rbd: drop rbd_header_from_disk() gfp_flags parameter
[linux-block.git] / drivers / block / rbd.c
CommitLineData
602adf40
YS
1/*
2 rbd.c -- Export ceph rados objects as a Linux block device
3
4
5 based on drivers/block/osdblk.c:
6
7 Copyright 2009 Red Hat, Inc.
8
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation.
12
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with this program; see the file COPYING. If not, write to
20 the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
21
22
23
dfc5606d 24 For usage instructions, please refer to:
602adf40 25
dfc5606d 26 Documentation/ABI/testing/sysfs-bus-rbd
602adf40
YS
27
28 */
29
30#include <linux/ceph/libceph.h>
31#include <linux/ceph/osd_client.h>
32#include <linux/ceph/mon_client.h>
33#include <linux/ceph/decode.h>
59c2be1e 34#include <linux/parser.h>
602adf40
YS
35
36#include <linux/kernel.h>
37#include <linux/device.h>
38#include <linux/module.h>
39#include <linux/fs.h>
40#include <linux/blkdev.h>
41
42#include "rbd_types.h"
43
593a9e7b
AE
44/*
45 * The basic unit of block I/O is a sector. It is interpreted in a
46 * number of contexts in Linux (blk, bio, genhd), but the default is
47 * universally 512 bytes. These symbols are just slightly more
48 * meaningful than the bare numbers they represent.
49 */
50#define SECTOR_SHIFT 9
51#define SECTOR_SIZE (1ULL << SECTOR_SHIFT)
52
f0f8cef5
AE
53#define RBD_DRV_NAME "rbd"
54#define RBD_DRV_NAME_LONG "rbd (rados block device)"
602adf40
YS
55
56#define RBD_MINORS_PER_MAJOR 256 /* max minors per blkdev */
57
602adf40
YS
58#define RBD_MAX_SNAP_NAME_LEN 32
59#define RBD_MAX_OPT_LEN 1024
60
61#define RBD_SNAP_HEAD_NAME "-"
62
81a89793
AE
63/*
64 * An RBD device name will be "rbd#", where the "rbd" comes from
65 * RBD_DRV_NAME above, and # is a unique integer identifier.
66 * MAX_INT_FORMAT_WIDTH is used in ensuring DEV_NAME_LEN is big
67 * enough to hold all possible device names.
68 */
602adf40 69#define DEV_NAME_LEN 32
81a89793 70#define MAX_INT_FORMAT_WIDTH ((5 * sizeof (int)) / 2 + 1)
602adf40 71
59c2be1e
YS
72#define RBD_NOTIFY_TIMEOUT_DEFAULT 10
73
602adf40
YS
74/*
75 * block device image metadata (in-memory version)
76 */
77struct rbd_image_header {
78 u64 image_size;
849b4260 79 char *object_prefix;
602adf40
YS
80 __u8 obj_order;
81 __u8 crypt_type;
82 __u8 comp_type;
602adf40
YS
83 struct ceph_snap_context *snapc;
84 size_t snap_names_len;
602adf40
YS
85 u32 total_snaps;
86
87 char *snap_names;
88 u64 *snap_sizes;
59c2be1e
YS
89
90 u64 obj_version;
91};
92
93struct rbd_options {
94 int notify_timeout;
602adf40
YS
95};
96
97/*
f0f8cef5 98 * an instance of the client. multiple devices may share an rbd client.
602adf40
YS
99 */
100struct rbd_client {
101 struct ceph_client *client;
59c2be1e 102 struct rbd_options *rbd_opts;
602adf40
YS
103 struct kref kref;
104 struct list_head node;
105};
106
107/*
f0f8cef5 108 * a request completion status
602adf40 109 */
1fec7093
YS
110struct rbd_req_status {
111 int done;
112 int rc;
113 u64 bytes;
114};
115
116/*
117 * a collection of requests
118 */
119struct rbd_req_coll {
120 int total;
121 int num_done;
122 struct kref kref;
123 struct rbd_req_status status[0];
602adf40
YS
124};
125
f0f8cef5
AE
126/*
127 * a single io request
128 */
129struct rbd_request {
130 struct request *rq; /* blk layer request */
131 struct bio *bio; /* cloned bio */
132 struct page **pages; /* list of used pages */
133 u64 len;
134 int coll_index;
135 struct rbd_req_coll *coll;
136};
137
dfc5606d
YS
138struct rbd_snap {
139 struct device dev;
140 const char *name;
3591538f 141 u64 size;
dfc5606d
YS
142 struct list_head node;
143 u64 id;
144};
145
602adf40
YS
146/*
147 * a single device
148 */
149struct rbd_device {
de71a297 150 int dev_id; /* blkdev unique id */
602adf40
YS
151
152 int major; /* blkdev assigned major */
153 struct gendisk *disk; /* blkdev's gendisk and rq */
154 struct request_queue *q;
155
602adf40
YS
156 struct rbd_client *rbd_client;
157
158 char name[DEV_NAME_LEN]; /* blkdev name, e.g. rbd3 */
159
160 spinlock_t lock; /* queue lock */
161
162 struct rbd_image_header header;
0bed54dc
AE
163 char *image_name;
164 size_t image_name_len;
165 char *header_name;
d22f76e7 166 char *pool_name;
9bb2f334 167 int pool_id;
602adf40 168
59c2be1e
YS
169 struct ceph_osd_event *watch_event;
170 struct ceph_osd_request *watch_request;
171
c666601a
JD
172 /* protects updating the header */
173 struct rw_semaphore header_rwsem;
e88a36ec 174 /* name of the snapshot this device reads from */
820a5f3e 175 char *snap_name;
e88a36ec 176 /* id of the snapshot this device reads from */
77dfe99f 177 u64 snap_id; /* current snapshot id */
e88a36ec
JD
178 /* whether the snap_id this device reads from still exists */
179 bool snap_exists;
180 int read_only;
602adf40
YS
181
182 struct list_head node;
dfc5606d
YS
183
184 /* list of snapshots */
185 struct list_head snaps;
186
187 /* sysfs related */
188 struct device dev;
189};
190
602adf40 191static DEFINE_MUTEX(ctl_mutex); /* Serialize open/close/setup/teardown */
e124a82f 192
602adf40 193static LIST_HEAD(rbd_dev_list); /* devices */
e124a82f
AE
194static DEFINE_SPINLOCK(rbd_dev_list_lock);
195
432b8587
AE
196static LIST_HEAD(rbd_client_list); /* clients */
197static DEFINE_SPINLOCK(rbd_client_list_lock);
602adf40 198
dfc5606d
YS
199static int __rbd_init_snaps_header(struct rbd_device *rbd_dev);
200static void rbd_dev_release(struct device *dev);
dfc5606d
YS
201static ssize_t rbd_snap_add(struct device *dev,
202 struct device_attribute *attr,
203 const char *buf,
204 size_t count);
205static void __rbd_remove_snap_dev(struct rbd_device *rbd_dev,
69932487 206 struct rbd_snap *snap);
dfc5606d 207
f0f8cef5
AE
208static ssize_t rbd_add(struct bus_type *bus, const char *buf,
209 size_t count);
210static ssize_t rbd_remove(struct bus_type *bus, const char *buf,
211 size_t count);
212
213static struct bus_attribute rbd_bus_attrs[] = {
214 __ATTR(add, S_IWUSR, NULL, rbd_add),
215 __ATTR(remove, S_IWUSR, NULL, rbd_remove),
216 __ATTR_NULL
217};
218
219static struct bus_type rbd_bus_type = {
220 .name = "rbd",
221 .bus_attrs = rbd_bus_attrs,
222};
223
224static void rbd_root_dev_release(struct device *dev)
225{
226}
227
228static struct device rbd_root_dev = {
229 .init_name = "rbd",
230 .release = rbd_root_dev_release,
231};
232
dfc5606d 233
dfc5606d
YS
234static struct device *rbd_get_dev(struct rbd_device *rbd_dev)
235{
236 return get_device(&rbd_dev->dev);
237}
238
239static void rbd_put_dev(struct rbd_device *rbd_dev)
240{
241 put_device(&rbd_dev->dev);
242}
602adf40 243
263c6ca0 244static int __rbd_refresh_header(struct rbd_device *rbd_dev);
59c2be1e 245
602adf40
YS
246static int rbd_open(struct block_device *bdev, fmode_t mode)
247{
f0f8cef5 248 struct rbd_device *rbd_dev = bdev->bd_disk->private_data;
602adf40 249
dfc5606d
YS
250 rbd_get_dev(rbd_dev);
251
602adf40
YS
252 set_device_ro(bdev, rbd_dev->read_only);
253
254 if ((mode & FMODE_WRITE) && rbd_dev->read_only)
255 return -EROFS;
256
257 return 0;
258}
259
dfc5606d
YS
260static int rbd_release(struct gendisk *disk, fmode_t mode)
261{
262 struct rbd_device *rbd_dev = disk->private_data;
263
264 rbd_put_dev(rbd_dev);
265
266 return 0;
267}
268
602adf40
YS
269static const struct block_device_operations rbd_bd_ops = {
270 .owner = THIS_MODULE,
271 .open = rbd_open,
dfc5606d 272 .release = rbd_release,
602adf40
YS
273};
274
275/*
276 * Initialize an rbd client instance.
43ae4701 277 * We own *ceph_opts.
602adf40 278 */
43ae4701 279static struct rbd_client *rbd_client_create(struct ceph_options *ceph_opts,
59c2be1e 280 struct rbd_options *rbd_opts)
602adf40
YS
281{
282 struct rbd_client *rbdc;
283 int ret = -ENOMEM;
284
285 dout("rbd_client_create\n");
286 rbdc = kmalloc(sizeof(struct rbd_client), GFP_KERNEL);
287 if (!rbdc)
288 goto out_opt;
289
290 kref_init(&rbdc->kref);
291 INIT_LIST_HEAD(&rbdc->node);
292
bc534d86
AE
293 mutex_lock_nested(&ctl_mutex, SINGLE_DEPTH_NESTING);
294
43ae4701 295 rbdc->client = ceph_create_client(ceph_opts, rbdc, 0, 0);
602adf40 296 if (IS_ERR(rbdc->client))
bc534d86 297 goto out_mutex;
43ae4701 298 ceph_opts = NULL; /* Now rbdc->client is responsible for ceph_opts */
602adf40
YS
299
300 ret = ceph_open_session(rbdc->client);
301 if (ret < 0)
302 goto out_err;
303
59c2be1e
YS
304 rbdc->rbd_opts = rbd_opts;
305
432b8587 306 spin_lock(&rbd_client_list_lock);
602adf40 307 list_add_tail(&rbdc->node, &rbd_client_list);
432b8587 308 spin_unlock(&rbd_client_list_lock);
602adf40 309
bc534d86
AE
310 mutex_unlock(&ctl_mutex);
311
602adf40
YS
312 dout("rbd_client_create created %p\n", rbdc);
313 return rbdc;
314
315out_err:
316 ceph_destroy_client(rbdc->client);
bc534d86
AE
317out_mutex:
318 mutex_unlock(&ctl_mutex);
602adf40
YS
319 kfree(rbdc);
320out_opt:
43ae4701
AE
321 if (ceph_opts)
322 ceph_destroy_options(ceph_opts);
28f259b7 323 return ERR_PTR(ret);
602adf40
YS
324}
325
326/*
327 * Find a ceph client with specific addr and configuration.
328 */
43ae4701 329static struct rbd_client *__rbd_client_find(struct ceph_options *ceph_opts)
602adf40
YS
330{
331 struct rbd_client *client_node;
332
43ae4701 333 if (ceph_opts->flags & CEPH_OPT_NOSHARE)
602adf40
YS
334 return NULL;
335
336 list_for_each_entry(client_node, &rbd_client_list, node)
43ae4701 337 if (!ceph_compare_options(ceph_opts, client_node->client))
602adf40
YS
338 return client_node;
339 return NULL;
340}
341
59c2be1e
YS
342/*
343 * mount options
344 */
345enum {
346 Opt_notify_timeout,
347 Opt_last_int,
348 /* int args above */
349 Opt_last_string,
350 /* string args above */
351};
352
43ae4701 353static match_table_t rbd_opts_tokens = {
59c2be1e
YS
354 {Opt_notify_timeout, "notify_timeout=%d"},
355 /* int args above */
356 /* string args above */
357 {-1, NULL}
358};
359
360static int parse_rbd_opts_token(char *c, void *private)
361{
43ae4701 362 struct rbd_options *rbd_opts = private;
59c2be1e
YS
363 substring_t argstr[MAX_OPT_ARGS];
364 int token, intval, ret;
365
43ae4701 366 token = match_token(c, rbd_opts_tokens, argstr);
59c2be1e
YS
367 if (token < 0)
368 return -EINVAL;
369
370 if (token < Opt_last_int) {
371 ret = match_int(&argstr[0], &intval);
372 if (ret < 0) {
373 pr_err("bad mount option arg (not int) "
374 "at '%s'\n", c);
375 return ret;
376 }
377 dout("got int token %d val %d\n", token, intval);
378 } else if (token > Opt_last_int && token < Opt_last_string) {
379 dout("got string token %d val %s\n", token,
380 argstr[0].from);
381 } else {
382 dout("got token %d\n", token);
383 }
384
385 switch (token) {
386 case Opt_notify_timeout:
43ae4701 387 rbd_opts->notify_timeout = intval;
59c2be1e
YS
388 break;
389 default:
390 BUG_ON(token);
391 }
392 return 0;
393}
394
602adf40
YS
395/*
396 * Get a ceph client with specific addr and configuration, if one does
397 * not exist create it.
