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Commit | Line | Data |
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33b1db1c MK |
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 PB |
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 | */ |
33b1db1c | 14 | |
80c71a24 | 15 | #include "qemu/osdep.h" |
d1c13688 | 16 | #include "qapi-visit.h" |
da34e65c | 17 | #include "qapi/error.h" |
831acdc9 | 18 | #include "qapi/qmp/qdict.h" |
d1c13688 | 19 | #include "qapi/qobject-input-visitor.h" |
5d6768e3 | 20 | #include "qemu/uri.h" |
1de7afc9 PB |
21 | #include "qemu/error-report.h" |
22 | #include "qemu/sockets.h" | |
737e150e | 23 | #include "block/block_int.h" |
fba98d45 | 24 | #include "sysemu/block-backend.h" |
1de7afc9 | 25 | #include "qemu/bitops.h" |
f348b6d1 | 26 | #include "qemu/cutils.h" |
33b1db1c MK |
27 | |
28 | #define SD_PROTO_VER 0x01 | |
29 | ||
30 | #define SD_DEFAULT_ADDR "localhost" | |
25af257d | 31 | #define SD_DEFAULT_PORT 7000 |
33b1db1c MK |
32 | |
33 | #define SD_OP_CREATE_AND_WRITE_OBJ 0x01 | |
34 | #define SD_OP_READ_OBJ 0x02 | |
35 | #define SD_OP_WRITE_OBJ 0x03 | |
cac8f4a6 | 36 | /* 0x04 is used internally by Sheepdog */ |
33b1db1c MK |
37 | |
38 | #define SD_OP_NEW_VDI 0x11 | |
39 | #define SD_OP_LOCK_VDI 0x12 | |
40 | #define SD_OP_RELEASE_VDI 0x13 | |
41 | #define SD_OP_GET_VDI_INFO 0x14 | |
42 | #define SD_OP_READ_VDIS 0x15 | |
47622c44 | 43 | #define SD_OP_FLUSH_VDI 0x16 |
859e5553 | 44 | #define SD_OP_DEL_VDI 0x17 |
876eb1b0 | 45 | #define SD_OP_GET_CLUSTER_DEFAULT 0x18 |
33b1db1c MK |
46 | |
47 | #define SD_FLAG_CMD_WRITE 0x01 | |
48 | #define SD_FLAG_CMD_COW 0x02 | |
0e7106d8 LY |
49 | #define SD_FLAG_CMD_CACHE 0x04 /* Writeback mode for cache */ |
50 | #define SD_FLAG_CMD_DIRECT 0x08 /* Don't use cache */ | |
33b1db1c MK |
51 | |
52 | #define SD_RES_SUCCESS 0x00 /* Success */ | |
53 | #define SD_RES_UNKNOWN 0x01 /* Unknown error */ | |
54 | #define SD_RES_NO_OBJ 0x02 /* No object found */ | |
55 | #define SD_RES_EIO 0x03 /* I/O error */ | |
56 | #define SD_RES_VDI_EXIST 0x04 /* Vdi exists already */ | |
57 | #define SD_RES_INVALID_PARMS 0x05 /* Invalid parameters */ | |
58 | #define SD_RES_SYSTEM_ERROR 0x06 /* System error */ | |
59 | #define SD_RES_VDI_LOCKED 0x07 /* Vdi is locked */ | |
60 | #define SD_RES_NO_VDI 0x08 /* No vdi found */ | |
61 | #define SD_RES_NO_BASE_VDI 0x09 /* No base vdi found */ | |
62 | #define SD_RES_VDI_READ 0x0A /* Cannot read requested vdi */ | |
63 | #define SD_RES_VDI_WRITE 0x0B /* Cannot write requested vdi */ | |
64 | #define SD_RES_BASE_VDI_READ 0x0C /* Cannot read base vdi */ | |
65 | #define SD_RES_BASE_VDI_WRITE 0x0D /* Cannot write base vdi */ | |
66 | #define SD_RES_NO_TAG 0x0E /* Requested tag is not found */ | |
67 | #define SD_RES_STARTUP 0x0F /* Sheepdog is on starting up */ | |
68 | #define SD_RES_VDI_NOT_LOCKED 0x10 /* Vdi is not locked */ | |
69 | #define SD_RES_SHUTDOWN 0x11 /* Sheepdog is shutting down */ | |
70 | #define SD_RES_NO_MEM 0x12 /* Cannot allocate memory */ | |
71 | #define SD_RES_FULL_VDI 0x13 /* we already have the maximum vdis */ | |
72 | #define SD_RES_VER_MISMATCH 0x14 /* Protocol version mismatch */ | |
73 | #define SD_RES_NO_SPACE 0x15 /* Server has no room for new objects */ | |
74 | #define SD_RES_WAIT_FOR_FORMAT 0x16 /* Waiting for a format operation */ | |
75 | #define SD_RES_WAIT_FOR_JOIN 0x17 /* Waiting for other nodes joining */ | |
76 | #define SD_RES_JOIN_FAILED 0x18 /* Target node had failed to join sheepdog */ | |
fca23f0a | 77 | #define SD_RES_HALT 0x19 /* Sheepdog is stopped serving IO request */ |
6a0b5490 | 78 | #define SD_RES_READONLY 0x1A /* Object is read-only */ |
33b1db1c MK |
79 | |
80 | /* | |
81 | * Object ID rules | |
82 | * | |
83 | * 0 - 19 (20 bits): data object space | |
84 | * 20 - 31 (12 bits): reserved data object space | |
85 | * 32 - 55 (24 bits): vdi object space | |
86 | * 56 - 59 ( 4 bits): reserved vdi object space | |
7acae208 | 87 | * 60 - 63 ( 4 bits): object type identifier space |
33b1db1c MK |
88 | */ |
89 | ||
90 | #define VDI_SPACE_SHIFT 32 | |
91 | #define VDI_BIT (UINT64_C(1) << 63) | |
92 | #define VMSTATE_BIT (UINT64_C(1) << 62) | |
93 | #define MAX_DATA_OBJS (UINT64_C(1) << 20) | |
94 | #define MAX_CHILDREN 1024 | |
95 | #define SD_MAX_VDI_LEN 256 | |
96 | #define SD_MAX_VDI_TAG_LEN 256 | |
97 | #define SD_NR_VDIS (1U << 24) | |
98 | #define SD_DATA_OBJ_SIZE (UINT64_C(1) << 22) | |
99 | #define SD_MAX_VDI_SIZE (SD_DATA_OBJ_SIZE * MAX_DATA_OBJS) | |
876eb1b0 | 100 | #define SD_DEFAULT_BLOCK_SIZE_SHIFT 22 |
b3af018f LY |
101 | /* |
102 | * For erasure coding, we use at most SD_EC_MAX_STRIP for data strips and | |
103 | * (SD_EC_MAX_STRIP - 1) for parity strips | |
104 | * | |
105 | * SD_MAX_COPIES is sum of number of data strips and parity strips. | |
106 | */ | |
107 | #define SD_EC_MAX_STRIP 16 | |
108 | #define SD_MAX_COPIES (SD_EC_MAX_STRIP * 2 - 1) | |
33b1db1c MK |
109 | |
110 | #define SD_INODE_SIZE (sizeof(SheepdogInode)) | |
111 | #define CURRENT_VDI_ID 0 | |
112 | ||
1dbfafed HM |
113 | #define LOCK_TYPE_NORMAL 0 |
114 | #define LOCK_TYPE_SHARED 1 /* for iSCSI multipath */ | |
115 | ||
33b1db1c MK |
116 | typedef struct SheepdogReq { |
117 | uint8_t proto_ver; | |
118 | uint8_t opcode; | |
119 | uint16_t flags; | |
120 | uint32_t epoch; | |
121 | uint32_t id; | |
122 | uint32_t data_length; | |
123 | uint32_t opcode_specific[8]; | |
124 | } SheepdogReq; | |
125 | ||
126 | typedef struct SheepdogRsp { | |
127 | uint8_t proto_ver; | |
128 | uint8_t opcode; | |
129 | uint16_t flags; | |
130 | uint32_t epoch; | |
131 | uint32_t id; | |
132 | uint32_t data_length; | |
133 | uint32_t result; | |
134 | uint32_t opcode_specific[7]; | |
135 | } SheepdogRsp; | |
136 | ||
137 | typedef struct SheepdogObjReq { | |
138 | uint8_t proto_ver; | |
139 | uint8_t opcode; | |
140 | uint16_t flags; | |
141 | uint32_t epoch; | |
142 | uint32_t id; | |
143 | uint32_t data_length; | |
144 | uint64_t oid; | |
145 | uint64_t cow_oid; | |
29a67f7e | 146 | uint8_t copies; |
1841f880 LY |
147 | uint8_t copy_policy; |
148 | uint8_t reserved[6]; | |
33b1db1c MK |
149 | uint64_t offset; |
150 | } SheepdogObjReq; | |
151 | ||
152 | typedef struct SheepdogObjRsp { | |
153 | uint8_t proto_ver; | |
154 | uint8_t opcode; | |
155 | uint16_t flags; | |
156 | uint32_t epoch; | |
157 | uint32_t id; | |
158 | uint32_t data_length; | |
159 | uint32_t result; | |
29a67f7e | 160 | uint8_t copies; |
1841f880 LY |
161 | uint8_t copy_policy; |
162 | uint8_t reserved[2]; | |
33b1db1c MK |
163 | uint32_t pad[6]; |
164 | } SheepdogObjRsp; | |
165 | ||
166 | typedef struct SheepdogVdiReq { | |
167 | uint8_t proto_ver; | |
168 | uint8_t opcode; | |
169 | uint16_t flags; | |
170 | uint32_t epoch; | |
171 | uint32_t id; | |
172 | uint32_t data_length; | |
173 | uint64_t vdi_size; | |
9f23fce7 | 174 | uint32_t base_vdi_id; |
29a67f7e | 175 | uint8_t copies; |
1841f880 | 176 | uint8_t copy_policy; |
876eb1b0 TI |
177 | uint8_t store_policy; |
178 | uint8_t block_size_shift; | |
33b1db1c | 179 | uint32_t snapid; |
1dbfafed HM |
180 | uint32_t type; |
181 | uint32_t pad[2]; | |
33b1db1c MK |
182 | } SheepdogVdiReq; |
183 | ||
184 | typedef struct SheepdogVdiRsp { | |
185 | uint8_t proto_ver; | |
186 | uint8_t opcode; | |
187 | uint16_t flags; | |
188 | uint32_t epoch; | |
189 | uint32_t id; | |
190 | uint32_t data_length; | |
191 | uint32_t result; | |
192 | uint32_t rsvd; | |
193 | uint32_t vdi_id; | |
194 | uint32_t pad[5]; | |
195 | } SheepdogVdiRsp; | |
196 | ||
876eb1b0 TI |
197 | typedef struct SheepdogClusterRsp { |
198 | uint8_t proto_ver; | |
199 | uint8_t opcode; | |
200 | uint16_t flags; | |
201 | uint32_t epoch; | |
202 | uint32_t id; | |
203 | uint32_t data_length; | |
204 | uint32_t result; | |
205 | uint8_t nr_copies; | |
206 | uint8_t copy_policy; | |
207 | uint8_t block_size_shift; | |
208 | uint8_t __pad1; | |
209 | uint32_t __pad2[6]; | |
210 | } SheepdogClusterRsp; | |
211 | ||
33b1db1c MK |
212 | typedef struct SheepdogInode { |
213 | char name[SD_MAX_VDI_LEN]; | |
214 | char tag[SD_MAX_VDI_TAG_LEN]; | |
215 | uint64_t ctime; | |
216 | uint64_t snap_ctime; | |
217 | uint64_t vm_clock_nsec; | |
218 | uint64_t vdi_size; | |
219 | uint64_t vm_state_size; | |
220 | uint16_t copy_policy; | |
221 | uint8_t nr_copies; | |
222 | uint8_t block_size_shift; | |
223 | uint32_t snap_id; | |
224 | uint32_t vdi_id; | |
225 | uint32_t parent_vdi_id; | |
226 | uint32_t child_vdi_id[MAX_CHILDREN]; | |
227 | uint32_t data_vdi_id[MAX_DATA_OBJS]; | |
228 | } SheepdogInode; | |
229 | ||
5d039bab HM |
230 | #define SD_INODE_HEADER_SIZE offsetof(SheepdogInode, data_vdi_id) |
231 | ||
33b1db1c MK |
232 | /* |
233 | * 64 bit FNV-1a non-zero initial basis | |
234 | */ | |
235 | #define FNV1A_64_INIT ((uint64_t)0xcbf29ce484222325ULL) | |
236 | ||
237 | /* | |
238 | * 64 bit Fowler/Noll/Vo FNV-1a hash code | |
239 | */ | |
240 | static inline uint64_t fnv_64a_buf(void *buf, size_t len, uint64_t hval) | |
241 | { | |
242 | unsigned char *bp = buf; | |
243 | unsigned char *be = bp + len; | |
244 | while (bp < be) { | |
245 | hval ^= (uint64_t) *bp++; | |
246 | hval += (hval << 1) + (hval << 4) + (hval << 5) + | |
247 | (hval << 7) + (hval << 8) + (hval << 40); | |
248 | } | |
249 | return hval; | |
250 | } | |
251 | ||
2f536801 | 252 | static inline bool is_data_obj_writable(SheepdogInode *inode, unsigned int idx) |
33b1db1c MK |
253 | { |
254 | return inode->vdi_id == inode->data_vdi_id[idx]; | |
255 | } | |
256 | ||
2f536801 | 257 | static inline bool is_data_obj(uint64_t oid) |
33b1db1c MK |
258 | { |
259 | return !(VDI_BIT & oid); | |
260 | } | |
261 | ||
262 | static inline uint64_t data_oid_to_idx(uint64_t oid) | |
263 | { | |
264 | return oid & (MAX_DATA_OBJS - 1); | |
265 | } | |
266 | ||
72e0996c MK |
267 | static inline uint32_t oid_to_vid(uint64_t oid) |
268 | { | |
269 | return (oid & ~VDI_BIT) >> VDI_SPACE_SHIFT; | |
270 | } | |
271 | ||
33b1db1c MK |
272 | static inline uint64_t vid_to_vdi_oid(uint32_t vid) |
273 | { | |
274 | return VDI_BIT | ((uint64_t)vid << VDI_SPACE_SHIFT); | |
275 | } | |
276 | ||
277 | static inline uint64_t vid_to_vmstate_oid(uint32_t vid, uint32_t idx) | |
278 | { | |
279 | return VMSTATE_BIT | ((uint64_t)vid << VDI_SPACE_SHIFT) | idx; | |
280 | } | |
281 | ||
282 | static inline uint64_t vid_to_data_oid(uint32_t vid, uint32_t idx) | |
283 | { | |
284 | return ((uint64_t)vid << VDI_SPACE_SHIFT) | idx; | |
285 | } | |
286 | ||
2f536801 | 287 | static inline bool is_snapshot(struct SheepdogInode *inode) |
33b1db1c MK |
288 | { |
289 | return !!inode->snap_ctime; | |
290 | } | |
291 | ||
eab8eb8d VT |
292 | static inline size_t count_data_objs(const struct SheepdogInode *inode) |
293 | { | |
294 | return DIV_ROUND_UP(inode->vdi_size, | |
295 | (1UL << inode->block_size_shift)); | |
296 | } | |
297 | ||
2440a2c3 | 298 | #undef DPRINTF |
33b1db1c | 299 | #ifdef DEBUG_SDOG |
ed79f37d | 300 | #define DEBUG_SDOG_PRINT 1 |
33b1db1c | 301 | #else |
ed79f37d | 302 | #define DEBUG_SDOG_PRINT 0 |
33b1db1c | 303 | #endif |
ed79f37d ZJ |
304 | #define DPRINTF(fmt, args...) \ |
305 | do { \ | |
306 | if (DEBUG_SDOG_PRINT) { \ | |
307 | fprintf(stderr, "%s %d: " fmt, __func__, __LINE__, ##args); \ | |
308 | } \ | |
309 | } while (0) | |
33b1db1c MK |
310 | |
311 | typedef struct SheepdogAIOCB SheepdogAIOCB; | |
28ddd08c | 312 | typedef struct BDRVSheepdogState BDRVSheepdogState; |
33b1db1c MK |
313 | |
314 | typedef struct AIOReq { | |
315 | SheepdogAIOCB *aiocb; | |
316 | unsigned int iov_offset; | |
317 | ||
318 | uint64_t oid; | |
319 | uint64_t base_oid; | |
320 | uint64_t offset; | |
321 | unsigned int data_len; | |
322 | uint8_t flags; | |
323 | uint32_t id; | |
b544c1ab | 324 | bool create; |
33b1db1c | 325 | |
c292ee6a | 326 | QLIST_ENTRY(AIOReq) aio_siblings; |
33b1db1c MK |
327 | } AIOReq; |
328 | ||
329 | enum AIOCBState { | |
330 | AIOCB_WRITE_UDATA, | |
331 | AIOCB_READ_UDATA, | |
47783072 | 332 | AIOCB_FLUSH_CACHE, |
cac8f4a6 | 333 | AIOCB_DISCARD_OBJ, |
33b1db1c MK |
334 | }; |
335 | ||
498f2140 | 336 | #define AIOCBOverlapping(x, y) \ |
6a55c82c HM |
337 | (!(x->max_affect_data_idx < y->min_affect_data_idx \ |
338 | || y->max_affect_data_idx < x->min_affect_data_idx)) | |
339 | ||
33b1db1c | 340 | struct SheepdogAIOCB { |
28ddd08c | 341 | BDRVSheepdogState *s; |
33b1db1c MK |
342 | |
343 | QEMUIOVector *qiov; | |
344 | ||
345 | int64_t sector_num; | |
346 | int nb_sectors; | |
347 | ||
348 | int ret; | |
349 | enum AIOCBState aiocb_type; | |
350 | ||
2df46246 | 351 | Coroutine *coroutine; |
1d732d7d | 352 | int nr_pending; |
6a55c82c HM |
353 | |
354 | uint32_t min_affect_data_idx; | |
355 | uint32_t max_affect_data_idx; | |
356 | ||
498f2140 HM |
357 | /* |
358 | * The difference between affect_data_idx and dirty_data_idx: | |
359 | * affect_data_idx represents range of index of all request types. | |
360 | * dirty_data_idx represents range of index updated by COW requests. | |
361 | * dirty_data_idx is used for updating an inode object. | |
362 | */ | |
363 | uint32_t min_dirty_data_idx; | |
364 | uint32_t max_dirty_data_idx; | |
365 | ||
6a55c82c | 366 | QLIST_ENTRY(SheepdogAIOCB) aiocb_siblings; |
33b1db1c MK |
367 | }; |
368 | ||
28ddd08c | 369 | struct BDRVSheepdogState { |
011603ca | 370 | BlockDriverState *bs; |
84390bed | 371 | AioContext *aio_context; |
011603ca | 372 | |
33b1db1c MK |
373 | SheepdogInode inode; |
374 | ||
33b1db1c | 375 | char name[SD_MAX_VDI_LEN]; |
2f536801 | 376 | bool is_snapshot; |
0e7106d8 | 377 | uint32_t cache_flags; |
cac8f4a6 | 378 | bool discard_supported; |
33b1db1c | 379 | |
bd269ebc | 380 | SocketAddress *addr; |
33b1db1c MK |
381 | int fd; |
382 | ||
2df46246 MK |
383 | CoMutex lock; |
384 | Coroutine *co_send; | |
385 | Coroutine *co_recv; | |
386 | ||
33b1db1c | 387 | uint32_t aioreq_seq_num; |
011603ca MK |
388 | |
389 | /* Every aio request must be linked to either of these queues. */ | |
c292ee6a | 390 | QLIST_HEAD(inflight_aio_head, AIOReq) inflight_aio_head; |
011603ca | 391 | QLIST_HEAD(failed_aio_head, AIOReq) failed_aio_head; |
6a55c82c | 392 | |
498f2140 | 393 | CoQueue overlapping_queue; |
6a55c82c | 394 | QLIST_HEAD(inflight_aiocb_head, SheepdogAIOCB) inflight_aiocb_head; |
28ddd08c | 395 | }; |
33b1db1c | 396 | |
4da65c80 LY |
397 | typedef struct BDRVSheepdogReopenState { |
398 | int fd; | |
399 | int cache_flags; | |
400 | } BDRVSheepdogReopenState; | |
401 | ||
33b1db1c MK |
402 | static const char * sd_strerror(int err) |
403 | { | |
404 | int i; | |
405 | ||
406 | static const struct { | |
407 | int err; | |
408 | const char *desc; | |
409 | } errors[] = { | |
410 | {SD_RES_SUCCESS, "Success"}, | |
411 | {SD_RES_UNKNOWN, "Unknown error"}, | |
