child_vdi_id
[MAX_CHILDREN
];
184 uint32_t data_vdi_id
[MAX_DATA_OBJS
];
188 * 64 bit FNV-1a non-zero initial basis
190 #define FNV1A_64_INIT ((uint64_t)0xcbf29ce484222325ULL)
193 * 64 bit Fowler/Noll/Vo FNV-1a hash code
195 static inline uint64_t fnv_64a_buf(void *buf
, size_t len
, uint64_t hval
)
197 unsigned char *bp
= buf
;
198 unsigned char *be
= bp
+ len
;
200 hval
^= (uint64_t) *bp
++;
201 hval
+= (hval
<< 1) + (hval
<< 4) + (hval
<< 5) +
202 (hval
<< 7) + (hval
<< 8) + (hval
<< 40);
207 static inline bool is_data_obj_writable(SheepdogInode
*inode
, unsigned int idx
)
209 return inode
->vdi_id
== inode
->data_vdi_id
[idx
];
212 static inline bool is_data_obj(uint64_t oid
)
214 return !(VDI_BIT
& oid
);
217 static inline uint64_t data_oid_to_idx(uint64_t oid
)
219 return oid
& (MAX_DATA_OBJS
- 1);
222 static inline uint64_t vid_to_vdi_oid(uint32_t vid
)
224 return VDI_BIT
| ((uint64_t)vid
<< VDI_SPACE_SHIFT
);
227 static inline uint64_t vid_to_vmstate_oid(uint32_t vid
, uint32_t idx
)
229 return VMSTATE_BIT
| ((uint64_t)vid
<< VDI_SPACE_SHIFT
) | idx
;
232 static inline uint64_t vid_to_data_oid(uint32_t vid
, uint32_t idx
)
234 return ((uint64_t)vid
<< VDI_SPACE_SHIFT
) | idx
;
237 static inline bool is_snapshot(struct SheepdogInode
*inode
)
239 return !!inode
->snap_ctime
;
244 #define dprintf(fmt, args...) \
246 fprintf(stdout, "%s %d: " fmt, __func__, __LINE__, ##args); \
249 #define dprintf(fmt, args...)
252 typedef struct SheepdogAIOCB SheepdogAIOCB
;
254 typedef struct AIOReq
{
255 SheepdogAIOCB
*aiocb
;
256 unsigned int iov_offset
;
261 unsigned int data_len
;
265 QLIST_ENTRY(AIOReq
) aio_siblings
;
274 struct SheepdogAIOCB
{
275 BlockDriverAIOCB common
;
283 enum AIOCBState aiocb_type
;
285 Coroutine
*coroutine
;
286 void (*aio_done_func
)(SheepdogAIOCB
*);
292 typedef struct BDRVSheepdogState
{
295 uint32_t min_dirty_data_idx
;
296 uint32_t max_dirty_data_idx
;
298 char name
[SD_MAX_VDI_LEN
];
300 uint32_t cache_flags
;
310 uint32_t aioreq_seq_num
;
311 QLIST_HEAD(inflight_aio_head
, AIOReq
) inflight_aio_head
;
312 QLIST_HEAD(pending_aio_head
, AIOReq
) pending_aio_head
;
315 static const char * sd_strerror(int err
)
319 static const struct {
323 {SD_RES_SUCCESS
, "Success"},
324 {SD_RES_UNKNOWN
, "Unknown error"},
325 {SD_RES_NO_OBJ
, "No object found"},
326 {SD_RES_EIO
, "I/O error"},
327 {SD_RES_VDI_EXIST
, "VDI exists already"},
328 {SD_RES_INVALID_PARMS
, "Invalid parameters"},
329 {SD_RES_SYSTEM_ERROR
, "System error"},
330 {SD_RES_VDI_LOCKED
, "VDI is already locked"},
331 {SD_RES_NO_VDI
, "No vdi found"},
332 {SD_RES_NO_BASE_VDI
, "No base VDI found"},
333 {SD_RES_VDI_READ
, "Failed read the requested VDI"},
334 {SD_RES_VDI_WRITE
, "Failed to write the requested VDI"},
335 {SD_RES_BASE_VDI_READ
, "Failed to read the base VDI"},
336 {SD_RES_BASE_VDI_WRITE
, "Failed to write the base VDI"},
337 {SD_RES_NO_TAG
, "Failed to find the requested tag"},
338 {SD_RES_STARTUP
, "The system is still booting"},
339 {SD_RES_VDI_NOT_LOCKED
, "VDI isn't locked"},
340 {SD_RES_SHUTDOWN
, "The system is shutting down"},
341 {SD_RES_NO_MEM
, "Out of memory on the server"},
342 {SD_RES_FULL_VDI
, "We already have the maximum vdis"},
343 {SD_RES_VER_MISMATCH
, "Protocol version mismatch"},
344 {SD_RES_NO_SPACE
, "Server has no space for new objects"},
345 {SD_RES_WAIT_FOR_FORMAT
, "Sheepdog is waiting for a format operation"},
346 {SD_RES_WAIT_FOR_JOIN
, "Sheepdog is waiting for other nodes joining"},
347 {SD_RES_JOIN_FAILED
, "Target node had failed to join sheepdog"},
348 {SD_RES_HALT
, "Sheepdog is stopped serving IO request"},
351 for (i
= 0; i
< ARRAY_SIZE(errors
); ++i
) {
352 if (errors
[i
].err
== err
) {
353 return errors
[i
].desc
;
357 return "Invalid error code";
361 * Sheepdog I/O handling:
363 * 1. In sd_co_rw_vector, we send the I/O requests to the server and
364 * link the requests to the inflight_list in the
365 * BDRVSheepdogState. The function exits without waiting for
366 * receiving the response.
368 * 2. We receive the response in aio_read_response, the fd handler to
369 * the sheepdog connection. If metadata update is needed, we send
370 * the write request to the vdi object in sd_write_done, the write
371 * completion function. We switch back to sd_co_readv/writev after
372 * all the requests belonging to the AIOCB are finished.
375 static inline AIOReq
*alloc_aio_req(BDRVSheepdogState
*s
, SheepdogAIOCB
*acb
,
376 uint64_t oid
, unsigned int data_len
,
377 uint64_t offset
, uint8_t flags
,
378 uint64_t base_oid
, unsigned int iov_offset
)
382 aio_req
= g_malloc(sizeof(*aio_req
));
383 aio_req
->aiocb
= acb
;
384 aio_req
->iov_offset
= iov_offset
;
386 aio_req
->base_oid
= base_oid
;
387 aio_req
->offset
= offset
;
388 aio_req
->data_len
= data_len
;
389 aio_req
->flags
= flags
;
390 aio_req
->id
= s
->aioreq_seq_num
++;
396 static inline void free_aio_req(BDRVSheepdogState
*s
, AIOReq
*aio_req
)
398 SheepdogAIOCB
*acb
= aio_req
->aiocb
;
400 QLIST_REMOVE(aio_req
, aio_siblings
);
406 static void coroutine_fn
sd_finish_aiocb(SheepdogAIOCB
*acb
)
408 if (!acb
->canceled
) {
409 qemu_coroutine_enter(acb
->coroutine
, NULL
);
411 qemu_aio_release(acb
);
414 static void sd_aio_cancel(BlockDriverAIOCB
*blockacb
)
416 SheepdogAIOCB
*acb
= (SheepdogAIOCB
*)blockacb
;
419 * Sheepdog cannot cancel the requests which are already sent to
420 * the servers, so we just complete the request with -EIO here.