398 */
5214ecc4
AE
399static struct rbd_client *rbd_get_client(const char *mon_addr,
400 size_t mon_addr_len,
401 char *options)
602adf40
YS
402{
403 struct rbd_client *rbdc;
43ae4701 404 struct ceph_options *ceph_opts;
59c2be1e
YS
405 struct rbd_options *rbd_opts;
406
407 rbd_opts = kzalloc(sizeof(*rbd_opts), GFP_KERNEL);
408 if (!rbd_opts)
d720bcb0 409 return ERR_PTR(-ENOMEM);
59c2be1e
YS
410
411 rbd_opts->notify_timeout = RBD_NOTIFY_TIMEOUT_DEFAULT;
602adf40 412
43ae4701
AE
413 ceph_opts = ceph_parse_options(options, mon_addr,
414 mon_addr + mon_addr_len,
415 parse_rbd_opts_token, rbd_opts);
416 if (IS_ERR(ceph_opts)) {
d720bcb0 417 kfree(rbd_opts);
43ae4701 418 return ERR_CAST(ceph_opts);
ee57741c 419 }
602adf40 420
432b8587 421 spin_lock(&rbd_client_list_lock);
43ae4701 422 rbdc = __rbd_client_find(ceph_opts);
602adf40 423 if (rbdc) {
602adf40
YS
424 /* using an existing client */
425 kref_get(&rbdc->kref);
432b8587 426 spin_unlock(&rbd_client_list_lock);
e6994d3d 427
43ae4701 428 ceph_destroy_options(ceph_opts);
e6994d3d
AE
429 kfree(rbd_opts);
430
d720bcb0 431 return rbdc;
602adf40 432 }
432b8587 433 spin_unlock(&rbd_client_list_lock);
602adf40 434
43ae4701 435 rbdc = rbd_client_create(ceph_opts, rbd_opts);
d97081b0 436
d720bcb0
AE
437 if (IS_ERR(rbdc))
438 kfree(rbd_opts);
602adf40 439
d720bcb0 440 return rbdc;
602adf40
YS
441}
442
443/*
444 * Destroy ceph client
d23a4b3f 445 *
432b8587 446 * Caller must hold rbd_client_list_lock.
602adf40
YS
447 */
448static void rbd_client_release(struct kref *kref)
449{
450 struct rbd_client *rbdc = container_of(kref, struct rbd_client, kref);
451
452 dout("rbd_release_client %p\n", rbdc);
cd9d9f5d 453 spin_lock(&rbd_client_list_lock);
602adf40 454 list_del(&rbdc->node);
cd9d9f5d 455 spin_unlock(&rbd_client_list_lock);
602adf40
YS
456
457 ceph_destroy_client(rbdc->client);
59c2be1e 458 kfree(rbdc->rbd_opts);
602adf40
YS
459 kfree(rbdc);
460}
461
462/*
463 * Drop reference to ceph client node. If it's not referenced anymore, release
464 * it.
465 */
466static void rbd_put_client(struct rbd_device *rbd_dev)
467{
468 kref_put(&rbd_dev->rbd_client->kref, rbd_client_release);
469 rbd_dev->rbd_client = NULL;
602adf40
YS
470}
471
1fec7093
YS
472/*
473 * Destroy requests collection
474 */
475static void rbd_coll_release(struct kref *kref)
476{
477 struct rbd_req_coll *coll =
478 container_of(kref, struct rbd_req_coll, kref);
479
480 dout("rbd_coll_release %p\n", coll);
481 kfree(coll);
482}
602adf40 483
8e94af8e
AE
484static bool rbd_dev_ondisk_valid(struct rbd_image_header_ondisk *ondisk)
485{
486 return !memcmp(&ondisk->text,
487 RBD_HEADER_TEXT, sizeof (RBD_HEADER_TEXT));
488}
489
602adf40
YS
490/*
491 * Create a new header structure, translate header format from the on-disk
492 * header.
493 */
494static int rbd_header_from_disk(struct rbd_image_header *header,
495 struct rbd_image_header_ondisk *ondisk,
ed63f4fd 496 u32 allocated_snaps)
602adf40 497{
50f7c4c9 498 u32 i, snap_count;
602adf40 499
8e94af8e 500 if (!rbd_dev_ondisk_valid(ondisk))
81e759fb 501 return -ENXIO;
81e759fb 502
00f1f36f 503 snap_count = le32_to_cpu(ondisk->snap_count);
50f7c4c9
XW
504 if (snap_count > (UINT_MAX - sizeof(struct ceph_snap_context))
505 / sizeof (*ondisk))
506 return -EINVAL;
602adf40 507 header->snapc = kmalloc(sizeof(struct ceph_snap_context) +
f9f9a190 508 snap_count * sizeof(u64),
ed63f4fd 509 GFP_KERNEL);
602adf40
YS
510 if (!header->snapc)
511 return -ENOMEM;
00f1f36f 512
00f1f36f 513 header->snap_names_len = le64_to_cpu(ondisk->snap_names_len);
602adf40
YS
514 if (snap_count) {
515 header->snap_names = kmalloc(header->snap_names_len,
ed63f4fd 516 GFP_KERNEL);
602adf40
YS
517 if (!header->snap_names)
518 goto err_snapc;
519 header->snap_sizes = kmalloc(snap_count * sizeof(u64),
ed63f4fd 520 GFP_KERNEL);
602adf40
YS
521 if (!header->snap_sizes)
522 goto err_names;
523 } else {
524 header->snap_names = NULL;
525 header->snap_sizes = NULL;
526 }
849b4260
AE
527
528 header->object_prefix = kmalloc(sizeof (ondisk->block_name) + 1,
ed63f4fd 529 GFP_KERNEL);
849b4260
AE
530 if (!header->object_prefix)
531 goto err_sizes;
532
ca1e49a6 533 memcpy(header->object_prefix, ondisk->block_name,
602adf40 534 sizeof(ondisk->block_name));
849b4260 535 header->object_prefix[sizeof (ondisk->block_name)] = '\0';
602adf40
YS
536
537 header->image_size = le64_to_cpu(ondisk->image_size);
538 header->obj_order = ondisk->options.order;
539 header->crypt_type = ondisk->options.crypt_type;
540 header->comp_type = ondisk->options.comp_type;
541
542 atomic_set(&header->snapc->nref, 1);
505cbb9b 543 header->snapc->seq = le64_to_cpu(ondisk->snap_seq);
602adf40
YS
544 header->snapc->num_snaps = snap_count;
545 header->total_snaps = snap_count;
546
21079786 547 if (snap_count && allocated_snaps == snap_count) {
602adf40
YS
548 for (i = 0; i < snap_count; i++) {
549 header->snapc->snaps[i] =
550 le64_to_cpu(ondisk->snaps[i].id);
551 header->snap_sizes[i] =
552 le64_to_cpu(ondisk->snaps[i].image_size);
553 }
554
555 /* copy snapshot names */
556 memcpy(header->snap_names, &ondisk->snaps[i],
557 header->snap_names_len);
558 }
559
560 return 0;
561
849b4260
AE
562err_sizes:
563 kfree(header->snap_sizes);
602adf40
YS
564err_names:
565 kfree(header->snap_names);
566err_snapc:
567 kfree(header->snapc);
00f1f36f 568 return -ENOMEM;
602adf40
YS
569}
570
602adf40
YS
571static int snap_by_name(struct rbd_image_header *header, const char *snap_name,
572 u64 *seq, u64 *size)
573{
574 int i;
575 char *p = header->snap_names;
576
00f1f36f
AE
577 for (i = 0; i < header->total_snaps; i++) {
578 if (!strcmp(snap_name, p)) {
602adf40 579
00f1f36f 580 /* Found it. Pass back its id and/or size */
602adf40 581
00f1f36f
AE
582 if (seq)
583 *seq = header->snapc->snaps[i];
584 if (size)
585 *size = header->snap_sizes[i];
586 return i;
587 }
588 p += strlen(p) + 1; /* Skip ahead to the next name */
589 }
590 return -ENOENT;
602adf40
YS
591}
592
0ce1a794 593static int rbd_header_set_snap(struct rbd_device *rbd_dev, u64 *size)
602adf40 594{
78dc447d 595 int ret;
602adf40 596
0ce1a794 597 down_write(&rbd_dev->header_rwsem);
602adf40 598
0ce1a794 599 if (!memcmp(rbd_dev->snap_name, RBD_SNAP_HEAD_NAME,
cc9d734c 600 sizeof (RBD_SNAP_HEAD_NAME))) {
0ce1a794 601 rbd_dev->snap_id = CEPH_NOSNAP;
e88a36ec 602 rbd_dev->snap_exists = false;
0ce1a794 603 rbd_dev->read_only = 0;
602adf40 604 if (size)
78dc447d 605 *size = rbd_dev->header.image_size;
602adf40 606 } else {
78dc447d
AE
607 u64 snap_id = 0;
608
609 ret = snap_by_name(&rbd_dev->header, rbd_dev->snap_name,
610 &snap_id, size);
602adf40
YS
611 if (ret < 0)
612 goto done;
78dc447d 613 rbd_dev->snap_id = snap_id;
e88a36ec 614 rbd_dev->snap_exists = true;
0ce1a794 615 rbd_dev->read_only = 1;
602adf40
YS
616 }
617
618 ret = 0;
619done:
0ce1a794 620 up_write(&rbd_dev->header_rwsem);
602adf40
YS
621 return ret;
622}
623
624static void rbd_header_free(struct rbd_image_header *header)
625{
849b4260 626 kfree(header->object_prefix);
602adf40 627 kfree(header->snap_sizes);
849b4260 628 kfree(header->snap_names);
d1d25646 629 ceph_put_snap_context(header->snapc);
602adf40
YS
630}
631
632/*
633 * get the actual striped segment name, offset and length
634 */
635static u64 rbd_get_segment(struct rbd_image_header *header,
ca1e49a6 636 const char *object_prefix,
602adf40
YS
637 u64 ofs, u64 len,
638 char *seg_name, u64 *segofs)
639{
640 u64 seg = ofs >> header->obj_order;
641
642 if (seg_name)
643 snprintf(seg_name, RBD_MAX_SEG_NAME_LEN,
ca1e49a6 644 "%s.%012llx", object_prefix, seg);
602adf40
YS
645
646 ofs = ofs & ((1 << header->obj_order) - 1);
647 len = min_t(u64, len, (1 << header->obj_order) - ofs);
648
649 if (segofs)
650 *segofs = ofs;
651
652 return len;
653}
654
1fec7093
YS
655static int rbd_get_num_segments(struct rbd_image_header *header,
656 u64 ofs, u64 len)
657{
658 u64 start_seg = ofs >> header->obj_order;
659 u64 end_seg = (ofs + len - 1) >> header->obj_order;
660 return end_seg - start_seg + 1;
661}
662
029bcbd8
JD
663/*
664 * returns the size of an object in the image
665 */
666static u64 rbd_obj_bytes(struct rbd_image_header *header)
667{
668 return 1 << header->obj_order;
669}
670
602adf40
YS
671/*
672 * bio helpers
673 */
674
675static void bio_chain_put(struct bio *chain)
676{
677 struct bio *tmp;
678
679 while (chain) {
680 tmp = chain;
681 chain = chain->bi_next;
682 bio_put(tmp);
683 }
684}
685
686/*
687 * zeros a bio chain, starting at specific offset
688 */
689static void zero_bio_chain(struct bio *chain, int start_ofs)
690{
691 struct bio_vec *bv;
692 unsigned long flags;
693 void *buf;
694 int i;
695 int pos = 0;
696
697 while (chain) {
698 bio_for_each_segment(bv, chain, i) {
699 if (pos + bv->bv_len > start_ofs) {
700 int remainder = max(start_ofs - pos, 0);
701 buf = bvec_kmap_irq(bv, &flags);
702 memset(buf + remainder, 0,
703 bv->bv_len - remainder);
85b5aaa6 704 bvec_kunmap_irq(buf, &flags);
602adf40
YS
705 }
706 pos += bv->bv_len;
707 }
708
709 chain = chain->bi_next;
710 }
711}
712
713/*
714 * bio_chain_clone - clone a chain of bios up to a certain length.
715 * might return a bio_pair that will need to be released.