412 | {SD_RES_NO_OBJ, "No object found"}, | |
413 | {SD_RES_EIO, "I/O error"}, | |
414 | {SD_RES_VDI_EXIST, "VDI exists already"}, | |
415 | {SD_RES_INVALID_PARMS, "Invalid parameters"}, | |
416 | {SD_RES_SYSTEM_ERROR, "System error"}, | |
417 | {SD_RES_VDI_LOCKED, "VDI is already locked"}, | |
418 | {SD_RES_NO_VDI, "No vdi found"}, | |
419 | {SD_RES_NO_BASE_VDI, "No base VDI found"}, | |
420 | {SD_RES_VDI_READ, "Failed read the requested VDI"}, | |
421 | {SD_RES_VDI_WRITE, "Failed to write the requested VDI"}, | |
422 | {SD_RES_BASE_VDI_READ, "Failed to read the base VDI"}, | |
423 | {SD_RES_BASE_VDI_WRITE, "Failed to write the base VDI"}, | |
424 | {SD_RES_NO_TAG, "Failed to find the requested tag"}, | |
425 | {SD_RES_STARTUP, "The system is still booting"}, | |
426 | {SD_RES_VDI_NOT_LOCKED, "VDI isn't locked"}, | |
427 | {SD_RES_SHUTDOWN, "The system is shutting down"}, | |
428 | {SD_RES_NO_MEM, "Out of memory on the server"}, | |
429 | {SD_RES_FULL_VDI, "We already have the maximum vdis"}, | |
430 | {SD_RES_VER_MISMATCH, "Protocol version mismatch"}, | |
431 | {SD_RES_NO_SPACE, "Server has no space for new objects"}, | |
432 | {SD_RES_WAIT_FOR_FORMAT, "Sheepdog is waiting for a format operation"}, | |
433 | {SD_RES_WAIT_FOR_JOIN, "Sheepdog is waiting for other nodes joining"}, | |
434 | {SD_RES_JOIN_FAILED, "Target node had failed to join sheepdog"}, | |
fca23f0a | 435 | {SD_RES_HALT, "Sheepdog is stopped serving IO request"}, |
6a0b5490 | 436 | {SD_RES_READONLY, "Object is read-only"}, |
33b1db1c MK |
437 | }; |
438 | ||
439 | for (i = 0; i < ARRAY_SIZE(errors); ++i) { | |
440 | if (errors[i].err == err) { | |
441 | return errors[i].desc; | |
442 | } | |
443 | } | |
444 | ||
445 | return "Invalid error code"; | |
446 | } | |
447 | ||
448 | /* | |
449 | * Sheepdog I/O handling: | |
450 | * | |
2df46246 | 451 | * 1. In sd_co_rw_vector, we send the I/O requests to the server and |
c292ee6a | 452 | * link the requests to the inflight_list in the |
e80ab33d | 453 | * BDRVSheepdogState. The function yields while waiting for |
2df46246 | 454 | * receiving the response. |
33b1db1c | 455 | * |
2df46246 | 456 | * 2. We receive the response in aio_read_response, the fd handler to |
e80ab33d PB |
457 | * the sheepdog connection. We switch back to sd_co_readv/sd_writev |
458 | * after all the requests belonging to the AIOCB are finished. If | |
459 | * needed, sd_co_writev will send another requests for the vdi object. | |
33b1db1c MK |
460 | */ |
461 | ||
462 | static inline AIOReq *alloc_aio_req(BDRVSheepdogState *s, SheepdogAIOCB *acb, | |
463 | uint64_t oid, unsigned int data_len, | |
b544c1ab | 464 | uint64_t offset, uint8_t flags, bool create, |
33b1db1c MK |
465 | uint64_t base_oid, unsigned int iov_offset) |
466 | { | |
467 | AIOReq *aio_req; | |
468 | ||
7267c094 | 469 | aio_req = g_malloc(sizeof(*aio_req)); |
33b1db1c MK |
470 | aio_req->aiocb = acb; |
471 | aio_req->iov_offset = iov_offset; | |
472 | aio_req->oid = oid; | |
473 | aio_req->base_oid = base_oid; | |
474 | aio_req->offset = offset; | |
475 | aio_req->data_len = data_len; | |
476 | aio_req->flags = flags; | |
477 | aio_req->id = s->aioreq_seq_num++; | |
b544c1ab | 478 | aio_req->create = create; |
33b1db1c | 479 | |
1d732d7d | 480 | acb->nr_pending++; |
33b1db1c MK |
481 | return aio_req; |
482 | } | |
483 | ||
acf6e5f0 PB |
484 | static void wait_for_overlapping_aiocb(BDRVSheepdogState *s, SheepdogAIOCB *acb) |
485 | { | |
486 | SheepdogAIOCB *cb; | |
487 | ||
488 | retry: | |
489 | QLIST_FOREACH(cb, &s->inflight_aiocb_head, aiocb_siblings) { | |
490 | if (AIOCBOverlapping(acb, cb)) { | |
1ace7cea | 491 | qemu_co_queue_wait(&s->overlapping_queue, NULL); |
acf6e5f0 PB |
492 | goto retry; |
493 | } | |
494 | } | |
495 | } | |
496 | ||
28ddd08c PB |
497 | static void sd_aio_setup(SheepdogAIOCB *acb, BDRVSheepdogState *s, |
498 | QEMUIOVector *qiov, int64_t sector_num, int nb_sectors, | |
499 | int type) | |
33b1db1c | 500 | { |
6a55c82c | 501 | uint32_t object_size; |
6a55c82c HM |
502 | |
503 | object_size = (UINT32_C(1) << s->inode.block_size_shift); | |
33b1db1c | 504 | |
28ddd08c | 505 | acb->s = s; |
33b1db1c MK |
506 | |
507 | acb->qiov = qiov; | |
508 | ||
509 | acb->sector_num = sector_num; | |
510 | acb->nb_sectors = nb_sectors; | |
511 | ||
2df46246 | 512 | acb->coroutine = qemu_coroutine_self(); |
33b1db1c | 513 | acb->ret = 0; |
1d732d7d | 514 | acb->nr_pending = 0; |
6a55c82c HM |
515 | |
516 | acb->min_affect_data_idx = acb->sector_num * BDRV_SECTOR_SIZE / object_size; | |
517 | acb->max_affect_data_idx = (acb->sector_num * BDRV_SECTOR_SIZE + | |
518 | acb->nb_sectors * BDRV_SECTOR_SIZE) / object_size; | |
519 | ||
498f2140 HM |
520 | acb->min_dirty_data_idx = UINT32_MAX; |
521 | acb->max_dirty_data_idx = 0; | |
28ddd08c | 522 | acb->aiocb_type = type; |
acf6e5f0 PB |
523 | |
524 | if (type == AIOCB_FLUSH_CACHE) { | |
525 | return; | |
526 | } | |
527 | ||
528 | wait_for_overlapping_aiocb(s, acb); | |
529 | QLIST_INSERT_HEAD(&s->inflight_aiocb_head, acb, aiocb_siblings); | |
33b1db1c MK |
530 | } |
531 | ||
bd269ebc | 532 | static SocketAddress *sd_socket_address(const char *path, |
831acdc9 MA |
533 | const char *host, const char *port) |
534 | { | |
bd269ebc | 535 | SocketAddress *addr = g_new0(SocketAddress, 1); |
831acdc9 MA |
536 | |
537 | if (path) { | |
bd269ebc MA |
538 | addr->type = SOCKET_ADDRESS_TYPE_UNIX; |
539 | addr->u.q_unix.path = g_strdup(path); | |
831acdc9 | 540 | } else { |
bd269ebc MA |
541 | addr->type = SOCKET_ADDRESS_TYPE_INET; |
542 | addr->u.inet.host = g_strdup(host ?: SD_DEFAULT_ADDR); | |
543 | addr->u.inet.port = g_strdup(port ?: stringify(SD_DEFAULT_PORT)); | |
831acdc9 MA |
544 | } |
545 | ||
546 | return addr; | |
547 | } | |
548 | ||
bd269ebc | 549 | static SocketAddress *sd_server_config(QDict *options, Error **errp) |
d1c13688 MA |
550 | { |
551 | QDict *server = NULL; | |
552 | QObject *crumpled_server = NULL; | |
553 | Visitor *iv = NULL; | |
bd269ebc | 554 | SocketAddress *saddr = NULL; |
d1c13688 MA |
555 | Error *local_err = NULL; |
556 | ||
557 | qdict_extract_subqdict(options, &server, "server."); | |
558 | ||
559 | crumpled_server = qdict_crumple(server, errp); | |
560 | if (!crumpled_server) { | |
561 | goto done; | |
562 | } | |
563 | ||
564 | /* | |
565 | * FIXME .numeric, .to, .ipv4 or .ipv6 don't work with -drive | |
566 | * server.type=inet. .to doesn't matter, it's ignored anyway. | |
567 | * That's because when @options come from -blockdev or | |
568 | * blockdev_add, members are typed according to the QAPI schema, | |
569 | * but when they come from -drive, they're all QString. The | |
570 | * visitor expects the former. | |
571 | */ | |
572 | iv = qobject_input_visitor_new(crumpled_server); | |
bd269ebc | 573 | visit_type_SocketAddress(iv, NULL, &saddr, &local_err); |
d1c13688 MA |
574 | if (local_err) { |
575 | error_propagate(errp, local_err); | |
576 | goto done; | |
577 | } | |
578 | ||
d1c13688 | 579 | done: |
d1c13688 MA |
580 | visit_free(iv); |
581 | qobject_decref(crumpled_server); | |
582 | QDECREF(server); | |
583 | return saddr; | |
584 | } | |
585 | ||
833a7cc3 | 586 | /* Return -EIO in case of error, file descriptor on success */ |
dfb12bf8 | 587 | static int connect_to_sdog(BDRVSheepdogState *s, Error **errp) |
33b1db1c | 588 | { |
25af257d | 589 | int fd; |
33b1db1c | 590 | |
226799ce | 591 | fd = socket_connect(s->addr, NULL, NULL, errp); |
1b8bbb46 | 592 | |
bd269ebc | 593 | if (s->addr->type == SOCKET_ADDRESS_TYPE_INET && fd >= 0) { |
8ecc2f9e MA |
594 | int ret = socket_set_nodelay(fd); |
595 | if (ret < 0) { | |
596 | error_report("%s", strerror(errno)); | |
1b8bbb46 MK |
597 | } |
598 | } | |
33b1db1c | 599 | |
dfb12bf8 | 600 | if (fd >= 0) { |
f9e8cacc | 601 | qemu_set_nonblock(fd); |
833a7cc3 LY |
602 | } else { |
603 | fd = -EIO; | |
33b1db1c MK |
604 | } |
605 | ||
33b1db1c MK |
606 | return fd; |
607 | } | |
608 | ||
833a7cc3 | 609 | /* Return 0 on success and -errno in case of error */ |
e0d93a89 MK |
610 | static coroutine_fn int send_co_req(int sockfd, SheepdogReq *hdr, void *data, |
611 | unsigned int *wlen) | |
47622c44 LY |
612 | { |
613 | int ret; | |
614 | ||
615 | ret = qemu_co_send(sockfd, hdr, sizeof(*hdr)); | |
80731d9d | 616 | if (ret != sizeof(*hdr)) { |
47622c44 | 617 | error_report("failed to send a req, %s", strerror(errno)); |
b16a44e1 | 618 | return -errno; |
47622c44 LY |
619 | } |
620 | ||
621 | ret = qemu_co_send(sockfd, data, *wlen); | |
80731d9d | 622 | if (ret != *wlen) { |
47622c44 | 623 | error_report("failed to send a req, %s", strerror(errno)); |
b16a44e1 | 624 | return -errno; |
47622c44 LY |
625 | } |
626 | ||
627 | return ret; | |
628 | } | |
e0d93a89 | 629 | |
cddd4ac7 MK |
630 | typedef struct SheepdogReqCo { |
631 | int sockfd; | |
f11672db | 632 | BlockDriverState *bs; |
84390bed | 633 | AioContext *aio_context; |
cddd4ac7 MK |
634 | SheepdogReq *hdr; |
635 | void *data; | |
636 | unsigned int *wlen; | |
637 | unsigned int *rlen; | |
638 | int ret; | |
639 | bool finished; | |
9d456654 | 640 | Coroutine *co; |
cddd4ac7 MK |
641 | } SheepdogReqCo; |
642 | ||
9d456654 PB |
643 | static void restart_co_req(void *opaque) |
644 | { | |
645 | SheepdogReqCo *srco = opaque; | |
646 | ||
647 | aio_co_wake(srco->co); | |
648 | } | |
649 | ||
cddd4ac7 | 650 | static coroutine_fn void do_co_req(void *opaque) |
47622c44 LY |
651 | { |
652 | int ret; | |
cddd4ac7 MK |
653 | SheepdogReqCo *srco = opaque; |
654 | int sockfd = srco->sockfd; | |
655 | SheepdogReq *hdr = srco->hdr; | |
656 | void *data = srco->data; | |
657 | unsigned int *wlen = srco->wlen; | |
658 | unsigned int *rlen = srco->rlen; | |
2dfcca3b | 659 | |
9d456654 | 660 | srco->co = qemu_coroutine_self(); |
dca21ef2 | 661 | aio_set_fd_handler(srco->aio_context, sockfd, false, |
9d456654 | 662 | NULL, restart_co_req, NULL, srco); |
47622c44 | 663 | |
47622c44 LY |
664 | ret = send_co_req(sockfd, hdr, data, wlen); |
665 | if (ret < 0) { | |
666 | goto out; | |
667 | } | |
668 | ||
dca21ef2 | 669 | aio_set_fd_handler(srco->aio_context, sockfd, false, |
9d456654 | 670 | restart_co_req, NULL, NULL, srco); |
2dfcca3b | 671 | |
47622c44 | 672 | ret = qemu_co_recv(sockfd, hdr, sizeof(*hdr)); |
80731d9d | 673 | if (ret != sizeof(*hdr)) { |
47622c44 | 674 | error_report("failed to get a rsp, %s", strerror(errno)); |
cb595887 | 675 | ret = -errno; |
47622c44 LY |
676 | goto out; |
677 | } | |
678 | ||
679 | if (*rlen > hdr->data_length) { | |
680 | *rlen = hdr->data_length; | |
681 | } | |
682 | ||
683 | if (*rlen) { | |
684 | ret = qemu_co_recv(sockfd, data, *rlen); | |
80731d9d | 685 | if (ret != *rlen) { |
47622c44 | 686 | error_report("failed to get the data, %s", strerror(errno)); |
cb595887 | 687 | ret = -errno; |
47622c44 LY |
688 | goto out; |
689 | } | |
690 | } | |
691 | ret = 0; | |
692 | out: | |
ed9ba724 MK |
693 | /* there is at most one request for this sockfd, so it is safe to |
694 | * set each handler to NULL. */ | |
dca21ef2 | 695 | aio_set_fd_handler(srco->aio_context, sockfd, false, |
f6a51c84 | 696 | NULL, NULL, NULL, NULL); |
cddd4ac7 | 697 | |
9d456654 | 698 | srco->co = NULL; |
cddd4ac7 | 699 | srco->ret = ret; |
e2a6ae7f PB |
700 | /* Set srco->finished before reading bs->wakeup. */ |
701 | atomic_mb_set(&srco->finished, true); | |
c9d1a561 PB |
702 | if (srco->bs) { |
703 | bdrv_wakeup(srco->bs); | |
704 | } | |
cddd4ac7 MK |
705 | } |
706 | ||
833a7cc3 LY |
707 | /* |
708 | * Send the request to the sheep in a synchronous manner. | |
709 | * | |
710 | * Return 0 on success, -errno in case of error. | |
711 | */ | |
f11672db | 712 | static int do_req(int sockfd, BlockDriverState *bs, SheepdogReq *hdr, |
84390bed | 713 | void *data, unsigned int *wlen, unsigned int *rlen) |
cddd4ac7 MK |
714 | { |
715 | Coroutine *co; | |
716 | SheepdogReqCo srco = { | |
717 | .sockfd = sockfd, | |
f11672db PB |
718 | .aio_context = bs ? bdrv_get_aio_context(bs) : qemu_get_aio_context(), |
719 | .bs = bs, | |
cddd4ac7 MK |
720 | .hdr = hdr, |
721 | .data = data, | |
722 | .wlen = wlen, | |
723 | .rlen = rlen, | |
724 | .ret = 0, | |
725 | .finished = false, | |
726 | }; | |
727 | ||
728 | if (qemu_in_coroutine()) { | |
729 | do_co_req(&srco); | |
730 | } else { | |
0b8b8753 | 731 | co = qemu_coroutine_create(do_co_req, &srco); |
f11672db | 732 | if (bs) { |
76296dff | 733 | bdrv_coroutine_enter(bs, co); |
f11672db PB |
734 | BDRV_POLL_WHILE(bs, !srco.finished); |
735 | } else { | |
736 | qemu_coroutine_enter(co); | |
737 | while (!srco.finished) { | |
738 | aio_poll(qemu_get_aio_context(), true); | |
739 | } | |
cddd4ac7 MK |
740 | } |
741 | } | |
742 | ||
743 | return srco.ret; | |
47622c44 LY |
744 | } |
745 | ||
a37dcdf9 | 746 | static void coroutine_fn add_aio_request(BDRVSheepdogState *s, AIOReq *aio_req, |
b544c1ab HM |
747 | struct iovec *iov, int niov, |
748 | enum AIOCBState aiocb_type); | |
a37dcdf9 | 749 | static void coroutine_fn resend_aioreq(BDRVSheepdogState *s, AIOReq *aio_req); |
72e0996c | 750 | static int reload_inode(BDRVSheepdogState *s, uint32_t snapid, const char *tag); |
356b4ca2 | 751 | static int get_sheep_fd(BDRVSheepdogState *s, Error **errp); |
011603ca | 752 | static void co_write_request(void *opaque); |
7dc1cde0 | 753 | |
011603ca MK |
754 | static coroutine_fn void reconnect_to_sdog(void *opaque) |
755 | { | |
756 | BDRVSheepdogState *s = opaque; | |
757 | AIOReq *aio_req, *next; | |
758 | ||
dca21ef2 | 759 | aio_set_fd_handler(s->aio_context, s->fd, false, NULL, |
f6a51c84 | 760 | NULL, NULL, NULL); |
011603ca MK |
761 | close(s->fd); |
762 | s->fd = -1; | |
763 | ||
764 | /* Wait for outstanding write requests to be completed. */ | |
765 | while (s->co_send != NULL) { | |
766 | co_write_request(opaque); | |
767 | } | |
768 | ||
769 | /* Try to reconnect the sheepdog server every one second. */ | |
770 | while (s->fd < 0) { | |
a780dea0 | 771 | Error *local_err = NULL; |
356b4ca2 | 772 | s->fd = get_sheep_fd(s, &local_err); |
011603ca MK |
773 | if (s->fd < 0) { |
774 | DPRINTF("Wait for connection to be established\n"); | |
565f65d2 | 775 | error_report_err(local_err); |
011603ca MK |
776 | co_aio_sleep_ns(bdrv_get_aio_context(s->bs), QEMU_CLOCK_REALTIME, |
777 | 1000000000ULL); | |
778 | } | |
779 | }; | |
780 | ||
781 | /* | |
782 | * Now we have to resend all the request in the inflight queue. However, | |
783 | * resend_aioreq() can yield and newly created requests can be added to the | |
784 | * inflight queue before the coroutine is resumed. To avoid mixing them, we | |
785 | * have to move all the inflight requests to the failed queue before | |
786 | * resend_aioreq() is called. | |
787 | */ | |
788 | QLIST_FOREACH_SAFE(aio_req, &s->inflight_aio_head, aio_siblings, next) { | |