423 qemu_coroutine_enter(acb
->coroutine
, NULL
);
424 acb
->canceled
= true;
427 static const AIOCBInfo sd_aiocb_info
= {
428 .aiocb_size
= sizeof(SheepdogAIOCB
),
429 .cancel
= sd_aio_cancel
,
432 static SheepdogAIOCB
*sd_aio_setup(BlockDriverState
*bs
, QEMUIOVector
*qiov
,
433 int64_t sector_num
, int nb_sectors
)
437 acb
= qemu_aio_get(&sd_aiocb_info
, bs
, NULL
, NULL
);
441 acb
->sector_num
= sector_num
;
442 acb
->nb_sectors
= nb_sectors
;
444 acb
->aio_done_func
= NULL
;
445 acb
->canceled
= false;
446 acb
->coroutine
= qemu_coroutine_self();
452 static int connect_to_sdog(BDRVSheepdogState
*s
)
458 fd
= unix_connect(s
->host_spec
, &err
);
460 fd
= inet_connect(s
->host_spec
, &err
);
463 int ret
= socket_set_nodelay(fd
);
465 error_report("%s", strerror(errno
));
471 qerror_report_err(err
);
474 qemu_set_nonblock(fd
);
480 static coroutine_fn
int send_co_req(int sockfd
, SheepdogReq
*hdr
, void *data
,
485 ret
= qemu_co_send(sockfd
, hdr
, sizeof(*hdr
));
486 if (ret
< sizeof(*hdr
)) {
487 error_report("failed to send a req, %s", strerror(errno
));
491 ret
= qemu_co_send(sockfd
, data
, *wlen
);
493 error_report("failed to send a req, %s", strerror(errno
));
499 static void restart_co_req(void *opaque
)
501 Coroutine
*co
= opaque
;
503 qemu_coroutine_enter(co
, NULL
);
506 static int have_co_req(void *opaque
)
508 /* this handler is set only when there is a pending request, so
509 * always returns 1. */
513 typedef struct SheepdogReqCo
{
523 static coroutine_fn
void do_co_req(void *opaque
)
527 SheepdogReqCo
*srco
= opaque
;
528 int sockfd
= srco
->sockfd
;
529 SheepdogReq
*hdr
= srco
->hdr
;
530 void *data
= srco
->data
;
531 unsigned int *wlen
= srco
->wlen
;
532 unsigned int *rlen
= srco
->rlen
;
534 co
= qemu_coroutine_self();
535 qemu_aio_set_fd_handler(sockfd
, NULL
, restart_co_req
, have_co_req
, co
);
537 ret
= send_co_req(sockfd
, hdr
, data
, wlen
);
542 qemu_aio_set_fd_handler(sockfd
, restart_co_req
, NULL
, have_co_req
, co
);
544 ret
= qemu_co_recv(sockfd
, hdr
, sizeof(*hdr
));
545 if (ret
< sizeof(*hdr
)) {
546 error_report("failed to get a rsp, %s", strerror(errno
));
551 if (*rlen
> hdr
->data_length
) {
552 *rlen
= hdr
->data_length
;
556 ret
= qemu_co_recv(sockfd
, data
, *rlen
);
558 error_report("failed to get the data, %s", strerror(errno
));
565 /* there is at most one request for this sockfd, so it is safe to
566 * set each handler to NULL. */
567 qemu_aio_set_fd_handler(sockfd
, NULL
, NULL
, NULL
, NULL
);
570 srco
->finished
= true;
573 static int do_req(int sockfd
, SheepdogReq
*hdr
, void *data
,
574 unsigned int *wlen
, unsigned int *rlen
)
577 SheepdogReqCo srco
= {
587 if (qemu_in_coroutine()) {
590 co
= qemu_coroutine_create(do_co_req
);
591 qemu_coroutine_enter(co
, &srco
);
592 while (!srco
.finished
) {
600 static int coroutine_fn
add_aio_request(BDRVSheepdogState
*s
, AIOReq
*aio_req
,
601 struct iovec
*iov
, int niov
, bool create
,
602 enum AIOCBState aiocb_type
);
605 static AIOReq
*find_pending_req(BDRVSheepdogState
*s
, uint64_t oid
)
609 QLIST_FOREACH(aio_req
, &s
->pending_aio_head
, aio_siblings
) {
610 if (aio_req
->oid
== oid
) {
619 * This function searchs pending requests to the object `oid', and
622 static void coroutine_fn
send_pending_req(BDRVSheepdogState
*s
, uint64_t oid
)
628 while ((aio_req
= find_pending_req(s
, oid
)) != NULL
) {
629 acb
= aio_req
->aiocb
;
630 /* move aio_req from pending list to inflight one */
631 QLIST_REMOVE(aio_req
, aio_siblings
);
632 QLIST_INSERT_HEAD(&s
->inflight_aio_head
, aio_req
, aio_siblings
);
633 ret
= add_aio_request(s
, aio_req
, acb
->qiov
->iov
,
634 acb
->qiov
->niov
, false, acb
->aiocb_type
);
636 error_report("add_aio_request is failed");
637 free_aio_req(s
, aio_req
);
638 if (!acb
->nr_pending
) {
639 sd_finish_aiocb(acb
);
646 * Receive responses of the I/O requests.
648 * This function is registered as a fd handler, and called from the
649 * main loop when s->fd is ready for reading responses.
651 static void coroutine_fn
aio_read_response(void *opaque
)
654 BDRVSheepdogState
*s
= opaque
;
657 AIOReq
*aio_req
= NULL
;
661 if (QLIST_EMPTY(&s
->inflight_aio_head
)) {
666 ret
= qemu_co_recv(fd
, &rsp
, sizeof(rsp
));
668 error_report("failed to get the header, %s", strerror(errno
));
672 /* find the right aio_req from the inflight aio list */
673 QLIST_FOREACH(aio_req
, &s
->inflight_aio_head
, aio_siblings
) {
674 if (aio_req
->id
== rsp
.id
) {
679 error_report("cannot find aio_req %x", rsp
.id
);
683 acb
= aio_req
->aiocb
;
685 switch (acb
->aiocb_type
) {
686 case AIOCB_WRITE_UDATA
:
687 /* this coroutine context is no longer suitable for co_recv
688 * because we may send data to update vdi objects */
690 if (!is_data_obj(aio_req
->oid
)) {
693 idx
= data_oid_to_idx(aio_req
->oid
);
695 if (s
->inode
.data_vdi_id
[idx
] != s
->inode
.vdi_id
) {
697 * If the object is newly created one, we need to update
698 * the vdi object (metadata object). min_dirty_data_idx
699 * and max_dirty_data_idx are changed to include updated
700 * index between them.
702 if (rsp
.result
== SD_RES_SUCCESS
) {
703 s
->inode
.data_vdi_id
[idx
] = s
->inode
.vdi_id
;
704 s
->max_dirty_data_idx
= MAX(idx
, s
->max_dirty_data_idx
);
705 s
->min_dirty_data_idx
= MIN(idx
, s
->min_dirty_data_idx
);
708 * Some requests may be blocked because simultaneous
709 * create requests are not allowed, so we search the
710 * pending requests here.
