xref: /kernel/linux/linux-5.10/net/ceph/osd_client.c (revision 8c2ecf20)
1// SPDX-License-Identifier: GPL-2.0
2
3#include <linux/ceph/ceph_debug.h>
4
5#include <linux/module.h>
6#include <linux/err.h>
7#include <linux/highmem.h>
8#include <linux/mm.h>
9#include <linux/pagemap.h>
10#include <linux/slab.h>
11#include <linux/uaccess.h>
12#ifdef CONFIG_BLOCK
13#include <linux/bio.h>
14#endif
15
16#include <linux/ceph/ceph_features.h>
17#include <linux/ceph/libceph.h>
18#include <linux/ceph/osd_client.h>
19#include <linux/ceph/messenger.h>
20#include <linux/ceph/decode.h>
21#include <linux/ceph/auth.h>
22#include <linux/ceph/pagelist.h>
23#include <linux/ceph/striper.h>
24
25#define OSD_OPREPLY_FRONT_LEN	512
26
27static struct kmem_cache	*ceph_osd_request_cache;
28
29static const struct ceph_connection_operations osd_con_ops;
30
31/*
32 * Implement client access to distributed object storage cluster.
33 *
34 * All data objects are stored within a cluster/cloud of OSDs, or
35 * "object storage devices."  (Note that Ceph OSDs have _nothing_ to
36 * do with the T10 OSD extensions to SCSI.)  Ceph OSDs are simply
37 * remote daemons serving up and coordinating consistent and safe
38 * access to storage.
39 *
40 * Cluster membership and the mapping of data objects onto storage devices
41 * are described by the osd map.
42 *
43 * We keep track of pending OSD requests (read, write), resubmit
44 * requests to different OSDs when the cluster topology/data layout
45 * change, or retry the affected requests when the communications
46 * channel with an OSD is reset.
47 */
48
49static void link_request(struct ceph_osd *osd, struct ceph_osd_request *req);
50static void unlink_request(struct ceph_osd *osd, struct ceph_osd_request *req);
51static void link_linger(struct ceph_osd *osd,
52			struct ceph_osd_linger_request *lreq);
53static void unlink_linger(struct ceph_osd *osd,
54			  struct ceph_osd_linger_request *lreq);
55static void clear_backoffs(struct ceph_osd *osd);
56
57#if 1
58static inline bool rwsem_is_wrlocked(struct rw_semaphore *sem)
59{
60	bool wrlocked = true;
61
62	if (unlikely(down_read_trylock(sem))) {
63		wrlocked = false;
64		up_read(sem);
65	}
66
67	return wrlocked;
68}
69static inline void verify_osdc_locked(struct ceph_osd_client *osdc)
70{
71	WARN_ON(!rwsem_is_locked(&osdc->lock));
72}
73static inline void verify_osdc_wrlocked(struct ceph_osd_client *osdc)
74{
75	WARN_ON(!rwsem_is_wrlocked(&osdc->lock));
76}
77static inline void verify_osd_locked(struct ceph_osd *osd)
78{
79	struct ceph_osd_client *osdc = osd->o_osdc;
80
81	WARN_ON(!(mutex_is_locked(&osd->lock) &&
82		  rwsem_is_locked(&osdc->lock)) &&
83		!rwsem_is_wrlocked(&osdc->lock));
84}
85static inline void verify_lreq_locked(struct ceph_osd_linger_request *lreq)
86{
87	WARN_ON(!mutex_is_locked(&lreq->lock));
88}
89#else
90static inline void verify_osdc_locked(struct ceph_osd_client *osdc) { }
91static inline void verify_osdc_wrlocked(struct ceph_osd_client *osdc) { }
92static inline void verify_osd_locked(struct ceph_osd *osd) { }
93static inline void verify_lreq_locked(struct ceph_osd_linger_request *lreq) { }
94#endif
95
96/*
97 * calculate the mapping of a file extent onto an object, and fill out the
98 * request accordingly.  shorten extent as necessary if it crosses an
99 * object boundary.
100 *
101 * fill osd op in request message.
102 */
103static int calc_layout(struct ceph_file_layout *layout, u64 off, u64 *plen,
104			u64 *objnum, u64 *objoff, u64 *objlen)
105{
106	u64 orig_len = *plen;
107	u32 xlen;
108
109	/* object extent? */
110	ceph_calc_file_object_mapping(layout, off, orig_len, objnum,
111					  objoff, &xlen);
112	*objlen = xlen;
113	if (*objlen < orig_len) {
114		*plen = *objlen;
115		dout(" skipping last %llu, final file extent %llu~%llu\n",
116		     orig_len - *plen, off, *plen);
117	}
118
119	dout("calc_layout objnum=%llx %llu~%llu\n", *objnum, *objoff, *objlen);
120	return 0;
121}
122
123static void ceph_osd_data_init(struct ceph_osd_data *osd_data)
124{
125	memset(osd_data, 0, sizeof (*osd_data));
126	osd_data->type = CEPH_OSD_DATA_TYPE_NONE;
127}
128
129/*
130 * Consumes @pages if @own_pages is true.
131 */
132static void ceph_osd_data_pages_init(struct ceph_osd_data *osd_data,
133			struct page **pages, u64 length, u32 alignment,
134			bool pages_from_pool, bool own_pages)
135{
136	osd_data->type = CEPH_OSD_DATA_TYPE_PAGES;
137	osd_data->pages = pages;
138	osd_data->length = length;
139	osd_data->alignment = alignment;
140	osd_data->pages_from_pool = pages_from_pool;
141	osd_data->own_pages = own_pages;
142}
143
144/*
145 * Consumes a ref on @pagelist.
146 */
147static void ceph_osd_data_pagelist_init(struct ceph_osd_data *osd_data,
148			struct ceph_pagelist *pagelist)
149{
150	osd_data->type = CEPH_OSD_DATA_TYPE_PAGELIST;
151	osd_data->pagelist = pagelist;
152}
153
154#ifdef CONFIG_BLOCK
155static void ceph_osd_data_bio_init(struct ceph_osd_data *osd_data,
156				   struct ceph_bio_iter *bio_pos,
157				   u32 bio_length)
158{
159	osd_data->type = CEPH_OSD_DATA_TYPE_BIO;
160	osd_data->bio_pos = *bio_pos;
161	osd_data->bio_length = bio_length;
162}
163#endif /* CONFIG_BLOCK */
164
165static void ceph_osd_data_bvecs_init(struct ceph_osd_data *osd_data,
166				     struct ceph_bvec_iter *bvec_pos,
167				     u32 num_bvecs)
168{
169	osd_data->type = CEPH_OSD_DATA_TYPE_BVECS;
170	osd_data->bvec_pos = *bvec_pos;
171	osd_data->num_bvecs = num_bvecs;
172}
173
174static struct ceph_osd_data *
175osd_req_op_raw_data_in(struct ceph_osd_request *osd_req, unsigned int which)
176{
177	BUG_ON(which >= osd_req->r_num_ops);
178
179	return &osd_req->r_ops[which].raw_data_in;
180}
181
182struct ceph_osd_data *
183osd_req_op_extent_osd_data(struct ceph_osd_request *osd_req,
184			unsigned int which)
185{
186	return osd_req_op_data(osd_req, which, extent, osd_data);
187}
188EXPORT_SYMBOL(osd_req_op_extent_osd_data);
189
190void osd_req_op_raw_data_in_pages(struct ceph_osd_request *osd_req,
191			unsigned int which, struct page **pages,
192			u64 length, u32 alignment,
193			bool pages_from_pool, bool own_pages)
194{
195	struct ceph_osd_data *osd_data;
196
197	osd_data = osd_req_op_raw_data_in(osd_req, which);
198	ceph_osd_data_pages_init(osd_data, pages, length, alignment,
199				pages_from_pool, own_pages);
200}
201EXPORT_SYMBOL(osd_req_op_raw_data_in_pages);
202
203void osd_req_op_extent_osd_data_pages(struct ceph_osd_request *osd_req,
204			unsigned int which, struct page **pages,
205			u64 length, u32 alignment,
206			bool pages_from_pool, bool own_pages)
207{
208	struct ceph_osd_data *osd_data;
209
210	osd_data = osd_req_op_data(osd_req, which, extent, osd_data);
211	ceph_osd_data_pages_init(osd_data, pages, length, alignment,
212				pages_from_pool, own_pages);
213}
214EXPORT_SYMBOL(osd_req_op_extent_osd_data_pages);
215
216void osd_req_op_extent_osd_data_pagelist(struct ceph_osd_request *osd_req,
217			unsigned int which, struct ceph_pagelist *pagelist)
218{
219	struct ceph_osd_data *osd_data;
220
221	osd_data = osd_req_op_data(osd_req, which, extent, osd_data);
222	ceph_osd_data_pagelist_init(osd_data, pagelist);
223}
224EXPORT_SYMBOL(osd_req_op_extent_osd_data_pagelist);
225
226#ifdef CONFIG_BLOCK
227void osd_req_op_extent_osd_data_bio(struct ceph_osd_request *osd_req,
228				    unsigned int which,
229				    struct ceph_bio_iter *bio_pos,
230				    u32 bio_length)
231{
232	struct ceph_osd_data *osd_data;
233
234	osd_data = osd_req_op_data(osd_req, which, extent, osd_data);
235	ceph_osd_data_bio_init(osd_data, bio_pos, bio_length);
236}
237EXPORT_SYMBOL(osd_req_op_extent_osd_data_bio);
238#endif /* CONFIG_BLOCK */
239
240void osd_req_op_extent_osd_data_bvecs(struct ceph_osd_request *osd_req,
241				      unsigned int which,
242				      struct bio_vec *bvecs, u32 num_bvecs,
243				      u32 bytes)
244{
245	struct ceph_osd_data *osd_data;
246	struct ceph_bvec_iter it = {
247		.bvecs = bvecs,
248		.iter = { .bi_size = bytes },
249	};
250
251	osd_data = osd_req_op_data(osd_req, which, extent, osd_data);
252	ceph_osd_data_bvecs_init(osd_data, &it, num_bvecs);
253}
254EXPORT_SYMBOL(osd_req_op_extent_osd_data_bvecs);
255
256void osd_req_op_extent_osd_data_bvec_pos(struct ceph_osd_request *osd_req,
257					 unsigned int which,
258					 struct ceph_bvec_iter *bvec_pos)
259{
260	struct ceph_osd_data *osd_data;
261
262	osd_data = osd_req_op_data(osd_req, which, extent, osd_data);
263	ceph_osd_data_bvecs_init(osd_data, bvec_pos, 0);
264}
265EXPORT_SYMBOL(osd_req_op_extent_osd_data_bvec_pos);
266
267static void osd_req_op_cls_request_info_pagelist(
268			struct ceph_osd_request *osd_req,
269			unsigned int which, struct ceph_pagelist *pagelist)
270{
271	struct ceph_osd_data *osd_data;
272
273	osd_data = osd_req_op_data(osd_req, which, cls, request_info);
274	ceph_osd_data_pagelist_init(osd_data, pagelist);
275}
276
277void osd_req_op_cls_request_data_pagelist(
278			struct ceph_osd_request *osd_req,
279			unsigned int which, struct ceph_pagelist *pagelist)
280{
281	struct ceph_osd_data *osd_data;
282
283	osd_data = osd_req_op_data(osd_req, which, cls, request_data);
284	ceph_osd_data_pagelist_init(osd_data, pagelist);
285	osd_req->r_ops[which].cls.indata_len += pagelist->length;
286	osd_req->r_ops[which].indata_len += pagelist->length;
287}
288EXPORT_SYMBOL(osd_req_op_cls_request_data_pagelist);
289
290void osd_req_op_cls_request_data_pages(struct ceph_osd_request *osd_req,
291			unsigned int which, struct page **pages, u64 length,
292			u32 alignment, bool pages_from_pool, bool own_pages)
293{
294	struct ceph_osd_data *osd_data;
295
296	osd_data = osd_req_op_data(osd_req, which, cls, request_data);
297	ceph_osd_data_pages_init(osd_data, pages, length, alignment,
298				pages_from_pool, own_pages);
299	osd_req->r_ops[which].cls.indata_len += length;
300	osd_req->r_ops[which].indata_len += length;
301}
302EXPORT_SYMBOL(osd_req_op_cls_request_data_pages);
303
304void osd_req_op_cls_request_data_bvecs(struct ceph_osd_request *osd_req,
305				       unsigned int which,
306				       struct bio_vec *bvecs, u32 num_bvecs,
307				       u32 bytes)
308{
309	struct ceph_osd_data *osd_data;
310	struct ceph_bvec_iter it = {
311		.bvecs = bvecs,
312		.iter = { .bi_size = bytes },
313	};
314
315	osd_data = osd_req_op_data(osd_req, which, cls, request_data);
316	ceph_osd_data_bvecs_init(osd_data, &it, num_bvecs);
317	osd_req->r_ops[which].cls.indata_len += bytes;
318	osd_req->r_ops[which].indata_len += bytes;
319}
320EXPORT_SYMBOL(osd_req_op_cls_request_data_bvecs);
321
322void osd_req_op_cls_response_data_pages(struct ceph_osd_request *osd_req,
323			unsigned int which, struct page **pages, u64 length,
324			u32 alignment, bool pages_from_pool, bool own_pages)
325{
326	struct ceph_osd_data *osd_data;
327
328	osd_data = osd_req_op_data(osd_req, which, cls, response_data);
329	ceph_osd_data_pages_init(osd_data, pages, length, alignment,
330				pages_from_pool, own_pages);
331}
332EXPORT_SYMBOL(osd_req_op_cls_response_data_pages);
333
334static u64 ceph_osd_data_length(struct ceph_osd_data *osd_data)
335{
336	switch (osd_data->type) {
337	case CEPH_OSD_DATA_TYPE_NONE:
338		return 0;
339	case CEPH_OSD_DATA_TYPE_PAGES:
340		return osd_data->length;
341	case CEPH_OSD_DATA_TYPE_PAGELIST:
342		return (u64)osd_data->pagelist->length;
343#ifdef CONFIG_BLOCK
344	case CEPH_OSD_DATA_TYPE_BIO:
345		return (u64)osd_data->bio_length;
346#endif /* CONFIG_BLOCK */
347	case CEPH_OSD_DATA_TYPE_BVECS:
348		return osd_data->bvec_pos.iter.bi_size;
349	default:
350		WARN(true, "unrecognized data type %d\n", (int)osd_data->type);
351		return 0;
352	}
353}
354
355static void ceph_osd_data_release(struct ceph_osd_data *osd_data)
356{
357	if (osd_data->type == CEPH_OSD_DATA_TYPE_PAGES && osd_data->own_pages) {
358		int num_pages;
359
360		num_pages = calc_pages_for((u64)osd_data->alignment,
361						(u64)osd_data->length);
362		ceph_release_page_vector(osd_data->pages, num_pages);
363	} else if (osd_data->type == CEPH_OSD_DATA_TYPE_PAGELIST) {
364		ceph_pagelist_release(osd_data->pagelist);
365	}
366	ceph_osd_data_init(osd_data);
367}
368
369static void osd_req_op_data_release(struct ceph_osd_request *osd_req,
370			unsigned int which)
371{
372	struct ceph_osd_req_op *op;
373
374	BUG_ON(which >= osd_req->r_num_ops);
375	op = &osd_req->r_ops[which];
376
377	switch (op->op) {
378	case CEPH_OSD_OP_READ:
379	case CEPH_OSD_OP_WRITE:
380	case CEPH_OSD_OP_WRITEFULL:
381		ceph_osd_data_release(&op->extent.osd_data);
382		break;
383	case CEPH_OSD_OP_CALL:
384		ceph_osd_data_release(&op->cls.request_info);
385		ceph_osd_data_release(&op->cls.request_data);
386		ceph_osd_data_release(&op->cls.response_data);
387		break;
388	case CEPH_OSD_OP_SETXATTR:
389	case CEPH_OSD_OP_CMPXATTR:
390		ceph_osd_data_release(&op->xattr.osd_data);
391		break;
392	case CEPH_OSD_OP_STAT:
393		ceph_osd_data_release(&op->raw_data_in);
394		break;
395	case CEPH_OSD_OP_NOTIFY_ACK:
396		ceph_osd_data_release(&op->notify_ack.request_data);
397		break;
398	case CEPH_OSD_OP_NOTIFY:
399		ceph_osd_data_release(&op->notify.request_data);
400		ceph_osd_data_release(&op->notify.response_data);
401		break;
402	case CEPH_OSD_OP_LIST_WATCHERS:
403		ceph_osd_data_release(&op->list_watchers.response_data);
404		break;
405	case CEPH_OSD_OP_COPY_FROM2:
406		ceph_osd_data_release(&op->copy_from.osd_data);
407		break;
408	default:
409		break;
410	}
411}
412
413/*
414 * Assumes @t is zero-initialized.