789 | QLIST_REMOVE(aio_req, aio_siblings); | |
790 | QLIST_INSERT_HEAD(&s->failed_aio_head, aio_req, aio_siblings); | |
791 | } | |
792 | ||
793 | /* Resend all the failed aio requests. */ | |
794 | while (!QLIST_EMPTY(&s->failed_aio_head)) { | |
795 | aio_req = QLIST_FIRST(&s->failed_aio_head); | |
796 | QLIST_REMOVE(aio_req, aio_siblings); | |
011603ca MK |
797 | resend_aioreq(s, aio_req); |
798 | } | |
799 | } | |
800 | ||
33b1db1c MK |
801 | /* |
802 | * Receive responses of the I/O requests. | |
803 | * | |
804 | * This function is registered as a fd handler, and called from the | |
805 | * main loop when s->fd is ready for reading responses. | |
806 | */ | |
d8716b41 | 807 | static void coroutine_fn aio_read_response(void *opaque) |
33b1db1c MK |
808 | { |
809 | SheepdogObjRsp rsp; | |
810 | BDRVSheepdogState *s = opaque; | |
811 | int fd = s->fd; | |
812 | int ret; | |
813 | AIOReq *aio_req = NULL; | |
814 | SheepdogAIOCB *acb; | |
cac8f4a6 | 815 | uint64_t idx; |
33b1db1c | 816 | |
33b1db1c | 817 | /* read a header */ |
8c5135f9 | 818 | ret = qemu_co_recv(fd, &rsp, sizeof(rsp)); |
80731d9d | 819 | if (ret != sizeof(rsp)) { |
6daf194d | 820 | error_report("failed to get the header, %s", strerror(errno)); |
011603ca | 821 | goto err; |
33b1db1c MK |
822 | } |
823 | ||
c292ee6a MK |
824 | /* find the right aio_req from the inflight aio list */ |
825 | QLIST_FOREACH(aio_req, &s->inflight_aio_head, aio_siblings) { | |
33b1db1c MK |
826 | if (aio_req->id == rsp.id) { |
827 | break; | |
828 | } | |
829 | } | |
830 | if (!aio_req) { | |
6daf194d | 831 | error_report("cannot find aio_req %x", rsp.id); |
011603ca | 832 | goto err; |
33b1db1c MK |
833 | } |
834 | ||
835 | acb = aio_req->aiocb; | |
836 | ||
837 | switch (acb->aiocb_type) { | |
838 | case AIOCB_WRITE_UDATA: | |
839 | if (!is_data_obj(aio_req->oid)) { | |
840 | break; | |
841 | } | |
842 | idx = data_oid_to_idx(aio_req->oid); | |
843 | ||
b544c1ab | 844 | if (aio_req->create) { |
33b1db1c MK |
845 | /* |
846 | * If the object is newly created one, we need to update | |
847 | * the vdi object (metadata object). min_dirty_data_idx | |
848 | * and max_dirty_data_idx are changed to include updated | |
849 | * index between them. | |
850 | */ | |
bd751f22 LY |
851 | if (rsp.result == SD_RES_SUCCESS) { |
852 | s->inode.data_vdi_id[idx] = s->inode.vdi_id; | |
498f2140 HM |
853 | acb->max_dirty_data_idx = MAX(idx, acb->max_dirty_data_idx); |
854 | acb->min_dirty_data_idx = MIN(idx, acb->min_dirty_data_idx); | |
bd751f22 | 855 | } |
33b1db1c MK |
856 | } |
857 | break; | |
858 | case AIOCB_READ_UDATA: | |
2fc8ae1d MT |
859 | ret = qemu_co_recvv(fd, acb->qiov->iov, acb->qiov->niov, |
860 | aio_req->iov_offset, rsp.data_length); | |
80731d9d | 861 | if (ret != rsp.data_length) { |
6daf194d | 862 | error_report("failed to get the data, %s", strerror(errno)); |
011603ca | 863 | goto err; |
33b1db1c MK |
864 | } |
865 | break; | |
47783072 LY |
866 | case AIOCB_FLUSH_CACHE: |
867 | if (rsp.result == SD_RES_INVALID_PARMS) { | |
2440a2c3 | 868 | DPRINTF("disable cache since the server doesn't support it\n"); |
47783072 LY |
869 | s->cache_flags = SD_FLAG_CMD_DIRECT; |
870 | rsp.result = SD_RES_SUCCESS; | |
871 | } | |
872 | break; | |
cac8f4a6 LY |
873 | case AIOCB_DISCARD_OBJ: |
874 | switch (rsp.result) { | |
875 | case SD_RES_INVALID_PARMS: | |
8ecc2f9e | 876 | error_report("server doesn't support discard command"); |
cac8f4a6 LY |
877 | rsp.result = SD_RES_SUCCESS; |
878 | s->discard_supported = false; | |
879 | break; | |
cac8f4a6 LY |
880 | default: |
881 | break; | |
882 | } | |
33b1db1c MK |
883 | } |
884 | ||
e80ab33d PB |
885 | /* No more data for this aio_req (reload_inode below uses its own file |
886 | * descriptor handler which doesn't use co_recv). | |
887 | */ | |
888 | s->co_recv = NULL; | |
889 | ||
c4080e93 | 890 | QLIST_REMOVE(aio_req, aio_siblings); |
13c31de2 MK |
891 | switch (rsp.result) { |
892 | case SD_RES_SUCCESS: | |
893 | break; | |
894 | case SD_RES_READONLY: | |
72e0996c MK |
895 | if (s->inode.vdi_id == oid_to_vid(aio_req->oid)) { |
896 | ret = reload_inode(s, 0, ""); | |
897 | if (ret < 0) { | |
011603ca | 898 | goto err; |
72e0996c MK |
899 | } |
900 | } | |
72e0996c MK |
901 | if (is_data_obj(aio_req->oid)) { |
902 | aio_req->oid = vid_to_data_oid(s->inode.vdi_id, | |
903 | data_oid_to_idx(aio_req->oid)); | |
904 | } else { | |
905 | aio_req->oid = vid_to_vdi_oid(s->inode.vdi_id); | |
906 | } | |
a37dcdf9 | 907 | resend_aioreq(s, aio_req); |
e80ab33d | 908 | return; |
13c31de2 | 909 | default: |
33b1db1c | 910 | acb->ret = -EIO; |
6daf194d | 911 | error_report("%s", sd_strerror(rsp.result)); |
13c31de2 | 912 | break; |
33b1db1c MK |
913 | } |
914 | ||
c4080e93 PB |
915 | g_free(aio_req); |
916 | ||
917 | if (!--acb->nr_pending) { | |
33b1db1c MK |
918 | /* |
919 | * We've finished all requests which belong to the AIOCB, so | |
2df46246 | 920 | * we can switch back to sd_co_readv/writev now. |
33b1db1c | 921 | */ |
9d456654 | 922 | aio_co_wake(acb->coroutine); |
33b1db1c | 923 | } |
e80ab33d | 924 | |
011603ca | 925 | return; |
e80ab33d | 926 | |
011603ca | 927 | err: |
011603ca | 928 | reconnect_to_sdog(opaque); |
2df46246 MK |
929 | } |
930 | ||
931 | static void co_read_response(void *opaque) | |
932 | { | |
933 | BDRVSheepdogState *s = opaque; | |
934 | ||
935 | if (!s->co_recv) { | |
0b8b8753 | 936 | s->co_recv = qemu_coroutine_create(aio_read_response, opaque); |
2df46246 MK |
937 | } |
938 | ||
5eceb01a | 939 | aio_co_enter(s->aio_context, s->co_recv); |
2df46246 MK |
940 | } |
941 | ||
942 | static void co_write_request(void *opaque) | |
943 | { | |
944 | BDRVSheepdogState *s = opaque; | |
945 | ||
9d456654 | 946 | aio_co_wake(s->co_send); |
33b1db1c MK |
947 | } |
948 | ||
33b1db1c | 949 | /* |
dc6fb73d | 950 | * Return a socket descriptor to read/write objects. |
33b1db1c | 951 | * |
dc6fb73d | 952 | * We cannot use this descriptor for other operations because |
33b1db1c MK |
953 | * the block driver may be on waiting response from the server. |
954 | */ | |
356b4ca2 | 955 | static int get_sheep_fd(BDRVSheepdogState *s, Error **errp) |
33b1db1c | 956 | { |
1b8bbb46 | 957 | int fd; |
33b1db1c | 958 | |
356b4ca2 | 959 | fd = connect_to_sdog(s, errp); |
33b1db1c | 960 | if (fd < 0) { |
cb595887 | 961 | return fd; |
33b1db1c MK |
962 | } |
963 | ||
dca21ef2 | 964 | aio_set_fd_handler(s->aio_context, fd, false, |
f6a51c84 | 965 | co_read_response, NULL, NULL, s); |
33b1db1c MK |
966 | return fd; |
967 | } | |
968 | ||
89e2a31d MA |
969 | /* |
970 | * Parse numeric snapshot ID in @str | |
971 | * If @str can't be parsed as number, return false. | |
972 | * Else, if the number is zero or too large, set *@snapid to zero and | |
973 | * return true. | |
974 | * Else, set *@snapid to the number and return true. | |
975 | */ | |
976 | static bool sd_parse_snapid(const char *str, uint32_t *snapid) | |
977 | { | |
978 | unsigned long ul; | |
979 | int ret; | |
980 | ||
981 | ret = qemu_strtoul(str, NULL, 10, &ul); | |
982 | if (ret == -ERANGE) { | |
983 | ul = ret = 0; | |
984 | } | |
985 | if (ret) { | |
986 | return false; | |
987 | } | |
988 | if (ul > UINT32_MAX) { | |
989 | ul = 0; | |
990 | } | |
991 | ||
992 | *snapid = ul; | |
993 | return true; | |
994 | } | |
995 | ||
996 | static bool sd_parse_snapid_or_tag(const char *str, | |
997 | uint32_t *snapid, char tag[]) | |
998 | { | |
999 | if (!sd_parse_snapid(str, snapid)) { | |
1000 | *snapid = 0; | |
1001 | if (g_strlcpy(tag, str, SD_MAX_VDI_TAG_LEN) >= SD_MAX_VDI_TAG_LEN) { | |
1002 | return false; | |
1003 | } | |
1004 | } else if (!*snapid) { | |
1005 | return false; | |
1006 | } else { | |
1007 | tag[0] = 0; | |
1008 | } | |
1009 | return true; | |
1010 | } | |
1011 | ||
831acdc9 MA |
1012 | typedef struct { |
1013 | const char *path; /* non-null iff transport is tcp */ | |
1014 | const char *host; /* valid when transport is tcp */ | |
1015 | int port; /* valid when transport is tcp */ | |
1016 | char vdi[SD_MAX_VDI_LEN]; | |
1017 | char tag[SD_MAX_VDI_TAG_LEN]; | |
1018 | uint32_t snap_id; | |
1019 | /* Remainder is only for sd_config_done() */ | |
1020 | URI *uri; | |
1021 | QueryParams *qp; | |
1022 | } SheepdogConfig; | |
1023 | ||
1024 | static void sd_config_done(SheepdogConfig *cfg) | |
1025 | { | |
1026 | if (cfg->qp) { | |
1027 | query_params_free(cfg->qp); | |
1028 | } | |
1029 | uri_free(cfg->uri); | |
1030 | } | |
1031 | ||
1032 | static void sd_parse_uri(SheepdogConfig *cfg, const char *filename, | |
36bcac16 | 1033 | Error **errp) |
5d6768e3 | 1034 | { |
36bcac16 | 1035 | Error *err = NULL; |
5d6768e3 | 1036 | QueryParams *qp = NULL; |
8ecc2f9e MA |
1037 | bool is_unix; |
1038 | URI *uri; | |
5d6768e3 | 1039 | |
831acdc9 MA |
1040 | memset(cfg, 0, sizeof(*cfg)); |
1041 | ||
1042 | cfg->uri = uri = uri_parse(filename); | |
5d6768e3 | 1043 | if (!uri) { |
36bcac16 MA |
1044 | error_setg(&err, "invalid URI"); |
1045 | goto out; | |
5d6768e3 MK |
1046 | } |
1047 | ||
1b8bbb46 | 1048 | /* transport */ |
f69165a8 | 1049 | if (!g_strcmp0(uri->scheme, "sheepdog")) { |
8ecc2f9e | 1050 | is_unix = false; |
f69165a8 | 1051 | } else if (!g_strcmp0(uri->scheme, "sheepdog+tcp")) { |
8ecc2f9e | 1052 | is_unix = false; |
f69165a8 | 1053 | } else if (!g_strcmp0(uri->scheme, "sheepdog+unix")) { |
8ecc2f9e | 1054 | is_unix = true; |
1b8bbb46 | 1055 | } else { |
36bcac16 MA |
1056 | error_setg(&err, "URI scheme must be 'sheepdog', 'sheepdog+tcp'," |
1057 | " or 'sheepdog+unix'"); | |
1b8bbb46 MK |
1058 | goto out; |
1059 | } | |
1060 | ||
5d6768e3 | 1061 | if (uri->path == NULL || !strcmp(uri->path, "/")) { |
36bcac16 | 1062 | error_setg(&err, "missing file path in URI"); |
5d6768e3 MK |
1063 | goto out; |
1064 | } | |
831acdc9 MA |
1065 | if (g_strlcpy(cfg->vdi, uri->path + 1, SD_MAX_VDI_LEN) |
1066 | >= SD_MAX_VDI_LEN) { | |
36bcac16 | 1067 | error_setg(&err, "VDI name is too long"); |
daa0b0d4 MA |
1068 | goto out; |
1069 | } | |
5d6768e3 | 1070 | |
831acdc9 | 1071 | cfg->qp = qp = query_params_parse(uri->query); |
1b8bbb46 | 1072 | |
8ecc2f9e | 1073 | if (is_unix) { |
1b8bbb46 | 1074 | /* sheepdog+unix:///vdiname?socket=path */ |
36bcac16 MA |
1075 | if (uri->server || uri->port) { |
1076 | error_setg(&err, "URI scheme %s doesn't accept a server address", | |
1077 | uri->scheme); | |
1078 | goto out; | |
1079 | } | |
1080 | if (!qp->n) { | |
1081 | error_setg(&err, | |
1082 | "URI scheme %s requires query parameter 'socket'", | |
1083 | uri->scheme); | |
1084 | goto out; | |
1085 | } | |
1086 | if (qp->n != 1 || strcmp(qp->p[0].name, "socket")) { | |
1087 | error_setg(&err, "unexpected query parameters"); | |
1b8bbb46 MK |
1088 | goto out; |
1089 | } | |
831acdc9 | 1090 | cfg->path = qp->p[0].value; |
1b8bbb46 MK |
1091 | } else { |
1092 | /* sheepdog[+tcp]://[host:port]/vdiname */ | |
36bcac16 MA |
1093 | if (qp->n) { |
1094 | error_setg(&err, "unexpected query parameters"); | |
1095 | goto out; | |
1096 | } | |
831acdc9 MA |
1097 | cfg->host = uri->server; |
1098 | cfg->port = uri->port; | |
1b8bbb46 | 1099 | } |
5d6768e3 MK |
1100 | |
1101 | /* snapshot tag */ | |
1102 | if (uri->fragment) { | |
831acdc9 MA |
1103 | if (!sd_parse_snapid_or_tag(uri->fragment, |
1104 | &cfg->snap_id, cfg->tag)) { | |
36bcac16 MA |
1105 | error_setg(&err, "'%s' is not a valid snapshot ID", |
1106 | uri->fragment); | |
89e2a31d | 1107 | goto out; |
5d6768e3 MK |
1108 | } |
1109 | } else { | |
831acdc9 | 1110 | cfg->snap_id = CURRENT_VDI_ID; /* search current vdi */ |
5d6768e3 MK |
1111 | } |
1112 | ||
1113 | out: | |
8ecc2f9e MA |
1114 | if (err) { |
1115 | error_propagate(errp, err); | |
831acdc9 | 1116 | sd_config_done(cfg); |
5d6768e3 | 1117 | } |
5d6768e3 MK |
1118 | } |
1119 | ||
33b1db1c | 1120 | /* |
5d6768e3 | 1121 | * Parse a filename (old syntax) |
33b1db1c MK |
1122 | * |
1123 | * filename must be one of the following formats: | |
1124 | * 1. [vdiname] | |
1125 | * 2. [vdiname]:[snapid] | |
1126 | * 3. [vdiname]:[tag] | |
1127 | * 4. [hostname]:[port]:[vdiname] | |
1128 | * 5. [hostname]:[port]:[vdiname]:[snapid] | |
1129 | * 6. [hostname]:[port]:[vdiname]:[tag] | |
1130 | * | |
1131 | * You can boot from the snapshot images by specifying `snapid` or | |
1132 | * `tag'. | |
1133 | * | |
1134 | * You can run VMs outside the Sheepdog cluster by specifying | |
1135 | * `hostname' and `port' (experimental). | |
1136 | */ | |
831acdc9 | 1137 | static void parse_vdiname(SheepdogConfig *cfg, const char *filename, |
36bcac16 | 1138 | Error **errp) |
33b1db1c | 1139 | { |
36bcac16 | 1140 | Error *err = NULL; |
5d6768e3 MK |
1141 | char *p, *q, *uri; |
1142 | const char *host_spec, *vdi_spec; | |
36bcac16 | 1143 | int nr_sep; |
33b1db1c | 1144 | |
11d816a5 | 1145 | strstart(filename, "sheepdog:", &filename); |
7267c094 | 1146 | p = q = g_strdup(filename); |
33b1db1c MK |
1147 | |
1148 | /* count the number of separators */ | |
1149 | nr_sep = 0; | |
1150 | while (*p) { | |
1151 | if (*p == ':') { | |
1152 | nr_sep++; | |
1153 | } | |
1154 | p++; | |
1155 | } | |
1156 | p = q; | |
1157 | ||
5d6768e3 | 1158 | /* use the first two tokens as host_spec. */ |
33b1db1c | 1159 | if (nr_sep >= 2) { |
5d6768e3 | 1160 | host_spec = p; |
33b1db1c | 1161 | p = strchr(p, ':'); |
5d6768e3 | 1162 | p++; |
33b1db1c MK |
1163 | p = strchr(p, ':'); |
1164 | *p++ = '\0'; | |
1165 | } else { | |
5d6768e3 | 1166 | host_spec = ""; |
33b1db1c MK |
1167 | } |
1168 | ||
5d6768e3 | 1169 | vdi_spec = p; |
33b1db1c | 1170 | |
5d6768e3 | 1171 | p = strchr(vdi_spec, ':'); |
33b1db1c | 1172 | if (p) { |
5d6768e3 | 1173 | *p++ = '#'; |
33b1db1c MK |
1174 | } |
1175 | ||
5d6768e3 | 1176 | uri = g_strdup_printf("sheepdog://%s/%s", host_spec, vdi_spec); |
33b1db1c | 1177 | |
36bcac16 MA |
1178 | /* |
1179 | * FIXME We to escape URI meta-characters, e.g. "x?y=z" | |
1180 | * produces "sheepdog://x?y=z". Because of that ... | |
1181 | */ | |
831acdc9 | 1182 | sd_parse_uri(cfg, uri, &err); |
36bcac16 MA |
1183 | if (err) { |
1184 | /* | |
1185 | * ... this can fail, but the error message is misleading. | |
1186 | * Replace it by the traditional useless one until the | |
1187 | * escaping is fixed. | |
1188 | */ | |
1189 | error_free(err); | |
1190 | error_setg(errp, "Can't parse filename"); | |
1191 | } | |
5d6768e3 MK |
1192 | |
1193 | g_free(q); | |
1194 | g_free(uri); | |
33b1db1c MK |
1195 | } |
1196 | ||
831acdc9 MA |
1197 | static void sd_parse_filename(const char *filename, QDict *options, |
1198 | Error **errp) | |
1199 | { | |
1200 | Error *err = NULL; | |
1201 | SheepdogConfig cfg; | |
1202 | char buf[32]; | |
1203 | ||
1204 | if (strstr(filename, "://")) { | |
1205 | sd_parse_uri(&cfg, filename, &err); | |
