xref: /openbmc/linux/net/ceph/osd_client.c (revision 8730046c)
1 
2 #include <linux/ceph/ceph_debug.h>
3 
4 #include <linux/module.h>
5 #include <linux/err.h>
6 #include <linux/highmem.h>
7 #include <linux/mm.h>
8 #include <linux/pagemap.h>
9 #include <linux/slab.h>
10 #include <linux/uaccess.h>
11 #ifdef CONFIG_BLOCK
12 #include <linux/bio.h>
13 #endif
14 
15 #include <linux/ceph/libceph.h>
16 #include <linux/ceph/osd_client.h>
17 #include <linux/ceph/messenger.h>
18 #include <linux/ceph/decode.h>
19 #include <linux/ceph/auth.h>
20 #include <linux/ceph/pagelist.h>
21 
22 #define OSD_OPREPLY_FRONT_LEN	512
23 
24 static struct kmem_cache	*ceph_osd_request_cache;
25 
26 static const struct ceph_connection_operations osd_con_ops;
27 
28 /*
29  * Implement client access to distributed object storage cluster.
30  *
31  * All data objects are stored within a cluster/cloud of OSDs, or
32  * "object storage devices."  (Note that Ceph OSDs have _nothing_ to
33  * do with the T10 OSD extensions to SCSI.)  Ceph OSDs are simply
34  * remote daemons serving up and coordinating consistent and safe
35  * access to storage.
36  *
37  * Cluster membership and the mapping of data objects onto storage devices
38  * are described by the osd map.
39  *
40  * We keep track of pending OSD requests (read, write), resubmit
41  * requests to different OSDs when the cluster topology/data layout
42  * change, or retry the affected requests when the communications
43  * channel with an OSD is reset.
44  */
45 
46 static void link_request(struct ceph_osd *osd, struct ceph_osd_request *req);
47 static void unlink_request(struct ceph_osd *osd, struct ceph_osd_request *req);
48 static void link_linger(struct ceph_osd *osd,
49 			struct ceph_osd_linger_request *lreq);
50 static void unlink_linger(struct ceph_osd *osd,
51 			  struct ceph_osd_linger_request *lreq);
52 
53 #if 1
54 static inline bool rwsem_is_wrlocked(struct rw_semaphore *sem)
55 {
56 	bool wrlocked = true;
57 
58 	if (unlikely(down_read_trylock(sem))) {
59 		wrlocked = false;
60 		up_read(sem);
61 	}
62 
63 	return wrlocked;
64 }
65 static inline void verify_osdc_locked(struct ceph_osd_client *osdc)
66 {
67 	WARN_ON(!rwsem_is_locked(&osdc->lock));
68 }
69 static inline void verify_osdc_wrlocked(struct ceph_osd_client *osdc)
70 {
71 	WARN_ON(!rwsem_is_wrlocked(&osdc->lock));
72 }
73 static inline void verify_osd_locked(struct ceph_osd *osd)
74 {
75 	struct ceph_osd_client *osdc = osd->o_osdc;
76 
77 	WARN_ON(!(mutex_is_locked(&osd->lock) &&
78 		  rwsem_is_locked(&osdc->lock)) &&
79 		!rwsem_is_wrlocked(&osdc->lock));
80 }
81 static inline void verify_lreq_locked(struct ceph_osd_linger_request *lreq)
82 {
83 	WARN_ON(!mutex_is_locked(&lreq->lock));
84 }
85 #else
86 static inline void verify_osdc_locked(struct ceph_osd_client *osdc) { }
87 static inline void verify_osdc_wrlocked(struct ceph_osd_client *osdc) { }
88 static inline void verify_osd_locked(struct ceph_osd *osd) { }
89 static inline void verify_lreq_locked(struct ceph_osd_linger_request *lreq) { }
90 #endif
91 
92 /*
93  * calculate the mapping of a file extent onto an object, and fill out the
94  * request accordingly.  shorten extent as necessary if it crosses an
95  * object boundary.
96  *
97  * fill osd op in request message.
98  */
99 static int calc_layout(struct ceph_file_layout *layout, u64 off, u64 *plen,
100 			u64 *objnum, u64 *objoff, u64 *objlen)
101 {
102 	u64 orig_len = *plen;
103 	int r;
104 
105 	/* object extent? */
106 	r = ceph_calc_file_object_mapping(layout, off, orig_len, objnum,
107 					  objoff, objlen);
108 	if (r < 0)
109 		return r;
110 	if (*objlen < orig_len) {
111 		*plen = *objlen;
112 		dout(" skipping last %llu, final file extent %llu~%llu\n",
113 		     orig_len - *plen, off, *plen);
114 	}
115 
116 	dout("calc_layout objnum=%llx %llu~%llu\n", *objnum, *objoff, *objlen);
117 
118 	return 0;
119 }
120 
121 static void ceph_osd_data_init(struct ceph_osd_data *osd_data)
122 {
123 	memset(osd_data, 0, sizeof (*osd_data));
124 	osd_data->type = CEPH_OSD_DATA_TYPE_NONE;
125 }
126 
127 static void ceph_osd_data_pages_init(struct ceph_osd_data *osd_data,
128 			struct page **pages, u64 length, u32 alignment,
129 			bool pages_from_pool, bool own_pages)
130 {
131 	osd_data->type = CEPH_OSD_DATA_TYPE_PAGES;
132 	osd_data->pages = pages;
133 	osd_data->length = length;
134 	osd_data->alignment = alignment;
135 	osd_data->pages_from_pool = pages_from_pool;
136 	osd_data->own_pages = own_pages;
137 }
138 
139 static void ceph_osd_data_pagelist_init(struct ceph_osd_data *osd_data,
140 			struct ceph_pagelist *pagelist)
141 {
142 	osd_data->type = CEPH_OSD_DATA_TYPE_PAGELIST;
143 	osd_data->pagelist = pagelist;
144 }
145 
146 #ifdef CONFIG_BLOCK
147 static void ceph_osd_data_bio_init(struct ceph_osd_data *osd_data,
148 			struct bio *bio, size_t bio_length)
149 {
150 	osd_data->type = CEPH_OSD_DATA_TYPE_BIO;
151 	osd_data->bio = bio;
152 	osd_data->bio_length = bio_length;
153 }
154 #endif /* CONFIG_BLOCK */
155 
156 #define osd_req_op_data(oreq, whch, typ, fld)				\
157 ({									\
158 	struct ceph_osd_request *__oreq = (oreq);			\
159 	unsigned int __whch = (whch);					\
160 	BUG_ON(__whch >= __oreq->r_num_ops);				\
161 	&__oreq->r_ops[__whch].typ.fld;					\
162 })
163 
164 static struct ceph_osd_data *
165 osd_req_op_raw_data_in(struct ceph_osd_request *osd_req, unsigned int which)
166 {
167 	BUG_ON(which >= osd_req->r_num_ops);
168 
169 	return &osd_req->r_ops[which].raw_data_in;
170 }
171 
172 struct ceph_osd_data *
173 osd_req_op_extent_osd_data(struct ceph_osd_request *osd_req,
174 			unsigned int which)
175 {
176 	return osd_req_op_data(osd_req, which, extent, osd_data);
177 }
178 EXPORT_SYMBOL(osd_req_op_extent_osd_data);
179 
180 void osd_req_op_raw_data_in_pages(struct ceph_osd_request *osd_req,
181 			unsigned int which, struct page **pages,
182 			u64 length, u32 alignment,
183 			bool pages_from_pool, bool own_pages)
184 {
185 	struct ceph_osd_data *osd_data;
186 
187 	osd_data = osd_req_op_raw_data_in(osd_req, which);
188 	ceph_osd_data_pages_init(osd_data, pages, length, alignment,
189 				pages_from_pool, own_pages);
190 }
191 EXPORT_SYMBOL(osd_req_op_raw_data_in_pages);
192 
193 void osd_req_op_extent_osd_data_pages(struct ceph_osd_request *osd_req,
194 			unsigned int which, struct page **pages,
195 			u64 length, u32 alignment,
196 			bool pages_from_pool, bool own_pages)
197 {
198 	struct ceph_osd_data *osd_data;
199 
200 	osd_data = osd_req_op_data(osd_req, which, extent, osd_data);
201 	ceph_osd_data_pages_init(osd_data, pages, length, alignment,
202 				pages_from_pool, own_pages);
203 }
204 EXPORT_SYMBOL(osd_req_op_extent_osd_data_pages);
205 
206 void osd_req_op_extent_osd_data_pagelist(struct ceph_osd_request *osd_req,
207 			unsigned int which, struct ceph_pagelist *pagelist)
208 {
209 	struct ceph_osd_data *osd_data;
210 
211 	osd_data = osd_req_op_data(osd_req, which, extent, osd_data);
212 	ceph_osd_data_pagelist_init(osd_data, pagelist);
213 }
214 EXPORT_SYMBOL(osd_req_op_extent_osd_data_pagelist);
215 
216 #ifdef CONFIG_BLOCK
217 void osd_req_op_extent_osd_data_bio(struct ceph_osd_request *osd_req,
218 			unsigned int which, struct bio *bio, size_t bio_length)
219 {
220 	struct ceph_osd_data *osd_data;
221 
222 	osd_data = osd_req_op_data(osd_req, which, extent, osd_data);
223 	ceph_osd_data_bio_init(osd_data, bio, bio_length);
224 }
225 EXPORT_SYMBOL(osd_req_op_extent_osd_data_bio);
226 #endif /* CONFIG_BLOCK */
227 
228 static void osd_req_op_cls_request_info_pagelist(
229 			struct ceph_osd_request *osd_req,
230 			unsigned int which, struct ceph_pagelist *pagelist)
231 {
232 	struct ceph_osd_data *osd_data;
233 
234 	osd_data = osd_req_op_data(osd_req, which, cls, request_info);
235 	ceph_osd_data_pagelist_init(osd_data, pagelist);
236 }
237 
238 void osd_req_op_cls_request_data_pagelist(
239 			struct ceph_osd_request *osd_req,
240 			unsigned int which, struct ceph_pagelist *pagelist)
241 {
242 	struct ceph_osd_data *osd_data;
243 
244 	osd_data = osd_req_op_data(osd_req, which, cls, request_data);
245 	ceph_osd_data_pagelist_init(osd_data, pagelist);
246 	osd_req->r_ops[which].cls.indata_len += pagelist->length;
247 	osd_req->r_ops[which].indata_len += pagelist->length;
248 }
249 EXPORT_SYMBOL(osd_req_op_cls_request_data_pagelist);
250 
251 void osd_req_op_cls_request_data_pages(struct ceph_osd_request *osd_req,
252 			unsigned int which, struct page **pages, u64 length,
253 			u32 alignment, bool pages_from_pool, bool own_pages)
254 {
255 	struct ceph_osd_data *osd_data;
256 
257 	osd_data = osd_req_op_data(osd_req, which, cls, request_data);
258 	ceph_osd_data_pages_init(osd_data, pages, length, alignment,
259 				pages_from_pool, own_pages);
260 	osd_req->r_ops[which].cls.indata_len += length;
261 	osd_req->r_ops[which].indata_len += length;
262 }
263 EXPORT_SYMBOL(osd_req_op_cls_request_data_pages);
264 
265 void osd_req_op_cls_response_data_pages(struct ceph_osd_request *osd_req,
266 			unsigned int which, struct page **pages, u64 length,
267 			u32 alignment, bool pages_from_pool, bool own_pages)
268 {
269 	struct ceph_osd_data *osd_data;
270 
271 	osd_data = osd_req_op_data(osd_req, which, cls, response_data);
272 	ceph_osd_data_pages_init(osd_data, pages, length, alignment,
273 				pages_from_pool, own_pages);
274 }
275 EXPORT_SYMBOL(osd_req_op_cls_response_data_pages);
276 
277 static u64 ceph_osd_data_length(struct ceph_osd_data *osd_data)
278 {
279 	switch (osd_data->type) {
280 	case CEPH_OSD_DATA_TYPE_NONE:
281 		return 0;
282 	case CEPH_OSD_DATA_TYPE_PAGES:
283 		return osd_data->length;
284 	case CEPH_OSD_DATA_TYPE_PAGELIST:
285 		return (u64)osd_data->pagelist->length;
286 #ifdef CONFIG_BLOCK
287 	case CEPH_OSD_DATA_TYPE_BIO:
288 		return (u64)osd_data->bio_length;
289 #endif /* CONFIG_BLOCK */
290 	default:
291 		WARN(true, "unrecognized data type %d\n", (int)osd_data->type);
292 		return 0;
293 	}
294 }
295 
296 static void ceph_osd_data_release(struct ceph_osd_data *osd_data)
297 {
298 	if (osd_data->type == CEPH_OSD_DATA_TYPE_PAGES && osd_data->own_pages) {
299 		int num_pages;
300 
301 		num_pages = calc_pages_for((u64)osd_data->alignment,
302 						(u64)osd_data->length);
303 		ceph_release_page_vector(osd_data->pages, num_pages);
304 	}
305 	ceph_osd_data_init(osd_data);
306 }
307 
308 static void osd_req_op_data_release(struct ceph_osd_request *osd_req,
309 			unsigned int which)
310 {
311 	struct ceph_osd_req_op *op;
312 
313 	BUG_ON(which >= osd_req->r_num_ops);
314 	op = &osd_req->r_ops[which];
315 
316 	switch (op->op) {
317 	case CEPH_OSD_OP_READ:
318 	case CEPH_OSD_OP_WRITE:
319 	case CEPH_OSD_OP_WRITEFULL:
320 		ceph_osd_data_release(&op->extent.osd_data);
321 		break;
322 	case CEPH_OSD_OP_CALL:
323 		ceph_osd_data_release(&op->cls.request_info);
324 		ceph_osd_data_release(&op->cls.request_data);
325 		ceph_osd_data_release(&op->cls.response_data);
326 		break;
327 	case CEPH_OSD_OP_SETXATTR:
328 	case CEPH_OSD_OP_CMPXATTR:
329 		ceph_osd_data_release(&op->xattr.osd_data);
330 		break;
331 	case CEPH_OSD_OP_STAT:
332 		ceph_osd_data_release(&op->raw_data_in);
333 		break;
334 	case CEPH_OSD_OP_NOTIFY_ACK:
335 		ceph_osd_data_release(&op->notify_ack.request_data);
336 		break;
337 	case CEPH_OSD_OP_NOTIFY:
338 		ceph_osd_data_release(&op->notify.request_data);
339 		ceph_osd_data_release(&op->notify.response_data);
340 		break;
341 	case CEPH_OSD_OP_LIST_WATCHERS:
342 		ceph_osd_data_release(&op->list_watchers.response_data);
343 		break;
344 	default:
345 		break;
346 	}
347 }
348 
349 /*
350  * Assumes @t is zero-initialized.
351  */
352 static void target_init(struct ceph_osd_request_target *t)
353 {
354 	ceph_oid_init(&t->base_oid);
355 	ceph_oloc_init(&t->base_oloc);
356 	ceph_oid_init(&t->target_oid);
357 	ceph_oloc_init(&t->target_oloc);
358 
359 	ceph_osds_init(&t->acting);
360 	ceph_osds_init(&t->up);
361 	t->size = -1;
362 	t->min_size = -1;
363 
364 	t->osd = CEPH_HOMELESS_OSD;
365 }
366 
367 static void target_copy(struct ceph_osd_request_target *dest,
368 			const struct ceph_osd_request_target *src)
369 {
370 	ceph_oid_copy(&dest->base_oid, &src->base_oid);
371 	ceph_oloc_copy(&dest->base_oloc, &src->base_oloc);
372 	ceph_oid_copy(&dest->target_oid, &src->target_oid);
373 	ceph_oloc_copy(&dest->target_oloc, &src->target_oloc);
374 
375 	dest->pgid = src->pgid; /* struct */
376 	dest->pg_num = src->pg_num;
377 	dest->pg_num_mask = src->pg_num_mask;
378 	ceph_osds_copy(&dest->acting, &src->acting);
379 	ceph_osds_copy(&dest->up, &src->up);
380 	dest->size = src->size;
381 	dest->min_size = src->min_size;
382 	dest->sort_bitwise = src->sort_bitwise;
383 
384 	dest->flags = src->flags;
385 	dest->paused = src->paused;
386 
387 	dest->osd = src->osd;
388 }
389 
390 static void target_destroy(struct ceph_osd_request_target *t)
391 {
392 	ceph_oid_destroy(&t->base_oid);
393 	ceph_oloc_destroy(&t->base_oloc);
394 	ceph_oid_destroy(&t->target_oid);
395 	ceph_oloc_destroy(&t->target_oloc);
396 }
397 
398 /*
399  * requests
400  */
401 static void request_release_checks(struct ceph_osd_request *req)
402 {
403 	WARN_ON(!RB_EMPTY_NODE(&req->r_node));
404 	WARN_ON(!RB_EMPTY_NODE(&req->r_mc_node));
405 	WARN_ON(!list_empty(&req->r_unsafe_item));
406 	WARN_ON(req->r_osd);
407 }
408 
409 static void ceph_osdc_release_request(struct kref *kref)
410 {
411 	struct ceph_osd_request *req = container_of(kref,
412 					    struct ceph_osd_request, r_kref);
413 	unsigned int which;
414 
415 	dout("%s %p (r_request %p r_reply %p)\n", __func__, req,
416 	     req->r_request, req->r_reply);
417 	request_release_checks(req);
418 
419 	if (req->r_request)
420 		ceph_msg_put(req->r_request);
421 	if (req->r_reply)
422 		ceph_msg_put(req->r_reply);
423 
424 	for (which = 0; which < req->r_num_ops; which++)
425 		osd_req_op_data_release(req, which);
426 
427 	target_destroy(&req->r_t);
428 	ceph_put_snap_context(req->r_snapc);
429 
430 	if (req->r_mempool)
431 		mempool_free(req, req->r_osdc->req_mempool);
432 	else if (req->r_num_ops <= CEPH_OSD_SLAB_OPS)
433 		kmem_cache_free(ceph_osd_request_cache, req);
434 	else
435 		kfree(req);
436 }
437 
438 void ceph_osdc_get_request(struct ceph_osd_request *req)
439 {
440 	dout("%s %p (was %d)\n", __func__, req,
441 	     atomic_read(&req->r_kref.refcount));
442 	kref_get(&req->r_kref);
443 }
444 EXPORT_SYMBOL(ceph_osdc_get_request);
445 
446 void ceph_osdc_put_request(struct ceph_osd_request *req)
447 {
448 	if (req) {
449 		dout("%s %p (was %d)\n", __func__, req,
450 		     atomic_read(&req->r_kref.refcount));
451 		kref_put(&req->r_kref, ceph_osdc_release_request);
452 	}
453 }
454 EXPORT_SYMBOL(ceph_osdc_put_request);
455 
456 static void request_init(struct ceph_osd_request *req)
457 {
458 	/* req only, each op is zeroed in _osd_req_op_init() */
459 	memset(req, 0, sizeof(*req));
460 
461 	kref_init(&req->r_kref);
462 	init_completion(&req->r_completion);
463 	init_completion(&req->r_done_completion);
464 	RB_CLEAR_NODE(&req->r_node);
465 	RB_CLEAR_NODE(&req->r_mc_node);
466 	INIT_LIST_HEAD(&req->r_unsafe_item);
467 
468 	target_init(&req->r_t);
469 }
470 
471 /*
472  * This is ugly, but it allows us to reuse linger registration and ping
473  * requests, keeping the structure of the code around send_linger{_ping}()
474  * reasonable.  Setting up a min_nr=2 mempool for each linger request
475  * and dealing with copying ops (this blasts req only, watch op remains
476  * intact) isn't any better.
477  */
478 static void request_reinit(struct ceph_osd_request *req)
479 {
480 	struct ceph_osd_client *osdc = req->r_osdc;
481 	bool mempool = req->r_mempool;
482 	unsigned int num_ops = req->r_num_ops;
483 	u64 snapid = req->r_snapid;
484 	struct ceph_snap_context *snapc = req->r_snapc;
485 	bool linger = req->r_linger;
486 	struct ceph_msg *request_msg = req->r_request;
487 	struct ceph_msg *reply_msg = req->r_reply;
488 
489 	dout("%s req %p\n", __func__, req);
490 	WARN_ON(atomic_read(&req->r_kref.refcount) != 1);
491 	request_release_checks(req);
492 
493 	WARN_ON(atomic_read(&request_msg->kref.refcount) != 1);
494 	WARN_ON(atomic_read(&reply_msg->kref.refcount) != 1);
495 	target_destroy(&req->r_t);
496 
497 	request_init(req);
498 	req->r_osdc = osdc;
499 	req->r_mempool = mempool;
500 	req->r_num_ops = num_ops;
501 	req->r_snapid = snapid;
502 	req->r_snapc = snapc;
503 	req->r_linger = linger;
504 	req->r_request = request_msg;
505 	req->r_reply = reply_msg;
506 }
507 
508 struct ceph_osd_request *ceph_osdc_alloc_request(struct ceph_osd_client *osdc,
509 					       struct ceph_snap_context *snapc,
510 					       unsigned int num_ops,
511 					       bool use_mempool,
512 					       gfp_t gfp_flags)
513 {
514 	struct ceph_osd_request *req;
515 
516 	if (use_mempool) {
517 		BUG_ON(num_ops > CEPH_OSD_SLAB_OPS);
518 		req = mempool_alloc(osdc->req_mempool, gfp_flags);
519 	} else if (num_ops <= CEPH_OSD_SLAB_OPS) {
520 		req = kmem_cache_alloc(ceph_osd_request_cache, gfp_flags);
521 	} else {
522 		BUG_ON(num_ops > CEPH_OSD_MAX_OPS);
523 		req = kmalloc(sizeof(*req) + num_ops * sizeof(req->r_ops[0]),
524 			      gfp_flags);
525 	}
526 	if (unlikely(!req))
527 		return NULL;
528 
529 	request_init(req);
530 	req->r_osdc = osdc;
531 	req->r_mempool = use_mempool;
532 	req->r_num_ops = num_ops;
533 	req->r_snapid = CEPH_NOSNAP;
534 	req->r_snapc = ceph_get_snap_context(snapc);
535 
536 	dout("%s req %p\n", __func__, req);
537 	return req;
538 }
539 EXPORT_SYMBOL(ceph_osdc_alloc_request);
540 
541 static int ceph_oloc_encoding_size(struct ceph_object_locator *oloc)
542 {
543 	return 8 + 4 + 4 + 4 + (oloc->pool_ns ? oloc->pool_ns->len : 0);
544 }
545 
546 int ceph_osdc_alloc_messages(struct ceph_osd_request *req, gfp_t gfp)
547 {
548 	struct ceph_osd_client *osdc = req->r_osdc;
549 	struct ceph_msg *msg;
550 	int msg_size;
551 
552 	WARN_ON(ceph_oid_empty(&req->r_base_oid));
553 	WARN_ON(ceph_oloc_empty(&req->r_base_oloc));
554 
555 	/* create request message */
556 	msg_size = 4 + 4 + 4; /* client_inc, osdmap_epoch, flags */
557 	msg_size += 4 + 4 + 4 + 8; /* mtime, reassert_version */
558 	msg_size += CEPH_ENCODING_START_BLK_LEN +
559 			ceph_oloc_encoding_size(&req->r_base_oloc); /* oloc */
560 	msg_size += 1 + 8 + 4 + 4; /* pgid */
561 	msg_size += 4 + req->r_base_oid.name_len; /* oid */
562 	msg_size += 2 + req->r_num_ops * sizeof(struct ceph_osd_op);
563 	msg_size += 8; /* snapid */
564 	msg_size += 8; /* snap_seq */
565 	msg_size += 4 + 8 * (req->r_snapc ? req->r_snapc->num_snaps : 0);
566 	msg_size += 4; /* retry_attempt */
567 
568 	if (req->r_mempool)
569 		msg = ceph_msgpool_get(&osdc->msgpool_op, 0);
570 	else
571 		msg = ceph_msg_new(CEPH_MSG_OSD_OP, msg_size, gfp, true);
572 	if (!msg)
573 		return -ENOMEM;
574 
575 	memset(msg->front.iov_base, 0, msg->front.iov_len);
576 	req->r_request = msg;
577 
578 	/* create reply message */
579 	msg_size = OSD_OPREPLY_FRONT_LEN;
580 	msg_size += req->r_base_oid.name_len;
581 	msg_size += req->r_num_ops * sizeof(struct ceph_osd_op);
582 
583 	if (req->r_mempool)
584 		msg = ceph_msgpool_get(&osdc->msgpool_op_reply, 0);
585 	else
586 		msg = ceph_msg_new(CEPH_MSG_OSD_OPREPLY, msg_size, gfp, true);
587 	if (!msg)
588 		return -ENOMEM;
589 
590 	req->r_reply = msg;
591 
592 	return 0;
593 }
594 EXPORT_SYMBOL(ceph_osdc_alloc_messages);
595 
596 static bool osd_req_opcode_valid(u16 opcode)
597 {
598 	switch (opcode) {
599 #define GENERATE_CASE(op, opcode, str)	case CEPH_OSD_OP_##op: return true;
600 __CEPH_FORALL_OSD_OPS(GENERATE_CASE)
601 #undef GENERATE_CASE
602 	default:
603 		return false;
604 	}
605 }
606 
607 /*
608  * This is an osd op init function for opcodes that have no data or
609  * other information associated with them.  It also serves as a
610  * common init routine for all the other init functions, below.
