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1/*
2 * Copyright (C) 2009-2010 Nippon Telegraph and Telephone Corporation.
3 *
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.
7 *
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/>.
6b620ca3
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10 *
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.
33b1db1c 13 */
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14
15#include "qemu-common.h"
5d6768e3 16#include "qemu/uri.h"
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17#include "qemu/error-report.h"
18#include "qemu/sockets.h"
737e150e 19#include "block/block_int.h"
1de7afc9 20#include "qemu/bitops.h"
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21
22#define SD_PROTO_VER 0x01
23
24#define SD_DEFAULT_ADDR "localhost"
25af257d 25#define SD_DEFAULT_PORT 7000
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26
27#define SD_OP_CREATE_AND_WRITE_OBJ 0x01
28#define SD_OP_READ_OBJ 0x02
29#define SD_OP_WRITE_OBJ 0x03
30
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
47622c44 36#define SD_OP_FLUSH_VDI 0x16
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37
38#define SD_FLAG_CMD_WRITE 0x01
39#define SD_FLAG_CMD_COW 0x02
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40#define SD_FLAG_CMD_CACHE 0x04 /* Writeback mode for cache */
41#define SD_FLAG_CMD_DIRECT 0x08 /* Don't use cache */
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42
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
69/*
70 * Object ID rules
71 *
72 * 0 - 19 (20 bits): data object space
73 * 20 - 31 (12 bits): reserved data object space
74 * 32 - 55 (24 bits): vdi object space
75 * 56 - 59 ( 4 bits): reserved vdi object space
7acae208 76 * 60 - 63 ( 4 bits): object type identifier space
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77 */
78
79#define VDI_SPACE_SHIFT 32
80#define VDI_BIT (UINT64_C(1) << 63)
81#define VMSTATE_BIT (UINT64_C(1) << 62)
82#define MAX_DATA_OBJS (UINT64_C(1) << 20)
83#define MAX_CHILDREN 1024
84#define SD_MAX_VDI_LEN 256
85#define SD_MAX_VDI_TAG_LEN 256
86#define SD_NR_VDIS (1U << 24)
87#define SD_DATA_OBJ_SIZE (UINT64_C(1) << 22)
88#define SD_MAX_VDI_SIZE (SD_DATA_OBJ_SIZE * MAX_DATA_OBJS)
89#define SECTOR_SIZE 512
90
91#define SD_INODE_SIZE (sizeof(SheepdogInode))
92#define CURRENT_VDI_ID 0
93
94typedef struct SheepdogReq {
95 uint8_t proto_ver;
96 uint8_t opcode;
97 uint16_t flags;
98 uint32_t epoch;
99 uint32_t id;
100 uint32_t data_length;
101 uint32_t opcode_specific[8];
102} SheepdogReq;
103
104typedef struct SheepdogRsp {
105 uint8_t proto_ver;
106 uint8_t opcode;
107 uint16_t flags;
108 uint32_t epoch;
109 uint32_t id;
110 uint32_t data_length;
111 uint32_t result;
112 uint32_t opcode_specific[7];
113} SheepdogRsp;
114
115typedef struct SheepdogObjReq {
116 uint8_t proto_ver;
117 uint8_t opcode;
118 uint16_t flags;
119 uint32_t epoch;
120 uint32_t id;
121 uint32_t data_length;
122 uint64_t oid;
123 uint64_t cow_oid;
124 uint32_t copies;
125 uint32_t rsvd;
126 uint64_t offset;
127} SheepdogObjReq;
128
129typedef struct SheepdogObjRsp {
130 uint8_t proto_ver;
131 uint8_t opcode;
132 uint16_t flags;
133 uint32_t epoch;
134 uint32_t id;
135 uint32_t data_length;
136 uint32_t result;
137 uint32_t copies;
138 uint32_t pad[6];
139} SheepdogObjRsp;
140
141typedef struct SheepdogVdiReq {
142 uint8_t proto_ver;
143 uint8_t opcode;
144 uint16_t flags;
145 uint32_t epoch;
146 uint32_t id;
147 uint32_t data_length;
148 uint64_t vdi_size;
6f74c260 149 uint32_t vdi_id;
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150 uint32_t copies;
151 uint32_t snapid;
152 uint32_t pad[3];
153} SheepdogVdiReq;
154
155typedef struct SheepdogVdiRsp {
156 uint8_t proto_ver;
157 uint8_t opcode;
158 uint16_t flags;
159 uint32_t epoch;
160 uint32_t id;
161 uint32_t data_length;
162 uint32_t result;
163 uint32_t rsvd;
164 uint32_t vdi_id;
165 uint32_t pad[5];
166} SheepdogVdiRsp;
167
168typedef struct SheepdogInode {
169 char name[SD_MAX_VDI_LEN];
170 char tag[SD_MAX_VDI_TAG_LEN];
171 uint64_t ctime;
172 uint64_t snap_ctime;
173 uint64_t vm_clock_nsec;
174 uint64_t vdi_size;
175 uint64_t vm_state_size;
176 uint16_t copy_policy;
177 uint8_t nr_copies;
178 uint8_t block_size_shift;
179 uint32_t snap_id;
180 uint32_t vdi_id;
181 uint32_t parent_vdi_id;
182 uint32_t child_vdi_id[MAX_CHILDREN];
183 uint32_t data_vdi_id[MAX_DATA_OBJS];
184} SheepdogInode;
185
186/*
187 * 64 bit FNV-1a non-zero initial basis
188 */
189#define FNV1A_64_INIT ((uint64_t)0xcbf29ce484222325ULL)
190
191/*
192 * 64 bit Fowler/Noll/Vo FNV-1a hash code
193 */
194static inline uint64_t fnv_64a_buf(void *buf, size_t len, uint64_t hval)
195{
196 unsigned char *bp = buf;
197 unsigned char *be = bp + len;
198 while (bp < be) {
199 hval ^= (uint64_t) *bp++;
200 hval += (hval << 1) + (hval << 4) + (hval << 5) +
201 (hval << 7) + (hval << 8) + (hval << 40);
202 }
203 return hval;
204}
205
2f536801 206static inline bool is_data_obj_writable(SheepdogInode *inode, unsigned int idx)
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207{
208 return inode->vdi_id == inode->data_vdi_id[idx];
209}
210
2f536801 211static inline bool is_data_obj(uint64_t oid)
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212{
213 return !(VDI_BIT & oid);
214}
215
216static inline uint64_t data_oid_to_idx(uint64_t oid)
217{
218 return oid & (MAX_DATA_OBJS - 1);
219}
220
221static inline uint64_t vid_to_vdi_oid(uint32_t vid)
222{
223 return VDI_BIT | ((uint64_t)vid << VDI_SPACE_SHIFT);
224}
225
226static inline uint64_t vid_to_vmstate_oid(uint32_t vid, uint32_t idx)
227{
228 return VMSTATE_BIT | ((uint64_t)vid << VDI_SPACE_SHIFT) | idx;
229}
230
231static inline uint64_t vid_to_data_oid(uint32_t vid, uint32_t idx)
232{
233 return ((uint64_t)vid << VDI_SPACE_SHIFT) | idx;
234}
235
2f536801 236static inline bool is_snapshot(struct SheepdogInode *inode)
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237{
238 return !!inode->snap_ctime;
239}
240
241#undef dprintf
242#ifdef DEBUG_SDOG
243#define dprintf(fmt, args...) \
244 do { \
245 fprintf(stdout, "%s %d: " fmt, __func__, __LINE__, ##args); \
246 } while (0)
247#else
248#define dprintf(fmt, args...)
249#endif
250
251typedef struct SheepdogAIOCB SheepdogAIOCB;
252
253typedef struct AIOReq {
254 SheepdogAIOCB *aiocb;
255 unsigned int iov_offset;
256
257 uint64_t oid;
258 uint64_t base_oid;
259 uint64_t offset;
260 unsigned int data_len;
261 uint8_t flags;
262 uint32_t id;
263
c292ee6a 264 QLIST_ENTRY(AIOReq) aio_siblings;
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265} AIOReq;
266
267enum AIOCBState {
268 AIOCB_WRITE_UDATA,
269 AIOCB_READ_UDATA,
47783072 270 AIOCB_FLUSH_CACHE,
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271};
272
273struct SheepdogAIOCB {
274 BlockDriverAIOCB common;
275
276 QEMUIOVector *qiov;
277
278 int64_t sector_num;
279 int nb_sectors;
280
281 int ret;
282 enum AIOCBState aiocb_type;
283
2df46246 284 Coroutine *coroutine;
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285 void (*aio_done_func)(SheepdogAIOCB *);
286
2f536801 287 bool canceled;
1d732d7d 288 int nr_pending;
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289};
290
291typedef struct BDRVSheepdogState {
292 SheepdogInode inode;
293
294 uint32_t min_dirty_data_idx;
295 uint32_t max_dirty_data_idx;
296
297 char name[SD_MAX_VDI_LEN];
2f536801 298 bool is_snapshot;
0e7106d8 299 uint32_t cache_flags;
33b1db1c 300
25af257d 301 char *host_spec;
1b8bbb46 302 bool is_unix;
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303 int fd;
304
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305 CoMutex lock;
306 Coroutine *co_send;
307 Coroutine *co_recv;
308
33b1db1c 309 uint32_t aioreq_seq_num;
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310 QLIST_HEAD(inflight_aio_head, AIOReq) inflight_aio_head;
311 QLIST_HEAD(pending_aio_head, AIOReq) pending_aio_head;
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312} BDRVSheepdogState;
313
314static const char * sd_strerror(int err)
315{
316 int i;
317
318 static const struct {
319 int err;
320 const char *desc;
321 } errors[] = {
322 {SD_RES_SUCCESS, "Success"},
323 {SD_RES_UNKNOWN, "Unknown error"},
324 {SD_RES_NO_OBJ, "No object found"},
325 {SD_RES_EIO, "I/O error"},
326 {SD_RES_VDI_EXIST, "VDI exists already"},
327 {SD_RES_INVALID_PARMS, "Invalid parameters"},
328 {SD_RES_SYSTEM_ERROR, "System error"},
329 {SD_RES_VDI_LOCKED, "VDI is already locked"},
330 {SD_RES_NO_VDI, "No vdi found"},
331 {SD_RES_NO_BASE_VDI, "No base VDI found"},
332 {SD_RES_VDI_READ, "Failed read the requested VDI"},
333 {SD_RES_VDI_WRITE, "Failed to write the requested VDI"},
334 {SD_RES_BASE_VDI_READ, "Failed to read the base VDI"},
335 {SD_RES_BASE_VDI_WRITE, "Failed to write the base VDI"},
336 {SD_RES_NO_TAG, "Failed to find the requested tag"},
337 {SD_RES_STARTUP, "The system is still booting"},
338 {SD_RES_VDI_NOT_LOCKED, "VDI isn't locked"},
339 {SD_RES_SHUTDOWN, "The system is shutting down"},
340 {SD_RES_NO_MEM, "Out of memory on the server"},
341 {SD_RES_FULL_VDI, "We already have the maximum vdis"},
342 {SD_RES_VER_MISMATCH, "Protocol version mismatch"},
343 {SD_RES_NO_SPACE, "Server has no space for new objects"},
344 {SD_RES_WAIT_FOR_FORMAT, "Sheepdog is waiting for a format operation"},
345 {SD_RES_WAIT_FOR_JOIN, "Sheepdog is waiting for other nodes joining"},
346 {SD_RES_JOIN_FAILED, "Target node had failed to join sheepdog"},
347 };
348
349 for (i = 0; i < ARRAY_SIZE(errors); ++i) {
350 if (errors[i].err == err) {
351 return errors[i].desc;
352 }
353 }
354
355 return "Invalid error code";
356}
357
358/*
359 * Sheepdog I/O handling:
360 *
2df46246 361 * 1. In sd_co_rw_vector, we send the I/O requests to the server and
c292ee6a 362 * link the requests to the inflight_list in the
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363 * BDRVSheepdogState. The function exits without waiting for
364 * receiving the response.