415 */
416static void target_init(struct ceph_osd_request_target *t)
417{
418	ceph_oid_init(&t->base_oid);
419	ceph_oloc_init(&t->base_oloc);
420	ceph_oid_init(&t->target_oid);
421	ceph_oloc_init(&t->target_oloc);
422
423	ceph_osds_init(&t->acting);
424	ceph_osds_init(&t->up);
425	t->size = -1;
426	t->min_size = -1;
427
428	t->osd = CEPH_HOMELESS_OSD;
429}
430
431static void target_copy(struct ceph_osd_request_target *dest,
432			const struct ceph_osd_request_target *src)
433{
434	ceph_oid_copy(&dest->base_oid, &src->base_oid);
435	ceph_oloc_copy(&dest->base_oloc, &src->base_oloc);
436	ceph_oid_copy(&dest->target_oid, &src->target_oid);
437	ceph_oloc_copy(&dest->target_oloc, &src->target_oloc);
438
439	dest->pgid = src->pgid; /* struct */
440	dest->spgid = src->spgid; /* struct */
441	dest->pg_num = src->pg_num;
442	dest->pg_num_mask = src->pg_num_mask;
443	ceph_osds_copy(&dest->acting, &src->acting);
444	ceph_osds_copy(&dest->up, &src->up);
445	dest->size = src->size;
446	dest->min_size = src->min_size;
447	dest->sort_bitwise = src->sort_bitwise;
448	dest->recovery_deletes = src->recovery_deletes;
449
450	dest->flags = src->flags;
451	dest->used_replica = src->used_replica;
452	dest->paused = src->paused;
453
454	dest->epoch = src->epoch;
455	dest->last_force_resend = src->last_force_resend;
456
457	dest->osd = src->osd;
458}
459
460static void target_destroy(struct ceph_osd_request_target *t)
461{
462	ceph_oid_destroy(&t->base_oid);
463	ceph_oloc_destroy(&t->base_oloc);
464	ceph_oid_destroy(&t->target_oid);
465	ceph_oloc_destroy(&t->target_oloc);
466}
467
468/*
469 * requests
470 */
471static void request_release_checks(struct ceph_osd_request *req)
472{
473	WARN_ON(!RB_EMPTY_NODE(&req->r_node));
474	WARN_ON(!RB_EMPTY_NODE(&req->r_mc_node));
475	WARN_ON(!list_empty(&req->r_private_item));
476	WARN_ON(req->r_osd);
477}
478
479static void ceph_osdc_release_request(struct kref *kref)
480{
481	struct ceph_osd_request *req = container_of(kref,
482					    struct ceph_osd_request, r_kref);
483	unsigned int which;
484
485	dout("%s %p (r_request %p r_reply %p)\n", __func__, req,
486	     req->r_request, req->r_reply);
487	request_release_checks(req);
488
489	if (req->r_request)
490		ceph_msg_put(req->r_request);
491	if (req->r_reply)
492		ceph_msg_put(req->r_reply);
493
494	for (which = 0; which < req->r_num_ops; which++)
495		osd_req_op_data_release(req, which);
496
497	target_destroy(&req->r_t);
498	ceph_put_snap_context(req->r_snapc);
499
500	if (req->r_mempool)
501		mempool_free(req, req->r_osdc->req_mempool);
502	else if (req->r_num_ops <= CEPH_OSD_SLAB_OPS)
503		kmem_cache_free(ceph_osd_request_cache, req);
504	else
505		kfree(req);
506}
507
508void ceph_osdc_get_request(struct ceph_osd_request *req)
509{
510	dout("%s %p (was %d)\n", __func__, req,
511	     kref_read(&req->r_kref));
512	kref_get(&req->r_kref);
513}
514EXPORT_SYMBOL(ceph_osdc_get_request);
515
516void ceph_osdc_put_request(struct ceph_osd_request *req)
517{
518	if (req) {
519		dout("%s %p (was %d)\n", __func__, req,
520		     kref_read(&req->r_kref));
521		kref_put(&req->r_kref, ceph_osdc_release_request);
522	}
523}
524EXPORT_SYMBOL(ceph_osdc_put_request);
525
526static void request_init(struct ceph_osd_request *req)
527{
528	/* req only, each op is zeroed in osd_req_op_init() */
529	memset(req, 0, sizeof(*req));
530
531	kref_init(&req->r_kref);
532	init_completion(&req->r_completion);
533	RB_CLEAR_NODE(&req->r_node);
534	RB_CLEAR_NODE(&req->r_mc_node);
535	INIT_LIST_HEAD(&req->r_private_item);
536
537	target_init(&req->r_t);
538}
539
540struct ceph_osd_request *ceph_osdc_alloc_request(struct ceph_osd_client *osdc,
541					       struct ceph_snap_context *snapc,
542					       unsigned int num_ops,
543					       bool use_mempool,
544					       gfp_t gfp_flags)
545{
546	struct ceph_osd_request *req;
547
548	if (use_mempool) {
549		BUG_ON(num_ops > CEPH_OSD_SLAB_OPS);
550		req = mempool_alloc(osdc->req_mempool, gfp_flags);
551	} else if (num_ops <= CEPH_OSD_SLAB_OPS) {
552		req = kmem_cache_alloc(ceph_osd_request_cache, gfp_flags);
553	} else {
554		BUG_ON(num_ops > CEPH_OSD_MAX_OPS);
555		req = kmalloc(struct_size(req, r_ops, num_ops), gfp_flags);
556	}
557	if (unlikely(!req))
558		return NULL;
559
560	request_init(req);
561	req->r_osdc = osdc;
562	req->r_mempool = use_mempool;
563	req->r_num_ops = num_ops;
564	req->r_snapid = CEPH_NOSNAP;
565	req->r_snapc = ceph_get_snap_context(snapc);
566
567	dout("%s req %p\n", __func__, req);
568	return req;
569}
570EXPORT_SYMBOL(ceph_osdc_alloc_request);
571
572static int ceph_oloc_encoding_size(const struct ceph_object_locator *oloc)
573{
574	return 8 + 4 + 4 + 4 + (oloc->pool_ns ? oloc->pool_ns->len : 0);
575}
576
577static int __ceph_osdc_alloc_messages(struct ceph_osd_request *req, gfp_t gfp,
578				      int num_request_data_items,
579				      int num_reply_data_items)
580{
581	struct ceph_osd_client *osdc = req->r_osdc;
582	struct ceph_msg *msg;
583	int msg_size;
584
585	WARN_ON(req->r_request || req->r_reply);
586	WARN_ON(ceph_oid_empty(&req->r_base_oid));
587	WARN_ON(ceph_oloc_empty(&req->r_base_oloc));
588
589	/* create request message */
590	msg_size = CEPH_ENCODING_START_BLK_LEN +
591			CEPH_PGID_ENCODING_LEN + 1; /* spgid */
592	msg_size += 4 + 4 + 4; /* hash, osdmap_epoch, flags */
593	msg_size += CEPH_ENCODING_START_BLK_LEN +
594			sizeof(struct ceph_osd_reqid); /* reqid */
595	msg_size += sizeof(struct ceph_blkin_trace_info); /* trace */
596	msg_size += 4 + sizeof(struct ceph_timespec); /* client_inc, mtime */
597	msg_size += CEPH_ENCODING_START_BLK_LEN +
598			ceph_oloc_encoding_size(&req->r_base_oloc); /* oloc */
599	msg_size += 4 + req->r_base_oid.name_len; /* oid */
600	msg_size += 2 + req->r_num_ops * sizeof(struct ceph_osd_op);
601	msg_size += 8; /* snapid */
602	msg_size += 8; /* snap_seq */
603	msg_size += 4 + 8 * (req->r_snapc ? req->r_snapc->num_snaps : 0);
604	msg_size += 4 + 8; /* retry_attempt, features */
605
606	if (req->r_mempool)
607		msg = ceph_msgpool_get(&osdc->msgpool_op, msg_size,
608				       num_request_data_items);
609	else
610		msg = ceph_msg_new2(CEPH_MSG_OSD_OP, msg_size,
611				    num_request_data_items, gfp, true);
612	if (!msg)
613		return -ENOMEM;
614
615	memset(msg->front.iov_base, 0, msg->front.iov_len);
616	req->r_request = msg;
617
618	/* create reply message */
619	msg_size = OSD_OPREPLY_FRONT_LEN;
620	msg_size += req->r_base_oid.name_len;
621	msg_size += req->r_num_ops * sizeof(struct ceph_osd_op);
622
623	if (req->r_mempool)
624		msg = ceph_msgpool_get(&osdc->msgpool_op_reply, msg_size,
625				       num_reply_data_items);
626	else
627		msg = ceph_msg_new2(CEPH_MSG_OSD_OPREPLY, msg_size,
628				    num_reply_data_items, gfp, true);
629	if (!msg)
630		return -ENOMEM;
631
632	req->r_reply = msg;
633
634	return 0;
635}
636
637static bool osd_req_opcode_valid(u16 opcode)
638{
639	switch (opcode) {
640#define GENERATE_CASE(op, opcode, str)	case CEPH_OSD_OP_##op: return true;
641__CEPH_FORALL_OSD_OPS(GENERATE_CASE)
642#undef GENERATE_CASE
643	default:
644		return false;
645	}
646}
647
648static void get_num_data_items(struct ceph_osd_request *req,
649			       int *num_request_data_items,
650			       int *num_reply_data_items)
651{
652	struct ceph_osd_req_op *op;
653
654	*num_request_data_items = 0;
655	*num_reply_data_items = 0;
656
657	for (op = req->r_ops; op != &req->r_ops[req->r_num_ops]; op++) {
658		switch (op->op) {
659		/* request */
660		case CEPH_OSD_OP_WRITE:
661		case CEPH_OSD_OP_WRITEFULL:
662		case CEPH_OSD_OP_SETXATTR:
663		case CEPH_OSD_OP_CMPXATTR:
664		case CEPH_OSD_OP_NOTIFY_ACK:
665		case CEPH_OSD_OP_COPY_FROM2:
666			*num_request_data_items += 1;
667			break;
668
669		/* reply */
670		case CEPH_OSD_OP_STAT:
671		case CEPH_OSD_OP_READ:
672		case CEPH_OSD_OP_LIST_WATCHERS:
673			*num_reply_data_items += 1;
674			break;
675
676		/* both */
677		case CEPH_OSD_OP_NOTIFY:
678			*num_request_data_items += 1;
679			*num_reply_data_items += 1;
680			break;
681		case CEPH_OSD_OP_CALL:
682			*num_request_data_items += 2;
683			*num_reply_data_items += 1;
684			break;
685
686		default:
687			WARN_ON(!osd_req_opcode_valid(op->op));
688			break;
689		}
690	}
691}
692
693/*
694 * oid, oloc and OSD op opcode(s) must be filled in before this function
695 * is called.
696 */
697int ceph_osdc_alloc_messages(struct ceph_osd_request *req, gfp_t gfp)
698{
699	int num_request_data_items, num_reply_data_items;
700
701	get_num_data_items(req, &num_request_data_items, &num_reply_data_items);
702	return __ceph_osdc_alloc_messages(req, gfp, num_request_data_items,
703					  num_reply_data_items);
704}
705EXPORT_SYMBOL(ceph_osdc_alloc_messages);
706
707/*
708 * This is an osd op init function for opcodes that have no data or
709 * other information associated with them.  It also serves as a
710 * common init routine for all the other init functions, below.