1206 | } else { | |
1207 | parse_vdiname(&cfg, filename, &err); | |
1208 | } | |
1209 | if (err) { | |
1210 | error_propagate(errp, err); | |
1211 | return; | |
1212 | } | |
1213 | ||
831acdc9 | 1214 | if (cfg.path) { |
d1c13688 MA |
1215 | qdict_set_default_str(options, "server.path", cfg.path); |
1216 | qdict_set_default_str(options, "server.type", "unix"); | |
1217 | } else { | |
1218 | qdict_set_default_str(options, "server.type", "inet"); | |
1219 | qdict_set_default_str(options, "server.host", | |
1220 | cfg.host ?: SD_DEFAULT_ADDR); | |
1221 | snprintf(buf, sizeof(buf), "%d", cfg.port ?: SD_DEFAULT_PORT); | |
1222 | qdict_set_default_str(options, "server.port", buf); | |
831acdc9 MA |
1223 | } |
1224 | qdict_set_default_str(options, "vdi", cfg.vdi); | |
1225 | qdict_set_default_str(options, "tag", cfg.tag); | |
1226 | if (cfg.snap_id) { | |
1227 | snprintf(buf, sizeof(buf), "%d", cfg.snap_id); | |
1228 | qdict_set_default_str(options, "snap-id", buf); | |
1229 | } | |
1230 | ||
1231 | sd_config_done(&cfg); | |
1232 | } | |
1233 | ||
982dcbf4 MK |
1234 | static int find_vdi_name(BDRVSheepdogState *s, const char *filename, |
1235 | uint32_t snapid, const char *tag, uint32_t *vid, | |
dc83cd42 | 1236 | bool lock, Error **errp) |
33b1db1c MK |
1237 | { |
1238 | int ret, fd; | |
1239 | SheepdogVdiReq hdr; | |
1240 | SheepdogVdiRsp *rsp = (SheepdogVdiRsp *)&hdr; | |
1241 | unsigned int wlen, rlen = 0; | |
1242 | char buf[SD_MAX_VDI_LEN + SD_MAX_VDI_TAG_LEN]; | |
1243 | ||
dc83cd42 | 1244 | fd = connect_to_sdog(s, errp); |
33b1db1c | 1245 | if (fd < 0) { |
cb595887 | 1246 | return fd; |
33b1db1c MK |
1247 | } |
1248 | ||
3178e275 JM |
1249 | /* This pair of strncpy calls ensures that the buffer is zero-filled, |
1250 | * which is desirable since we'll soon be sending those bytes, and | |
1251 | * don't want the send_req to read uninitialized data. | |
1252 | */ | |
33b1db1c MK |
1253 | strncpy(buf, filename, SD_MAX_VDI_LEN); |
1254 | strncpy(buf + SD_MAX_VDI_LEN, tag, SD_MAX_VDI_TAG_LEN); | |
1255 | ||
1256 | memset(&hdr, 0, sizeof(hdr)); | |
982dcbf4 | 1257 | if (lock) { |
33b1db1c | 1258 | hdr.opcode = SD_OP_LOCK_VDI; |
1dbfafed | 1259 | hdr.type = LOCK_TYPE_NORMAL; |
982dcbf4 MK |
1260 | } else { |
1261 | hdr.opcode = SD_OP_GET_VDI_INFO; | |
33b1db1c MK |
1262 | } |
1263 | wlen = SD_MAX_VDI_LEN + SD_MAX_VDI_TAG_LEN; | |
1264 | hdr.proto_ver = SD_PROTO_VER; | |
1265 | hdr.data_length = wlen; | |
1266 | hdr.snapid = snapid; | |
1267 | hdr.flags = SD_FLAG_CMD_WRITE; | |
1268 | ||
f11672db | 1269 | ret = do_req(fd, s->bs, (SheepdogReq *)&hdr, buf, &wlen, &rlen); |
33b1db1c | 1270 | if (ret) { |
dc83cd42 | 1271 | error_setg_errno(errp, -ret, "cannot get vdi info"); |
33b1db1c MK |
1272 | goto out; |
1273 | } | |
1274 | ||
1275 | if (rsp->result != SD_RES_SUCCESS) { | |
dc83cd42 MA |
1276 | error_setg(errp, "cannot get vdi info, %s, %s %" PRIu32 " %s", |
1277 | sd_strerror(rsp->result), filename, snapid, tag); | |
cb595887 MK |
1278 | if (rsp->result == SD_RES_NO_VDI) { |
1279 | ret = -ENOENT; | |
38890b24 HM |
1280 | } else if (rsp->result == SD_RES_VDI_LOCKED) { |
1281 | ret = -EBUSY; | |
cb595887 MK |
1282 | } else { |
1283 | ret = -EIO; | |
1284 | } | |
33b1db1c MK |
1285 | goto out; |
1286 | } | |
1287 | *vid = rsp->vdi_id; | |
1288 | ||
1289 | ret = 0; | |
1290 | out: | |
1291 | closesocket(fd); | |
1292 | return ret; | |
1293 | } | |
1294 | ||
a37dcdf9 | 1295 | static void coroutine_fn add_aio_request(BDRVSheepdogState *s, AIOReq *aio_req, |
b544c1ab HM |
1296 | struct iovec *iov, int niov, |
1297 | enum AIOCBState aiocb_type) | |
33b1db1c MK |
1298 | { |
1299 | int nr_copies = s->inode.nr_copies; | |
1300 | SheepdogObjReq hdr; | |
47783072 | 1301 | unsigned int wlen = 0; |
33b1db1c MK |
1302 | int ret; |
1303 | uint64_t oid = aio_req->oid; | |
1304 | unsigned int datalen = aio_req->data_len; | |
1305 | uint64_t offset = aio_req->offset; | |
1306 | uint8_t flags = aio_req->flags; | |
1307 | uint64_t old_oid = aio_req->base_oid; | |
b544c1ab | 1308 | bool create = aio_req->create; |
33b1db1c | 1309 | |
c4080e93 PB |
1310 | QLIST_INSERT_HEAD(&s->inflight_aio_head, aio_req, aio_siblings); |
1311 | ||
33b1db1c | 1312 | if (!nr_copies) { |
6daf194d | 1313 | error_report("bug"); |
33b1db1c MK |
1314 | } |
1315 | ||
1316 | memset(&hdr, 0, sizeof(hdr)); | |
1317 | ||
47783072 LY |
1318 | switch (aiocb_type) { |
1319 | case AIOCB_FLUSH_CACHE: | |
1320 | hdr.opcode = SD_OP_FLUSH_VDI; | |
1321 | break; | |
1322 | case AIOCB_READ_UDATA: | |
33b1db1c MK |
1323 | hdr.opcode = SD_OP_READ_OBJ; |
1324 | hdr.flags = flags; | |
47783072 LY |
1325 | break; |
1326 | case AIOCB_WRITE_UDATA: | |
1327 | if (create) { | |
1328 | hdr.opcode = SD_OP_CREATE_AND_WRITE_OBJ; | |
1329 | } else { | |
1330 | hdr.opcode = SD_OP_WRITE_OBJ; | |
1331 | } | |
33b1db1c | 1332 | wlen = datalen; |
33b1db1c | 1333 | hdr.flags = SD_FLAG_CMD_WRITE | flags; |
47783072 | 1334 | break; |
cac8f4a6 | 1335 | case AIOCB_DISCARD_OBJ: |
e6fd57ea HM |
1336 | hdr.opcode = SD_OP_WRITE_OBJ; |
1337 | hdr.flags = SD_FLAG_CMD_WRITE | flags; | |
1338 | s->inode.data_vdi_id[data_oid_to_idx(oid)] = 0; | |
1339 | offset = offsetof(SheepdogInode, | |
1340 | data_vdi_id[data_oid_to_idx(oid)]); | |
1341 | oid = vid_to_vdi_oid(s->inode.vdi_id); | |
1342 | wlen = datalen = sizeof(uint32_t); | |
cac8f4a6 | 1343 | break; |
33b1db1c MK |
1344 | } |
1345 | ||
0e7106d8 LY |
1346 | if (s->cache_flags) { |
1347 | hdr.flags |= s->cache_flags; | |
47622c44 LY |
1348 | } |
1349 | ||
33b1db1c MK |
1350 | hdr.oid = oid; |
1351 | hdr.cow_oid = old_oid; | |
1352 | hdr.copies = s->inode.nr_copies; | |
1353 | ||
1354 | hdr.data_length = datalen; | |
1355 | hdr.offset = offset; | |
1356 | ||
1357 | hdr.id = aio_req->id; | |
1358 | ||
2df46246 MK |
1359 | qemu_co_mutex_lock(&s->lock); |
1360 | s->co_send = qemu_coroutine_self(); | |
dca21ef2 | 1361 | aio_set_fd_handler(s->aio_context, s->fd, false, |
f6a51c84 | 1362 | co_read_response, co_write_request, NULL, s); |
128aa589 | 1363 | socket_set_cork(s->fd, 1); |
33b1db1c MK |
1364 | |
1365 | /* send a header */ | |
8c5135f9 | 1366 | ret = qemu_co_send(s->fd, &hdr, sizeof(hdr)); |
80731d9d | 1367 | if (ret != sizeof(hdr)) { |
6daf194d | 1368 | error_report("failed to send a req, %s", strerror(errno)); |
011603ca | 1369 | goto out; |
33b1db1c MK |
1370 | } |
1371 | ||
1372 | if (wlen) { | |
2fc8ae1d | 1373 | ret = qemu_co_sendv(s->fd, iov, niov, aio_req->iov_offset, wlen); |
80731d9d | 1374 | if (ret != wlen) { |
6daf194d | 1375 | error_report("failed to send a data, %s", strerror(errno)); |
33b1db1c MK |
1376 | } |
1377 | } | |
011603ca | 1378 | out: |
128aa589 | 1379 | socket_set_cork(s->fd, 0); |
dca21ef2 | 1380 | aio_set_fd_handler(s->aio_context, s->fd, false, |
f6a51c84 | 1381 | co_read_response, NULL, NULL, s); |
011603ca | 1382 | s->co_send = NULL; |
2df46246 | 1383 | qemu_co_mutex_unlock(&s->lock); |
33b1db1c MK |
1384 | } |
1385 | ||
f11672db | 1386 | static int read_write_object(int fd, BlockDriverState *bs, char *buf, |
84390bed | 1387 | uint64_t oid, uint8_t copies, |
33b1db1c | 1388 | unsigned int datalen, uint64_t offset, |
0e7106d8 | 1389 | bool write, bool create, uint32_t cache_flags) |
33b1db1c MK |
1390 | { |
1391 | SheepdogObjReq hdr; | |
1392 | SheepdogObjRsp *rsp = (SheepdogObjRsp *)&hdr; | |
1393 | unsigned int wlen, rlen; | |
1394 | int ret; | |
1395 | ||
1396 | memset(&hdr, 0, sizeof(hdr)); | |
1397 | ||
1398 | if (write) { | |
1399 | wlen = datalen; | |
1400 | rlen = 0; | |
1401 | hdr.flags = SD_FLAG_CMD_WRITE; | |
1402 | if (create) { | |
1403 | hdr.opcode = SD_OP_CREATE_AND_WRITE_OBJ; | |
1404 | } else { | |
1405 | hdr.opcode = SD_OP_WRITE_OBJ; | |
1406 | } | |
1407 | } else { | |
1408 | wlen = 0; | |
1409 | rlen = datalen; | |
1410 | hdr.opcode = SD_OP_READ_OBJ; | |
1411 | } | |
47622c44 | 1412 | |
0e7106d8 | 1413 | hdr.flags |= cache_flags; |
47622c44 | 1414 | |
33b1db1c MK |
1415 | hdr.oid = oid; |
1416 | hdr.data_length = datalen; | |
1417 | hdr.offset = offset; | |
1418 | hdr.copies = copies; | |
1419 | ||
f11672db | 1420 | ret = do_req(fd, bs, (SheepdogReq *)&hdr, buf, &wlen, &rlen); |
33b1db1c | 1421 | if (ret) { |
6daf194d | 1422 | error_report("failed to send a request to the sheep"); |
cb595887 | 1423 | return ret; |
33b1db1c MK |
1424 | } |
1425 | ||
1426 | switch (rsp->result) { | |
1427 | case SD_RES_SUCCESS: | |
1428 | return 0; | |
1429 | default: | |
6daf194d | 1430 | error_report("%s", sd_strerror(rsp->result)); |
cb595887 | 1431 | return -EIO; |
33b1db1c MK |
1432 | } |
1433 | } | |
1434 | ||
f11672db | 1435 | static int read_object(int fd, BlockDriverState *bs, char *buf, |
84390bed | 1436 | uint64_t oid, uint8_t copies, |
0e7106d8 LY |
1437 | unsigned int datalen, uint64_t offset, |
1438 | uint32_t cache_flags) | |
33b1db1c | 1439 | { |
f11672db | 1440 | return read_write_object(fd, bs, buf, oid, copies, |
84390bed | 1441 | datalen, offset, false, |
0e7106d8 | 1442 | false, cache_flags); |
33b1db1c MK |
1443 | } |
1444 | ||
f11672db | 1445 | static int write_object(int fd, BlockDriverState *bs, char *buf, |
84390bed | 1446 | uint64_t oid, uint8_t copies, |
2f536801 | 1447 | unsigned int datalen, uint64_t offset, bool create, |
0e7106d8 | 1448 | uint32_t cache_flags) |
33b1db1c | 1449 | { |
f11672db | 1450 | return read_write_object(fd, bs, buf, oid, copies, |
84390bed | 1451 | datalen, offset, true, |
0e7106d8 | 1452 | create, cache_flags); |
33b1db1c MK |
1453 | } |
1454 | ||
9ff53a0e MK |
1455 | /* update inode with the latest state */ |
1456 | static int reload_inode(BDRVSheepdogState *s, uint32_t snapid, const char *tag) | |
1457 | { | |
dfb12bf8 | 1458 | Error *local_err = NULL; |
9ff53a0e MK |
1459 | SheepdogInode *inode; |
1460 | int ret = 0, fd; | |
1461 | uint32_t vid = 0; | |
1462 | ||
dfb12bf8 | 1463 | fd = connect_to_sdog(s, &local_err); |
9ff53a0e | 1464 | if (fd < 0) { |
565f65d2 | 1465 | error_report_err(local_err); |
9ff53a0e MK |
1466 | return -EIO; |
1467 | } | |
1468 | ||
5d039bab | 1469 | inode = g_malloc(SD_INODE_HEADER_SIZE); |
9ff53a0e | 1470 | |
dc83cd42 | 1471 | ret = find_vdi_name(s, s->name, snapid, tag, &vid, false, &local_err); |
9ff53a0e | 1472 | if (ret) { |
565f65d2 | 1473 | error_report_err(local_err); |
9ff53a0e MK |
1474 | goto out; |
1475 | } | |
1476 | ||
f11672db | 1477 | ret = read_object(fd, s->bs, (char *)inode, vid_to_vdi_oid(vid), |
5d039bab HM |
1478 | s->inode.nr_copies, SD_INODE_HEADER_SIZE, 0, |
1479 | s->cache_flags); | |
9ff53a0e MK |
1480 | if (ret < 0) { |
1481 | goto out; | |
1482 | } | |
1483 | ||
1484 | if (inode->vdi_id != s->inode.vdi_id) { | |
5d039bab | 1485 | memcpy(&s->inode, inode, SD_INODE_HEADER_SIZE); |
9ff53a0e MK |
1486 | } |
1487 | ||
1488 | out: | |
1489 | g_free(inode); | |
1490 | closesocket(fd); | |
1491 | ||
1492 | return ret; | |
1493 | } | |
1494 | ||
a37dcdf9 | 1495 | static void coroutine_fn resend_aioreq(BDRVSheepdogState *s, AIOReq *aio_req) |
13c31de2 MK |
1496 | { |
1497 | SheepdogAIOCB *acb = aio_req->aiocb; | |
b544c1ab HM |
1498 | |
1499 | aio_req->create = false; | |
13c31de2 MK |
1500 | |
1501 | /* check whether this request becomes a CoW one */ | |
2412aec7 | 1502 | if (acb->aiocb_type == AIOCB_WRITE_UDATA && is_data_obj(aio_req->oid)) { |
13c31de2 | 1503 | int idx = data_oid_to_idx(aio_req->oid); |
13c31de2 | 1504 | |
13c31de2 MK |
1505 | if (is_data_obj_writable(&s->inode, idx)) { |
1506 | goto out; | |
1507 | } | |
1508 | ||
80308d33 MK |
1509 | if (s->inode.data_vdi_id[idx]) { |
1510 | aio_req->base_oid = vid_to_data_oid(s->inode.data_vdi_id[idx], idx); | |
1511 | aio_req->flags |= SD_FLAG_CMD_COW; | |
1512 | } | |
b544c1ab | 1513 | aio_req->create = true; |
13c31de2 MK |
1514 | } |
1515 | out: | |
2412aec7 | 1516 | if (is_data_obj(aio_req->oid)) { |
b544c1ab | 1517 | add_aio_request(s, aio_req, acb->qiov->iov, acb->qiov->niov, |
a37dcdf9 | 1518 | acb->aiocb_type); |
2412aec7 MK |
1519 | } else { |
1520 | struct iovec iov; | |
1521 | iov.iov_base = &s->inode; | |
1522 | iov.iov_len = sizeof(s->inode); | |
b544c1ab | 1523 | add_aio_request(s, aio_req, &iov, 1, AIOCB_WRITE_UDATA); |
2412aec7 | 1524 | } |
13c31de2 MK |
1525 | } |
1526 | ||
84390bed SH |
1527 | static void sd_detach_aio_context(BlockDriverState *bs) |
1528 | { | |
1529 | BDRVSheepdogState *s = bs->opaque; | |
1530 | ||
dca21ef2 | 1531 | aio_set_fd_handler(s->aio_context, s->fd, false, NULL, |
f6a51c84 | 1532 | NULL, NULL, NULL); |
84390bed SH |
1533 | } |
1534 | ||
1535 | static void sd_attach_aio_context(BlockDriverState *bs, | |
1536 | AioContext *new_context) | |
1537 | { | |
1538 | BDRVSheepdogState *s = bs->opaque; | |
1539 | ||
1540 | s->aio_context = new_context; | |
dca21ef2 | 1541 | aio_set_fd_handler(new_context, s->fd, false, |
f6a51c84 | 1542 | co_read_response, NULL, NULL, s); |
84390bed SH |
1543 | } |
1544 | ||
c8c96350 KW |
1545 | static QemuOptsList runtime_opts = { |
1546 | .name = "sheepdog", | |
1547 | .head = QTAILQ_HEAD_INITIALIZER(runtime_opts.head), | |
1548 | .desc = { | |
831acdc9 MA |
1549 | { |
1550 | .name = "vdi", | |
1551 | .type = QEMU_OPT_STRING, | |
1552 | }, | |
1553 | { | |
1554 | .name = "snap-id", | |
1555 | .type = QEMU_OPT_NUMBER, | |
1556 | }, | |
1557 | { | |
1558 | .name = "tag", | |
c8c96350 | 1559 | .type = QEMU_OPT_STRING, |
c8c96350 KW |
1560 | }, |
1561 | { /* end of list */ } | |
1562 | }, | |
1563 | }; | |
1564 | ||
015a1036 HR |
1565 | static int sd_open(BlockDriverState *bs, QDict *options, int flags, |
1566 | Error **errp) | |
33b1db1c MK |
1567 | { |
1568 | int ret, fd; | |
1569 | uint32_t vid = 0; | |
1570 | BDRVSheepdogState *s = bs->opaque; | |
d1c13688 | 1571 | const char *vdi, *snap_id_str, *tag; |
831acdc9 | 1572 | uint64_t snap_id; |
33b1db1c | 1573 | char *buf = NULL; |
c8c96350 KW |
1574 | QemuOpts *opts; |
1575 | Error *local_err = NULL; | |
c8c96350 | 1576 | |
011603ca | 1577 | s->bs = bs; |
84390bed | 1578 | s->aio_context = bdrv_get_aio_context(bs); |
011603ca | 1579 | |
87ea75d5 | 1580 | opts = qemu_opts_create(&runtime_opts, NULL, 0, &error_abort); |
c8c96350 | 1581 | qemu_opts_absorb_qdict(opts, options, &local_err); |
84d18f06 | 1582 | if (local_err) { |
e67c3993 | 1583 | error_propagate(errp, local_err); |
c8c96350 | 1584 | ret = -EINVAL; |
cbc488ee | 1585 | goto err_no_fd; |
c8c96350 KW |
1586 | } |
1587 | ||
d1c13688 MA |
1588 | s->addr = sd_server_config(options, errp); |
1589 | if (!s->addr) { | |
1590 | ret = -EINVAL; | |
1591 | goto err_no_fd; | |
1592 | } | |
1593 | ||
831acdc9 MA |
1594 | vdi = qemu_opt_get(opts, "vdi"); |
1595 | snap_id_str = qemu_opt_get(opts, "snap-id"); | |
1596 | snap_id = qemu_opt_get_number(opts, "snap-id", CURRENT_VDI_ID); | |
1597 | tag = qemu_opt_get(opts, "tag"); | |
33b1db1c | 1598 | |