33b1db1c 365 *
2df46246 366 * 2. We receive the response in aio_read_response, the fd handler to
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367 * the sheepdog connection. If metadata update is needed, we send
368 * the write request to the vdi object in sd_write_done, the write
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369 * completion function. We switch back to sd_co_readv/writev after
370 * all the requests belonging to the AIOCB are finished.
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371 */
372
373static inline AIOReq *alloc_aio_req(BDRVSheepdogState *s, SheepdogAIOCB *acb,
374 uint64_t oid, unsigned int data_len,
375 uint64_t offset, uint8_t flags,
376 uint64_t base_oid, unsigned int iov_offset)
377{
378 AIOReq *aio_req;
379
7267c094 380 aio_req = g_malloc(sizeof(*aio_req));
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381 aio_req->aiocb = acb;
382 aio_req->iov_offset = iov_offset;
383 aio_req->oid = oid;
384 aio_req->base_oid = base_oid;
385 aio_req->offset = offset;
386 aio_req->data_len = data_len;
387 aio_req->flags = flags;
388 aio_req->id = s->aioreq_seq_num++;
389
1d732d7d 390 acb->nr_pending++;
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391 return aio_req;
392}
393
1d732d7d 394static inline void free_aio_req(BDRVSheepdogState *s, AIOReq *aio_req)
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395{
396 SheepdogAIOCB *acb = aio_req->aiocb;
1d732d7d 397
c292ee6a 398 QLIST_REMOVE(aio_req, aio_siblings);
7267c094 399 g_free(aio_req);
33b1db1c 400
1d732d7d 401 acb->nr_pending--;
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402}
403
d8716b41 404static void coroutine_fn sd_finish_aiocb(SheepdogAIOCB *acb)
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405{
406 if (!acb->canceled) {
2df46246 407 qemu_coroutine_enter(acb->coroutine, NULL);
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408 }
409 qemu_aio_release(acb);
410}
411
412static void sd_aio_cancel(BlockDriverAIOCB *blockacb)
413{
414 SheepdogAIOCB *acb = (SheepdogAIOCB *)blockacb;
415
416 /*
417 * Sheepdog cannot cancel the requests which are already sent to
418 * the servers, so we just complete the request with -EIO here.
419 */
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420 acb->ret = -EIO;
421 qemu_coroutine_enter(acb->coroutine, NULL);
2f536801 422 acb->canceled = true;
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423}
424
d7331bed 425static const AIOCBInfo sd_aiocb_info = {
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426 .aiocb_size = sizeof(SheepdogAIOCB),
427 .cancel = sd_aio_cancel,
428};
429
430static SheepdogAIOCB *sd_aio_setup(BlockDriverState *bs, QEMUIOVector *qiov,
f700f8e3 431 int64_t sector_num, int nb_sectors)
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432{
433 SheepdogAIOCB *acb;
434
f700f8e3 435 acb = qemu_aio_get(&sd_aiocb_info, bs, NULL, NULL);
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436
437 acb->qiov = qiov;
438
439 acb->sector_num = sector_num;
440 acb->nb_sectors = nb_sectors;
441
442 acb->aio_done_func = NULL;
2f536801 443 acb->canceled = false;
2df46246 444 acb->coroutine = qemu_coroutine_self();
33b1db1c 445 acb->ret = 0;
1d732d7d 446 acb->nr_pending = 0;
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447 return acb;
448}
449
25af257d 450static int connect_to_sdog(BDRVSheepdogState *s)
33b1db1c 451{
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452 int fd;
453 Error *err = NULL;
33b1db1c 454
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455 if (s->is_unix) {
456 fd = unix_connect(s->host_spec, &err);
457 } else {
458 fd = inet_connect(s->host_spec, &err);
459
460 if (err == NULL) {
461 int ret = socket_set_nodelay(fd);
462 if (ret < 0) {
463 error_report("%s", strerror(errno));
464 }
465 }
466 }
33b1db1c 467
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468 if (err != NULL) {
469 qerror_report_err(err);
470 error_free(err);
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471 } else {
472 socket_set_nonblock(fd);
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473 }
474
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475 return fd;
476}
477
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478static coroutine_fn int send_co_req(int sockfd, SheepdogReq *hdr, void *data,
479 unsigned int *wlen)
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480{
481 int ret;
482
483 ret = qemu_co_send(sockfd, hdr, sizeof(*hdr));
484 if (ret < sizeof(*hdr)) {
485 error_report("failed to send a req, %s", strerror(errno));
eb092180 486 return ret;
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487 }
488
489 ret = qemu_co_send(sockfd, data, *wlen);
490 if (ret < *wlen) {
491 error_report("failed to send a req, %s", strerror(errno));
492 }
493
494 return ret;
495}
e0d93a89 496
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497static void restart_co_req(void *opaque)
498{
499 Coroutine *co = opaque;
500
501 qemu_coroutine_enter(co, NULL);
502}
503
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504static int have_co_req(void *opaque)
505{
506 /* this handler is set only when there is a pending request, so
507 * always returns 1. */
508 return 1;
509}
510
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511typedef struct SheepdogReqCo {
512 int sockfd;
513 SheepdogReq *hdr;
514 void *data;
515 unsigned int *wlen;
516 unsigned int *rlen;
517 int ret;
518 bool finished;
519} SheepdogReqCo;
520
521static coroutine_fn void do_co_req(void *opaque)
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522{
523 int ret;
2dfcca3b 524 Coroutine *co;
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525 SheepdogReqCo *srco = opaque;
526 int sockfd = srco->sockfd;
527 SheepdogReq *hdr = srco->hdr;
528 void *data = srco->data;
529 unsigned int *wlen = srco->wlen;
530 unsigned int *rlen = srco->rlen;
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531
532 co = qemu_coroutine_self();
ed9ba724 533 qemu_aio_set_fd_handler(sockfd, NULL, restart_co_req, have_co_req, co);
47622c44 534
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535 ret = send_co_req(sockfd, hdr, data, wlen);
536 if (ret < 0) {
537 goto out;
538 }
539
ed9ba724 540 qemu_aio_set_fd_handler(sockfd, restart_co_req, NULL, have_co_req, co);
2dfcca3b 541
47622c44
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542 ret = qemu_co_recv(sockfd, hdr, sizeof(*hdr));
543 if (ret < sizeof(*hdr)) {
544 error_report("failed to get a rsp, %s", strerror(errno));
cb595887 545 ret = -errno;
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546 goto out;
547 }
548
549 if (*rlen > hdr->data_length) {
550 *rlen = hdr->data_length;
551 }
552
553 if (*rlen) {
554 ret = qemu_co_recv(sockfd, data, *rlen);
555 if (ret < *rlen) {
556 error_report("failed to get the data, %s", strerror(errno));
cb595887 557 ret = -errno;
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558 goto out;
559 }
560 }
561 ret = 0;
562out:
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563 /* there is at most one request for this sockfd, so it is safe to
564 * set each handler to NULL. */
2dfcca3b 565 qemu_aio_set_fd_handler(sockfd, NULL, NULL, NULL, NULL);
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566
567 srco->ret = ret;
568 srco->finished = true;
569}
570
571static int do_req(int sockfd, SheepdogReq *hdr, void *data,
572 unsigned int *wlen, unsigned int *rlen)
573{
574 Coroutine *co;
575 SheepdogReqCo srco = {
576 .sockfd = sockfd,
577 .hdr = hdr,
578 .data = data,
579 .wlen = wlen,
580 .rlen = rlen,
581 .ret = 0,
582 .finished = false,
583 };
584
585 if (qemu_in_coroutine()) {
586 do_co_req(&srco);
587 } else {
588 co = qemu_coroutine_create(do_co_req);
589 qemu_coroutine_enter(co, &srco);
590 while (!srco.finished) {
591 qemu_aio_wait();
592 }
593 }
594
595 return srco.ret;
47622c44
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596}
597
d8716b41 598static int coroutine_fn add_aio_request(BDRVSheepdogState *s, AIOReq *aio_req,
2f536801 599 struct iovec *iov, int niov, bool create,
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600 enum AIOCBState aiocb_type);
601
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602
603static AIOReq *find_pending_req(BDRVSheepdogState *s, uint64_t oid)
604{
605 AIOReq *aio_req;
606
607 QLIST_FOREACH(aio_req, &s->pending_aio_head, aio_siblings) {
608 if (aio_req->oid == oid) {
609 return aio_req;
610 }
611 }
612
613 return NULL;
614}
615
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616/*
617 * This function searchs pending requests to the object `oid', and
618 * sends them.
619 */
c292ee6a 620static void coroutine_fn send_pending_req(BDRVSheepdogState *s, uint64_t oid)
33b1db1c 621{
7dc1cde0 622 AIOReq *aio_req;
33b1db1c
MK
623 SheepdogAIOCB *acb;
624 int ret;
625
7dc1cde0 626 while ((aio_req = find_pending_req(s, oid)) != NULL) {
33b1db1c 627 acb = aio_req->aiocb;
c292ee6a
MK
628 /* move aio_req from pending list to inflight one */
629 QLIST_REMOVE(aio_req, aio_siblings);
630 QLIST_INSERT_HEAD(&s->inflight_aio_head, aio_req, aio_siblings);
33b1db1c 631 ret = add_aio_request(s, aio_req, acb->qiov->iov,
2f536801 632 acb->qiov->niov, false, acb->aiocb_type);
33b1db1c 633 if (ret < 0) {
6daf194d 634 error_report("add_aio_request is failed");
33b1db1c 635 free_aio_req(s, aio_req);
1d732d7d 636 if (!acb->nr_pending) {
33b1db1c
MK
637 sd_finish_aiocb(acb);
638 }
639 }
640 }
641}
642
643/*
644 * Receive responses of the I/O requests.