711 */
712struct ceph_osd_req_op *
713osd_req_op_init(struct ceph_osd_request *osd_req, unsigned int which,
714		 u16 opcode, u32 flags)
715{
716	struct ceph_osd_req_op *op;
717
718	BUG_ON(which >= osd_req->r_num_ops);
719	BUG_ON(!osd_req_opcode_valid(opcode));
720
721	op = &osd_req->r_ops[which];
722	memset(op, 0, sizeof (*op));
723	op->op = opcode;
724	op->flags = flags;
725
726	return op;
727}
728EXPORT_SYMBOL(osd_req_op_init);
729
730void osd_req_op_extent_init(struct ceph_osd_request *osd_req,
731				unsigned int which, u16 opcode,
732				u64 offset, u64 length,
733				u64 truncate_size, u32 truncate_seq)
734{
735	struct ceph_osd_req_op *op = osd_req_op_init(osd_req, which,
736						     opcode, 0);
737	size_t payload_len = 0;
738
739	BUG_ON(opcode != CEPH_OSD_OP_READ && opcode != CEPH_OSD_OP_WRITE &&
740	       opcode != CEPH_OSD_OP_WRITEFULL && opcode != CEPH_OSD_OP_ZERO &&
741	       opcode != CEPH_OSD_OP_TRUNCATE);
742
743	op->extent.offset = offset;
744	op->extent.length = length;
745	op->extent.truncate_size = truncate_size;
746	op->extent.truncate_seq = truncate_seq;
747	if (opcode == CEPH_OSD_OP_WRITE || opcode == CEPH_OSD_OP_WRITEFULL)
748		payload_len += length;
749
750	op->indata_len = payload_len;
751}
752EXPORT_SYMBOL(osd_req_op_extent_init);
753
754void osd_req_op_extent_update(struct ceph_osd_request *osd_req,
755				unsigned int which, u64 length)
756{
757	struct ceph_osd_req_op *op;
758	u64 previous;
759
760	BUG_ON(which >= osd_req->r_num_ops);
761	op = &osd_req->r_ops[which];
762	previous = op->extent.length;
763
764	if (length == previous)
765		return;		/* Nothing to do */
766	BUG_ON(length > previous);
767
768	op->extent.length = length;
769	if (op->op == CEPH_OSD_OP_WRITE || op->op == CEPH_OSD_OP_WRITEFULL)
770		op->indata_len -= previous - length;
771}
772EXPORT_SYMBOL(osd_req_op_extent_update);
773
774void osd_req_op_extent_dup_last(struct ceph_osd_request *osd_req,
775				unsigned int which, u64 offset_inc)
776{
777	struct ceph_osd_req_op *op, *prev_op;
778
779	BUG_ON(which + 1 >= osd_req->r_num_ops);
780
781	prev_op = &osd_req->r_ops[which];
782	op = osd_req_op_init(osd_req, which + 1, prev_op->op, prev_op->flags);
783	/* dup previous one */
784	op->indata_len = prev_op->indata_len;
785	op->outdata_len = prev_op->outdata_len;
786	op->extent = prev_op->extent;
787	/* adjust offset */
788	op->extent.offset += offset_inc;
789	op->extent.length -= offset_inc;
790
791	if (op->op == CEPH_OSD_OP_WRITE || op->op == CEPH_OSD_OP_WRITEFULL)
792		op->indata_len -= offset_inc;
793}
794EXPORT_SYMBOL(osd_req_op_extent_dup_last);
795
796int osd_req_op_cls_init(struct ceph_osd_request *osd_req, unsigned int which,
797			const char *class, const char *method)
798{
799	struct ceph_osd_req_op *op;
800	struct ceph_pagelist *pagelist;
801	size_t payload_len = 0;
802	size_t size;
803	int ret;
804
805	op = osd_req_op_init(osd_req, which, CEPH_OSD_OP_CALL, 0);
806
807	pagelist = ceph_pagelist_alloc(GFP_NOFS);
808	if (!pagelist)
809		return -ENOMEM;
810
811	op->cls.class_name = class;
812	size = strlen(class);
813	BUG_ON(size > (size_t) U8_MAX);
814	op->cls.class_len = size;
815	ret = ceph_pagelist_append(pagelist, class, size);
816	if (ret)
817		goto err_pagelist_free;
818	payload_len += size;
819
820	op->cls.method_name = method;
821	size = strlen(method);
822	BUG_ON(size > (size_t) U8_MAX);
823	op->cls.method_len = size;
824	ret = ceph_pagelist_append(pagelist, method, size);
825	if (ret)
826		goto err_pagelist_free;
827	payload_len += size;
828
829	osd_req_op_cls_request_info_pagelist(osd_req, which, pagelist);
830	op->indata_len = payload_len;
831	return 0;
832
833err_pagelist_free:
834	ceph_pagelist_release(pagelist);
835	return ret;
836}
837EXPORT_SYMBOL(osd_req_op_cls_init);
838
839int osd_req_op_xattr_init(struct ceph_osd_request *osd_req, unsigned int which,
840			  u16 opcode, const char *name, const void *value,
841			  size_t size, u8 cmp_op, u8 cmp_mode)
842{
843	struct ceph_osd_req_op *op = osd_req_op_init(osd_req, which,
844						     opcode, 0);
845	struct ceph_pagelist *pagelist;
846	size_t payload_len;
847	int ret;
848
849	BUG_ON(opcode != CEPH_OSD_OP_SETXATTR && opcode != CEPH_OSD_OP_CMPXATTR);
850
851	pagelist = ceph_pagelist_alloc(GFP_NOFS);
852	if (!pagelist)
853		return -ENOMEM;
854
855	payload_len = strlen(name);
856	op->xattr.name_len = payload_len;
857	ret = ceph_pagelist_append(pagelist, name, payload_len);
858	if (ret)
859		goto err_pagelist_free;
860
861	op->xattr.value_len = size;
862	ret = ceph_pagelist_append(pagelist, value, size);
863	if (ret)
864		goto err_pagelist_free;
865	payload_len += size;
866
867	op->xattr.cmp_op = cmp_op;
868	op->xattr.cmp_mode = cmp_mode;
869
870	ceph_osd_data_pagelist_init(&op->xattr.osd_data, pagelist);
871	op->indata_len = payload_len;
872	return 0;
873
874err_pagelist_free:
875	ceph_pagelist_release(pagelist);
876	return ret;
877}
878EXPORT_SYMBOL(osd_req_op_xattr_init);
879
880/*
881 * @watch_opcode: CEPH_OSD_WATCH_OP_*
882 */
883static void osd_req_op_watch_init(struct ceph_osd_request *req, int which,
884				  u8 watch_opcode, u64 cookie, u32 gen)
885{
886	struct ceph_osd_req_op *op;
887
888	op = osd_req_op_init(req, which, CEPH_OSD_OP_WATCH, 0);
889	op->watch.cookie = cookie;
890	op->watch.op = watch_opcode;
891	op->watch.gen = gen;
892}
893
894/*
895 * prot_ver, timeout and notify payload (may be empty) should already be
896 * encoded in @request_pl
897 */
898static void osd_req_op_notify_init(struct ceph_osd_request *req, int which,
899				   u64 cookie, struct ceph_pagelist *request_pl)
900{
901	struct ceph_osd_req_op *op;
902
903	op = osd_req_op_init(req, which, CEPH_OSD_OP_NOTIFY, 0);
904	op->notify.cookie = cookie;
905
906	ceph_osd_data_pagelist_init(&op->notify.request_data, request_pl);
907	op->indata_len = request_pl->length;
908}
909
910/*
911 * @flags: CEPH_OSD_OP_ALLOC_HINT_FLAG_*
912 */
913void osd_req_op_alloc_hint_init(struct ceph_osd_request *osd_req,
914				unsigned int which,
915				u64 expected_object_size,
916				u64 expected_write_size,
917				u32 flags)
918{
919	struct ceph_osd_req_op *op;
920
921	op = osd_req_op_init(osd_req, which, CEPH_OSD_OP_SETALLOCHINT, 0);
922	op->alloc_hint.expected_object_size = expected_object_size;
923	op->alloc_hint.expected_write_size = expected_write_size;
924	op->alloc_hint.flags = flags;
925
926	/*
927	 * CEPH_OSD_OP_SETALLOCHINT op is advisory and therefore deemed
928	 * not worth a feature bit.  Set FAILOK per-op flag to make
929	 * sure older osds don't trip over an unsupported opcode.
930	 */
931	op->flags |= CEPH_OSD_OP_FLAG_FAILOK;
932}
933EXPORT_SYMBOL(osd_req_op_alloc_hint_init);
934
935static void ceph_osdc_msg_data_add(struct ceph_msg *msg,
936				struct ceph_osd_data *osd_data)
937{
938	u64 length = ceph_osd_data_length(osd_data);
939
940	if (osd_data->type == CEPH_OSD_DATA_TYPE_PAGES) {
941		BUG_ON(length > (u64) SIZE_MAX);
942		if (length)
943			ceph_msg_data_add_pages(msg, osd_data->pages,
944					length, osd_data->alignment, false);
945	} else if (osd_data->type == CEPH_OSD_DATA_TYPE_PAGELIST) {
946		BUG_ON(!length);
947		ceph_msg_data_add_pagelist(msg, osd_data->pagelist);
948#ifdef CONFIG_BLOCK
949	} else if (osd_data->type == CEPH_OSD_DATA_TYPE_BIO) {
950		ceph_msg_data_add_bio(msg, &osd_data->bio_pos, length);
951#endif
952	} else if (osd_data->type == CEPH_OSD_DATA_TYPE_BVECS) {
953		ceph_msg_data_add_bvecs(msg, &osd_data->bvec_pos);
954	} else {
955		BUG_ON(osd_data->type != CEPH_OSD_DATA_TYPE_NONE);
956	}
957}
958
959static u32 osd_req_encode_op(struct ceph_osd_op *dst,
960			     const struct ceph_osd_req_op *src)
961{
962	switch (src->op) {
963	case CEPH_OSD_OP_STAT:
964		break;
965	case CEPH_OSD_OP_READ:
966	case CEPH_OSD_OP_WRITE:
967	case CEPH_OSD_OP_WRITEFULL:
968	case CEPH_OSD_OP_ZERO:
969	case CEPH_OSD_OP_TRUNCATE:
970		dst->extent.offset = cpu_to_le64(src->extent.offset);
971		dst->extent.length = cpu_to_le64(src->extent.length);
972		dst->extent.truncate_size =
973			cpu_to_le64(src->extent.truncate_size);
974		dst->extent.truncate_seq =
975			cpu_to_le32(src->extent.truncate_seq);
976		break;
977	case CEPH_OSD_OP_CALL:
978		dst->cls.class_len = src->cls.class_len;
979		dst->cls.method_len = src->cls.method_len;
980		dst->cls.indata_len = cpu_to_le32(src->cls.indata_len);
981		break;
982	case CEPH_OSD_OP_WATCH:
983		dst->watch.cookie = cpu_to_le64(src->watch.cookie);
984		dst->watch.ver = cpu_to_le64(0);
985		dst->watch.op = src->watch.op;
986		dst->watch.gen = cpu_to_le32(src->watch.gen);
987		break;
988	case CEPH_OSD_OP_NOTIFY_ACK:
989		break;
990	case CEPH_OSD_OP_NOTIFY:
991		dst->notify.cookie = cpu_to_le64(src->notify.cookie);
992		break;
993	case CEPH_OSD_OP_LIST_WATCHERS:
994		break;
995	case CEPH_OSD_OP_SETALLOCHINT:
996		dst->alloc_hint.expected_object_size =
997		    cpu_to_le64(src->alloc_hint.expected_object_size);
998		dst->alloc_hint.expected_write_size =
999		    cpu_to_le64(src->alloc_hint.expected_write_size);
1000		dst->alloc_hint.flags = cpu_to_le32(src->alloc_hint.flags);
1001		break;
1002	case CEPH_OSD_OP_SETXATTR:
1003	case CEPH_OSD_OP_CMPXATTR:
1004		dst->xattr.name_len = cpu_to_le32(src->xattr.name_len);
1005		dst->xattr.value_len = cpu_to_le32(src->xattr.value_len);
1006		dst->xattr.cmp_op = src->xattr.cmp_op;
1007		dst->xattr.cmp_mode = src->xattr.cmp_mode;
1008		break;
1009	case CEPH_OSD_OP_CREATE:
1010	case CEPH_OSD_OP_DELETE:
1011		break;
1012	case CEPH_OSD_OP_COPY_FROM2:
1013		dst->copy_from.snapid = cpu_to_le64(src->copy_from.snapid);
1014		dst->copy_from.src_version =
1015			cpu_to_le64(src->copy_from.src_version);
1016		dst->copy_from.flags = src->copy_from.flags;
1017		dst->copy_from.src_fadvise_flags =
1018			cpu_to_le32(src->copy_from.src_fadvise_flags);
1019		break;
1020	default:
1021		pr_err("unsupported osd opcode %s\n",
1022			ceph_osd_op_name(src->op));
1023		WARN_ON(1);
1024
1025		return 0;
1026	}
1027
1028	dst->op = cpu_to_le16(src->op);
1029	dst->flags = cpu_to_le32(src->flags);
1030	dst->payload_len = cpu_to_le32(src->indata_len);
1031
1032	return src->indata_len;
1033}
1034
1035/*
1036 * build new request AND message, calculate layout, and adjust file
1037 * extent as needed.
1038 *
1039 * if the file was recently truncated, we include information about its
1040 * old and new size so that the object can be updated appropriately.  (we
1041 * avoid synchronously deleting truncated objects because it's slow.)
1042 */
1043struct ceph_osd_request *ceph_osdc_new_request(struct ceph_osd_client *osdc,
1044					       struct ceph_file_layout *layout,
1045					       struct ceph_vino vino,
1046					       u64 off, u64 *plen,
1047					       unsigned int which, int num_ops,
1048					       int opcode, int flags,
1049					       struct ceph_snap_context *snapc,
1050					       u32 truncate_seq,
1051					       u64 truncate_size,
1052					       bool use_mempool)
1053{
1054	struct ceph_osd_request *req;
1055	u64 objnum = 0;
1056	u64 objoff = 0;
1057	u64 objlen = 0;
1058	int r;
1059
1060	BUG_ON(opcode != CEPH_OSD_OP_READ && opcode != CEPH_OSD_OP_WRITE &&
1061	       opcode != CEPH_OSD_OP_ZERO && opcode != CEPH_OSD_OP_TRUNCATE &&
1062	       opcode != CEPH_OSD_OP_CREATE && opcode != CEPH_OSD_OP_DELETE);
1063
1064	req = ceph_osdc_alloc_request(osdc, snapc, num_ops, use_mempool,
1065					GFP_NOFS);
1066	if (!req) {
1067		r = -ENOMEM;
1068		goto fail;
1069	}
1070
1071	/* calculate max write size */
1072	r = calc_layout(layout, off, plen, &objnum, &objoff, &objlen);
1073	if (r)
1074		goto fail;
1075
1076	if (opcode == CEPH_OSD_OP_CREATE || opcode == CEPH_OSD_OP_DELETE) {
1077		osd_req_op_init(req, which, opcode, 0);
1078	} else {
1079		u32 object_size = layout->object_size;
1080		u32 object_base = off - objoff;
1081		if (!(truncate_seq == 1 && truncate_size == -1ULL)) {
1082			if (truncate_size <= object_base) {
1083				truncate_size = 0;
1084			} else {
1085				truncate_size -= object_base;
1086				if (truncate_size > object_size)
1087					truncate_size = object_size;
1088			}
1089		}
1090		osd_req_op_extent_init(req, which, opcode, objoff, objlen,
1091				       truncate_size, truncate_seq);
1092	}
1093
1094	req->r_base_oloc.pool = layout->pool_id;
1095	req->r_base_oloc.pool_ns = ceph_try_get_string(layout->pool_ns);
1096	ceph_oid_printf(&req->r_base_oid, "%llx.%08llx", vino.ino, objnum);
1097	req->r_flags = flags | osdc->client->options->read_from_replica;
1098
1099	req->r_snapid = vino.snap;
1100	if (flags & CEPH_OSD_FLAG_WRITE)
1101		req->r_data_offset = off;
1102
1103	if (num_ops > 1)
1104		/*
1105		 * This is a special case for ceph_writepages_start(), but it
1106		 * also covers ceph_uninline_data().  If more multi-op request
1107		 * use cases emerge, we will need a separate helper.
1108		 */
1109		r = __ceph_osdc_alloc_messages(req, GFP_NOFS, num_ops, 0);
1110	else
1111		r = ceph_osdc_alloc_messages(req, GFP_NOFS);
1112	if (r)
1113		goto fail;
1114
1115	return req;
1116
1117fail:
1118	ceph_osdc_put_request(req);
1119	return ERR_PTR(r);
1120}
1121EXPORT_SYMBOL(ceph_osdc_new_request);
1122
1123/*
1124 * We keep osd requests in an rbtree, sorted by ->r_tid.
1125 */
1126DEFINE_RB_FUNCS(request, struct ceph_osd_request, r_tid, r_node)
1127DEFINE_RB_FUNCS(request_mc, struct ceph_osd_request, r_tid, r_mc_node)
1128
1129/*
1130 * Call @fn on each OSD request as long as @fn returns 0.