831acdc9 MA |
1599 | if (!vdi) { |
1600 | error_setg(errp, "parameter 'vdi' is missing"); | |
1601 | ret = -EINVAL; | |
1602 | goto err_no_fd; | |
1603 | } | |
1604 | if (strlen(vdi) >= SD_MAX_VDI_LEN) { | |
1605 | error_setg(errp, "value of parameter 'vdi' is too long"); | |
1606 | ret = -EINVAL; | |
1607 | goto err_no_fd; | |
1608 | } | |
33b1db1c | 1609 | |
831acdc9 MA |
1610 | if (snap_id > UINT32_MAX) { |
1611 | snap_id = 0; | |
1612 | } | |
1613 | if (snap_id_str && !snap_id) { | |
1614 | error_setg(errp, "'snap-id=%s' is not a valid snapshot ID", | |
1615 | snap_id_str); | |
1616 | ret = -EINVAL; | |
1617 | goto err_no_fd; | |
1618 | } | |
5d6768e3 | 1619 | |
831acdc9 MA |
1620 | if (!tag) { |
1621 | tag = ""; | |
5d6768e3 | 1622 | } |
831acdc9 MA |
1623 | if (tag && strlen(tag) >= SD_MAX_VDI_TAG_LEN) { |
1624 | error_setg(errp, "value of parameter 'tag' is too long"); | |
36bcac16 | 1625 | ret = -EINVAL; |
cbc488ee | 1626 | goto err_no_fd; |
33b1db1c | 1627 | } |
831acdc9 | 1628 | |
831acdc9 MA |
1629 | QLIST_INIT(&s->inflight_aio_head); |
1630 | QLIST_INIT(&s->failed_aio_head); | |
1631 | QLIST_INIT(&s->inflight_aiocb_head); | |
1632 | ||
e67c3993 | 1633 | s->fd = get_sheep_fd(s, errp); |
33b1db1c | 1634 | if (s->fd < 0) { |
cb595887 | 1635 | ret = s->fd; |
cbc488ee | 1636 | goto err_no_fd; |
33b1db1c MK |
1637 | } |
1638 | ||
831acdc9 | 1639 | ret = find_vdi_name(s, vdi, (uint32_t)snap_id, tag, &vid, true, errp); |
33b1db1c | 1640 | if (ret) { |
cbc488ee | 1641 | goto err; |
33b1db1c MK |
1642 | } |
1643 | ||
0e7106d8 LY |
1644 | /* |
1645 | * QEMU block layer emulates writethrough cache as 'writeback + flush', so | |
1646 | * we always set SD_FLAG_CMD_CACHE (writeback cache) as default. | |
1647 | */ | |
1648 | s->cache_flags = SD_FLAG_CMD_CACHE; | |
1649 | if (flags & BDRV_O_NOCACHE) { | |
1650 | s->cache_flags = SD_FLAG_CMD_DIRECT; | |
1651 | } | |
cac8f4a6 | 1652 | s->discard_supported = true; |
0e7106d8 | 1653 | |
831acdc9 | 1654 | if (snap_id || tag[0]) { |
2440a2c3 | 1655 | DPRINTF("%" PRIx32 " snapshot inode was open.\n", vid); |
2f536801 | 1656 | s->is_snapshot = true; |
33b1db1c MK |
1657 | } |
1658 | ||
e67c3993 | 1659 | fd = connect_to_sdog(s, errp); |
33b1db1c | 1660 | if (fd < 0) { |
cb595887 | 1661 | ret = fd; |
cbc488ee | 1662 | goto err; |
33b1db1c MK |
1663 | } |
1664 | ||
7267c094 | 1665 | buf = g_malloc(SD_INODE_SIZE); |
f11672db | 1666 | ret = read_object(fd, s->bs, buf, vid_to_vdi_oid(vid), |
84390bed | 1667 | 0, SD_INODE_SIZE, 0, s->cache_flags); |
33b1db1c MK |
1668 | |
1669 | closesocket(fd); | |
1670 | ||
1671 | if (ret) { | |
efde4b62 | 1672 | error_setg(errp, "Can't read snapshot inode"); |
cbc488ee | 1673 | goto err; |
33b1db1c MK |
1674 | } |
1675 | ||
1676 | memcpy(&s->inode, buf, sizeof(s->inode)); | |
33b1db1c | 1677 | |
e8bfaa2f | 1678 | bs->total_sectors = s->inode.vdi_size / BDRV_SECTOR_SIZE; |
3178e275 | 1679 | pstrcpy(s->name, sizeof(s->name), vdi); |
2df46246 | 1680 | qemu_co_mutex_init(&s->lock); |
498f2140 | 1681 | qemu_co_queue_init(&s->overlapping_queue); |
c8c96350 | 1682 | qemu_opts_del(opts); |
7267c094 | 1683 | g_free(buf); |
33b1db1c | 1684 | return 0; |
cbc488ee MA |
1685 | |
1686 | err: | |
dca21ef2 | 1687 | aio_set_fd_handler(bdrv_get_aio_context(bs), s->fd, |
f6a51c84 | 1688 | false, NULL, NULL, NULL, NULL); |
cbc488ee MA |
1689 | closesocket(s->fd); |
1690 | err_no_fd: | |
c8c96350 | 1691 | qemu_opts_del(opts); |
7267c094 | 1692 | g_free(buf); |
cb595887 | 1693 | return ret; |
33b1db1c MK |
1694 | } |
1695 | ||
4da65c80 LY |
1696 | static int sd_reopen_prepare(BDRVReopenState *state, BlockReopenQueue *queue, |
1697 | Error **errp) | |
1698 | { | |
1699 | BDRVSheepdogState *s = state->bs->opaque; | |
1700 | BDRVSheepdogReopenState *re_s; | |
1701 | int ret = 0; | |
1702 | ||
1703 | re_s = state->opaque = g_new0(BDRVSheepdogReopenState, 1); | |
1704 | ||
1705 | re_s->cache_flags = SD_FLAG_CMD_CACHE; | |
1706 | if (state->flags & BDRV_O_NOCACHE) { | |
1707 | re_s->cache_flags = SD_FLAG_CMD_DIRECT; | |
1708 | } | |
1709 | ||
1710 | re_s->fd = get_sheep_fd(s, errp); | |
1711 | if (re_s->fd < 0) { | |
1712 | ret = re_s->fd; | |
1713 | return ret; | |
1714 | } | |
1715 | ||
1716 | return ret; | |
1717 | } | |
1718 | ||
1719 | static void sd_reopen_commit(BDRVReopenState *state) | |
1720 | { | |
1721 | BDRVSheepdogReopenState *re_s = state->opaque; | |
1722 | BDRVSheepdogState *s = state->bs->opaque; | |
1723 | ||
1724 | if (s->fd) { | |
dca21ef2 | 1725 | aio_set_fd_handler(s->aio_context, s->fd, false, |
f6a51c84 | 1726 | NULL, NULL, NULL, NULL); |
4da65c80 LY |
1727 | closesocket(s->fd); |
1728 | } | |
1729 | ||
1730 | s->fd = re_s->fd; | |
1731 | s->cache_flags = re_s->cache_flags; | |
1732 | ||
1733 | g_free(state->opaque); | |
1734 | state->opaque = NULL; | |
1735 | ||
1736 | return; | |
1737 | } | |
1738 | ||
1739 | static void sd_reopen_abort(BDRVReopenState *state) | |
1740 | { | |
1741 | BDRVSheepdogReopenState *re_s = state->opaque; | |
1742 | BDRVSheepdogState *s = state->bs->opaque; | |
1743 | ||
1744 | if (re_s == NULL) { | |
1745 | return; | |
1746 | } | |
1747 | ||
1748 | if (re_s->fd) { | |
dca21ef2 | 1749 | aio_set_fd_handler(s->aio_context, re_s->fd, false, |
f6a51c84 | 1750 | NULL, NULL, NULL, NULL); |
4da65c80 LY |
1751 | closesocket(re_s->fd); |
1752 | } | |
1753 | ||
1754 | g_free(state->opaque); | |
1755 | state->opaque = NULL; | |
1756 | ||
1757 | return; | |
1758 | } | |
1759 | ||
7d2d3e74 MA |
1760 | static int do_sd_create(BDRVSheepdogState *s, uint32_t *vdi_id, int snapshot, |
1761 | Error **errp) | |
33b1db1c MK |
1762 | { |
1763 | SheepdogVdiReq hdr; | |
1764 | SheepdogVdiRsp *rsp = (SheepdogVdiRsp *)&hdr; | |
1765 | int fd, ret; | |
1766 | unsigned int wlen, rlen = 0; | |
1767 | char buf[SD_MAX_VDI_LEN]; | |
1768 | ||
7d2d3e74 | 1769 | fd = connect_to_sdog(s, errp); |
33b1db1c | 1770 | if (fd < 0) { |
cb595887 | 1771 | return fd; |
33b1db1c MK |
1772 | } |
1773 | ||
3178e275 JM |
1774 | /* FIXME: would it be better to fail (e.g., return -EIO) when filename |
1775 | * does not fit in buf? For now, just truncate and avoid buffer overrun. | |
1776 | */ | |
33b1db1c | 1777 | memset(buf, 0, sizeof(buf)); |
c31d482f | 1778 | pstrcpy(buf, sizeof(buf), s->name); |
33b1db1c MK |
1779 | |
1780 | memset(&hdr, 0, sizeof(hdr)); | |
1781 | hdr.opcode = SD_OP_NEW_VDI; | |
9f23fce7 | 1782 | hdr.base_vdi_id = s->inode.vdi_id; |
33b1db1c MK |
1783 | |
1784 | wlen = SD_MAX_VDI_LEN; | |
1785 | ||
1786 | hdr.flags = SD_FLAG_CMD_WRITE; | |
1787 | hdr.snapid = snapshot; | |
1788 | ||
1789 | hdr.data_length = wlen; | |
c31d482f LY |
1790 | hdr.vdi_size = s->inode.vdi_size; |
1791 | hdr.copy_policy = s->inode.copy_policy; | |
b3af018f | 1792 | hdr.copies = s->inode.nr_copies; |
876eb1b0 | 1793 | hdr.block_size_shift = s->inode.block_size_shift; |
33b1db1c | 1794 | |
f11672db | 1795 | ret = do_req(fd, NULL, (SheepdogReq *)&hdr, buf, &wlen, &rlen); |
33b1db1c MK |
1796 | |
1797 | closesocket(fd); | |
1798 | ||
1799 | if (ret) { | |
7d2d3e74 | 1800 | error_setg_errno(errp, -ret, "create failed"); |
cb595887 | 1801 | return ret; |
33b1db1c MK |
1802 | } |
1803 | ||
1804 | if (rsp->result != SD_RES_SUCCESS) { | |
7d2d3e74 | 1805 | error_setg(errp, "%s, %s", sd_strerror(rsp->result), s->inode.name); |
33b1db1c MK |
1806 | return -EIO; |
1807 | } | |
1808 | ||
1809 | if (vdi_id) { | |
1810 | *vdi_id = rsp->vdi_id; | |
1811 | } | |
1812 | ||
1813 | return 0; | |
1814 | } | |
1815 | ||
318df29e | 1816 | static int sd_prealloc(const char *filename, Error **errp) |
a8e0fdd7 | 1817 | { |
fba98d45 | 1818 | BlockBackend *blk = NULL; |
876eb1b0 TI |
1819 | BDRVSheepdogState *base = NULL; |
1820 | unsigned long buf_size; | |
a8e0fdd7 | 1821 | uint32_t idx, max_idx; |
876eb1b0 | 1822 | uint32_t object_size; |
a8e0fdd7 | 1823 | int64_t vdi_size; |
876eb1b0 | 1824 | void *buf = NULL; |
a8e0fdd7 MK |
1825 | int ret; |
1826 | ||
efaa7c4e | 1827 | blk = blk_new_open(filename, NULL, NULL, |
55880601 | 1828 | BDRV_O_RDWR | BDRV_O_RESIZE | BDRV_O_PROTOCOL, errp); |
fba98d45 KW |
1829 | if (blk == NULL) { |
1830 | ret = -EIO; | |
318df29e | 1831 | goto out_with_err_set; |
a8e0fdd7 MK |
1832 | } |
1833 | ||
fba98d45 KW |
1834 | blk_set_allow_write_beyond_eof(blk, true); |
1835 | ||
1836 | vdi_size = blk_getlength(blk); | |
a8e0fdd7 MK |
1837 | if (vdi_size < 0) { |
1838 | ret = vdi_size; | |
1839 | goto out; | |
1840 | } | |
876eb1b0 | 1841 | |
fba98d45 | 1842 | base = blk_bs(blk)->opaque; |
876eb1b0 TI |
1843 | object_size = (UINT32_C(1) << base->inode.block_size_shift); |
1844 | buf_size = MIN(object_size, SD_DATA_OBJ_SIZE); | |
1845 | buf = g_malloc0(buf_size); | |
1846 | ||
1847 | max_idx = DIV_ROUND_UP(vdi_size, buf_size); | |
a8e0fdd7 MK |
1848 | |
1849 | for (idx = 0; idx < max_idx; idx++) { | |
1850 | /* | |
1851 | * The created image can be a cloned image, so we need to read | |
1852 | * a data from the source image. | |
1853 | */ | |
fba98d45 | 1854 | ret = blk_pread(blk, idx * buf_size, buf, buf_size); |
a8e0fdd7 MK |
1855 | if (ret < 0) { |
1856 | goto out; | |
1857 | } | |
8341f00d | 1858 | ret = blk_pwrite(blk, idx * buf_size, buf, buf_size, 0); |
a8e0fdd7 MK |
1859 | if (ret < 0) { |
1860 | goto out; | |
1861 | } | |
1862 | } | |
318df29e | 1863 | |
fba98d45 | 1864 | ret = 0; |
a8e0fdd7 | 1865 | out: |
318df29e MA |
1866 | if (ret < 0) { |
1867 | error_setg_errno(errp, -ret, "Can't pre-allocate"); | |
1868 | } | |
1869 | out_with_err_set: | |
fba98d45 KW |
1870 | if (blk) { |
1871 | blk_unref(blk); | |
a8e0fdd7 | 1872 | } |
7267c094 | 1873 | g_free(buf); |
a8e0fdd7 MK |
1874 | |
1875 | return ret; | |
1876 | } | |
1877 | ||
b3af018f LY |
1878 | /* |
1879 | * Sheepdog support two kinds of redundancy, full replication and erasure | |
1880 | * coding. | |
1881 | * | |
1882 | * # create a fully replicated vdi with x copies | |
1883 | * -o redundancy=x (1 <= x <= SD_MAX_COPIES) | |
1884 | * | |
1885 | * # create a erasure coded vdi with x data strips and y parity strips | |
1886 | * -o redundancy=x:y (x must be one of {2,4,8,16} and 1 <= y < SD_EC_MAX_STRIP) | |
1887 | */ | |
1888 | static int parse_redundancy(BDRVSheepdogState *s, const char *opt) | |
1889 | { | |
1890 | struct SheepdogInode *inode = &s->inode; | |
1891 | const char *n1, *n2; | |
1892 | long copy, parity; | |
1893 | char p[10]; | |
1894 | ||
1895 | pstrcpy(p, sizeof(p), opt); | |
1896 | n1 = strtok(p, ":"); | |
1897 | n2 = strtok(NULL, ":"); | |
1898 | ||
1899 | if (!n1) { | |
1900 | return -EINVAL; | |
1901 | } | |
1902 | ||
1903 | copy = strtol(n1, NULL, 10); | |
89e2a31d | 1904 | /* FIXME fix error checking by switching to qemu_strtol() */ |
b3af018f LY |
1905 | if (copy > SD_MAX_COPIES || copy < 1) { |
1906 | return -EINVAL; | |
1907 | } | |
1908 | if (!n2) { | |
1909 | inode->copy_policy = 0; | |
1910 | inode->nr_copies = copy; | |
1911 | return 0; | |
1912 | } | |
1913 | ||
1914 | if (copy != 2 && copy != 4 && copy != 8 && copy != 16) { | |
1915 | return -EINVAL; | |
1916 | } | |
1917 | ||
1918 | parity = strtol(n2, NULL, 10); | |
89e2a31d | 1919 | /* FIXME fix error checking by switching to qemu_strtol() */ |
b3af018f LY |
1920 | if (parity >= SD_EC_MAX_STRIP || parity < 1) { |
1921 | return -EINVAL; | |
1922 | } | |
1923 | ||
1924 | /* | |
1925 | * 4 bits for parity and 4 bits for data. | |
1926 | * We have to compress upper data bits because it can't represent 16 | |
1927 | */ | |
1928 | inode->copy_policy = ((copy / 2) << 4) + parity; | |
1929 | inode->nr_copies = copy + parity; | |
1930 | ||
1931 | return 0; | |
1932 | } | |
1933 | ||
876eb1b0 TI |
1934 | static int parse_block_size_shift(BDRVSheepdogState *s, QemuOpts *opt) |
1935 | { | |
1936 | struct SheepdogInode *inode = &s->inode; | |
1937 | uint64_t object_size; | |
1938 | int obj_order; | |
1939 | ||
1940 | object_size = qemu_opt_get_size_del(opt, BLOCK_OPT_OBJECT_SIZE, 0); | |
1941 | if (object_size) { | |
1942 | if ((object_size - 1) & object_size) { /* not a power of 2? */ | |
1943 | return -EINVAL; | |
1944 | } | |
786a4ea8 | 1945 | obj_order = ctz32(object_size); |
876eb1b0 TI |
1946 | if (obj_order < 20 || obj_order > 31) { |
1947 | return -EINVAL; | |
1948 | } | |
1949 | inode->block_size_shift = (uint8_t)obj_order; | |
1950 | } | |
1951 | ||
1952 | return 0; | |
1953 | } | |
1954 | ||
b222237b | 1955 | static int sd_create(const char *filename, QemuOpts *opts, |
d5124c00 | 1956 | Error **errp) |
33b1db1c | 1957 | { |
36bcac16 | 1958 | Error *err = NULL; |
b6fc8245 | 1959 | int ret = 0; |
c31d482f | 1960 | uint32_t vid = 0; |
33b1db1c | 1961 | char *backing_file = NULL; |
b222237b | 1962 | char *buf = NULL; |
b6fc8245 | 1963 | BDRVSheepdogState *s; |
831acdc9 | 1964 | SheepdogConfig cfg; |
876eb1b0 | 1965 | uint64_t max_vdi_size; |
2f536801 | 1966 | bool prealloc = false; |
33b1db1c | 1967 | |
5839e53b | 1968 | s = g_new0(BDRVSheepdogState, 1); |
b6fc8245 | 1969 | |
5d6768e3 | 1970 | if (strstr(filename, "://")) { |
831acdc9 | 1971 | sd_parse_uri(&cfg, filename, &err); |
5d6768e3 | 1972 | } else { |
831acdc9 | 1973 | parse_vdiname(&cfg, filename, &err); |
5d6768e3 | 1974 | } |
36bcac16 MA |
1975 | if (err) { |
1976 | error_propagate(errp, err); | |
b6fc8245 | 1977 | goto out; |
b4447363 MK |
1978 | } |
1979 | ||
831acdc9 MA |
1980 | buf = cfg.port ? g_strdup_printf("%d", cfg.port) : NULL; |
1981 | s->addr = sd_socket_address(cfg.path, cfg.host, buf); | |
1982 | g_free(buf); | |
1983 | strcpy(s->name, cfg.vdi); | |
1984 | sd_config_done(&cfg); | |
1985 | ||
c2eb918e HT |
1986 | s->inode.vdi_size = ROUND_UP(qemu_opt_get_size_del(opts, BLOCK_OPT_SIZE, 0), |
1987 | BDRV_SECTOR_SIZE); | |
b222237b CL |
1988 | backing_file = qemu_opt_get_del(opts, BLOCK_OPT_BACKING_FILE); |
1989 | buf = qemu_opt_get_del(opts, BLOCK_OPT_PREALLOC); | |
1990 | if (!buf || !strcmp(buf, "off")) { | |
1991 | prealloc = false; | |
1992 | } else if (!strcmp(buf, "full")) { | |
1993 | prealloc = true; | |
1994 | } else { | |
1995 | error_setg(errp, "Invalid preallocation mode: '%s'", buf); | |
1996 | ret = -EINVAL; | |
1997 | goto out; | |
1998 | } | |
1999 | ||
2000 | g_free(buf); | |
2001 | buf = qemu_opt_get_del(opts, BLOCK_OPT_REDUNDANCY); | |
2002 | if (buf) { | |
2003 | ret = parse_redundancy(s, buf); | |
2004 | if (ret < 0) { | |
2005 | error_setg(errp, "Invalid redundancy mode: '%s'", buf); | |
2006 | goto out; | |
33b1db1c | 2007 | } |
33b1db1c | 2008 | } |
876eb1b0 TI |
2009 | ret = parse_block_size_shift(s, opts); |
2010 | if (ret < 0) { | |
2011 | error_setg(errp, "Invalid object_size." | |
2012 | " obect_size needs to be power of 2" | |
2013 | " and be limited from 2^20 to 2^31"); | |
b6fc8245 | 2014 | goto out; |
33b1db1c MK |
2015 | } |
2016 | ||