645 *
646 * This function is registered as a fd handler, and called from the
647 * main loop when s->fd is ready for reading responses.
648 */
d8716b41 649static void coroutine_fn aio_read_response(void *opaque)
33b1db1c
MK
650{
651 SheepdogObjRsp rsp;
652 BDRVSheepdogState *s = opaque;
653 int fd = s->fd;
654 int ret;
655 AIOReq *aio_req = NULL;
656 SheepdogAIOCB *acb;
33b1db1c
MK
657 unsigned long idx;
658
c292ee6a 659 if (QLIST_EMPTY(&s->inflight_aio_head)) {
2df46246 660 goto out;
33b1db1c
MK
661 }
662
663 /* read a header */
8c5135f9
PB
664 ret = qemu_co_recv(fd, &rsp, sizeof(rsp));
665 if (ret < 0) {
6daf194d 666 error_report("failed to get the header, %s", strerror(errno));
2df46246 667 goto out;
33b1db1c
MK
668 }
669
c292ee6a
MK
670 /* find the right aio_req from the inflight aio list */
671 QLIST_FOREACH(aio_req, &s->inflight_aio_head, aio_siblings) {
33b1db1c
MK
672 if (aio_req->id == rsp.id) {
673 break;
674 }
675 }
676 if (!aio_req) {
6daf194d 677 error_report("cannot find aio_req %x", rsp.id);
2df46246 678 goto out;
33b1db1c
MK
679 }
680
681 acb = aio_req->aiocb;
682
683 switch (acb->aiocb_type) {
684 case AIOCB_WRITE_UDATA:
6d1acda8
MK
685 /* this coroutine context is no longer suitable for co_recv
686 * because we may send data to update vdi objects */
687 s->co_recv = NULL;
33b1db1c
MK
688 if (!is_data_obj(aio_req->oid)) {
689 break;
690 }
691 idx = data_oid_to_idx(aio_req->oid);
692
693 if (s->inode.data_vdi_id[idx] != s->inode.vdi_id) {
694 /*
695 * If the object is newly created one, we need to update
696 * the vdi object (metadata object). min_dirty_data_idx
697 * and max_dirty_data_idx are changed to include updated
698 * index between them.
699 */
bd751f22
LY
700 if (rsp.result == SD_RES_SUCCESS) {
701 s->inode.data_vdi_id[idx] = s->inode.vdi_id;
702 s->max_dirty_data_idx = MAX(idx, s->max_dirty_data_idx);
703 s->min_dirty_data_idx = MIN(idx, s->min_dirty_data_idx);
704 }
33b1db1c
MK
705 /*
706 * Some requests may be blocked because simultaneous
707 * create requests are not allowed, so we search the
708 * pending requests here.
709 */
d6b1ef89 710 send_pending_req(s, aio_req->oid);
33b1db1c
MK
711 }
712 break;
713 case AIOCB_READ_UDATA:
2fc8ae1d
MT
714 ret = qemu_co_recvv(fd, acb->qiov->iov, acb->qiov->niov,
715 aio_req->iov_offset, rsp.data_length);
8c5135f9 716 if (ret < 0) {
6daf194d 717 error_report("failed to get the data, %s", strerror(errno));
2df46246 718 goto out;
33b1db1c
MK
719 }
720 break;
47783072
LY
721 case AIOCB_FLUSH_CACHE:
722 if (rsp.result == SD_RES_INVALID_PARMS) {
723 dprintf("disable cache since the server doesn't support it\n");
724 s->cache_flags = SD_FLAG_CMD_DIRECT;
725 rsp.result = SD_RES_SUCCESS;
726 }
727 break;
33b1db1c
MK
728 }
729
730 if (rsp.result != SD_RES_SUCCESS) {
731 acb->ret = -EIO;
6daf194d 732 error_report("%s", sd_strerror(rsp.result));
33b1db1c
MK
733 }
734
1d732d7d
MK
735 free_aio_req(s, aio_req);
736 if (!acb->nr_pending) {
33b1db1c
MK
737 /*
738 * We've finished all requests which belong to the AIOCB, so
2df46246 739 * we can switch back to sd_co_readv/writev now.
33b1db1c
MK
740 */
741 acb->aio_done_func(acb);
742 }
2df46246
MK
743out:
744 s->co_recv = NULL;
745}
746
747static void co_read_response(void *opaque)
748{
749 BDRVSheepdogState *s = opaque;
750
751 if (!s->co_recv) {
752 s->co_recv = qemu_coroutine_create(aio_read_response);
753 }
754
755 qemu_coroutine_enter(s->co_recv, opaque);
756}
757
758static void co_write_request(void *opaque)
759{
760 BDRVSheepdogState *s = opaque;
761
762 qemu_coroutine_enter(s->co_send, NULL);
33b1db1c
MK
763}
764
765static int aio_flush_request(void *opaque)
766{
767 BDRVSheepdogState *s = opaque;
768
c292ee6a
MK
769 return !QLIST_EMPTY(&s->inflight_aio_head) ||
770 !QLIST_EMPTY(&s->pending_aio_head);
33b1db1c
MK
771}
772
33b1db1c
MK
773/*
774 * Return a socket discriptor to read/write objects.
775 *
776 * We cannot use this discriptor for other operations because
777 * the block driver may be on waiting response from the server.
778 */
779static int get_sheep_fd(BDRVSheepdogState *s)
780{
1b8bbb46 781 int fd;
33b1db1c 782
25af257d 783 fd = connect_to_sdog(s);
33b1db1c 784 if (fd < 0) {
cb595887 785 return fd;
33b1db1c
MK
786 }
787
bafbd6a1 788 qemu_aio_set_fd_handler(fd, co_read_response, NULL, aio_flush_request, s);
33b1db1c
MK
789 return fd;
790}
791
5d6768e3
MK
792static int sd_parse_uri(BDRVSheepdogState *s, const char *filename,
793 char *vdi, uint32_t *snapid, char *tag)
794{
795 URI *uri;
796 QueryParams *qp = NULL;
797 int ret = 0;
798
799 uri = uri_parse(filename);
800 if (!uri) {
801 return -EINVAL;
802 }
803
1b8bbb46
MK
804 /* transport */
805 if (!strcmp(uri->scheme, "sheepdog")) {
806 s->is_unix = false;
807 } else if (!strcmp(uri->scheme, "sheepdog+tcp")) {
808 s->is_unix = false;
809 } else if (!strcmp(uri->scheme, "sheepdog+unix")) {
810 s->is_unix = true;
811 } else {
812 ret = -EINVAL;
813 goto out;
814 }
815
5d6768e3
MK
816 if (uri->path == NULL || !strcmp(uri->path, "/")) {
817 ret = -EINVAL;
818 goto out;
819 }
820 pstrcpy(vdi, SD_MAX_VDI_LEN, uri->path + 1);
821
1b8bbb46
MK
822 qp = query_params_parse(uri->query);
823 if (qp->n > 1 || (s->is_unix && !qp->n) || (!s->is_unix && qp->n)) {
824 ret = -EINVAL;
825 goto out;
826 }
827
828 if (s->is_unix) {
829 /* sheepdog+unix:///vdiname?socket=path */
830 if (uri->server || uri->port || strcmp(qp->p[0].name, "socket")) {
831 ret = -EINVAL;
832 goto out;
833 }
834 s->host_spec = g_strdup(qp->p[0].value);
835 } else {
836 /* sheepdog[+tcp]://[host:port]/vdiname */
837 s->host_spec = g_strdup_printf("%s:%d", uri->server ?: SD_DEFAULT_ADDR,
838 uri->port ?: SD_DEFAULT_PORT);
839 }
5d6768e3
MK
840
841 /* snapshot tag */
842 if (uri->fragment) {
843 *snapid = strtoul(uri->fragment, NULL, 10);
844 if (*snapid == 0) {
845 pstrcpy(tag, SD_MAX_VDI_TAG_LEN, uri->fragment);
846 }
847 } else {
848 *snapid = CURRENT_VDI_ID; /* search current vdi */
849 }
850
851out:
852 if (qp) {
853 query_params_free(qp);
854 }
855 uri_free(uri);
856 return ret;
857}
858
33b1db1c 859/*
5d6768e3 860 * Parse a filename (old syntax)
33b1db1c
MK
861 *
862 * filename must be one of the following formats:
863 * 1. [vdiname]
864 * 2. [vdiname]:[snapid]
865 * 3. [vdiname]:[tag]
866 * 4. [hostname]:[port]:[vdiname]
867 * 5. [hostname]:[port]:[vdiname]:[snapid]
868 * 6. [hostname]:[port]:[vdiname]:[tag]
869 *
870 * You can boot from the snapshot images by specifying `snapid` or
871 * `tag'.
872 *
873 * You can run VMs outside the Sheepdog cluster by specifying
874 * `hostname' and `port' (experimental).
875 */
876static int parse_vdiname(BDRVSheepdogState *s, const char *filename,
877 char *vdi, uint32_t *snapid, char *tag)
878{
5d6768e3
MK
879 char *p, *q, *uri;
880 const char *host_spec, *vdi_spec;
881 int nr_sep, ret;
33b1db1c 882
5d6768e3 883 strstart(filename, "sheepdog:", (const char **)&filename);
7267c094 884 p = q = g_strdup(filename);
33b1db1c
MK
885
886 /* count the number of separators */
887 nr_sep = 0;
888 while (*p) {
889 if (*p == ':') {
890 nr_sep++;
891 }
892 p++;
893 }
894 p = q;
895
5d6768e3 896 /* use the first two tokens as host_spec. */
33b1db1c 897 if (nr_sep >= 2) {
5d6768e3 898 host_spec = p;
33b1db1c 899 p = strchr(p, ':');
5d6768e3 900 p++;
33b1db1c
MK
901 p = strchr(p, ':');
902 *p++ = '\0';
903 } else {
5d6768e3 904 host_spec = "";
33b1db1c
MK
905 }
906
5d6768e3 907 vdi_spec = p;
33b1db1c 908
5d6768e3 909 p = strchr(vdi_spec, ':');
33b1db1c 910 if (p) {
5d6768e3 911 *p++ = '#';
33b1db1c
MK
912 }
913
5d6768e3 914 uri = g_strdup_printf("sheepdog://%s/%s", host_spec, vdi_spec);
33b1db1c 915
5d6768e3
MK
916 ret = sd_parse_uri(s, uri, vdi, snapid, tag);
917
918 g_free(q);
919 g_free(uri);
920
921 return ret;
33b1db1c
MK
922}
923
924static int find_vdi_name(BDRVSheepdogState *s, char *filename, uint32_t snapid,
925 char *tag, uint32_t *vid, int for_snapshot)
926{
927 int ret, fd;
928 SheepdogVdiReq hdr;
929 SheepdogVdiRsp *rsp = (SheepdogVdiRsp *)&hdr;
930 unsigned int wlen, rlen = 0;
931 char buf[SD_MAX_VDI_LEN + SD_MAX_VDI_TAG_LEN];
932
25af257d 933 fd = connect_to_sdog(s);
33b1db1c 934 if (fd < 0) {
cb595887 935 return fd;
33b1db1c
MK
936 }
937
3178e275
JM
938 /* This pair of strncpy calls ensures that the buffer is zero-filled,
939 * which is desirable since we'll soon be sending those bytes, and
940 * don't want the send_req to read uninitialized data.