1131 */
1132static void for_each_request(struct ceph_osd_client *osdc,
1133			int (*fn)(struct ceph_osd_request *req, void *arg),
1134			void *arg)
1135{
1136	struct rb_node *n, *p;
1137
1138	for (n = rb_first(&osdc->osds); n; n = rb_next(n)) {
1139		struct ceph_osd *osd = rb_entry(n, struct ceph_osd, o_node);
1140
1141		for (p = rb_first(&osd->o_requests); p; ) {
1142			struct ceph_osd_request *req =
1143			    rb_entry(p, struct ceph_osd_request, r_node);
1144
1145			p = rb_next(p);
1146			if (fn(req, arg))
1147				return;
1148		}
1149	}
1150
1151	for (p = rb_first(&osdc->homeless_osd.o_requests); p; ) {
1152		struct ceph_osd_request *req =
1153		    rb_entry(p, struct ceph_osd_request, r_node);
1154
1155		p = rb_next(p);
1156		if (fn(req, arg))
1157			return;
1158	}
1159}
1160
1161static bool osd_homeless(struct ceph_osd *osd)
1162{
1163	return osd->o_osd == CEPH_HOMELESS_OSD;
1164}
1165
1166static bool osd_registered(struct ceph_osd *osd)
1167{
1168	verify_osdc_locked(osd->o_osdc);
1169
1170	return !RB_EMPTY_NODE(&osd->o_node);
1171}
1172
1173/*
1174 * Assumes @osd is zero-initialized.
1175 */
1176static void osd_init(struct ceph_osd *osd)
1177{
1178	refcount_set(&osd->o_ref, 1);
1179	RB_CLEAR_NODE(&osd->o_node);
1180	osd->o_requests = RB_ROOT;
1181	osd->o_linger_requests = RB_ROOT;
1182	osd->o_backoff_mappings = RB_ROOT;
1183	osd->o_backoffs_by_id = RB_ROOT;
1184	INIT_LIST_HEAD(&osd->o_osd_lru);
1185	INIT_LIST_HEAD(&osd->o_keepalive_item);
1186	osd->o_incarnation = 1;
1187	mutex_init(&osd->lock);
1188}
1189
1190static void osd_cleanup(struct ceph_osd *osd)
1191{
1192	WARN_ON(!RB_EMPTY_NODE(&osd->o_node));
1193	WARN_ON(!RB_EMPTY_ROOT(&osd->o_requests));
1194	WARN_ON(!RB_EMPTY_ROOT(&osd->o_linger_requests));
1195	WARN_ON(!RB_EMPTY_ROOT(&osd->o_backoff_mappings));
1196	WARN_ON(!RB_EMPTY_ROOT(&osd->o_backoffs_by_id));
1197	WARN_ON(!list_empty(&osd->o_osd_lru));
1198	WARN_ON(!list_empty(&osd->o_keepalive_item));
1199
1200	if (osd->o_auth.authorizer) {
1201		WARN_ON(osd_homeless(osd));
1202		ceph_auth_destroy_authorizer(osd->o_auth.authorizer);
1203	}
1204}
1205
1206/*
1207 * Track open sessions with osds.
1208 */
1209static struct ceph_osd *create_osd(struct ceph_osd_client *osdc, int onum)
1210{
1211	struct ceph_osd *osd;
1212
1213	WARN_ON(onum == CEPH_HOMELESS_OSD);
1214
1215	osd = kzalloc(sizeof(*osd), GFP_NOIO | __GFP_NOFAIL);
1216	osd_init(osd);
1217	osd->o_osdc = osdc;
1218	osd->o_osd = onum;
1219
1220	ceph_con_init(&osd->o_con, osd, &osd_con_ops, &osdc->client->msgr);
1221
1222	return osd;
1223}
1224
1225static struct ceph_osd *get_osd(struct ceph_osd *osd)
1226{
1227	if (refcount_inc_not_zero(&osd->o_ref)) {
1228		dout("get_osd %p %d -> %d\n", osd, refcount_read(&osd->o_ref)-1,
1229		     refcount_read(&osd->o_ref));
1230		return osd;
1231	} else {
1232		dout("get_osd %p FAIL\n", osd);
1233		return NULL;
1234	}
1235}
1236
1237static void put_osd(struct ceph_osd *osd)
1238{
1239	dout("put_osd %p %d -> %d\n", osd, refcount_read(&osd->o_ref),
1240	     refcount_read(&osd->o_ref) - 1);
1241	if (refcount_dec_and_test(&osd->o_ref)) {
1242		osd_cleanup(osd);
1243		kfree(osd);
1244	}
1245}
1246
1247DEFINE_RB_FUNCS(osd, struct ceph_osd, o_osd, o_node)
1248
1249static void __move_osd_to_lru(struct ceph_osd *osd)
1250{
1251	struct ceph_osd_client *osdc = osd->o_osdc;
1252
1253	dout("%s osd %p osd%d\n", __func__, osd, osd->o_osd);
1254	BUG_ON(!list_empty(&osd->o_osd_lru));
1255
1256	spin_lock(&osdc->osd_lru_lock);
1257	list_add_tail(&osd->o_osd_lru, &osdc->osd_lru);
1258	spin_unlock(&osdc->osd_lru_lock);
1259
1260	osd->lru_ttl = jiffies + osdc->client->options->osd_idle_ttl;
1261}
1262
1263static void maybe_move_osd_to_lru(struct ceph_osd *osd)
1264{
1265	if (RB_EMPTY_ROOT(&osd->o_requests) &&
1266	    RB_EMPTY_ROOT(&osd->o_linger_requests))
1267		__move_osd_to_lru(osd);
1268}
1269
1270static void __remove_osd_from_lru(struct ceph_osd *osd)
1271{
1272	struct ceph_osd_client *osdc = osd->o_osdc;
1273
1274	dout("%s osd %p osd%d\n", __func__, osd, osd->o_osd);
1275
1276	spin_lock(&osdc->osd_lru_lock);
1277	if (!list_empty(&osd->o_osd_lru))
1278		list_del_init(&osd->o_osd_lru);
1279	spin_unlock(&osdc->osd_lru_lock);
1280}
1281
1282/*
1283 * Close the connection and assign any leftover requests to the
1284 * homeless session.
1285 */
1286static void close_osd(struct ceph_osd *osd)
1287{
1288	struct ceph_osd_client *osdc = osd->o_osdc;
1289	struct rb_node *n;
1290
1291	verify_osdc_wrlocked(osdc);
1292	dout("%s osd %p osd%d\n", __func__, osd, osd->o_osd);
1293
1294	ceph_con_close(&osd->o_con);
1295
1296	for (n = rb_first(&osd->o_requests); n; ) {
1297		struct ceph_osd_request *req =
1298		    rb_entry(n, struct ceph_osd_request, r_node);
1299
1300		n = rb_next(n); /* unlink_request() */
1301
1302		dout(" reassigning req %p tid %llu\n", req, req->r_tid);
1303		unlink_request(osd, req);
1304		link_request(&osdc->homeless_osd, req);
1305	}
1306	for (n = rb_first(&osd->o_linger_requests); n; ) {
1307		struct ceph_osd_linger_request *lreq =
1308		    rb_entry(n, struct ceph_osd_linger_request, node);
1309
1310		n = rb_next(n); /* unlink_linger() */
1311
1312		dout(" reassigning lreq %p linger_id %llu\n", lreq,
1313		     lreq->linger_id);
1314		unlink_linger(osd, lreq);
1315		link_linger(&osdc->homeless_osd, lreq);
1316	}
1317	clear_backoffs(osd);
1318
1319	__remove_osd_from_lru(osd);
1320	erase_osd(&osdc->osds, osd);
1321	put_osd(osd);
1322}
1323
1324/*
1325 * reset osd connect
1326 */
1327static int reopen_osd(struct ceph_osd *osd)
1328{
1329	struct ceph_entity_addr *peer_addr;
1330
1331	dout("%s osd %p osd%d\n", __func__, osd, osd->o_osd);
1332
1333	if (RB_EMPTY_ROOT(&osd->o_requests) &&
1334	    RB_EMPTY_ROOT(&osd->o_linger_requests)) {
1335		close_osd(osd);
1336		return -ENODEV;
1337	}
1338
1339	peer_addr = &osd->o_osdc->osdmap->osd_addr[osd->o_osd];
1340	if (!memcmp(peer_addr, &osd->o_con.peer_addr, sizeof (*peer_addr)) &&
1341			!ceph_con_opened(&osd->o_con)) {
1342		struct rb_node *n;
1343
1344		dout("osd addr hasn't changed and connection never opened, "
1345		     "letting msgr retry\n");
1346		/* touch each r_stamp for handle_timeout()'s benfit */
1347		for (n = rb_first(&osd->o_requests); n; n = rb_next(n)) {
1348			struct ceph_osd_request *req =
1349			    rb_entry(n, struct ceph_osd_request, r_node);
1350			req->r_stamp = jiffies;
1351		}
1352
1353		return -EAGAIN;
1354	}
1355
1356	ceph_con_close(&osd->o_con);
1357	ceph_con_open(&osd->o_con, CEPH_ENTITY_TYPE_OSD, osd->o_osd, peer_addr);
1358	osd->o_incarnation++;
1359
1360	return 0;
1361}
1362
1363static struct ceph_osd *lookup_create_osd(struct ceph_osd_client *osdc, int o,
1364					  bool wrlocked)
1365{
1366	struct ceph_osd *osd;
1367
1368	if (wrlocked)
1369		verify_osdc_wrlocked(osdc);
1370	else
1371		verify_osdc_locked(osdc);
1372
1373	if (o != CEPH_HOMELESS_OSD)
1374		osd = lookup_osd(&osdc->osds, o);
1375	else
1376		osd = &osdc->homeless_osd;
1377	if (!osd) {
1378		if (!wrlocked)
1379			return ERR_PTR(-EAGAIN);
1380
1381		osd = create_osd(osdc, o);
1382		insert_osd(&osdc->osds, osd);
1383		ceph_con_open(&osd->o_con, CEPH_ENTITY_TYPE_OSD, osd->o_osd,
1384			      &osdc->osdmap->osd_addr[osd->o_osd]);
1385	}
1386
1387	dout("%s osdc %p osd%d -> osd %p\n", __func__, osdc, o, osd);
1388	return osd;
1389}
1390
1391/*
1392 * Create request <-> OSD session relation.
1393 *
1394 * @req has to be assigned a tid, @osd may be homeless.
1395 */
1396static void link_request(struct ceph_osd *osd, struct ceph_osd_request *req)
1397{
1398	verify_osd_locked(osd);
1399	WARN_ON(!req->r_tid || req->r_osd);
1400	dout("%s osd %p osd%d req %p tid %llu\n", __func__, osd, osd->o_osd,
1401	     req, req->r_tid);
1402
1403	if (!osd_homeless(osd))
1404		__remove_osd_from_lru(osd);
1405	else
1406		atomic_inc(&osd->o_osdc->num_homeless);
1407
1408	get_osd(osd);
1409	insert_request(&osd->o_requests, req);
1410	req->r_osd = osd;
1411}
1412
1413static void unlink_request(struct ceph_osd *osd, struct ceph_osd_request *req)
1414{
1415	verify_osd_locked(osd);
1416	WARN_ON(req->r_osd != osd);
1417	dout("%s osd %p osd%d req %p tid %llu\n", __func__, osd, osd->o_osd,
1418	     req, req->r_tid);
1419
1420	req->r_osd = NULL;
1421	erase_request(&osd->o_requests, req);
1422	put_osd(osd);
1423
1424	if (!osd_homeless(osd))
1425		maybe_move_osd_to_lru(osd);
1426	else
1427		atomic_dec(&osd->o_osdc->num_homeless);
1428}
1429
1430static bool __pool_full(struct ceph_pg_pool_info *pi)
1431{
1432	return pi->flags & CEPH_POOL_FLAG_FULL;
1433}
1434
1435static bool have_pool_full(struct ceph_osd_client *osdc)
1436{
1437	struct rb_node *n;
1438
1439	for (n = rb_first(&osdc->osdmap->pg_pools); n; n = rb_next(n)) {
1440		struct ceph_pg_pool_info *pi =
1441		    rb_entry(n, struct ceph_pg_pool_info, node);
1442
1443		if (__pool_full(pi))
1444			return true;
1445	}
1446
1447	return false;
1448}
1449
1450static bool pool_full(struct ceph_osd_client *osdc, s64 pool_id)
1451{
1452	struct ceph_pg_pool_info *pi;
1453
1454	pi = ceph_pg_pool_by_id(osdc->osdmap, pool_id);
1455	if (!pi)
1456		return false;
1457
1458	return __pool_full(pi);
1459}
1460
1461/*
1462 * Returns whether a request should be blocked from being sent
1463 * based on the current osdmap and osd_client settings.
1464 */
1465static bool target_should_be_paused(struct ceph_osd_client *osdc,
1466				    const struct ceph_osd_request_target *t,
1467				    struct ceph_pg_pool_info *pi)
1468{
1469	bool pauserd = ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSERD);
1470	bool pausewr = ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSEWR) ||
1471		       ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL) ||
1472		       __pool_full(pi);
1473
1474	WARN_ON(pi->id != t->target_oloc.pool);
1475	return ((t->flags & CEPH_OSD_FLAG_READ) && pauserd) ||
1476	       ((t->flags & CEPH_OSD_FLAG_WRITE) && pausewr) ||
1477	       (osdc->osdmap->epoch < osdc->epoch_barrier);
1478}
1479
1480static int pick_random_replica(const struct ceph_osds *acting)
1481{
1482	int i = prandom_u32() % acting->size;
1483
1484	dout("%s picked osd%d, primary osd%d\n", __func__,
1485	     acting->osds[i], acting->primary);
1486	return i;
1487}
1488
1489/*
1490 * Picks the closest replica based on client's location given by
1491 * crush_location option.  Prefers the primary if the locality is
1492 * the same.