712 send_pending_req(s
, aio_req
->oid
);
715 case AIOCB_READ_UDATA
:
716 ret
= qemu_co_recvv(fd
, acb
->qiov
->iov
, acb
->qiov
->niov
,
717 aio_req
->iov_offset
, rsp
.data_length
);
719 error_report("failed to get the data, %s", strerror(errno
));
723 case AIOCB_FLUSH_CACHE
:
724 if (rsp
.result
== SD_RES_INVALID_PARMS
) {
725 dprintf("disable cache since the server doesn't support it\n");
726 s
->cache_flags
= SD_FLAG_CMD_DIRECT
;
727 rsp
.result
= SD_RES_SUCCESS
;
732 if (rsp
.result
!= SD_RES_SUCCESS
) {
734 error_report("%s", sd_strerror(rsp
.result
));
737 free_aio_req(s
, aio_req
);
738 if (!acb
->nr_pending
) {
740 * We've finished all requests which belong to the AIOCB, so
741 * we can switch back to sd_co_readv/writev now.
743 acb
->aio_done_func(acb
);
749 static void co_read_response(void *opaque
)
751 BDRVSheepdogState
*s
= opaque
;
754 s
->co_recv
= qemu_coroutine_create(aio_read_response
);
757 qemu_coroutine_enter(s
->co_recv
, opaque
);
760 static void co_write_request(void *opaque
)
762 BDRVSheepdogState
*s
= opaque
;
764 qemu_coroutine_enter(s
->co_send
, NULL
);
767 static int aio_flush_request(void *opaque
)
769 BDRVSheepdogState
*s
= opaque
;
771 return !QLIST_EMPTY(&s
->inflight_aio_head
) ||
772 !QLIST_EMPTY(&s
->pending_aio_head
);
776 * Return a socket discriptor to read/write objects.
778 * We cannot use this discriptor for other operations because
779 * the block driver may be on waiting response from the server.
781 static int get_sheep_fd(BDRVSheepdogState
*s
)
785 fd
= connect_to_sdog(s
);
790 qemu_aio_set_fd_handler(fd
, co_read_response
, NULL
, aio_flush_request
, s
);
794 static int sd_parse_uri(BDRVSheepdogState
*s
, const char *filename
,
795 char *vdi
, uint32_t *snapid
, char *tag
)
798 QueryParams
*qp
= NULL
;
801 uri
= uri_parse(filename
);
807 if (!strcmp(uri
->scheme
, "sheepdog")) {
809 } else if (!strcmp(uri
->scheme
, "sheepdog+tcp")) {
811 } else if (!strcmp(uri
->scheme
, "sheepdog+unix")) {
818 if (uri
->path
== NULL
|| !strcmp(uri
->path
, "/")) {
822 pstrcpy(vdi
, SD_MAX_VDI_LEN
, uri
->path
+ 1);
824 qp
= query_params_parse(uri
->query
);
825 if (qp
->n
> 1 || (s
->is_unix
&& !qp
->n
) || (!s
->is_unix
&& qp
->n
)) {
831 /* sheepdog+unix:///vdiname?socket=path */
832 if (uri
->server
|| uri
->port
|| strcmp(qp
->p
[0].name
, "socket")) {
836 s
->host_spec
= g_strdup(qp
->p
[0].value
);
838 /* sheepdog[+tcp]://[host:port]/vdiname */
839 s
->host_spec
= g_strdup_printf("%s:%d", uri
->server
?: SD_DEFAULT_ADDR
,
840 uri
->port
?: SD_DEFAULT_PORT
);
845 *snapid
= strtoul(uri
->fragment
, NULL
, 10);
847 pstrcpy(tag
, SD_MAX_VDI_TAG_LEN
, uri
->fragment
);
850 *snapid
= CURRENT_VDI_ID
; /* search current vdi */
855 query_params_free(qp
);
862 * Parse a filename (old syntax)
864 * filename must be one of the following formats:
866 * 2. [vdiname]:[snapid]
868 * 4. [hostname]:[port]:[vdiname]
869 * 5. [hostname]:[port]:[vdiname]:[snapid]
870 * 6. [hostname]:[port]:[vdiname]:[tag]
872 * You can boot from the snapshot images by specifying `snapid` or
875 * You can run VMs outside the Sheepdog cluster by specifying
876 * `hostname' and `port' (experimental).
878 static int parse_vdiname(BDRVSheepdogState
*s
, const char *filename
,
879 char *vdi
, uint32_t *snapid
, char *tag
)
882 const char *host_spec
, *vdi_spec
;
885 strstart(filename
, "sheepdog:", (const char **)&filename
);
886 p
= q
= g_strdup(filename
);
888 /* count the number of separators */
898 /* use the first two tokens as host_spec. */
911 p
= strchr(vdi_spec
, ':');
916 uri
= g_strdup_printf("sheepdog://%s/%s", host_spec
, vdi_spec
);
918 ret
= sd_parse_uri(s
, uri
, vdi
, snapid
, tag
);
926 static int find_vdi_name(BDRVSheepdogState
*s
, char *filename
, uint32_t snapid
,
927 char *tag
, uint32_t *vid
, int for_snapshot
)
931 SheepdogVdiRsp
*rsp
= (SheepdogVdiRsp
*)&hdr
;
932 unsigned int wlen
, rlen
= 0;
933 char buf
[SD_MAX_VDI_LEN
+ SD_MAX_VDI_TAG_LEN
];
935 fd
= connect_to_sdog(s
);
940 /* This pair of strncpy calls ensures that the buffer is zero-filled,
941 * which is desirable since we'll soon be sending those bytes, and
942 * don't want the send_req to read uninitialized data.