941 */
33b1db1c
MK
942 strncpy(buf, filename, SD_MAX_VDI_LEN);
943 strncpy(buf + SD_MAX_VDI_LEN, tag, SD_MAX_VDI_TAG_LEN);
944
945 memset(&hdr, 0, sizeof(hdr));
946 if (for_snapshot) {
947 hdr.opcode = SD_OP_GET_VDI_INFO;
948 } else {
949 hdr.opcode = SD_OP_LOCK_VDI;
950 }
951 wlen = SD_MAX_VDI_LEN + SD_MAX_VDI_TAG_LEN;
952 hdr.proto_ver = SD_PROTO_VER;
953 hdr.data_length = wlen;
954 hdr.snapid = snapid;
955 hdr.flags = SD_FLAG_CMD_WRITE;
956
957 ret = do_req(fd, (SheepdogReq *)&hdr, buf, &wlen, &rlen);
958 if (ret) {
33b1db1c
MK
959 goto out;
960 }
961
962 if (rsp->result != SD_RES_SUCCESS) {
6daf194d 963 error_report("cannot get vdi info, %s, %s %d %s",
33b1db1c 964 sd_strerror(rsp->result), filename, snapid, tag);
cb595887
MK
965 if (rsp->result == SD_RES_NO_VDI) {
966 ret = -ENOENT;
967 } else {
968 ret = -EIO;
969 }
33b1db1c
MK
970 goto out;
971 }
972 *vid = rsp->vdi_id;
973
974 ret = 0;
975out:
976 closesocket(fd);
977 return ret;
978}
979
d8716b41 980static int coroutine_fn add_aio_request(BDRVSheepdogState *s, AIOReq *aio_req,
2f536801 981 struct iovec *iov, int niov, bool create,
33b1db1c
MK
982 enum AIOCBState aiocb_type)
983{
984 int nr_copies = s->inode.nr_copies;
985 SheepdogObjReq hdr;
47783072 986 unsigned int wlen = 0;
33b1db1c
MK
987 int ret;
988 uint64_t oid = aio_req->oid;
989 unsigned int datalen = aio_req->data_len;
990 uint64_t offset = aio_req->offset;
991 uint8_t flags = aio_req->flags;
992 uint64_t old_oid = aio_req->base_oid;
993
994 if (!nr_copies) {
6daf194d 995 error_report("bug");
33b1db1c
MK
996 }
997
998 memset(&hdr, 0, sizeof(hdr));
999
47783072
LY
1000 switch (aiocb_type) {
1001 case AIOCB_FLUSH_CACHE:
1002 hdr.opcode = SD_OP_FLUSH_VDI;
1003 break;
1004 case AIOCB_READ_UDATA:
33b1db1c
MK
1005 hdr.opcode = SD_OP_READ_OBJ;
1006 hdr.flags = flags;
47783072
LY
1007 break;
1008 case AIOCB_WRITE_UDATA:
1009 if (create) {
1010 hdr.opcode = SD_OP_CREATE_AND_WRITE_OBJ;
1011 } else {
1012 hdr.opcode = SD_OP_WRITE_OBJ;
1013 }
33b1db1c 1014 wlen = datalen;
33b1db1c 1015 hdr.flags = SD_FLAG_CMD_WRITE | flags;
47783072 1016 break;
33b1db1c
MK
1017 }
1018
0e7106d8
LY
1019 if (s->cache_flags) {
1020 hdr.flags |= s->cache_flags;
47622c44
LY
1021 }
1022
33b1db1c
MK
1023 hdr.oid = oid;
1024 hdr.cow_oid = old_oid;
1025 hdr.copies = s->inode.nr_copies;
1026
1027 hdr.data_length = datalen;
1028 hdr.offset = offset;
1029
1030 hdr.id = aio_req->id;
1031
2df46246
MK
1032 qemu_co_mutex_lock(&s->lock);
1033 s->co_send = qemu_coroutine_self();
1034 qemu_aio_set_fd_handler(s->fd, co_read_response, co_write_request,
bafbd6a1 1035 aio_flush_request, s);
128aa589 1036 socket_set_cork(s->fd, 1);
33b1db1c
MK
1037
1038 /* send a header */
8c5135f9
PB
1039 ret = qemu_co_send(s->fd, &hdr, sizeof(hdr));
1040 if (ret < 0) {
c3fecea5 1041 qemu_co_mutex_unlock(&s->lock);
6daf194d 1042 error_report("failed to send a req, %s", strerror(errno));
cb595887 1043 return -errno;
33b1db1c
MK
1044 }
1045
1046 if (wlen) {
2fc8ae1d 1047 ret = qemu_co_sendv(s->fd, iov, niov, aio_req->iov_offset, wlen);
8c5135f9 1048 if (ret < 0) {
c3fecea5 1049 qemu_co_mutex_unlock(&s->lock);
6daf194d 1050 error_report("failed to send a data, %s", strerror(errno));
cb595887 1051 return -errno;
33b1db1c
MK
1052 }
1053 }
1054
128aa589 1055 socket_set_cork(s->fd, 0);
2df46246 1056 qemu_aio_set_fd_handler(s->fd, co_read_response, NULL,
bafbd6a1 1057 aio_flush_request, s);
2df46246 1058 qemu_co_mutex_unlock(&s->lock);
33b1db1c
MK
1059
1060 return 0;
1061}
1062
1063static int read_write_object(int fd, char *buf, uint64_t oid, int copies,
1064 unsigned int datalen, uint64_t offset,
0e7106d8 1065 bool write, bool create, uint32_t cache_flags)
33b1db1c
MK
1066{
1067 SheepdogObjReq hdr;
1068 SheepdogObjRsp *rsp = (SheepdogObjRsp *)&hdr;
1069 unsigned int wlen, rlen;
1070 int ret;
1071
1072 memset(&hdr, 0, sizeof(hdr));
1073
1074 if (write) {
1075 wlen = datalen;
1076 rlen = 0;
1077 hdr.flags = SD_FLAG_CMD_WRITE;
1078 if (create) {
1079 hdr.opcode = SD_OP_CREATE_AND_WRITE_OBJ;
1080 } else {
1081 hdr.opcode = SD_OP_WRITE_OBJ;
1082 }
1083 } else {
1084 wlen = 0;
1085 rlen = datalen;
1086 hdr.opcode = SD_OP_READ_OBJ;
1087 }
47622c44 1088
0e7106d8 1089 hdr.flags |= cache_flags;
47622c44 1090
33b1db1c
MK
1091 hdr.oid = oid;
1092 hdr.data_length = datalen;
1093 hdr.offset = offset;
1094 hdr.copies = copies;
1095
1096 ret = do_req(fd, (SheepdogReq *)&hdr, buf, &wlen, &rlen);
1097 if (ret) {
6daf194d 1098 error_report("failed to send a request to the sheep");
cb595887 1099 return ret;
33b1db1c
MK
1100 }
1101
1102 switch (rsp->result) {
1103 case SD_RES_SUCCESS:
1104 return 0;
1105 default:
6daf194d 1106 error_report("%s", sd_strerror(rsp->result));
cb595887 1107 return -EIO;
33b1db1c
MK
1108 }
1109}
1110
1111static int read_object(int fd, char *buf, uint64_t oid, int copies,
0e7106d8
LY
1112 unsigned int datalen, uint64_t offset,
1113 uint32_t cache_flags)
33b1db1c 1114{
2f536801 1115 return read_write_object(fd, buf, oid, copies, datalen, offset, false,
0e7106d8 1116 false, cache_flags);
33b1db1c
MK
1117}
1118
1119static int write_object(int fd, char *buf, uint64_t oid, int copies,
2f536801 1120 unsigned int datalen, uint64_t offset, bool create,
0e7106d8 1121 uint32_t cache_flags)
33b1db1c 1122{
2f536801 1123 return read_write_object(fd, buf, oid, copies, datalen, offset, true,
0e7106d8 1124 create, cache_flags);
33b1db1c
MK
1125}
1126
1127static int sd_open(BlockDriverState *bs, const char *filename, int flags)
1128{
1129 int ret, fd;
1130 uint32_t vid = 0;
1131 BDRVSheepdogState *s = bs->opaque;
1132 char vdi[SD_MAX_VDI_LEN], tag[SD_MAX_VDI_TAG_LEN];
1133 uint32_t snapid;
1134 char *buf = NULL;
1135
c292ee6a
MK
1136 QLIST_INIT(&s->inflight_aio_head);
1137 QLIST_INIT(&s->pending_aio_head);
33b1db1c
MK
1138 s->fd = -1;
1139
1140 memset(vdi, 0, sizeof(vdi));
1141 memset(tag, 0, sizeof(tag));
5d6768e3
MK
1142
1143 if (strstr(filename, "://")) {
1144 ret = sd_parse_uri(s, filename, vdi, &snapid, tag);
1145 } else {
1146 ret = parse_vdiname(s, filename, vdi, &snapid, tag);
1147 }
1148 if (ret < 0) {
33b1db1c
MK
1149 goto out;
1150 }
1151 s->fd = get_sheep_fd(s);
1152 if (s->fd < 0) {
cb595887 1153 ret = s->fd;
33b1db1c
MK
1154 goto out;
1155 }
1156
1157 ret = find_vdi_name(s, vdi, snapid, tag, &vid, 0);
1158 if (ret) {
1159 goto out;
1160 }
1161
0e7106d8
LY
1162 /*
1163 * QEMU block layer emulates writethrough cache as 'writeback + flush', so
1164 * we always set SD_FLAG_CMD_CACHE (writeback cache) as default.