611  */
612 static struct ceph_osd_req_op *
613 _osd_req_op_init(struct ceph_osd_request *osd_req, unsigned int which,
614 		 u16 opcode, u32 flags)
615 {
616 	struct ceph_osd_req_op *op;
617 
618 	BUG_ON(which >= osd_req->r_num_ops);
619 	BUG_ON(!osd_req_opcode_valid(opcode));
620 
621 	op = &osd_req->r_ops[which];
622 	memset(op, 0, sizeof (*op));
623 	op->op = opcode;
624 	op->flags = flags;
625 
626 	return op;
627 }
628 
629 void osd_req_op_init(struct ceph_osd_request *osd_req,
630 		     unsigned int which, u16 opcode, u32 flags)
631 {
632 	(void)_osd_req_op_init(osd_req, which, opcode, flags);
633 }
634 EXPORT_SYMBOL(osd_req_op_init);
635 
636 void osd_req_op_extent_init(struct ceph_osd_request *osd_req,
637 				unsigned int which, u16 opcode,
638 				u64 offset, u64 length,
639 				u64 truncate_size, u32 truncate_seq)
640 {
641 	struct ceph_osd_req_op *op = _osd_req_op_init(osd_req, which,
642 						      opcode, 0);
643 	size_t payload_len = 0;
644 
645 	BUG_ON(opcode != CEPH_OSD_OP_READ && opcode != CEPH_OSD_OP_WRITE &&
646 	       opcode != CEPH_OSD_OP_WRITEFULL && opcode != CEPH_OSD_OP_ZERO &&
647 	       opcode != CEPH_OSD_OP_TRUNCATE);
648 
649 	op->extent.offset = offset;
650 	op->extent.length = length;
651 	op->extent.truncate_size = truncate_size;
652 	op->extent.truncate_seq = truncate_seq;
653 	if (opcode == CEPH_OSD_OP_WRITE || opcode == CEPH_OSD_OP_WRITEFULL)
654 		payload_len += length;
655 
656 	op->indata_len = payload_len;
657 }
658 EXPORT_SYMBOL(osd_req_op_extent_init);
659 
660 void osd_req_op_extent_update(struct ceph_osd_request *osd_req,
661 				unsigned int which, u64 length)
662 {
663 	struct ceph_osd_req_op *op;
664 	u64 previous;
665 
666 	BUG_ON(which >= osd_req->r_num_ops);
667 	op = &osd_req->r_ops[which];
668 	previous = op->extent.length;
669 
670 	if (length == previous)
671 		return;		/* Nothing to do */
672 	BUG_ON(length > previous);
673 
674 	op->extent.length = length;
675 	op->indata_len -= previous - length;
676 }
677 EXPORT_SYMBOL(osd_req_op_extent_update);
678 
679 void osd_req_op_extent_dup_last(struct ceph_osd_request *osd_req,
680 				unsigned int which, u64 offset_inc)
681 {
682 	struct ceph_osd_req_op *op, *prev_op;
683 
684 	BUG_ON(which + 1 >= osd_req->r_num_ops);
685 
686 	prev_op = &osd_req->r_ops[which];
687 	op = _osd_req_op_init(osd_req, which + 1, prev_op->op, prev_op->flags);
688 	/* dup previous one */
689 	op->indata_len = prev_op->indata_len;
690 	op->outdata_len = prev_op->outdata_len;
691 	op->extent = prev_op->extent;
692 	/* adjust offset */
693 	op->extent.offset += offset_inc;
694 	op->extent.length -= offset_inc;
695 
696 	if (op->op == CEPH_OSD_OP_WRITE || op->op == CEPH_OSD_OP_WRITEFULL)
697 		op->indata_len -= offset_inc;
698 }
699 EXPORT_SYMBOL(osd_req_op_extent_dup_last);
700 
701 void osd_req_op_cls_init(struct ceph_osd_request *osd_req, unsigned int which,
702 			u16 opcode, const char *class, const char *method)
703 {
704 	struct ceph_osd_req_op *op = _osd_req_op_init(osd_req, which,
705 						      opcode, 0);
706 	struct ceph_pagelist *pagelist;
707 	size_t payload_len = 0;
708 	size_t size;
709 
710 	BUG_ON(opcode != CEPH_OSD_OP_CALL);
711 
712 	pagelist = kmalloc(sizeof (*pagelist), GFP_NOFS);
713 	BUG_ON(!pagelist);
714 	ceph_pagelist_init(pagelist);
715 
716 	op->cls.class_name = class;
717 	size = strlen(class);
718 	BUG_ON(size > (size_t) U8_MAX);
719 	op->cls.class_len = size;
720 	ceph_pagelist_append(pagelist, class, size);
721 	payload_len += size;
722 
723 	op->cls.method_name = method;
724 	size = strlen(method);
725 	BUG_ON(size > (size_t) U8_MAX);
726 	op->cls.method_len = size;
727 	ceph_pagelist_append(pagelist, method, size);
728 	payload_len += size;
729 
730 	osd_req_op_cls_request_info_pagelist(osd_req, which, pagelist);
731 
732 	op->indata_len = payload_len;
733 }
734 EXPORT_SYMBOL(osd_req_op_cls_init);
735 
736 int osd_req_op_xattr_init(struct ceph_osd_request *osd_req, unsigned int which,
737 			  u16 opcode, const char *name, const void *value,
738 			  size_t size, u8 cmp_op, u8 cmp_mode)
739 {
740 	struct ceph_osd_req_op *op = _osd_req_op_init(osd_req, which,
741 						      opcode, 0);
742 	struct ceph_pagelist *pagelist;
743 	size_t payload_len;
744 
745 	BUG_ON(opcode != CEPH_OSD_OP_SETXATTR && opcode != CEPH_OSD_OP_CMPXATTR);
746 
747 	pagelist = kmalloc(sizeof(*pagelist), GFP_NOFS);
748 	if (!pagelist)
749 		return -ENOMEM;
750 
751 	ceph_pagelist_init(pagelist);
752 
753 	payload_len = strlen(name);
754 	op->xattr.name_len = payload_len;
755 	ceph_pagelist_append(pagelist, name, payload_len);
756 
757 	op->xattr.value_len = size;
758 	ceph_pagelist_append(pagelist, value, size);
759 	payload_len += size;
760 
761 	op->xattr.cmp_op = cmp_op;
762 	op->xattr.cmp_mode = cmp_mode;
763 
764 	ceph_osd_data_pagelist_init(&op->xattr.osd_data, pagelist);
765 	op->indata_len = payload_len;
766 	return 0;
767 }
768 EXPORT_SYMBOL(osd_req_op_xattr_init);
769 
770 /*
771  * @watch_opcode: CEPH_OSD_WATCH_OP_*
772  */
773 static void osd_req_op_watch_init(struct ceph_osd_request *req, int which,
774 				  u64 cookie, u8 watch_opcode)
775 {
776 	struct ceph_osd_req_op *op;
777 
778 	op = _osd_req_op_init(req, which, CEPH_OSD_OP_WATCH, 0);
779 	op->watch.cookie = cookie;
780 	op->watch.op = watch_opcode;
781 	op->watch.gen = 0;
782 }
783 
784 void osd_req_op_alloc_hint_init(struct ceph_osd_request *osd_req,
785 				unsigned int which,
786 				u64 expected_object_size,
787 				u64 expected_write_size)
788 {
789 	struct ceph_osd_req_op *op = _osd_req_op_init(osd_req, which,
790 						      CEPH_OSD_OP_SETALLOCHINT,
791 						      0);
792 
793 	op->alloc_hint.expected_object_size = expected_object_size;
794 	op->alloc_hint.expected_write_size = expected_write_size;
795 
796 	/*
797 	 * CEPH_OSD_OP_SETALLOCHINT op is advisory and therefore deemed
798 	 * not worth a feature bit.  Set FAILOK per-op flag to make
799 	 * sure older osds don't trip over an unsupported opcode.
800 	 */
801 	op->flags |= CEPH_OSD_OP_FLAG_FAILOK;
802 }
803 EXPORT_SYMBOL(osd_req_op_alloc_hint_init);
804 
805 static void ceph_osdc_msg_data_add(struct ceph_msg *msg,
806 				struct ceph_osd_data *osd_data)
807 {
808 	u64 length = ceph_osd_data_length(osd_data);
809 
810 	if (osd_data->type == CEPH_OSD_DATA_TYPE_PAGES) {
811 		BUG_ON(length > (u64) SIZE_MAX);
812 		if (length)
813 			ceph_msg_data_add_pages(msg, osd_data->pages,
814 					length, osd_data->alignment);
815 	} else if (osd_data->type == CEPH_OSD_DATA_TYPE_PAGELIST) {
816 		BUG_ON(!length);
817 		ceph_msg_data_add_pagelist(msg, osd_data->pagelist);
818 #ifdef CONFIG_BLOCK
819 	} else if (osd_data->type == CEPH_OSD_DATA_TYPE_BIO) {
820 		ceph_msg_data_add_bio(msg, osd_data->bio, length);
821 #endif
822 	} else {
823 		BUG_ON(osd_data->type != CEPH_OSD_DATA_TYPE_NONE);
824 	}
825 }
826 
827 static u32 osd_req_encode_op(struct ceph_osd_op *dst,
828 			     const struct ceph_osd_req_op *src)
829 {
830 	if (WARN_ON(!osd_req_opcode_valid(src->op))) {
831 		pr_err("unrecognized osd opcode %d\n", src->op);
832 
833 		return 0;
834 	}
835 
836 	switch (src->op) {
837 	case CEPH_OSD_OP_STAT:
838 		break;
839 	case CEPH_OSD_OP_READ:
840 	case CEPH_OSD_OP_WRITE:
841 	case CEPH_OSD_OP_WRITEFULL:
842 	case CEPH_OSD_OP_ZERO:
843 	case CEPH_OSD_OP_TRUNCATE:
844 		dst->extent.offset = cpu_to_le64(src->extent.offset);
845 		dst->extent.length = cpu_to_le64(src->extent.length);
846 		dst->extent.truncate_size =
847 			cpu_to_le64(src->extent.truncate_size);
848 		dst->extent.truncate_seq =
849 			cpu_to_le32(src->extent.truncate_seq);
850 		break;
851 	case CEPH_OSD_OP_CALL:
852 		dst->cls.class_len = src->cls.class_len;
853 		dst->cls.method_len = src->cls.method_len;
854 		dst->cls.indata_len = cpu_to_le32(src->cls.indata_len);
855 		break;
856 	case CEPH_OSD_OP_STARTSYNC:
857 		break;
858 	case CEPH_OSD_OP_WATCH:
859 		dst->watch.cookie = cpu_to_le64(src->watch.cookie);
860 		dst->watch.ver = cpu_to_le64(0);
861 		dst->watch.op = src->watch.op;
862 		dst->watch.gen = cpu_to_le32(src->watch.gen);
863 		break;
864 	case CEPH_OSD_OP_NOTIFY_ACK:
865 		break;
866 	case CEPH_OSD_OP_NOTIFY:
867 		dst->notify.cookie = cpu_to_le64(src->notify.cookie);
868 		break;
869 	case CEPH_OSD_OP_LIST_WATCHERS:
870 		break;
871 	case CEPH_OSD_OP_SETALLOCHINT:
872 		dst->alloc_hint.expected_object_size =
873 		    cpu_to_le64(src->alloc_hint.expected_object_size);
874 		dst->alloc_hint.expected_write_size =
875 		    cpu_to_le64(src->alloc_hint.expected_write_size);
876 		break;
877 	case CEPH_OSD_OP_SETXATTR:
878 	case CEPH_OSD_OP_CMPXATTR:
879 		dst->xattr.name_len = cpu_to_le32(src->xattr.name_len);
880 		dst->xattr.value_len = cpu_to_le32(src->xattr.value_len);
881 		dst->xattr.cmp_op = src->xattr.cmp_op;
882 		dst->xattr.cmp_mode = src->xattr.cmp_mode;
883 		break;
884 	case CEPH_OSD_OP_CREATE:
885 	case CEPH_OSD_OP_DELETE:
886 		break;
887 	default:
888 		pr_err("unsupported osd opcode %s\n",
889 			ceph_osd_op_name(src->op));
890 		WARN_ON(1);
891 
892 		return 0;
893 	}
894 
895 	dst->op = cpu_to_le16(src->op);
896 	dst->flags = cpu_to_le32(src->flags);
897 	dst->payload_len = cpu_to_le32(src->indata_len);
898 
899 	return src->indata_len;
900 }
901 
902 /*
903  * build new request AND message, calculate layout, and adjust file
904  * extent as needed.
905  *
906  * if the file was recently truncated, we include information about its
907  * old and new size so that the object can be updated appropriately.  (we
908  * avoid synchronously deleting truncated objects because it's slow.)
909  *
910  * if @do_sync, include a 'startsync' command so that the osd will flush
911  * data quickly.
912  */
913 struct ceph_osd_request *ceph_osdc_new_request(struct ceph_osd_client *osdc,
914 					       struct ceph_file_layout *layout,
915 					       struct ceph_vino vino,
916 					       u64 off, u64 *plen,
917 					       unsigned int which, int num_ops,
918 					       int opcode, int flags,
919 					       struct ceph_snap_context *snapc,
920 					       u32 truncate_seq,
921 					       u64 truncate_size,
922 					       bool use_mempool)
923 {
924 	struct ceph_osd_request *req;
925 	u64 objnum = 0;
926 	u64 objoff = 0;
927 	u64 objlen = 0;
928 	int r;
929 
930 	BUG_ON(opcode != CEPH_OSD_OP_READ && opcode != CEPH_OSD_OP_WRITE &&
931 	       opcode != CEPH_OSD_OP_ZERO && opcode != CEPH_OSD_OP_TRUNCATE &&
932 	       opcode != CEPH_OSD_OP_CREATE && opcode != CEPH_OSD_OP_DELETE);
933 
934 	req = ceph_osdc_alloc_request(osdc, snapc, num_ops, use_mempool,
935 					GFP_NOFS);
936 	if (!req) {
937 		r = -ENOMEM;
938 		goto fail;
939 	}
940 
941 	/* calculate max write size */
942 	r = calc_layout(layout, off, plen, &objnum, &objoff, &objlen);
943 	if (r)
944 		goto fail;
945 
946 	if (opcode == CEPH_OSD_OP_CREATE || opcode == CEPH_OSD_OP_DELETE) {
947 		osd_req_op_init(req, which, opcode, 0);
948 	} else {
949 		u32 object_size = layout->object_size;
950 		u32 object_base = off - objoff;
951 		if (!(truncate_seq == 1 && truncate_size == -1ULL)) {
952 			if (truncate_size <= object_base) {
953 				truncate_size = 0;
954 			} else {
955 				truncate_size -= object_base;
956 				if (truncate_size > object_size)
957 					truncate_size = object_size;
958 			}
959 		}
960 		osd_req_op_extent_init(req, which, opcode, objoff, objlen,
961 				       truncate_size, truncate_seq);
962 	}
963 
964 	req->r_flags = flags;
965 	req->r_base_oloc.pool = layout->pool_id;
966 	req->r_base_oloc.pool_ns = ceph_try_get_string(layout->pool_ns);
967 	ceph_oid_printf(&req->r_base_oid, "%llx.%08llx", vino.ino, objnum);
968 
969 	req->r_snapid = vino.snap;
970 	if (flags & CEPH_OSD_FLAG_WRITE)
971 		req->r_data_offset = off;
972 
973 	r = ceph_osdc_alloc_messages(req, GFP_NOFS);
974 	if (r)
975 		goto fail;
976 
977 	return req;
978 
979 fail:
980 	ceph_osdc_put_request(req);
981 	return ERR_PTR(r);
982 }
983 EXPORT_SYMBOL(ceph_osdc_new_request);
984 
985 /*
986  * We keep osd requests in an rbtree, sorted by ->r_tid.
987  */
988 DEFINE_RB_FUNCS(request, struct ceph_osd_request, r_tid, r_node)
989 DEFINE_RB_FUNCS(request_mc, struct ceph_osd_request, r_tid, r_mc_node)
990 
991 static bool osd_homeless(struct ceph_osd *osd)
992 {
993 	return osd->o_osd == CEPH_HOMELESS_OSD;
994 }
995 
996 static bool osd_registered(struct ceph_osd *osd)
997 {
998 	verify_osdc_locked(osd->o_osdc);
999 
1000 	return !RB_EMPTY_NODE(&osd->o_node);
1001 }
1002 
1003 /*
1004  * Assumes @osd is zero-initialized.
1005  */
1006 static void osd_init(struct ceph_osd *osd)
1007 {
1008 	atomic_set(&osd->o_ref, 1);
1009 	RB_CLEAR_NODE(&osd->o_node);
1010 	osd->o_requests = RB_ROOT;
1011 	osd->o_linger_requests = RB_ROOT;
1012 	INIT_LIST_HEAD(&osd->o_osd_lru);
1013 	INIT_LIST_HEAD(&osd->o_keepalive_item);
1014 	osd->o_incarnation = 1;
1015 	mutex_init(&osd->lock);
1016 }
1017 
1018 static void osd_cleanup(struct ceph_osd *osd)
1019 {
1020 	WARN_ON(!RB_EMPTY_NODE(&osd->o_node));
1021 	WARN_ON(!RB_EMPTY_ROOT(&osd->o_requests));
1022 	WARN_ON(!RB_EMPTY_ROOT(&osd->o_linger_requests));
1023 	WARN_ON(!list_empty(&osd->o_osd_lru));
1024 	WARN_ON(!list_empty(&osd->o_keepalive_item));
1025 
1026 	if (osd->o_auth.authorizer) {
1027 		WARN_ON(osd_homeless(osd));
1028 		ceph_auth_destroy_authorizer(osd->o_auth.authorizer);
1029 	}
1030 }
1031 
1032 /*
1033  * Track open sessions with osds.
1034  */
1035 static struct ceph_osd *create_osd(struct ceph_osd_client *osdc, int onum)
1036 {
1037 	struct ceph_osd *osd;
1038 
1039 	WARN_ON(onum == CEPH_HOMELESS_OSD);
1040 
1041 	osd = kzalloc(sizeof(*osd), GFP_NOIO | __GFP_NOFAIL);
1042 	osd_init(osd);
1043 	osd->o_osdc = osdc;
1044 	osd->o_osd = onum;
1045 
1046 	ceph_con_init(&osd->o_con, osd, &osd_con_ops, &osdc->client->msgr);
1047 
1048 	return osd;
1049 }
1050 
1051 static struct ceph_osd *get_osd(struct ceph_osd *osd)
1052 {
1053 	if (atomic_inc_not_zero(&osd->o_ref)) {
1054 		dout("get_osd %p %d -> %d\n", osd, atomic_read(&osd->o_ref)-1,
1055 		     atomic_read(&osd->o_ref));
1056 		return osd;
1057 	} else {
1058 		dout("get_osd %p FAIL\n", osd);
1059 		return NULL;
1060 	}
1061 }
1062 
1063 static void put_osd(struct ceph_osd *osd)
1064 {
1065 	dout("put_osd %p %d -> %d\n", osd, atomic_read(&osd->o_ref),
1066 	     atomic_read(&osd->o_ref) - 1);
1067 	if (atomic_dec_and_test(&osd->o_ref)) {
1068 		osd_cleanup(osd);
1069 		kfree(osd);
1070 	}
1071 }
1072 
1073 DEFINE_RB_FUNCS(osd, struct ceph_osd, o_osd, o_node)
1074 
1075 static void __move_osd_to_lru(struct ceph_osd *osd)
1076 {
1077 	struct ceph_osd_client *osdc = osd->o_osdc;
1078 
1079 	dout("%s osd %p osd%d\n", __func__, osd, osd->o_osd);
1080 	BUG_ON(!list_empty(&osd->o_osd_lru));
1081 
1082 	spin_lock(&osdc->osd_lru_lock);
1083 	list_add_tail(&osd->o_osd_lru, &osdc->osd_lru);
1084 	spin_unlock(&osdc->osd_lru_lock);
1085 
1086 	osd->lru_ttl = jiffies + osdc->client->options->osd_idle_ttl;
1087 }
1088 
1089 static void maybe_move_osd_to_lru(struct ceph_osd *osd)
1090 {
1091 	if (RB_EMPTY_ROOT(&osd->o_requests) &&
1092 	    RB_EMPTY_ROOT(&osd->o_linger_requests))
1093 		__move_osd_to_lru(osd);
1094 }
1095 
1096 static void __remove_osd_from_lru(struct ceph_osd *osd)
1097 {
1098 	struct ceph_osd_client *osdc = osd->o_osdc;
1099 
1100 	dout("%s osd %p osd%d\n", __func__, osd, osd->o_osd);
1101 
1102 	spin_lock(&osdc->osd_lru_lock);
1103 	if (!list_empty(&osd->o_osd_lru))
1104 		list_del_init(&osd->o_osd_lru);
1105 	spin_unlock(&osdc->osd_lru_lock);
1106 }
1107 
1108 /*
1109  * Close the connection and assign any leftover requests to the
1110  * homeless session.