1493 */
1494static int pick_closest_replica(struct ceph_osd_client *osdc,
1495				const struct ceph_osds *acting)
1496{
1497	struct ceph_options *opt = osdc->client->options;
1498	int best_i, best_locality;
1499	int i = 0, locality;
1500
1501	do {
1502		locality = ceph_get_crush_locality(osdc->osdmap,
1503						   acting->osds[i],
1504						   &opt->crush_locs);
1505		if (i == 0 ||
1506		    (locality >= 0 && best_locality < 0) ||
1507		    (locality >= 0 && best_locality >= 0 &&
1508		     locality < best_locality)) {
1509			best_i = i;
1510			best_locality = locality;
1511		}
1512	} while (++i < acting->size);
1513
1514	dout("%s picked osd%d with locality %d, primary osd%d\n", __func__,
1515	     acting->osds[best_i], best_locality, acting->primary);
1516	return best_i;
1517}
1518
1519enum calc_target_result {
1520	CALC_TARGET_NO_ACTION = 0,
1521	CALC_TARGET_NEED_RESEND,
1522	CALC_TARGET_POOL_DNE,
1523};
1524
1525static enum calc_target_result calc_target(struct ceph_osd_client *osdc,
1526					   struct ceph_osd_request_target *t,
1527					   bool any_change)
1528{
1529	struct ceph_pg_pool_info *pi;
1530	struct ceph_pg pgid, last_pgid;
1531	struct ceph_osds up, acting;
1532	bool is_read = t->flags & CEPH_OSD_FLAG_READ;
1533	bool is_write = t->flags & CEPH_OSD_FLAG_WRITE;
1534	bool force_resend = false;
1535	bool unpaused = false;
1536	bool legacy_change = false;
1537	bool split = false;
1538	bool sort_bitwise = ceph_osdmap_flag(osdc, CEPH_OSDMAP_SORTBITWISE);
1539	bool recovery_deletes = ceph_osdmap_flag(osdc,
1540						 CEPH_OSDMAP_RECOVERY_DELETES);
1541	enum calc_target_result ct_res;
1542
1543	t->epoch = osdc->osdmap->epoch;
1544	pi = ceph_pg_pool_by_id(osdc->osdmap, t->base_oloc.pool);
1545	if (!pi) {
1546		t->osd = CEPH_HOMELESS_OSD;
1547		ct_res = CALC_TARGET_POOL_DNE;
1548		goto out;
1549	}
1550
1551	if (osdc->osdmap->epoch == pi->last_force_request_resend) {
1552		if (t->last_force_resend < pi->last_force_request_resend) {
1553			t->last_force_resend = pi->last_force_request_resend;
1554			force_resend = true;
1555		} else if (t->last_force_resend == 0) {
1556			force_resend = true;
1557		}
1558	}
1559
1560	/* apply tiering */
1561	ceph_oid_copy(&t->target_oid, &t->base_oid);
1562	ceph_oloc_copy(&t->target_oloc, &t->base_oloc);
1563	if ((t->flags & CEPH_OSD_FLAG_IGNORE_OVERLAY) == 0) {
1564		if (is_read && pi->read_tier >= 0)
1565			t->target_oloc.pool = pi->read_tier;
1566		if (is_write && pi->write_tier >= 0)
1567			t->target_oloc.pool = pi->write_tier;
1568
1569		pi = ceph_pg_pool_by_id(osdc->osdmap, t->target_oloc.pool);
1570		if (!pi) {
1571			t->osd = CEPH_HOMELESS_OSD;
1572			ct_res = CALC_TARGET_POOL_DNE;
1573			goto out;
1574		}
1575	}
1576
1577	__ceph_object_locator_to_pg(pi, &t->target_oid, &t->target_oloc, &pgid);
1578	last_pgid.pool = pgid.pool;
1579	last_pgid.seed = ceph_stable_mod(pgid.seed, t->pg_num, t->pg_num_mask);
1580
1581	ceph_pg_to_up_acting_osds(osdc->osdmap, pi, &pgid, &up, &acting);
1582	if (any_change &&
1583	    ceph_is_new_interval(&t->acting,
1584				 &acting,
1585				 &t->up,
1586				 &up,
1587				 t->size,
1588				 pi->size,
1589				 t->min_size,
1590				 pi->min_size,
1591				 t->pg_num,
1592				 pi->pg_num,
1593				 t->sort_bitwise,
1594				 sort_bitwise,
1595				 t->recovery_deletes,
1596				 recovery_deletes,
1597				 &last_pgid))
1598		force_resend = true;
1599
1600	if (t->paused && !target_should_be_paused(osdc, t, pi)) {
1601		t->paused = false;
1602		unpaused = true;
1603	}
1604	legacy_change = ceph_pg_compare(&t->pgid, &pgid) ||
1605			ceph_osds_changed(&t->acting, &acting,
1606					  t->used_replica || any_change);
1607	if (t->pg_num)
1608		split = ceph_pg_is_split(&last_pgid, t->pg_num, pi->pg_num);
1609
1610	if (legacy_change || force_resend || split) {
1611		t->pgid = pgid; /* struct */
1612		ceph_pg_to_primary_shard(osdc->osdmap, pi, &pgid, &t->spgid);
1613		ceph_osds_copy(&t->acting, &acting);
1614		ceph_osds_copy(&t->up, &up);
1615		t->size = pi->size;
1616		t->min_size = pi->min_size;
1617		t->pg_num = pi->pg_num;
1618		t->pg_num_mask = pi->pg_num_mask;
1619		t->sort_bitwise = sort_bitwise;
1620		t->recovery_deletes = recovery_deletes;
1621
1622		if ((t->flags & (CEPH_OSD_FLAG_BALANCE_READS |
1623				 CEPH_OSD_FLAG_LOCALIZE_READS)) &&
1624		    !is_write && pi->type == CEPH_POOL_TYPE_REP &&
1625		    acting.size > 1) {
1626			int pos;
1627
1628			WARN_ON(!is_read || acting.osds[0] != acting.primary);
1629			if (t->flags & CEPH_OSD_FLAG_BALANCE_READS) {
1630				pos = pick_random_replica(&acting);
1631			} else {
1632				pos = pick_closest_replica(osdc, &acting);
1633			}
1634			t->osd = acting.osds[pos];
1635			t->used_replica = pos > 0;
1636		} else {
1637			t->osd = acting.primary;
1638			t->used_replica = false;
1639		}
1640	}
1641
1642	if (unpaused || legacy_change || force_resend || split)
1643		ct_res = CALC_TARGET_NEED_RESEND;
1644	else
1645		ct_res = CALC_TARGET_NO_ACTION;
1646
1647out:
1648	dout("%s t %p -> %d%d%d%d ct_res %d osd%d\n", __func__, t, unpaused,
1649	     legacy_change, force_resend, split, ct_res, t->osd);
1650	return ct_res;
1651}
1652
1653static struct ceph_spg_mapping *alloc_spg_mapping(void)
1654{
1655	struct ceph_spg_mapping *spg;
1656
1657	spg = kmalloc(sizeof(*spg), GFP_NOIO);
1658	if (!spg)
1659		return NULL;
1660
1661	RB_CLEAR_NODE(&spg->node);
1662	spg->backoffs = RB_ROOT;
1663	return spg;
1664}
1665
1666static void free_spg_mapping(struct ceph_spg_mapping *spg)
1667{
1668	WARN_ON(!RB_EMPTY_NODE(&spg->node));
1669	WARN_ON(!RB_EMPTY_ROOT(&spg->backoffs));
1670
1671	kfree(spg);
1672}
1673
1674/*
1675 * rbtree of ceph_spg_mapping for handling map<spg_t, ...>, similar to
1676 * ceph_pg_mapping.  Used to track OSD backoffs -- a backoff [range] is
1677 * defined only within a specific spgid; it does not pass anything to
1678 * children on split, or to another primary.
1679 */
1680DEFINE_RB_FUNCS2(spg_mapping, struct ceph_spg_mapping, spgid, ceph_spg_compare,
1681		 RB_BYPTR, const struct ceph_spg *, node)
1682
1683static u64 hoid_get_bitwise_key(const struct ceph_hobject_id *hoid)
1684{
1685	return hoid->is_max ? 0x100000000ull : hoid->hash_reverse_bits;
1686}
1687
1688static void hoid_get_effective_key(const struct ceph_hobject_id *hoid,
1689				   void **pkey, size_t *pkey_len)
1690{
1691	if (hoid->key_len) {
1692		*pkey = hoid->key;
1693		*pkey_len = hoid->key_len;
1694	} else {
1695		*pkey = hoid->oid;
1696		*pkey_len = hoid->oid_len;
1697	}
1698}
1699
1700static int compare_names(const void *name1, size_t name1_len,
1701			 const void *name2, size_t name2_len)
1702{
1703	int ret;
1704
1705	ret = memcmp(name1, name2, min(name1_len, name2_len));
1706	if (!ret) {
1707		if (name1_len < name2_len)
1708			ret = -1;
1709		else if (name1_len > name2_len)
1710			ret = 1;
1711	}
1712	return ret;
1713}
1714
1715static int hoid_compare(const struct ceph_hobject_id *lhs,
1716			const struct ceph_hobject_id *rhs)
1717{
1718	void *effective_key1, *effective_key2;
1719	size_t effective_key1_len, effective_key2_len;
1720	int ret;
1721
1722	if (lhs->is_max < rhs->is_max)
1723		return -1;
1724	if (lhs->is_max > rhs->is_max)
1725		return 1;
1726
1727	if (lhs->pool < rhs->pool)
1728		return -1;
1729	if (lhs->pool > rhs->pool)
1730		return 1;
1731
1732	if (hoid_get_bitwise_key(lhs) < hoid_get_bitwise_key(rhs))
1733		return -1;
1734	if (hoid_get_bitwise_key(lhs) > hoid_get_bitwise_key(rhs))
1735		return 1;
1736
1737	ret = compare_names(lhs->nspace, lhs->nspace_len,
1738			    rhs->nspace, rhs->nspace_len);
1739	if (ret)
1740		return ret;
1741
1742	hoid_get_effective_key(lhs, &effective_key1, &effective_key1_len);
1743	hoid_get_effective_key(rhs, &effective_key2, &effective_key2_len);
1744	ret = compare_names(effective_key1, effective_key1_len,
1745			    effective_key2, effective_key2_len);
1746	if (ret)
1747		return ret;
1748
1749	ret = compare_names(lhs->oid, lhs->oid_len, rhs->oid, rhs->oid_len);
1750	if (ret)
1751		return ret;
1752
1753	if (lhs->snapid < rhs->snapid)
1754		return -1;
1755	if (lhs->snapid > rhs->snapid)
1756		return 1;
1757
1758	return 0;
1759}
1760
1761/*
1762 * For decoding ->begin and ->end of MOSDBackoff only -- no MIN/MAX
1763 * compat stuff here.
1764 *
1765 * Assumes @hoid is zero-initialized.
1766 */
1767static int decode_hoid(void **p, void *end, struct ceph_hobject_id *hoid)
1768{
1769	u8 struct_v;
1770	u32 struct_len;
1771	int ret;
1772
1773	ret = ceph_start_decoding(p, end, 4, "hobject_t", &struct_v,
1774				  &struct_len);
1775	if (ret)
1776		return ret;
1777
1778	if (struct_v < 4) {
1779		pr_err("got struct_v %d < 4 of hobject_t\n", struct_v);
1780		goto e_inval;
1781	}
1782
1783	hoid->key = ceph_extract_encoded_string(p, end, &hoid->key_len,
1784						GFP_NOIO);
1785	if (IS_ERR(hoid->key)) {
1786		ret = PTR_ERR(hoid->key);
1787		hoid->key = NULL;
1788		return ret;
1789	}
1790
1791	hoid->oid = ceph_extract_encoded_string(p, end, &hoid->oid_len,
1792						GFP_NOIO);
1793	if (IS_ERR(hoid->oid)) {
1794		ret = PTR_ERR(hoid->oid);
1795		hoid->oid = NULL;
1796		return ret;
1797	}
1798
1799	ceph_decode_64_safe(p, end, hoid->snapid, e_inval);
1800	ceph_decode_32_safe(p, end, hoid->hash, e_inval);
1801	ceph_decode_8_safe(p, end, hoid->is_max, e_inval);
1802
1803	hoid->nspace = ceph_extract_encoded_string(p, end, &hoid->nspace_len,
1804						   GFP_NOIO);
1805	if (IS_ERR(hoid->nspace)) {
1806		ret = PTR_ERR(hoid->nspace);
1807		hoid->nspace = NULL;
1808		return ret;
1809	}
1810
1811	ceph_decode_64_safe(p, end, hoid->pool, e_inval);
1812
1813	ceph_hoid_build_hash_cache(hoid);
1814	return 0;
1815
1816e_inval:
1817	return -EINVAL;
1818}
1819
1820static int hoid_encoding_size(const struct ceph_hobject_id *hoid)
1821{
1822	return 8 + 4 + 1 + 8 + /* snapid, hash, is_max, pool */
1823	       4 + hoid->key_len + 4 + hoid->oid_len + 4 + hoid->nspace_len;
1824}
1825
1826static void encode_hoid(void **p, void *end, const struct ceph_hobject_id *hoid)
1827{
1828	ceph_start_encoding(p, 4, 3, hoid_encoding_size(hoid));
1829	ceph_encode_string(p, end, hoid->key, hoid->key_len);
1830	ceph_encode_string(p, end, hoid->oid, hoid->oid_len);
1831	ceph_encode_64(p, hoid->snapid);
1832	ceph_encode_32(p, hoid->hash);
1833	ceph_encode_8(p, hoid->is_max);
1834	ceph_encode_string(p, end, hoid->nspace, hoid->nspace_len);
1835	ceph_encode_64(p, hoid->pool);
1836}
1837
1838static void free_hoid(struct ceph_hobject_id *hoid)
1839{
1840	if (hoid) {
1841		kfree(hoid->key);
1842		kfree(hoid->oid);
1843		kfree(hoid->nspace);
1844		kfree(hoid);
1845	}
1846}
1847
1848static struct ceph_osd_backoff *alloc_backoff(void)
1849{
1850	struct ceph_osd_backoff *backoff;
1851
1852	backoff = kzalloc(sizeof(*backoff), GFP_NOIO);
1853	if (!backoff)
1854		return NULL;
1855
1856	RB_CLEAR_NODE(&backoff->spg_node);
1857	RB_CLEAR_NODE(&backoff->id_node);
1858	return backoff;
1859}
1860
1861static void free_backoff(struct ceph_osd_backoff *backoff)
1862{
1863	WARN_ON(!RB_EMPTY_NODE(&backoff->spg_node));
1864	WARN_ON(!RB_EMPTY_NODE(&backoff->id_node));
1865
1866	free_hoid(backoff->begin);
1867	free_hoid(backoff->end);
1868	kfree(backoff);
1869}
1870
1871/*
1872 * Within a specific spgid, backoffs are managed by ->begin hoid.
1873 */
1874DEFINE_RB_INSDEL_FUNCS2(backoff, struct ceph_osd_backoff, begin, hoid_compare,
1875			RB_BYVAL, spg_node);
1876
1877static struct ceph_osd_backoff *lookup_containing_backoff(struct rb_root *root,
1878					    const struct ceph_hobject_id *hoid)
1879{
1880	struct rb_node *n = root->rb_node;
1881
1882	while (n) {
1883		struct ceph_osd_backoff *cur =
1884		    rb_entry(n, struct ceph_osd_backoff, spg_node);
1885		int cmp;
1886
1887		cmp = hoid_compare(hoid, cur->begin);
1888		if (cmp < 0) {
1889			n = n->rb_left;
1890		} else if (cmp > 0) {
1891			if (hoid_compare(hoid, cur->end) < 0)
1892				return cur;
1893
1894			n = n->rb_right;
1895		} else {
1896			return cur;
1897		}
1898	}
1899
1900	return NULL;
1901}
1902
1903/*
1904 * Each backoff has a unique id within its OSD session.
1905 */
1906DEFINE_RB_FUNCS(backoff_by_id, struct ceph_osd_backoff, id, id_node)
1907
1908static void clear_backoffs(struct ceph_osd *osd)
1909{
1910	while (!RB_EMPTY_ROOT(&osd->o_backoff_mappings)) {
1911		struct ceph_spg_mapping *spg =
1912		    rb_entry(rb_first(&osd->o_backoff_mappings),
1913			     struct ceph_spg_mapping, node);
1914
1915		while (!RB_EMPTY_ROOT(&spg->backoffs)) {
1916			struct ceph_osd_backoff *backoff =
1917			    rb_entry(rb_first(&spg->backoffs),
1918				     struct ceph_osd_backoff, spg_node);
1919
1920			erase_backoff(&spg->backoffs, backoff);
1921			erase_backoff_by_id(&osd->o_backoffs_by_id, backoff);
1922			free_backoff(backoff);
1923		}
1924		erase_spg_mapping(&osd->o_backoff_mappings, spg);
1925		free_spg_mapping(spg);
1926	}
1927}
1928
1929/*
1930 * Set up a temporary, non-owning view into @t.