1165 */
1166 s->cache_flags = SD_FLAG_CMD_CACHE;
1167 if (flags & BDRV_O_NOCACHE) {
1168 s->cache_flags = SD_FLAG_CMD_DIRECT;
1169 }
1170
622b6057 1171 if (snapid || tag[0] != '\0') {
33b1db1c 1172 dprintf("%" PRIx32 " snapshot inode was open.\n", vid);
2f536801 1173 s->is_snapshot = true;
33b1db1c
MK
1174 }
1175
25af257d 1176 fd = connect_to_sdog(s);
33b1db1c 1177 if (fd < 0) {
cb595887 1178 ret = fd;
33b1db1c
MK
1179 goto out;
1180 }
1181
7267c094 1182 buf = g_malloc(SD_INODE_SIZE);
47622c44 1183 ret = read_object(fd, buf, vid_to_vdi_oid(vid), 0, SD_INODE_SIZE, 0,
0e7106d8 1184 s->cache_flags);
33b1db1c
MK
1185
1186 closesocket(fd);
1187
1188 if (ret) {
1189 goto out;
1190 }
1191
1192 memcpy(&s->inode, buf, sizeof(s->inode));
1193 s->min_dirty_data_idx = UINT32_MAX;
1194 s->max_dirty_data_idx = 0;
1195
1196 bs->total_sectors = s->inode.vdi_size / SECTOR_SIZE;
3178e275 1197 pstrcpy(s->name, sizeof(s->name), vdi);
2df46246 1198 qemu_co_mutex_init(&s->lock);
7267c094 1199 g_free(buf);
33b1db1c
MK
1200 return 0;
1201out:
bafbd6a1 1202 qemu_aio_set_fd_handler(s->fd, NULL, NULL, NULL, NULL);
33b1db1c
MK
1203 if (s->fd >= 0) {
1204 closesocket(s->fd);
1205 }
7267c094 1206 g_free(buf);
cb595887 1207 return ret;
33b1db1c
MK
1208}
1209
25af257d
MK
1210static int do_sd_create(BDRVSheepdogState *s, char *filename, int64_t vdi_size,
1211 uint32_t base_vid, uint32_t *vdi_id, int snapshot)
33b1db1c
MK
1212{
1213 SheepdogVdiReq hdr;
1214 SheepdogVdiRsp *rsp = (SheepdogVdiRsp *)&hdr;
1215 int fd, ret;
1216 unsigned int wlen, rlen = 0;
1217 char buf[SD_MAX_VDI_LEN];
1218
25af257d 1219 fd = connect_to_sdog(s);
33b1db1c 1220 if (fd < 0) {
cb595887 1221 return fd;
33b1db1c
MK
1222 }
1223
3178e275
JM
1224 /* FIXME: would it be better to fail (e.g., return -EIO) when filename
1225 * does not fit in buf? For now, just truncate and avoid buffer overrun.
1226 */
33b1db1c 1227 memset(buf, 0, sizeof(buf));
3178e275 1228 pstrcpy(buf, sizeof(buf), filename);
33b1db1c
MK
1229
1230 memset(&hdr, 0, sizeof(hdr));
1231 hdr.opcode = SD_OP_NEW_VDI;
6f74c260 1232 hdr.vdi_id = base_vid;
33b1db1c
MK
1233
1234 wlen = SD_MAX_VDI_LEN;
1235
1236 hdr.flags = SD_FLAG_CMD_WRITE;
1237 hdr.snapid = snapshot;
1238
1239 hdr.data_length = wlen;
1240 hdr.vdi_size = vdi_size;
1241
1242 ret = do_req(fd, (SheepdogReq *)&hdr, buf, &wlen, &rlen);
1243
1244 closesocket(fd);
1245
1246 if (ret) {
cb595887 1247 return ret;
33b1db1c
MK
1248 }
1249
1250 if (rsp->result != SD_RES_SUCCESS) {
6daf194d 1251 error_report("%s, %s", sd_strerror(rsp->result), filename);
33b1db1c
MK
1252 return -EIO;
1253 }
1254
1255 if (vdi_id) {
1256 *vdi_id = rsp->vdi_id;
1257 }
1258
1259 return 0;
1260}
1261
a8e0fdd7
MK
1262static int sd_prealloc(const char *filename)
1263{
1264 BlockDriverState *bs = NULL;
1265 uint32_t idx, max_idx;
1266 int64_t vdi_size;
7267c094 1267 void *buf = g_malloc0(SD_DATA_OBJ_SIZE);
a8e0fdd7
MK
1268 int ret;
1269
1270 ret = bdrv_file_open(&bs, filename, BDRV_O_RDWR);
1271 if (ret < 0) {
1272 goto out;
1273 }
1274
1275 vdi_size = bdrv_getlength(bs);
1276 if (vdi_size < 0) {
1277 ret = vdi_size;
1278 goto out;
1279 }
1280 max_idx = DIV_ROUND_UP(vdi_size, SD_DATA_OBJ_SIZE);
1281
1282 for (idx = 0; idx < max_idx; idx++) {
1283 /*
1284 * The created image can be a cloned image, so we need to read
1285 * a data from the source image.
1286 */
1287 ret = bdrv_pread(bs, idx * SD_DATA_OBJ_SIZE, buf, SD_DATA_OBJ_SIZE);
1288 if (ret < 0) {
1289 goto out;
1290 }
1291 ret = bdrv_pwrite(bs, idx * SD_DATA_OBJ_SIZE, buf, SD_DATA_OBJ_SIZE);
1292 if (ret < 0) {
1293 goto out;
1294 }
1295 }
1296out:
1297 if (bs) {
1298 bdrv_delete(bs);
1299 }
7267c094 1300 g_free(buf);
a8e0fdd7
MK
1301
1302 return ret;
1303}
1304
33b1db1c
MK
1305static int sd_create(const char *filename, QEMUOptionParameter *options)
1306{
b6fc8245 1307 int ret = 0;
b4447363 1308 uint32_t vid = 0, base_vid = 0;
33b1db1c
MK
1309 int64_t vdi_size = 0;
1310 char *backing_file = NULL;
b6fc8245 1311 BDRVSheepdogState *s;
b4447363
MK
1312 char vdi[SD_MAX_VDI_LEN], tag[SD_MAX_VDI_TAG_LEN];
1313 uint32_t snapid;
2f536801 1314 bool prealloc = false;
33b1db1c 1315
b6fc8245
MK
1316 s = g_malloc0(sizeof(BDRVSheepdogState));
1317
b4447363
MK
1318 memset(vdi, 0, sizeof(vdi));
1319 memset(tag, 0, sizeof(tag));
5d6768e3
MK
1320 if (strstr(filename, "://")) {
1321 ret = sd_parse_uri(s, filename, vdi, &snapid, tag);
1322 } else {
1323 ret = parse_vdiname(s, filename, vdi, &snapid, tag);
1324 }
1325 if (ret < 0) {
b6fc8245 1326 goto out;
b4447363
MK
1327 }
1328
33b1db1c
MK
1329 while (options && options->name) {
1330 if (!strcmp(options->name, BLOCK_OPT_SIZE)) {
1331 vdi_size = options->value.n;
1332 } else if (!strcmp(options->name, BLOCK_OPT_BACKING_FILE)) {
1333 backing_file = options->value.s;
a8e0fdd7
MK
1334 } else if (!strcmp(options->name, BLOCK_OPT_PREALLOC)) {
1335 if (!options->value.s || !strcmp(options->value.s, "off")) {
2f536801 1336 prealloc = false;
a8e0fdd7 1337 } else if (!strcmp(options->value.s, "full")) {
2f536801 1338 prealloc = true;
a8e0fdd7
MK
1339 } else {
1340 error_report("Invalid preallocation mode: '%s'",
1341 options->value.s);
b6fc8245
MK
1342 ret = -EINVAL;
1343 goto out;
a8e0fdd7 1344 }
33b1db1c
MK
1345 }
1346 options++;
1347 }
1348
1349 if (vdi_size > SD_MAX_VDI_SIZE) {
6daf194d 1350 error_report("too big image size");
b6fc8245
MK
1351 ret = -EINVAL;
1352 goto out;
33b1db1c
MK
1353 }
1354
1355 if (backing_file) {
1356 BlockDriverState *bs;
1357 BDRVSheepdogState *s;
1358 BlockDriver *drv;
1359
1360 /* Currently, only Sheepdog backing image is supported. */
1361 drv = bdrv_find_protocol(backing_file);
1362 if (!drv || strcmp(drv->protocol_name, "sheepdog") != 0) {
6daf194d 1363 error_report("backing_file must be a sheepdog image");
b6fc8245
MK
1364 ret = -EINVAL;
1365 goto out;
33b1db1c
MK
1366 }
1367
1368 ret = bdrv_file_open(&bs, backing_file, 0);
cb595887 1369 if (ret < 0) {
b6fc8245 1370 goto out;
cb595887 1371 }
33b1db1c
MK
1372
1373 s = bs->opaque;
1374
1375 if (!is_snapshot(&s->inode)) {
6daf194d 1376 error_report("cannot clone from a non snapshot vdi");
33b1db1c 1377 bdrv_delete(bs);
b6fc8245
MK
1378 ret = -EINVAL;
1379 goto out;
33b1db1c
MK
1380 }
1381
b4447363 1382 base_vid = s->inode.vdi_id;
33b1db1c
MK
1383 bdrv_delete(bs);
1384 }
1385
25af257d 1386 ret = do_sd_create(s, vdi, vdi_size, base_vid, &vid, 0);
a8e0fdd7 1387 if (!prealloc || ret) {
b6fc8245 1388 goto out;
a8e0fdd7
MK
1389 }
1390
b6fc8245
MK
1391 ret = sd_prealloc(filename);
1392out:
1393 g_free(s);
1394 return ret;
33b1db1c
MK
1395}
1396
1397static void sd_close(BlockDriverState *bs)
1398{
1399 BDRVSheepdogState *s = bs->opaque;
1400 SheepdogVdiReq hdr;
1401 SheepdogVdiRsp *rsp = (SheepdogVdiRsp *)&hdr;
1402 unsigned int wlen, rlen = 0;
1403 int fd, ret;
1404
1405 dprintf("%s\n", s->name);
1406
25af257d 1407 fd = connect_to_sdog(s);
33b1db1c
MK
1408 if (fd < 0) {
1409 return;
1410 }
1411
1412 memset(&hdr, 0, sizeof(hdr));
1413
1414 hdr.opcode = SD_OP_RELEASE_VDI;
6f74c260 1415 hdr.vdi_id = s->inode.vdi_id;
33b1db1c
MK
1416 wlen = strlen(s->name) + 1;
1417 hdr.data_length = wlen;
1418 hdr.flags = SD_FLAG_CMD_WRITE;
1419
1420 ret = do_req(fd, (SheepdogReq *)&hdr, s->name, &wlen, &rlen);
1421
1422 closesocket(fd);
1423
1424 if (!ret && rsp->result != SD_RES_SUCCESS &&
1425 rsp->result != SD_RES_VDI_NOT_LOCKED) {
6daf194d 1426 error_report("%s, %s", sd_strerror(rsp->result), s->name);
33b1db1c
MK
1427 }
1428
bafbd6a1 1429 qemu_aio_set_fd_handler(s->fd, NULL, NULL, NULL, NULL);
33b1db1c 1430 closesocket(s->fd);
25af257d 1431 g_free(s->host_spec);
33b1db1c
MK
1432}
1433
1434static int64_t sd_getlength(BlockDriverState *bs)
1435{
1436 BDRVSheepdogState *s = bs->opaque;
1437
1438 return s->inode.vdi_size;
1439}
1440
1441static int sd_truncate(BlockDriverState *bs, int64_t offset)
1442{
1443 BDRVSheepdogState *s = bs->opaque;
1444 int ret, fd;
1445 unsigned int datalen;
1446
1447 if (offset < s->inode.vdi_size) {
6daf194d 1448 error_report("shrinking is not supported");
33b1db1c
MK
1449 return -EINVAL;
1450 } else if (offset > SD_MAX_VDI_SIZE) {
6daf194d 1451 error_report("too big image size");
33b1db1c
MK
1452 return -EINVAL;
1453 }
1454
25af257d 1455 fd = connect_to_sdog(s);
33b1db1c 1456 if (fd < 0) {
cb595887 1457 return fd;
33b1db1c
MK
1458 }
1459
1460 /* we don't need to update entire object */
1461 datalen = SD_INODE_SIZE - sizeof(s->inode.data_vdi_id);
1462 s->inode.vdi_size = offset;
1463 ret = write_object(fd, (char *)&s->inode, vid_to_vdi_oid(s->inode.vdi_id),
0e7106d8 1464 s->inode.nr_copies, datalen, 0, false, s->cache_flags);
33b1db1c
MK
1465 close(fd);
1466
1467 if (ret < 0) {
6daf194d 1468 error_report("failed to update an inode.");
33b1db1c
MK
1469 }
1470
cb595887 1471 return ret;
33b1db1c
MK
1472}
1473
1474/*
1475 * This function is called after writing data objects. If we need to
1476 * update metadata, this sends a write request to the vdi object.