1111  */
1112 static void close_osd(struct ceph_osd *osd)
1113 {
1114 	struct ceph_osd_client *osdc = osd->o_osdc;
1115 	struct rb_node *n;
1116 
1117 	verify_osdc_wrlocked(osdc);
1118 	dout("%s osd %p osd%d\n", __func__, osd, osd->o_osd);
1119 
1120 	ceph_con_close(&osd->o_con);
1121 
1122 	for (n = rb_first(&osd->o_requests); n; ) {
1123 		struct ceph_osd_request *req =
1124 		    rb_entry(n, struct ceph_osd_request, r_node);
1125 
1126 		n = rb_next(n); /* unlink_request() */
1127 
1128 		dout(" reassigning req %p tid %llu\n", req, req->r_tid);
1129 		unlink_request(osd, req);
1130 		link_request(&osdc->homeless_osd, req);
1131 	}
1132 	for (n = rb_first(&osd->o_linger_requests); n; ) {
1133 		struct ceph_osd_linger_request *lreq =
1134 		    rb_entry(n, struct ceph_osd_linger_request, node);
1135 
1136 		n = rb_next(n); /* unlink_linger() */
1137 
1138 		dout(" reassigning lreq %p linger_id %llu\n", lreq,
1139 		     lreq->linger_id);
1140 		unlink_linger(osd, lreq);
1141 		link_linger(&osdc->homeless_osd, lreq);
1142 	}
1143 
1144 	__remove_osd_from_lru(osd);
1145 	erase_osd(&osdc->osds, osd);
1146 	put_osd(osd);
1147 }
1148 
1149 /*
1150  * reset osd connect
1151  */
1152 static int reopen_osd(struct ceph_osd *osd)
1153 {
1154 	struct ceph_entity_addr *peer_addr;
1155 
1156 	dout("%s osd %p osd%d\n", __func__, osd, osd->o_osd);
1157 
1158 	if (RB_EMPTY_ROOT(&osd->o_requests) &&
1159 	    RB_EMPTY_ROOT(&osd->o_linger_requests)) {
1160 		close_osd(osd);
1161 		return -ENODEV;
1162 	}
1163 
1164 	peer_addr = &osd->o_osdc->osdmap->osd_addr[osd->o_osd];
1165 	if (!memcmp(peer_addr, &osd->o_con.peer_addr, sizeof (*peer_addr)) &&
1166 			!ceph_con_opened(&osd->o_con)) {
1167 		struct rb_node *n;
1168 
1169 		dout("osd addr hasn't changed and connection never opened, "
1170 		     "letting msgr retry\n");
1171 		/* touch each r_stamp for handle_timeout()'s benfit */
1172 		for (n = rb_first(&osd->o_requests); n; n = rb_next(n)) {
1173 			struct ceph_osd_request *req =
1174 			    rb_entry(n, struct ceph_osd_request, r_node);
1175 			req->r_stamp = jiffies;
1176 		}
1177 
1178 		return -EAGAIN;
1179 	}
1180 
1181 	ceph_con_close(&osd->o_con);
1182 	ceph_con_open(&osd->o_con, CEPH_ENTITY_TYPE_OSD, osd->o_osd, peer_addr);
1183 	osd->o_incarnation++;
1184 
1185 	return 0;
1186 }
1187 
1188 static struct ceph_osd *lookup_create_osd(struct ceph_osd_client *osdc, int o,
1189 					  bool wrlocked)
1190 {
1191 	struct ceph_osd *osd;
1192 
1193 	if (wrlocked)
1194 		verify_osdc_wrlocked(osdc);
1195 	else
1196 		verify_osdc_locked(osdc);
1197 
1198 	if (o != CEPH_HOMELESS_OSD)
1199 		osd = lookup_osd(&osdc->osds, o);
1200 	else
1201 		osd = &osdc->homeless_osd;
1202 	if (!osd) {
1203 		if (!wrlocked)
1204 			return ERR_PTR(-EAGAIN);
1205 
1206 		osd = create_osd(osdc, o);
1207 		insert_osd(&osdc->osds, osd);
1208 		ceph_con_open(&osd->o_con, CEPH_ENTITY_TYPE_OSD, osd->o_osd,
1209 			      &osdc->osdmap->osd_addr[osd->o_osd]);
1210 	}
1211 
1212 	dout("%s osdc %p osd%d -> osd %p\n", __func__, osdc, o, osd);
1213 	return osd;
1214 }
1215 
1216 /*
1217  * Create request <-> OSD session relation.
1218  *
1219  * @req has to be assigned a tid, @osd may be homeless.
1220  */
1221 static void link_request(struct ceph_osd *osd, struct ceph_osd_request *req)
1222 {
1223 	verify_osd_locked(osd);
1224 	WARN_ON(!req->r_tid || req->r_osd);
1225 	dout("%s osd %p osd%d req %p tid %llu\n", __func__, osd, osd->o_osd,
1226 	     req, req->r_tid);
1227 
1228 	if (!osd_homeless(osd))
1229 		__remove_osd_from_lru(osd);
1230 	else
1231 		atomic_inc(&osd->o_osdc->num_homeless);
1232 
1233 	get_osd(osd);
1234 	insert_request(&osd->o_requests, req);
1235 	req->r_osd = osd;
1236 }
1237 
1238 static void unlink_request(struct ceph_osd *osd, struct ceph_osd_request *req)
1239 {
1240 	verify_osd_locked(osd);
1241 	WARN_ON(req->r_osd != osd);
1242 	dout("%s osd %p osd%d req %p tid %llu\n", __func__, osd, osd->o_osd,
1243 	     req, req->r_tid);
1244 
1245 	req->r_osd = NULL;
1246 	erase_request(&osd->o_requests, req);
1247 	put_osd(osd);
1248 
1249 	if (!osd_homeless(osd))
1250 		maybe_move_osd_to_lru(osd);
1251 	else
1252 		atomic_dec(&osd->o_osdc->num_homeless);
1253 }
1254 
1255 static bool __pool_full(struct ceph_pg_pool_info *pi)
1256 {
1257 	return pi->flags & CEPH_POOL_FLAG_FULL;
1258 }
1259 
1260 static bool have_pool_full(struct ceph_osd_client *osdc)
1261 {
1262 	struct rb_node *n;
1263 
1264 	for (n = rb_first(&osdc->osdmap->pg_pools); n; n = rb_next(n)) {
1265 		struct ceph_pg_pool_info *pi =
1266 		    rb_entry(n, struct ceph_pg_pool_info, node);
1267 
1268 		if (__pool_full(pi))
1269 			return true;
1270 	}
1271 
1272 	return false;
1273 }
1274 
1275 static bool pool_full(struct ceph_osd_client *osdc, s64 pool_id)
1276 {
1277 	struct ceph_pg_pool_info *pi;
1278 
1279 	pi = ceph_pg_pool_by_id(osdc->osdmap, pool_id);
1280 	if (!pi)
1281 		return false;
1282 
1283 	return __pool_full(pi);
1284 }
1285 
1286 /*
1287  * Returns whether a request should be blocked from being sent
1288  * based on the current osdmap and osd_client settings.
1289  */
1290 static bool target_should_be_paused(struct ceph_osd_client *osdc,
1291 				    const struct ceph_osd_request_target *t,
1292 				    struct ceph_pg_pool_info *pi)
1293 {
1294 	bool pauserd = ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSERD);
1295 	bool pausewr = ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSEWR) ||
1296 		       ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL) ||
1297 		       __pool_full(pi);
1298 
1299 	WARN_ON(pi->id != t->base_oloc.pool);
1300 	return (t->flags & CEPH_OSD_FLAG_READ && pauserd) ||
1301 	       (t->flags & CEPH_OSD_FLAG_WRITE && pausewr);
1302 }
1303 
1304 enum calc_target_result {
1305 	CALC_TARGET_NO_ACTION = 0,
1306 	CALC_TARGET_NEED_RESEND,
1307 	CALC_TARGET_POOL_DNE,
1308 };
1309 
1310 static enum calc_target_result calc_target(struct ceph_osd_client *osdc,
1311 					   struct ceph_osd_request_target *t,
1312 					   u32 *last_force_resend,
1313 					   bool any_change)
1314 {
1315 	struct ceph_pg_pool_info *pi;
1316 	struct ceph_pg pgid, last_pgid;
1317 	struct ceph_osds up, acting;
1318 	bool force_resend = false;
1319 	bool need_check_tiering = false;
1320 	bool need_resend = false;
1321 	bool sort_bitwise = ceph_osdmap_flag(osdc, CEPH_OSDMAP_SORTBITWISE);
1322 	enum calc_target_result ct_res;
1323 	int ret;
1324 
1325 	pi = ceph_pg_pool_by_id(osdc->osdmap, t->base_oloc.pool);
1326 	if (!pi) {
1327 		t->osd = CEPH_HOMELESS_OSD;
1328 		ct_res = CALC_TARGET_POOL_DNE;
1329 		goto out;
1330 	}
1331 
1332 	if (osdc->osdmap->epoch == pi->last_force_request_resend) {
1333 		if (last_force_resend &&
1334 		    *last_force_resend < pi->last_force_request_resend) {
1335 			*last_force_resend = pi->last_force_request_resend;
1336 			force_resend = true;
1337 		} else if (!last_force_resend) {
1338 			force_resend = true;
1339 		}
1340 	}
1341 	if (ceph_oid_empty(&t->target_oid) || force_resend) {
1342 		ceph_oid_copy(&t->target_oid, &t->base_oid);
1343 		need_check_tiering = true;
1344 	}
1345 	if (ceph_oloc_empty(&t->target_oloc) || force_resend) {
1346 		ceph_oloc_copy(&t->target_oloc, &t->base_oloc);
1347 		need_check_tiering = true;
1348 	}
1349 
1350 	if (need_check_tiering &&
1351 	    (t->flags & CEPH_OSD_FLAG_IGNORE_OVERLAY) == 0) {
1352 		if (t->flags & CEPH_OSD_FLAG_READ && pi->read_tier >= 0)
1353 			t->target_oloc.pool = pi->read_tier;
1354 		if (t->flags & CEPH_OSD_FLAG_WRITE && pi->write_tier >= 0)
1355 			t->target_oloc.pool = pi->write_tier;
1356 	}
1357 
1358 	ret = ceph_object_locator_to_pg(osdc->osdmap, &t->target_oid,
1359 					&t->target_oloc, &pgid);
1360 	if (ret) {
1361 		WARN_ON(ret != -ENOENT);
1362 		t->osd = CEPH_HOMELESS_OSD;
1363 		ct_res = CALC_TARGET_POOL_DNE;
1364 		goto out;
1365 	}
1366 	last_pgid.pool = pgid.pool;
1367 	last_pgid.seed = ceph_stable_mod(pgid.seed, t->pg_num, t->pg_num_mask);
1368 
1369 	ceph_pg_to_up_acting_osds(osdc->osdmap, &pgid, &up, &acting);
1370 	if (any_change &&
1371 	    ceph_is_new_interval(&t->acting,
1372 				 &acting,
1373 				 &t->up,
1374 				 &up,
1375 				 t->size,
1376 				 pi->size,
1377 				 t->min_size,
1378 				 pi->min_size,
1379 				 t->pg_num,
1380 				 pi->pg_num,
1381 				 t->sort_bitwise,
1382 				 sort_bitwise,
1383 				 &last_pgid))
1384 		force_resend = true;
1385 
1386 	if (t->paused && !target_should_be_paused(osdc, t, pi)) {
1387 		t->paused = false;
1388 		need_resend = true;
1389 	}
1390 
1391 	if (ceph_pg_compare(&t->pgid, &pgid) ||
1392 	    ceph_osds_changed(&t->acting, &acting, any_change) ||
1393 	    force_resend) {
1394 		t->pgid = pgid; /* struct */
1395 		ceph_osds_copy(&t->acting, &acting);
1396 		ceph_osds_copy(&t->up, &up);
1397 		t->size = pi->size;
1398 		t->min_size = pi->min_size;
1399 		t->pg_num = pi->pg_num;
1400 		t->pg_num_mask = pi->pg_num_mask;
1401 		t->sort_bitwise = sort_bitwise;
1402 
1403 		t->osd = acting.primary;
1404 		need_resend = true;
1405 	}
1406 
1407 	ct_res = need_resend ? CALC_TARGET_NEED_RESEND : CALC_TARGET_NO_ACTION;
1408 out:
1409 	dout("%s t %p -> ct_res %d osd %d\n", __func__, t, ct_res, t->osd);
1410 	return ct_res;
1411 }
1412 
1413 static void setup_request_data(struct ceph_osd_request *req,
1414 			       struct ceph_msg *msg)
1415 {
1416 	u32 data_len = 0;
1417 	int i;
1418 
1419 	if (!list_empty(&msg->data))
1420 		return;
1421 
1422 	WARN_ON(msg->data_length);
1423 	for (i = 0; i < req->r_num_ops; i++) {
1424 		struct ceph_osd_req_op *op = &req->r_ops[i];
1425 
1426 		switch (op->op) {
1427 		/* request */
1428 		case CEPH_OSD_OP_WRITE:
1429 		case CEPH_OSD_OP_WRITEFULL:
1430 			WARN_ON(op->indata_len != op->extent.length);
1431 			ceph_osdc_msg_data_add(msg, &op->extent.osd_data);
1432 			break;
1433 		case CEPH_OSD_OP_SETXATTR:
1434 		case CEPH_OSD_OP_CMPXATTR:
1435 			WARN_ON(op->indata_len != op->xattr.name_len +
1436 						  op->xattr.value_len);
1437 			ceph_osdc_msg_data_add(msg, &op->xattr.osd_data);
1438 			break;
1439 		case CEPH_OSD_OP_NOTIFY_ACK:
1440 			ceph_osdc_msg_data_add(msg,
1441 					       &op->notify_ack.request_data);
1442 			break;
1443 
1444 		/* reply */
1445 		case CEPH_OSD_OP_STAT:
1446 			ceph_osdc_msg_data_add(req->r_reply,
1447 					       &op->raw_data_in);
1448 			break;
1449 		case CEPH_OSD_OP_READ:
1450 			ceph_osdc_msg_data_add(req->r_reply,
1451 					       &op->extent.osd_data);
1452 			break;
1453 		case CEPH_OSD_OP_LIST_WATCHERS:
1454 			ceph_osdc_msg_data_add(req->r_reply,
1455 					       &op->list_watchers.response_data);
1456 			break;
1457 
1458 		/* both */
1459 		case CEPH_OSD_OP_CALL:
1460 			WARN_ON(op->indata_len != op->cls.class_len +
1461 						  op->cls.method_len +
1462 						  op->cls.indata_len);
1463 			ceph_osdc_msg_data_add(msg, &op->cls.request_info);
1464 			/* optional, can be NONE */
1465 			ceph_osdc_msg_data_add(msg, &op->cls.request_data);
1466 			/* optional, can be NONE */
1467 			ceph_osdc_msg_data_add(req->r_reply,
1468 					       &op->cls.response_data);
1469 			break;
1470 		case CEPH_OSD_OP_NOTIFY:
1471 			ceph_osdc_msg_data_add(msg,
1472 					       &op->notify.request_data);
1473 			ceph_osdc_msg_data_add(req->r_reply,
1474 					       &op->notify.response_data);
1475 			break;
1476 		}
1477 
1478 		data_len += op->indata_len;
1479 	}
1480 
1481 	WARN_ON(data_len != msg->data_length);
1482 }
1483 
1484 static void encode_request(struct ceph_osd_request *req, struct ceph_msg *msg)
1485 {
1486 	void *p = msg->front.iov_base;
1487 	void *const end = p + msg->front_alloc_len;
1488 	u32 data_len = 0;
1489 	int i;
1490 
1491 	if (req->r_flags & CEPH_OSD_FLAG_WRITE) {
1492 		/* snapshots aren't writeable */
1493 		WARN_ON(req->r_snapid != CEPH_NOSNAP);
1494 	} else {
1495 		WARN_ON(req->r_mtime.tv_sec || req->r_mtime.tv_nsec ||
1496 			req->r_data_offset || req->r_snapc);
1497 	}
1498 
1499 	setup_request_data(req, msg);
1500 
1501 	ceph_encode_32(&p, 1); /* client_inc, always 1 */
1502 	ceph_encode_32(&p, req->r_osdc->osdmap->epoch);
1503 	ceph_encode_32(&p, req->r_flags);
1504 	ceph_encode_timespec(p, &req->r_mtime);
1505 	p += sizeof(struct ceph_timespec);
1506 	/* aka reassert_version */
1507 	memcpy(p, &req->r_replay_version, sizeof(req->r_replay_version));
1508 	p += sizeof(req->r_replay_version);
1509 
1510 	/* oloc */
1511 	ceph_start_encoding(&p, 5, 4,
1512 			    ceph_oloc_encoding_size(&req->r_t.target_oloc));
1513 	ceph_encode_64(&p, req->r_t.target_oloc.pool);
1514 	ceph_encode_32(&p, -1); /* preferred */
1515 	ceph_encode_32(&p, 0); /* key len */
1516 	if (req->r_t.target_oloc.pool_ns)
1517 		ceph_encode_string(&p, end, req->r_t.target_oloc.pool_ns->str,
1518 				   req->r_t.target_oloc.pool_ns->len);
1519 	else
1520 		ceph_encode_32(&p, 0);
1521 
1522 	/* pgid */
1523 	ceph_encode_8(&p, 1);
1524 	ceph_encode_64(&p, req->r_t.pgid.pool);
1525 	ceph_encode_32(&p, req->r_t.pgid.seed);
1526 	ceph_encode_32(&p, -1); /* preferred */
1527 
1528 	/* oid */
1529 	ceph_encode_32(&p, req->r_t.target_oid.name_len);
1530 	memcpy(p, req->r_t.target_oid.name, req->r_t.target_oid.name_len);
1531 	p += req->r_t.target_oid.name_len;
1532 
1533 	/* ops, can imply data */
1534 	ceph_encode_16(&p, req->r_num_ops);
1535 	for (i = 0; i < req->r_num_ops; i++) {
1536 		data_len += osd_req_encode_op(p, &req->r_ops[i]);
1537 		p += sizeof(struct ceph_osd_op);
1538 	}
1539 
1540 	ceph_encode_64(&p, req->r_snapid); /* snapid */
1541 	if (req->r_snapc) {
1542 		ceph_encode_64(&p, req->r_snapc->seq);
1543 		ceph_encode_32(&p, req->r_snapc->num_snaps);
1544 		for (i = 0; i < req->r_snapc->num_snaps; i++)
1545 			ceph_encode_64(&p, req->r_snapc->snaps[i]);
1546 	} else {
1547 		ceph_encode_64(&p, 0); /* snap_seq */
1548 		ceph_encode_32(&p, 0); /* snaps len */
1549 	}
1550 
1551 	ceph_encode_32(&p, req->r_attempts); /* retry_attempt */
1552 
1553 	BUG_ON(p > end);
1554 	msg->front.iov_len = p - msg->front.iov_base;
1555 	msg->hdr.version = cpu_to_le16(4); /* MOSDOp v4 */
1556 	msg->hdr.front_len = cpu_to_le32(msg->front.iov_len);
1557 	msg->hdr.data_len = cpu_to_le32(data_len);
1558 	/*
1559 	 * The header "data_off" is a hint to the receiver allowing it
1560 	 * to align received data into its buffers such that there's no
1561 	 * need to re-copy it before writing it to disk (direct I/O).
1562 	 */
1563 	msg->hdr.data_off = cpu_to_le16(req->r_data_offset);
1564 
1565 	dout("%s req %p oid %s oid_len %d front %zu data %u\n", __func__,
1566 	     req, req->r_t.target_oid.name, req->r_t.target_oid.name_len,
1567 	     msg->front.iov_len, data_len);
1568 }
1569 
1570 /*
1571  * @req has to be assigned a tid and registered.
1572  */
1573 static void send_request(struct ceph_osd_request *req)
1574 {
1575 	struct ceph_osd *osd = req->r_osd;
1576 
1577 	verify_osd_locked(osd);
1578 	WARN_ON(osd->o_osd != req->r_t.osd);
1579 
1580 	/*
1581 	 * We may have a previously queued request message hanging
1582 	 * around.  Cancel it to avoid corrupting the msgr.
1583 	 */
1584 	if (req->r_sent)
1585 		ceph_msg_revoke(req->r_request);
1586 
1587 	req->r_flags |= CEPH_OSD_FLAG_KNOWN_REDIR;
1588 	if (req->r_attempts)
1589 		req->r_flags |= CEPH_OSD_FLAG_RETRY;
1590 	else
1591 		WARN_ON(req->r_flags & CEPH_OSD_FLAG_RETRY);
1592 
1593 	encode_request(req, req->r_request);
1594 
1595 	dout("%s req %p tid %llu to pg %llu.%x osd%d flags 0x%x attempt %d\n",
1596 	     __func__, req, req->r_tid, req->r_t.pgid.pool, req->r_t.pgid.seed,
1597 	     req->r_t.osd, req->r_flags, req->r_attempts);
1598 
1599 	req->r_t.paused = false;
1600 	req->r_stamp = jiffies;
1601 	req->r_attempts++;
1602 
1603 	req->r_sent = osd->o_incarnation;
1604 	req->r_request->hdr.tid = cpu_to_le64(req->r_tid);
1605 	ceph_con_send(&osd->o_con, ceph_msg_get(req->r_request));
1606 }
1607 
1608 static void maybe_request_map(struct ceph_osd_client *osdc)
1609 {
1610 	bool continuous = false;
1611 
1612 	verify_osdc_locked(osdc);
1613 	WARN_ON(!osdc->osdmap->epoch);
1614 
1615 	if (ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL) ||
1616 	    ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSERD) ||
1617 	    ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSEWR)) {
1618 		dout("%s osdc %p continuous\n", __func__, osdc);
1619 		continuous = true;
1620 	} else {
1621 		dout("%s osdc %p onetime\n", __func__, osdc);
1622 	}
1623 
1624 	if (ceph_monc_want_map(&osdc->client->monc, CEPH_SUB_OSDMAP,
1625 			       osdc->osdmap->epoch + 1, continuous))
1626 		ceph_monc_renew_subs(&osdc->client->monc);
1627 }
1628 
1629 static void send_map_check(struct ceph_osd_request *req);
1630 
1631 static void __submit_request(struct ceph_osd_request *req, bool wrlocked)
1632 {
1633 	struct ceph_osd_client *osdc = req->r_osdc;
1634 	struct ceph_osd *osd;
1635 	enum calc_target_result ct_res;
1636 	bool need_send = false;
1637 	bool promoted = false;
1638 
1639 	WARN_ON(req->r_tid || req->r_got_reply);
1640 	dout("%s req %p wrlocked %d\n", __func__, req, wrlocked);
1641 
1642 again:
1643 	ct_res = calc_target(osdc, &req->r_t, &req->r_last_force_resend, false);
1644 	if (ct_res == CALC_TARGET_POOL_DNE && !wrlocked)
1645 		goto promote;
1646 
1647 	osd = lookup_create_osd(osdc, req->r_t.osd, wrlocked);
1648 	if (IS_ERR(osd)) {
1649 		WARN_ON(PTR_ERR(osd) != -EAGAIN || wrlocked);
1650 		goto promote;
1651 	}
1652 
1653 	if ((req->r_flags & CEPH_OSD_FLAG_WRITE) &&
1654 	    ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSEWR)) {
1655 		dout("req %p pausewr\n", req);
1656 		req->r_t.paused = true;
1657 		maybe_request_map(osdc);
1658 	} else if ((req->r_flags & CEPH_OSD_FLAG_READ) &&
1659 		   ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSERD)) {
1660 		dout("req %p pauserd\n", req);
1661 		req->r_t.paused = true;
1662 		maybe_request_map(osdc);
1663 	} else if ((req->r_flags & CEPH_OSD_FLAG_WRITE) &&
1664 		   !(req->r_flags & (CEPH_OSD_FLAG_FULL_TRY |
1665 				     CEPH_OSD_FLAG_FULL_FORCE)) &&
1666 		   (ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL) ||
1667 		    pool_full(osdc, req->r_t.base_oloc.pool))) {
1668 		dout("req %p full/pool_full\n", req);
1669 		pr_warn_ratelimited("FULL or reached pool quota\n");
1670 		req->r_t.paused = true;
1671 		maybe_request_map(osdc);
1672 	} else if (!osd_homeless(osd)) {
1673 		need_send = true;
1674 	} else {
1675 		maybe_request_map(osdc);
1676 	}
1677 
1678 	mutex_lock(&osd->lock);
1679 	/*
1680 	 * Assign the tid atomically with send_request() to protect
1681 	 * multiple writes to the same object from racing with each
1682 	 * other, resulting in out of order ops on the OSDs.