944 strncpy(buf
, filename
, SD_MAX_VDI_LEN
);
945 strncpy(buf
+ SD_MAX_VDI_LEN
, tag
, SD_MAX_VDI_TAG_LEN
);
947 memset(&hdr
, 0, sizeof(hdr
));
949 hdr
.opcode
= SD_OP_GET_VDI_INFO
;
951 hdr
.opcode
= SD_OP_LOCK_VDI
;
953 wlen
= SD_MAX_VDI_LEN
+ SD_MAX_VDI_TAG_LEN
;
954 hdr
.proto_ver
= SD_PROTO_VER
;
955 hdr
.data_length
= wlen
;
957 hdr
.flags
= SD_FLAG_CMD_WRITE
;
959 ret
= do_req(fd
, (SheepdogReq
*)&hdr
, buf
, &wlen
, &rlen
);
964 if (rsp
->result
!= SD_RES_SUCCESS
) {
965 error_report("cannot get vdi info, %s, %s %d %s",
966 sd_strerror(rsp
->result
), filename
, snapid
, tag
);
967 if (rsp
->result
== SD_RES_NO_VDI
) {
982 static int coroutine_fn
add_aio_request(BDRVSheepdogState
*s
, AIOReq
*aio_req
,
983 struct iovec
*iov
, int niov
, bool create
,
984 enum AIOCBState aiocb_type
)
986 int nr_copies
= s
->inode
.nr_copies
;
988 unsigned int wlen
= 0;
990 uint64_t oid
= aio_req
->oid
;
991 unsigned int datalen
= aio_req
->data_len
;
992 uint64_t offset
= aio_req
->offset
;
993 uint8_t flags
= aio_req
->flags
;
994 uint64_t old_oid
= aio_req
->base_oid
;
1000 memset(&hdr
, 0, sizeof(hdr
));
1002 switch (aiocb_type
) {
1003 case AIOCB_FLUSH_CACHE
:
1004 hdr
.opcode
= SD_OP_FLUSH_VDI
;
1006 case AIOCB_READ_UDATA
:
1007 hdr
.opcode
= SD_OP_READ_OBJ
;
1010 case AIOCB_WRITE_UDATA
:
1012 hdr
.opcode
= SD_OP_CREATE_AND_WRITE_OBJ
;
1014 hdr
.opcode
= SD_OP_WRITE_OBJ
;
1017 hdr
.flags
= SD_FLAG_CMD_WRITE
| flags
;
1021 if (s
->cache_flags
) {
1022 hdr
.flags
|= s
->cache_flags
;
1026 hdr
.cow_oid
= old_oid
;
1027 hdr
.copies
= s
->inode
.nr_copies
;
1029 hdr
.data_length
= datalen
;
1030 hdr
.offset
= offset
;
1032 hdr
.id
= aio_req
->id
;
1034 qemu_co_mutex_lock(&s
->lock
);
1035 s
->co_send
= qemu_coroutine_self();
1036 qemu_aio_set_fd_handler(s
->fd
, co_read_response
, co_write_request
,
1037 aio_flush_request
, s
);
1038 socket_set_cork(s
->fd
, 1);
1041 ret
= qemu_co_send(s
->fd
, &hdr
, sizeof(hdr
));
1043 qemu_co_mutex_unlock(&s
->lock
);
1044 error_report("failed to send a req, %s", strerror(errno
));
1049 ret
= qemu_co_sendv(s
->fd
, iov
, niov
, aio_req
->iov_offset
, wlen
);
1051 qemu_co_mutex_unlock(&s
->lock
);
1052 error_report("failed to send a data, %s", strerror(errno
));
1057 socket_set_cork(s
->fd
, 0);
1058 qemu_aio_set_fd_handler(s
->fd
, co_read_response
, NULL
,
1059 aio_flush_request
, s
);
1060 qemu_co_mutex_unlock(&s
->lock
);
1065 static int read_write_object(int fd
, char *buf
, uint64_t oid
, int copies
,
1066 unsigned int datalen
, uint64_t offset
,
1067 bool write
, bool create
, uint32_t cache_flags
)
1070 SheepdogObjRsp
*rsp
= (SheepdogObjRsp
*)&hdr
;
1071 unsigned int wlen
, rlen
;
1074 memset(&hdr
, 0, sizeof(hdr
));
1079 hdr
.flags
= SD_FLAG_CMD_WRITE
;
1081 hdr
.opcode
= SD_OP_CREATE_AND_WRITE_OBJ
;
1083 hdr
.opcode
= SD_OP_WRITE_OBJ
;
1088 hdr
.opcode
= SD_OP_READ_OBJ
;
1091 hdr
.flags
|= cache_flags
;
1094 hdr
.data_length
= datalen
;
1095 hdr
.offset
= offset
;
1096 hdr
.copies
= copies
;
1098 ret
= do_req(fd
, (SheepdogReq
*)&hdr
, buf
, &wlen
, &rlen
);
1100 error_report("failed to send a request to the sheep");
1104 switch (rsp
->result
) {
1105 case SD_RES_SUCCESS
:
1108 error_report("%s", sd_strerror(rsp
->result
));
1113 static int read_object(int fd
, char *buf
, uint64_t oid
, int copies
,
1114 unsigned int datalen
, uint64_t offset
,
1115 uint32_t cache_flags
)
1117 return read_write_object(fd
, buf
, oid
, copies
, datalen
, offset
, false,
1118 false, cache_flags
);
1121 static int write_object(int fd
, char *buf
, uint64_t oid
, int copies
,
1122 unsigned int datalen
, uint64_t offset
, bool create
,
1123 uint32_t cache_flags
)
1125 return read_write_object(fd
, buf
, oid
, copies
, datalen
, offset
, true,
1126 create
, cache_flags
);
1129 static int sd_open(BlockDriverState
*bs
, const char *filename
,
1130 QDict
*options
, int flags
)
1134 BDRVSheepdogState
*s
= bs
->opaque
;
1135 char vdi
[SD_MAX_VDI_LEN
], tag
[SD_MAX_VDI_TAG_LEN
];
1139 QLIST_INIT(&s
->inflight_aio_head
);
1140 QLIST_INIT(&s
->pending_aio_head
);
1143 memset(vdi
, 0, sizeof(vdi
));
1144 memset(tag
, 0, sizeof(tag
));
1146 if (strstr(filename
, "://")) {
1147 ret
= sd_parse_uri(s
, filename
, vdi
, &snapid
, tag
);
1149 ret
= parse_vdiname(s
, filename
, vdi
, &snapid
, tag
);
1154 s
->fd
= get_sheep_fd(s
);
1160 ret
= find_vdi_name(s
, vdi
, snapid
, tag
, &vid
, 0);
1166 * QEMU block layer emulates writethrough cache as 'writeback + flush', so
1167 * we always set SD_FLAG_CMD_CACHE (writeback cache) as default.
1169 s
->cache_flags
= SD_FLAG_CMD_CACHE
;
1170 if (flags
& BDRV_O_NOCACHE
) {
1171 s
->cache_flags
= SD_FLAG_CMD_DIRECT
;
1174 if (snapid
|| tag
[0] != '\0') {
1175 dprintf("%" PRIx32
" snapshot inode was open.\n", vid
);
1176 s
->is_snapshot
= true;
1179 fd
= connect_to_sdog(s
);
1185 buf
= g_malloc(SD_INODE_SIZE
);
1186 ret
= read_object(fd
, buf
, vid_to_vdi_oid(vid
), 0, SD_INODE_SIZE
, 0,
1195 memcpy(&s
->inode
, buf
, sizeof(s
->inode
));
1196 s
->min_dirty_data_idx
= UINT32_MAX
;
1197 s
->max_dirty_data_idx
= 0;
1199 bs
->total_sectors
= s
->inode
.vdi_size
/ SECTOR_SIZE
;
1200 pstrcpy(s
->name
, sizeof(s
->name
), vdi
);
1201 qemu_co_mutex_init(&s
->lock
);
1205 qemu_aio_set_fd_handler(s
->fd
, NULL
, NULL
, NULL
, NULL
);
1213 static int do_sd_create(BDRVSheepdogState
*s
, char *filename
, int64_t vdi_size
,
1214 uint32_t base_vid
, uint32_t *vdi_id
, int snapshot
)
1217 SheepdogVdiRsp
*rsp
= (SheepdogVdiRsp
*)&hdr
;
1219 unsigned int wlen
, rlen
= 0;
1220 char buf
[SD_MAX_VDI_LEN
];
1222 fd
= connect_to_sdog(s
);
1227 /* FIXME: would it be better to fail (e.g., return -EIO) when filename
1228 * does not fit in buf? For now, just truncate and avoid buffer overrun.