2df46246 1477 * Otherwise, this switches back to sd_co_readv/writev.
33b1db1c 1478 */
d8716b41 1479static void coroutine_fn sd_write_done(SheepdogAIOCB *acb)
33b1db1c
MK
1480{
1481 int ret;
1482 BDRVSheepdogState *s = acb->common.bs->opaque;
1483 struct iovec iov;
1484 AIOReq *aio_req;
1485 uint32_t offset, data_len, mn, mx;
1486
1487 mn = s->min_dirty_data_idx;
1488 mx = s->max_dirty_data_idx;
1489 if (mn <= mx) {
1490 /* we need to update the vdi object. */
1491 offset = sizeof(s->inode) - sizeof(s->inode.data_vdi_id) +
1492 mn * sizeof(s->inode.data_vdi_id[0]);
1493 data_len = (mx - mn + 1) * sizeof(s->inode.data_vdi_id[0]);
1494
1495 s->min_dirty_data_idx = UINT32_MAX;
1496 s->max_dirty_data_idx = 0;
1497
1498 iov.iov_base = &s->inode;
1499 iov.iov_len = sizeof(s->inode);
1500 aio_req = alloc_aio_req(s, acb, vid_to_vdi_oid(s->inode.vdi_id),
1501 data_len, offset, 0, 0, offset);
c292ee6a 1502 QLIST_INSERT_HEAD(&s->inflight_aio_head, aio_req, aio_siblings);
2f536801 1503 ret = add_aio_request(s, aio_req, &iov, 1, false, AIOCB_WRITE_UDATA);
33b1db1c
MK
1504 if (ret) {
1505 free_aio_req(s, aio_req);
1506 acb->ret = -EIO;
1507 goto out;
1508 }
1509
1510 acb->aio_done_func = sd_finish_aiocb;
1511 acb->aiocb_type = AIOCB_WRITE_UDATA;
1512 return;
1513 }
1514out:
1515 sd_finish_aiocb(acb);
1516}
1517
1518/*
1519 * Create a writable VDI from a snapshot
1520 */
1521static int sd_create_branch(BDRVSheepdogState *s)
1522{
1523 int ret, fd;
1524 uint32_t vid;
1525 char *buf;
1526
1527 dprintf("%" PRIx32 " is snapshot.\n", s->inode.vdi_id);
1528
7267c094 1529 buf = g_malloc(SD_INODE_SIZE);
33b1db1c 1530
25af257d 1531 ret = do_sd_create(s, s->name, s->inode.vdi_size, s->inode.vdi_id, &vid, 1);
33b1db1c
MK
1532 if (ret) {
1533 goto out;
1534 }
1535
1536 dprintf("%" PRIx32 " is created.\n", vid);
1537
25af257d 1538 fd = connect_to_sdog(s);
33b1db1c 1539 if (fd < 0) {
cb595887 1540 ret = fd;
33b1db1c
MK
1541 goto out;
1542 }
1543
1544 ret = read_object(fd, buf, vid_to_vdi_oid(vid), s->inode.nr_copies,
0e7106d8 1545 SD_INODE_SIZE, 0, s->cache_flags);
33b1db1c
MK
1546
1547 closesocket(fd);
1548
1549 if (ret < 0) {
1550 goto out;
1551 }
1552
1553 memcpy(&s->inode, buf, sizeof(s->inode));
1554
2f536801 1555 s->is_snapshot = false;
33b1db1c
MK
1556 ret = 0;
1557 dprintf("%" PRIx32 " was newly created.\n", s->inode.vdi_id);
1558
1559out:
7267c094 1560 g_free(buf);
33b1db1c
MK
1561
1562 return ret;
1563}
1564
1565/*
1566 * Send I/O requests to the server.
1567 *
1568 * This function sends requests to the server, links the requests to
c292ee6a 1569 * the inflight_list in BDRVSheepdogState, and exits without
33b1db1c
MK
1570 * waiting the response. The responses are received in the
1571 * `aio_read_response' function which is called from the main loop as
1572 * a fd handler.
2df46246
MK
1573 *
1574 * Returns 1 when we need to wait a response, 0 when there is no sent
1575 * request and -errno in error cases.
33b1db1c 1576 */
d8716b41 1577static int coroutine_fn sd_co_rw_vector(void *p)
33b1db1c
MK
1578{
1579 SheepdogAIOCB *acb = p;
1580 int ret = 0;
1581 unsigned long len, done = 0, total = acb->nb_sectors * SECTOR_SIZE;
1582 unsigned long idx = acb->sector_num * SECTOR_SIZE / SD_DATA_OBJ_SIZE;
1583 uint64_t oid;
1584 uint64_t offset = (acb->sector_num * SECTOR_SIZE) % SD_DATA_OBJ_SIZE;
1585 BDRVSheepdogState *s = acb->common.bs->opaque;
1586 SheepdogInode *inode = &s->inode;
1587 AIOReq *aio_req;
1588
33b1db1c
MK
1589 if (acb->aiocb_type == AIOCB_WRITE_UDATA && s->is_snapshot) {
1590 /*
1591 * In the case we open the snapshot VDI, Sheepdog creates the
1592 * writable VDI when we do a write operation first.
1593 */
1594 ret = sd_create_branch(s);
1595 if (ret) {
1596 acb->ret = -EIO;
1597 goto out;
1598 }
1599 }
1600
1d732d7d
MK
1601 /*
1602 * Make sure we don't free the aiocb before we are done with all requests.
1603 * This additional reference is dropped at the end of this function.
1604 */
1605 acb->nr_pending++;
1606
33b1db1c
MK
1607 while (done != total) {
1608 uint8_t flags = 0;
1609 uint64_t old_oid = 0;
2f536801 1610 bool create = false;
33b1db1c
MK
1611
1612 oid = vid_to_data_oid(inode->data_vdi_id[idx], idx);
1613
1614 len = MIN(total - done, SD_DATA_OBJ_SIZE - offset);
1615
19db9b90
CH
1616 switch (acb->aiocb_type) {
1617 case AIOCB_READ_UDATA:
1618 if (!inode->data_vdi_id[idx]) {
1619 qemu_iovec_memset(acb->qiov, done, 0, len);
33b1db1c
MK
1620 goto done;
1621 }
19db9b90
CH
1622 break;
1623 case AIOCB_WRITE_UDATA:
1624 if (!inode->data_vdi_id[idx]) {
2f536801 1625 create = true;
19db9b90
CH
1626 } else if (!is_data_obj_writable(inode, idx)) {
1627 /* Copy-On-Write */
2f536801 1628 create = true;
19db9b90
CH
1629 old_oid = oid;
1630 flags = SD_FLAG_CMD_COW;
1631 }
1632 break;
1633 default:
1634 break;
33b1db1c
MK
1635 }
1636
1637 if (create) {
1b6ac998
MK
1638 dprintf("update ino (%" PRIu32 ") %" PRIu64 " %" PRIu64 " %ld\n",
1639 inode->vdi_id, oid,
33b1db1c
MK
1640 vid_to_data_oid(inode->data_vdi_id[idx], idx), idx);
1641 oid = vid_to_data_oid(inode->vdi_id, idx);
1b6ac998 1642 dprintf("new oid %" PRIx64 "\n", oid);
33b1db1c
MK
1643 }
1644
1645 aio_req = alloc_aio_req(s, acb, oid, len, offset, flags, old_oid, done);
1646
1647 if (create) {
1648 AIOReq *areq;
c292ee6a 1649 QLIST_FOREACH(areq, &s->inflight_aio_head, aio_siblings) {
33b1db1c
MK
1650 if (areq->oid == oid) {
1651 /*
1652 * Sheepdog cannot handle simultaneous create
1653 * requests to the same object. So we cannot send
1654 * the request until the previous request
1655 * finishes.