1683 	 */
1684 	req->r_tid = atomic64_inc_return(&osdc->last_tid);
1685 	link_request(osd, req);
1686 	if (need_send)
1687 		send_request(req);
1688 	mutex_unlock(&osd->lock);
1689 
1690 	if (ct_res == CALC_TARGET_POOL_DNE)
1691 		send_map_check(req);
1692 
1693 	if (promoted)
1694 		downgrade_write(&osdc->lock);
1695 	return;
1696 
1697 promote:
1698 	up_read(&osdc->lock);
1699 	down_write(&osdc->lock);
1700 	wrlocked = true;
1701 	promoted = true;
1702 	goto again;
1703 }
1704 
1705 static void account_request(struct ceph_osd_request *req)
1706 {
1707 	unsigned int mask = CEPH_OSD_FLAG_ACK | CEPH_OSD_FLAG_ONDISK;
1708 
1709 	if (req->r_flags & CEPH_OSD_FLAG_READ) {
1710 		WARN_ON(req->r_flags & mask);
1711 		req->r_flags |= CEPH_OSD_FLAG_ACK;
1712 	} else if (req->r_flags & CEPH_OSD_FLAG_WRITE)
1713 		WARN_ON(!(req->r_flags & mask));
1714 	else
1715 		WARN_ON(1);
1716 
1717 	WARN_ON(req->r_unsafe_callback && (req->r_flags & mask) != mask);
1718 	atomic_inc(&req->r_osdc->num_requests);
1719 }
1720 
1721 static void submit_request(struct ceph_osd_request *req, bool wrlocked)
1722 {
1723 	ceph_osdc_get_request(req);
1724 	account_request(req);
1725 	__submit_request(req, wrlocked);
1726 }
1727 
1728 static void finish_request(struct ceph_osd_request *req)
1729 {
1730 	struct ceph_osd_client *osdc = req->r_osdc;
1731 	struct ceph_osd *osd = req->r_osd;
1732 
1733 	verify_osd_locked(osd);
1734 	dout("%s req %p tid %llu\n", __func__, req, req->r_tid);
1735 
1736 	WARN_ON(lookup_request_mc(&osdc->map_checks, req->r_tid));
1737 	unlink_request(osd, req);
1738 	atomic_dec(&osdc->num_requests);
1739 
1740 	/*
1741 	 * If an OSD has failed or returned and a request has been sent
1742 	 * twice, it's possible to get a reply and end up here while the
1743 	 * request message is queued for delivery.  We will ignore the
1744 	 * reply, so not a big deal, but better to try and catch it.
1745 	 */
1746 	ceph_msg_revoke(req->r_request);
1747 	ceph_msg_revoke_incoming(req->r_reply);
1748 }
1749 
1750 static void __complete_request(struct ceph_osd_request *req)
1751 {
1752 	if (req->r_callback)
1753 		req->r_callback(req);
1754 	else
1755 		complete_all(&req->r_completion);
1756 }
1757 
1758 /*
1759  * Note that this is open-coded in handle_reply(), which has to deal
1760  * with ack vs commit, dup acks, etc.
1761  */
1762 static void complete_request(struct ceph_osd_request *req, int err)
1763 {
1764 	dout("%s req %p tid %llu err %d\n", __func__, req, req->r_tid, err);
1765 
1766 	req->r_result = err;
1767 	finish_request(req);
1768 	__complete_request(req);
1769 	complete_all(&req->r_done_completion);
1770 	ceph_osdc_put_request(req);
1771 }
1772 
1773 static void cancel_map_check(struct ceph_osd_request *req)
1774 {
1775 	struct ceph_osd_client *osdc = req->r_osdc;
1776 	struct ceph_osd_request *lookup_req;
1777 
1778 	verify_osdc_wrlocked(osdc);
1779 
1780 	lookup_req = lookup_request_mc(&osdc->map_checks, req->r_tid);
1781 	if (!lookup_req)
1782 		return;
1783 
1784 	WARN_ON(lookup_req != req);
1785 	erase_request_mc(&osdc->map_checks, req);
1786 	ceph_osdc_put_request(req);
1787 }
1788 
1789 static void cancel_request(struct ceph_osd_request *req)
1790 {
1791 	dout("%s req %p tid %llu\n", __func__, req, req->r_tid);
1792 
1793 	cancel_map_check(req);
1794 	finish_request(req);
1795 	complete_all(&req->r_done_completion);
1796 	ceph_osdc_put_request(req);
1797 }
1798 
1799 static void check_pool_dne(struct ceph_osd_request *req)
1800 {
1801 	struct ceph_osd_client *osdc = req->r_osdc;
1802 	struct ceph_osdmap *map = osdc->osdmap;
1803 
1804 	verify_osdc_wrlocked(osdc);
1805 	WARN_ON(!map->epoch);
1806 
1807 	if (req->r_attempts) {
1808 		/*
1809 		 * We sent a request earlier, which means that
1810 		 * previously the pool existed, and now it does not
1811 		 * (i.e., it was deleted).
1812 		 */
1813 		req->r_map_dne_bound = map->epoch;
1814 		dout("%s req %p tid %llu pool disappeared\n", __func__, req,
1815 		     req->r_tid);
1816 	} else {
1817 		dout("%s req %p tid %llu map_dne_bound %u have %u\n", __func__,
1818 		     req, req->r_tid, req->r_map_dne_bound, map->epoch);
1819 	}
1820 
1821 	if (req->r_map_dne_bound) {
1822 		if (map->epoch >= req->r_map_dne_bound) {
1823 			/* we had a new enough map */
1824 			pr_info_ratelimited("tid %llu pool does not exist\n",
1825 					    req->r_tid);
1826 			complete_request(req, -ENOENT);
1827 		}
1828 	} else {
1829 		send_map_check(req);
1830 	}
1831 }
1832 
1833 static void map_check_cb(struct ceph_mon_generic_request *greq)
1834 {
1835 	struct ceph_osd_client *osdc = &greq->monc->client->osdc;
1836 	struct ceph_osd_request *req;
1837 	u64 tid = greq->private_data;
1838 
1839 	WARN_ON(greq->result || !greq->u.newest);
1840 
1841 	down_write(&osdc->lock);
1842 	req = lookup_request_mc(&osdc->map_checks, tid);
1843 	if (!req) {
1844 		dout("%s tid %llu dne\n", __func__, tid);
1845 		goto out_unlock;
1846 	}
1847 
1848 	dout("%s req %p tid %llu map_dne_bound %u newest %llu\n", __func__,
1849 	     req, req->r_tid, req->r_map_dne_bound, greq->u.newest);
1850 	if (!req->r_map_dne_bound)
1851 		req->r_map_dne_bound = greq->u.newest;
1852 	erase_request_mc(&osdc->map_checks, req);
1853 	check_pool_dne(req);
1854 
1855 	ceph_osdc_put_request(req);
1856 out_unlock:
1857 	up_write(&osdc->lock);
1858 }
1859 
1860 static void send_map_check(struct ceph_osd_request *req)
1861 {
1862 	struct ceph_osd_client *osdc = req->r_osdc;
1863 	struct ceph_osd_request *lookup_req;
1864 	int ret;
1865 
1866 	verify_osdc_wrlocked(osdc);
1867 
1868 	lookup_req = lookup_request_mc(&osdc->map_checks, req->r_tid);
1869 	if (lookup_req) {
1870 		WARN_ON(lookup_req != req);
1871 		return;
1872 	}
1873 
1874 	ceph_osdc_get_request(req);
1875 	insert_request_mc(&osdc->map_checks, req);
1876 	ret = ceph_monc_get_version_async(&osdc->client->monc, "osdmap",
1877 					  map_check_cb, req->r_tid);
1878 	WARN_ON(ret);
1879 }
1880 
1881 /*
1882  * lingering requests, watch/notify v2 infrastructure
1883  */
1884 static void linger_release(struct kref *kref)
1885 {
1886 	struct ceph_osd_linger_request *lreq =
1887 	    container_of(kref, struct ceph_osd_linger_request, kref);
1888 
1889 	dout("%s lreq %p reg_req %p ping_req %p\n", __func__, lreq,
1890 	     lreq->reg_req, lreq->ping_req);
1891 	WARN_ON(!RB_EMPTY_NODE(&lreq->node));
1892 	WARN_ON(!RB_EMPTY_NODE(&lreq->osdc_node));
1893 	WARN_ON(!RB_EMPTY_NODE(&lreq->mc_node));
1894 	WARN_ON(!list_empty(&lreq->scan_item));
1895 	WARN_ON(!list_empty(&lreq->pending_lworks));
1896 	WARN_ON(lreq->osd);
1897 
1898 	if (lreq->reg_req)
1899 		ceph_osdc_put_request(lreq->reg_req);
1900 	if (lreq->ping_req)
1901 		ceph_osdc_put_request(lreq->ping_req);
1902 	target_destroy(&lreq->t);
1903 	kfree(lreq);
1904 }
1905 
1906 static void linger_put(struct ceph_osd_linger_request *lreq)
1907 {
1908 	if (lreq)
1909 		kref_put(&lreq->kref, linger_release);
1910 }
1911 
1912 static struct ceph_osd_linger_request *
1913 linger_get(struct ceph_osd_linger_request *lreq)
1914 {
1915 	kref_get(&lreq->kref);
1916 	return lreq;
1917 }
1918 
1919 static struct ceph_osd_linger_request *
1920 linger_alloc(struct ceph_osd_client *osdc)
1921 {
1922 	struct ceph_osd_linger_request *lreq;
1923 
1924 	lreq = kzalloc(sizeof(*lreq), GFP_NOIO);
1925 	if (!lreq)
1926 		return NULL;
1927 
1928 	kref_init(&lreq->kref);
1929 	mutex_init(&lreq->lock);
1930 	RB_CLEAR_NODE(&lreq->node);
1931 	RB_CLEAR_NODE(&lreq->osdc_node);
1932 	RB_CLEAR_NODE(&lreq->mc_node);
1933 	INIT_LIST_HEAD(&lreq->scan_item);
1934 	INIT_LIST_HEAD(&lreq->pending_lworks);
1935 	init_completion(&lreq->reg_commit_wait);
1936 	init_completion(&lreq->notify_finish_wait);
1937 
1938 	lreq->osdc = osdc;
1939 	target_init(&lreq->t);
1940 
1941 	dout("%s lreq %p\n", __func__, lreq);
1942 	return lreq;
1943 }
1944 
1945 DEFINE_RB_INSDEL_FUNCS(linger, struct ceph_osd_linger_request, linger_id, node)
1946 DEFINE_RB_FUNCS(linger_osdc, struct ceph_osd_linger_request, linger_id, osdc_node)
1947 DEFINE_RB_FUNCS(linger_mc, struct ceph_osd_linger_request, linger_id, mc_node)
1948 
1949 /*
1950  * Create linger request <-> OSD session relation.
1951  *
1952  * @lreq has to be registered, @osd may be homeless.
1953  */
1954 static void link_linger(struct ceph_osd *osd,
1955 			struct ceph_osd_linger_request *lreq)
1956 {
1957 	verify_osd_locked(osd);
1958 	WARN_ON(!lreq->linger_id || lreq->osd);
1959 	dout("%s osd %p osd%d lreq %p linger_id %llu\n", __func__, osd,
1960 	     osd->o_osd, lreq, lreq->linger_id);
1961 
1962 	if (!osd_homeless(osd))
1963 		__remove_osd_from_lru(osd);
1964 	else
1965 		atomic_inc(&osd->o_osdc->num_homeless);
1966 
1967 	get_osd(osd);
1968 	insert_linger(&osd->o_linger_requests, lreq);
1969 	lreq->osd = osd;
1970 }
1971 
1972 static void unlink_linger(struct ceph_osd *osd,
1973 			  struct ceph_osd_linger_request *lreq)
1974 {
1975 	verify_osd_locked(osd);
1976 	WARN_ON(lreq->osd != osd);
1977 	dout("%s osd %p osd%d lreq %p linger_id %llu\n", __func__, osd,
1978 	     osd->o_osd, lreq, lreq->linger_id);
1979 
1980 	lreq->osd = NULL;
1981 	erase_linger(&osd->o_linger_requests, lreq);
1982 	put_osd(osd);
1983 
1984 	if (!osd_homeless(osd))
1985 		maybe_move_osd_to_lru(osd);
1986 	else
1987 		atomic_dec(&osd->o_osdc->num_homeless);
1988 }
1989 
1990 static bool __linger_registered(struct ceph_osd_linger_request *lreq)
1991 {
1992 	verify_osdc_locked(lreq->osdc);
1993 
1994 	return !RB_EMPTY_NODE(&lreq->osdc_node);
1995 }
1996 
1997 static bool linger_registered(struct ceph_osd_linger_request *lreq)
1998 {
1999 	struct ceph_osd_client *osdc = lreq->osdc;
2000 	bool registered;
2001 
2002 	down_read(&osdc->lock);
2003 	registered = __linger_registered(lreq);
2004 	up_read(&osdc->lock);
2005 
2006 	return registered;
2007 }
2008 
2009 static void linger_register(struct ceph_osd_linger_request *lreq)
2010 {
2011 	struct ceph_osd_client *osdc = lreq->osdc;
2012 
2013 	verify_osdc_wrlocked(osdc);
2014 	WARN_ON(lreq->linger_id);
2015 
2016 	linger_get(lreq);
2017 	lreq->linger_id = ++osdc->last_linger_id;
2018 	insert_linger_osdc(&osdc->linger_requests, lreq);
2019 }
2020 
2021 static void linger_unregister(struct ceph_osd_linger_request *lreq)
2022 {
2023 	struct ceph_osd_client *osdc = lreq->osdc;
2024 
2025 	verify_osdc_wrlocked(osdc);
2026 
2027 	erase_linger_osdc(&osdc->linger_requests, lreq);
2028 	linger_put(lreq);
2029 }
2030 
2031 static void cancel_linger_request(struct ceph_osd_request *req)
2032 {
2033 	struct ceph_osd_linger_request *lreq = req->r_priv;
2034 
2035 	WARN_ON(!req->r_linger);
2036 	cancel_request(req);
2037 	linger_put(lreq);
2038 }
2039 
2040 struct linger_work {
2041 	struct work_struct work;
2042 	struct ceph_osd_linger_request *lreq;
2043 	struct list_head pending_item;
2044 	unsigned long queued_stamp;
2045 
2046 	union {
2047 		struct {
2048 			u64 notify_id;
2049 			u64 notifier_id;
2050 			void *payload; /* points into @msg front */
2051 			size_t payload_len;
2052 
2053 			struct ceph_msg *msg; /* for ceph_msg_put() */
2054 		} notify;
2055 		struct {
2056 			int err;
2057 		} error;
2058 	};
2059 };
2060 
2061 static struct linger_work *lwork_alloc(struct ceph_osd_linger_request *lreq,
2062 				       work_func_t workfn)
2063 {
2064 	struct linger_work *lwork;
2065 
2066 	lwork = kzalloc(sizeof(*lwork), GFP_NOIO);
2067 	if (!lwork)
2068 		return NULL;
2069 
2070 	INIT_WORK(&lwork->work, workfn);
2071 	INIT_LIST_HEAD(&lwork->pending_item);
2072 	lwork->lreq = linger_get(lreq);
2073 
2074 	return lwork;
2075 }
2076 
2077 static void lwork_free(struct linger_work *lwork)
2078 {
2079 	struct ceph_osd_linger_request *lreq = lwork->lreq;
2080 
2081 	mutex_lock(&lreq->lock);
2082 	list_del(&lwork->pending_item);
2083 	mutex_unlock(&lreq->lock);
2084 
2085 	linger_put(lreq);
2086 	kfree(lwork);
2087 }
2088 
2089 static void lwork_queue(struct linger_work *lwork)
2090 {
2091 	struct ceph_osd_linger_request *lreq = lwork->lreq;
2092 	struct ceph_osd_client *osdc = lreq->osdc;
2093 
2094 	verify_lreq_locked(lreq);
2095 	WARN_ON(!list_empty(&lwork->pending_item));
2096 
2097 	lwork->queued_stamp = jiffies;
2098 	list_add_tail(&lwork->pending_item, &lreq->pending_lworks);
2099 	queue_work(osdc->notify_wq, &lwork->work);
2100 }
2101 
2102 static void do_watch_notify(struct work_struct *w)
2103 {
2104 	struct linger_work *lwork = container_of(w, struct linger_work, work);
2105 	struct ceph_osd_linger_request *lreq = lwork->lreq;
2106 
2107 	if (!linger_registered(lreq)) {
2108 		dout("%s lreq %p not registered\n", __func__, lreq);
2109 		goto out;
2110 	}
2111 
2112 	WARN_ON(!lreq->is_watch);
2113 	dout("%s lreq %p notify_id %llu notifier_id %llu payload_len %zu\n",
2114 	     __func__, lreq, lwork->notify.notify_id, lwork->notify.notifier_id,
2115 	     lwork->notify.payload_len);
2116 	lreq->wcb(lreq->data, lwork->notify.notify_id, lreq->linger_id,
2117 		  lwork->notify.notifier_id, lwork->notify.payload,
2118 		  lwork->notify.payload_len);
2119 
2120 out:
2121 	ceph_msg_put(lwork->notify.msg);
2122 	lwork_free(lwork);
2123 }
2124 
2125 static void do_watch_error(struct work_struct *w)
2126 {
2127 	struct linger_work *lwork = container_of(w, struct linger_work, work);
2128 	struct ceph_osd_linger_request *lreq = lwork->lreq;
2129 
2130 	if (!linger_registered(lreq)) {
2131 		dout("%s lreq %p not registered\n", __func__, lreq);
2132 		goto out;
2133 	}
2134 
2135 	dout("%s lreq %p err %d\n", __func__, lreq, lwork->error.err);
2136 	lreq->errcb(lreq->data, lreq->linger_id, lwork->error.err);
2137 
2138 out:
2139 	lwork_free(lwork);
2140 }
2141 
2142 static void queue_watch_error(struct ceph_osd_linger_request *lreq)
2143 {
2144 	struct linger_work *lwork;
2145 
2146 	lwork = lwork_alloc(lreq, do_watch_error);
2147 	if (!lwork) {
2148 		pr_err("failed to allocate error-lwork\n");
2149 		return;
2150 	}
2151 
2152 	lwork->error.err = lreq->last_error;
2153 	lwork_queue(lwork);
2154 }
2155 
2156 static void linger_reg_commit_complete(struct ceph_osd_linger_request *lreq,
2157 				       int result)
2158 {
2159 	if (!completion_done(&lreq->reg_commit_wait)) {
2160 		lreq->reg_commit_error = (result <= 0 ? result : 0);
2161 		complete_all(&lreq->reg_commit_wait);
2162 	}
2163 }
2164 
2165 static void linger_commit_cb(struct ceph_osd_request *req)
2166 {
2167 	struct ceph_osd_linger_request *lreq = req->r_priv;
2168 
2169 	mutex_lock(&lreq->lock);
2170 	dout("%s lreq %p linger_id %llu result %d\n", __func__, lreq,
2171 	     lreq->linger_id, req->r_result);
2172 	WARN_ON(!__linger_registered(lreq));
2173 	linger_reg_commit_complete(lreq, req->r_result);
2174 	lreq->committed = true;
2175 
2176 	if (!lreq->is_watch) {
2177 		struct ceph_osd_data *osd_data =
2178 		    osd_req_op_data(req, 0, notify, response_data);
2179 		void *p = page_address(osd_data->pages[0]);
2180 
2181 		WARN_ON(req->r_ops[0].op != CEPH_OSD_OP_NOTIFY ||
2182 			osd_data->type != CEPH_OSD_DATA_TYPE_PAGES);
2183 
2184 		/* make note of the notify_id */
2185 		if (req->r_ops[0].outdata_len >= sizeof(u64)) {
2186 			lreq->notify_id = ceph_decode_64(&p);
2187 			dout("lreq %p notify_id %llu\n", lreq,
2188 			     lreq->notify_id);
2189 		} else {
2190 			dout("lreq %p no notify_id\n", lreq);
2191 		}
2192 	}
2193 
2194 	mutex_unlock(&lreq->lock);
2195 	linger_put(lreq);
2196 }
2197 
2198 static int normalize_watch_error(int err)
2199 {
2200 	/*
2201 	 * Translate ENOENT -> ENOTCONN so that a delete->disconnection
2202 	 * notification and a failure to reconnect because we raced with
2203 	 * the delete appear the same to the user.