2017 | if (backing_file) { | |
fba98d45 | 2018 | BlockBackend *blk; |
9f23fce7 | 2019 | BDRVSheepdogState *base; |
33b1db1c MK |
2020 | BlockDriver *drv; |
2021 | ||
2022 | /* Currently, only Sheepdog backing image is supported. */ | |
b65a5e12 | 2023 | drv = bdrv_find_protocol(backing_file, true, NULL); |
33b1db1c | 2024 | if (!drv || strcmp(drv->protocol_name, "sheepdog") != 0) { |
e67c3993 | 2025 | error_setg(errp, "backing_file must be a sheepdog image"); |
b6fc8245 MK |
2026 | ret = -EINVAL; |
2027 | goto out; | |
33b1db1c MK |
2028 | } |
2029 | ||
efaa7c4e | 2030 | blk = blk_new_open(backing_file, NULL, NULL, |
72e775c7 | 2031 | BDRV_O_PROTOCOL, errp); |
fba98d45 KW |
2032 | if (blk == NULL) { |
2033 | ret = -EIO; | |
b6fc8245 | 2034 | goto out; |
cb595887 | 2035 | } |
33b1db1c | 2036 | |
fba98d45 | 2037 | base = blk_bs(blk)->opaque; |
33b1db1c | 2038 | |
9f23fce7 | 2039 | if (!is_snapshot(&base->inode)) { |
e67c3993 | 2040 | error_setg(errp, "cannot clone from a non snapshot vdi"); |
fba98d45 | 2041 | blk_unref(blk); |
b6fc8245 MK |
2042 | ret = -EINVAL; |
2043 | goto out; | |
33b1db1c | 2044 | } |
9f23fce7 | 2045 | s->inode.vdi_id = base->inode.vdi_id; |
fba98d45 | 2046 | blk_unref(blk); |
33b1db1c MK |
2047 | } |
2048 | ||
5d5da114 | 2049 | s->aio_context = qemu_get_aio_context(); |
876eb1b0 TI |
2050 | |
2051 | /* if block_size_shift is not specified, get cluster default value */ | |
2052 | if (s->inode.block_size_shift == 0) { | |
2053 | SheepdogVdiReq hdr; | |
2054 | SheepdogClusterRsp *rsp = (SheepdogClusterRsp *)&hdr; | |
876eb1b0 TI |
2055 | int fd; |
2056 | unsigned int wlen = 0, rlen = 0; | |
2057 | ||
48d7c4af | 2058 | fd = connect_to_sdog(s, errp); |
876eb1b0 | 2059 | if (fd < 0) { |
48d7c4af | 2060 | ret = fd; |
876eb1b0 TI |
2061 | goto out; |
2062 | } | |
2063 | ||
2064 | memset(&hdr, 0, sizeof(hdr)); | |
2065 | hdr.opcode = SD_OP_GET_CLUSTER_DEFAULT; | |
2066 | hdr.proto_ver = SD_PROTO_VER; | |
2067 | ||
f11672db | 2068 | ret = do_req(fd, NULL, (SheepdogReq *)&hdr, |
876eb1b0 TI |
2069 | NULL, &wlen, &rlen); |
2070 | closesocket(fd); | |
2071 | if (ret) { | |
2072 | error_setg_errno(errp, -ret, "failed to get cluster default"); | |
2073 | goto out; | |
2074 | } | |
2075 | if (rsp->result == SD_RES_SUCCESS) { | |
2076 | s->inode.block_size_shift = rsp->block_size_shift; | |
2077 | } else { | |
2078 | s->inode.block_size_shift = SD_DEFAULT_BLOCK_SIZE_SHIFT; | |
2079 | } | |
2080 | } | |
2081 | ||
2082 | max_vdi_size = (UINT64_C(1) << s->inode.block_size_shift) * MAX_DATA_OBJS; | |
2083 | ||
2084 | if (s->inode.vdi_size > max_vdi_size) { | |
2085 | error_setg(errp, "An image is too large." | |
2086 | " The maximum image size is %"PRIu64 "GB", | |
2087 | max_vdi_size / 1024 / 1024 / 1024); | |
2088 | ret = -EINVAL; | |
2089 | goto out; | |
2090 | } | |
2091 | ||
e67c3993 | 2092 | ret = do_sd_create(s, &vid, 0, errp); |
7d2d3e74 | 2093 | if (ret) { |
b6fc8245 | 2094 | goto out; |
a8e0fdd7 MK |
2095 | } |
2096 | ||
7d2d3e74 | 2097 | if (prealloc) { |
e67c3993 | 2098 | ret = sd_prealloc(filename, errp); |
318df29e | 2099 | } |
b6fc8245 | 2100 | out: |
b222237b CL |
2101 | g_free(backing_file); |
2102 | g_free(buf); | |
b6fc8245 MK |
2103 | g_free(s); |
2104 | return ret; | |
33b1db1c MK |
2105 | } |
2106 | ||
2107 | static void sd_close(BlockDriverState *bs) | |
2108 | { | |
dfb12bf8 | 2109 | Error *local_err = NULL; |
33b1db1c MK |
2110 | BDRVSheepdogState *s = bs->opaque; |
2111 | SheepdogVdiReq hdr; | |
2112 | SheepdogVdiRsp *rsp = (SheepdogVdiRsp *)&hdr; | |
2113 | unsigned int wlen, rlen = 0; | |
2114 | int fd, ret; | |
2115 | ||
2440a2c3 | 2116 | DPRINTF("%s\n", s->name); |
33b1db1c | 2117 | |
dfb12bf8 | 2118 | fd = connect_to_sdog(s, &local_err); |
33b1db1c | 2119 | if (fd < 0) { |
565f65d2 | 2120 | error_report_err(local_err); |
33b1db1c MK |
2121 | return; |
2122 | } | |
2123 | ||
2124 | memset(&hdr, 0, sizeof(hdr)); | |
2125 | ||
2126 | hdr.opcode = SD_OP_RELEASE_VDI; | |
1dbfafed | 2127 | hdr.type = LOCK_TYPE_NORMAL; |
9f23fce7 | 2128 | hdr.base_vdi_id = s->inode.vdi_id; |
33b1db1c MK |
2129 | wlen = strlen(s->name) + 1; |
2130 | hdr.data_length = wlen; | |
2131 | hdr.flags = SD_FLAG_CMD_WRITE; | |
2132 | ||
f11672db | 2133 | ret = do_req(fd, s->bs, (SheepdogReq *)&hdr, |
84390bed | 2134 | s->name, &wlen, &rlen); |
33b1db1c MK |
2135 | |
2136 | closesocket(fd); | |
2137 | ||
2138 | if (!ret && rsp->result != SD_RES_SUCCESS && | |
2139 | rsp->result != SD_RES_VDI_NOT_LOCKED) { | |
6daf194d | 2140 | error_report("%s, %s", sd_strerror(rsp->result), s->name); |
33b1db1c MK |
2141 | } |
2142 | ||
dca21ef2 | 2143 | aio_set_fd_handler(bdrv_get_aio_context(bs), s->fd, |
f6a51c84 | 2144 | false, NULL, NULL, NULL, NULL); |
33b1db1c | 2145 | closesocket(s->fd); |
bd269ebc | 2146 | qapi_free_SocketAddress(s->addr); |
33b1db1c MK |
2147 | } |
2148 | ||
2149 | static int64_t sd_getlength(BlockDriverState *bs) | |
2150 | { | |
2151 | BDRVSheepdogState *s = bs->opaque; | |
2152 | ||
2153 | return s->inode.vdi_size; | |
2154 | } | |
2155 | ||
4bff28b8 | 2156 | static int sd_truncate(BlockDriverState *bs, int64_t offset, Error **errp) |
33b1db1c MK |
2157 | { |
2158 | BDRVSheepdogState *s = bs->opaque; | |
2159 | int ret, fd; | |
2160 | unsigned int datalen; | |
876eb1b0 | 2161 | uint64_t max_vdi_size; |
33b1db1c | 2162 | |
876eb1b0 | 2163 | max_vdi_size = (UINT64_C(1) << s->inode.block_size_shift) * MAX_DATA_OBJS; |
33b1db1c | 2164 | if (offset < s->inode.vdi_size) { |
4bff28b8 | 2165 | error_setg(errp, "shrinking is not supported"); |
33b1db1c | 2166 | return -EINVAL; |
876eb1b0 | 2167 | } else if (offset > max_vdi_size) { |
4bff28b8 | 2168 | error_setg(errp, "too big image size"); |
33b1db1c MK |
2169 | return -EINVAL; |
2170 | } | |
2171 | ||
4bff28b8 | 2172 | fd = connect_to_sdog(s, errp); |
33b1db1c | 2173 | if (fd < 0) { |
cb595887 | 2174 | return fd; |
33b1db1c MK |
2175 | } |
2176 | ||
2177 | /* we don't need to update entire object */ | |
2178 | datalen = SD_INODE_SIZE - sizeof(s->inode.data_vdi_id); | |
2179 | s->inode.vdi_size = offset; | |
f11672db | 2180 | ret = write_object(fd, s->bs, (char *)&s->inode, |
84390bed SH |
2181 | vid_to_vdi_oid(s->inode.vdi_id), s->inode.nr_copies, |
2182 | datalen, 0, false, s->cache_flags); | |
33b1db1c MK |
2183 | close(fd); |
2184 | ||
2185 | if (ret < 0) { | |
4bff28b8 | 2186 | error_setg_errno(errp, -ret, "failed to update an inode"); |
33b1db1c MK |
2187 | } |
2188 | ||
cb595887 | 2189 | return ret; |
33b1db1c MK |
2190 | } |
2191 | ||
2192 | /* | |
2193 | * This function is called after writing data objects. If we need to | |
2194 | * update metadata, this sends a write request to the vdi object. | |
33b1db1c | 2195 | */ |
d8716b41 | 2196 | static void coroutine_fn sd_write_done(SheepdogAIOCB *acb) |
33b1db1c | 2197 | { |
28ddd08c | 2198 | BDRVSheepdogState *s = acb->s; |
33b1db1c MK |
2199 | struct iovec iov; |
2200 | AIOReq *aio_req; | |
2201 | uint32_t offset, data_len, mn, mx; | |
2202 | ||
498f2140 HM |
2203 | mn = acb->min_dirty_data_idx; |
2204 | mx = acb->max_dirty_data_idx; | |
33b1db1c MK |
2205 | if (mn <= mx) { |
2206 | /* we need to update the vdi object. */ | |
e80ab33d | 2207 | ++acb->nr_pending; |
33b1db1c MK |
2208 | offset = sizeof(s->inode) - sizeof(s->inode.data_vdi_id) + |
2209 | mn * sizeof(s->inode.data_vdi_id[0]); | |
2210 | data_len = (mx - mn + 1) * sizeof(s->inode.data_vdi_id[0]); | |
2211 | ||
498f2140 HM |
2212 | acb->min_dirty_data_idx = UINT32_MAX; |
2213 | acb->max_dirty_data_idx = 0; | |
33b1db1c MK |
2214 | |
2215 | iov.iov_base = &s->inode; | |
2216 | iov.iov_len = sizeof(s->inode); | |
2217 | aio_req = alloc_aio_req(s, acb, vid_to_vdi_oid(s->inode.vdi_id), | |
b544c1ab | 2218 | data_len, offset, 0, false, 0, offset); |
b544c1ab | 2219 | add_aio_request(s, aio_req, &iov, 1, AIOCB_WRITE_UDATA); |
e80ab33d PB |
2220 | if (--acb->nr_pending) { |
2221 | qemu_coroutine_yield(); | |
2222 | } | |
33b1db1c | 2223 | } |
33b1db1c MK |
2224 | } |
2225 | ||
859e5553 LY |
2226 | /* Delete current working VDI on the snapshot chain */ |
2227 | static bool sd_delete(BDRVSheepdogState *s) | |
2228 | { | |
dfb12bf8 | 2229 | Error *local_err = NULL; |
859e5553 LY |
2230 | unsigned int wlen = SD_MAX_VDI_LEN, rlen = 0; |
2231 | SheepdogVdiReq hdr = { | |
2232 | .opcode = SD_OP_DEL_VDI, | |
9f23fce7 | 2233 | .base_vdi_id = s->inode.vdi_id, |
859e5553 LY |
2234 | .data_length = wlen, |
2235 | .flags = SD_FLAG_CMD_WRITE, | |
2236 | }; | |
2237 | SheepdogVdiRsp *rsp = (SheepdogVdiRsp *)&hdr; | |
2238 | int fd, ret; | |
2239 | ||
dfb12bf8 | 2240 | fd = connect_to_sdog(s, &local_err); |
859e5553 | 2241 | if (fd < 0) { |
565f65d2 | 2242 | error_report_err(local_err); |
859e5553 LY |
2243 | return false; |
2244 | } | |
2245 | ||
f11672db | 2246 | ret = do_req(fd, s->bs, (SheepdogReq *)&hdr, |
84390bed | 2247 | s->name, &wlen, &rlen); |
859e5553 LY |
2248 | closesocket(fd); |
2249 | if (ret) { | |
2250 | return false; | |
2251 | } | |
2252 | switch (rsp->result) { | |
2253 | case SD_RES_NO_VDI: | |
2254 | error_report("%s was already deleted", s->name); | |
2255 | /* fall through */ | |
2256 | case SD_RES_SUCCESS: | |
2257 | break; | |
2258 | default: | |
2259 | error_report("%s, %s", sd_strerror(rsp->result), s->name); | |
2260 | return false; | |
2261 | } | |
2262 | ||
2263 | return true; | |
2264 | } | |
2265 | ||
33b1db1c MK |
2266 | /* |
2267 | * Create a writable VDI from a snapshot | |
2268 | */ | |
2269 | static int sd_create_branch(BDRVSheepdogState *s) | |
2270 | { | |
dfb12bf8 | 2271 | Error *local_err = NULL; |
33b1db1c MK |
2272 | int ret, fd; |
2273 | uint32_t vid; | |
2274 | char *buf; | |
859e5553 | 2275 | bool deleted; |
33b1db1c | 2276 | |
2440a2c3 | 2277 | DPRINTF("%" PRIx32 " is snapshot.\n", s->inode.vdi_id); |
33b1db1c | 2278 | |
7267c094 | 2279 | buf = g_malloc(SD_INODE_SIZE); |
33b1db1c | 2280 | |
859e5553 LY |
2281 | /* |
2282 | * Even If deletion fails, we will just create extra snapshot based on | |
dc6fb73d | 2283 | * the working VDI which was supposed to be deleted. So no need to |
859e5553 LY |
2284 | * false bail out. |
2285 | */ | |
2286 | deleted = sd_delete(s); | |
7d2d3e74 | 2287 | ret = do_sd_create(s, &vid, !deleted, &local_err); |
33b1db1c | 2288 | if (ret) { |
565f65d2 | 2289 | error_report_err(local_err); |
33b1db1c MK |
2290 | goto out; |
2291 | } | |
2292 | ||
2440a2c3 | 2293 | DPRINTF("%" PRIx32 " is created.\n", vid); |
33b1db1c | 2294 | |
dfb12bf8 | 2295 | fd = connect_to_sdog(s, &local_err); |
33b1db1c | 2296 | if (fd < 0) { |
565f65d2 | 2297 | error_report_err(local_err); |
cb595887 | 2298 | ret = fd; |
33b1db1c MK |
2299 | goto out; |
2300 | } | |
2301 | ||
f11672db | 2302 | ret = read_object(fd, s->bs, buf, vid_to_vdi_oid(vid), |
84390bed | 2303 | s->inode.nr_copies, SD_INODE_SIZE, 0, s->cache_flags); |
33b1db1c MK |
2304 | |
2305 | closesocket(fd); | |
2306 | ||
2307 | if (ret < 0) { | |
2308 | goto out; | |
2309 | } | |
2310 | ||
2311 | memcpy(&s->inode, buf, sizeof(s->inode)); | |
2312 | ||
2f536801 | 2313 | s->is_snapshot = false; |
33b1db1c | 2314 | ret = 0; |
2440a2c3 | 2315 | DPRINTF("%" PRIx32 " was newly created.\n", s->inode.vdi_id); |
33b1db1c MK |
2316 | |
2317 | out: | |
7267c094 | 2318 | g_free(buf); |
33b1db1c MK |
2319 | |
2320 | return ret; | |
2321 | } | |
2322 | ||
2323 | /* | |
2324 | * Send I/O requests to the server. | |
2325 | * | |
2326 | * This function sends requests to the server, links the requests to | |
c292ee6a | 2327 | * the inflight_list in BDRVSheepdogState, and exits without |
33b1db1c MK |
2328 | * waiting the response. The responses are received in the |
2329 | * `aio_read_response' function which is called from the main loop as | |
2330 | * a fd handler. | |
2df46246 MK |
2331 | * |
2332 | * Returns 1 when we need to wait a response, 0 when there is no sent | |
2333 | * request and -errno in error cases. | |
33b1db1c | 2334 | */ |
28ddd08c | 2335 | static void coroutine_fn sd_co_rw_vector(SheepdogAIOCB *acb) |
33b1db1c | 2336 | { |
33b1db1c | 2337 | int ret = 0; |
e8bfaa2f | 2338 | unsigned long len, done = 0, total = acb->nb_sectors * BDRV_SECTOR_SIZE; |
876eb1b0 TI |
2339 | unsigned long idx; |
2340 | uint32_t object_size; | |
33b1db1c | 2341 | uint64_t oid; |
876eb1b0 | 2342 | uint64_t offset; |
28ddd08c | 2343 | BDRVSheepdogState *s = acb->s; |
33b1db1c MK |
2344 | SheepdogInode *inode = &s->inode; |
2345 | AIOReq *aio_req; | |
2346 | ||
33b1db1c MK |
2347 | if (acb->aiocb_type == AIOCB_WRITE_UDATA && s->is_snapshot) { |
2348 | /* | |
2349 | * In the case we open the snapshot VDI, Sheepdog creates the | |
2350 | * writable VDI when we do a write operation first. | |
2351 | */ | |
2352 | ret = sd_create_branch(s); | |
2353 | if (ret) { | |
2354 | acb->ret = -EIO; | |
e80ab33d | 2355 | return; |
33b1db1c MK |
2356 | } |
2357 | } | |
2358 | ||
876eb1b0 TI |
2359 | object_size = (UINT32_C(1) << inode->block_size_shift); |
2360 | idx = acb->sector_num * BDRV_SECTOR_SIZE / object_size; | |
2361 | offset = (acb->sector_num * BDRV_SECTOR_SIZE) % object_size; | |
2362 | ||
1d732d7d MK |
2363 | /* |
2364 | * Make sure we don't free the aiocb before we are done with all requests. | |
2365 | * This additional reference is dropped at the end of this function. | |
2366 | */ | |
2367 | acb->nr_pending++; | |
2368 | ||
33b1db1c MK |
2369 | while (done != total) { |
2370 | uint8_t flags = 0; | |
2371 | uint64_t old_oid = 0; | |
2f536801 | 2372 | bool create = false; |
33b1db1c MK |
2373 | |
2374 | oid = vid_to_data_oid(inode->data_vdi_id[idx], idx); | |
2375 | ||
876eb1b0 | 2376 | len = MIN(total - done, object_size - offset); |
33b1db1c | 2377 | |
19db9b90 CH |
2378 | switch (acb->aiocb_type) { |
2379 | case AIOCB_READ_UDATA: | |
2380 | if (!inode->data_vdi_id[idx]) { | |
2381 | qemu_iovec_memset(acb->qiov, done, 0, len); | |
33b1db1c MK |
2382 | goto done; |
2383 | } | |
19db9b90 CH |
2384 | break; |
2385 | case AIOCB_WRITE_UDATA: | |
2386 | if (!inode->data_vdi_id[idx]) { | |
2f536801 | 2387 | create = true; |
19db9b90 CH |
2388 | } else if (!is_data_obj_writable(inode, idx)) { |
2389 | /* Copy-On-Write */ | |
2f536801 | 2390 | create = true; |
19db9b90 CH |
2391 | old_oid = oid; |
2392 | flags = SD_FLAG_CMD_COW; | |
2393 | } | |
2394 | break; | |
cac8f4a6 LY |
2395 | case AIOCB_DISCARD_OBJ: |
2396 | /* | |
2397 | * We discard the object only when the whole object is | |
2398 | * 1) allocated 2) trimmed. Otherwise, simply skip it. | |
2399 | */ | |
876eb1b0 | 2400 | if (len != object_size || inode->data_vdi_id[idx] == 0) { |
cac8f4a6 LY |
2401 | goto done; |
2402 | } | |
2403 | break; | |
19db9b90 CH |
2404 | default: |
2405 | break; | |
33b1db1c MK |
2406 | } |
2407 | ||
2408 | if (create) { | |