716 */
717static struct bio *bio_chain_clone(struct bio **old, struct bio **next,
718 struct bio_pair **bp,
719 int len, gfp_t gfpmask)
720{
721 struct bio *tmp, *old_chain = *old, *new_chain = NULL, *tail = NULL;
722 int total = 0;
723
724 if (*bp) {
725 bio_pair_release(*bp);
726 *bp = NULL;
727 }
728
729 while (old_chain && (total < len)) {
730 tmp = bio_kmalloc(gfpmask, old_chain->bi_max_vecs);
731 if (!tmp)
732 goto err_out;
733
734 if (total + old_chain->bi_size > len) {
735 struct bio_pair *bp;
736
737 /*
738 * this split can only happen with a single paged bio,
739 * split_bio will BUG_ON if this is not the case
740 */
741 dout("bio_chain_clone split! total=%d remaining=%d"
bd919d45
AE
742 "bi_size=%u\n",
743 total, len - total, old_chain->bi_size);
602adf40
YS
744
745 /* split the bio. We'll release it either in the next
746 call, or it will have to be released outside */
593a9e7b 747 bp = bio_split(old_chain, (len - total) / SECTOR_SIZE);
602adf40
YS
748 if (!bp)
749 goto err_out;
750
751 __bio_clone(tmp, &bp->bio1);
752
753 *next = &bp->bio2;
754 } else {
755 __bio_clone(tmp, old_chain);
756 *next = old_chain->bi_next;
757 }
758
759 tmp->bi_bdev = NULL;
760 gfpmask &= ~__GFP_WAIT;
761 tmp->bi_next = NULL;
762
763 if (!new_chain) {
764 new_chain = tail = tmp;
765 } else {
766 tail->bi_next = tmp;
767 tail = tmp;
768 }
769 old_chain = old_chain->bi_next;
770
771 total += tmp->bi_size;
772 }
773
774 BUG_ON(total < len);
775
776 if (tail)
777 tail->bi_next = NULL;
778
779 *old = old_chain;
780
781 return new_chain;
782
783err_out:
784 dout("bio_chain_clone with err\n");
785 bio_chain_put(new_chain);
786 return NULL;
787}
788
789/*
790 * helpers for osd request op vectors.
791 */
792static int rbd_create_rw_ops(struct ceph_osd_req_op **ops,
793 int num_ops,
794 int opcode,
795 u32 payload_len)
796{
797 *ops = kzalloc(sizeof(struct ceph_osd_req_op) * (num_ops + 1),
798 GFP_NOIO);
799 if (!*ops)
800 return -ENOMEM;
801 (*ops)[0].op = opcode;
802 /*
803 * op extent offset and length will be set later on
804 * in calc_raw_layout()
805 */
806 (*ops)[0].payload_len = payload_len;
807 return 0;
808}
809
810static void rbd_destroy_ops(struct ceph_osd_req_op *ops)
811{
812 kfree(ops);
813}
814
1fec7093
YS
815static void rbd_coll_end_req_index(struct request *rq,
816 struct rbd_req_coll *coll,
817 int index,
818 int ret, u64 len)
819{
820 struct request_queue *q;
821 int min, max, i;
822
bd919d45
AE
823 dout("rbd_coll_end_req_index %p index %d ret %d len %llu\n",
824 coll, index, ret, (unsigned long long) len);
1fec7093
YS
825
826 if (!rq)
827 return;
828
829 if (!coll) {
830 blk_end_request(rq, ret, len);
831 return;
832 }
833
834 q = rq->q;
835
836 spin_lock_irq(q->queue_lock);
837 coll->status[index].done = 1;
838 coll->status[index].rc = ret;
839 coll->status[index].bytes = len;
840 max = min = coll->num_done;
841 while (max < coll->total && coll->status[max].done)
842 max++;
843
844 for (i = min; i<max; i++) {
845 __blk_end_request(rq, coll->status[i].rc,
846 coll->status[i].bytes);
847 coll->num_done++;
848 kref_put(&coll->kref, rbd_coll_release);
849 }
850 spin_unlock_irq(q->queue_lock);
851}
852
853static void rbd_coll_end_req(struct rbd_request *req,
854 int ret, u64 len)
855{
856 rbd_coll_end_req_index(req->rq, req->coll, req->coll_index, ret, len);
857}
858
602adf40
YS
859/*
860 * Send ceph osd request
861 */
862static int rbd_do_request(struct request *rq,
0ce1a794 863 struct rbd_device *rbd_dev,
602adf40
YS
864 struct ceph_snap_context *snapc,
865 u64 snapid,
aded07ea 866 const char *object_name, u64 ofs, u64 len,
602adf40
YS
867 struct bio *bio,
868 struct page **pages,
869 int num_pages,
870 int flags,
871 struct ceph_osd_req_op *ops,
1fec7093
YS
872 struct rbd_req_coll *coll,
873 int coll_index,
602adf40 874 void (*rbd_cb)(struct ceph_osd_request *req,
59c2be1e
YS
875 struct ceph_msg *msg),
876 struct ceph_osd_request **linger_req,
877 u64 *ver)
602adf40
YS
878{
879 struct ceph_osd_request *req;
880 struct ceph_file_layout *layout;
881 int ret;
882 u64 bno;
883 struct timespec mtime = CURRENT_TIME;
884 struct rbd_request *req_data;
885 struct ceph_osd_request_head *reqhead;
1dbb4399 886 struct ceph_osd_client *osdc;
602adf40 887
602adf40 888 req_data = kzalloc(sizeof(*req_data), GFP_NOIO);
1fec7093
YS
889 if (!req_data) {
890 if (coll)
891 rbd_coll_end_req_index(rq, coll, coll_index,
892 -ENOMEM, len);
893 return -ENOMEM;
894 }
895
896 if (coll) {
897 req_data->coll = coll;
898 req_data->coll_index = coll_index;
899 }
602adf40 900
bd919d45
AE
901 dout("rbd_do_request object_name=%s ofs=%llu len=%llu\n", object_name,
902 (unsigned long long) ofs, (unsigned long long) len);
602adf40 903
0ce1a794 904 osdc = &rbd_dev->rbd_client->client->osdc;
1dbb4399
AE
905 req = ceph_osdc_alloc_request(osdc, flags, snapc, ops,
906 false, GFP_NOIO, pages, bio);
4ad12621 907 if (!req) {
4ad12621 908 ret = -ENOMEM;
602adf40
YS
909 goto done_pages;
910 }
911
912 req->r_callback = rbd_cb;
913
914 req_data->rq = rq;
915 req_data->bio = bio;
916 req_data->pages = pages;
917 req_data->len = len;
918
919 req->r_priv = req_data;
920
921 reqhead = req->r_request->front.iov_base;
922 reqhead->snapid = cpu_to_le64(CEPH_NOSNAP);
923
aded07ea 924 strncpy(req->r_oid, object_name, sizeof(req->r_oid));
602adf40
YS
925 req->r_oid_len = strlen(req->r_oid);
926
927 layout = &req->r_file_layout;
928 memset(layout, 0, sizeof(*layout));
929 layout->fl_stripe_unit = cpu_to_le32(1 << RBD_MAX_OBJ_ORDER);
930 layout->fl_stripe_count = cpu_to_le32(1);
931 layout->fl_object_size = cpu_to_le32(1 << RBD_MAX_OBJ_ORDER);
0ce1a794 932 layout->fl_pg_pool = cpu_to_le32(rbd_dev->pool_id);
1dbb4399
AE
933 ceph_calc_raw_layout(osdc, layout, snapid, ofs, &len, &bno,
934 req, ops);
602adf40
YS
935
936 ceph_osdc_build_request(req, ofs, &len,
937 ops,
938 snapc,
939 &mtime,
940 req->r_oid, req->r_oid_len);
602adf40 941
59c2be1e 942 if (linger_req) {
1dbb4399 943 ceph_osdc_set_request_linger(osdc, req);
59c2be1e
YS
944 *linger_req = req;
945 }
946
1dbb4399 947 ret = ceph_osdc_start_request(osdc, req, false);
602adf40
YS
948 if (ret < 0)
949 goto done_err;
950
951 if (!rbd_cb) {
1dbb4399 952 ret = ceph_osdc_wait_request(osdc, req);
59c2be1e
YS
953 if (ver)
954 *ver = le64_to_cpu(req->r_reassert_version.version);
bd919d45
AE
955 dout("reassert_ver=%llu\n",
956 (unsigned long long)
957 le64_to_cpu(req->r_reassert_version.version));
602adf40
YS
958 ceph_osdc_put_request(req);
959 }
960 return ret;
961
962done_err:
963 bio_chain_put(req_data->bio);
964 ceph_osdc_put_request(req);
965done_pages:
1fec7093 966 rbd_coll_end_req(req_data, ret, len);
602adf40 967 kfree(req_data);
602adf40
YS
968 return ret;
969}
970
971/*
972 * Ceph osd op callback
973 */
974static void rbd_req_cb(struct ceph_osd_request *req, struct ceph_msg *msg)
975{
976 struct rbd_request *req_data = req->r_priv;
977 struct ceph_osd_reply_head *replyhead;
978 struct ceph_osd_op *op;
979 __s32 rc;
980 u64 bytes;
981 int read_op;
982
983 /* parse reply */
984 replyhead = msg->front.iov_base;
985 WARN_ON(le32_to_cpu(replyhead->num_ops) == 0);
986 op = (void *)(replyhead + 1);
987 rc = le32_to_cpu(replyhead->result);
988 bytes = le64_to_cpu(op->extent.length);
895cfcc8 989 read_op = (le16_to_cpu(op->op) == CEPH_OSD_OP_READ);
602adf40 990
bd919d45
AE
991 dout("rbd_req_cb bytes=%llu readop=%d rc=%d\n",
992 (unsigned long long) bytes, read_op, (int) rc);
602adf40
YS
993
994 if (rc == -ENOENT && read_op) {
995 zero_bio_chain(req_data->bio, 0);
996 rc = 0;
997 } else if (rc == 0 && read_op && bytes < req_data->len) {
998 zero_bio_chain(req_data->bio, bytes);
999 bytes = req_data->len;
1000 }
1001
1fec7093 1002 rbd_coll_end_req(req_data, rc, bytes);
602adf40
YS
1003
1004 if (req_data->bio)
1005 bio_chain_put(req_data->bio);
1006
1007 ceph_osdc_put_request(req);
1008 kfree(req_data);
1009}
1010
59c2be1e
YS
1011static void rbd_simple_req_cb(struct ceph_osd_request *req, struct ceph_msg *msg)
1012{
1013 ceph_osdc_put_request(req);
1014}
1015
602adf40
YS
1016/*
1017 * Do a synchronous ceph osd operation
1018 */
0ce1a794 1019static int rbd_req_sync_op(struct rbd_device *rbd_dev,
602adf40
YS
1020 struct ceph_snap_context *snapc,
1021 u64 snapid,
1022 int opcode,
1023 int flags,
1024 struct ceph_osd_req_op *orig_ops,
aded07ea 1025 const char *object_name,
602adf40 1026 u64 ofs, u64 len,
59c2be1e
YS
1027 char *buf,
1028 struct ceph_osd_request **linger_req,
1029 u64 *ver)
602adf40
YS
1030{
1031 int ret;
1032 struct page **pages;
1033 int num_pages;
1034 struct ceph_osd_req_op *ops = orig_ops;
1035 u32 payload_len;
1036
1037 num_pages = calc_pages_for(ofs , len);
1038 pages = ceph_alloc_page_vector(num_pages, GFP_KERNEL);
b8d0638a
DC
1039 if (IS_ERR(pages))
1040 return PTR_ERR(pages);
602adf40
YS
1041
1042 if (!orig_ops) {
1043 payload_len = (flags & CEPH_OSD_FLAG_WRITE ? len : 0);
1044 ret = rbd_create_rw_ops(&ops, 1, opcode, payload_len);
1045 if (ret < 0)
1046 goto done;
1047
1048 if ((flags & CEPH_OSD_FLAG_WRITE) && buf) {
1049 ret = ceph_copy_to_page_vector(pages, buf, ofs, len);
1050 if (ret < 0)
1051 goto done_ops;
1052 }
1053 }
1054
0ce1a794 1055 ret = rbd_do_request(NULL, rbd_dev, snapc, snapid,
aded07ea 1056 object_name, ofs, len, NULL,
602adf40
YS
1057 pages, num_pages,
1058 flags,
1059 ops,
1fec7093 1060 NULL, 0,
59c2be1e
YS
1061 NULL,
1062 linger_req, ver);
602adf40
YS
1063 if (ret < 0)
1064 goto done_ops;
1065
1066 if ((flags & CEPH_OSD_FLAG_READ) && buf)
1067 ret = ceph_copy_from_page_vector(pages, buf, ofs, ret);
1068
1069done_ops:
1070 if (!orig_ops)
1071 rbd_destroy_ops(ops);
1072done:
1073 ceph_release_page_vector(pages, num_pages);
1074 return ret;
1075}
1076
1077/*
1078 * Do an asynchronous ceph osd operation
1079 */
1080static int rbd_do_op(struct request *rq,
0ce1a794 1081 struct rbd_device *rbd_dev,
602adf40
YS
1082 struct ceph_snap_context *snapc,
1083 u64 snapid,
d1f57ea6 1084 int opcode, int flags,
602adf40 1085 u64 ofs, u64 len,