2204 	 */
2205 	if (err == -ENOENT)
2206 		err = -ENOTCONN;
2207 
2208 	return err;
2209 }
2210 
2211 static void linger_reconnect_cb(struct ceph_osd_request *req)
2212 {
2213 	struct ceph_osd_linger_request *lreq = req->r_priv;
2214 
2215 	mutex_lock(&lreq->lock);
2216 	dout("%s lreq %p linger_id %llu result %d last_error %d\n", __func__,
2217 	     lreq, lreq->linger_id, req->r_result, lreq->last_error);
2218 	if (req->r_result < 0) {
2219 		if (!lreq->last_error) {
2220 			lreq->last_error = normalize_watch_error(req->r_result);
2221 			queue_watch_error(lreq);
2222 		}
2223 	}
2224 
2225 	mutex_unlock(&lreq->lock);
2226 	linger_put(lreq);
2227 }
2228 
2229 static void send_linger(struct ceph_osd_linger_request *lreq)
2230 {
2231 	struct ceph_osd_request *req = lreq->reg_req;
2232 	struct ceph_osd_req_op *op = &req->r_ops[0];
2233 
2234 	verify_osdc_wrlocked(req->r_osdc);
2235 	dout("%s lreq %p linger_id %llu\n", __func__, lreq, lreq->linger_id);
2236 
2237 	if (req->r_osd)
2238 		cancel_linger_request(req);
2239 
2240 	request_reinit(req);
2241 	ceph_oid_copy(&req->r_base_oid, &lreq->t.base_oid);
2242 	ceph_oloc_copy(&req->r_base_oloc, &lreq->t.base_oloc);
2243 	req->r_flags = lreq->t.flags;
2244 	req->r_mtime = lreq->mtime;
2245 
2246 	mutex_lock(&lreq->lock);
2247 	if (lreq->is_watch && lreq->committed) {
2248 		WARN_ON(op->op != CEPH_OSD_OP_WATCH ||
2249 			op->watch.cookie != lreq->linger_id);
2250 		op->watch.op = CEPH_OSD_WATCH_OP_RECONNECT;
2251 		op->watch.gen = ++lreq->register_gen;
2252 		dout("lreq %p reconnect register_gen %u\n", lreq,
2253 		     op->watch.gen);
2254 		req->r_callback = linger_reconnect_cb;
2255 	} else {
2256 		if (!lreq->is_watch)
2257 			lreq->notify_id = 0;
2258 		else
2259 			WARN_ON(op->watch.op != CEPH_OSD_WATCH_OP_WATCH);
2260 		dout("lreq %p register\n", lreq);
2261 		req->r_callback = linger_commit_cb;
2262 	}
2263 	mutex_unlock(&lreq->lock);
2264 
2265 	req->r_priv = linger_get(lreq);
2266 	req->r_linger = true;
2267 
2268 	submit_request(req, true);
2269 }
2270 
2271 static void linger_ping_cb(struct ceph_osd_request *req)
2272 {
2273 	struct ceph_osd_linger_request *lreq = req->r_priv;
2274 
2275 	mutex_lock(&lreq->lock);
2276 	dout("%s lreq %p linger_id %llu result %d ping_sent %lu last_error %d\n",
2277 	     __func__, lreq, lreq->linger_id, req->r_result, lreq->ping_sent,
2278 	     lreq->last_error);
2279 	if (lreq->register_gen == req->r_ops[0].watch.gen) {
2280 		if (!req->r_result) {
2281 			lreq->watch_valid_thru = lreq->ping_sent;
2282 		} else if (!lreq->last_error) {
2283 			lreq->last_error = normalize_watch_error(req->r_result);
2284 			queue_watch_error(lreq);
2285 		}
2286 	} else {
2287 		dout("lreq %p register_gen %u ignoring old pong %u\n", lreq,
2288 		     lreq->register_gen, req->r_ops[0].watch.gen);
2289 	}
2290 
2291 	mutex_unlock(&lreq->lock);
2292 	linger_put(lreq);
2293 }
2294 
2295 static void send_linger_ping(struct ceph_osd_linger_request *lreq)
2296 {
2297 	struct ceph_osd_client *osdc = lreq->osdc;
2298 	struct ceph_osd_request *req = lreq->ping_req;
2299 	struct ceph_osd_req_op *op = &req->r_ops[0];
2300 
2301 	if (ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSERD)) {
2302 		dout("%s PAUSERD\n", __func__);
2303 		return;
2304 	}
2305 
2306 	lreq->ping_sent = jiffies;
2307 	dout("%s lreq %p linger_id %llu ping_sent %lu register_gen %u\n",
2308 	     __func__, lreq, lreq->linger_id, lreq->ping_sent,
2309 	     lreq->register_gen);
2310 
2311 	if (req->r_osd)
2312 		cancel_linger_request(req);
2313 
2314 	request_reinit(req);
2315 	target_copy(&req->r_t, &lreq->t);
2316 
2317 	WARN_ON(op->op != CEPH_OSD_OP_WATCH ||
2318 		op->watch.cookie != lreq->linger_id ||
2319 		op->watch.op != CEPH_OSD_WATCH_OP_PING);
2320 	op->watch.gen = lreq->register_gen;
2321 	req->r_callback = linger_ping_cb;
2322 	req->r_priv = linger_get(lreq);
2323 	req->r_linger = true;
2324 
2325 	ceph_osdc_get_request(req);
2326 	account_request(req);
2327 	req->r_tid = atomic64_inc_return(&osdc->last_tid);
2328 	link_request(lreq->osd, req);
2329 	send_request(req);
2330 }
2331 
2332 static void linger_submit(struct ceph_osd_linger_request *lreq)
2333 {
2334 	struct ceph_osd_client *osdc = lreq->osdc;
2335 	struct ceph_osd *osd;
2336 
2337 	calc_target(osdc, &lreq->t, &lreq->last_force_resend, false);
2338 	osd = lookup_create_osd(osdc, lreq->t.osd, true);
2339 	link_linger(osd, lreq);
2340 
2341 	send_linger(lreq);
2342 }
2343 
2344 static void cancel_linger_map_check(struct ceph_osd_linger_request *lreq)
2345 {
2346 	struct ceph_osd_client *osdc = lreq->osdc;
2347 	struct ceph_osd_linger_request *lookup_lreq;
2348 
2349 	verify_osdc_wrlocked(osdc);
2350 
2351 	lookup_lreq = lookup_linger_mc(&osdc->linger_map_checks,
2352 				       lreq->linger_id);
2353 	if (!lookup_lreq)
2354 		return;
2355 
2356 	WARN_ON(lookup_lreq != lreq);
2357 	erase_linger_mc(&osdc->linger_map_checks, lreq);
2358 	linger_put(lreq);
2359 }
2360 
2361 /*
2362  * @lreq has to be both registered and linked.
2363  */
2364 static void __linger_cancel(struct ceph_osd_linger_request *lreq)
2365 {
2366 	if (lreq->is_watch && lreq->ping_req->r_osd)
2367 		cancel_linger_request(lreq->ping_req);
2368 	if (lreq->reg_req->r_osd)
2369 		cancel_linger_request(lreq->reg_req);
2370 	cancel_linger_map_check(lreq);
2371 	unlink_linger(lreq->osd, lreq);
2372 	linger_unregister(lreq);
2373 }
2374 
2375 static void linger_cancel(struct ceph_osd_linger_request *lreq)
2376 {
2377 	struct ceph_osd_client *osdc = lreq->osdc;
2378 
2379 	down_write(&osdc->lock);
2380 	if (__linger_registered(lreq))
2381 		__linger_cancel(lreq);
2382 	up_write(&osdc->lock);
2383 }
2384 
2385 static void send_linger_map_check(struct ceph_osd_linger_request *lreq);
2386 
2387 static void check_linger_pool_dne(struct ceph_osd_linger_request *lreq)
2388 {
2389 	struct ceph_osd_client *osdc = lreq->osdc;
2390 	struct ceph_osdmap *map = osdc->osdmap;
2391 
2392 	verify_osdc_wrlocked(osdc);
2393 	WARN_ON(!map->epoch);
2394 
2395 	if (lreq->register_gen) {
2396 		lreq->map_dne_bound = map->epoch;
2397 		dout("%s lreq %p linger_id %llu pool disappeared\n", __func__,
2398 		     lreq, lreq->linger_id);
2399 	} else {
2400 		dout("%s lreq %p linger_id %llu map_dne_bound %u have %u\n",
2401 		     __func__, lreq, lreq->linger_id, lreq->map_dne_bound,
2402 		     map->epoch);
2403 	}
2404 
2405 	if (lreq->map_dne_bound) {
2406 		if (map->epoch >= lreq->map_dne_bound) {
2407 			/* we had a new enough map */
2408 			pr_info("linger_id %llu pool does not exist\n",
2409 				lreq->linger_id);
2410 			linger_reg_commit_complete(lreq, -ENOENT);
2411 			__linger_cancel(lreq);
2412 		}
2413 	} else {
2414 		send_linger_map_check(lreq);
2415 	}
2416 }
2417 
2418 static void linger_map_check_cb(struct ceph_mon_generic_request *greq)
2419 {
2420 	struct ceph_osd_client *osdc = &greq->monc->client->osdc;
2421 	struct ceph_osd_linger_request *lreq;
2422 	u64 linger_id = greq->private_data;
2423 
2424 	WARN_ON(greq->result || !greq->u.newest);
2425 
2426 	down_write(&osdc->lock);
2427 	lreq = lookup_linger_mc(&osdc->linger_map_checks, linger_id);
2428 	if (!lreq) {
2429 		dout("%s linger_id %llu dne\n", __func__, linger_id);
2430 		goto out_unlock;
2431 	}
2432 
2433 	dout("%s lreq %p linger_id %llu map_dne_bound %u newest %llu\n",
2434 	     __func__, lreq, lreq->linger_id, lreq->map_dne_bound,
2435 	     greq->u.newest);
2436 	if (!lreq->map_dne_bound)
2437 		lreq->map_dne_bound = greq->u.newest;
2438 	erase_linger_mc(&osdc->linger_map_checks, lreq);
2439 	check_linger_pool_dne(lreq);
2440 
2441 	linger_put(lreq);
2442 out_unlock:
2443 	up_write(&osdc->lock);
2444 }
2445 
2446 static void send_linger_map_check(struct ceph_osd_linger_request *lreq)
2447 {
2448 	struct ceph_osd_client *osdc = lreq->osdc;
2449 	struct ceph_osd_linger_request *lookup_lreq;
2450 	int ret;
2451 
2452 	verify_osdc_wrlocked(osdc);
2453 
2454 	lookup_lreq = lookup_linger_mc(&osdc->linger_map_checks,
2455 				       lreq->linger_id);
2456 	if (lookup_lreq) {
2457 		WARN_ON(lookup_lreq != lreq);
2458 		return;
2459 	}
2460 
2461 	linger_get(lreq);
2462 	insert_linger_mc(&osdc->linger_map_checks, lreq);
2463 	ret = ceph_monc_get_version_async(&osdc->client->monc, "osdmap",
2464 					  linger_map_check_cb, lreq->linger_id);
2465 	WARN_ON(ret);
2466 }
2467 
2468 static int linger_reg_commit_wait(struct ceph_osd_linger_request *lreq)
2469 {
2470 	int ret;
2471 
2472 	dout("%s lreq %p linger_id %llu\n", __func__, lreq, lreq->linger_id);
2473 	ret = wait_for_completion_interruptible(&lreq->reg_commit_wait);
2474 	return ret ?: lreq->reg_commit_error;
2475 }
2476 
2477 static int linger_notify_finish_wait(struct ceph_osd_linger_request *lreq)
2478 {
2479 	int ret;
2480 
2481 	dout("%s lreq %p linger_id %llu\n", __func__, lreq, lreq->linger_id);
2482 	ret = wait_for_completion_interruptible(&lreq->notify_finish_wait);
2483 	return ret ?: lreq->notify_finish_error;
2484 }
2485 
2486 /*
2487  * Timeout callback, called every N seconds.  When 1 or more OSD
2488  * requests has been active for more than N seconds, we send a keepalive
2489  * (tag + timestamp) to its OSD to ensure any communications channel
2490  * reset is detected.
2491  */
2492 static void handle_timeout(struct work_struct *work)
2493 {
2494 	struct ceph_osd_client *osdc =
2495 		container_of(work, struct ceph_osd_client, timeout_work.work);
2496 	struct ceph_options *opts = osdc->client->options;
2497 	unsigned long cutoff = jiffies - opts->osd_keepalive_timeout;
2498 	LIST_HEAD(slow_osds);
2499 	struct rb_node *n, *p;
2500 
2501 	dout("%s osdc %p\n", __func__, osdc);
2502 	down_write(&osdc->lock);
2503 
2504 	/*
2505 	 * ping osds that are a bit slow.  this ensures that if there
2506 	 * is a break in the TCP connection we will notice, and reopen
2507 	 * a connection with that osd (from the fault callback).
2508 	 */
2509 	for (n = rb_first(&osdc->osds); n; n = rb_next(n)) {
2510 		struct ceph_osd *osd = rb_entry(n, struct ceph_osd, o_node);
2511 		bool found = false;
2512 
2513 		for (p = rb_first(&osd->o_requests); p; p = rb_next(p)) {
2514 			struct ceph_osd_request *req =
2515 			    rb_entry(p, struct ceph_osd_request, r_node);
2516 
2517 			if (time_before(req->r_stamp, cutoff)) {
2518 				dout(" req %p tid %llu on osd%d is laggy\n",
2519 				     req, req->r_tid, osd->o_osd);
2520 				found = true;
2521 			}
2522 		}
2523 		for (p = rb_first(&osd->o_linger_requests); p; p = rb_next(p)) {
2524 			struct ceph_osd_linger_request *lreq =
2525 			    rb_entry(p, struct ceph_osd_linger_request, node);
2526 
2527 			dout(" lreq %p linger_id %llu is served by osd%d\n",
2528 			     lreq, lreq->linger_id, osd->o_osd);
2529 			found = true;
2530 
2531 			mutex_lock(&lreq->lock);
2532 			if (lreq->is_watch && lreq->committed && !lreq->last_error)
2533 				send_linger_ping(lreq);
2534 			mutex_unlock(&lreq->lock);
2535 		}
2536 
2537 		if (found)
2538 			list_move_tail(&osd->o_keepalive_item, &slow_osds);
2539 	}
2540 
2541 	if (atomic_read(&osdc->num_homeless) || !list_empty(&slow_osds))
2542 		maybe_request_map(osdc);
2543 
2544 	while (!list_empty(&slow_osds)) {
2545 		struct ceph_osd *osd = list_first_entry(&slow_osds,
2546 							struct ceph_osd,
2547 							o_keepalive_item);
2548 		list_del_init(&osd->o_keepalive_item);
2549 		ceph_con_keepalive(&osd->o_con);
2550 	}
2551 
2552 	up_write(&osdc->lock);
2553 	schedule_delayed_work(&osdc->timeout_work,
2554 			      osdc->client->options->osd_keepalive_timeout);
2555 }
2556 
2557 static void handle_osds_timeout(struct work_struct *work)
2558 {
2559 	struct ceph_osd_client *osdc =
2560 		container_of(work, struct ceph_osd_client,
2561 			     osds_timeout_work.work);
2562 	unsigned long delay = osdc->client->options->osd_idle_ttl / 4;
2563 	struct ceph_osd *osd, *nosd;
2564 
2565 	dout("%s osdc %p\n", __func__, osdc);
2566 	down_write(&osdc->lock);
2567 	list_for_each_entry_safe(osd, nosd, &osdc->osd_lru, o_osd_lru) {
2568 		if (time_before(jiffies, osd->lru_ttl))
2569 			break;
2570 
2571 		WARN_ON(!RB_EMPTY_ROOT(&osd->o_requests));
2572 		WARN_ON(!RB_EMPTY_ROOT(&osd->o_linger_requests));
2573 		close_osd(osd);
2574 	}
2575 
2576 	up_write(&osdc->lock);
2577 	schedule_delayed_work(&osdc->osds_timeout_work,
2578 			      round_jiffies_relative(delay));
2579 }
2580 
2581 static int ceph_oloc_decode(void **p, void *end,
2582 			    struct ceph_object_locator *oloc)
2583 {
2584 	u8 struct_v, struct_cv;
2585 	u32 len;
2586 	void *struct_end;
2587 	int ret = 0;
2588 
2589 	ceph_decode_need(p, end, 1 + 1 + 4, e_inval);
2590 	struct_v = ceph_decode_8(p);
2591 	struct_cv = ceph_decode_8(p);
2592 	if (struct_v < 3) {
2593 		pr_warn("got v %d < 3 cv %d of ceph_object_locator\n",
2594 			struct_v, struct_cv);
2595 		goto e_inval;
2596 	}
2597 	if (struct_cv > 6) {
2598 		pr_warn("got v %d cv %d > 6 of ceph_object_locator\n",
2599 			struct_v, struct_cv);
2600 		goto e_inval;
2601 	}
2602 	len = ceph_decode_32(p);
2603 	ceph_decode_need(p, end, len, e_inval);
2604 	struct_end = *p + len;
2605 
2606 	oloc->pool = ceph_decode_64(p);
2607 	*p += 4; /* skip preferred */
2608 
2609 	len = ceph_decode_32(p);
2610 	if (len > 0) {
2611 		pr_warn("ceph_object_locator::key is set\n");
2612 		goto e_inval;
2613 	}
2614 
2615 	if (struct_v >= 5) {
2616 		bool changed = false;
2617 
2618 		len = ceph_decode_32(p);
2619 		if (len > 0) {
2620 			ceph_decode_need(p, end, len, e_inval);
2621 			if (!oloc->pool_ns ||
2622 			    ceph_compare_string(oloc->pool_ns, *p, len))
2623 				changed = true;
2624 			*p += len;
2625 		} else {
2626 			if (oloc->pool_ns)
2627 				changed = true;
2628 		}
2629 		if (changed) {
2630 			/* redirect changes namespace */
2631 			pr_warn("ceph_object_locator::nspace is changed\n");
2632 			goto e_inval;
2633 		}
2634 	}
2635 
2636 	if (struct_v >= 6) {
2637 		s64 hash = ceph_decode_64(p);
2638 		if (hash != -1) {
2639 			pr_warn("ceph_object_locator::hash is set\n");
2640 			goto e_inval;
2641 		}
2642 	}
2643 
2644 	/* skip the rest */
2645 	*p = struct_end;
2646 out:
2647 	return ret;
2648 
2649 e_inval:
2650 	ret = -EINVAL;
2651 	goto out;
2652 }
2653 
2654 static int ceph_redirect_decode(void **p, void *end,
2655 				struct ceph_request_redirect *redir)
2656 {
2657 	u8 struct_v, struct_cv;
2658 	u32 len;
2659 	void *struct_end;
2660 	int ret;
2661 
2662 	ceph_decode_need(p, end, 1 + 1 + 4, e_inval);
2663 	struct_v = ceph_decode_8(p);
2664 	struct_cv = ceph_decode_8(p);
2665 	if (struct_cv > 1) {
2666 		pr_warn("got v %d cv %d > 1 of ceph_request_redirect\n",
2667 			struct_v, struct_cv);
2668 		goto e_inval;
2669 	}
2670 	len = ceph_decode_32(p);
2671 	ceph_decode_need(p, end, len, e_inval);
2672 	struct_end = *p + len;
2673 
2674 	ret = ceph_oloc_decode(p, end, &redir->oloc);
2675 	if (ret)
2676 		goto out;
2677 
2678 	len = ceph_decode_32(p);
2679 	if (len > 0) {
2680 		pr_warn("ceph_request_redirect::object_name is set\n");
2681 		goto e_inval;
2682 	}
2683 
2684 	len = ceph_decode_32(p);
2685 	*p += len; /* skip osd_instructions */
2686 
2687 	/* skip the rest */
2688 	*p = struct_end;
2689 out:
2690 	return ret;
2691 
2692 e_inval:
2693 	ret = -EINVAL;
2694 	goto out;
2695 }
2696 
2697 struct MOSDOpReply {
2698 	struct ceph_pg pgid;
2699 	u64 flags;
2700 	int result;
2701 	u32 epoch;
2702 	int num_ops;
2703 	u32 outdata_len[CEPH_OSD_MAX_OPS];
2704 	s32 rval[CEPH_OSD_MAX_OPS];
2705 	int retry_attempt;
2706 	struct ceph_eversion replay_version;
2707 	u64 user_version;
2708 	struct ceph_request_redirect redirect;
2709 };
2710 
2711 static int decode_MOSDOpReply(const struct ceph_msg *msg, struct MOSDOpReply *m)
2712 {
2713 	void *p = msg->front.iov_base;
2714 	void *const end = p + msg->front.iov_len;
2715 	u16 version = le16_to_cpu(msg->hdr.version);
2716 	struct ceph_eversion bad_replay_version;
2717 	u8 decode_redir;
2718 	u32 len;
2719 	int ret;
2720 	int i;
2721 
2722 	ceph_decode_32_safe(&p, end, len, e_inval);
2723 	ceph_decode_need(&p, end, len, e_inval);
2724 	p += len; /* skip oid */
2725 
2726 	ret = ceph_decode_pgid(&p, end, &m->pgid);
2727 	if (ret)
2728 		return ret;
2729 
2730 	ceph_decode_64_safe(&p, end, m->flags, e_inval);
2731 	ceph_decode_32_safe(&p, end, m->result, e_inval);
2732 	ceph_decode_need(&p, end, sizeof(bad_replay_version), e_inval);
2733 	memcpy(&bad_replay_version, p, sizeof(bad_replay_version));
2734 	p += sizeof(bad_replay_version);
2735 	ceph_decode_32_safe(&p, end, m->epoch, e_inval);
2736 
2737 	ceph_decode_32_safe(&p, end, m->num_ops, e_inval);
2738 	if (m->num_ops > ARRAY_SIZE(m->outdata_len))
2739 		goto e_inval;
2740 
2741 	ceph_decode_need(&p, end, m->num_ops * sizeof(struct ceph_osd_op),
2742 			 e_inval);
2743 	for (i = 0; i < m->num_ops; i++) {
2744 		struct ceph_osd_op *op = p;
2745 
2746 		m->outdata_len[i] = le32_to_cpu(op->payload_len);
2747 		p += sizeof(*op);
2748 	}
2749 
2750 	ceph_decode_32_safe(&p, end, m->retry_attempt, e_inval);
2751 	for (i = 0; i < m->num_ops; i++)
2752 		ceph_decode_32_safe(&p, end, m->rval[i], e_inval);
2753 
2754 	if (version >= 5) {
2755 		ceph_decode_need(&p, end, sizeof(m->replay_version), e_inval);
2756 		memcpy(&m->replay_version, p, sizeof(m->replay_version));
2757 		p += sizeof(m->replay_version);
2758 		ceph_decode_64_safe(&p, end, m->user_version, e_inval);
2759 	} else {
2760 		m->replay_version = bad_replay_version; /* struct */
2761 		m->user_version = le64_to_cpu(m->replay_version.version);
2762 	}
2763 
2764 	if (version >= 6) {
2765 		if (version >= 7)
2766 			ceph_decode_8_safe(&p, end, decode_redir, e_inval);
2767 		else
2768 			decode_redir = 1;
2769 	} else {
2770 		decode_redir = 0;
2771 	}
2772 
2773 	if (decode_redir) {
2774 		ret = ceph_redirect_decode(&p, end, &m->redirect);
2775 		if (ret)
2776 			return ret;
2777 	} else {
2778 		ceph_oloc_init(&m->redirect.oloc);
2779 	}
2780 
2781 	return 0;
2782 
2783 e_inval:
2784 	return -EINVAL;
2785 }
2786 
2787 /*
2788  * We are done with @req if
2789  *   - @m is a safe reply, or
2790  *   - @m is an unsafe reply and we didn't want a safe one
2791  */
2792 static bool done_request(const struct ceph_osd_request *req,
2793 			 const struct MOSDOpReply *m)
2794 {
2795 	return (m->result < 0 ||
2796 		(m->flags & CEPH_OSD_FLAG_ONDISK) ||
2797 		!(req->r_flags & CEPH_OSD_FLAG_ONDISK));
2798 }
2799 
2800 /*
2801  * handle osd op reply.  either call the callback if it is specified,
2802  * or do the completion to wake up the waiting thread.