2440a2c3 | 2409 | DPRINTF("update ino (%" PRIu32 ") %" PRIu64 " %" PRIu64 " %ld\n", |
1b6ac998 | 2410 | inode->vdi_id, oid, |
33b1db1c MK |
2411 | vid_to_data_oid(inode->data_vdi_id[idx], idx), idx); |
2412 | oid = vid_to_data_oid(inode->vdi_id, idx); | |
2440a2c3 | 2413 | DPRINTF("new oid %" PRIx64 "\n", oid); |
33b1db1c MK |
2414 | } |
2415 | ||
b544c1ab | 2416 | aio_req = alloc_aio_req(s, acb, oid, len, offset, flags, create, |
e6fd57ea HM |
2417 | old_oid, |
2418 | acb->aiocb_type == AIOCB_DISCARD_OBJ ? | |
2419 | 0 : done); | |
b544c1ab | 2420 | add_aio_request(s, aio_req, acb->qiov->iov, acb->qiov->niov, |
a37dcdf9 | 2421 | acb->aiocb_type); |
33b1db1c MK |
2422 | done: |
2423 | offset = 0; | |
2424 | idx++; | |
2425 | done += len; | |
2426 | } | |
e80ab33d PB |
2427 | if (--acb->nr_pending) { |
2428 | qemu_coroutine_yield(); | |
33b1db1c MK |
2429 | } |
2430 | } | |
2431 | ||
acf6e5f0 | 2432 | static void sd_aio_complete(SheepdogAIOCB *acb) |
6a55c82c | 2433 | { |
acf6e5f0 PB |
2434 | if (acb->aiocb_type == AIOCB_FLUSH_CACHE) { |
2435 | return; | |
6a55c82c HM |
2436 | } |
2437 | ||
acf6e5f0 PB |
2438 | QLIST_REMOVE(acb, aiocb_siblings); |
2439 | qemu_co_queue_restart_all(&acb->s->overlapping_queue); | |
6a55c82c HM |
2440 | } |
2441 | ||
a968168c | 2442 | static coroutine_fn int sd_co_writev(BlockDriverState *bs, int64_t sector_num, |
2df46246 | 2443 | int nb_sectors, QEMUIOVector *qiov) |
33b1db1c | 2444 | { |
28ddd08c | 2445 | SheepdogAIOCB acb; |
2df46246 | 2446 | int ret; |
e50d7607 LY |
2447 | int64_t offset = (sector_num + nb_sectors) * BDRV_SECTOR_SIZE; |
2448 | BDRVSheepdogState *s = bs->opaque; | |
33b1db1c | 2449 | |
c0191e76 | 2450 | if (offset > s->inode.vdi_size) { |
4bff28b8 | 2451 | ret = sd_truncate(bs, offset, NULL); |
cb595887 MK |
2452 | if (ret < 0) { |
2453 | return ret; | |
33b1db1c | 2454 | } |
33b1db1c MK |
2455 | } |
2456 | ||
28ddd08c | 2457 | sd_aio_setup(&acb, s, qiov, sector_num, nb_sectors, AIOCB_WRITE_UDATA); |
28ddd08c PB |
2458 | sd_co_rw_vector(&acb); |
2459 | sd_write_done(&acb); | |
acf6e5f0 | 2460 | sd_aio_complete(&acb); |
2df46246 | 2461 | |
28ddd08c | 2462 | return acb.ret; |
33b1db1c MK |
2463 | } |
2464 | ||
a968168c | 2465 | static coroutine_fn int sd_co_readv(BlockDriverState *bs, int64_t sector_num, |
2df46246 | 2466 | int nb_sectors, QEMUIOVector *qiov) |
33b1db1c | 2467 | { |
28ddd08c | 2468 | SheepdogAIOCB acb; |
6a55c82c | 2469 | BDRVSheepdogState *s = bs->opaque; |
33b1db1c | 2470 | |
28ddd08c | 2471 | sd_aio_setup(&acb, s, qiov, sector_num, nb_sectors, AIOCB_READ_UDATA); |
28ddd08c | 2472 | sd_co_rw_vector(&acb); |
acf6e5f0 | 2473 | sd_aio_complete(&acb); |
2df46246 | 2474 | |
28ddd08c | 2475 | return acb.ret; |
33b1db1c MK |
2476 | } |
2477 | ||
47622c44 LY |
2478 | static int coroutine_fn sd_co_flush_to_disk(BlockDriverState *bs) |
2479 | { | |
2480 | BDRVSheepdogState *s = bs->opaque; | |
28ddd08c | 2481 | SheepdogAIOCB acb; |
47783072 | 2482 | AIOReq *aio_req; |
47622c44 | 2483 | |
0e7106d8 | 2484 | if (s->cache_flags != SD_FLAG_CMD_CACHE) { |
47622c44 LY |
2485 | return 0; |
2486 | } | |
2487 | ||
28ddd08c | 2488 | sd_aio_setup(&acb, s, NULL, 0, 0, AIOCB_FLUSH_CACHE); |
47622c44 | 2489 | |
28ddd08c PB |
2490 | acb.nr_pending++; |
2491 | aio_req = alloc_aio_req(s, &acb, vid_to_vdi_oid(s->inode.vdi_id), | |
b544c1ab | 2492 | 0, 0, 0, false, 0, 0); |
28ddd08c | 2493 | add_aio_request(s, aio_req, NULL, 0, acb.aiocb_type); |
47622c44 | 2494 | |
28ddd08c | 2495 | if (--acb.nr_pending) { |
e80ab33d PB |
2496 | qemu_coroutine_yield(); |
2497 | } | |
acf6e5f0 PB |
2498 | |
2499 | sd_aio_complete(&acb); | |
28ddd08c | 2500 | return acb.ret; |
47622c44 LY |
2501 | } |
2502 | ||
33b1db1c MK |
2503 | static int sd_snapshot_create(BlockDriverState *bs, QEMUSnapshotInfo *sn_info) |
2504 | { | |
dfb12bf8 | 2505 | Error *local_err = NULL; |
33b1db1c MK |
2506 | BDRVSheepdogState *s = bs->opaque; |
2507 | int ret, fd; | |
2508 | uint32_t new_vid; | |
2509 | SheepdogInode *inode; | |
2510 | unsigned int datalen; | |
2511 | ||
2440a2c3 | 2512 | DPRINTF("sn_info: name %s id_str %s s: name %s vm_state_size %" PRId64 " " |
33b1db1c MK |
2513 | "is_snapshot %d\n", sn_info->name, sn_info->id_str, |
2514 | s->name, sn_info->vm_state_size, s->is_snapshot); | |
2515 | ||
2516 | if (s->is_snapshot) { | |
2517 | error_report("You can't create a snapshot of a snapshot VDI, " | |
6daf194d | 2518 | "%s (%" PRIu32 ").", s->name, s->inode.vdi_id); |
33b1db1c MK |
2519 | |
2520 | return -EINVAL; | |
2521 | } | |
2522 | ||
2440a2c3 | 2523 | DPRINTF("%s %s\n", sn_info->name, sn_info->id_str); |
33b1db1c MK |
2524 | |
2525 | s->inode.vm_state_size = sn_info->vm_state_size; | |
2526 | s->inode.vm_clock_nsec = sn_info->vm_clock_nsec; | |
3178e275 JM |
2527 | /* It appears that inode.tag does not require a NUL terminator, |
2528 | * which means this use of strncpy is ok. | |
2529 | */ | |
33b1db1c MK |
2530 | strncpy(s->inode.tag, sn_info->name, sizeof(s->inode.tag)); |
2531 | /* we don't need to update entire object */ | |
2532 | datalen = SD_INODE_SIZE - sizeof(s->inode.data_vdi_id); | |
2df5fee2 | 2533 | inode = g_malloc(datalen); |
33b1db1c MK |
2534 | |
2535 | /* refresh inode. */ | |
dfb12bf8 | 2536 | fd = connect_to_sdog(s, &local_err); |
33b1db1c | 2537 | if (fd < 0) { |
565f65d2 | 2538 | error_report_err(local_err); |
cb595887 | 2539 | ret = fd; |
33b1db1c MK |
2540 | goto cleanup; |
2541 | } | |
2542 | ||
f11672db | 2543 | ret = write_object(fd, s->bs, (char *)&s->inode, |
84390bed SH |
2544 | vid_to_vdi_oid(s->inode.vdi_id), s->inode.nr_copies, |
2545 | datalen, 0, false, s->cache_flags); | |
33b1db1c | 2546 | if (ret < 0) { |
6daf194d | 2547 | error_report("failed to write snapshot's inode."); |
33b1db1c MK |
2548 | goto cleanup; |
2549 | } | |
2550 | ||
7d2d3e74 | 2551 | ret = do_sd_create(s, &new_vid, 1, &local_err); |
33b1db1c | 2552 | if (ret < 0) { |
c29b77f9 MA |
2553 | error_reportf_err(local_err, |
2554 | "failed to create inode for snapshot: "); | |
33b1db1c MK |
2555 | goto cleanup; |
2556 | } | |
2557 | ||
f11672db | 2558 | ret = read_object(fd, s->bs, (char *)inode, |
84390bed SH |
2559 | vid_to_vdi_oid(new_vid), s->inode.nr_copies, datalen, 0, |
2560 | s->cache_flags); | |
33b1db1c MK |
2561 | |
2562 | if (ret < 0) { | |
6daf194d | 2563 | error_report("failed to read new inode info. %s", strerror(errno)); |
33b1db1c MK |
2564 | goto cleanup; |
2565 | } | |
2566 | ||
2567 | memcpy(&s->inode, inode, datalen); | |
2440a2c3 | 2568 | DPRINTF("s->inode: name %s snap_id %x oid %x\n", |
33b1db1c MK |
2569 | s->inode.name, s->inode.snap_id, s->inode.vdi_id); |
2570 | ||
2571 | cleanup: | |
2df5fee2 | 2572 | g_free(inode); |
33b1db1c MK |
2573 | closesocket(fd); |
2574 | return ret; | |
2575 | } | |
2576 | ||
859e5553 LY |
2577 | /* |
2578 | * We implement rollback(loadvm) operation to the specified snapshot by | |
2579 | * 1) switch to the snapshot | |
2580 | * 2) rely on sd_create_branch to delete working VDI and | |
dc6fb73d | 2581 | * 3) create a new working VDI based on the specified snapshot |
859e5553 | 2582 | */ |
33b1db1c MK |
2583 | static int sd_snapshot_goto(BlockDriverState *bs, const char *snapshot_id) |
2584 | { | |
2585 | BDRVSheepdogState *s = bs->opaque; | |
2586 | BDRVSheepdogState *old_s; | |
9ff53a0e | 2587 | char tag[SD_MAX_VDI_TAG_LEN]; |
33b1db1c | 2588 | uint32_t snapid = 0; |
89e2a31d MA |
2589 | int ret; |
2590 | ||
2591 | if (!sd_parse_snapid_or_tag(snapshot_id, &snapid, tag)) { | |
2592 | return -EINVAL; | |
2593 | } | |
33b1db1c | 2594 | |
5839e53b | 2595 | old_s = g_new(BDRVSheepdogState, 1); |
33b1db1c MK |
2596 | |
2597 | memcpy(old_s, s, sizeof(BDRVSheepdogState)); | |
2598 | ||
9ff53a0e | 2599 | ret = reload_inode(s, snapid, tag); |
33b1db1c | 2600 | if (ret) { |
33b1db1c MK |
2601 | goto out; |
2602 | } | |
2603 | ||
cede621f LY |
2604 | ret = sd_create_branch(s); |
2605 | if (ret) { | |
33b1db1c MK |
2606 | goto out; |
2607 | } | |
2608 | ||
7267c094 | 2609 | g_free(old_s); |
33b1db1c MK |
2610 | |
2611 | return 0; | |
2612 | out: | |
2613 | /* recover bdrv_sd_state */ | |
2614 | memcpy(s, old_s, sizeof(BDRVSheepdogState)); | |
7267c094 | 2615 | g_free(old_s); |
33b1db1c | 2616 | |
6daf194d | 2617 | error_report("failed to open. recover old bdrv_sd_state."); |
33b1db1c MK |
2618 | |
2619 | return ret; | |
2620 | } | |
2621 | ||
eab8eb8d VT |
2622 | #define NR_BATCHED_DISCARD 128 |
2623 | ||
e25cad69 | 2624 | static int remove_objects(BDRVSheepdogState *s, Error **errp) |
eab8eb8d VT |
2625 | { |
2626 | int fd, i = 0, nr_objs = 0; | |
e25cad69 | 2627 | int ret; |
eab8eb8d VT |
2628 | SheepdogInode *inode = &s->inode; |
2629 | ||
e25cad69 | 2630 | fd = connect_to_sdog(s, errp); |
eab8eb8d | 2631 | if (fd < 0) { |
e25cad69 | 2632 | return fd; |
eab8eb8d VT |
2633 | } |
2634 | ||
2635 | nr_objs = count_data_objs(inode); | |
2636 | while (i < nr_objs) { | |
2637 | int start_idx, nr_filled_idx; | |
2638 | ||
2639 | while (i < nr_objs && !inode->data_vdi_id[i]) { | |
2640 | i++; | |
2641 | } | |
2642 | start_idx = i; | |
2643 | ||
2644 | nr_filled_idx = 0; | |
2645 | while (i < nr_objs && nr_filled_idx < NR_BATCHED_DISCARD) { | |
2646 | if (inode->data_vdi_id[i]) { | |
2647 | inode->data_vdi_id[i] = 0; | |
2648 | nr_filled_idx++; | |
2649 | } | |
2650 | ||
2651 | i++; | |
2652 | } | |
2653 | ||
f11672db | 2654 | ret = write_object(fd, s->bs, |
eab8eb8d VT |
2655 | (char *)&inode->data_vdi_id[start_idx], |
2656 | vid_to_vdi_oid(s->inode.vdi_id), inode->nr_copies, | |
2657 | (i - start_idx) * sizeof(uint32_t), | |
2658 | offsetof(struct SheepdogInode, | |
2659 | data_vdi_id[start_idx]), | |
2660 | false, s->cache_flags); | |
2661 | if (ret < 0) { | |
e25cad69 | 2662 | error_setg(errp, "Failed to discard snapshot inode"); |
eab8eb8d VT |
2663 | goto out; |
2664 | } | |
2665 | } | |
2666 | ||
e25cad69 | 2667 | ret = 0; |
eab8eb8d VT |
2668 | out: |
2669 | closesocket(fd); | |
e25cad69 | 2670 | return ret; |
eab8eb8d VT |
2671 | } |
2672 | ||
a89d89d3 WX |
2673 | static int sd_snapshot_delete(BlockDriverState *bs, |
2674 | const char *snapshot_id, | |
2675 | const char *name, | |
2676 | Error **errp) | |
33b1db1c | 2677 | { |
a0dc0e2b MA |
2678 | /* |
2679 | * FIXME should delete the snapshot matching both @snapshot_id and | |
2680 | * @name, but @name not used here | |
2681 | */ | |
03c698f0 | 2682 | unsigned long snap_id = 0; |
eab8eb8d | 2683 | char snap_tag[SD_MAX_VDI_TAG_LEN]; |
eab8eb8d VT |
2684 | int fd, ret; |
2685 | char buf[SD_MAX_VDI_LEN + SD_MAX_VDI_TAG_LEN]; | |
2686 | BDRVSheepdogState *s = bs->opaque; | |
2687 | unsigned int wlen = SD_MAX_VDI_LEN + SD_MAX_VDI_TAG_LEN, rlen = 0; | |
2688 | uint32_t vid; | |
2689 | SheepdogVdiReq hdr = { | |
2690 | .opcode = SD_OP_DEL_VDI, | |
2691 | .data_length = wlen, | |
2692 | .flags = SD_FLAG_CMD_WRITE, | |
2693 | }; | |
2694 | SheepdogVdiRsp *rsp = (SheepdogVdiRsp *)&hdr; | |
2695 | ||
e25cad69 MA |
2696 | ret = remove_objects(s, errp); |
2697 | if (ret) { | |
2698 | return ret; | |
eab8eb8d VT |
2699 | } |
2700 | ||
2701 | memset(buf, 0, sizeof(buf)); | |
2702 | memset(snap_tag, 0, sizeof(snap_tag)); | |
2703 | pstrcpy(buf, SD_MAX_VDI_LEN, s->name); | |
89e2a31d | 2704 | /* TODO Use sd_parse_snapid() once this mess is cleaned up */ |
03c698f0 JC |
2705 | ret = qemu_strtoul(snapshot_id, NULL, 10, &snap_id); |
2706 | if (ret || snap_id > UINT32_MAX) { | |
a0dc0e2b MA |
2707 | /* |
2708 | * FIXME Since qemu_strtoul() returns -EINVAL when | |
2709 | * @snapshot_id is null, @snapshot_id is mandatory. Correct | |
2710 | * would be to require at least one of @snapshot_id and @name. | |
2711 | */ | |
03c698f0 JC |
2712 | error_setg(errp, "Invalid snapshot ID: %s", |
2713 | snapshot_id ? snapshot_id : "<null>"); | |
2714 | return -EINVAL; | |
eab8eb8d VT |
2715 | } |
2716 | ||
2717 | if (snap_id) { | |
03c698f0 | 2718 | hdr.snapid = (uint32_t) snap_id; |
eab8eb8d | 2719 | } else { |
a0dc0e2b | 2720 | /* FIXME I suspect we should use @name here */ |
89e2a31d | 2721 | /* FIXME don't truncate silently */ |
eab8eb8d VT |
2722 | pstrcpy(snap_tag, sizeof(snap_tag), snapshot_id); |
2723 | pstrcpy(buf + SD_MAX_VDI_LEN, SD_MAX_VDI_TAG_LEN, snap_tag); | |
2724 | } | |
2725 | ||
e25cad69 | 2726 | ret = find_vdi_name(s, s->name, snap_id, snap_tag, &vid, true, errp); |
eab8eb8d VT |
2727 | if (ret) { |
2728 | return ret; | |
2729 | } | |
2730 | ||
e25cad69 | 2731 | fd = connect_to_sdog(s, errp); |
eab8eb8d | 2732 | if (fd < 0) { |
e25cad69 | 2733 | return fd; |
eab8eb8d VT |
2734 | } |
2735 | ||
f11672db | 2736 | ret = do_req(fd, s->bs, (SheepdogReq *)&hdr, |
eab8eb8d VT |
2737 | buf, &wlen, &rlen); |
2738 | closesocket(fd); | |
2739 | if (ret) { | |
e25cad69 | 2740 | error_setg_errno(errp, -ret, "Couldn't send request to server"); |
eab8eb8d VT |
2741 | return ret; |
2742 | } | |
2743 | ||
2744 | switch (rsp->result) { | |
2745 | case SD_RES_NO_VDI: | |
e25cad69 MA |
2746 | error_setg(errp, "Can't find the snapshot"); |
2747 | return -ENOENT; | |
eab8eb8d VT |
2748 | case SD_RES_SUCCESS: |
2749 | break; | |
2750 | default: | |
e25cad69 MA |
2751 | error_setg(errp, "%s", sd_strerror(rsp->result)); |
2752 | return -EIO; | |
eab8eb8d VT |
2753 | } |
2754 | ||
e25cad69 | 2755 | return 0; |
33b1db1c MK |
2756 | } |
2757 | ||
33b1db1c MK |
2758 | static int sd_snapshot_list(BlockDriverState *bs, QEMUSnapshotInfo **psn_tab) |
2759 | { | |
dfb12bf8 | 2760 | Error *local_err = NULL; |
33b1db1c MK |
2761 | BDRVSheepdogState *s = bs->opaque; |
2762 | SheepdogReq req; | |
2763 | int fd, nr = 1024, ret, max = BITS_TO_LONGS(SD_NR_VDIS) * sizeof(long); | |
2764 | QEMUSnapshotInfo *sn_tab = NULL; | |
2765 | unsigned wlen, rlen; | |
2766 | int found = 0; | |
2767 | static SheepdogInode inode; | |
2768 | unsigned long *vdi_inuse; | |
2769 | unsigned int start_nr; | |
2770 | uint64_t hval; | |
2771 | uint32_t vid; | |
2772 | ||
7267c094 | 2773 | vdi_inuse = g_malloc(max); |
33b1db1c | 2774 | |
dfb12bf8 | 2775 | fd = connect_to_sdog(s, &local_err); |
33b1db1c | 2776 | if (fd < 0) { |
565f65d2 | 2777 | error_report_err(local_err); |
cb595887 | 2778 | ret = fd; |
33b1db1c MK |
2779 | goto out; |
2780 | } | |
2781 | ||
2782 | rlen = max; | |
2783 | wlen = 0; | |
2784 | ||
2785 | memset(&req, 0, sizeof(req)); | |
2786 | ||
2787 | req.opcode = SD_OP_READ_VDIS; | |
2788 | req.data_length = max; | |
2789 | ||
f11672db | 2790 | ret = do_req(fd, s->bs, &req, vdi_inuse, &wlen, &rlen); |
33b1db1c MK |
2791 | |
2792 | closesocket(fd); | |
2793 | if (ret) { | |
2794 | goto out; | |
2795 | } | |
2796 | ||
02c4f26b | 2797 | sn_tab = g_new0(QEMUSnapshotInfo, nr); |
33b1db1c MK |
2798 | |
2799 | /* calculate a vdi id with hash function */ | |
2800 | hval = fnv_64a_buf(s->name, strlen(s->name), FNV1A_64_INIT); | |