1fec7093
YS
1086 struct bio *bio,
1087 struct rbd_req_coll *coll,
1088 int coll_index)
602adf40
YS
1089{
1090 char *seg_name;
1091 u64 seg_ofs;
1092 u64 seg_len;
1093 int ret;
1094 struct ceph_osd_req_op *ops;
1095 u32 payload_len;
1096
1097 seg_name = kmalloc(RBD_MAX_SEG_NAME_LEN + 1, GFP_NOIO);
1098 if (!seg_name)
1099 return -ENOMEM;
1100
1101 seg_len = rbd_get_segment(&rbd_dev->header,
ca1e49a6 1102 rbd_dev->header.object_prefix,
602adf40
YS
1103 ofs, len,
1104 seg_name, &seg_ofs);
602adf40
YS
1105
1106 payload_len = (flags & CEPH_OSD_FLAG_WRITE ? seg_len : 0);
1107
1108 ret = rbd_create_rw_ops(&ops, 1, opcode, payload_len);
1109 if (ret < 0)
1110 goto done;
1111
1112 /* we've taken care of segment sizes earlier when we
1113 cloned the bios. We should never have a segment
1114 truncated at this point */
1115 BUG_ON(seg_len < len);
1116
1117 ret = rbd_do_request(rq, rbd_dev, snapc, snapid,
1118 seg_name, seg_ofs, seg_len,
1119 bio,
1120 NULL, 0,
1121 flags,
1122 ops,
1fec7093 1123 coll, coll_index,
59c2be1e 1124 rbd_req_cb, 0, NULL);
11f77002
SW
1125
1126 rbd_destroy_ops(ops);
602adf40
YS
1127done:
1128 kfree(seg_name);
1129 return ret;
1130}
1131
1132/*
1133 * Request async osd write
1134 */
1135static int rbd_req_write(struct request *rq,
1136 struct rbd_device *rbd_dev,
1137 struct ceph_snap_context *snapc,
1138 u64 ofs, u64 len,
1fec7093
YS
1139 struct bio *bio,
1140 struct rbd_req_coll *coll,
1141 int coll_index)
602adf40
YS
1142{
1143 return rbd_do_op(rq, rbd_dev, snapc, CEPH_NOSNAP,
1144 CEPH_OSD_OP_WRITE,
1145 CEPH_OSD_FLAG_WRITE | CEPH_OSD_FLAG_ONDISK,
1fec7093 1146 ofs, len, bio, coll, coll_index);
602adf40
YS
1147}
1148
1149/*
1150 * Request async osd read
1151 */
1152static int rbd_req_read(struct request *rq,
1153 struct rbd_device *rbd_dev,
1154 u64 snapid,
1155 u64 ofs, u64 len,
1fec7093
YS
1156 struct bio *bio,
1157 struct rbd_req_coll *coll,
1158 int coll_index)
602adf40
YS
1159{
1160 return rbd_do_op(rq, rbd_dev, NULL,
b06e6a6b 1161 snapid,
602adf40
YS
1162 CEPH_OSD_OP_READ,
1163 CEPH_OSD_FLAG_READ,
1fec7093 1164 ofs, len, bio, coll, coll_index);
602adf40
YS
1165}
1166
1167/*
1168 * Request sync osd read
1169 */
0ce1a794 1170static int rbd_req_sync_read(struct rbd_device *rbd_dev,
602adf40 1171 u64 snapid,
aded07ea 1172 const char *object_name,
602adf40 1173 u64 ofs, u64 len,
59c2be1e
YS
1174 char *buf,
1175 u64 *ver)
602adf40 1176{
0ce1a794 1177 return rbd_req_sync_op(rbd_dev, NULL,
b06e6a6b 1178 snapid,
602adf40
YS
1179 CEPH_OSD_OP_READ,
1180 CEPH_OSD_FLAG_READ,
1181 NULL,
d1f57ea6 1182 object_name, ofs, len, buf, NULL, ver);
602adf40
YS
1183}
1184
1185/*
59c2be1e
YS
1186 * Request sync osd watch
1187 */
0ce1a794 1188static int rbd_req_sync_notify_ack(struct rbd_device *rbd_dev,
59c2be1e
YS
1189 u64 ver,
1190 u64 notify_id,
aded07ea 1191 const char *object_name)
59c2be1e
YS
1192{
1193 struct ceph_osd_req_op *ops;
11f77002
SW
1194 int ret;
1195
1196 ret = rbd_create_rw_ops(&ops, 1, CEPH_OSD_OP_NOTIFY_ACK, 0);
59c2be1e
YS
1197 if (ret < 0)
1198 return ret;
1199
a71b891b 1200 ops[0].watch.ver = cpu_to_le64(ver);
59c2be1e
YS
1201 ops[0].watch.cookie = notify_id;
1202 ops[0].watch.flag = 0;
1203
0ce1a794 1204 ret = rbd_do_request(NULL, rbd_dev, NULL, CEPH_NOSNAP,
aded07ea 1205 object_name, 0, 0, NULL,
ad4f232f 1206 NULL, 0,
59c2be1e
YS
1207 CEPH_OSD_FLAG_READ,
1208 ops,
1fec7093 1209 NULL, 0,
59c2be1e
YS
1210 rbd_simple_req_cb, 0, NULL);
1211
1212 rbd_destroy_ops(ops);
1213 return ret;
1214}
1215
1216static void rbd_watch_cb(u64 ver, u64 notify_id, u8 opcode, void *data)
1217{
0ce1a794 1218 struct rbd_device *rbd_dev = (struct rbd_device *)data;
a71b891b 1219 u64 hver;
13143d2d
SW
1220 int rc;
1221
0ce1a794 1222 if (!rbd_dev)
59c2be1e
YS
1223 return;
1224
bd919d45
AE
1225 dout("rbd_watch_cb %s notify_id=%llu opcode=%u\n",
1226 rbd_dev->header_name, (unsigned long long) notify_id,
1227 (unsigned int) opcode);
59c2be1e 1228 mutex_lock_nested(&ctl_mutex, SINGLE_DEPTH_NESTING);
0ce1a794 1229 rc = __rbd_refresh_header(rbd_dev);
a71b891b 1230 hver = rbd_dev->header.obj_version;
59c2be1e 1231 mutex_unlock(&ctl_mutex);
13143d2d 1232 if (rc)
f0f8cef5 1233 pr_warning(RBD_DRV_NAME "%d got notification but failed to "
0ce1a794 1234 " update snaps: %d\n", rbd_dev->major, rc);
59c2be1e 1235
a71b891b 1236 rbd_req_sync_notify_ack(rbd_dev, hver, notify_id, rbd_dev->header_name);
59c2be1e
YS
1237}
1238
1239/*
1240 * Request sync osd watch
1241 */
0ce1a794 1242static int rbd_req_sync_watch(struct rbd_device *rbd_dev,
aded07ea 1243 const char *object_name,
59c2be1e
YS
1244 u64 ver)
1245{
1246 struct ceph_osd_req_op *ops;
0ce1a794 1247 struct ceph_osd_client *osdc = &rbd_dev->rbd_client->client->osdc;
59c2be1e
YS
1248
1249 int ret = rbd_create_rw_ops(&ops, 1, CEPH_OSD_OP_WATCH, 0);
1250 if (ret < 0)
1251 return ret;
1252
1253 ret = ceph_osdc_create_event(osdc, rbd_watch_cb, 0,
0ce1a794 1254 (void *)rbd_dev, &rbd_dev->watch_event);
59c2be1e
YS
1255 if (ret < 0)
1256 goto fail;
1257
1258 ops[0].watch.ver = cpu_to_le64(ver);
0ce1a794 1259 ops[0].watch.cookie = cpu_to_le64(rbd_dev->watch_event->cookie);
59c2be1e
YS
1260 ops[0].watch.flag = 1;
1261
0ce1a794 1262 ret = rbd_req_sync_op(rbd_dev, NULL,
59c2be1e
YS
1263 CEPH_NOSNAP,
1264 0,
1265 CEPH_OSD_FLAG_WRITE | CEPH_OSD_FLAG_ONDISK,
1266 ops,
d1f57ea6 1267 object_name, 0, 0, NULL,
0ce1a794 1268 &rbd_dev->watch_request, NULL);
59c2be1e
YS
1269
1270 if (ret < 0)
1271 goto fail_event;
1272
1273 rbd_destroy_ops(ops);
1274 return 0;
1275
1276fail_event:
0ce1a794
AE
1277 ceph_osdc_cancel_event(rbd_dev->watch_event);
1278 rbd_dev->watch_event = NULL;
59c2be1e
YS
1279fail:
1280 rbd_destroy_ops(ops);
1281 return ret;
1282}
1283
79e3057c
YS
1284/*
1285 * Request sync osd unwatch
1286 */
0ce1a794 1287static int rbd_req_sync_unwatch(struct rbd_device *rbd_dev,
aded07ea 1288 const char *object_name)
79e3057c
YS
1289{
1290 struct ceph_osd_req_op *ops;
1291
1292 int ret = rbd_create_rw_ops(&ops, 1, CEPH_OSD_OP_WATCH, 0);
1293 if (ret < 0)
1294 return ret;
1295
1296 ops[0].watch.ver = 0;
0ce1a794 1297 ops[0].watch.cookie = cpu_to_le64(rbd_dev->watch_event->cookie);
79e3057c
YS
1298 ops[0].watch.flag = 0;
1299
0ce1a794 1300 ret = rbd_req_sync_op(rbd_dev, NULL,
79e3057c
YS
1301 CEPH_NOSNAP,
1302 0,
1303 CEPH_OSD_FLAG_WRITE | CEPH_OSD_FLAG_ONDISK,
1304 ops,
d1f57ea6 1305 object_name, 0, 0, NULL, NULL, NULL);
79e3057c
YS
1306
1307 rbd_destroy_ops(ops);
0ce1a794
AE
1308 ceph_osdc_cancel_event(rbd_dev->watch_event);
1309 rbd_dev->watch_event = NULL;
79e3057c
YS
1310 return ret;
1311}
1312
59c2be1e 1313struct rbd_notify_info {
0ce1a794 1314 struct rbd_device *rbd_dev;
59c2be1e
YS
1315};
1316
1317static void rbd_notify_cb(u64 ver, u64 notify_id, u8 opcode, void *data)
1318{
0ce1a794
AE
1319 struct rbd_device *rbd_dev = (struct rbd_device *)data;
1320 if (!rbd_dev)
59c2be1e
YS
1321 return;
1322
bd919d45
AE
1323 dout("rbd_notify_cb %s notify_id=%llu opcode=%u\n",
1324 rbd_dev->header_name, (unsigned long long) notify_id,
1325 (unsigned int) opcode);
59c2be1e
YS
1326}
1327
1328/*
1329 * Request sync osd notify
1330 */
0ce1a794 1331static int rbd_req_sync_notify(struct rbd_device *rbd_dev,
aded07ea 1332 const char *object_name)
59c2be1e
YS
1333{
1334 struct ceph_osd_req_op *ops;
0ce1a794 1335 struct ceph_osd_client *osdc = &rbd_dev->rbd_client->client->osdc;
59c2be1e
YS
1336 struct ceph_osd_event *event;
1337 struct rbd_notify_info info;
1338 int payload_len = sizeof(u32) + sizeof(u32);
1339 int ret;
1340
1341 ret = rbd_create_rw_ops(&ops, 1, CEPH_OSD_OP_NOTIFY, payload_len);
1342 if (ret < 0)
1343 return ret;
1344
0ce1a794 1345 info.rbd_dev = rbd_dev;
59c2be1e
YS
1346
1347 ret = ceph_osdc_create_event(osdc, rbd_notify_cb, 1,
1348 (void *)&info, &event);
1349 if (ret < 0)
1350 goto fail;
1351
1352 ops[0].watch.ver = 1;
1353 ops[0].watch.flag = 1;
1354 ops[0].watch.cookie = event->cookie;
1355 ops[0].watch.prot_ver = RADOS_NOTIFY_VER;
1356 ops[0].watch.timeout = 12;
1357
0ce1a794 1358 ret = rbd_req_sync_op(rbd_dev, NULL,
59c2be1e
YS
1359 CEPH_NOSNAP,
1360 0,
1361 CEPH_OSD_FLAG_WRITE | CEPH_OSD_FLAG_ONDISK,
1362 ops,
d1f57ea6 1363 object_name, 0, 0, NULL, NULL, NULL);
59c2be1e
YS
1364 if (ret < 0)
1365 goto fail_event;
1366
1367 ret = ceph_osdc_wait_event(event, CEPH_OSD_TIMEOUT_DEFAULT);
1368 dout("ceph_osdc_wait_event returned %d\n", ret);
1369 rbd_destroy_ops(ops);
1370 return 0;
1371
1372fail_event:
1373 ceph_osdc_cancel_event(event);
1374fail:
1375 rbd_destroy_ops(ops);
1376 return ret;
1377}
1378
602adf40
YS
1379/*
1380 * Request sync osd read
1381 */
0ce1a794 1382static int rbd_req_sync_exec(struct rbd_device *rbd_dev,
aded07ea
AE
1383 const char *object_name,
1384 const char *class_name,
1385 const char *method_name,
602adf40 1386 const char *data,
59c2be1e
YS
1387 int len,
1388 u64 *ver)
602adf40
YS
1389{
1390 struct ceph_osd_req_op *ops;
aded07ea
AE
1391 int class_name_len = strlen(class_name);
1392 int method_name_len = strlen(method_name);
602adf40 1393 int ret = rbd_create_rw_ops(&ops, 1, CEPH_OSD_OP_CALL,
aded07ea 1394 class_name_len + method_name_len + len);
602adf40
YS
1395 if (ret < 0)
1396 return ret;
1397
aded07ea
AE
1398 ops[0].cls.class_name = class_name;
1399 ops[0].cls.class_len = (__u8) class_name_len;
1400 ops[0].cls.method_name = method_name;
1401 ops[0].cls.method_len = (__u8) method_name_len;
602adf40
YS
1402 ops[0].cls.argc = 0;
1403 ops[0].cls.indata = data;
1404 ops[0].cls.indata_len = len;
1405
0ce1a794 1406 ret = rbd_req_sync_op(rbd_dev, NULL,
602adf40
YS
1407 CEPH_NOSNAP,
1408 0,
1409 CEPH_OSD_FLAG_WRITE | CEPH_OSD_FLAG_ONDISK,
1410 ops,
d1f57ea6 1411 object_name, 0, 0, NULL, NULL, ver);
602adf40
YS
1412
1413 rbd_destroy_ops(ops);
1414
1415 dout("cls_exec returned %d\n", ret);
1416 return ret;
1417}
1418
1fec7093
YS
1419static struct rbd_req_coll *rbd_alloc_coll(int num_reqs)
1420{
1421 struct rbd_req_coll *coll =
1422 kzalloc(sizeof(struct rbd_req_coll) +
1423 sizeof(struct rbd_req_status) * num_reqs,