2803  *
2804  * ->r_unsafe_callback is set?	yes			no
2805  *
2806  * first reply is OK (needed	r_cb/r_completion,	r_cb/r_completion,
2807  * any or needed/got safe)	r_done_completion	r_done_completion
2808  *
2809  * first reply is unsafe	r_unsafe_cb(true)	(nothing)
2810  *
2811  * when we get the safe reply	r_unsafe_cb(false),	r_cb/r_completion,
2812  *				r_done_completion	r_done_completion
2813  */
2814 static void handle_reply(struct ceph_osd *osd, struct ceph_msg *msg)
2815 {
2816 	struct ceph_osd_client *osdc = osd->o_osdc;
2817 	struct ceph_osd_request *req;
2818 	struct MOSDOpReply m;
2819 	u64 tid = le64_to_cpu(msg->hdr.tid);
2820 	u32 data_len = 0;
2821 	bool already_acked;
2822 	int ret;
2823 	int i;
2824 
2825 	dout("%s msg %p tid %llu\n", __func__, msg, tid);
2826 
2827 	down_read(&osdc->lock);
2828 	if (!osd_registered(osd)) {
2829 		dout("%s osd%d unknown\n", __func__, osd->o_osd);
2830 		goto out_unlock_osdc;
2831 	}
2832 	WARN_ON(osd->o_osd != le64_to_cpu(msg->hdr.src.num));
2833 
2834 	mutex_lock(&osd->lock);
2835 	req = lookup_request(&osd->o_requests, tid);
2836 	if (!req) {
2837 		dout("%s osd%d tid %llu unknown\n", __func__, osd->o_osd, tid);
2838 		goto out_unlock_session;
2839 	}
2840 
2841 	m.redirect.oloc.pool_ns = req->r_t.target_oloc.pool_ns;
2842 	ret = decode_MOSDOpReply(msg, &m);
2843 	m.redirect.oloc.pool_ns = NULL;
2844 	if (ret) {
2845 		pr_err("failed to decode MOSDOpReply for tid %llu: %d\n",
2846 		       req->r_tid, ret);
2847 		ceph_msg_dump(msg);
2848 		goto fail_request;
2849 	}
2850 	dout("%s req %p tid %llu flags 0x%llx pgid %llu.%x epoch %u attempt %d v %u'%llu uv %llu\n",
2851 	     __func__, req, req->r_tid, m.flags, m.pgid.pool, m.pgid.seed,
2852 	     m.epoch, m.retry_attempt, le32_to_cpu(m.replay_version.epoch),
2853 	     le64_to_cpu(m.replay_version.version), m.user_version);
2854 
2855 	if (m.retry_attempt >= 0) {
2856 		if (m.retry_attempt != req->r_attempts - 1) {
2857 			dout("req %p tid %llu retry_attempt %d != %d, ignoring\n",
2858 			     req, req->r_tid, m.retry_attempt,
2859 			     req->r_attempts - 1);
2860 			goto out_unlock_session;
2861 		}
2862 	} else {
2863 		WARN_ON(1); /* MOSDOpReply v4 is assumed */
2864 	}
2865 
2866 	if (!ceph_oloc_empty(&m.redirect.oloc)) {
2867 		dout("req %p tid %llu redirect pool %lld\n", req, req->r_tid,
2868 		     m.redirect.oloc.pool);
2869 		unlink_request(osd, req);
2870 		mutex_unlock(&osd->lock);
2871 
2872 		/*
2873 		 * Not ceph_oloc_copy() - changing pool_ns is not
2874 		 * supported.
2875 		 */
2876 		req->r_t.target_oloc.pool = m.redirect.oloc.pool;
2877 		req->r_flags |= CEPH_OSD_FLAG_REDIRECTED;
2878 		req->r_tid = 0;
2879 		__submit_request(req, false);
2880 		goto out_unlock_osdc;
2881 	}
2882 
2883 	if (m.num_ops != req->r_num_ops) {
2884 		pr_err("num_ops %d != %d for tid %llu\n", m.num_ops,
2885 		       req->r_num_ops, req->r_tid);
2886 		goto fail_request;
2887 	}
2888 	for (i = 0; i < req->r_num_ops; i++) {
2889 		dout(" req %p tid %llu op %d rval %d len %u\n", req,
2890 		     req->r_tid, i, m.rval[i], m.outdata_len[i]);
2891 		req->r_ops[i].rval = m.rval[i];
2892 		req->r_ops[i].outdata_len = m.outdata_len[i];
2893 		data_len += m.outdata_len[i];
2894 	}
2895 	if (data_len != le32_to_cpu(msg->hdr.data_len)) {
2896 		pr_err("sum of lens %u != %u for tid %llu\n", data_len,
2897 		       le32_to_cpu(msg->hdr.data_len), req->r_tid);
2898 		goto fail_request;
2899 	}
2900 	dout("%s req %p tid %llu acked %d result %d data_len %u\n", __func__,
2901 	     req, req->r_tid, req->r_got_reply, m.result, data_len);
2902 
2903 	already_acked = req->r_got_reply;
2904 	if (!already_acked) {
2905 		req->r_result = m.result ?: data_len;
2906 		req->r_replay_version = m.replay_version; /* struct */
2907 		req->r_got_reply = true;
2908 	} else if (!(m.flags & CEPH_OSD_FLAG_ONDISK)) {
2909 		dout("req %p tid %llu dup ack\n", req, req->r_tid);
2910 		goto out_unlock_session;
2911 	}
2912 
2913 	if (done_request(req, &m)) {
2914 		finish_request(req);
2915 		if (req->r_linger) {
2916 			WARN_ON(req->r_unsafe_callback);
2917 			dout("req %p tid %llu cb (locked)\n", req, req->r_tid);
2918 			__complete_request(req);
2919 		}
2920 	}
2921 
2922 	mutex_unlock(&osd->lock);
2923 	up_read(&osdc->lock);
2924 
2925 	if (done_request(req, &m)) {
2926 		if (already_acked && req->r_unsafe_callback) {
2927 			dout("req %p tid %llu safe-cb\n", req, req->r_tid);
2928 			req->r_unsafe_callback(req, false);
2929 		} else if (!req->r_linger) {
2930 			dout("req %p tid %llu cb\n", req, req->r_tid);
2931 			__complete_request(req);
2932 		}
2933 		complete_all(&req->r_done_completion);
2934 		ceph_osdc_put_request(req);
2935 	} else {
2936 		if (req->r_unsafe_callback) {
2937 			dout("req %p tid %llu unsafe-cb\n", req, req->r_tid);
2938 			req->r_unsafe_callback(req, true);
2939 		} else {
2940 			WARN_ON(1);
2941 		}
2942 	}
2943 
2944 	return;
2945 
2946 fail_request:
2947 	complete_request(req, -EIO);
2948 out_unlock_session:
2949 	mutex_unlock(&osd->lock);
2950 out_unlock_osdc:
2951 	up_read(&osdc->lock);
2952 }
2953 
2954 static void set_pool_was_full(struct ceph_osd_client *osdc)
2955 {
2956 	struct rb_node *n;
2957 
2958 	for (n = rb_first(&osdc->osdmap->pg_pools); n; n = rb_next(n)) {
2959 		struct ceph_pg_pool_info *pi =
2960 		    rb_entry(n, struct ceph_pg_pool_info, node);
2961 
2962 		pi->was_full = __pool_full(pi);
2963 	}
2964 }
2965 
2966 static bool pool_cleared_full(struct ceph_osd_client *osdc, s64 pool_id)
2967 {
2968 	struct ceph_pg_pool_info *pi;
2969 
2970 	pi = ceph_pg_pool_by_id(osdc->osdmap, pool_id);
2971 	if (!pi)
2972 		return false;
2973 
2974 	return pi->was_full && !__pool_full(pi);
2975 }
2976 
2977 static enum calc_target_result
2978 recalc_linger_target(struct ceph_osd_linger_request *lreq)
2979 {
2980 	struct ceph_osd_client *osdc = lreq->osdc;
2981 	enum calc_target_result ct_res;
2982 
2983 	ct_res = calc_target(osdc, &lreq->t, &lreq->last_force_resend, true);
2984 	if (ct_res == CALC_TARGET_NEED_RESEND) {
2985 		struct ceph_osd *osd;
2986 
2987 		osd = lookup_create_osd(osdc, lreq->t.osd, true);
2988 		if (osd != lreq->osd) {
2989 			unlink_linger(lreq->osd, lreq);
2990 			link_linger(osd, lreq);
2991 		}
2992 	}
2993 
2994 	return ct_res;
2995 }
2996 
2997 /*
2998  * Requeue requests whose mapping to an OSD has changed.
2999  */
3000 static void scan_requests(struct ceph_osd *osd,
3001 			  bool force_resend,
3002 			  bool cleared_full,
3003 			  bool check_pool_cleared_full,
3004 			  struct rb_root *need_resend,
3005 			  struct list_head *need_resend_linger)
3006 {
3007 	struct ceph_osd_client *osdc = osd->o_osdc;
3008 	struct rb_node *n;
3009 	bool force_resend_writes;
3010 
3011 	for (n = rb_first(&osd->o_linger_requests); n; ) {
3012 		struct ceph_osd_linger_request *lreq =
3013 		    rb_entry(n, struct ceph_osd_linger_request, node);
3014 		enum calc_target_result ct_res;
3015 
3016 		n = rb_next(n); /* recalc_linger_target() */
3017 
3018 		dout("%s lreq %p linger_id %llu\n", __func__, lreq,
3019 		     lreq->linger_id);
3020 		ct_res = recalc_linger_target(lreq);
3021 		switch (ct_res) {
3022 		case CALC_TARGET_NO_ACTION:
3023 			force_resend_writes = cleared_full ||
3024 			    (check_pool_cleared_full &&
3025 			     pool_cleared_full(osdc, lreq->t.base_oloc.pool));
3026 			if (!force_resend && !force_resend_writes)
3027 				break;
3028 
3029 			/* fall through */
3030 		case CALC_TARGET_NEED_RESEND:
3031 			cancel_linger_map_check(lreq);
3032 			/*
3033 			 * scan_requests() for the previous epoch(s)
3034 			 * may have already added it to the list, since
3035 			 * it's not unlinked here.
3036 			 */
3037 			if (list_empty(&lreq->scan_item))
3038 				list_add_tail(&lreq->scan_item, need_resend_linger);
3039 			break;
3040 		case CALC_TARGET_POOL_DNE:
3041 			check_linger_pool_dne(lreq);
3042 			break;
3043 		}
3044 	}
3045 
3046 	for (n = rb_first(&osd->o_requests); n; ) {
3047 		struct ceph_osd_request *req =
3048 		    rb_entry(n, struct ceph_osd_request, r_node);
3049 		enum calc_target_result ct_res;
3050 
3051 		n = rb_next(n); /* unlink_request(), check_pool_dne() */
3052 
3053 		dout("%s req %p tid %llu\n", __func__, req, req->r_tid);
3054 		ct_res = calc_target(osdc, &req->r_t,
3055 				     &req->r_last_force_resend, false);
3056 		switch (ct_res) {
3057 		case CALC_TARGET_NO_ACTION:
3058 			force_resend_writes = cleared_full ||
3059 			    (check_pool_cleared_full &&
3060 			     pool_cleared_full(osdc, req->r_t.base_oloc.pool));
3061 			if (!force_resend &&
3062 			    (!(req->r_flags & CEPH_OSD_FLAG_WRITE) ||
3063 			     !force_resend_writes))
3064 				break;
3065 
3066 			/* fall through */
3067 		case CALC_TARGET_NEED_RESEND:
3068 			cancel_map_check(req);
3069 			unlink_request(osd, req);
3070 			insert_request(need_resend, req);
3071 			break;
3072 		case CALC_TARGET_POOL_DNE:
3073 			check_pool_dne(req);
3074 			break;
3075 		}
3076 	}
3077 }
3078 
3079 static int handle_one_map(struct ceph_osd_client *osdc,
3080 			  void *p, void *end, bool incremental,
3081 			  struct rb_root *need_resend,
3082 			  struct list_head *need_resend_linger)
3083 {
3084 	struct ceph_osdmap *newmap;
3085 	struct rb_node *n;
3086 	bool skipped_map = false;
3087 	bool was_full;
3088 
3089 	was_full = ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL);
3090 	set_pool_was_full(osdc);
3091 
3092 	if (incremental)
3093 		newmap = osdmap_apply_incremental(&p, end, osdc->osdmap);
3094 	else
3095 		newmap = ceph_osdmap_decode(&p, end);
3096 	if (IS_ERR(newmap))
3097 		return PTR_ERR(newmap);
3098 
3099 	if (newmap != osdc->osdmap) {
3100 		/*
3101 		 * Preserve ->was_full before destroying the old map.
3102 		 * For pools that weren't in the old map, ->was_full
3103 		 * should be false.
3104 		 */
3105 		for (n = rb_first(&newmap->pg_pools); n; n = rb_next(n)) {
3106 			struct ceph_pg_pool_info *pi =
3107 			    rb_entry(n, struct ceph_pg_pool_info, node);
3108 			struct ceph_pg_pool_info *old_pi;
3109 
3110 			old_pi = ceph_pg_pool_by_id(osdc->osdmap, pi->id);
3111 			if (old_pi)
3112 				pi->was_full = old_pi->was_full;
3113 			else
3114 				WARN_ON(pi->was_full);
3115 		}
3116 
3117 		if (osdc->osdmap->epoch &&
3118 		    osdc->osdmap->epoch + 1 < newmap->epoch) {
3119 			WARN_ON(incremental);
3120 			skipped_map = true;
3121 		}
3122 
3123 		ceph_osdmap_destroy(osdc->osdmap);
3124 		osdc->osdmap = newmap;
3125 	}
3126 
3127 	was_full &= !ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL);
3128 	scan_requests(&osdc->homeless_osd, skipped_map, was_full, true,
3129 		      need_resend, need_resend_linger);
3130 
3131 	for (n = rb_first(&osdc->osds); n; ) {
3132 		struct ceph_osd *osd = rb_entry(n, struct ceph_osd, o_node);
3133 
3134 		n = rb_next(n); /* close_osd() */
3135 
3136 		scan_requests(osd, skipped_map, was_full, true, need_resend,
3137 			      need_resend_linger);
3138 		if (!ceph_osd_is_up(osdc->osdmap, osd->o_osd) ||
3139 		    memcmp(&osd->o_con.peer_addr,
3140 			   ceph_osd_addr(osdc->osdmap, osd->o_osd),
3141 			   sizeof(struct ceph_entity_addr)))
3142 			close_osd(osd);
3143 	}
3144 
3145 	return 0;
3146 }
3147 
3148 static void kick_requests(struct ceph_osd_client *osdc,
3149 			  struct rb_root *need_resend,
3150 			  struct list_head *need_resend_linger)
3151 {
3152 	struct ceph_osd_linger_request *lreq, *nlreq;
3153 	struct rb_node *n;
3154 
3155 	for (n = rb_first(need_resend); n; ) {
3156 		struct ceph_osd_request *req =
3157 		    rb_entry(n, struct ceph_osd_request, r_node);
3158 		struct ceph_osd *osd;
3159 
3160 		n = rb_next(n);
3161 		erase_request(need_resend, req); /* before link_request() */
3162 
3163 		WARN_ON(req->r_osd);
3164 		calc_target(osdc, &req->r_t, NULL, false);
3165 		osd = lookup_create_osd(osdc, req->r_t.osd, true);
3166 		link_request(osd, req);
3167 		if (!req->r_linger) {
3168 			if (!osd_homeless(osd) && !req->r_t.paused)
3169 				send_request(req);
3170 		} else {
3171 			cancel_linger_request(req);
3172 		}
3173 	}
3174 
3175 	list_for_each_entry_safe(lreq, nlreq, need_resend_linger, scan_item) {
3176 		if (!osd_homeless(lreq->osd))
3177 			send_linger(lreq);
3178 
3179 		list_del_init(&lreq->scan_item);
3180 	}
3181 }
3182 
3183 /*
3184  * Process updated osd map.
3185  *
3186  * The message contains any number of incremental and full maps, normally
3187  * indicating some sort of topology change in the cluster.  Kick requests
3188  * off to different OSDs as needed.
3189  */
3190 void ceph_osdc_handle_map(struct ceph_osd_client *osdc, struct ceph_msg *msg)
3191 {
3192 	void *p = msg->front.iov_base;
3193 	void *const end = p + msg->front.iov_len;
3194 	u32 nr_maps, maplen;
3195 	u32 epoch;
3196 	struct ceph_fsid fsid;
3197 	struct rb_root need_resend = RB_ROOT;
3198 	LIST_HEAD(need_resend_linger);
3199 	bool handled_incremental = false;
3200 	bool was_pauserd, was_pausewr;
3201 	bool pauserd, pausewr;
3202 	int err;
3203 
3204 	dout("%s have %u\n", __func__, osdc->osdmap->epoch);
3205 	down_write(&osdc->lock);
3206 
3207 	/* verify fsid */
3208 	ceph_decode_need(&p, end, sizeof(fsid), bad);
3209 	ceph_decode_copy(&p, &fsid, sizeof(fsid));
3210 	if (ceph_check_fsid(osdc->client, &fsid) < 0)
3211 		goto bad;
3212 
3213 	was_pauserd = ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSERD);
3214 	was_pausewr = ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSEWR) ||
3215 		      ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL) ||
3216 		      have_pool_full(osdc);
3217 
3218 	/* incremental maps */
3219 	ceph_decode_32_safe(&p, end, nr_maps, bad);
3220 	dout(" %d inc maps\n", nr_maps);
3221 	while (nr_maps > 0) {
3222 		ceph_decode_need(&p, end, 2*sizeof(u32), bad);
3223 		epoch = ceph_decode_32(&p);
3224 		maplen = ceph_decode_32(&p);
3225 		ceph_decode_need(&p, end, maplen, bad);
3226 		if (osdc->osdmap->epoch &&
3227 		    osdc->osdmap->epoch + 1 == epoch) {
3228 			dout("applying incremental map %u len %d\n",
3229 			     epoch, maplen);
3230 			err = handle_one_map(osdc, p, p + maplen, true,
3231 					     &need_resend, &need_resend_linger);
3232 			if (err)
3233 				goto bad;
3234 			handled_incremental = true;
3235 		} else {
3236 			dout("ignoring incremental map %u len %d\n",
3237 			     epoch, maplen);
3238 		}
3239 		p += maplen;
3240 		nr_maps--;
3241 	}
3242 	if (handled_incremental)
3243 		goto done;
3244 
3245 	/* full maps */
3246 	ceph_decode_32_safe(&p, end, nr_maps, bad);
3247 	dout(" %d full maps\n", nr_maps);
3248 	while (nr_maps) {
3249 		ceph_decode_need(&p, end, 2*sizeof(u32), bad);
3250 		epoch = ceph_decode_32(&p);
3251 		maplen = ceph_decode_32(&p);
3252 		ceph_decode_need(&p, end, maplen, bad);
3253 		if (nr_maps > 1) {
3254 			dout("skipping non-latest full map %u len %d\n",
3255 			     epoch, maplen);
3256 		} else if (osdc->osdmap->epoch >= epoch) {
3257 			dout("skipping full map %u len %d, "
3258 			     "older than our %u\n", epoch, maplen,
3259 			     osdc->osdmap->epoch);
3260 		} else {
3261 			dout("taking full map %u len %d\n", epoch, maplen);
3262 			err = handle_one_map(osdc, p, p + maplen, false,
3263 					     &need_resend, &need_resend_linger);
3264 			if (err)
3265 				goto bad;
3266 		}
3267 		p += maplen;
3268 		nr_maps--;
3269 	}
3270 
3271 done:
3272 	/*
3273 	 * subscribe to subsequent osdmap updates if full to ensure
3274 	 * we find out when we are no longer full and stop returning
3275 	 * ENOSPC.
3276 	 */
3277 	pauserd = ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSERD);
3278 	pausewr = ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSEWR) ||
3279 		  ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL) ||
3280 		  have_pool_full(osdc);
3281 	if (was_pauserd || was_pausewr || pauserd || pausewr)
3282 		maybe_request_map(osdc);
3283 
3284 	kick_requests(osdc, &need_resend, &need_resend_linger);
3285 
3286 	ceph_monc_got_map(&osdc->client->monc, CEPH_SUB_OSDMAP,
3287 			  osdc->osdmap->epoch);
3288 	up_write(&osdc->lock);
3289 	wake_up_all(&osdc->client->auth_wq);
3290 	return;
3291 
3292 bad:
3293 	pr_err("osdc handle_map corrupt msg\n");
3294 	ceph_msg_dump(msg);
3295 	up_write(&osdc->lock);
3296 }
3297 
3298 /*
3299  * Resubmit requests pending on the given osd.
3300  */
3301 static void kick_osd_requests(struct ceph_osd *osd)
3302 {
3303 	struct rb_node *n;
3304 
3305 	for (n = rb_first(&osd->o_requests); n; ) {
3306 		struct ceph_osd_request *req =
3307 		    rb_entry(n, struct ceph_osd_request, r_node);
3308 
3309 		n = rb_next(n); /* cancel_linger_request() */
3310 
3311 		if (!req->r_linger) {
3312 			if (!req->r_t.paused)
3313 				send_request(req);
3314 		} else {
3315 			cancel_linger_request(req);
3316 		}
3317 	}
3318 	for (n = rb_first(&osd->o_linger_requests); n; n = rb_next(n)) {
3319 		struct ceph_osd_linger_request *lreq =
3320 		    rb_entry(n, struct ceph_osd_linger_request, node);
3321 
3322 		send_linger(lreq);
3323 	}
3324 }
3325 
3326 /*
3327  * If the osd connection drops, we need to resubmit all requests.