2801 | start_nr = hval & (SD_NR_VDIS - 1); | |
2802 | ||
dfb12bf8 | 2803 | fd = connect_to_sdog(s, &local_err); |
33b1db1c | 2804 | if (fd < 0) { |
565f65d2 | 2805 | error_report_err(local_err); |
cb595887 | 2806 | ret = fd; |
33b1db1c MK |
2807 | goto out; |
2808 | } | |
2809 | ||
2810 | for (vid = start_nr; found < nr; vid = (vid + 1) % SD_NR_VDIS) { | |
2811 | if (!test_bit(vid, vdi_inuse)) { | |
2812 | break; | |
2813 | } | |
2814 | ||
2815 | /* we don't need to read entire object */ | |
f11672db | 2816 | ret = read_object(fd, s->bs, (char *)&inode, |
84390bed | 2817 | vid_to_vdi_oid(vid), |
47622c44 | 2818 | 0, SD_INODE_SIZE - sizeof(inode.data_vdi_id), 0, |
0e7106d8 | 2819 | s->cache_flags); |
33b1db1c MK |
2820 | |
2821 | if (ret) { | |
2822 | continue; | |
2823 | } | |
2824 | ||
2825 | if (!strcmp(inode.name, s->name) && is_snapshot(&inode)) { | |
2826 | sn_tab[found].date_sec = inode.snap_ctime >> 32; | |
2827 | sn_tab[found].date_nsec = inode.snap_ctime & 0xffffffff; | |
2828 | sn_tab[found].vm_state_size = inode.vm_state_size; | |
2829 | sn_tab[found].vm_clock_nsec = inode.vm_clock_nsec; | |
2830 | ||
521b2b5d HR |
2831 | snprintf(sn_tab[found].id_str, sizeof(sn_tab[found].id_str), |
2832 | "%" PRIu32, inode.snap_id); | |
3178e275 JM |
2833 | pstrcpy(sn_tab[found].name, |
2834 | MIN(sizeof(sn_tab[found].name), sizeof(inode.tag)), | |
2835 | inode.tag); | |
33b1db1c MK |
2836 | found++; |
2837 | } | |
2838 | } | |
2839 | ||
2840 | closesocket(fd); | |
2841 | out: | |
2842 | *psn_tab = sn_tab; | |
2843 | ||
7267c094 | 2844 | g_free(vdi_inuse); |
33b1db1c | 2845 | |
cb595887 MK |
2846 | if (ret < 0) { |
2847 | return ret; | |
2848 | } | |
2849 | ||
33b1db1c MK |
2850 | return found; |
2851 | } | |
2852 | ||
2853 | static int do_load_save_vmstate(BDRVSheepdogState *s, uint8_t *data, | |
2854 | int64_t pos, int size, int load) | |
2855 | { | |
dfb12bf8 | 2856 | Error *local_err = NULL; |
2f536801 MK |
2857 | bool create; |
2858 | int fd, ret = 0, remaining = size; | |
33b1db1c MK |
2859 | unsigned int data_len; |
2860 | uint64_t vmstate_oid; | |
33b1db1c | 2861 | uint64_t offset; |
cede621f LY |
2862 | uint32_t vdi_index; |
2863 | uint32_t vdi_id = load ? s->inode.parent_vdi_id : s->inode.vdi_id; | |
876eb1b0 | 2864 | uint32_t object_size = (UINT32_C(1) << s->inode.block_size_shift); |
33b1db1c | 2865 | |
dfb12bf8 | 2866 | fd = connect_to_sdog(s, &local_err); |
33b1db1c | 2867 | if (fd < 0) { |
565f65d2 | 2868 | error_report_err(local_err); |
cb595887 | 2869 | return fd; |
33b1db1c MK |
2870 | } |
2871 | ||
6f3c714e | 2872 | while (remaining) { |
876eb1b0 TI |
2873 | vdi_index = pos / object_size; |
2874 | offset = pos % object_size; | |
33b1db1c | 2875 | |
876eb1b0 | 2876 | data_len = MIN(remaining, object_size - offset); |
33b1db1c | 2877 | |
cede621f | 2878 | vmstate_oid = vid_to_vmstate_oid(vdi_id, vdi_index); |
33b1db1c MK |
2879 | |
2880 | create = (offset == 0); | |
2881 | if (load) { | |
f11672db | 2882 | ret = read_object(fd, s->bs, (char *)data, vmstate_oid, |
47622c44 | 2883 | s->inode.nr_copies, data_len, offset, |
0e7106d8 | 2884 | s->cache_flags); |
33b1db1c | 2885 | } else { |
f11672db | 2886 | ret = write_object(fd, s->bs, (char *)data, vmstate_oid, |
47622c44 | 2887 | s->inode.nr_copies, data_len, offset, create, |
0e7106d8 | 2888 | s->cache_flags); |
33b1db1c MK |
2889 | } |
2890 | ||
2891 | if (ret < 0) { | |
6daf194d | 2892 | error_report("failed to save vmstate %s", strerror(errno)); |
33b1db1c MK |
2893 | goto cleanup; |
2894 | } | |
2895 | ||
2896 | pos += data_len; | |
1f7a48de | 2897 | data += data_len; |
6f3c714e | 2898 | remaining -= data_len; |
33b1db1c | 2899 | } |
6f3c714e | 2900 | ret = size; |
33b1db1c MK |
2901 | cleanup: |
2902 | closesocket(fd); | |
2903 | return ret; | |
2904 | } | |
2905 | ||
cf8074b3 KW |
2906 | static int sd_save_vmstate(BlockDriverState *bs, QEMUIOVector *qiov, |
2907 | int64_t pos) | |
33b1db1c MK |
2908 | { |
2909 | BDRVSheepdogState *s = bs->opaque; | |
cf8074b3 KW |
2910 | void *buf; |
2911 | int ret; | |
33b1db1c | 2912 | |
cf8074b3 KW |
2913 | buf = qemu_blockalign(bs, qiov->size); |
2914 | qemu_iovec_to_buf(qiov, 0, buf, qiov->size); | |
2915 | ret = do_load_save_vmstate(s, (uint8_t *) buf, pos, qiov->size, 0); | |
2916 | qemu_vfree(buf); | |
2917 | ||
2918 | return ret; | |
33b1db1c MK |
2919 | } |
2920 | ||
5ddda0b8 KW |
2921 | static int sd_load_vmstate(BlockDriverState *bs, QEMUIOVector *qiov, |
2922 | int64_t pos) | |
33b1db1c MK |
2923 | { |
2924 | BDRVSheepdogState *s = bs->opaque; | |
5ddda0b8 KW |
2925 | void *buf; |
2926 | int ret; | |
33b1db1c | 2927 | |
5ddda0b8 KW |
2928 | buf = qemu_blockalign(bs, qiov->size); |
2929 | ret = do_load_save_vmstate(s, buf, pos, qiov->size, 1); | |
2930 | qemu_iovec_from_buf(qiov, 0, buf, qiov->size); | |
2931 | qemu_vfree(buf); | |
2932 | ||
2933 | return ret; | |
33b1db1c MK |
2934 | } |
2935 | ||
2936 | ||
dde47537 | 2937 | static coroutine_fn int sd_co_pdiscard(BlockDriverState *bs, int64_t offset, |
f5a5ca79 | 2938 | int bytes) |
cac8f4a6 | 2939 | { |
28ddd08c | 2940 | SheepdogAIOCB acb; |
cac8f4a6 | 2941 | BDRVSheepdogState *s = bs->opaque; |
e6fd57ea HM |
2942 | QEMUIOVector discard_iov; |
2943 | struct iovec iov; | |
2944 | uint32_t zero = 0; | |
cac8f4a6 LY |
2945 | |
2946 | if (!s->discard_supported) { | |
dde47537 | 2947 | return 0; |
cac8f4a6 LY |
2948 | } |
2949 | ||
e6fd57ea HM |
2950 | memset(&discard_iov, 0, sizeof(discard_iov)); |
2951 | memset(&iov, 0, sizeof(iov)); | |
2952 | iov.iov_base = &zero; | |
2953 | iov.iov_len = sizeof(zero); | |
2954 | discard_iov.iov = &iov; | |
2955 | discard_iov.niov = 1; | |
f5a5ca79 | 2956 | if (!QEMU_IS_ALIGNED(offset | bytes, BDRV_SECTOR_SIZE)) { |
49228d1e EB |
2957 | return -ENOTSUP; |
2958 | } | |
28ddd08c | 2959 | sd_aio_setup(&acb, s, &discard_iov, offset >> BDRV_SECTOR_BITS, |
f5a5ca79 | 2960 | bytes >> BDRV_SECTOR_BITS, AIOCB_DISCARD_OBJ); |
28ddd08c | 2961 | sd_co_rw_vector(&acb); |
acf6e5f0 | 2962 | sd_aio_complete(&acb); |
cac8f4a6 | 2963 | |
28ddd08c | 2964 | return acb.ret; |
cac8f4a6 LY |
2965 | } |
2966 | ||
b6b8a333 PB |
2967 | static coroutine_fn int64_t |
2968 | sd_co_get_block_status(BlockDriverState *bs, int64_t sector_num, int nb_sectors, | |
67a0fd2a | 2969 | int *pnum, BlockDriverState **file) |
8d71c631 LY |
2970 | { |
2971 | BDRVSheepdogState *s = bs->opaque; | |
2972 | SheepdogInode *inode = &s->inode; | |
876eb1b0 | 2973 | uint32_t object_size = (UINT32_C(1) << inode->block_size_shift); |
9cd76737 | 2974 | uint64_t offset = sector_num * BDRV_SECTOR_SIZE; |
876eb1b0 | 2975 | unsigned long start = offset / object_size, |
8d71c631 | 2976 | end = DIV_ROUND_UP((sector_num + nb_sectors) * |
876eb1b0 | 2977 | BDRV_SECTOR_SIZE, object_size); |
8d71c631 | 2978 | unsigned long idx; |
9cd76737 | 2979 | int64_t ret = BDRV_BLOCK_DATA | BDRV_BLOCK_OFFSET_VALID | offset; |
8d71c631 LY |
2980 | |
2981 | for (idx = start; idx < end; idx++) { | |
2982 | if (inode->data_vdi_id[idx] == 0) { | |
2983 | break; | |
2984 | } | |
2985 | } | |
2986 | if (idx == start) { | |
2987 | /* Get the longest length of unallocated sectors */ | |
2988 | ret = 0; | |
2989 | for (idx = start + 1; idx < end; idx++) { | |
2990 | if (inode->data_vdi_id[idx] != 0) { | |
2991 | break; | |
2992 | } | |
2993 | } | |
2994 | } | |
2995 | ||
876eb1b0 | 2996 | *pnum = (idx - start) * object_size / BDRV_SECTOR_SIZE; |
8d71c631 LY |
2997 | if (*pnum > nb_sectors) { |
2998 | *pnum = nb_sectors; | |
2999 | } | |
d234c929 FZ |
3000 | if (ret > 0 && ret & BDRV_BLOCK_OFFSET_VALID) { |
3001 | *file = bs; | |
3002 | } | |
8d71c631 LY |
3003 | return ret; |
3004 | } | |
3005 | ||
85829722 LY |
3006 | static int64_t sd_get_allocated_file_size(BlockDriverState *bs) |
3007 | { | |
3008 | BDRVSheepdogState *s = bs->opaque; | |
3009 | SheepdogInode *inode = &s->inode; | |
876eb1b0 TI |
3010 | uint32_t object_size = (UINT32_C(1) << inode->block_size_shift); |
3011 | unsigned long i, last = DIV_ROUND_UP(inode->vdi_size, object_size); | |
85829722 LY |
3012 | uint64_t size = 0; |
3013 | ||
3014 | for (i = 0; i < last; i++) { | |
3015 | if (inode->data_vdi_id[i] == 0) { | |
3016 | continue; | |
3017 | } | |
876eb1b0 | 3018 | size += object_size; |
85829722 LY |
3019 | } |
3020 | return size; | |
3021 | } | |
3022 | ||
b222237b CL |
3023 | static QemuOptsList sd_create_opts = { |
3024 | .name = "sheepdog-create-opts", | |
3025 | .head = QTAILQ_HEAD_INITIALIZER(sd_create_opts.head), | |
3026 | .desc = { | |
3027 | { | |
3028 | .name = BLOCK_OPT_SIZE, | |
3029 | .type = QEMU_OPT_SIZE, | |
3030 | .help = "Virtual disk size" | |
3031 | }, | |
3032 | { | |
3033 | .name = BLOCK_OPT_BACKING_FILE, | |
3034 | .type = QEMU_OPT_STRING, | |
3035 | .help = "File name of a base image" | |
3036 | }, | |
3037 | { | |
3038 | .name = BLOCK_OPT_PREALLOC, | |
3039 | .type = QEMU_OPT_STRING, | |
3040 | .help = "Preallocation mode (allowed values: off, full)" | |
3041 | }, | |
3042 | { | |
3043 | .name = BLOCK_OPT_REDUNDANCY, | |
3044 | .type = QEMU_OPT_STRING, | |
3045 | .help = "Redundancy of the image" | |
3046 | }, | |
876eb1b0 TI |
3047 | { |
3048 | .name = BLOCK_OPT_OBJECT_SIZE, | |
3049 | .type = QEMU_OPT_SIZE, | |
3050 | .help = "Object size of the image" | |
3051 | }, | |
b222237b CL |
3052 | { /* end of list */ } |
3053 | } | |
33b1db1c MK |
3054 | }; |
3055 | ||
5d6768e3 | 3056 | static BlockDriver bdrv_sheepdog = { |
33b1db1c MK |
3057 | .format_name = "sheepdog", |
3058 | .protocol_name = "sheepdog", | |
3059 | .instance_size = sizeof(BDRVSheepdogState), | |
831acdc9 | 3060 | .bdrv_parse_filename = sd_parse_filename, |
33b1db1c | 3061 | .bdrv_file_open = sd_open, |
4da65c80 LY |
3062 | .bdrv_reopen_prepare = sd_reopen_prepare, |
3063 | .bdrv_reopen_commit = sd_reopen_commit, | |
3064 | .bdrv_reopen_abort = sd_reopen_abort, | |
33b1db1c | 3065 | .bdrv_close = sd_close, |
c282e1fd | 3066 | .bdrv_create = sd_create, |
e4f5c1bf | 3067 | .bdrv_has_zero_init = bdrv_has_zero_init_1, |
33b1db1c | 3068 | .bdrv_getlength = sd_getlength, |
85829722 | 3069 | .bdrv_get_allocated_file_size = sd_get_allocated_file_size, |
33b1db1c MK |
3070 | .bdrv_truncate = sd_truncate, |
3071 | ||
2df46246 MK |
3072 | .bdrv_co_readv = sd_co_readv, |
3073 | .bdrv_co_writev = sd_co_writev, | |
47622c44 | 3074 | .bdrv_co_flush_to_disk = sd_co_flush_to_disk, |
dde47537 | 3075 | .bdrv_co_pdiscard = sd_co_pdiscard, |
b6b8a333 | 3076 | .bdrv_co_get_block_status = sd_co_get_block_status, |
33b1db1c MK |
3077 | |
3078 | .bdrv_snapshot_create = sd_snapshot_create, | |
3079 | .bdrv_snapshot_goto = sd_snapshot_goto, | |
3080 | .bdrv_snapshot_delete = sd_snapshot_delete, | |
3081 | .bdrv_snapshot_list = sd_snapshot_list, | |
3082 | ||
3083 | .bdrv_save_vmstate = sd_save_vmstate, | |
3084 | .bdrv_load_vmstate = sd_load_vmstate, | |
3085 | ||
84390bed SH |
3086 | .bdrv_detach_aio_context = sd_detach_aio_context, |
3087 | .bdrv_attach_aio_context = sd_attach_aio_context, | |
3088 | ||
b222237b | 3089 | .create_opts = &sd_create_opts, |
33b1db1c MK |
3090 | }; |
3091 | ||
5d6768e3 MK |
3092 | static BlockDriver bdrv_sheepdog_tcp = { |
3093 | .format_name = "sheepdog", | |
3094 | .protocol_name = "sheepdog+tcp", | |
3095 | .instance_size = sizeof(BDRVSheepdogState), | |
831acdc9 | 3096 | .bdrv_parse_filename = sd_parse_filename, |
5d6768e3 | 3097 | .bdrv_file_open = sd_open, |
4da65c80 LY |
3098 | .bdrv_reopen_prepare = sd_reopen_prepare, |
3099 | .bdrv_reopen_commit = sd_reopen_commit, | |
3100 | .bdrv_reopen_abort = sd_reopen_abort, | |
5d6768e3 | 3101 | .bdrv_close = sd_close, |
c282e1fd | 3102 | .bdrv_create = sd_create, |
e4f5c1bf | 3103 | .bdrv_has_zero_init = bdrv_has_zero_init_1, |
5d6768e3 | 3104 | .bdrv_getlength = sd_getlength, |
85829722 | 3105 | .bdrv_get_allocated_file_size = sd_get_allocated_file_size, |
5d6768e3 MK |
3106 | .bdrv_truncate = sd_truncate, |
3107 | ||
3108 | .bdrv_co_readv = sd_co_readv, | |
3109 | .bdrv_co_writev = sd_co_writev, | |
3110 | .bdrv_co_flush_to_disk = sd_co_flush_to_disk, | |
dde47537 | 3111 | .bdrv_co_pdiscard = sd_co_pdiscard, |
b6b8a333 | 3112 | .bdrv_co_get_block_status = sd_co_get_block_status, |
5d6768e3 MK |
3113 | |
3114 | .bdrv_snapshot_create = sd_snapshot_create, | |
3115 | .bdrv_snapshot_goto = sd_snapshot_goto, | |
3116 | .bdrv_snapshot_delete = sd_snapshot_delete, | |
3117 | .bdrv_snapshot_list = sd_snapshot_list, | |
3118 | ||
3119 | .bdrv_save_vmstate = sd_save_vmstate, | |
3120 | .bdrv_load_vmstate = sd_load_vmstate, | |
3121 | ||
84390bed SH |
3122 | .bdrv_detach_aio_context = sd_detach_aio_context, |
3123 | .bdrv_attach_aio_context = sd_attach_aio_context, | |
3124 | ||
b222237b | 3125 | .create_opts = &sd_create_opts, |
5d6768e3 MK |
3126 | }; |
3127 | ||
1b8bbb46 MK |
3128 | static BlockDriver bdrv_sheepdog_unix = { |
3129 | .format_name = "sheepdog", | |
3130 | .protocol_name = "sheepdog+unix", | |
3131 | .instance_size = sizeof(BDRVSheepdogState), | |
831acdc9 | 3132 | .bdrv_parse_filename = sd_parse_filename, |
1b8bbb46 | 3133 | .bdrv_file_open = sd_open, |
4da65c80 LY |
3134 | .bdrv_reopen_prepare = sd_reopen_prepare, |
3135 | .bdrv_reopen_commit = sd_reopen_commit, | |
3136 | .bdrv_reopen_abort = sd_reopen_abort, | |
1b8bbb46 | 3137 | .bdrv_close = sd_close, |
c282e1fd | 3138 | .bdrv_create = sd_create, |
3ac21627 | 3139 | .bdrv_has_zero_init = bdrv_has_zero_init_1, |
1b8bbb46 | 3140 | .bdrv_getlength = sd_getlength, |
85829722 | 3141 | .bdrv_get_allocated_file_size = sd_get_allocated_file_size, |
1b8bbb46 MK |
3142 | .bdrv_truncate = sd_truncate, |
3143 | ||
3144 | .bdrv_co_readv = sd_co_readv, | |
3145 | .bdrv_co_writev = sd_co_writev, | |
3146 | .bdrv_co_flush_to_disk = sd_co_flush_to_disk, | |
dde47537 | 3147 | .bdrv_co_pdiscard = sd_co_pdiscard, |
b6b8a333 | 3148 | .bdrv_co_get_block_status = sd_co_get_block_status, |
1b8bbb46 MK |
3149 | |
3150 | .bdrv_snapshot_create = sd_snapshot_create, | |
3151 | .bdrv_snapshot_goto = sd_snapshot_goto, | |
3152 | .bdrv_snapshot_delete = sd_snapshot_delete, | |
3153 | .bdrv_snapshot_list = sd_snapshot_list, | |
3154 | ||
3155 | .bdrv_save_vmstate = sd_save_vmstate, | |
3156 | .bdrv_load_vmstate = sd_load_vmstate, | |
3157 | ||
84390bed SH |
3158 | .bdrv_detach_aio_context = sd_detach_aio_context, |
3159 | .bdrv_attach_aio_context = sd_attach_aio_context, | |
3160 | ||
b222237b | 3161 | .create_opts = &sd_create_opts, |
1b8bbb46 MK |
3162 | }; |
3163 | ||
33b1db1c MK |
3164 | static void bdrv_sheepdog_init(void) |
3165 | { | |
3166 | bdrv_register(&bdrv_sheepdog); | |
5d6768e3 | 3167 | bdrv_register(&bdrv_sheepdog_tcp); |
1b8bbb46 | 3168 | bdrv_register(&bdrv_sheepdog_unix); |
33b1db1c MK |
3169 | } |
3170 | block_init(bdrv_sheepdog_init); |