1230 memset(buf
, 0, sizeof(buf
));
1231 pstrcpy(buf
, sizeof(buf
), filename
);
1233 memset(&hdr
, 0, sizeof(hdr
));
1234 hdr
.opcode
= SD_OP_NEW_VDI
;
1235 hdr
.vdi_id
= base_vid
;
1237 wlen
= SD_MAX_VDI_LEN
;
1239 hdr
.flags
= SD_FLAG_CMD_WRITE
;
1240 hdr
.snapid
= snapshot
;
1242 hdr
.data_length
= wlen
;
1243 hdr
.vdi_size
= vdi_size
;
1245 ret
= do_req(fd
, (SheepdogReq
*)&hdr
, buf
, &wlen
, &rlen
);
1253 if (rsp
->result
!= SD_RES_SUCCESS
) {
1254 error_report("%s, %s", sd_strerror(rsp
->result
), filename
);
1259 *vdi_id
= rsp
->vdi_id
;
1265 static int sd_prealloc(const char *filename
)
1267 BlockDriverState
*bs
= NULL
;
1268 uint32_t idx
, max_idx
;
1270 void *buf
= g_malloc0(SD_DATA_OBJ_SIZE
);
1273 ret
= bdrv_file_open(&bs
, filename
, NULL
, BDRV_O_RDWR
);
1278 vdi_size
= bdrv_getlength(bs
);
1283 max_idx
= DIV_ROUND_UP(vdi_size
, SD_DATA_OBJ_SIZE
);
1285 for (idx
= 0; idx
< max_idx
; idx
++) {
1287 * The created image can be a cloned image, so we need to read
1288 * a data from the source image.
1290 ret
= bdrv_pread(bs
, idx
* SD_DATA_OBJ_SIZE
, buf
, SD_DATA_OBJ_SIZE
);
1294 ret
= bdrv_pwrite(bs
, idx
* SD_DATA_OBJ_SIZE
, buf
, SD_DATA_OBJ_SIZE
);
1308 static int sd_create(const char *filename
, QEMUOptionParameter
*options
)
1311 uint32_t vid
= 0, base_vid
= 0;
1312 int64_t vdi_size
= 0;
1313 char *backing_file
= NULL
;
1314 BDRVSheepdogState
*s
;
1315 char vdi
[SD_MAX_VDI_LEN
], tag
[SD_MAX_VDI_TAG_LEN
];
1317 bool prealloc
= false;
1319 s
= g_malloc0(sizeof(BDRVSheepdogState
));
1321 memset(vdi
, 0, sizeof(vdi
));
1322 memset(tag
, 0, sizeof(tag
));
1323 if (strstr(filename
, "://")) {
1324 ret
= sd_parse_uri(s
, filename
, vdi
, &snapid
, tag
);
1326 ret
= parse_vdiname(s
, filename
, vdi
, &snapid
, tag
);
1332 while (options
&& options
->name
) {
1333 if (!strcmp(options
->name
, BLOCK_OPT_SIZE
)) {
1334 vdi_size
= options
->value
.n
;
1335 } else if (!strcmp(options
->name
, BLOCK_OPT_BACKING_FILE
)) {
1336 backing_file
= options
->value
.s
;
1337 } else if (!strcmp(options
->name
, BLOCK_OPT_PREALLOC
)) {
1338 if (!options
->value
.s
|| !strcmp(options
->value
.s
, "off")) {
1340 } else if (!strcmp(options
->value
.s
, "full")) {
1343 error_report("Invalid preallocation mode: '%s'",
1352 if (vdi_size
> SD_MAX_VDI_SIZE
) {
1353 error_report("too big image size");
1359 BlockDriverState
*bs
;
1360 BDRVSheepdogState
*s
;
1363 /* Currently, only Sheepdog backing image is supported. */
1364 drv
= bdrv_find_protocol(backing_file
);
1365 if (!drv
|| strcmp(drv
->protocol_name
, "sheepdog") != 0) {
1366 error_report("backing_file must be a sheepdog image");
1371 ret
= bdrv_file_open(&bs
, backing_file
, NULL
, 0);
1378 if (!is_snapshot(&s
->inode
)) {
1379 error_report("cannot clone from a non snapshot vdi");
1385 base_vid
= s
->inode
.vdi_id
;
1389 ret
= do_sd_create(s
, vdi
, vdi_size
, base_vid
, &vid
, 0);
1390 if (!prealloc
|| ret
) {
1394 ret
= sd_prealloc(filename
);
1400 static void sd_close(BlockDriverState
*bs
)
1402 BDRVSheepdogState
*s
= bs
->opaque
;
1404 SheepdogVdiRsp
*rsp
= (SheepdogVdiRsp
*)&hdr
;
1405 unsigned int wlen
, rlen
= 0;
1408 dprintf("%s\n", s
->name
);
1410 fd
= connect_to_sdog(s
);
1415 memset(&hdr
, 0, sizeof(hdr
));
1417 hdr
.opcode
= SD_OP_RELEASE_VDI
;
1418 hdr
.vdi_id
= s
->inode
.vdi_id
;
1419 wlen
= strlen(s
->name
) + 1;
1420 hdr
.data_length
= wlen
;
1421 hdr
.flags
= SD_FLAG_CMD_WRITE
;
1423 ret
= do_req(fd
, (SheepdogReq
*)&hdr
, s
->name
, &wlen
, &rlen
);
1427 if (!ret
&& rsp
->result
!= SD_RES_SUCCESS
&&
1428 rsp
->result
!= SD_RES_VDI_NOT_LOCKED
) {
1429 error_report("%s, %s", sd_strerror(rsp
->result
), s
->name
);
1432 qemu_aio_set_fd_handler(s
->fd
, NULL
, NULL
, NULL
, NULL
);
1434 g_free(s
->host_spec
);
1437 static int64_t sd_getlength(BlockDriverState
*bs
)
1439 BDRVSheepdogState
*s
= bs
->opaque
;
1441 return s
->inode
.vdi_size
;
1444 static int sd_truncate(BlockDriverState
*bs
, int64_t offset
)
1446 BDRVSheepdogState
*s
= bs
->opaque
;
1448 unsigned int datalen
;
1450 if (offset
< s
->inode
.vdi_size
) {
1451 error_report("shrinking is not supported");
1453 } else if (offset
> SD_MAX_VDI_SIZE
) {
1454 error_report("too big image size");
1458 fd
= connect_to_sdog(s
);
1463 /* we don't need to update entire object */
1464 datalen
= SD_INODE_SIZE
- sizeof(s
->inode
.data_vdi_id
);
1465 s
->inode
.vdi_size
= offset
;
1466 ret
= write_object(fd
, (char *)&s
->inode
, vid_to_vdi_oid(s
->inode
.vdi_id
),
1467 s
->inode
.nr_copies
, datalen
, 0, false, s
->cache_flags
);
1471 error_report("failed to update an inode.");
1478 * This function is called after writing data objects. If we need to
1479 * update metadata, this sends a write request to the vdi object.
1480 * Otherwise, this switches back to sd_co_readv/writev.