1424 GFP_ATOMIC);
1425
1426 if (!coll)
1427 return NULL;
1428 coll->total = num_reqs;
1429 kref_init(&coll->kref);
1430 return coll;
1431}
1432
602adf40
YS
1433/*
1434 * block device queue callback
1435 */
1436static void rbd_rq_fn(struct request_queue *q)
1437{
1438 struct rbd_device *rbd_dev = q->queuedata;
1439 struct request *rq;
1440 struct bio_pair *bp = NULL;
1441
00f1f36f 1442 while ((rq = blk_fetch_request(q))) {
602adf40
YS
1443 struct bio *bio;
1444 struct bio *rq_bio, *next_bio = NULL;
1445 bool do_write;
bd919d45
AE
1446 unsigned int size;
1447 u64 op_size = 0;
602adf40 1448 u64 ofs;
1fec7093
YS
1449 int num_segs, cur_seg = 0;
1450 struct rbd_req_coll *coll;
d1d25646 1451 struct ceph_snap_context *snapc;
602adf40
YS
1452
1453 /* peek at request from block layer */
1454 if (!rq)
1455 break;
1456
1457 dout("fetched request\n");
1458
1459 /* filter out block requests we don't understand */
1460 if ((rq->cmd_type != REQ_TYPE_FS)) {
1461 __blk_end_request_all(rq, 0);
00f1f36f 1462 continue;
602adf40
YS
1463 }
1464
1465 /* deduce our operation (read, write) */
1466 do_write = (rq_data_dir(rq) == WRITE);
1467
1468 size = blk_rq_bytes(rq);
593a9e7b 1469 ofs = blk_rq_pos(rq) * SECTOR_SIZE;
602adf40
YS
1470 rq_bio = rq->bio;
1471 if (do_write && rbd_dev->read_only) {
1472 __blk_end_request_all(rq, -EROFS);
00f1f36f 1473 continue;
602adf40
YS
1474 }
1475
1476 spin_unlock_irq(q->queue_lock);
1477
d1d25646 1478 down_read(&rbd_dev->header_rwsem);
e88a36ec 1479
d1d25646 1480 if (rbd_dev->snap_id != CEPH_NOSNAP && !rbd_dev->snap_exists) {
e88a36ec 1481 up_read(&rbd_dev->header_rwsem);
d1d25646
JD
1482 dout("request for non-existent snapshot");
1483 spin_lock_irq(q->queue_lock);
1484 __blk_end_request_all(rq, -ENXIO);
1485 continue;
e88a36ec
JD
1486 }
1487
d1d25646
JD
1488 snapc = ceph_get_snap_context(rbd_dev->header.snapc);
1489
1490 up_read(&rbd_dev->header_rwsem);
1491
602adf40
YS
1492 dout("%s 0x%x bytes at 0x%llx\n",
1493 do_write ? "write" : "read",
bd919d45 1494 size, (unsigned long long) blk_rq_pos(rq) * SECTOR_SIZE);
602adf40 1495
1fec7093
YS
1496 num_segs = rbd_get_num_segments(&rbd_dev->header, ofs, size);
1497 coll = rbd_alloc_coll(num_segs);
1498 if (!coll) {
1499 spin_lock_irq(q->queue_lock);
1500 __blk_end_request_all(rq, -ENOMEM);
d1d25646 1501 ceph_put_snap_context(snapc);
00f1f36f 1502 continue;
1fec7093
YS
1503 }
1504
602adf40
YS
1505 do {
1506 /* a bio clone to be passed down to OSD req */
bd919d45 1507 dout("rq->bio->bi_vcnt=%hu\n", rq->bio->bi_vcnt);
602adf40 1508 op_size = rbd_get_segment(&rbd_dev->header,
ca1e49a6 1509 rbd_dev->header.object_prefix,
602adf40
YS
1510 ofs, size,
1511 NULL, NULL);
1fec7093 1512 kref_get(&coll->kref);
602adf40
YS
1513 bio = bio_chain_clone(&rq_bio, &next_bio, &bp,
1514 op_size, GFP_ATOMIC);
1515 if (!bio) {
1fec7093
YS
1516 rbd_coll_end_req_index(rq, coll, cur_seg,
1517 -ENOMEM, op_size);
1518 goto next_seg;
602adf40
YS
1519 }
1520
1fec7093 1521
602adf40
YS
1522 /* init OSD command: write or read */
1523 if (do_write)
1524 rbd_req_write(rq, rbd_dev,
d1d25646 1525 snapc,
602adf40 1526 ofs,
1fec7093
YS
1527 op_size, bio,
1528 coll, cur_seg);
602adf40
YS
1529 else
1530 rbd_req_read(rq, rbd_dev,
77dfe99f 1531 rbd_dev->snap_id,
602adf40 1532 ofs,
1fec7093
YS
1533 op_size, bio,
1534 coll, cur_seg);
602adf40 1535
1fec7093 1536next_seg:
602adf40
YS
1537 size -= op_size;
1538 ofs += op_size;
1539
1fec7093 1540 cur_seg++;
602adf40
YS
1541 rq_bio = next_bio;
1542 } while (size > 0);
1fec7093 1543 kref_put(&coll->kref, rbd_coll_release);
602adf40
YS
1544
1545 if (bp)
1546 bio_pair_release(bp);
602adf40 1547 spin_lock_irq(q->queue_lock);
d1d25646
JD
1548
1549 ceph_put_snap_context(snapc);
602adf40
YS
1550 }
1551}
1552
1553/*
1554 * a queue callback. Makes sure that we don't create a bio that spans across
1555 * multiple osd objects. One exception would be with a single page bios,
1556 * which we handle later at bio_chain_clone
1557 */
1558static int rbd_merge_bvec(struct request_queue *q, struct bvec_merge_data *bmd,
1559 struct bio_vec *bvec)
1560{
1561 struct rbd_device *rbd_dev = q->queuedata;
593a9e7b
AE
1562 unsigned int chunk_sectors;
1563 sector_t sector;
1564 unsigned int bio_sectors;
602adf40
YS
1565 int max;
1566
593a9e7b
AE
1567 chunk_sectors = 1 << (rbd_dev->header.obj_order - SECTOR_SHIFT);
1568 sector = bmd->bi_sector + get_start_sect(bmd->bi_bdev);
1569 bio_sectors = bmd->bi_size >> SECTOR_SHIFT;
1570
602adf40 1571 max = (chunk_sectors - ((sector & (chunk_sectors - 1))
593a9e7b 1572 + bio_sectors)) << SECTOR_SHIFT;
602adf40
YS
1573 if (max < 0)
1574 max = 0; /* bio_add cannot handle a negative return */
1575 if (max <= bvec->bv_len && bio_sectors == 0)
1576 return bvec->bv_len;
1577 return max;
1578}
1579
1580static void rbd_free_disk(struct rbd_device *rbd_dev)
1581{
1582 struct gendisk *disk = rbd_dev->disk;
1583
1584 if (!disk)
1585 return;
1586
1587 rbd_header_free(&rbd_dev->header);
1588
1589 if (disk->flags & GENHD_FL_UP)
1590 del_gendisk(disk);
1591 if (disk->queue)
1592 blk_cleanup_queue(disk->queue);
1593 put_disk(disk);
1594}
1595
1596/*
1597 * reload the ondisk the header
1598 */
1599static int rbd_read_header(struct rbd_device *rbd_dev,
1600 struct rbd_image_header *header)
1601{
1602 ssize_t rc;
1603 struct rbd_image_header_ondisk *dh;
50f7c4c9 1604 u32 snap_count = 0;
59c2be1e 1605 u64 ver;
00f1f36f 1606 size_t len;
602adf40 1607
00f1f36f
AE
1608 /*
1609 * First reads the fixed-size header to determine the number
1610 * of snapshots, then re-reads it, along with all snapshot
1611 * records as well as their stored names.
1612 */
1613 len = sizeof (*dh);
602adf40 1614 while (1) {
602adf40
YS
1615 dh = kmalloc(len, GFP_KERNEL);
1616 if (!dh)
1617 return -ENOMEM;
1618
1619 rc = rbd_req_sync_read(rbd_dev,
9a5d690b 1620 CEPH_NOSNAP,
0bed54dc 1621 rbd_dev->header_name,
602adf40 1622 0, len,
59c2be1e 1623 (char *)dh, &ver);
602adf40
YS
1624 if (rc < 0)
1625 goto out_dh;
1626
ed63f4fd 1627 rc = rbd_header_from_disk(header, dh, snap_count);
81e759fb 1628 if (rc < 0) {
00f1f36f 1629 if (rc == -ENXIO)
81e759fb 1630 pr_warning("unrecognized header format"
0bed54dc
AE
1631 " for image %s\n",
1632 rbd_dev->image_name);
602adf40 1633 goto out_dh;
81e759fb 1634 }
602adf40 1635
00f1f36f
AE
1636 if (snap_count == header->total_snaps)
1637 break;
1638
1639 snap_count = header->total_snaps;
1640 len = sizeof (*dh) +
1641 snap_count * sizeof(struct rbd_image_snap_ondisk) +
1642 header->snap_names_len;
1643
1644 rbd_header_free(header);
1645 kfree(dh);
602adf40 1646 }
59c2be1e 1647 header->obj_version = ver;
602adf40
YS
1648
1649out_dh:
1650 kfree(dh);
1651 return rc;
1652}
1653
1654/*
1655 * create a snapshot
1656 */
0ce1a794 1657static int rbd_header_add_snap(struct rbd_device *rbd_dev,
602adf40
YS
1658 const char *snap_name,
1659 gfp_t gfp_flags)
1660{
1661 int name_len = strlen(snap_name);
1662 u64 new_snapid;
1663 int ret;
916d4d67 1664 void *data, *p, *e;
59c2be1e 1665 u64 ver;
1dbb4399 1666 struct ceph_mon_client *monc;
602adf40
YS
1667
1668 /* we should create a snapshot only if we're pointing at the head */
0ce1a794 1669 if (rbd_dev->snap_id != CEPH_NOSNAP)
602adf40
YS
1670 return -EINVAL;
1671
0ce1a794
AE
1672 monc = &rbd_dev->rbd_client->client->monc;
1673 ret = ceph_monc_create_snapid(monc, rbd_dev->pool_id, &new_snapid);
bd919d45 1674 dout("created snapid=%llu\n", (unsigned long long) new_snapid);
602adf40
YS
1675 if (ret < 0)
1676 return ret;
1677
1678 data = kmalloc(name_len + 16, gfp_flags);
1679 if (!data)
1680 return -ENOMEM;
1681
916d4d67
SW
1682 p = data;
1683 e = data + name_len + 16;
602adf40 1684
916d4d67
SW
1685 ceph_encode_string_safe(&p, e, snap_name, name_len, bad);
1686 ceph_encode_64_safe(&p, e, new_snapid, bad);
602adf40 1687
0bed54dc 1688 ret = rbd_req_sync_exec(rbd_dev, rbd_dev->header_name,
0ce1a794 1689 "rbd", "snap_add",
916d4d67 1690 data, p - data, &ver);
602adf40 1691
916d4d67 1692 kfree(data);
602adf40 1693
505cbb9b 1694 return ret < 0 ? ret : 0;
602adf40
YS
1695bad:
1696 return -ERANGE;
1697}
1698
dfc5606d
YS
1699static void __rbd_remove_all_snaps(struct rbd_device *rbd_dev)
1700{
1701 struct rbd_snap *snap;
a0593290 1702 struct rbd_snap *next;
dfc5606d 1703
a0593290 1704 list_for_each_entry_safe(snap, next, &rbd_dev->snaps, node)
dfc5606d 1705 __rbd_remove_snap_dev(rbd_dev, snap);
dfc5606d
YS
1706}
1707
602adf40
YS
1708/*
1709 * only read the first part of the ondisk header, without the snaps info
1710 */
263c6ca0 1711static int __rbd_refresh_header(struct rbd_device *rbd_dev)
602adf40
YS
1712{
1713 int ret;
1714 struct rbd_image_header h;
602adf40
YS
1715
1716 ret = rbd_read_header(rbd_dev, &h);
1717 if (ret < 0)
1718 return ret;
1719
a51aa0c0
JD
1720 down_write(&rbd_dev->header_rwsem);
1721
9db4b3e3 1722 /* resized? */
474ef7ce
JD
1723 if (rbd_dev->snap_id == CEPH_NOSNAP) {
1724 sector_t size = (sector_t) h.image_size / SECTOR_SIZE;
1725
1726 dout("setting size to %llu sectors", (unsigned long long) size);
1727 set_capacity(rbd_dev->disk, size);
1728 }
9db4b3e3 1729
849b4260 1730 /* rbd_dev->header.object_prefix shouldn't change */
602adf40 1731 kfree(rbd_dev->header.snap_sizes);
849b4260 1732 kfree(rbd_dev->header.snap_names);
d1d25646
JD
1733 /* osd requests may still refer to snapc */
1734 ceph_put_snap_context(rbd_dev->header.snapc);
602adf40 1735
a71b891b 1736 rbd_dev->header.obj_version = h.obj_version;
93a24e08 1737 rbd_dev->header.image_size = h.image_size;
602adf40
YS
1738 rbd_dev->header.total_snaps = h.total_snaps;
1739 rbd_dev->header.snapc = h.snapc;
1740 rbd_dev->header.snap_names = h.snap_names;
dfc5606d 1741 rbd_dev->header.snap_names_len = h.snap_names_len;
602adf40 1742 rbd_dev->header.snap_sizes = h.snap_sizes;
849b4260
AE
1743 /* Free the extra copy of the object prefix */
1744 WARN_ON(strcmp(rbd_dev->header.object_prefix, h.object_prefix));
1745 kfree(h.object_prefix);
1746
dfc5606d
YS
1747 ret = __rbd_init_snaps_header(rbd_dev);
1748