1656 */
1657 aio_req->flags = 0;
1658 aio_req->base_oid = 0;
c292ee6a
MK
1659 QLIST_INSERT_HEAD(&s->pending_aio_head, aio_req,
1660 aio_siblings);
33b1db1c
MK
1661 goto done;
1662 }
1663 }
1664 }
1665
c292ee6a 1666 QLIST_INSERT_HEAD(&s->inflight_aio_head, aio_req, aio_siblings);
33b1db1c
MK
1667 ret = add_aio_request(s, aio_req, acb->qiov->iov, acb->qiov->niov,
1668 create, acb->aiocb_type);
1669 if (ret < 0) {
6daf194d 1670 error_report("add_aio_request is failed");
33b1db1c
MK
1671 free_aio_req(s, aio_req);
1672 acb->ret = -EIO;
1673 goto out;
1674 }
1675 done:
1676 offset = 0;
1677 idx++;
1678 done += len;
1679 }
1680out:
1d732d7d 1681 if (!--acb->nr_pending) {
2df46246 1682 return acb->ret;
33b1db1c 1683 }
2df46246 1684 return 1;
33b1db1c
MK
1685}
1686
a968168c 1687static coroutine_fn int sd_co_writev(BlockDriverState *bs, int64_t sector_num,
2df46246 1688 int nb_sectors, QEMUIOVector *qiov)
33b1db1c
MK
1689{
1690 SheepdogAIOCB *acb;
2df46246 1691 int ret;
33b1db1c
MK
1692
1693 if (bs->growable && sector_num + nb_sectors > bs->total_sectors) {
cb595887
MK
1694 ret = sd_truncate(bs, (sector_num + nb_sectors) * SECTOR_SIZE);
1695 if (ret < 0) {
1696 return ret;
33b1db1c
MK
1697 }
1698 bs->total_sectors = sector_num + nb_sectors;
1699 }
1700
f700f8e3 1701 acb = sd_aio_setup(bs, qiov, sector_num, nb_sectors);
33b1db1c
MK
1702 acb->aio_done_func = sd_write_done;
1703 acb->aiocb_type = AIOCB_WRITE_UDATA;
1704
2df46246
MK
1705 ret = sd_co_rw_vector(acb);
1706 if (ret <= 0) {
1707 qemu_aio_release(acb);
1708 return ret;
1709 }
1710
1711 qemu_coroutine_yield();
1712
1713 return acb->ret;
33b1db1c
MK
1714}
1715
a968168c 1716static coroutine_fn int sd_co_readv(BlockDriverState *bs, int64_t sector_num,
2df46246 1717 int nb_sectors, QEMUIOVector *qiov)
33b1db1c
MK
1718{
1719 SheepdogAIOCB *acb;
19db9b90 1720 int ret;
33b1db1c 1721
f700f8e3 1722 acb = sd_aio_setup(bs, qiov, sector_num, nb_sectors);
33b1db1c
MK
1723 acb->aiocb_type = AIOCB_READ_UDATA;
1724 acb->aio_done_func = sd_finish_aiocb;
1725
2df46246
MK
1726 ret = sd_co_rw_vector(acb);
1727 if (ret <= 0) {
1728 qemu_aio_release(acb);
1729 return ret;
1730 }
1731
1732 qemu_coroutine_yield();
1733
1734 return acb->ret;
33b1db1c
MK
1735}
1736
47622c44
LY
1737static int coroutine_fn sd_co_flush_to_disk(BlockDriverState *bs)
1738{
1739 BDRVSheepdogState *s = bs->opaque;
47783072
LY
1740 SheepdogAIOCB *acb;
1741 AIOReq *aio_req;
47622c44 1742 int ret;
47622c44 1743
0e7106d8 1744 if (s->cache_flags != SD_FLAG_CMD_CACHE) {
47622c44
LY
1745 return 0;
1746 }
1747
f700f8e3 1748 acb = sd_aio_setup(bs, NULL, 0, 0);
47783072
LY
1749 acb->aiocb_type = AIOCB_FLUSH_CACHE;
1750 acb->aio_done_func = sd_finish_aiocb;
47622c44 1751
47783072
LY
1752 aio_req = alloc_aio_req(s, acb, vid_to_vdi_oid(s->inode.vdi_id),
1753 0, 0, 0, 0, 0);
1754 QLIST_INSERT_HEAD(&s->inflight_aio_head, aio_req, aio_siblings);
1755 ret = add_aio_request(s, aio_req, NULL, 0, false, acb->aiocb_type);
1756 if (ret < 0) {
1757 error_report("add_aio_request is failed");
1758 free_aio_req(s, aio_req);
1759 qemu_aio_release(acb);
47622c44
LY
1760 return ret;
1761 }
1762
47783072
LY
1763 qemu_coroutine_yield();
1764 return acb->ret;
47622c44
LY
1765}
1766
33b1db1c
MK
1767static int sd_snapshot_create(BlockDriverState *bs, QEMUSnapshotInfo *sn_info)
1768{
1769 BDRVSheepdogState *s = bs->opaque;
1770 int ret, fd;
1771 uint32_t new_vid;
1772 SheepdogInode *inode;
1773 unsigned int datalen;
1774
1b6ac998 1775 dprintf("sn_info: name %s id_str %s s: name %s vm_state_size %" PRId64 " "
33b1db1c
MK
1776 "is_snapshot %d\n", sn_info->name, sn_info->id_str,
1777 s->name, sn_info->vm_state_size, s->is_snapshot);
1778
1779 if (s->is_snapshot) {
1780 error_report("You can't create a snapshot of a snapshot VDI, "
6daf194d 1781 "%s (%" PRIu32 ").", s->name, s->inode.vdi_id);
33b1db1c
MK
1782
1783 return -EINVAL;
1784 }
1785
1786 dprintf("%s %s\n", sn_info->name, sn_info->id_str);
1787
1788 s->inode.vm_state_size = sn_info->vm_state_size;
1789 s->inode.vm_clock_nsec = sn_info->vm_clock_nsec;
3178e275
JM
1790 /* It appears that inode.tag does not require a NUL terminator,
1791 * which means this use of strncpy is ok.
1792 */
33b1db1c
MK
1793 strncpy(s->inode.tag, sn_info->name, sizeof(s->inode.tag));
1794 /* we don't need to update entire object */
1795 datalen = SD_INODE_SIZE - sizeof(s->inode.data_vdi_id);
1796
1797 /* refresh inode. */
25af257d 1798 fd = connect_to_sdog(s);
33b1db1c 1799 if (fd < 0) {
cb595887 1800 ret = fd;
33b1db1c
MK
1801 goto cleanup;
1802 }
1803
1804 ret = write_object(fd, (char *)&s->inode, vid_to_vdi_oid(s->inode.vdi_id),
0e7106d8 1805 s->inode.nr_copies, datalen, 0, false, s->cache_flags);
33b1db1c 1806 if (ret < 0) {
6daf194d 1807 error_report("failed to write snapshot's inode.");
33b1db1c
MK
1808 goto cleanup;
1809 }
1810
25af257d
MK
1811 ret = do_sd_create(s, s->name, s->inode.vdi_size, s->inode.vdi_id, &new_vid,
1812 1);
33b1db1c 1813 if (ret < 0) {
6daf194d 1814 error_report("failed to create inode for snapshot. %s",
33b1db1c 1815 strerror(errno));
33b1db1c
MK
1816 goto cleanup;
1817 }
1818
7267c094 1819 inode = (SheepdogInode *)g_malloc(datalen);
33b1db1c
MK
1820
1821 ret = read_object(fd, (char *)inode, vid_to_vdi_oid(new_vid),
0e7106d8 1822 s->inode.nr_copies, datalen, 0, s->cache_flags);
33b1db1c
MK
1823
1824 if (ret < 0) {
6daf194d 1825 error_report("failed to read new inode info. %s", strerror(errno));
33b1db1c
MK
1826 goto cleanup;
1827 }
1828
1829 memcpy(&s->inode, inode, datalen);
1830 dprintf("s->inode: name %s snap_id %x oid %x\n",
1831 s->inode.name, s->inode.snap_id, s->inode.vdi_id);
1832
1833cleanup:
1834 closesocket(fd);
1835 return ret;
1836}
1837
1838static int sd_snapshot_goto(BlockDriverState *bs, const char *snapshot_id)
1839{
1840 BDRVSheepdogState *s = bs->opaque;
1841 BDRVSheepdogState *old_s;
1842 char vdi[SD_MAX_VDI_LEN], tag[SD_MAX_VDI_TAG_LEN];
1843 char *buf = NULL;
1844 uint32_t vid;
1845 uint32_t snapid = 0;
cb595887 1846 int ret = 0, fd;
33b1db1c 1847
7267c094 1848 old_s = g_malloc(sizeof(BDRVSheepdogState));
33b1db1c
MK
1849
1850 memcpy(old_s, s, sizeof(BDRVSheepdogState));
1851
3178e275 1852 pstrcpy(vdi, sizeof(vdi), s->name);
33b1db1c 1853
33b1db1c 1854 snapid = strtoul(snapshot_id, NULL, 10);
3178e275
JM
1855 if (snapid) {
1856 tag[0] = 0;
1857 } else {
1858 pstrcpy(tag, sizeof(tag), s->name);
33b1db1c
MK
1859 }
1860
1861 ret = find_vdi_name(s, vdi, snapid, tag, &vid, 1);
1862 if (ret) {
6daf194d 1863 error_report("Failed to find_vdi_name");
33b1db1c
MK
1864 goto out;
1865 }
1866
25af257d 1867 fd = connect_to_sdog(s);
33b1db1c 1868 if (fd < 0) {
cb595887 1869 ret = fd;
33b1db1c
MK
1870 goto out;
1871 }
1872
7267c094 1873 buf = g_malloc(SD_INODE_SIZE);
33b1db1c 1874 ret = read_object(fd, buf, vid_to_vdi_oid(vid), s->inode.nr_copies,
0e7106d8 1875 SD_INODE_SIZE, 0, s->cache_flags);
33b1db1c
MK
1876
1877 closesocket(fd);
1878
1879 if (ret) {
33b1db1c
MK
1880 goto out;
1881 }
1882
1883 memcpy(&s->inode, buf, sizeof(s->inode));
1884
1885 if (!s->inode.vm_state_size) {
6daf194d 1886 error_report("Invalid snapshot");
33b1db1c
MK
1887 ret = -ENOENT;
1888 goto out;
1889 }
1890
2f536801 1891 s->is_snapshot = true;
33b1db1c 1892
7267c094
AL
1893 g_free(buf);
1894 g_free(old_s);
33b1db1c
MK
1895
1896 return 0;
1897out:
1898 /* recover bdrv_sd_state */
1899 memcpy(s, old_s, sizeof(BDRVSheepdogState));
7267c094
AL
1900 g_free(buf);
1901 g_free(old_s);
33b1db1c 1902
6daf194d 1903 error_report("failed to open. recover old bdrv_sd_state.");
33b1db1c
MK
1904
1905 return ret;
1906}
1907
1908static int sd_snapshot_delete(BlockDriverState *bs, const char *snapshot_id)