3328  */
3329 static void osd_fault(struct ceph_connection *con)
3330 {
3331 	struct ceph_osd *osd = con->private;
3332 	struct ceph_osd_client *osdc = osd->o_osdc;
3333 
3334 	dout("%s osd %p osd%d\n", __func__, osd, osd->o_osd);
3335 
3336 	down_write(&osdc->lock);
3337 	if (!osd_registered(osd)) {
3338 		dout("%s osd%d unknown\n", __func__, osd->o_osd);
3339 		goto out_unlock;
3340 	}
3341 
3342 	if (!reopen_osd(osd))
3343 		kick_osd_requests(osd);
3344 	maybe_request_map(osdc);
3345 
3346 out_unlock:
3347 	up_write(&osdc->lock);
3348 }
3349 
3350 /*
3351  * Process osd watch notifications
3352  */
3353 static void handle_watch_notify(struct ceph_osd_client *osdc,
3354 				struct ceph_msg *msg)
3355 {
3356 	void *p = msg->front.iov_base;
3357 	void *const end = p + msg->front.iov_len;
3358 	struct ceph_osd_linger_request *lreq;
3359 	struct linger_work *lwork;
3360 	u8 proto_ver, opcode;
3361 	u64 cookie, notify_id;
3362 	u64 notifier_id = 0;
3363 	s32 return_code = 0;
3364 	void *payload = NULL;
3365 	u32 payload_len = 0;
3366 
3367 	ceph_decode_8_safe(&p, end, proto_ver, bad);
3368 	ceph_decode_8_safe(&p, end, opcode, bad);
3369 	ceph_decode_64_safe(&p, end, cookie, bad);
3370 	p += 8; /* skip ver */
3371 	ceph_decode_64_safe(&p, end, notify_id, bad);
3372 
3373 	if (proto_ver >= 1) {
3374 		ceph_decode_32_safe(&p, end, payload_len, bad);
3375 		ceph_decode_need(&p, end, payload_len, bad);
3376 		payload = p;
3377 		p += payload_len;
3378 	}
3379 
3380 	if (le16_to_cpu(msg->hdr.version) >= 2)
3381 		ceph_decode_32_safe(&p, end, return_code, bad);
3382 
3383 	if (le16_to_cpu(msg->hdr.version) >= 3)
3384 		ceph_decode_64_safe(&p, end, notifier_id, bad);
3385 
3386 	down_read(&osdc->lock);
3387 	lreq = lookup_linger_osdc(&osdc->linger_requests, cookie);
3388 	if (!lreq) {
3389 		dout("%s opcode %d cookie %llu dne\n", __func__, opcode,
3390 		     cookie);
3391 		goto out_unlock_osdc;
3392 	}
3393 
3394 	mutex_lock(&lreq->lock);
3395 	dout("%s opcode %d cookie %llu lreq %p is_watch %d\n", __func__,
3396 	     opcode, cookie, lreq, lreq->is_watch);
3397 	if (opcode == CEPH_WATCH_EVENT_DISCONNECT) {
3398 		if (!lreq->last_error) {
3399 			lreq->last_error = -ENOTCONN;
3400 			queue_watch_error(lreq);
3401 		}
3402 	} else if (!lreq->is_watch) {
3403 		/* CEPH_WATCH_EVENT_NOTIFY_COMPLETE */
3404 		if (lreq->notify_id && lreq->notify_id != notify_id) {
3405 			dout("lreq %p notify_id %llu != %llu, ignoring\n", lreq,
3406 			     lreq->notify_id, notify_id);
3407 		} else if (!completion_done(&lreq->notify_finish_wait)) {
3408 			struct ceph_msg_data *data =
3409 			    list_first_entry_or_null(&msg->data,
3410 						     struct ceph_msg_data,
3411 						     links);
3412 
3413 			if (data) {
3414 				if (lreq->preply_pages) {
3415 					WARN_ON(data->type !=
3416 							CEPH_MSG_DATA_PAGES);
3417 					*lreq->preply_pages = data->pages;
3418 					*lreq->preply_len = data->length;
3419 				} else {
3420 					ceph_release_page_vector(data->pages,
3421 					       calc_pages_for(0, data->length));
3422 				}
3423 			}
3424 			lreq->notify_finish_error = return_code;
3425 			complete_all(&lreq->notify_finish_wait);
3426 		}
3427 	} else {
3428 		/* CEPH_WATCH_EVENT_NOTIFY */
3429 		lwork = lwork_alloc(lreq, do_watch_notify);
3430 		if (!lwork) {
3431 			pr_err("failed to allocate notify-lwork\n");
3432 			goto out_unlock_lreq;
3433 		}
3434 
3435 		lwork->notify.notify_id = notify_id;
3436 		lwork->notify.notifier_id = notifier_id;
3437 		lwork->notify.payload = payload;
3438 		lwork->notify.payload_len = payload_len;
3439 		lwork->notify.msg = ceph_msg_get(msg);
3440 		lwork_queue(lwork);
3441 	}
3442 
3443 out_unlock_lreq:
3444 	mutex_unlock(&lreq->lock);
3445 out_unlock_osdc:
3446 	up_read(&osdc->lock);
3447 	return;
3448 
3449 bad:
3450 	pr_err("osdc handle_watch_notify corrupt msg\n");
3451 }
3452 
3453 /*
3454  * Register request, send initial attempt.
3455  */
3456 int ceph_osdc_start_request(struct ceph_osd_client *osdc,
3457 			    struct ceph_osd_request *req,
3458 			    bool nofail)
3459 {
3460 	down_read(&osdc->lock);
3461 	submit_request(req, false);
3462 	up_read(&osdc->lock);
3463 
3464 	return 0;
3465 }
3466 EXPORT_SYMBOL(ceph_osdc_start_request);
3467 
3468 /*
3469  * Unregister a registered request.  The request is not completed:
3470  * ->r_result isn't set and __complete_request() isn't called.
3471  */
3472 void ceph_osdc_cancel_request(struct ceph_osd_request *req)
3473 {
3474 	struct ceph_osd_client *osdc = req->r_osdc;
3475 
3476 	down_write(&osdc->lock);
3477 	if (req->r_osd)
3478 		cancel_request(req);
3479 	up_write(&osdc->lock);
3480 }
3481 EXPORT_SYMBOL(ceph_osdc_cancel_request);
3482 
3483 /*
3484  * @timeout: in jiffies, 0 means "wait forever"
3485  */
3486 static int wait_request_timeout(struct ceph_osd_request *req,
3487 				unsigned long timeout)
3488 {
3489 	long left;
3490 
3491 	dout("%s req %p tid %llu\n", __func__, req, req->r_tid);
3492 	left = wait_for_completion_killable_timeout(&req->r_completion,
3493 						ceph_timeout_jiffies(timeout));
3494 	if (left <= 0) {
3495 		left = left ?: -ETIMEDOUT;
3496 		ceph_osdc_cancel_request(req);
3497 	} else {
3498 		left = req->r_result; /* completed */
3499 	}
3500 
3501 	return left;
3502 }
3503 
3504 /*
3505  * wait for a request to complete
3506  */
3507 int ceph_osdc_wait_request(struct ceph_osd_client *osdc,
3508 			   struct ceph_osd_request *req)
3509 {
3510 	return wait_request_timeout(req, 0);
3511 }
3512 EXPORT_SYMBOL(ceph_osdc_wait_request);
3513 
3514 /*
3515  * sync - wait for all in-flight requests to flush.  avoid starvation.
3516  */
3517 void ceph_osdc_sync(struct ceph_osd_client *osdc)
3518 {
3519 	struct rb_node *n, *p;
3520 	u64 last_tid = atomic64_read(&osdc->last_tid);
3521 
3522 again:
3523 	down_read(&osdc->lock);
3524 	for (n = rb_first(&osdc->osds); n; n = rb_next(n)) {
3525 		struct ceph_osd *osd = rb_entry(n, struct ceph_osd, o_node);
3526 
3527 		mutex_lock(&osd->lock);
3528 		for (p = rb_first(&osd->o_requests); p; p = rb_next(p)) {
3529 			struct ceph_osd_request *req =
3530 			    rb_entry(p, struct ceph_osd_request, r_node);
3531 
3532 			if (req->r_tid > last_tid)
3533 				break;
3534 
3535 			if (!(req->r_flags & CEPH_OSD_FLAG_WRITE))
3536 				continue;
3537 
3538 			ceph_osdc_get_request(req);
3539 			mutex_unlock(&osd->lock);
3540 			up_read(&osdc->lock);
3541 			dout("%s waiting on req %p tid %llu last_tid %llu\n",
3542 			     __func__, req, req->r_tid, last_tid);
3543 			wait_for_completion(&req->r_done_completion);
3544 			ceph_osdc_put_request(req);
3545 			goto again;
3546 		}
3547 
3548 		mutex_unlock(&osd->lock);
3549 	}
3550 
3551 	up_read(&osdc->lock);
3552 	dout("%s done last_tid %llu\n", __func__, last_tid);
3553 }
3554 EXPORT_SYMBOL(ceph_osdc_sync);
3555 
3556 static struct ceph_osd_request *
3557 alloc_linger_request(struct ceph_osd_linger_request *lreq)
3558 {
3559 	struct ceph_osd_request *req;
3560 
3561 	req = ceph_osdc_alloc_request(lreq->osdc, NULL, 1, false, GFP_NOIO);
3562 	if (!req)
3563 		return NULL;
3564 
3565 	ceph_oid_copy(&req->r_base_oid, &lreq->t.base_oid);
3566 	ceph_oloc_copy(&req->r_base_oloc, &lreq->t.base_oloc);
3567 
3568 	if (ceph_osdc_alloc_messages(req, GFP_NOIO)) {
3569 		ceph_osdc_put_request(req);
3570 		return NULL;
3571 	}
3572 
3573 	return req;
3574 }
3575 
3576 /*
3577  * Returns a handle, caller owns a ref.
3578  */
3579 struct ceph_osd_linger_request *
3580 ceph_osdc_watch(struct ceph_osd_client *osdc,
3581 		struct ceph_object_id *oid,
3582 		struct ceph_object_locator *oloc,
3583 		rados_watchcb2_t wcb,
3584 		rados_watcherrcb_t errcb,
3585 		void *data)
3586 {
3587 	struct ceph_osd_linger_request *lreq;
3588 	int ret;
3589 
3590 	lreq = linger_alloc(osdc);
3591 	if (!lreq)
3592 		return ERR_PTR(-ENOMEM);
3593 
3594 	lreq->is_watch = true;
3595 	lreq->wcb = wcb;
3596 	lreq->errcb = errcb;
3597 	lreq->data = data;
3598 	lreq->watch_valid_thru = jiffies;
3599 
3600 	ceph_oid_copy(&lreq->t.base_oid, oid);
3601 	ceph_oloc_copy(&lreq->t.base_oloc, oloc);
3602 	lreq->t.flags = CEPH_OSD_FLAG_WRITE | CEPH_OSD_FLAG_ONDISK;
3603 	lreq->mtime = CURRENT_TIME;
3604 
3605 	lreq->reg_req = alloc_linger_request(lreq);
3606 	if (!lreq->reg_req) {
3607 		ret = -ENOMEM;
3608 		goto err_put_lreq;
3609 	}
3610 
3611 	lreq->ping_req = alloc_linger_request(lreq);
3612 	if (!lreq->ping_req) {
3613 		ret = -ENOMEM;
3614 		goto err_put_lreq;
3615 	}
3616 
3617 	down_write(&osdc->lock);
3618 	linger_register(lreq); /* before osd_req_op_* */
3619 	osd_req_op_watch_init(lreq->reg_req, 0, lreq->linger_id,
3620 			      CEPH_OSD_WATCH_OP_WATCH);
3621 	osd_req_op_watch_init(lreq->ping_req, 0, lreq->linger_id,
3622 			      CEPH_OSD_WATCH_OP_PING);
3623 	linger_submit(lreq);
3624 	up_write(&osdc->lock);
3625 
3626 	ret = linger_reg_commit_wait(lreq);
3627 	if (ret) {
3628 		linger_cancel(lreq);
3629 		goto err_put_lreq;
3630 	}
3631 
3632 	return lreq;
3633 
3634 err_put_lreq:
3635 	linger_put(lreq);
3636 	return ERR_PTR(ret);
3637 }
3638 EXPORT_SYMBOL(ceph_osdc_watch);
3639 
3640 /*
3641  * Releases a ref.
3642  *
3643  * Times out after mount_timeout to preserve rbd unmap behaviour
3644  * introduced in 2894e1d76974 ("rbd: timeout watch teardown on unmap
3645  * with mount_timeout").
3646  */
3647 int ceph_osdc_unwatch(struct ceph_osd_client *osdc,
3648 		      struct ceph_osd_linger_request *lreq)
3649 {
3650 	struct ceph_options *opts = osdc->client->options;
3651 	struct ceph_osd_request *req;
3652 	int ret;
3653 
3654 	req = ceph_osdc_alloc_request(osdc, NULL, 1, false, GFP_NOIO);
3655 	if (!req)
3656 		return -ENOMEM;
3657 
3658 	ceph_oid_copy(&req->r_base_oid, &lreq->t.base_oid);
3659 	ceph_oloc_copy(&req->r_base_oloc, &lreq->t.base_oloc);
3660 	req->r_flags = CEPH_OSD_FLAG_WRITE | CEPH_OSD_FLAG_ONDISK;
3661 	req->r_mtime = CURRENT_TIME;
3662 	osd_req_op_watch_init(req, 0, lreq->linger_id,
3663 			      CEPH_OSD_WATCH_OP_UNWATCH);
3664 
3665 	ret = ceph_osdc_alloc_messages(req, GFP_NOIO);
3666 	if (ret)
3667 		goto out_put_req;
3668 
3669 	ceph_osdc_start_request(osdc, req, false);
3670 	linger_cancel(lreq);
3671 	linger_put(lreq);
3672 	ret = wait_request_timeout(req, opts->mount_timeout);
3673 
3674 out_put_req:
3675 	ceph_osdc_put_request(req);
3676 	return ret;
3677 }
3678 EXPORT_SYMBOL(ceph_osdc_unwatch);
3679 
3680 static int osd_req_op_notify_ack_init(struct ceph_osd_request *req, int which,
3681 				      u64 notify_id, u64 cookie, void *payload,
3682 				      size_t payload_len)
3683 {
3684 	struct ceph_osd_req_op *op;
3685 	struct ceph_pagelist *pl;
3686 	int ret;
3687 
3688 	op = _osd_req_op_init(req, which, CEPH_OSD_OP_NOTIFY_ACK, 0);
3689 
3690 	pl = kmalloc(sizeof(*pl), GFP_NOIO);
3691 	if (!pl)
3692 		return -ENOMEM;
3693 
3694 	ceph_pagelist_init(pl);
3695 	ret = ceph_pagelist_encode_64(pl, notify_id);
3696 	ret |= ceph_pagelist_encode_64(pl, cookie);
3697 	if (payload) {
3698 		ret |= ceph_pagelist_encode_32(pl, payload_len);
3699 		ret |= ceph_pagelist_append(pl, payload, payload_len);
3700 	} else {
3701 		ret |= ceph_pagelist_encode_32(pl, 0);
3702 	}
3703 	if (ret) {
3704 		ceph_pagelist_release(pl);
3705 		return -ENOMEM;
3706 	}
3707 
3708 	ceph_osd_data_pagelist_init(&op->notify_ack.request_data, pl);
3709 	op->indata_len = pl->length;
3710 	return 0;
3711 }
3712 
3713 int ceph_osdc_notify_ack(struct ceph_osd_client *osdc,
3714 			 struct ceph_object_id *oid,
3715 			 struct ceph_object_locator *oloc,
3716 			 u64 notify_id,
3717 			 u64 cookie,
3718 			 void *payload,
3719 			 size_t payload_len)
3720 {
3721 	struct ceph_osd_request *req;
3722 	int ret;
3723 
3724 	req = ceph_osdc_alloc_request(osdc, NULL, 1, false, GFP_NOIO);
3725 	if (!req)
3726 		return -ENOMEM;
3727 
3728 	ceph_oid_copy(&req->r_base_oid, oid);
3729 	ceph_oloc_copy(&req->r_base_oloc, oloc);
3730 	req->r_flags = CEPH_OSD_FLAG_READ;
3731 
3732 	ret = ceph_osdc_alloc_messages(req, GFP_NOIO);
3733 	if (ret)
3734 		goto out_put_req;
3735 
3736 	ret = osd_req_op_notify_ack_init(req, 0, notify_id, cookie, payload,
3737 					 payload_len);
3738 	if (ret)
3739 		goto out_put_req;
3740 
3741 	ceph_osdc_start_request(osdc, req, false);
3742 	ret = ceph_osdc_wait_request(osdc, req);
3743 
3744 out_put_req:
3745 	ceph_osdc_put_request(req);
3746 	return ret;
3747 }
3748 EXPORT_SYMBOL(ceph_osdc_notify_ack);
3749 
3750 static int osd_req_op_notify_init(struct ceph_osd_request *req, int which,
3751 				  u64 cookie, u32 prot_ver, u32 timeout,
3752 				  void *payload, size_t payload_len)
3753 {
3754 	struct ceph_osd_req_op *op;
3755 	struct ceph_pagelist *pl;
3756 	int ret;
3757 
3758 	op = _osd_req_op_init(req, which, CEPH_OSD_OP_NOTIFY, 0);
3759 	op->notify.cookie = cookie;
3760 
3761 	pl = kmalloc(sizeof(*pl), GFP_NOIO);
3762 	if (!pl)
3763 		return -ENOMEM;
3764 
3765 	ceph_pagelist_init(pl);
3766 	ret = ceph_pagelist_encode_32(pl, 1); /* prot_ver */
3767 	ret |= ceph_pagelist_encode_32(pl, timeout);
3768 	ret |= ceph_pagelist_encode_32(pl, payload_len);
3769 	ret |= ceph_pagelist_append(pl, payload, payload_len);
3770 	if (ret) {
3771 		ceph_pagelist_release(pl);
3772 		return -ENOMEM;
3773 	}
3774 
3775 	ceph_osd_data_pagelist_init(&op->notify.request_data, pl);
3776 	op->indata_len = pl->length;
3777 	return 0;
3778 }
3779 
3780 /*
3781  * @timeout: in seconds
3782  *
3783  * @preply_{pages,len} are initialized both on success and error.
3784  * The caller is responsible for:
3785  *
3786  *     ceph_release_page_vector(reply_pages, calc_pages_for(0, reply_len))
3787  */
3788 int ceph_osdc_notify(struct ceph_osd_client *osdc,
3789 		     struct ceph_object_id *oid,
3790 		     struct ceph_object_locator *oloc,
3791 		     void *payload,
3792 		     size_t payload_len,
3793 		     u32 timeout,
3794 		     struct page ***preply_pages,
3795 		     size_t *preply_len)
3796 {
3797 	struct ceph_osd_linger_request *lreq;
3798 	struct page **pages;
3799 	int ret;
3800 
3801 	WARN_ON(!timeout);
3802 	if (preply_pages) {
3803 		*preply_pages = NULL;
3804 		*preply_len = 0;
3805 	}
3806 
3807 	lreq = linger_alloc(osdc);
3808 	if (!lreq)
3809 		return -ENOMEM;
3810 
3811 	lreq->preply_pages = preply_pages;
3812 	lreq->preply_len = preply_len;
3813 
3814 	ceph_oid_copy(&lreq->t.base_oid, oid);
3815 	ceph_oloc_copy(&lreq->t.base_oloc, oloc);
3816 	lreq->t.flags = CEPH_OSD_FLAG_READ;
3817 
3818 	lreq->reg_req = alloc_linger_request(lreq);
3819 	if (!lreq->reg_req) {
3820 		ret = -ENOMEM;
3821 		goto out_put_lreq;
3822 	}
3823 
3824 	/* for notify_id */
3825 	pages = ceph_alloc_page_vector(1, GFP_NOIO);
3826 	if (IS_ERR(pages)) {
3827 		ret = PTR_ERR(pages);
3828 		goto out_put_lreq;
3829 	}
3830 
3831 	down_write(&osdc->lock);
3832 	linger_register(lreq); /* before osd_req_op_* */
3833 	ret = osd_req_op_notify_init(lreq->reg_req, 0, lreq->linger_id, 1,
3834 				     timeout, payload, payload_len);
3835 	if (ret) {
3836 		linger_unregister(lreq);
3837 		up_write(&osdc->lock);
3838 		ceph_release_page_vector(pages, 1);
3839 		goto out_put_lreq;
3840 	}
3841 	ceph_osd_data_pages_init(osd_req_op_data(lreq->reg_req, 0, notify,
3842 						 response_data),
3843 				 pages, PAGE_SIZE, 0, false, true);
3844 	linger_submit(lreq);
3845 	up_write(&osdc->lock);
3846 
3847 	ret = linger_reg_commit_wait(lreq);
3848 	if (!ret)
3849 		ret = linger_notify_finish_wait(lreq);
3850 	else
3851 		dout("lreq %p failed to initiate notify %d\n", lreq, ret);
3852 
3853 	linger_cancel(lreq);
3854 out_put_lreq:
3855 	linger_put(lreq);
3856 	return ret;
3857 }
3858 EXPORT_SYMBOL(ceph_osdc_notify);
3859 
3860 /*
3861  * Return the number of milliseconds since the watch was last
3862  * confirmed, or an error.  If there is an error, the watch is no
3863  * longer valid, and should be destroyed with ceph_osdc_unwatch().
3864  */
3865 int ceph_osdc_watch_check(struct ceph_osd_client *osdc,
3866 			  struct ceph_osd_linger_request *lreq)
3867 {
3868 	unsigned long stamp, age;
3869 	int ret;
3870 
3871 	down_read(&osdc->lock);
3872 	mutex_lock(&lreq->lock);
3873 	stamp = lreq->watch_valid_thru;
3874 	if (!list_empty(&lreq->pending_lworks)) {
3875 		struct linger_work *lwork =
3876 		    list_first_entry(&lreq->pending_lworks,
3877 				     struct linger_work,
3878 				     pending_item);
3879 
3880 		if (time_before(lwork->queued_stamp, stamp))
3881 			stamp = lwork->queued_stamp;
3882 	}
3883 	age = jiffies - stamp;
3884 	dout("%s lreq %p linger_id %llu age %lu last_error %d\n", __func__,
3885 	     lreq, lreq->linger_id, age, lreq->last_error);
3886 	/* we are truncating to msecs, so return a safe upper bound */
3887 	ret = lreq->last_error ?: 1 + jiffies_to_msecs(age);
3888 
3889 	mutex_unlock(&lreq->lock);
3890 	up_read(&osdc->lock);
3891 	return ret;
3892 }
3893 
3894 static int decode_watcher(void **p, void *end, struct ceph_watch_item *item)
3895 {
3896 	u8 struct_v;
3897 	u32 struct_len;
3898 	int ret;
3899 
3900 	ret = ceph_start_decoding(p, end, 2, "watch_item_t",
3901 				  &struct_v, &struct_len);
3902 	if (ret)
3903 		return ret;
3904 
3905 	ceph_decode_copy(p, &item->name, sizeof(item->name));
3906 	item->cookie = ceph_decode_64(p);
3907 	*p += 4; /* skip timeout_seconds */
3908 	if (struct_v >= 2) {
3909 		ceph_decode_copy(p, &item->addr, sizeof(item->addr));
3910 		ceph_decode_addr(&item->addr);
3911 	}
3912 
3913 	dout("%s %s%llu cookie %llu addr %s\n", __func__,
3914 	     ENTITY_NAME(item->name), item->cookie,
3915 	     ceph_pr_addr(&item->addr.in_addr));
3916 	return 0;
3917 }
3918 
3919 static int decode_watchers(void **p, void *end,
3920 			   struct ceph_watch_item **watchers,
3921 			   u32 *num_watchers)
3922 {
3923 	u8 struct_v;
3924 	u32 struct_len;
3925 	int i;
3926 	int ret;
3927 
3928 	ret = ceph_start_decoding(p, end, 1, "obj_list_watch_response_t",
3929 				  &struct_v, &struct_len);
3930 	if (ret)
3931 		return ret;
3932 
3933 	*num_watchers = ceph_decode_32(p);
3934 	*watchers = kcalloc(*num_watchers, sizeof(**watchers), GFP_NOIO);
3935 	if (!*watchers)
3936 		return -ENOMEM;
3937 
3938 	for (i = 0; i < *num_watchers; i++) {
3939 		ret = decode_watcher(p, end, *watchers + i);
3940 		if (ret) {
3941 			kfree(*watchers);
3942 			return ret;
3943 		}
3944 	}
3945 
3946 	return 0;
3947 }
3948 
3949 /*
3950  * On success, the caller is responsible for:
3951  *
3952  *     kfree(watchers);
3953  */
3954 int ceph_osdc_list_watchers(struct ceph_osd_client *osdc,
3955 			    struct ceph_object_id *oid,
3956 			    struct ceph_object_locator *oloc,
3957 			    struct ceph_watch_item **watchers,
3958 			    u32 *num_watchers)
3959 {
3960 	struct ceph_osd_request *req;
3961 	struct page **pages;
3962 	int ret;
3963 
3964 	req = ceph_osdc_alloc_request(osdc, NULL, 1, false, GFP_NOIO);
3965 	if (!req)
3966 		return -ENOMEM;
3967 
3968 	ceph_oid_copy(&req->r_base_oid, oid);
3969 	ceph_oloc_copy(&req->r_base_oloc, oloc);
3970 	req->r_flags = CEPH_OSD_FLAG_READ;
3971 
3972 	ret = ceph_osdc_alloc_messages(req, GFP_NOIO);
3973 	if (ret)
3974 		goto out_put_req;
3975 
3976 	pages = ceph_alloc_page_vector(1, GFP_NOIO);
3977 	if (IS_ERR(pages)) {
3978 		ret = PTR_ERR(pages);
3979 		goto out_put_req;
3980 	}
3981 
3982 	osd_req_op_init(req, 0, CEPH_OSD_OP_LIST_WATCHERS, 0);
3983 	ceph_osd_data_pages_init(osd_req_op_data(req, 0, list_watchers,
3984 						 response_data),
3985 				 pages, PAGE_SIZE, 0, false, true);
3986 
3987 	ceph_osdc_start_request(osdc, req, false);
3988 	ret = ceph_osdc_wait_request(osdc, req);
3989 	if (ret >= 0) {
3990 		void *p = page_address(pages[0]);
3991 		void *const end = p + req->r_ops[0].outdata_len;
3992 
3993 		ret = decode_watchers(&p, end, watchers, num_watchers);
3994 	}
3995 
3996 out_put_req:
3997 	ceph_osdc_put_request(req);
3998 	return ret;
3999 }
4000 EXPORT_SYMBOL(ceph_osdc_list_watchers);
4001 
4002 /*
4003  * Call all pending notify callbacks - for use after a watch is
4004  * unregistered, to make sure no more callbacks for it will be invoked
4005  */
4006 void ceph_osdc_flush_notifies(struct ceph_osd_client *osdc)
4007 {
4008 	dout("%s osdc %p\n", __func__, osdc);
4009 	flush_workqueue(osdc->notify_wq);
4010 }
4011 EXPORT_SYMBOL(ceph_osdc_flush_notifies);
4012 
4013 void ceph_osdc_maybe_request_map(struct ceph_osd_client *osdc)
4014 {
4015 	down_read(&osdc->lock);
4016 	maybe_request_map(osdc);
4017 	up_read(&osdc->lock);
4018 }
4019 EXPORT_SYMBOL(ceph_osdc_maybe_request_map);
4020 
4021 /*
4022  * Execute an OSD class method on an object.