1931 */
1932static void hoid_fill_from_target(struct ceph_hobject_id *hoid,
1933				  const struct ceph_osd_request_target *t)
1934{
1935	hoid->key = NULL;
1936	hoid->key_len = 0;
1937	hoid->oid = t->target_oid.name;
1938	hoid->oid_len = t->target_oid.name_len;
1939	hoid->snapid = CEPH_NOSNAP;
1940	hoid->hash = t->pgid.seed;
1941	hoid->is_max = false;
1942	if (t->target_oloc.pool_ns) {
1943		hoid->nspace = t->target_oloc.pool_ns->str;
1944		hoid->nspace_len = t->target_oloc.pool_ns->len;
1945	} else {
1946		hoid->nspace = NULL;
1947		hoid->nspace_len = 0;
1948	}
1949	hoid->pool = t->target_oloc.pool;
1950	ceph_hoid_build_hash_cache(hoid);
1951}
1952
1953static bool should_plug_request(struct ceph_osd_request *req)
1954{
1955	struct ceph_osd *osd = req->r_osd;
1956	struct ceph_spg_mapping *spg;
1957	struct ceph_osd_backoff *backoff;
1958	struct ceph_hobject_id hoid;
1959
1960	spg = lookup_spg_mapping(&osd->o_backoff_mappings, &req->r_t.spgid);
1961	if (!spg)
1962		return false;
1963
1964	hoid_fill_from_target(&hoid, &req->r_t);
1965	backoff = lookup_containing_backoff(&spg->backoffs, &hoid);
1966	if (!backoff)
1967		return false;
1968
1969	dout("%s req %p tid %llu backoff osd%d spgid %llu.%xs%d id %llu\n",
1970	     __func__, req, req->r_tid, osd->o_osd, backoff->spgid.pgid.pool,
1971	     backoff->spgid.pgid.seed, backoff->spgid.shard, backoff->id);
1972	return true;
1973}
1974
1975/*
1976 * Keep get_num_data_items() in sync with this function.
1977 */
1978static void setup_request_data(struct ceph_osd_request *req)
1979{
1980	struct ceph_msg *request_msg = req->r_request;
1981	struct ceph_msg *reply_msg = req->r_reply;
1982	struct ceph_osd_req_op *op;
1983
1984	if (req->r_request->num_data_items || req->r_reply->num_data_items)
1985		return;
1986
1987	WARN_ON(request_msg->data_length || reply_msg->data_length);
1988	for (op = req->r_ops; op != &req->r_ops[req->r_num_ops]; op++) {
1989		switch (op->op) {
1990		/* request */
1991		case CEPH_OSD_OP_WRITE:
1992		case CEPH_OSD_OP_WRITEFULL:
1993			WARN_ON(op->indata_len != op->extent.length);
1994			ceph_osdc_msg_data_add(request_msg,
1995					       &op->extent.osd_data);
1996			break;
1997		case CEPH_OSD_OP_SETXATTR:
1998		case CEPH_OSD_OP_CMPXATTR:
1999			WARN_ON(op->indata_len != op->xattr.name_len +
2000						  op->xattr.value_len);
2001			ceph_osdc_msg_data_add(request_msg,
2002					       &op->xattr.osd_data);
2003			break;
2004		case CEPH_OSD_OP_NOTIFY_ACK:
2005			ceph_osdc_msg_data_add(request_msg,
2006					       &op->notify_ack.request_data);
2007			break;
2008		case CEPH_OSD_OP_COPY_FROM2:
2009			ceph_osdc_msg_data_add(request_msg,
2010					       &op->copy_from.osd_data);
2011			break;
2012
2013		/* reply */
2014		case CEPH_OSD_OP_STAT:
2015			ceph_osdc_msg_data_add(reply_msg,
2016					       &op->raw_data_in);
2017			break;
2018		case CEPH_OSD_OP_READ:
2019			ceph_osdc_msg_data_add(reply_msg,
2020					       &op->extent.osd_data);
2021			break;
2022		case CEPH_OSD_OP_LIST_WATCHERS:
2023			ceph_osdc_msg_data_add(reply_msg,
2024					       &op->list_watchers.response_data);
2025			break;
2026
2027		/* both */
2028		case CEPH_OSD_OP_CALL:
2029			WARN_ON(op->indata_len != op->cls.class_len +
2030						  op->cls.method_len +
2031						  op->cls.indata_len);
2032			ceph_osdc_msg_data_add(request_msg,
2033					       &op->cls.request_info);
2034			/* optional, can be NONE */
2035			ceph_osdc_msg_data_add(request_msg,
2036					       &op->cls.request_data);
2037			/* optional, can be NONE */
2038			ceph_osdc_msg_data_add(reply_msg,
2039					       &op->cls.response_data);
2040			break;
2041		case CEPH_OSD_OP_NOTIFY:
2042			ceph_osdc_msg_data_add(request_msg,
2043					       &op->notify.request_data);
2044			ceph_osdc_msg_data_add(reply_msg,
2045					       &op->notify.response_data);
2046			break;
2047		}
2048	}
2049}
2050
2051static void encode_pgid(void **p, const struct ceph_pg *pgid)
2052{
2053	ceph_encode_8(p, 1);
2054	ceph_encode_64(p, pgid->pool);
2055	ceph_encode_32(p, pgid->seed);
2056	ceph_encode_32(p, -1); /* preferred */
2057}
2058
2059static void encode_spgid(void **p, const struct ceph_spg *spgid)
2060{
2061	ceph_start_encoding(p, 1, 1, CEPH_PGID_ENCODING_LEN + 1);
2062	encode_pgid(p, &spgid->pgid);
2063	ceph_encode_8(p, spgid->shard);
2064}
2065
2066static void encode_oloc(void **p, void *end,
2067			const struct ceph_object_locator *oloc)
2068{
2069	ceph_start_encoding(p, 5, 4, ceph_oloc_encoding_size(oloc));
2070	ceph_encode_64(p, oloc->pool);
2071	ceph_encode_32(p, -1); /* preferred */
2072	ceph_encode_32(p, 0);  /* key len */
2073	if (oloc->pool_ns)
2074		ceph_encode_string(p, end, oloc->pool_ns->str,
2075				   oloc->pool_ns->len);
2076	else
2077		ceph_encode_32(p, 0);
2078}
2079
2080static void encode_request_partial(struct ceph_osd_request *req,
2081				   struct ceph_msg *msg)
2082{
2083	void *p = msg->front.iov_base;
2084	void *const end = p + msg->front_alloc_len;
2085	u32 data_len = 0;
2086	int i;
2087
2088	if (req->r_flags & CEPH_OSD_FLAG_WRITE) {
2089		/* snapshots aren't writeable */
2090		WARN_ON(req->r_snapid != CEPH_NOSNAP);
2091	} else {
2092		WARN_ON(req->r_mtime.tv_sec || req->r_mtime.tv_nsec ||
2093			req->r_data_offset || req->r_snapc);
2094	}
2095
2096	setup_request_data(req);
2097
2098	encode_spgid(&p, &req->r_t.spgid); /* actual spg */
2099	ceph_encode_32(&p, req->r_t.pgid.seed); /* raw hash */
2100	ceph_encode_32(&p, req->r_osdc->osdmap->epoch);
2101	ceph_encode_32(&p, req->r_flags);
2102
2103	/* reqid */
2104	ceph_start_encoding(&p, 2, 2, sizeof(struct ceph_osd_reqid));
2105	memset(p, 0, sizeof(struct ceph_osd_reqid));
2106	p += sizeof(struct ceph_osd_reqid);
2107
2108	/* trace */
2109	memset(p, 0, sizeof(struct ceph_blkin_trace_info));
2110	p += sizeof(struct ceph_blkin_trace_info);
2111
2112	ceph_encode_32(&p, 0); /* client_inc, always 0 */
2113	ceph_encode_timespec64(p, &req->r_mtime);
2114	p += sizeof(struct ceph_timespec);
2115
2116	encode_oloc(&p, end, &req->r_t.target_oloc);
2117	ceph_encode_string(&p, end, req->r_t.target_oid.name,
2118			   req->r_t.target_oid.name_len);
2119
2120	/* ops, can imply data */
2121	ceph_encode_16(&p, req->r_num_ops);
2122	for (i = 0; i < req->r_num_ops; i++) {
2123		data_len += osd_req_encode_op(p, &req->r_ops[i]);
2124		p += sizeof(struct ceph_osd_op);
2125	}
2126
2127	ceph_encode_64(&p, req->r_snapid); /* snapid */
2128	if (req->r_snapc) {
2129		ceph_encode_64(&p, req->r_snapc->seq);
2130		ceph_encode_32(&p, req->r_snapc->num_snaps);
2131		for (i = 0; i < req->r_snapc->num_snaps; i++)
2132			ceph_encode_64(&p, req->r_snapc->snaps[i]);
2133	} else {
2134		ceph_encode_64(&p, 0); /* snap_seq */
2135		ceph_encode_32(&p, 0); /* snaps len */
2136	}
2137
2138	ceph_encode_32(&p, req->r_attempts); /* retry_attempt */
2139	BUG_ON(p > end - 8); /* space for features */
2140
2141	msg->hdr.version = cpu_to_le16(8); /* MOSDOp v8 */
2142	/* front_len is finalized in encode_request_finish() */
2143	msg->front.iov_len = p - msg->front.iov_base;
2144	msg->hdr.front_len = cpu_to_le32(msg->front.iov_len);
2145	msg->hdr.data_len = cpu_to_le32(data_len);
2146	/*
2147	 * The header "data_off" is a hint to the receiver allowing it
2148	 * to align received data into its buffers such that there's no
2149	 * need to re-copy it before writing it to disk (direct I/O).
2150	 */
2151	msg->hdr.data_off = cpu_to_le16(req->r_data_offset);
2152
2153	dout("%s req %p msg %p oid %s oid_len %d\n", __func__, req, msg,
2154	     req->r_t.target_oid.name, req->r_t.target_oid.name_len);
2155}
2156
2157static void encode_request_finish(struct ceph_msg *msg)
2158{
2159	void *p = msg->front.iov_base;
2160	void *const partial_end = p + msg->front.iov_len;
2161	void *const end = p + msg->front_alloc_len;
2162
2163	if (CEPH_HAVE_FEATURE(msg->con->peer_features, RESEND_ON_SPLIT)) {
2164		/* luminous OSD -- encode features and be done */
2165		p = partial_end;
2166		ceph_encode_64(&p, msg->con->peer_features);
2167	} else {
2168		struct {
2169			char spgid[CEPH_ENCODING_START_BLK_LEN +
2170				   CEPH_PGID_ENCODING_LEN + 1];
2171			__le32 hash;
2172			__le32 epoch;
2173			__le32 flags;
2174			char reqid[CEPH_ENCODING_START_BLK_LEN +
2175				   sizeof(struct ceph_osd_reqid)];
2176			char trace[sizeof(struct ceph_blkin_trace_info)];
2177			__le32 client_inc;
2178			struct ceph_timespec mtime;
2179		} __packed head;
2180		struct ceph_pg pgid;
2181		void *oloc, *oid, *tail;
2182		int oloc_len, oid_len, tail_len;
2183		int len;
2184
2185		/*
2186		 * Pre-luminous OSD -- reencode v8 into v4 using @head
2187		 * as a temporary buffer.  Encode the raw PG; the rest
2188		 * is just a matter of moving oloc, oid and tail blobs
2189		 * around.
2190		 */
2191		memcpy(&head, p, sizeof(head));
2192		p += sizeof(head);
2193
2194		oloc = p;
2195		p += CEPH_ENCODING_START_BLK_LEN;
2196		pgid.pool = ceph_decode_64(&p);
2197		p += 4 + 4; /* preferred, key len */
2198		len = ceph_decode_32(&p);
2199		p += len;   /* nspace */
2200		oloc_len = p - oloc;
2201
2202		oid = p;
2203		len = ceph_decode_32(&p);
2204		p += len;
2205		oid_len = p - oid;
2206
2207		tail = p;
2208		tail_len = partial_end - p;
2209
2210		p = msg->front.iov_base;
2211		ceph_encode_copy(&p, &head.client_inc, sizeof(head.client_inc));
2212		ceph_encode_copy(&p, &head.epoch, sizeof(head.epoch));
2213		ceph_encode_copy(&p, &head.flags, sizeof(head.flags));
2214		ceph_encode_copy(&p, &head.mtime, sizeof(head.mtime));
2215
2216		/* reassert_version */
2217		memset(p, 0, sizeof(struct ceph_eversion));
2218		p += sizeof(struct ceph_eversion);
2219
2220		BUG_ON(p >= oloc);
2221		memmove(p, oloc, oloc_len);
2222		p += oloc_len;
2223
2224		pgid.seed = le32_to_cpu(head.hash);
2225		encode_pgid(&p, &pgid); /* raw pg */
2226
2227		BUG_ON(p >= oid);
2228		memmove(p, oid, oid_len);
2229		p += oid_len;
2230
2231		/* tail -- ops, snapid, snapc, retry_attempt */
2232		BUG_ON(p >= tail);
2233		memmove(p, tail, tail_len);
2234		p += tail_len;
2235
2236		msg->hdr.version = cpu_to_le16(4); /* MOSDOp v4 */
2237	}
2238
2239	BUG_ON(p > end);
2240	msg->front.iov_len = p - msg->front.iov_base;
2241	msg->hdr.front_len = cpu_to_le32(msg->front.iov_len);
2242
2243	dout("%s msg %p tid %llu %u+%u+%u v%d\n", __func__, msg,
2244	     le64_to_cpu(msg->hdr.tid), le32_to_cpu(msg->hdr.front_len),
2245	     le32_to_cpu(msg->hdr.middle_len), le32_to_cpu(msg->hdr.data_len),
2246	     le16_to_cpu(msg->hdr.version));
2247}
2248
2249/*
2250 * @req has to be assigned a tid and registered.
2251 */
2252static void send_request(struct ceph_osd_request *req)
2253{
2254	struct ceph_osd *osd = req->r_osd;
2255
2256	verify_osd_locked(osd);
2257	WARN_ON(osd->o_osd != req->r_t.osd);
2258
2259	/* backoff? */
2260	if (should_plug_request(req))
2261		return;
2262
2263	/*
2264	 * We may have a previously queued request message hanging
2265	 * around.  Cancel it to avoid corrupting the msgr.