1909{
1910 /* FIXME: Delete specified snapshot id. */
1911 return 0;
1912}
1913
33b1db1c
MK
1914static int sd_snapshot_list(BlockDriverState *bs, QEMUSnapshotInfo **psn_tab)
1915{
1916 BDRVSheepdogState *s = bs->opaque;
1917 SheepdogReq req;
1918 int fd, nr = 1024, ret, max = BITS_TO_LONGS(SD_NR_VDIS) * sizeof(long);
1919 QEMUSnapshotInfo *sn_tab = NULL;
1920 unsigned wlen, rlen;
1921 int found = 0;
1922 static SheepdogInode inode;
1923 unsigned long *vdi_inuse;
1924 unsigned int start_nr;
1925 uint64_t hval;
1926 uint32_t vid;
1927
7267c094 1928 vdi_inuse = g_malloc(max);
33b1db1c 1929
25af257d 1930 fd = connect_to_sdog(s);
33b1db1c 1931 if (fd < 0) {
cb595887 1932 ret = fd;
33b1db1c
MK
1933 goto out;
1934 }
1935
1936 rlen = max;
1937 wlen = 0;
1938
1939 memset(&req, 0, sizeof(req));
1940
1941 req.opcode = SD_OP_READ_VDIS;
1942 req.data_length = max;
1943
1944 ret = do_req(fd, (SheepdogReq *)&req, vdi_inuse, &wlen, &rlen);
1945
1946 closesocket(fd);
1947 if (ret) {
1948 goto out;
1949 }
1950
7267c094 1951 sn_tab = g_malloc0(nr * sizeof(*sn_tab));
33b1db1c
MK
1952
1953 /* calculate a vdi id with hash function */
1954 hval = fnv_64a_buf(s->name, strlen(s->name), FNV1A_64_INIT);
1955 start_nr = hval & (SD_NR_VDIS - 1);
1956
25af257d 1957 fd = connect_to_sdog(s);
33b1db1c 1958 if (fd < 0) {
cb595887 1959 ret = fd;
33b1db1c
MK
1960 goto out;
1961 }
1962
1963 for (vid = start_nr; found < nr; vid = (vid + 1) % SD_NR_VDIS) {
1964 if (!test_bit(vid, vdi_inuse)) {
1965 break;
1966 }
1967
1968 /* we don't need to read entire object */
1969 ret = read_object(fd, (char *)&inode, vid_to_vdi_oid(vid),
47622c44 1970 0, SD_INODE_SIZE - sizeof(inode.data_vdi_id), 0,
0e7106d8 1971 s->cache_flags);
33b1db1c
MK
1972
1973 if (ret) {
1974 continue;
1975 }
1976
1977 if (!strcmp(inode.name, s->name) && is_snapshot(&inode)) {
1978 sn_tab[found].date_sec = inode.snap_ctime >> 32;
1979 sn_tab[found].date_nsec = inode.snap_ctime & 0xffffffff;
1980 sn_tab[found].vm_state_size = inode.vm_state_size;
1981 sn_tab[found].vm_clock_nsec = inode.vm_clock_nsec;
1982
1983 snprintf(sn_tab[found].id_str, sizeof(sn_tab[found].id_str), "%u",
1984 inode.snap_id);
3178e275
JM
1985 pstrcpy(sn_tab[found].name,
1986 MIN(sizeof(sn_tab[found].name), sizeof(inode.tag)),
1987 inode.tag);
33b1db1c
MK
1988 found++;
1989 }
1990 }
1991
1992 closesocket(fd);
1993out:
1994 *psn_tab = sn_tab;
1995
7267c094 1996 g_free(vdi_inuse);
33b1db1c 1997
cb595887
MK
1998 if (ret < 0) {
1999 return ret;
2000 }
2001
33b1db1c
MK
2002 return found;
2003}
2004
2005static int do_load_save_vmstate(BDRVSheepdogState *s, uint8_t *data,
2006 int64_t pos, int size, int load)
2007{
2f536801
MK
2008 bool create;
2009 int fd, ret = 0, remaining = size;
33b1db1c
MK
2010 unsigned int data_len;
2011 uint64_t vmstate_oid;
2012 uint32_t vdi_index;
2013 uint64_t offset;
2014
25af257d 2015 fd = connect_to_sdog(s);
33b1db1c 2016 if (fd < 0) {
cb595887 2017 return fd;
33b1db1c
MK
2018 }
2019
6f3c714e 2020 while (remaining) {
33b1db1c
MK
2021 vdi_index = pos / SD_DATA_OBJ_SIZE;
2022 offset = pos % SD_DATA_OBJ_SIZE;
2023
1f7a48de 2024 data_len = MIN(remaining, SD_DATA_OBJ_SIZE - offset);
33b1db1c
MK
2025
2026 vmstate_oid = vid_to_vmstate_oid(s->inode.vdi_id, vdi_index);
2027
2028 create = (offset == 0);
2029 if (load) {
2030 ret = read_object(fd, (char *)data, vmstate_oid,
47622c44 2031 s->inode.nr_copies, data_len, offset,
0e7106d8 2032 s->cache_flags);
33b1db1c
MK
2033 } else {
2034 ret = write_object(fd, (char *)data, vmstate_oid,
47622c44 2035 s->inode.nr_copies, data_len, offset, create,
0e7106d8 2036 s->cache_flags);
33b1db1c
MK
2037 }
2038
2039 if (ret < 0) {
6daf194d 2040 error_report("failed to save vmstate %s", strerror(errno));
33b1db1c
MK
2041 goto cleanup;
2042 }
2043
2044 pos += data_len;
1f7a48de 2045 data += data_len;
6f3c714e 2046 remaining -= data_len;
33b1db1c 2047 }
6f3c714e 2048 ret = size;
33b1db1c
MK
2049cleanup:
2050 closesocket(fd);
2051 return ret;
2052}
2053
2054static int sd_save_vmstate(BlockDriverState *bs, const uint8_t *data,
2055 int64_t pos, int size)
2056{
2057 BDRVSheepdogState *s = bs->opaque;
2058
2059 return do_load_save_vmstate(s, (uint8_t *)data, pos, size, 0);
2060}
2061
2062static int sd_load_vmstate(BlockDriverState *bs, uint8_t *data,
2063 int64_t pos, int size)
2064{
2065 BDRVSheepdogState *s = bs->opaque;
2066
2067 return do_load_save_vmstate(s, data, pos, size, 1);
2068}
2069
2070
2071static QEMUOptionParameter sd_create_options[] = {
2072 {
2073 .name = BLOCK_OPT_SIZE,
2074 .type = OPT_SIZE,
2075 .help = "Virtual disk size"
2076 },
2077 {
2078 .name = BLOCK_OPT_BACKING_FILE,
2079 .type = OPT_STRING,
2080 .help = "File name of a base image"
2081 },
a8e0fdd7
MK
2082 {
2083 .name = BLOCK_OPT_PREALLOC,
2084 .type = OPT_STRING,
2085 .help = "Preallocation mode (allowed values: off, full)"
2086 },
33b1db1c
MK
2087 { NULL }
2088};
2089
5d6768e3 2090static BlockDriver bdrv_sheepdog = {
33b1db1c
MK
2091 .format_name = "sheepdog",
2092 .protocol_name = "sheepdog",
2093 .instance_size = sizeof(BDRVSheepdogState),
2094 .bdrv_file_open = sd_open,
2095 .bdrv_close = sd_close,
2096 .bdrv_create = sd_create,
2097 .bdrv_getlength = sd_getlength,
2098 .bdrv_truncate = sd_truncate,
2099
2df46246
MK
2100 .bdrv_co_readv = sd_co_readv,
2101 .bdrv_co_writev = sd_co_writev,
47622c44 2102 .bdrv_co_flush_to_disk = sd_co_flush_to_disk,
33b1db1c
MK
2103
2104 .bdrv_snapshot_create = sd_snapshot_create,
2105 .bdrv_snapshot_goto = sd_snapshot_goto,
2106 .bdrv_snapshot_delete = sd_snapshot_delete,
2107 .bdrv_snapshot_list = sd_snapshot_list,
2108
2109 .bdrv_save_vmstate = sd_save_vmstate,
2110 .bdrv_load_vmstate = sd_load_vmstate,
2111
2112 .create_options = sd_create_options,
2113};
2114
5d6768e3
MK
2115static BlockDriver bdrv_sheepdog_tcp = {
2116 .format_name = "sheepdog",
2117 .protocol_name = "sheepdog+tcp",
2118 .instance_size = sizeof(BDRVSheepdogState),
2119 .bdrv_file_open = sd_open,
2120 .bdrv_close = sd_close,
2121 .bdrv_create = sd_create,
2122 .bdrv_getlength = sd_getlength,
2123 .bdrv_truncate = sd_truncate,
2124
2125 .bdrv_co_readv = sd_co_readv,
2126 .bdrv_co_writev = sd_co_writev,
2127 .bdrv_co_flush_to_disk = sd_co_flush_to_disk,
2128
2129 .bdrv_snapshot_create = sd_snapshot_create,
2130 .bdrv_snapshot_goto = sd_snapshot_goto,
2131 .bdrv_snapshot_delete = sd_snapshot_delete,
2132 .bdrv_snapshot_list = sd_snapshot_list,
2133
2134 .bdrv_save_vmstate = sd_save_vmstate,
2135 .bdrv_load_vmstate = sd_load_vmstate,
2136
2137 .create_options = sd_create_options,
2138};
2139
1b8bbb46
MK
2140static BlockDriver bdrv_sheepdog_unix = {
2141 .format_name = "sheepdog",
2142 .protocol_name = "sheepdog+unix",
2143 .instance_size = sizeof(BDRVSheepdogState),
2144 .bdrv_file_open = sd_open,
2145 .bdrv_close = sd_close,
2146 .bdrv_create = sd_create,
2147 .bdrv_getlength = sd_getlength,
2148 .bdrv_truncate = sd_truncate,
2149
2150 .bdrv_co_readv = sd_co_readv,
2151 .bdrv_co_writev = sd_co_writev,
2152 .bdrv_co_flush_to_disk = sd_co_flush_to_disk,
2153
2154 .bdrv_snapshot_create = sd_snapshot_create,
2155 .bdrv_snapshot_goto = sd_snapshot_goto,
2156 .bdrv_snapshot_delete = sd_snapshot_delete,
2157 .bdrv_snapshot_list = sd_snapshot_list,
2158
2159 .bdrv_save_vmstate = sd_save_vmstate,
2160 .bdrv_load_vmstate = sd_load_vmstate,
2161
2162 .create_options = sd_create_options,
2163};
2164
33b1db1c
MK
2165static void bdrv_sheepdog_init(void)
2166{
2167 bdrv_register(&bdrv_sheepdog);
5d6768e3 2168 bdrv_register(&bdrv_sheepdog_tcp);
1b8bbb46 2169 bdrv_register(&bdrv_sheepdog_unix);
33b1db1c
MK
2170}
2171block_init(bdrv_sheepdog_init);