4023  *
4024  * @flags: CEPH_OSD_FLAG_*
4025  * @resp_len: out param for reply length
4026  */
4027 int ceph_osdc_call(struct ceph_osd_client *osdc,
4028 		   struct ceph_object_id *oid,
4029 		   struct ceph_object_locator *oloc,
4030 		   const char *class, const char *method,
4031 		   unsigned int flags,
4032 		   struct page *req_page, size_t req_len,
4033 		   struct page *resp_page, size_t *resp_len)
4034 {
4035 	struct ceph_osd_request *req;
4036 	int ret;
4037 
4038 	req = ceph_osdc_alloc_request(osdc, NULL, 1, false, GFP_NOIO);
4039 	if (!req)
4040 		return -ENOMEM;
4041 
4042 	ceph_oid_copy(&req->r_base_oid, oid);
4043 	ceph_oloc_copy(&req->r_base_oloc, oloc);
4044 	req->r_flags = flags;
4045 
4046 	ret = ceph_osdc_alloc_messages(req, GFP_NOIO);
4047 	if (ret)
4048 		goto out_put_req;
4049 
4050 	osd_req_op_cls_init(req, 0, CEPH_OSD_OP_CALL, class, method);
4051 	if (req_page)
4052 		osd_req_op_cls_request_data_pages(req, 0, &req_page, req_len,
4053 						  0, false, false);
4054 	if (resp_page)
4055 		osd_req_op_cls_response_data_pages(req, 0, &resp_page,
4056 						   PAGE_SIZE, 0, false, false);
4057 
4058 	ceph_osdc_start_request(osdc, req, false);
4059 	ret = ceph_osdc_wait_request(osdc, req);
4060 	if (ret >= 0) {
4061 		ret = req->r_ops[0].rval;
4062 		if (resp_page)
4063 			*resp_len = req->r_ops[0].outdata_len;
4064 	}
4065 
4066 out_put_req:
4067 	ceph_osdc_put_request(req);
4068 	return ret;
4069 }
4070 EXPORT_SYMBOL(ceph_osdc_call);
4071 
4072 /*
4073  * init, shutdown
4074  */
4075 int ceph_osdc_init(struct ceph_osd_client *osdc, struct ceph_client *client)
4076 {
4077 	int err;
4078 
4079 	dout("init\n");
4080 	osdc->client = client;
4081 	init_rwsem(&osdc->lock);
4082 	osdc->osds = RB_ROOT;
4083 	INIT_LIST_HEAD(&osdc->osd_lru);
4084 	spin_lock_init(&osdc->osd_lru_lock);
4085 	osd_init(&osdc->homeless_osd);
4086 	osdc->homeless_osd.o_osdc = osdc;
4087 	osdc->homeless_osd.o_osd = CEPH_HOMELESS_OSD;
4088 	osdc->last_linger_id = CEPH_LINGER_ID_START;
4089 	osdc->linger_requests = RB_ROOT;
4090 	osdc->map_checks = RB_ROOT;
4091 	osdc->linger_map_checks = RB_ROOT;
4092 	INIT_DELAYED_WORK(&osdc->timeout_work, handle_timeout);
4093 	INIT_DELAYED_WORK(&osdc->osds_timeout_work, handle_osds_timeout);
4094 
4095 	err = -ENOMEM;
4096 	osdc->osdmap = ceph_osdmap_alloc();
4097 	if (!osdc->osdmap)
4098 		goto out;
4099 
4100 	osdc->req_mempool = mempool_create_slab_pool(10,
4101 						     ceph_osd_request_cache);
4102 	if (!osdc->req_mempool)
4103 		goto out_map;
4104 
4105 	err = ceph_msgpool_init(&osdc->msgpool_op, CEPH_MSG_OSD_OP,
4106 				PAGE_SIZE, 10, true, "osd_op");
4107 	if (err < 0)
4108 		goto out_mempool;
4109 	err = ceph_msgpool_init(&osdc->msgpool_op_reply, CEPH_MSG_OSD_OPREPLY,
4110 				PAGE_SIZE, 10, true, "osd_op_reply");
4111 	if (err < 0)
4112 		goto out_msgpool;
4113 
4114 	err = -ENOMEM;
4115 	osdc->notify_wq = create_singlethread_workqueue("ceph-watch-notify");
4116 	if (!osdc->notify_wq)
4117 		goto out_msgpool_reply;
4118 
4119 	schedule_delayed_work(&osdc->timeout_work,
4120 			      osdc->client->options->osd_keepalive_timeout);
4121 	schedule_delayed_work(&osdc->osds_timeout_work,
4122 	    round_jiffies_relative(osdc->client->options->osd_idle_ttl));
4123 
4124 	return 0;
4125 
4126 out_msgpool_reply:
4127 	ceph_msgpool_destroy(&osdc->msgpool_op_reply);
4128 out_msgpool:
4129 	ceph_msgpool_destroy(&osdc->msgpool_op);
4130 out_mempool:
4131 	mempool_destroy(osdc->req_mempool);
4132 out_map:
4133 	ceph_osdmap_destroy(osdc->osdmap);
4134 out:
4135 	return err;
4136 }
4137 
4138 void ceph_osdc_stop(struct ceph_osd_client *osdc)
4139 {
4140 	flush_workqueue(osdc->notify_wq);
4141 	destroy_workqueue(osdc->notify_wq);
4142 	cancel_delayed_work_sync(&osdc->timeout_work);
4143 	cancel_delayed_work_sync(&osdc->osds_timeout_work);
4144 
4145 	down_write(&osdc->lock);
4146 	while (!RB_EMPTY_ROOT(&osdc->osds)) {
4147 		struct ceph_osd *osd = rb_entry(rb_first(&osdc->osds),
4148 						struct ceph_osd, o_node);
4149 		close_osd(osd);
4150 	}
4151 	up_write(&osdc->lock);
4152 	WARN_ON(atomic_read(&osdc->homeless_osd.o_ref) != 1);
4153 	osd_cleanup(&osdc->homeless_osd);
4154 
4155 	WARN_ON(!list_empty(&osdc->osd_lru));
4156 	WARN_ON(!RB_EMPTY_ROOT(&osdc->linger_requests));
4157 	WARN_ON(!RB_EMPTY_ROOT(&osdc->map_checks));
4158 	WARN_ON(!RB_EMPTY_ROOT(&osdc->linger_map_checks));
4159 	WARN_ON(atomic_read(&osdc->num_requests));
4160 	WARN_ON(atomic_read(&osdc->num_homeless));
4161 
4162 	ceph_osdmap_destroy(osdc->osdmap);
4163 	mempool_destroy(osdc->req_mempool);
4164 	ceph_msgpool_destroy(&osdc->msgpool_op);
4165 	ceph_msgpool_destroy(&osdc->msgpool_op_reply);
4166 }
4167 
4168 /*
4169  * Read some contiguous pages.  If we cross a stripe boundary, shorten
4170  * *plen.  Return number of bytes read, or error.
4171  */
4172 int ceph_osdc_readpages(struct ceph_osd_client *osdc,
4173 			struct ceph_vino vino, struct ceph_file_layout *layout,
4174 			u64 off, u64 *plen,
4175 			u32 truncate_seq, u64 truncate_size,
4176 			struct page **pages, int num_pages, int page_align)
4177 {
4178 	struct ceph_osd_request *req;
4179 	int rc = 0;
4180 
4181 	dout("readpages on ino %llx.%llx on %llu~%llu\n", vino.ino,
4182 	     vino.snap, off, *plen);
4183 	req = ceph_osdc_new_request(osdc, layout, vino, off, plen, 0, 1,
4184 				    CEPH_OSD_OP_READ, CEPH_OSD_FLAG_READ,
4185 				    NULL, truncate_seq, truncate_size,
4186 				    false);
4187 	if (IS_ERR(req))
4188 		return PTR_ERR(req);
4189 
4190 	/* it may be a short read due to an object boundary */
4191 	osd_req_op_extent_osd_data_pages(req, 0,
4192 				pages, *plen, page_align, false, false);
4193 
4194 	dout("readpages  final extent is %llu~%llu (%llu bytes align %d)\n",
4195 	     off, *plen, *plen, page_align);
4196 
4197 	rc = ceph_osdc_start_request(osdc, req, false);
4198 	if (!rc)
4199 		rc = ceph_osdc_wait_request(osdc, req);
4200 
4201 	ceph_osdc_put_request(req);
4202 	dout("readpages result %d\n", rc);
4203 	return rc;
4204 }
4205 EXPORT_SYMBOL(ceph_osdc_readpages);
4206 
4207 /*
4208  * do a synchronous write on N pages
4209  */
4210 int ceph_osdc_writepages(struct ceph_osd_client *osdc, struct ceph_vino vino,
4211 			 struct ceph_file_layout *layout,
4212 			 struct ceph_snap_context *snapc,
4213 			 u64 off, u64 len,
4214 			 u32 truncate_seq, u64 truncate_size,
4215 			 struct timespec *mtime,
4216 			 struct page **pages, int num_pages)
4217 {
4218 	struct ceph_osd_request *req;
4219 	int rc = 0;
4220 	int page_align = off & ~PAGE_MASK;
4221 
4222 	req = ceph_osdc_new_request(osdc, layout, vino, off, &len, 0, 1,
4223 				    CEPH_OSD_OP_WRITE,
4224 				    CEPH_OSD_FLAG_ONDISK | CEPH_OSD_FLAG_WRITE,
4225 				    snapc, truncate_seq, truncate_size,
4226 				    true);
4227 	if (IS_ERR(req))
4228 		return PTR_ERR(req);
4229 
4230 	/* it may be a short write due to an object boundary */
4231 	osd_req_op_extent_osd_data_pages(req, 0, pages, len, page_align,
4232 				false, false);
4233 	dout("writepages %llu~%llu (%llu bytes)\n", off, len, len);
4234 
4235 	req->r_mtime = *mtime;
4236 	rc = ceph_osdc_start_request(osdc, req, true);
4237 	if (!rc)
4238 		rc = ceph_osdc_wait_request(osdc, req);
4239 
4240 	ceph_osdc_put_request(req);
4241 	if (rc == 0)
4242 		rc = len;
4243 	dout("writepages result %d\n", rc);
4244 	return rc;
4245 }
4246 EXPORT_SYMBOL(ceph_osdc_writepages);
4247 
4248 int ceph_osdc_setup(void)
4249 {
4250 	size_t size = sizeof(struct ceph_osd_request) +
4251 	    CEPH_OSD_SLAB_OPS * sizeof(struct ceph_osd_req_op);
4252 
4253 	BUG_ON(ceph_osd_request_cache);
4254 	ceph_osd_request_cache = kmem_cache_create("ceph_osd_request", size,
4255 						   0, 0, NULL);
4256 
4257 	return ceph_osd_request_cache ? 0 : -ENOMEM;
4258 }
4259 EXPORT_SYMBOL(ceph_osdc_setup);
4260 
4261 void ceph_osdc_cleanup(void)
4262 {
4263 	BUG_ON(!ceph_osd_request_cache);
4264 	kmem_cache_destroy(ceph_osd_request_cache);
4265 	ceph_osd_request_cache = NULL;
4266 }
4267 EXPORT_SYMBOL(ceph_osdc_cleanup);
4268 
4269 /*
4270  * handle incoming message
4271  */
4272 static void dispatch(struct ceph_connection *con, struct ceph_msg *msg)
4273 {
4274 	struct ceph_osd *osd = con->private;
4275 	struct ceph_osd_client *osdc = osd->o_osdc;
4276 	int type = le16_to_cpu(msg->hdr.type);
4277 
4278 	switch (type) {
4279 	case CEPH_MSG_OSD_MAP:
4280 		ceph_osdc_handle_map(osdc, msg);
4281 		break;
4282 	case CEPH_MSG_OSD_OPREPLY:
4283 		handle_reply(osd, msg);
4284 		break;
4285 	case CEPH_MSG_WATCH_NOTIFY:
4286 		handle_watch_notify(osdc, msg);
4287 		break;
4288 
4289 	default:
4290 		pr_err("received unknown message type %d %s\n", type,
4291 		       ceph_msg_type_name(type));
4292 	}
4293 
4294 	ceph_msg_put(msg);
4295 }
4296 
4297 /*
4298  * Lookup and return message for incoming reply.  Don't try to do
4299  * anything about a larger than preallocated data portion of the
4300  * message at the moment - for now, just skip the message.
4301  */
4302 static struct ceph_msg *get_reply(struct ceph_connection *con,
4303 				  struct ceph_msg_header *hdr,
4304 				  int *skip)
4305 {
4306 	struct ceph_osd *osd = con->private;
4307 	struct ceph_osd_client *osdc = osd->o_osdc;
4308 	struct ceph_msg *m = NULL;
4309 	struct ceph_osd_request *req;
4310 	int front_len = le32_to_cpu(hdr->front_len);
4311 	int data_len = le32_to_cpu(hdr->data_len);
4312 	u64 tid = le64_to_cpu(hdr->tid);
4313 
4314 	down_read(&osdc->lock);
4315 	if (!osd_registered(osd)) {
4316 		dout("%s osd%d unknown, skipping\n", __func__, osd->o_osd);
4317 		*skip = 1;
4318 		goto out_unlock_osdc;
4319 	}
4320 	WARN_ON(osd->o_osd != le64_to_cpu(hdr->src.num));
4321 
4322 	mutex_lock(&osd->lock);
4323 	req = lookup_request(&osd->o_requests, tid);
4324 	if (!req) {
4325 		dout("%s osd%d tid %llu unknown, skipping\n", __func__,
4326 		     osd->o_osd, tid);
4327 		*skip = 1;
4328 		goto out_unlock_session;
4329 	}
4330 
4331 	ceph_msg_revoke_incoming(req->r_reply);
4332 
4333 	if (front_len > req->r_reply->front_alloc_len) {
4334 		pr_warn("%s osd%d tid %llu front %d > preallocated %d\n",
4335 			__func__, osd->o_osd, req->r_tid, front_len,
4336 			req->r_reply->front_alloc_len);
4337 		m = ceph_msg_new(CEPH_MSG_OSD_OPREPLY, front_len, GFP_NOFS,
4338 				 false);
4339 		if (!m)
4340 			goto out_unlock_session;
4341 		ceph_msg_put(req->r_reply);
4342 		req->r_reply = m;
4343 	}
4344 
4345 	if (data_len > req->r_reply->data_length) {
4346 		pr_warn("%s osd%d tid %llu data %d > preallocated %zu, skipping\n",
4347 			__func__, osd->o_osd, req->r_tid, data_len,
4348 			req->r_reply->data_length);
4349 		m = NULL;
4350 		*skip = 1;
4351 		goto out_unlock_session;
4352 	}
4353 
4354 	m = ceph_msg_get(req->r_reply);
4355 	dout("get_reply tid %lld %p\n", tid, m);
4356 
4357 out_unlock_session:
4358 	mutex_unlock(&osd->lock);
4359 out_unlock_osdc:
4360 	up_read(&osdc->lock);
4361 	return m;
4362 }
4363 
4364 /*
4365  * TODO: switch to a msg-owned pagelist
4366  */
4367 static struct ceph_msg *alloc_msg_with_page_vector(struct ceph_msg_header *hdr)
4368 {
4369 	struct ceph_msg *m;
4370 	int type = le16_to_cpu(hdr->type);
4371 	u32 front_len = le32_to_cpu(hdr->front_len);
4372 	u32 data_len = le32_to_cpu(hdr->data_len);
4373 
4374 	m = ceph_msg_new(type, front_len, GFP_NOIO, false);
4375 	if (!m)
4376 		return NULL;
4377 
4378 	if (data_len) {
4379 		struct page **pages;
4380 		struct ceph_osd_data osd_data;
4381 
4382 		pages = ceph_alloc_page_vector(calc_pages_for(0, data_len),
4383 					       GFP_NOIO);
4384 		if (IS_ERR(pages)) {
4385 			ceph_msg_put(m);
4386 			return NULL;
4387 		}
4388 
4389 		ceph_osd_data_pages_init(&osd_data, pages, data_len, 0, false,
4390 					 false);
4391 		ceph_osdc_msg_data_add(m, &osd_data);
4392 	}
4393 
4394 	return m;
4395 }
4396 
4397 static struct ceph_msg *alloc_msg(struct ceph_connection *con,
4398 				  struct ceph_msg_header *hdr,
4399 				  int *skip)
4400 {
4401 	struct ceph_osd *osd = con->private;
4402 	int type = le16_to_cpu(hdr->type);
4403 
4404 	*skip = 0;
4405 	switch (type) {
4406 	case CEPH_MSG_OSD_MAP:
4407 	case CEPH_MSG_WATCH_NOTIFY:
4408 		return alloc_msg_with_page_vector(hdr);
4409 	case CEPH_MSG_OSD_OPREPLY:
4410 		return get_reply(con, hdr, skip);
4411 	default:
4412 		pr_warn("%s osd%d unknown msg type %d, skipping\n", __func__,
4413 			osd->o_osd, type);
4414 		*skip = 1;
4415 		return NULL;
4416 	}
4417 }
4418 
4419 /*
4420  * Wrappers to refcount containing ceph_osd struct
4421  */
4422 static struct ceph_connection *get_osd_con(struct ceph_connection *con)
4423 {
4424 	struct ceph_osd *osd = con->private;
4425 	if (get_osd(osd))
4426 		return con;
4427 	return NULL;
4428 }
4429 
4430 static void put_osd_con(struct ceph_connection *con)
4431 {
4432 	struct ceph_osd *osd = con->private;
4433 	put_osd(osd);
4434 }
4435 
4436 /*
4437  * authentication
4438  */
4439 /*
4440  * Note: returned pointer is the address of a structure that's
4441  * managed separately.  Caller must *not* attempt to free it.
4442  */
4443 static struct ceph_auth_handshake *get_authorizer(struct ceph_connection *con,
4444 					int *proto, int force_new)
4445 {
4446 	struct ceph_osd *o = con->private;
4447 	struct ceph_osd_client *osdc = o->o_osdc;
4448 	struct ceph_auth_client *ac = osdc->client->monc.auth;
4449 	struct ceph_auth_handshake *auth = &o->o_auth;
4450 
4451 	if (force_new && auth->authorizer) {
4452 		ceph_auth_destroy_authorizer(auth->authorizer);
4453 		auth->authorizer = NULL;
4454 	}
4455 	if (!auth->authorizer) {
4456 		int ret = ceph_auth_create_authorizer(ac, CEPH_ENTITY_TYPE_OSD,
4457 						      auth);
4458 		if (ret)
4459 			return ERR_PTR(ret);
4460 	} else {
4461 		int ret = ceph_auth_update_authorizer(ac, CEPH_ENTITY_TYPE_OSD,
4462 						     auth);
4463 		if (ret)
4464 			return ERR_PTR(ret);
4465 	}
4466 	*proto = ac->protocol;
4467 
4468 	return auth;
4469 }
4470 
4471 
4472 static int verify_authorizer_reply(struct ceph_connection *con)
4473 {
4474 	struct ceph_osd *o = con->private;
4475 	struct ceph_osd_client *osdc = o->o_osdc;
4476 	struct ceph_auth_client *ac = osdc->client->monc.auth;
4477 
4478 	return ceph_auth_verify_authorizer_reply(ac, o->o_auth.authorizer);
4479 }
4480 
4481 static int invalidate_authorizer(struct ceph_connection *con)
4482 {
4483 	struct ceph_osd *o = con->private;
4484 	struct ceph_osd_client *osdc = o->o_osdc;
4485 	struct ceph_auth_client *ac = osdc->client->monc.auth;
4486 
4487 	ceph_auth_invalidate_authorizer(ac, CEPH_ENTITY_TYPE_OSD);
4488 	return ceph_monc_validate_auth(&osdc->client->monc);
4489 }
4490 
4491 static int osd_sign_message(struct ceph_msg *msg)
4492 {
4493 	struct ceph_osd *o = msg->con->private;
4494 	struct ceph_auth_handshake *auth = &o->o_auth;
4495 
4496 	return ceph_auth_sign_message(auth, msg);
4497 }
4498 
4499 static int osd_check_message_signature(struct ceph_msg *msg)
4500 {
4501 	struct ceph_osd *o = msg->con->private;
4502 	struct ceph_auth_handshake *auth = &o->o_auth;
4503 
4504 	return ceph_auth_check_message_signature(auth, msg);
4505 }
4506 
4507 static const struct ceph_connection_operations osd_con_ops = {
4508 	.get = get_osd_con,
4509 	.put = put_osd_con,
4510 	.dispatch = dispatch,
4511 	.get_authorizer = get_authorizer,
4512 	.verify_authorizer_reply = verify_authorizer_reply,
4513 	.invalidate_authorizer = invalidate_authorizer,
4514 	.alloc_msg = alloc_msg,
4515 	.sign_message = osd_sign_message,
4516 	.check_message_signature = osd_check_message_signature,
4517 	.fault = osd_fault,
4518 };
4519