c666601a 1749 up_write(&rbd_dev->header_rwsem);
602adf40 1750
dfc5606d 1751 return ret;
602adf40
YS
1752}
1753
1754static int rbd_init_disk(struct rbd_device *rbd_dev)
1755{
1756 struct gendisk *disk;
1757 struct request_queue *q;
1758 int rc;
593a9e7b 1759 u64 segment_size;
602adf40
YS
1760 u64 total_size = 0;
1761
1762 /* contact OSD, request size info about the object being mapped */
1763 rc = rbd_read_header(rbd_dev, &rbd_dev->header);
1764 if (rc)
1765 return rc;
1766
dfc5606d
YS
1767 /* no need to lock here, as rbd_dev is not registered yet */
1768 rc = __rbd_init_snaps_header(rbd_dev);
1769 if (rc)
1770 return rc;
1771
cc9d734c 1772 rc = rbd_header_set_snap(rbd_dev, &total_size);
602adf40
YS
1773 if (rc)
1774 return rc;
1775
1776 /* create gendisk info */
1777 rc = -ENOMEM;
1778 disk = alloc_disk(RBD_MINORS_PER_MAJOR);
1779 if (!disk)
1780 goto out;
1781
f0f8cef5 1782 snprintf(disk->disk_name, sizeof(disk->disk_name), RBD_DRV_NAME "%d",
de71a297 1783 rbd_dev->dev_id);
602adf40
YS
1784 disk->major = rbd_dev->major;
1785 disk->first_minor = 0;
1786 disk->fops = &rbd_bd_ops;
1787 disk->private_data = rbd_dev;
1788
1789 /* init rq */
1790 rc = -ENOMEM;
1791 q = blk_init_queue(rbd_rq_fn, &rbd_dev->lock);
1792 if (!q)
1793 goto out_disk;
029bcbd8 1794
593a9e7b
AE
1795 /* We use the default size, but let's be explicit about it. */
1796 blk_queue_physical_block_size(q, SECTOR_SIZE);
1797
029bcbd8 1798 /* set io sizes to object size */
593a9e7b
AE
1799 segment_size = rbd_obj_bytes(&rbd_dev->header);
1800 blk_queue_max_hw_sectors(q, segment_size / SECTOR_SIZE);
1801 blk_queue_max_segment_size(q, segment_size);
1802 blk_queue_io_min(q, segment_size);
1803 blk_queue_io_opt(q, segment_size);
029bcbd8 1804
602adf40
YS
1805 blk_queue_merge_bvec(q, rbd_merge_bvec);
1806 disk->queue = q;
1807
1808 q->queuedata = rbd_dev;
1809
1810 rbd_dev->disk = disk;
1811 rbd_dev->q = q;
1812
1813 /* finally, announce the disk to the world */
593a9e7b 1814 set_capacity(disk, total_size / SECTOR_SIZE);
602adf40
YS
1815 add_disk(disk);
1816
1817 pr_info("%s: added with size 0x%llx\n",
1818 disk->disk_name, (unsigned long long)total_size);
1819 return 0;
1820
1821out_disk:
1822 put_disk(disk);
1823out:
1824 return rc;
1825}
1826
dfc5606d
YS
1827/*
1828 sysfs
1829*/
1830
593a9e7b
AE
1831static struct rbd_device *dev_to_rbd_dev(struct device *dev)
1832{
1833 return container_of(dev, struct rbd_device, dev);
1834}
1835
dfc5606d
YS
1836static ssize_t rbd_size_show(struct device *dev,
1837 struct device_attribute *attr, char *buf)
1838{
593a9e7b 1839 struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
a51aa0c0
JD
1840 sector_t size;
1841
1842 down_read(&rbd_dev->header_rwsem);
1843 size = get_capacity(rbd_dev->disk);
1844 up_read(&rbd_dev->header_rwsem);
dfc5606d 1845
a51aa0c0 1846 return sprintf(buf, "%llu\n", (unsigned long long) size * SECTOR_SIZE);
dfc5606d
YS
1847}
1848
1849static ssize_t rbd_major_show(struct device *dev,
1850 struct device_attribute *attr, char *buf)
1851{
593a9e7b 1852 struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
602adf40 1853
dfc5606d
YS
1854 return sprintf(buf, "%d\n", rbd_dev->major);
1855}
1856
1857static ssize_t rbd_client_id_show(struct device *dev,
1858 struct device_attribute *attr, char *buf)
602adf40 1859{
593a9e7b 1860 struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
dfc5606d 1861
1dbb4399
AE
1862 return sprintf(buf, "client%lld\n",
1863 ceph_client_id(rbd_dev->rbd_client->client));
602adf40
YS
1864}
1865
dfc5606d
YS
1866static ssize_t rbd_pool_show(struct device *dev,
1867 struct device_attribute *attr, char *buf)
602adf40 1868{
593a9e7b 1869 struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
dfc5606d
YS
1870
1871 return sprintf(buf, "%s\n", rbd_dev->pool_name);
1872}
1873
9bb2f334
AE
1874static ssize_t rbd_pool_id_show(struct device *dev,
1875 struct device_attribute *attr, char *buf)
1876{
1877 struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
1878
1879 return sprintf(buf, "%d\n", rbd_dev->pool_id);
1880}
1881
dfc5606d
YS
1882static ssize_t rbd_name_show(struct device *dev,
1883 struct device_attribute *attr, char *buf)
1884{
593a9e7b 1885 struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
dfc5606d 1886
0bed54dc 1887 return sprintf(buf, "%s\n", rbd_dev->image_name);
dfc5606d
YS
1888}
1889
1890static ssize_t rbd_snap_show(struct device *dev,
1891 struct device_attribute *attr,
1892 char *buf)
1893{
593a9e7b 1894 struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
dfc5606d
YS
1895
1896 return sprintf(buf, "%s\n", rbd_dev->snap_name);
1897}
1898
1899static ssize_t rbd_image_refresh(struct device *dev,
1900 struct device_attribute *attr,
1901 const char *buf,
1902 size_t size)
1903{
593a9e7b 1904 struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
dfc5606d
YS
1905 int rc;
1906 int ret = size;
602adf40
YS
1907
1908 mutex_lock_nested(&ctl_mutex, SINGLE_DEPTH_NESTING);
1909
263c6ca0 1910 rc = __rbd_refresh_header(rbd_dev);
dfc5606d
YS
1911 if (rc < 0)
1912 ret = rc;
602adf40 1913
dfc5606d
YS
1914 mutex_unlock(&ctl_mutex);
1915 return ret;
1916}
602adf40 1917
dfc5606d
YS
1918static DEVICE_ATTR(size, S_IRUGO, rbd_size_show, NULL);
1919static DEVICE_ATTR(major, S_IRUGO, rbd_major_show, NULL);
1920static DEVICE_ATTR(client_id, S_IRUGO, rbd_client_id_show, NULL);
1921static DEVICE_ATTR(pool, S_IRUGO, rbd_pool_show, NULL);
9bb2f334 1922static DEVICE_ATTR(pool_id, S_IRUGO, rbd_pool_id_show, NULL);
dfc5606d
YS
1923static DEVICE_ATTR(name, S_IRUGO, rbd_name_show, NULL);
1924static DEVICE_ATTR(refresh, S_IWUSR, NULL, rbd_image_refresh);
1925static DEVICE_ATTR(current_snap, S_IRUGO, rbd_snap_show, NULL);
1926static DEVICE_ATTR(create_snap, S_IWUSR, NULL, rbd_snap_add);
dfc5606d
YS
1927
1928static struct attribute *rbd_attrs[] = {
1929 &dev_attr_size.attr,
1930 &dev_attr_major.attr,
1931 &dev_attr_client_id.attr,
1932 &dev_attr_pool.attr,
9bb2f334 1933 &dev_attr_pool_id.attr,
dfc5606d
YS
1934 &dev_attr_name.attr,
1935 &dev_attr_current_snap.attr,
1936 &dev_attr_refresh.attr,
1937 &dev_attr_create_snap.attr,
dfc5606d
YS
1938 NULL
1939};
1940
1941static struct attribute_group rbd_attr_group = {
1942 .attrs = rbd_attrs,
1943};
1944
1945static const struct attribute_group *rbd_attr_groups[] = {
1946 &rbd_attr_group,
1947 NULL
1948};
1949
1950static void rbd_sysfs_dev_release(struct device *dev)
1951{
1952}
1953
1954static struct device_type rbd_device_type = {
1955 .name = "rbd",
1956 .groups = rbd_attr_groups,
1957 .release = rbd_sysfs_dev_release,
1958};
1959
1960
1961/*
1962 sysfs - snapshots
1963*/
1964
1965static ssize_t rbd_snap_size_show(struct device *dev,
1966 struct device_attribute *attr,
1967 char *buf)
1968{
1969 struct rbd_snap *snap = container_of(dev, struct rbd_snap, dev);
1970
3591538f 1971 return sprintf(buf, "%llu\n", (unsigned long long)snap->size);
dfc5606d
YS
1972}
1973
1974static ssize_t rbd_snap_id_show(struct device *dev,
1975 struct device_attribute *attr,
1976 char *buf)
1977{
1978 struct rbd_snap *snap = container_of(dev, struct rbd_snap, dev);
1979
3591538f 1980 return sprintf(buf, "%llu\n", (unsigned long long)snap->id);
dfc5606d
YS
1981}
1982
1983static DEVICE_ATTR(snap_size, S_IRUGO, rbd_snap_size_show, NULL);
1984static DEVICE_ATTR(snap_id, S_IRUGO, rbd_snap_id_show, NULL);
1985
1986static struct attribute *rbd_snap_attrs[] = {
1987 &dev_attr_snap_size.attr,
1988 &dev_attr_snap_id.attr,
1989 NULL,
1990};
1991
1992static struct attribute_group rbd_snap_attr_group = {
1993 .attrs = rbd_snap_attrs,
1994};
1995
1996static void rbd_snap_dev_release(struct device *dev)
1997{
1998 struct rbd_snap *snap = container_of(dev, struct rbd_snap, dev);
1999 kfree(snap->name);
2000 kfree(snap);
2001}
2002
2003static const struct attribute_group *rbd_snap_attr_groups[] = {
2004 &rbd_snap_attr_group,
2005 NULL
2006};
2007
2008static struct device_type rbd_snap_device_type = {
2009 .groups = rbd_snap_attr_groups,
2010 .release = rbd_snap_dev_release,
2011};
2012
2013static void __rbd_remove_snap_dev(struct rbd_device *rbd_dev,
2014 struct rbd_snap *snap)
2015{
2016 list_del(&snap->node);
2017 device_unregister(&snap->dev);
2018}
2019
2020static int rbd_register_snap_dev(struct rbd_device *rbd_dev,
2021 struct rbd_snap *snap,
2022 struct device *parent)
2023{
2024 struct device *dev = &snap->dev;
2025 int ret;
2026
2027 dev->type = &rbd_snap_device_type;
2028 dev->parent = parent;
2029 dev->release = rbd_snap_dev_release;
2030 dev_set_name(dev, "snap_%s", snap->name);
2031 ret = device_register(dev);
2032
2033 return ret;
2034}
2035
2036static int __rbd_add_snap_dev(struct rbd_device *rbd_dev,
2037 int i, const char *name,
2038 struct rbd_snap **snapp)
2039{
2040 int ret;
2041 struct rbd_snap *snap = kzalloc(sizeof(*snap), GFP_KERNEL);
2042 if (!snap)
2043 return -ENOMEM;
2044 snap->name = kstrdup(name, GFP_KERNEL);
2045 snap->size = rbd_dev->header.snap_sizes[i];
2046 snap->id = rbd_dev->header.snapc->snaps[i];
2047 if (device_is_registered(&rbd_dev->dev)) {
2048 ret = rbd_register_snap_dev(rbd_dev, snap,
2049 &rbd_dev->dev);
2050 if (ret < 0)
2051 goto err;
2052 }
2053 *snapp = snap;
2054 return 0;
2055err:
2056 kfree(snap->name);
2057 kfree(snap);
2058 return ret;
2059}
2060
2061/*
2062 * search for the previous snap in a null delimited string list
2063 */
2064const char *rbd_prev_snap_name(const char *name, const char *start)
2065{
2066 if (name < start + 2)
2067 return NULL;
2068
2069 name -= 2;
2070 while (*name) {
2071 if (name == start)
2072 return start;
2073 name--;
2074 }
2075 return name + 1;
2076}
2077
2078/*
2079 * compare the old list of snapshots that we have to what's in the header
2080 * and update it accordingly. Note that the header holds the snapshots
2081 * in a reverse order (from newest to oldest) and we need to go from
2082 * older to new so that we don't get a duplicate snap name when
2083 * doing the process (e.g., removed snapshot and recreated a new
2084 * one with the same name.