2266	 */
2267	if (req->r_sent)
2268		ceph_msg_revoke(req->r_request);
2269
2270	req->r_flags |= CEPH_OSD_FLAG_KNOWN_REDIR;
2271	if (req->r_attempts)
2272		req->r_flags |= CEPH_OSD_FLAG_RETRY;
2273	else
2274		WARN_ON(req->r_flags & CEPH_OSD_FLAG_RETRY);
2275
2276	encode_request_partial(req, req->r_request);
2277
2278	dout("%s req %p tid %llu to pgid %llu.%x spgid %llu.%xs%d osd%d e%u flags 0x%x attempt %d\n",
2279	     __func__, req, req->r_tid, req->r_t.pgid.pool, req->r_t.pgid.seed,
2280	     req->r_t.spgid.pgid.pool, req->r_t.spgid.pgid.seed,
2281	     req->r_t.spgid.shard, osd->o_osd, req->r_t.epoch, req->r_flags,
2282	     req->r_attempts);
2283
2284	req->r_t.paused = false;
2285	req->r_stamp = jiffies;
2286	req->r_attempts++;
2287
2288	req->r_sent = osd->o_incarnation;
2289	req->r_request->hdr.tid = cpu_to_le64(req->r_tid);
2290	ceph_con_send(&osd->o_con, ceph_msg_get(req->r_request));
2291}
2292
2293static void maybe_request_map(struct ceph_osd_client *osdc)
2294{
2295	bool continuous = false;
2296
2297	verify_osdc_locked(osdc);
2298	WARN_ON(!osdc->osdmap->epoch);
2299
2300	if (ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL) ||
2301	    ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSERD) ||
2302	    ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSEWR)) {
2303		dout("%s osdc %p continuous\n", __func__, osdc);
2304		continuous = true;
2305	} else {
2306		dout("%s osdc %p onetime\n", __func__, osdc);
2307	}
2308
2309	if (ceph_monc_want_map(&osdc->client->monc, CEPH_SUB_OSDMAP,
2310			       osdc->osdmap->epoch + 1, continuous))
2311		ceph_monc_renew_subs(&osdc->client->monc);
2312}
2313
2314static void complete_request(struct ceph_osd_request *req, int err);
2315static void send_map_check(struct ceph_osd_request *req);
2316
2317static void __submit_request(struct ceph_osd_request *req, bool wrlocked)
2318{
2319	struct ceph_osd_client *osdc = req->r_osdc;
2320	struct ceph_osd *osd;
2321	enum calc_target_result ct_res;
2322	int err = 0;
2323	bool need_send = false;
2324	bool promoted = false;
2325
2326	WARN_ON(req->r_tid);
2327	dout("%s req %p wrlocked %d\n", __func__, req, wrlocked);
2328
2329again:
2330	ct_res = calc_target(osdc, &req->r_t, false);
2331	if (ct_res == CALC_TARGET_POOL_DNE && !wrlocked)
2332		goto promote;
2333
2334	osd = lookup_create_osd(osdc, req->r_t.osd, wrlocked);
2335	if (IS_ERR(osd)) {
2336		WARN_ON(PTR_ERR(osd) != -EAGAIN || wrlocked);
2337		goto promote;
2338	}
2339
2340	if (osdc->abort_err) {
2341		dout("req %p abort_err %d\n", req, osdc->abort_err);
2342		err = osdc->abort_err;
2343	} else if (osdc->osdmap->epoch < osdc->epoch_barrier) {
2344		dout("req %p epoch %u barrier %u\n", req, osdc->osdmap->epoch,
2345		     osdc->epoch_barrier);
2346		req->r_t.paused = true;
2347		maybe_request_map(osdc);
2348	} else if ((req->r_flags & CEPH_OSD_FLAG_WRITE) &&
2349		   ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSEWR)) {
2350		dout("req %p pausewr\n", req);
2351		req->r_t.paused = true;
2352		maybe_request_map(osdc);
2353	} else if ((req->r_flags & CEPH_OSD_FLAG_READ) &&
2354		   ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSERD)) {
2355		dout("req %p pauserd\n", req);
2356		req->r_t.paused = true;
2357		maybe_request_map(osdc);
2358	} else if ((req->r_flags & CEPH_OSD_FLAG_WRITE) &&
2359		   !(req->r_flags & (CEPH_OSD_FLAG_FULL_TRY |
2360				     CEPH_OSD_FLAG_FULL_FORCE)) &&
2361		   (ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL) ||
2362		    pool_full(osdc, req->r_t.base_oloc.pool))) {
2363		dout("req %p full/pool_full\n", req);
2364		if (ceph_test_opt(osdc->client, ABORT_ON_FULL)) {
2365			err = -ENOSPC;
2366		} else {
2367			pr_warn_ratelimited("FULL or reached pool quota\n");
2368			req->r_t.paused = true;
2369			maybe_request_map(osdc);
2370		}
2371	} else if (!osd_homeless(osd)) {
2372		need_send = true;
2373	} else {
2374		maybe_request_map(osdc);
2375	}
2376
2377	mutex_lock(&osd->lock);
2378	/*
2379	 * Assign the tid atomically with send_request() to protect
2380	 * multiple writes to the same object from racing with each
2381	 * other, resulting in out of order ops on the OSDs.
2382	 */
2383	req->r_tid = atomic64_inc_return(&osdc->last_tid);
2384	link_request(osd, req);
2385	if (need_send)
2386		send_request(req);
2387	else if (err)
2388		complete_request(req, err);
2389	mutex_unlock(&osd->lock);
2390
2391	if (!err && ct_res == CALC_TARGET_POOL_DNE)
2392		send_map_check(req);
2393
2394	if (promoted)
2395		downgrade_write(&osdc->lock);
2396	return;
2397
2398promote:
2399	up_read(&osdc->lock);
2400	down_write(&osdc->lock);
2401	wrlocked = true;
2402	promoted = true;
2403	goto again;
2404}
2405
2406static void account_request(struct ceph_osd_request *req)
2407{
2408	WARN_ON(req->r_flags & (CEPH_OSD_FLAG_ACK | CEPH_OSD_FLAG_ONDISK));
2409	WARN_ON(!(req->r_flags & (CEPH_OSD_FLAG_READ | CEPH_OSD_FLAG_WRITE)));
2410
2411	req->r_flags |= CEPH_OSD_FLAG_ONDISK;
2412	atomic_inc(&req->r_osdc->num_requests);
2413
2414	req->r_start_stamp = jiffies;
2415	req->r_start_latency = ktime_get();
2416}
2417
2418static void submit_request(struct ceph_osd_request *req, bool wrlocked)
2419{
2420	ceph_osdc_get_request(req);
2421	account_request(req);
2422	__submit_request(req, wrlocked);
2423}
2424
2425static void finish_request(struct ceph_osd_request *req)
2426{
2427	struct ceph_osd_client *osdc = req->r_osdc;
2428
2429	WARN_ON(lookup_request_mc(&osdc->map_checks, req->r_tid));
2430	dout("%s req %p tid %llu\n", __func__, req, req->r_tid);
2431
2432	req->r_end_latency = ktime_get();
2433
2434	if (req->r_osd)
2435		unlink_request(req->r_osd, req);
2436	atomic_dec(&osdc->num_requests);
2437
2438	/*
2439	 * If an OSD has failed or returned and a request has been sent
2440	 * twice, it's possible to get a reply and end up here while the
2441	 * request message is queued for delivery.  We will ignore the
2442	 * reply, so not a big deal, but better to try and catch it.
2443	 */
2444	ceph_msg_revoke(req->r_request);
2445	ceph_msg_revoke_incoming(req->r_reply);
2446}
2447
2448static void __complete_request(struct ceph_osd_request *req)
2449{
2450	dout("%s req %p tid %llu cb %ps result %d\n", __func__, req,
2451	     req->r_tid, req->r_callback, req->r_result);
2452
2453	if (req->r_callback)
2454		req->r_callback(req);
2455	complete_all(&req->r_completion);
2456	ceph_osdc_put_request(req);
2457}
2458
2459static void complete_request_workfn(struct work_struct *work)
2460{
2461	struct ceph_osd_request *req =
2462	    container_of(work, struct ceph_osd_request, r_complete_work);
2463
2464	__complete_request(req);
2465}
2466
2467/*
2468 * This is open-coded in handle_reply().
2469 */
2470static void complete_request(struct ceph_osd_request *req, int err)
2471{
2472	dout("%s req %p tid %llu err %d\n", __func__, req, req->r_tid, err);
2473
2474	req->r_result = err;
2475	finish_request(req);
2476
2477	INIT_WORK(&req->r_complete_work, complete_request_workfn);
2478	queue_work(req->r_osdc->completion_wq, &req->r_complete_work);
2479}
2480
2481static void cancel_map_check(struct ceph_osd_request *req)
2482{
2483	struct ceph_osd_client *osdc = req->r_osdc;
2484	struct ceph_osd_request *lookup_req;
2485
2486	verify_osdc_wrlocked(osdc);
2487
2488	lookup_req = lookup_request_mc(&osdc->map_checks, req->r_tid);
2489	if (!lookup_req)
2490		return;
2491
2492	WARN_ON(lookup_req != req);
2493	erase_request_mc(&osdc->map_checks, req);
2494	ceph_osdc_put_request(req);
2495}
2496
2497static void cancel_request(struct ceph_osd_request *req)
2498{
2499	dout("%s req %p tid %llu\n", __func__, req, req->r_tid);
2500
2501	cancel_map_check(req);
2502	finish_request(req);
2503	complete_all(&req->r_completion);
2504	ceph_osdc_put_request(req);
2505}
2506
2507static void abort_request(struct ceph_osd_request *req, int err)
2508{
2509	dout("%s req %p tid %llu err %d\n", __func__, req, req->r_tid, err);
2510
2511	cancel_map_check(req);
2512	complete_request(req, err);
2513}
2514
2515static int abort_fn(struct ceph_osd_request *req, void *arg)
2516{
2517	int err = *(int *)arg;
2518
2519	abort_request(req, err);
2520	return 0; /* continue iteration */
2521}
2522
2523/*
2524 * Abort all in-flight requests with @err and arrange for all future
2525 * requests to be failed immediately.
2526 */
2527void ceph_osdc_abort_requests(struct ceph_osd_client *osdc, int err)
2528{
2529	dout("%s osdc %p err %d\n", __func__, osdc, err);
2530	down_write(&osdc->lock);
2531	for_each_request(osdc, abort_fn, &err);
2532	osdc->abort_err = err;
2533	up_write(&osdc->lock);
2534}
2535EXPORT_SYMBOL(ceph_osdc_abort_requests);
2536
2537void ceph_osdc_clear_abort_err(struct ceph_osd_client *osdc)
2538{
2539	down_write(&osdc->lock);
2540	osdc->abort_err = 0;
2541	up_write(&osdc->lock);
2542}
2543EXPORT_SYMBOL(ceph_osdc_clear_abort_err);
2544
2545static void update_epoch_barrier(struct ceph_osd_client *osdc, u32 eb)
2546{
2547	if (likely(eb > osdc->epoch_barrier)) {
2548		dout("updating epoch_barrier from %u to %u\n",
2549				osdc->epoch_barrier, eb);
2550		osdc->epoch_barrier = eb;
2551		/* Request map if we're not to the barrier yet */
2552		if (eb > osdc->osdmap->epoch)
2553			maybe_request_map(osdc);
2554	}
2555}
2556
2557void ceph_osdc_update_epoch_barrier(struct ceph_osd_client *osdc, u32 eb)
2558{
2559	down_read(&osdc->lock);
2560	if (unlikely(eb > osdc->epoch_barrier)) {
2561		up_read(&osdc->lock);
2562		down_write(&osdc->lock);
2563		update_epoch_barrier(osdc, eb);
2564		up_write(&osdc->lock);
2565	} else {
2566		up_read(&osdc->lock);
2567	}
2568}
2569EXPORT_SYMBOL(ceph_osdc_update_epoch_barrier);
2570
2571/*
2572 * We can end up releasing caps as a result of abort_request().
2573 * In that case, we probably want to ensure that the cap release message
2574 * has an updated epoch barrier in it, so set the epoch barrier prior to
2575 * aborting the first request.
2576 */
2577static int abort_on_full_fn(struct ceph_osd_request *req, void *arg)
2578{
2579	struct ceph_osd_client *osdc = req->r_osdc;
2580	bool *victims = arg;
2581
2582	if ((req->r_flags & CEPH_OSD_FLAG_WRITE) &&
2583	    (ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL) ||
2584	     pool_full(osdc, req->r_t.base_oloc.pool))) {
2585		if (!*victims) {
2586			update_epoch_barrier(osdc, osdc->osdmap->epoch);
2587			*victims = true;
2588		}
2589		abort_request(req, -ENOSPC);
2590	}
2591
2592	return 0; /* continue iteration */
2593}
2594
2595/*
2596 * Drop all pending requests that are stalled waiting on a full condition to
2597 * clear, and complete them with ENOSPC as the return code. Set the
2598 * osdc->epoch_barrier to the latest map epoch that we've seen if any were
2599 * cancelled.
2600 */
2601static void ceph_osdc_abort_on_full(struct ceph_osd_client *osdc)
2602{
2603	bool victims = false;
2604
2605	if (ceph_test_opt(osdc->client, ABORT_ON_FULL) &&
2606	    (ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL) || have_pool_full(osdc)))
2607		for_each_request(osdc, abort_on_full_fn, &victims);
2608}
2609
2610static void check_pool_dne(struct ceph_osd_request *req)
2611{
2612	struct ceph_osd_client *osdc = req->r_osdc;
2613	struct ceph_osdmap *map = osdc->osdmap;
2614
2615	verify_osdc_wrlocked(osdc);
2616	WARN_ON(!map->epoch);
2617
2618	if (req->r_attempts) {
2619		/*
2620		 * We sent a request earlier, which means that
2621		 * previously the pool existed, and now it does not
2622		 * (i.e., it was deleted).
2623		 */
2624		req->r_map_dne_bound = map->epoch;
2625		dout("%s req %p tid %llu pool disappeared\n", __func__, req,
2626		     req->r_tid);
2627	} else {
2628		dout("%s req %p tid %llu map_dne_bound %u have %u\n", __func__,
2629		     req, req->r_tid, req->r_map_dne_bound, map->epoch);
2630	}
2631
2632	if (req->r_map_dne_bound) {
2633		if (map->epoch >= req->r_map_dne_bound) {
2634			/* we had a new enough map */
2635			pr_info_ratelimited("tid %llu pool does not exist\n",
2636					    req->r_tid);
2637			complete_request(req, -ENOENT);
2638		}
2639	} else {
2640		send_map_check(req);
2641	}
2642}
2643
2644static void map_check_cb(struct ceph_mon_generic_request *greq)
2645{
2646	struct ceph_osd_client *osdc = &greq->monc->client->osdc;
2647	struct ceph_osd_request *req;
2648	u64 tid = greq->private_data;
2649
2650	WARN_ON(greq->result || !greq->u.newest);
2651
2652	down_write(&osdc->lock);
2653	req = lookup_request_mc(&osdc->map_checks, tid);
2654	if (!req) {
2655		dout("%s tid %llu dne\n", __func__, tid);
2656		goto out_unlock;
2657	}
2658
2659	dout("%s req %p tid %llu map_dne_bound %u newest %llu\n", __func__,
2660	     req, req->r_tid, req->r_map_dne_bound, greq->u.newest);
2661	if (!req->r_map_dne_bound)
2662		req->r_map_dne_bound = greq->u.newest;
2663	erase_request_mc(&osdc->map_checks, req);
2664	check_pool_dne(req);
2665
2666	ceph_osdc_put_request(req);
2667out_unlock:
2668	up_write(&osdc->lock);
2669}
2670
2671static void send_map_check(struct ceph_osd_request *req)
2672{
2673	struct ceph_osd_client *osdc = req->r_osdc;
2674	struct ceph_osd_request *lookup_req;
2675	int ret;
2676
2677	verify_osdc_wrlocked(osdc);
2678
2679	lookup_req = lookup_request_mc(&osdc->map_checks, req->r_tid);
2680	if (lookup_req) {
2681		WARN_ON(lookup_req != req);
2682		return;
2683	}
2684
2685	ceph_osdc_get_request(req);
2686	insert_request_mc(&osdc->map_checks, req);
2687	ret = ceph_monc_get_version_async(&osdc->client->monc, "osdmap",
2688					  map_check_cb, req->r_tid);
2689	WARN_ON(ret);
2690}
2691
2692/*
2693 * lingering requests, watch/notify v2 infrastructure
2694 */
2695static void linger_release(struct kref *kref)
2696{
2697	struct ceph_osd_linger_request *lreq =
2698	    container_of(kref, struct ceph_osd_linger_request, kref);
2699
2700	dout("%s lreq %p reg_req %p ping_req %p\n", __func__, lreq,
2701	     lreq->reg_req, lreq->ping_req);
2702	WARN_ON(!RB_EMPTY_NODE(&lreq->node));
2703	WARN_ON(!RB_EMPTY_NODE(&lreq->osdc_node));
2704	WARN_ON(!RB_EMPTY_NODE(&lreq->mc_node));
2705	WARN_ON(!list_empty(&lreq->scan_item));
2706	WARN_ON(!list_empty(&lreq->pending_lworks));
2707	WARN_ON(lreq->osd);
2708
2709	if (lreq->request_pl)
2710		ceph_pagelist_release(lreq->request_pl);
2711	if (lreq->notify_id_pages)
2712		ceph_release_page_vector(lreq->notify_id_pages, 1);
2713
2714	ceph_osdc_put_request(lreq->reg_req);
2715	ceph_osdc_put_request(lreq->ping_req);
2716	target_destroy(&lreq->t);
2717	kfree(lreq);
2718}
2719
2720static void linger_put(struct ceph_osd_linger_request *lreq)
2721{
2722	if (lreq)
2723		kref_put(&lreq->kref, linger_release);
2724}
2725
2726static struct ceph_osd_linger_request *
2727linger_get(struct ceph_osd_linger_request *lreq)
2728{
2729	kref_get(&lreq->kref);
2730	return lreq;
2731}
2732
2733static struct ceph_osd_linger_request *
2734linger_alloc(struct ceph_osd_client *osdc)
2735{
2736	struct ceph_osd_linger_request *lreq;
2737
2738	lreq = kzalloc(sizeof(*lreq), GFP_NOIO);
2739	if (!lreq)
2740		return NULL;
2741
2742	kref_init(&lreq->kref);
2743	mutex_init(&lreq->lock);
2744	RB_CLEAR_NODE(&lreq->node);
2745	RB_CLEAR_NODE(&lreq->osdc_node);
2746	RB_CLEAR_NODE(&lreq->mc_node);
2747	INIT_LIST_HEAD(&lreq->scan_item);
2748	INIT_LIST_HEAD(&lreq->pending_lworks);
2749	init_completion(&lreq->reg_commit_wait);
2750	init_completion(&lreq->notify_finish_wait);
2751
2752	lreq->osdc = osdc;
2753	target_init(&lreq->t);
2754
2755	dout("%s lreq %p\n", __func__, lreq);
2756	return lreq;
2757}
2758
2759DEFINE_RB_INSDEL_FUNCS(linger, struct ceph_osd_linger_request, linger_id, node)
2760DEFINE_RB_FUNCS(linger_osdc, struct ceph_osd_linger_request, linger_id, osdc_node)
2761DEFINE_RB_FUNCS(linger_mc, struct ceph_osd_linger_request, linger_id, mc_node)
2762
2763/*
2764 * Create linger request <-> OSD session relation.