1482 static void coroutine_fn
sd_write_done(SheepdogAIOCB
*acb
)
1485 BDRVSheepdogState
*s
= acb
->common
.bs
->opaque
;
1488 uint32_t offset
, data_len
, mn
, mx
;
1490 mn
= s
->min_dirty_data_idx
;
1491 mx
= s
->max_dirty_data_idx
;
1493 /* we need to update the vdi object. */
1494 offset
= sizeof(s
->inode
) - sizeof(s
->inode
.data_vdi_id
) +
1495 mn
* sizeof(s
->inode
.data_vdi_id
[0]);
1496 data_len
= (mx
- mn
+ 1) * sizeof(s
->inode
.data_vdi_id
[0]);
1498 s
->min_dirty_data_idx
= UINT32_MAX
;
1499 s
->max_dirty_data_idx
= 0;
1501 iov
.iov_base
= &s
->inode
;
1502 iov
.iov_len
= sizeof(s
->inode
);
1503 aio_req
= alloc_aio_req(s
, acb
, vid_to_vdi_oid(s
->inode
.vdi_id
),
1504 data_len
, offset
, 0, 0, offset
);
1505 QLIST_INSERT_HEAD(&s
->inflight_aio_head
, aio_req
, aio_siblings
);
1506 ret
= add_aio_request(s
, aio_req
, &iov
, 1, false, AIOCB_WRITE_UDATA
);
1508 free_aio_req(s
, aio_req
);
1513 acb
->aio_done_func
= sd_finish_aiocb
;
1514 acb
->aiocb_type
= AIOCB_WRITE_UDATA
;
1518 sd_finish_aiocb(acb
);
1522 * Create a writable VDI from a snapshot
1524 static int sd_create_branch(BDRVSheepdogState
*s
)
1530 dprintf("%" PRIx32
" is snapshot.\n", s
->inode
.vdi_id
);
1532 buf
= g_malloc(SD_INODE_SIZE
);
1534 ret
= do_sd_create(s
, s
->name
, s
->inode
.vdi_size
, s
->inode
.vdi_id
, &vid
, 1);
1539 dprintf("%" PRIx32
" is created.\n", vid
);
1541 fd
= connect_to_sdog(s
);
1547 ret
= read_object(fd
, buf
, vid_to_vdi_oid(vid
), s
->inode
.nr_copies
,
1548 SD_INODE_SIZE
, 0, s
->cache_flags
);
1556 memcpy(&s
->inode
, buf
, sizeof(s
->inode
));
1558 s
->is_snapshot
= false;
1560 dprintf("%" PRIx32
" was newly created.\n", s
->inode
.vdi_id
);
1569 * Send I/O requests to the server.
1571 * This function sends requests to the server, links the requests to
1572 * the inflight_list in BDRVSheepdogState, and exits without
1573 * waiting the response. The responses are received in the
1574 * `aio_read_response' function which is called from the main loop as
1577 * Returns 1 when we need to wait a response, 0 when there is no sent
1578 * request and -errno in error cases.
1580 static int coroutine_fn
sd_co_rw_vector(void *p
)
1582 SheepdogAIOCB
*acb
= p
;
1584 unsigned long len
, done
= 0, total
= acb
->nb_sectors
* SECTOR_SIZE
;
1585 unsigned long idx
= acb
->sector_num
* SECTOR_SIZE
/ SD_DATA_OBJ_SIZE
;
1587 uint64_t offset
= (acb
->sector_num
* SECTOR_SIZE
) % SD_DATA_OBJ_SIZE
;
1588 BDRVSheepdogState
*s
= acb
->common
.bs
->opaque
;
1589 SheepdogInode
*inode
= &s
->inode
;
1592 if (acb
->aiocb_type
== AIOCB_WRITE_UDATA
&& s
->is_snapshot
) {
1594 * In the case we open the snapshot VDI, Sheepdog creates the
1595 * writable VDI when we do a write operation first.
1597 ret
= sd_create_branch(s
);
1605 * Make sure we don't free the aiocb before we are done with all requests.
1606 * This additional reference is dropped at the end of this function.
1610 while (done
!= total
) {
1612 uint64_t old_oid
= 0;
1613 bool create
= false;
1615 oid
= vid_to_data_oid(inode
->data_vdi_id
[idx
], idx
);
1617 len
= MIN(total
- done
, SD_DATA_OBJ_SIZE
- offset
);
1619 switch (acb
->aiocb_type
) {
1620 case AIOCB_READ_UDATA
:
1621 if (!inode
->data_vdi_id
[idx
]) {
1622 qemu_iovec_memset(acb
->qiov
, done
, 0, len
);
1626 case AIOCB_WRITE_UDATA
:
1627 if (!inode
->data_vdi_id
[idx
]) {
1629 } else if (!is_data_obj_writable(inode
, idx
)) {
1633 flags
= SD_FLAG_CMD_COW
;
1641 dprintf("update ino (%" PRIu32
") %" PRIu64
" %" PRIu64
" %ld\n",
1643 vid_to_data_oid(inode
->data_vdi_id
[idx
], idx
), idx
);
1644 oid
= vid_to_data_oid(inode
->vdi_id
, idx
);
1645 dprintf("new oid %" PRIx64
"\n", oid
);
1648 aio_req
= alloc_aio_req(s
, acb
, oid
, len
, offset
, flags
, old_oid
, done
);
1652 QLIST_FOREACH(areq
, &s
->inflight_aio_head
, aio_siblings
) {
1653 if (areq
->oid
== oid
) {
1655 * Sheepdog cannot handle simultaneous create
1656 * requests to the same object. So we cannot send
1657 * the request until the previous request
1661 aio_req
->base_oid
= 0;
1662 QLIST_INSERT_HEAD(&s
->pending_aio_head
, aio_req
,
1669 QLIST_INSERT_HEAD(&s
->inflight_aio_head
, aio_req
, aio_siblings
);
1670 ret
= add_aio_request(s
, aio_req
, acb
->qiov
->iov
, acb
->qiov
->niov
,
1671 create
, acb
->aiocb_type
);
1673 error_report("add_aio_request is failed");
1674 free_aio_req(s
, aio_req
);
1684 if (!--acb
->nr_pending
) {
1690 static coroutine_fn
int sd_co_writev(BlockDriverState
*bs
, int64_t sector_num
,
1691 int nb_sectors
, QEMUIOVector
*qiov
)
1696 if (bs
->growable
&& sector_num
+ nb_sectors
> bs
->total_sectors
) {
1697 ret
= sd_truncate(bs
, (sector_num
+ nb_sectors
) * SECTOR_SIZE
);
1701 bs
->total_sectors
= sector_num
+ nb_sectors
;
1704 acb
= sd_aio_setup(bs
, qiov
, sector_num
, nb_sectors
);
1705 acb
->aio_done_func
= sd_write_done
;
1706 acb
->aiocb_type
= AIOCB_WRITE_UDATA
;
1708 ret
= sd_co_rw_vector(acb
);
1710 qemu_aio_release(acb
);
1714 qemu_coroutine_yield();