2085 */
2086static int __rbd_init_snaps_header(struct rbd_device *rbd_dev)
2087{
2088 const char *name, *first_name;
2089 int i = rbd_dev->header.total_snaps;
2090 struct rbd_snap *snap, *old_snap = NULL;
2091 int ret;
2092 struct list_head *p, *n;
2093
2094 first_name = rbd_dev->header.snap_names;
2095 name = first_name + rbd_dev->header.snap_names_len;
2096
2097 list_for_each_prev_safe(p, n, &rbd_dev->snaps) {
2098 u64 cur_id;
2099
2100 old_snap = list_entry(p, struct rbd_snap, node);
2101
2102 if (i)
2103 cur_id = rbd_dev->header.snapc->snaps[i - 1];
2104
2105 if (!i || old_snap->id < cur_id) {
e88a36ec
JD
2106 /*
2107 * old_snap->id was skipped, thus was
2108 * removed. If this rbd_dev is mapped to
2109 * the removed snapshot, record that it no
2110 * longer exists, to prevent further I/O.
2111 */
2112 if (rbd_dev->snap_id == old_snap->id)
2113 rbd_dev->snap_exists = false;
dfc5606d
YS
2114 __rbd_remove_snap_dev(rbd_dev, old_snap);
2115 continue;
2116 }
2117 if (old_snap->id == cur_id) {
2118 /* we have this snapshot already */
2119 i--;
2120 name = rbd_prev_snap_name(name, first_name);
2121 continue;
2122 }
2123 for (; i > 0;
2124 i--, name = rbd_prev_snap_name(name, first_name)) {
2125 if (!name) {
2126 WARN_ON(1);
2127 return -EINVAL;
2128 }
2129 cur_id = rbd_dev->header.snapc->snaps[i];
2130 /* snapshot removal? handle it above */
2131 if (cur_id >= old_snap->id)
2132 break;
2133 /* a new snapshot */
2134 ret = __rbd_add_snap_dev(rbd_dev, i - 1, name, &snap);
2135 if (ret < 0)
2136 return ret;
2137
2138 /* note that we add it backward so using n and not p */
2139 list_add(&snap->node, n);
2140 p = &snap->node;
2141 }
2142 }
2143 /* we're done going over the old snap list, just add what's left */
2144 for (; i > 0; i--) {
2145 name = rbd_prev_snap_name(name, first_name);
2146 if (!name) {
2147 WARN_ON(1);
2148 return -EINVAL;
2149 }
2150 ret = __rbd_add_snap_dev(rbd_dev, i - 1, name, &snap);
2151 if (ret < 0)
2152 return ret;
2153 list_add(&snap->node, &rbd_dev->snaps);
2154 }
2155
2156 return 0;
2157}
2158
dfc5606d
YS
2159static int rbd_bus_add_dev(struct rbd_device *rbd_dev)
2160{
f0f8cef5 2161 int ret;
dfc5606d
YS
2162 struct device *dev;
2163 struct rbd_snap *snap;
2164
2165 mutex_lock_nested(&ctl_mutex, SINGLE_DEPTH_NESTING);
2166 dev = &rbd_dev->dev;
2167
2168 dev->bus = &rbd_bus_type;
2169 dev->type = &rbd_device_type;
2170 dev->parent = &rbd_root_dev;
2171 dev->release = rbd_dev_release;
de71a297 2172 dev_set_name(dev, "%d", rbd_dev->dev_id);
dfc5606d
YS
2173 ret = device_register(dev);
2174 if (ret < 0)
f0f8cef5 2175 goto out;
dfc5606d
YS
2176
2177 list_for_each_entry(snap, &rbd_dev->snaps, node) {
2178 ret = rbd_register_snap_dev(rbd_dev, snap,
2179 &rbd_dev->dev);
2180 if (ret < 0)
602adf40
YS
2181 break;
2182 }
f0f8cef5 2183out:
dfc5606d
YS
2184 mutex_unlock(&ctl_mutex);
2185 return ret;
602adf40
YS
2186}
2187
dfc5606d
YS
2188static void rbd_bus_del_dev(struct rbd_device *rbd_dev)
2189{
2190 device_unregister(&rbd_dev->dev);
2191}
2192
59c2be1e
YS
2193static int rbd_init_watch_dev(struct rbd_device *rbd_dev)
2194{
2195 int ret, rc;
2196
2197 do {
0bed54dc 2198 ret = rbd_req_sync_watch(rbd_dev, rbd_dev->header_name,
59c2be1e
YS
2199 rbd_dev->header.obj_version);
2200 if (ret == -ERANGE) {
2201 mutex_lock_nested(&ctl_mutex, SINGLE_DEPTH_NESTING);
263c6ca0 2202 rc = __rbd_refresh_header(rbd_dev);
59c2be1e
YS
2203 mutex_unlock(&ctl_mutex);
2204 if (rc < 0)
2205 return rc;
2206 }
2207 } while (ret == -ERANGE);
2208
2209 return ret;
2210}
2211
1ddbe94e
AE
2212static atomic64_t rbd_id_max = ATOMIC64_INIT(0);
2213
2214/*
499afd5b
AE
2215 * Get a unique rbd identifier for the given new rbd_dev, and add
2216 * the rbd_dev to the global list. The minimum rbd id is 1.
1ddbe94e 2217 */
499afd5b 2218static void rbd_id_get(struct rbd_device *rbd_dev)
b7f23c36 2219{
de71a297 2220 rbd_dev->dev_id = atomic64_inc_return(&rbd_id_max);
499afd5b
AE
2221
2222 spin_lock(&rbd_dev_list_lock);
2223 list_add_tail(&rbd_dev->node, &rbd_dev_list);
2224 spin_unlock(&rbd_dev_list_lock);
1ddbe94e 2225}
b7f23c36 2226
1ddbe94e 2227/*
499afd5b
AE
2228 * Remove an rbd_dev from the global list, and record that its
2229 * identifier is no longer in use.
1ddbe94e 2230 */
499afd5b 2231static void rbd_id_put(struct rbd_device *rbd_dev)
1ddbe94e 2232{
d184f6bf 2233 struct list_head *tmp;
de71a297 2234 int rbd_id = rbd_dev->dev_id;
d184f6bf
AE
2235 int max_id;
2236
2237 BUG_ON(rbd_id < 1);
499afd5b
AE
2238
2239 spin_lock(&rbd_dev_list_lock);
2240 list_del_init(&rbd_dev->node);
d184f6bf
AE
2241
2242 /*
2243 * If the id being "put" is not the current maximum, there
2244 * is nothing special we need to do.
2245 */
2246 if (rbd_id != atomic64_read(&rbd_id_max)) {
2247 spin_unlock(&rbd_dev_list_lock);
2248 return;
2249 }
2250
2251 /*
2252 * We need to update the current maximum id. Search the
2253 * list to find out what it is. We're more likely to find
2254 * the maximum at the end, so search the list backward.
2255 */
2256 max_id = 0;
2257 list_for_each_prev(tmp, &rbd_dev_list) {
2258 struct rbd_device *rbd_dev;
2259
2260 rbd_dev = list_entry(tmp, struct rbd_device, node);
2261 if (rbd_id > max_id)
2262 max_id = rbd_id;
2263 }
499afd5b 2264 spin_unlock(&rbd_dev_list_lock);
b7f23c36 2265
1ddbe94e 2266 /*
d184f6bf
AE
2267 * The max id could have been updated by rbd_id_get(), in
2268 * which case it now accurately reflects the new maximum.
2269 * Be careful not to overwrite the maximum value in that
2270 * case.
1ddbe94e 2271 */
d184f6bf 2272 atomic64_cmpxchg(&rbd_id_max, rbd_id, max_id);
b7f23c36
AE
2273}
2274
e28fff26
AE
2275/*
2276 * Skips over white space at *buf, and updates *buf to point to the
2277 * first found non-space character (if any). Returns the length of
593a9e7b
AE
2278 * the token (string of non-white space characters) found. Note
2279 * that *buf must be terminated with '\0'.
e28fff26
AE
2280 */
2281static inline size_t next_token(const char **buf)
2282{
2283 /*
2284 * These are the characters that produce nonzero for
2285 * isspace() in the "C" and "POSIX" locales.
2286 */
2287 const char *spaces = " \f\n\r\t\v";
2288
2289 *buf += strspn(*buf, spaces); /* Find start of token */
2290
2291 return strcspn(*buf, spaces); /* Return token length */
2292}
2293
2294/*
2295 * Finds the next token in *buf, and if the provided token buffer is
2296 * big enough, copies the found token into it. The result, if
593a9e7b
AE
2297 * copied, is guaranteed to be terminated with '\0'. Note that *buf
2298 * must be terminated with '\0' on entry.
e28fff26
AE
2299 *
2300 * Returns the length of the token found (not including the '\0').
2301 * Return value will be 0 if no token is found, and it will be >=
2302 * token_size if the token would not fit.
2303 *
593a9e7b 2304 * The *buf pointer will be updated to point beyond the end of the
e28fff26
AE
2305 * found token. Note that this occurs even if the token buffer is
2306 * too small to hold it.
2307 */
2308static inline size_t copy_token(const char **buf,
2309 char *token,
2310 size_t token_size)
2311{
2312 size_t len;
2313
2314 len = next_token(buf);
2315 if (len < token_size) {
2316 memcpy(token, *buf, len);
2317 *(token + len) = '\0';
2318 }
2319 *buf += len;
2320
2321 return len;
2322}
2323
ea3352f4
AE
2324/*
2325 * Finds the next token in *buf, dynamically allocates a buffer big
2326 * enough to hold a copy of it, and copies the token into the new
2327 * buffer. The copy is guaranteed to be terminated with '\0'. Note
2328 * that a duplicate buffer is created even for a zero-length token.
2329 *
2330 * Returns a pointer to the newly-allocated duplicate, or a null
2331 * pointer if memory for the duplicate was not available. If
2332 * the lenp argument is a non-null pointer, the length of the token
2333 * (not including the '\0') is returned in *lenp.
2334 *
2335 * If successful, the *buf pointer will be updated to point beyond
2336 * the end of the found token.
2337 *
2338 * Note: uses GFP_KERNEL for allocation.
2339 */
2340static inline char *dup_token(const char **buf, size_t *lenp)
2341{
2342 char *dup;
2343 size_t len;
2344
2345 len = next_token(buf);
2346 dup = kmalloc(len + 1, GFP_KERNEL);
2347 if (!dup)
2348 return NULL;
2349
2350 memcpy(dup, *buf, len);
2351 *(dup + len) = '\0';
2352 *buf += len;
2353
2354 if (lenp)
2355 *lenp = len;
2356
2357 return dup;
2358}
2359
a725f65e 2360/*
0bed54dc 2361 * This fills in the pool_name, image_name, image_name_len, snap_name,
a725f65e
AE
2362 * rbd_dev, rbd_md_name, and name fields of the given rbd_dev, based
2363 * on the list of monitor addresses and other options provided via
2364 * /sys/bus/rbd/add.
d22f76e7
AE
2365 *
2366 * Note: rbd_dev is assumed to have been initially zero-filled.
a725f65e
AE
2367 */
2368static int rbd_add_parse_args(struct rbd_device *rbd_dev,
2369 const char *buf,
7ef3214a 2370 const char **mon_addrs,
5214ecc4 2371 size_t *mon_addrs_size,
e28fff26 2372 char *options,
0bed54dc 2373 size_t options_size)
e28fff26 2374{
d22f76e7
AE
2375 size_t len;
2376 int ret;
e28fff26
AE
2377
2378 /* The first four tokens are required */
2379
7ef3214a
AE
2380 len = next_token(&buf);
2381 if (!len)
a725f65e 2382 return -EINVAL;
5214ecc4 2383 *mon_addrs_size = len + 1;
7ef3214a
AE
2384 *mon_addrs = buf;
2385
2386 buf += len;
a725f65e 2387
e28fff26
AE
2388 len = copy_token(&buf, options, options_size);
2389 if (!len || len >= options_size)
2390 return -EINVAL;
2391
bf3e5ae1 2392 ret = -ENOMEM;
d22f76e7
AE
2393 rbd_dev->pool_name = dup_token(&buf, NULL);
2394 if (!rbd_dev->pool_name)
d22f76e7 2395 goto out_err;
e28fff26 2396
0bed54dc
AE
2397 rbd_dev->image_name = dup_token(&buf, &rbd_dev->image_name_len);
2398 if (!rbd_dev->image_name)
bf3e5ae1 2399 goto out_err;
a725f65e 2400
cb8627c7
AE
2401 /* Create the name of the header object */
2402
0bed54dc 2403 rbd_dev->header_name = kmalloc(rbd_dev->image_name_len
bf3e5ae1
AE
2404 + sizeof (RBD_SUFFIX),
2405 GFP_KERNEL);
0bed54dc 2406 if (!rbd_dev->header_name)
cb8627c7 2407 goto out_err;
0bed54dc 2408 sprintf(rbd_dev->header_name, "%s%s", rbd_dev->image_name, RBD_SUFFIX);
a725f65e 2409
e28fff26 2410 /*
820a5f3e
AE
2411 * The snapshot name is optional. If none is is supplied,
2412 * we use the default value.