1719 static coroutine_fn
int sd_co_readv(BlockDriverState
*bs
, int64_t sector_num
,
1720 int nb_sectors
, QEMUIOVector
*qiov
)
1725 acb
= sd_aio_setup(bs
, qiov
, sector_num
, nb_sectors
);
1726 acb
->aiocb_type
= AIOCB_READ_UDATA
;
1727 acb
->aio_done_func
= sd_finish_aiocb
;
1729 ret
= sd_co_rw_vector(acb
);
1731 qemu_aio_release(acb
);
1735 qemu_coroutine_yield();
1740 static int coroutine_fn
sd_co_flush_to_disk(BlockDriverState
*bs
)
1742 BDRVSheepdogState
*s
= bs
->opaque
;
1747 if (s
->cache_flags
!= SD_FLAG_CMD_CACHE
) {
1751 acb
= sd_aio_setup(bs
, NULL
, 0, 0);
1752 acb
->aiocb_type
= AIOCB_FLUSH_CACHE
;
1753 acb
->aio_done_func
= sd_finish_aiocb
;
1755 aio_req
= alloc_aio_req(s
, acb
, vid_to_vdi_oid(s
->inode
.vdi_id
),
1757 QLIST_INSERT_HEAD(&s
->inflight_aio_head
, aio_req
, aio_siblings
);
1758 ret
= add_aio_request(s
, aio_req
, NULL
, 0, false, acb
->aiocb_type
);
1760 error_report("add_aio_request is failed");
1761 free_aio_req(s
, aio_req
);
1762 qemu_aio_release(acb
);
1766 qemu_coroutine_yield();
1770 static int sd_snapshot_create(BlockDriverState
*bs
, QEMUSnapshotInfo
*sn_info
)
1772 BDRVSheepdogState
*s
= bs
->opaque
;
1775 SheepdogInode
*inode
;
1776 unsigned int datalen
;
1778 dprintf("sn_info: name %s id_str %s s: name %s vm_state_size %" PRId64
" "
1779 "is_snapshot %d\n", sn_info
->name
, sn_info
->id_str
,
1780 s
->name
, sn_info
->vm_state_size
, s
->is_snapshot
);
1782 if (s
->is_snapshot
) {
1783 error_report("You can't create a snapshot of a snapshot VDI, "
1784 "%s (%" PRIu32
").", s
->name
, s
->inode
.vdi_id
);
1789 dprintf("%s %s\n", sn_info
->name
, sn_info
->id_str
);
1791 s
->inode
.vm_state_size
= sn_info
->vm_state_size
;
1792 s
->inode
.vm_clock_nsec
= sn_info
->vm_clock_nsec
;
1793 /* It appears that inode.tag does not require a NUL terminator,
1794 * which means this use of strncpy is ok.
1796 strncpy(s
->inode
.tag
, sn_info
->name
, sizeof(s
->inode
.tag
));
1797 /* we don't need to update entire object */
1798 datalen
= SD_INODE_SIZE
- sizeof(s
->inode
.data_vdi_id
);
1800 /* refresh inode. */
1801 fd
= connect_to_sdog(s
);
1807 ret
= write_object(fd
, (char *)&s
->inode
, vid_to_vdi_oid(s
->inode
.vdi_id
),
1808 s
->inode
.nr_copies
, datalen
, 0, false, s
->cache_flags
);
1810 error_report("failed to write snapshot's inode.");
1814 ret
= do_sd_create(s
, s
->name
, s
->inode
.vdi_size
, s
->inode
.vdi_id
, &new_vid
,
1817 error_report("failed to create inode for snapshot. %s",
1822 inode
= (SheepdogInode
*)g_malloc(datalen
);
1824 ret
= read_object(fd
, (char *)inode
, vid_to_vdi_oid(new_vid
),
1825 s
->inode
.nr_copies
, datalen
, 0, s
->cache_flags
);
1828 error_report("failed to read new inode info. %s", strerror(errno
));
1832 memcpy(&s
->inode
, inode
, datalen
);
1833 dprintf("s->inode: name %s snap_id %x oid %x\n",
1834 s
->inode
.name
, s
->inode
.snap_id
, s
->inode
.vdi_id
);
1841 static int sd_snapshot_goto(BlockDriverState
*bs
, const char *snapshot_id
)
1843 BDRVSheepdogState
*s
= bs
->opaque
;
1844 BDRVSheepdogState
*old_s
;
1845 char vdi
[SD_MAX_VDI_LEN
], tag
[SD_MAX_VDI_TAG_LEN
];
1848 uint32_t snapid
= 0;
1851 old_s
= g_malloc(sizeof(BDRVSheepdogState
));
1853 memcpy(old_s
, s
, sizeof(BDRVSheepdogState
));
1855 pstrcpy(vdi
, sizeof(vdi
), s
->name
);
1857 snapid
= strtoul(snapshot_id
, NULL
, 10);
1861 pstrcpy(tag
, sizeof(tag
), s
->name
);
1864 ret
= find_vdi_name(s
, vdi
, snapid
, tag
, &vid
, 1);
1866 error_report("Failed to find_vdi_name");
1870 fd
= connect_to_sdog(s
);
1876 buf
= g_malloc(SD_INODE_SIZE
);
1877 ret
= read_object(fd
, buf
, vid_to_vdi_oid(vid
), s
->inode
.nr_copies
,
1878 SD_INODE_SIZE
, 0, s
->cache_flags
);
1886 memcpy(&s
->inode
, buf
, sizeof(s
->inode
));
1888 if (!s
->inode
.vm_state_size
) {
1889 error_report("Invalid snapshot");
1894 s
->is_snapshot
= true;
1901 /* recover bdrv_sd_state */
1902 memcpy(s
, old_s
, sizeof(BDRVSheepdogState
));
1906 error_report("failed to open. recover old bdrv_sd_state.");
1911 static int sd_snapshot_delete(BlockDriverState
*bs
, const char *snapshot_id
)
1913 /* FIXME: Delete specified snapshot id. */
1917 static int sd_snapshot_list(BlockDriverState
*bs
, QEMUSnapshotInfo
**psn_tab
)
1919 BDRVSheepdogState
*s
= bs
->opaque
;
1921 int fd
, nr
= 1024, ret
, max
= BITS_TO_LONGS(SD_NR_VDIS
) * sizeof(long);
1922 QEMUSnapshotInfo
*sn_tab
= NULL
;
1923 unsigned wlen
, rlen
;
1925 static SheepdogInode inode
;
1926 unsigned long *vdi_inuse
;
1927 unsigned int start_nr
;
1931 vdi_inuse
= g_malloc(max
);
1933 fd
= connect_to_sdog(s
);
1942 memset(&req
, 0, sizeof(req
));
1944 req
.opcode
= SD_OP_READ_VDIS
;
1945 req
.data_length
= max
;
1947 ret
= do_req(fd
, (SheepdogReq
*)&req
, vdi_inuse
, &wlen
, &rlen
);
1954 sn_tab
= g_malloc0(nr
* sizeof(*sn_tab
));
1956 /* calculate a vdi id with hash function */
1957 hval
= fnv_64a_buf(s
->name
, strlen(s
->name
), FNV1A_64_INIT
);
1958 start_nr
= hval
& (SD_NR_VDIS
- 1);
1960 fd
= connect_to_sdog(s
);
1966 for (vid
= start_nr
; found
< nr
; vid
= (vid
+ 1) % SD_NR_VDIS
) {
1967 if (!test_bit(vid
, vdi_inuse
)) {
1971 /* we don't need to read entire object */
1972 ret
= read_object(fd
, (char *)&inode
, vid_to_vdi_oid(vid
),
1973 0, SD_INODE_SIZE
- sizeof(inode
.data_vdi_id
), 0,
1980 if (!strcmp(inode
.name
, s
->name
) && is_snapshot(&inode
)) {
1981 sn_tab
[found
].date_sec
= inode
.snap_ctime
>> 32;
1982 sn_tab
[found
].date_nsec
= inode
.snap_ctime
& 0xffffffff;
1983 sn_tab
[found
].vm_state_size
= inode
.vm_state_size
;
1984 sn_tab
[found
].vm_clock_nsec
= inode
.vm_clock_nsec
;
1986 snprintf(sn_tab
[found
].id_str
, sizeof(sn_tab
[found
].id_str
), "%u",
1988 pstrcpy(sn_tab
[found
].name
,
1989 MIN(sizeof(sn_tab
[found
].name
), sizeof(inode
.tag
)),
2008 static int do_load_save_vmstate(BDRVSheepdogState
*s
, uint8_t *data
,
2009 int64_t pos
, int size
, int load
)
2012 int fd
, ret
= 0, remaining
= size
;
2013 unsigned int data_len
;
2014 uint64_t vmstate_oid
;
2018 fd
= connect_to_sdog(s
);
2024 vdi_index
= pos
/ SD_DATA_OBJ_SIZE
;
2025 offset
= pos
% SD_DATA_OBJ_SIZE
;
2027 data_len
= MIN(remaining
, SD_DATA_OBJ_SIZE
- offset
);
2029 vmstate_oid
= vid_to_vmstate_oid(s
->inode
.vdi_id
, vdi_index
);
2031 create
= (offset
== 0);
2033 ret
= read_object(fd
, (char *)data
, vmstate_oid
,
2034 s
->inode
.nr_copies
, data_len
, offset
,
2037 ret
= write_object(fd
, (char *)data
, vmstate_oid
,
2038 s
->inode
.nr_copies
, data_len
, offset
, create
,
2043 error_report("failed to save vmstate %s", strerror(errno
));
2049 remaining
-= data_len
;
2057 static int sd_save_vmstate(BlockDriverState
*bs
, QEMUIOVector
*qiov
,
2060 BDRVSheepdogState
*s
= bs
->opaque
;
2064 buf
= qemu_blockalign(bs
, qiov
->size
);
2065 qemu_iovec_to_buf(qiov
, 0, buf
, qiov
->size
);
2066 ret
= do_load_save_vmstate(s
, (uint8_t *) buf
, pos
, qiov
->size
, 0);
2072 static int sd_load_vmstate(BlockDriverState
*bs
, uint8_t *data
,
2073 int64_t pos
, int size
)
2075 BDRVSheepdogState
*s
= bs
->opaque
;
2077 return do_load_save_vmstate(s
, data
, pos
, size
, 1);
2081 static QEMUOptionParameter sd_create_options
[] = {
2083 .name
= BLOCK_OPT_SIZE
,
2085 .help
= "Virtual disk size"
2088 .name
= BLOCK_OPT_BACKING_FILE
,
2090 .help
= "File name of a base image"
2093 .name
= BLOCK_OPT_PREALLOC
,
2095 .help
= "Preallocation mode (allowed values: off, full)"
2100 static BlockDriver bdrv_sheepdog
= {
2101 .format_name
= "sheepdog",
2102 .protocol_name
= "sheepdog",
2103 .instance_size
= sizeof(BDRVSheepdogState
),
2104 .bdrv_file_open
= sd_open
,
2105 .bdrv_close
= sd_close
,
2106 .bdrv_create
= sd_create
,
2107 .bdrv_getlength
= sd_getlength
,
2108 .bdrv_truncate
= sd_truncate
,
2110 .bdrv_co_readv
= sd_co_readv
,
2111 .bdrv_co_writev
= sd_co_writev
,
2112 .bdrv_co_flush_to_disk
= sd_co_flush_to_disk
,
2114 .bdrv_snapshot_create
= sd_snapshot_create
,
2115 .bdrv_snapshot_goto
= sd_snapshot_goto
,
2116 .bdrv_snapshot_delete
= sd_snapshot_delete
,
2117 .bdrv_snapshot_list
= sd_snapshot_list
,
2119 .bdrv_save_vmstate
= sd_save_vmstate
,
2120 .bdrv_load_vmstate
= sd_load_vmstate
,
2122 .create_options
= sd_create_options
,
2125 static BlockDriver bdrv_sheepdog_tcp
= {
2126 .format_name
= "sheepdog",
2127 .protocol_name
= "sheepdog+tcp",
2128 .instance_size
= sizeof(BDRVSheepdogState
),
2129 .bdrv_file_open
= sd_open
,
2130 .bdrv_close
= sd_close
,
2131 .bdrv_create
= sd_create
,
2132 .bdrv_getlength
= sd_getlength
,
2133 .bdrv_truncate
= sd_truncate
,
2135 .bdrv_co_readv
= sd_co_readv
,
2136 .bdrv_co_writev
= sd_co_writev
,
2137 .bdrv_co_flush_to_disk
= sd_co_flush_to_disk
,
2139 .bdrv_snapshot_create
= sd_snapshot_create
,
2140 .bdrv_snapshot_goto
= sd_snapshot_goto
,
2141 .bdrv_snapshot_delete
= sd_snapshot_delete
,
2142 .bdrv_snapshot_list
= sd_snapshot_list
,
2144 .bdrv_save_vmstate
= sd_save_vmstate
,
2145 .bdrv_load_vmstate
= sd_load_vmstate
,
2147 .create_options
= sd_create_options
,
2150 static BlockDriver bdrv_sheepdog_unix
= {
2151 .format_name
= "sheepdog",
2152 .protocol_name
= "sheepdog+unix",
2153 .instance_size
= sizeof(BDRVSheepdogState
),
2154 .bdrv_file_open
= sd_open
,
2155 .bdrv_close
= sd_close
,
2156 .bdrv_create
= sd_create
,
2157 .bdrv_getlength
= sd_getlength
,
2158 .bdrv_truncate
= sd_truncate
,
2160 .bdrv_co_readv
= sd_co_readv
,
2161 .bdrv_co_writev
= sd_co_writev
,
2162 .bdrv_co_flush_to_disk
= sd_co_flush_to_disk
,
2164 .bdrv_snapshot_create
= sd_snapshot_create
,
2165 .bdrv_snapshot_goto
= sd_snapshot_goto
,
2166 .bdrv_snapshot_delete
= sd_snapshot_delete
,
2167 .bdrv_snapshot_list
= sd_snapshot_list
,
2169 .bdrv_save_vmstate
= sd_save_vmstate
,
2170 .bdrv_load_vmstate
= sd_load_vmstate
,
2172 .create_options
= sd_create_options
,
2175 static void bdrv_sheepdog_init(void)
2177 bdrv_register(&bdrv_sheepdog
);
2178 bdrv_register(&bdrv_sheepdog_tcp
);
2179 bdrv_register(&bdrv_sheepdog_unix
);
2181 block_init(bdrv_sheepdog_init
);