e28fff26 2413 */
820a5f3e
AE
2414 rbd_dev->snap_name = dup_token(&buf, &len);
2415 if (!rbd_dev->snap_name)
2416 goto out_err;
2417 if (!len) {
2418 /* Replace the empty name with the default */
2419 kfree(rbd_dev->snap_name);
2420 rbd_dev->snap_name
2421 = kmalloc(sizeof (RBD_SNAP_HEAD_NAME), GFP_KERNEL);
2422 if (!rbd_dev->snap_name)
2423 goto out_err;
2424
e28fff26
AE
2425 memcpy(rbd_dev->snap_name, RBD_SNAP_HEAD_NAME,
2426 sizeof (RBD_SNAP_HEAD_NAME));
849b4260 2427 }
e28fff26 2428
a725f65e 2429 return 0;
d22f76e7
AE
2430
2431out_err:
0bed54dc
AE
2432 kfree(rbd_dev->header_name);
2433 kfree(rbd_dev->image_name);
d22f76e7
AE
2434 kfree(rbd_dev->pool_name);
2435 rbd_dev->pool_name = NULL;
2436
2437 return ret;
a725f65e
AE
2438}
2439
59c2be1e
YS
2440static ssize_t rbd_add(struct bus_type *bus,
2441 const char *buf,
2442 size_t count)
602adf40 2443{
cb8627c7
AE
2444 char *options;
2445 struct rbd_device *rbd_dev = NULL;
7ef3214a
AE
2446 const char *mon_addrs = NULL;
2447 size_t mon_addrs_size = 0;
27cc2594
AE
2448 struct ceph_osd_client *osdc;
2449 int rc = -ENOMEM;
602adf40
YS
2450
2451 if (!try_module_get(THIS_MODULE))
2452 return -ENODEV;
2453
60571c7d 2454 options = kmalloc(count, GFP_KERNEL);
602adf40 2455 if (!options)
27cc2594 2456 goto err_nomem;
cb8627c7
AE
2457 rbd_dev = kzalloc(sizeof(*rbd_dev), GFP_KERNEL);
2458 if (!rbd_dev)
2459 goto err_nomem;
602adf40
YS
2460
2461 /* static rbd_device initialization */
2462 spin_lock_init(&rbd_dev->lock);
2463 INIT_LIST_HEAD(&rbd_dev->node);
dfc5606d 2464 INIT_LIST_HEAD(&rbd_dev->snaps);
c666601a 2465 init_rwsem(&rbd_dev->header_rwsem);
602adf40 2466
d184f6bf 2467 /* generate unique id: find highest unique id, add one */
499afd5b 2468 rbd_id_get(rbd_dev);
602adf40 2469
a725f65e 2470 /* Fill in the device name, now that we have its id. */
81a89793
AE
2471 BUILD_BUG_ON(DEV_NAME_LEN
2472 < sizeof (RBD_DRV_NAME) + MAX_INT_FORMAT_WIDTH);
de71a297 2473 sprintf(rbd_dev->name, "%s%d", RBD_DRV_NAME, rbd_dev->dev_id);
a725f65e 2474
602adf40 2475 /* parse add command */
7ef3214a 2476 rc = rbd_add_parse_args(rbd_dev, buf, &mon_addrs, &mon_addrs_size,
e28fff26 2477 options, count);
a725f65e 2478 if (rc)
f0f8cef5 2479 goto err_put_id;
e124a82f 2480
5214ecc4
AE
2481 rbd_dev->rbd_client = rbd_get_client(mon_addrs, mon_addrs_size - 1,
2482 options);
d720bcb0
AE
2483 if (IS_ERR(rbd_dev->rbd_client)) {
2484 rc = PTR_ERR(rbd_dev->rbd_client);
f0f8cef5 2485 goto err_put_id;
d720bcb0 2486 }
602adf40 2487
602adf40 2488 /* pick the pool */
1dbb4399 2489 osdc = &rbd_dev->rbd_client->client->osdc;
602adf40
YS
2490 rc = ceph_pg_poolid_by_name(osdc->osdmap, rbd_dev->pool_name);
2491 if (rc < 0)
2492 goto err_out_client;
9bb2f334 2493 rbd_dev->pool_id = rc;
602adf40
YS
2494
2495 /* register our block device */
27cc2594
AE
2496 rc = register_blkdev(0, rbd_dev->name);
2497 if (rc < 0)
602adf40 2498 goto err_out_client;
27cc2594 2499 rbd_dev->major = rc;
602adf40 2500
dfc5606d
YS
2501 rc = rbd_bus_add_dev(rbd_dev);
2502 if (rc)
766fc439
YS
2503 goto err_out_blkdev;
2504
32eec68d
AE
2505 /*
2506 * At this point cleanup in the event of an error is the job
2507 * of the sysfs code (initiated by rbd_bus_del_dev()).
2508 *
2509 * Set up and announce blkdev mapping.
2510 */
602adf40
YS
2511 rc = rbd_init_disk(rbd_dev);
2512 if (rc)
766fc439 2513 goto err_out_bus;
602adf40 2514
59c2be1e
YS
2515 rc = rbd_init_watch_dev(rbd_dev);
2516 if (rc)
2517 goto err_out_bus;
2518
602adf40
YS
2519 return count;
2520
766fc439 2521err_out_bus:
766fc439
YS
2522 /* this will also clean up rest of rbd_dev stuff */
2523
2524 rbd_bus_del_dev(rbd_dev);
2525 kfree(options);
766fc439
YS
2526 return rc;
2527
602adf40
YS
2528err_out_blkdev:
2529 unregister_blkdev(rbd_dev->major, rbd_dev->name);
2530err_out_client:
2531 rbd_put_client(rbd_dev);
f0f8cef5 2532err_put_id:
cb8627c7 2533 if (rbd_dev->pool_name) {
820a5f3e 2534 kfree(rbd_dev->snap_name);
0bed54dc
AE
2535 kfree(rbd_dev->header_name);
2536 kfree(rbd_dev->image_name);
cb8627c7
AE
2537 kfree(rbd_dev->pool_name);
2538 }
499afd5b 2539 rbd_id_put(rbd_dev);
27cc2594 2540err_nomem:
27cc2594 2541 kfree(rbd_dev);
cb8627c7 2542 kfree(options);
27cc2594 2543
602adf40
YS
2544 dout("Error adding device %s\n", buf);
2545 module_put(THIS_MODULE);
27cc2594
AE
2546
2547 return (ssize_t) rc;
602adf40
YS
2548}
2549
de71a297 2550static struct rbd_device *__rbd_get_dev(unsigned long dev_id)
602adf40
YS
2551{
2552 struct list_head *tmp;
2553 struct rbd_device *rbd_dev;
2554
e124a82f 2555 spin_lock(&rbd_dev_list_lock);
602adf40
YS
2556 list_for_each(tmp, &rbd_dev_list) {
2557 rbd_dev = list_entry(tmp, struct rbd_device, node);
de71a297 2558 if (rbd_dev->dev_id == dev_id) {
e124a82f 2559 spin_unlock(&rbd_dev_list_lock);
602adf40 2560 return rbd_dev;
e124a82f 2561 }
602adf40 2562 }
e124a82f 2563 spin_unlock(&rbd_dev_list_lock);
602adf40
YS
2564 return NULL;
2565}
2566
dfc5606d 2567static void rbd_dev_release(struct device *dev)
602adf40 2568{
593a9e7b 2569 struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
602adf40 2570
1dbb4399
AE
2571 if (rbd_dev->watch_request) {
2572 struct ceph_client *client = rbd_dev->rbd_client->client;
2573
2574 ceph_osdc_unregister_linger_request(&client->osdc,
59c2be1e 2575 rbd_dev->watch_request);
1dbb4399 2576 }
59c2be1e 2577 if (rbd_dev->watch_event)
0bed54dc 2578 rbd_req_sync_unwatch(rbd_dev, rbd_dev->header_name);
59c2be1e 2579
602adf40
YS
2580 rbd_put_client(rbd_dev);
2581
2582 /* clean up and free blkdev */
2583 rbd_free_disk(rbd_dev);
2584 unregister_blkdev(rbd_dev->major, rbd_dev->name);
32eec68d
AE
2585
2586 /* done with the id, and with the rbd_dev */
820a5f3e 2587 kfree(rbd_dev->snap_name);
0bed54dc 2588 kfree(rbd_dev->header_name);
d22f76e7 2589 kfree(rbd_dev->pool_name);
0bed54dc 2590 kfree(rbd_dev->image_name);
32eec68d 2591 rbd_id_put(rbd_dev);
602adf40
YS
2592 kfree(rbd_dev);
2593
2594 /* release module ref */
2595 module_put(THIS_MODULE);
602adf40
YS
2596}
2597
dfc5606d
YS
2598static ssize_t rbd_remove(struct bus_type *bus,
2599 const char *buf,
2600 size_t count)
602adf40
YS
2601{
2602 struct rbd_device *rbd_dev = NULL;
2603 int target_id, rc;
2604 unsigned long ul;
2605 int ret = count;
2606
2607 rc = strict_strtoul(buf, 10, &ul);
2608 if (rc)
2609 return rc;
2610
2611 /* convert to int; abort if we lost anything in the conversion */
2612 target_id = (int) ul;
2613 if (target_id != ul)
2614 return -EINVAL;
2615
2616 mutex_lock_nested(&ctl_mutex, SINGLE_DEPTH_NESTING);
2617
2618 rbd_dev = __rbd_get_dev(target_id);
2619 if (!rbd_dev) {
2620 ret = -ENOENT;
2621 goto done;
2622 }
2623
dfc5606d
YS
2624 __rbd_remove_all_snaps(rbd_dev);
2625 rbd_bus_del_dev(rbd_dev);
602adf40
YS
2626
2627done:
2628 mutex_unlock(&ctl_mutex);
2629 return ret;
2630}
2631
dfc5606d
YS
2632static ssize_t rbd_snap_add(struct device *dev,
2633 struct device_attribute *attr,
2634 const char *buf,
2635 size_t count)
602adf40 2636{
593a9e7b 2637 struct rbd_device *rbd_dev = dev_to_rbd_dev(dev);
dfc5606d
YS
2638 int ret;
2639 char *name = kmalloc(count + 1, GFP_KERNEL);
602adf40
YS
2640 if (!name)
2641 return -ENOMEM;
2642
dfc5606d 2643 snprintf(name, count, "%s", buf);
602adf40
YS
2644
2645 mutex_lock_nested(&ctl_mutex, SINGLE_DEPTH_NESTING);
2646
602adf40
YS
2647 ret = rbd_header_add_snap(rbd_dev,
2648 name, GFP_KERNEL);
2649 if (ret < 0)
59c2be1e 2650 goto err_unlock;
602adf40 2651
263c6ca0 2652 ret = __rbd_refresh_header(rbd_dev);
602adf40 2653 if (ret < 0)
59c2be1e
YS
2654 goto err_unlock;
2655
2656 /* shouldn't hold ctl_mutex when notifying.. notify might
2657 trigger a watch callback that would need to get that mutex */
2658 mutex_unlock(&ctl_mutex);
2659
2660 /* make a best effort, don't error if failed */
0bed54dc 2661 rbd_req_sync_notify(rbd_dev, rbd_dev->header_name);
602adf40
YS
2662
2663 ret = count;
59c2be1e
YS
2664 kfree(name);
2665 return ret;
2666
2667err_unlock:
602adf40 2668 mutex_unlock(&ctl_mutex);
602adf40
YS
2669 kfree(name);
2670 return ret;
2671}
2672
602adf40
YS
2673/*
2674 * create control files in sysfs
dfc5606d 2675 * /sys/bus/rbd/...
602adf40
YS
2676 */
2677static int rbd_sysfs_init(void)
2678{
dfc5606d 2679 int ret;
602adf40 2680
fed4c143 2681 ret = device_register(&rbd_root_dev);
21079786 2682 if (ret < 0)
dfc5606d 2683 return ret;
602adf40 2684
fed4c143
AE
2685 ret = bus_register(&rbd_bus_type);
2686 if (ret < 0)
2687 device_unregister(&rbd_root_dev);
602adf40 2688
602adf40
YS
2689 return ret;
2690}
2691
2692static void rbd_sysfs_cleanup(void)
2693{
dfc5606d 2694 bus_unregister(&rbd_bus_type);
fed4c143 2695 device_unregister(&rbd_root_dev);
602adf40
YS
2696}
2697
2698int __init rbd_init(void)
2699{
2700 int rc;
2701
2702 rc = rbd_sysfs_init();
2703 if (rc)
2704 return rc;
f0f8cef5 2705 pr_info("loaded " RBD_DRV_NAME_LONG "\n");
602adf40
YS
2706 return 0;
2707}
2708
2709void __exit rbd_exit(void)
2710{
2711 rbd_sysfs_cleanup();
2712}
2713
2714module_init(rbd_init);
2715module_exit(rbd_exit);
2716
2717MODULE_AUTHOR("Sage Weil <sage@newdream.net>");
2718MODULE_AUTHOR("Yehuda Sadeh <yehuda@hq.newdream.net>");
2719MODULE_DESCRIPTION("rados block device");
2720
2721/* following authorship retained from original osdblk.c */
2722MODULE_AUTHOR("Jeff Garzik <jeff@garzik.org>");
2723
2724MODULE_LICENSE("GPL");