2765 *
2766 * @lreq has to be registered, @osd may be homeless.
2767 */
2768static void link_linger(struct ceph_osd *osd,
2769			struct ceph_osd_linger_request *lreq)
2770{
2771	verify_osd_locked(osd);
2772	WARN_ON(!lreq->linger_id || lreq->osd);
2773	dout("%s osd %p osd%d lreq %p linger_id %llu\n", __func__, osd,
2774	     osd->o_osd, lreq, lreq->linger_id);
2775
2776	if (!osd_homeless(osd))
2777		__remove_osd_from_lru(osd);
2778	else
2779		atomic_inc(&osd->o_osdc->num_homeless);
2780
2781	get_osd(osd);
2782	insert_linger(&osd->o_linger_requests, lreq);
2783	lreq->osd = osd;
2784}
2785
2786static void unlink_linger(struct ceph_osd *osd,
2787			  struct ceph_osd_linger_request *lreq)
2788{
2789	verify_osd_locked(osd);
2790	WARN_ON(lreq->osd != osd);
2791	dout("%s osd %p osd%d lreq %p linger_id %llu\n", __func__, osd,
2792	     osd->o_osd, lreq, lreq->linger_id);
2793
2794	lreq->osd = NULL;
2795	erase_linger(&osd->o_linger_requests, lreq);
2796	put_osd(osd);
2797
2798	if (!osd_homeless(osd))
2799		maybe_move_osd_to_lru(osd);
2800	else
2801		atomic_dec(&osd->o_osdc->num_homeless);
2802}
2803
2804static bool __linger_registered(struct ceph_osd_linger_request *lreq)
2805{
2806	verify_osdc_locked(lreq->osdc);
2807
2808	return !RB_EMPTY_NODE(&lreq->osdc_node);
2809}
2810
2811static bool linger_registered(struct ceph_osd_linger_request *lreq)
2812{
2813	struct ceph_osd_client *osdc = lreq->osdc;
2814	bool registered;
2815
2816	down_read(&osdc->lock);
2817	registered = __linger_registered(lreq);
2818	up_read(&osdc->lock);
2819
2820	return registered;
2821}
2822
2823static void linger_register(struct ceph_osd_linger_request *lreq)
2824{
2825	struct ceph_osd_client *osdc = lreq->osdc;
2826
2827	verify_osdc_wrlocked(osdc);
2828	WARN_ON(lreq->linger_id);
2829
2830	linger_get(lreq);
2831	lreq->linger_id = ++osdc->last_linger_id;
2832	insert_linger_osdc(&osdc->linger_requests, lreq);
2833}
2834
2835static void linger_unregister(struct ceph_osd_linger_request *lreq)
2836{
2837	struct ceph_osd_client *osdc = lreq->osdc;
2838
2839	verify_osdc_wrlocked(osdc);
2840
2841	erase_linger_osdc(&osdc->linger_requests, lreq);
2842	linger_put(lreq);
2843}
2844
2845static void cancel_linger_request(struct ceph_osd_request *req)
2846{
2847	struct ceph_osd_linger_request *lreq = req->r_priv;
2848
2849	WARN_ON(!req->r_linger);
2850	cancel_request(req);
2851	linger_put(lreq);
2852}
2853
2854struct linger_work {
2855	struct work_struct work;
2856	struct ceph_osd_linger_request *lreq;
2857	struct list_head pending_item;
2858	unsigned long queued_stamp;
2859
2860	union {
2861		struct {
2862			u64 notify_id;
2863			u64 notifier_id;
2864			void *payload; /* points into @msg front */
2865			size_t payload_len;
2866
2867			struct ceph_msg *msg; /* for ceph_msg_put() */
2868		} notify;
2869		struct {
2870			int err;
2871		} error;
2872	};
2873};
2874
2875static struct linger_work *lwork_alloc(struct ceph_osd_linger_request *lreq,
2876				       work_func_t workfn)
2877{
2878	struct linger_work *lwork;
2879
2880	lwork = kzalloc(sizeof(*lwork), GFP_NOIO);
2881	if (!lwork)
2882		return NULL;
2883
2884	INIT_WORK(&lwork->work, workfn);
2885	INIT_LIST_HEAD(&lwork->pending_item);
2886	lwork->lreq = linger_get(lreq);
2887
2888	return lwork;
2889}
2890
2891static void lwork_free(struct linger_work *lwork)
2892{
2893	struct ceph_osd_linger_request *lreq = lwork->lreq;
2894
2895	mutex_lock(&lreq->lock);
2896	list_del(&lwork->pending_item);
2897	mutex_unlock(&lreq->lock);
2898
2899	linger_put(lreq);
2900	kfree(lwork);
2901}
2902
2903static void lwork_queue(struct linger_work *lwork)
2904{
2905	struct ceph_osd_linger_request *lreq = lwork->lreq;
2906	struct ceph_osd_client *osdc = lreq->osdc;
2907
2908	verify_lreq_locked(lreq);
2909	WARN_ON(!list_empty(&lwork->pending_item));
2910
2911	lwork->queued_stamp = jiffies;
2912	list_add_tail(&lwork->pending_item, &lreq->pending_lworks);
2913	queue_work(osdc->notify_wq, &lwork->work);
2914}
2915
2916static void do_watch_notify(struct work_struct *w)
2917{
2918	struct linger_work *lwork = container_of(w, struct linger_work, work);
2919	struct ceph_osd_linger_request *lreq = lwork->lreq;
2920
2921	if (!linger_registered(lreq)) {
2922		dout("%s lreq %p not registered\n", __func__, lreq);
2923		goto out;
2924	}
2925
2926	WARN_ON(!lreq->is_watch);
2927	dout("%s lreq %p notify_id %llu notifier_id %llu payload_len %zu\n",
2928	     __func__, lreq, lwork->notify.notify_id, lwork->notify.notifier_id,
2929	     lwork->notify.payload_len);
2930	lreq->wcb(lreq->data, lwork->notify.notify_id, lreq->linger_id,
2931		  lwork->notify.notifier_id, lwork->notify.payload,
2932		  lwork->notify.payload_len);
2933
2934out:
2935	ceph_msg_put(lwork->notify.msg);
2936	lwork_free(lwork);
2937}
2938
2939static void do_watch_error(struct work_struct *w)
2940{
2941	struct linger_work *lwork = container_of(w, struct linger_work, work);
2942	struct ceph_osd_linger_request *lreq = lwork->lreq;
2943
2944	if (!linger_registered(lreq)) {
2945		dout("%s lreq %p not registered\n", __func__, lreq);
2946		goto out;
2947	}
2948
2949	dout("%s lreq %p err %d\n", __func__, lreq, lwork->error.err);
2950	lreq->errcb(lreq->data, lreq->linger_id, lwork->error.err);
2951
2952out:
2953	lwork_free(lwork);
2954}
2955
2956static void queue_watch_error(struct ceph_osd_linger_request *lreq)
2957{
2958	struct linger_work *lwork;
2959
2960	lwork = lwork_alloc(lreq, do_watch_error);
2961	if (!lwork) {
2962		pr_err("failed to allocate error-lwork\n");
2963		return;
2964	}
2965
2966	lwork->error.err = lreq->last_error;
2967	lwork_queue(lwork);
2968}
2969
2970static void linger_reg_commit_complete(struct ceph_osd_linger_request *lreq,
2971				       int result)
2972{
2973	if (!completion_done(&lreq->reg_commit_wait)) {
2974		lreq->reg_commit_error = (result <= 0 ? result : 0);
2975		complete_all(&lreq->reg_commit_wait);
2976	}
2977}
2978
2979static void linger_commit_cb(struct ceph_osd_request *req)
2980{
2981	struct ceph_osd_linger_request *lreq = req->r_priv;
2982
2983	mutex_lock(&lreq->lock);
2984	if (req != lreq->reg_req) {
2985		dout("%s lreq %p linger_id %llu unknown req (%p != %p)\n",
2986		     __func__, lreq, lreq->linger_id, req, lreq->reg_req);
2987		goto out;
2988	}
2989
2990	dout("%s lreq %p linger_id %llu result %d\n", __func__, lreq,
2991	     lreq->linger_id, req->r_result);
2992	linger_reg_commit_complete(lreq, req->r_result);
2993	lreq->committed = true;
2994
2995	if (!lreq->is_watch) {
2996		struct ceph_osd_data *osd_data =
2997		    osd_req_op_data(req, 0, notify, response_data);
2998		void *p = page_address(osd_data->pages[0]);
2999
3000		WARN_ON(req->r_ops[0].op != CEPH_OSD_OP_NOTIFY ||
3001			osd_data->type != CEPH_OSD_DATA_TYPE_PAGES);
3002
3003		/* make note of the notify_id */
3004		if (req->r_ops[0].outdata_len >= sizeof(u64)) {
3005			lreq->notify_id = ceph_decode_64(&p);
3006			dout("lreq %p notify_id %llu\n", lreq,
3007			     lreq->notify_id);
3008		} else {
3009			dout("lreq %p no notify_id\n", lreq);
3010		}
3011	}
3012
3013out:
3014	mutex_unlock(&lreq->lock);
3015	linger_put(lreq);
3016}
3017
3018static int normalize_watch_error(int err)
3019{
3020	/*
3021	 * Translate ENOENT -> ENOTCONN so that a delete->disconnection
3022	 * notification and a failure to reconnect because we raced with
3023	 * the delete appear the same to the user.
3024	 */
3025	if (err == -ENOENT)
3026		err = -ENOTCONN;
3027
3028	return err;
3029}
3030
3031static void linger_reconnect_cb(struct ceph_osd_request *req)
3032{
3033	struct ceph_osd_linger_request *lreq = req->r_priv;
3034
3035	mutex_lock(&lreq->lock);
3036	if (req != lreq->reg_req) {
3037		dout("%s lreq %p linger_id %llu unknown req (%p != %p)\n",
3038		     __func__, lreq, lreq->linger_id, req, lreq->reg_req);
3039		goto out;
3040	}
3041
3042	dout("%s lreq %p linger_id %llu result %d last_error %d\n", __func__,
3043	     lreq, lreq->linger_id, req->r_result, lreq->last_error);
3044	if (req->r_result < 0) {
3045		if (!lreq->last_error) {
3046			lreq->last_error = normalize_watch_error(req->r_result);
3047			queue_watch_error(lreq);
3048		}
3049	}
3050
3051out:
3052	mutex_unlock(&lreq->lock);
3053	linger_put(lreq);
3054}
3055
3056static void send_linger(struct ceph_osd_linger_request *lreq)
3057{
3058	struct ceph_osd_client *osdc = lreq->osdc;
3059	struct ceph_osd_request *req;
3060	int ret;
3061
3062	verify_osdc_wrlocked(osdc);
3063	mutex_lock(&lreq->lock);
3064	dout("%s lreq %p linger_id %llu\n", __func__, lreq, lreq->linger_id);
3065
3066	if (lreq->reg_req) {
3067		if (lreq->reg_req->r_osd)
3068			cancel_linger_request(lreq->reg_req);
3069		ceph_osdc_put_request(lreq->reg_req);
3070	}
3071
3072	req = ceph_osdc_alloc_request(osdc, NULL, 1, true, GFP_NOIO);
3073	BUG_ON(!req);
3074
3075	target_copy(&req->r_t, &lreq->t);
3076	req->r_mtime = lreq->mtime;
3077
3078	if (lreq->is_watch && lreq->committed) {
3079		osd_req_op_watch_init(req, 0, CEPH_OSD_WATCH_OP_RECONNECT,
3080				      lreq->linger_id, ++lreq->register_gen);
3081		dout("lreq %p reconnect register_gen %u\n", lreq,
3082		     req->r_ops[0].watch.gen);
3083		req->r_callback = linger_reconnect_cb;
3084	} else {
3085		if (lreq->is_watch) {
3086			osd_req_op_watch_init(req, 0, CEPH_OSD_WATCH_OP_WATCH,
3087					      lreq->linger_id, 0);
3088		} else {
3089			lreq->notify_id = 0;
3090
3091			refcount_inc(&lreq->request_pl->refcnt);
3092			osd_req_op_notify_init(req, 0, lreq->linger_id,
3093					       lreq->request_pl);
3094			ceph_osd_data_pages_init(
3095			    osd_req_op_data(req, 0, notify, response_data),
3096			    lreq->notify_id_pages, PAGE_SIZE, 0, false, false);
3097		}
3098		dout("lreq %p register\n", lreq);
3099		req->r_callback = linger_commit_cb;
3100	}
3101
3102	ret = ceph_osdc_alloc_messages(req, GFP_NOIO);
3103	BUG_ON(ret);
3104
3105	req->r_priv = linger_get(lreq);
3106	req->r_linger = true;
3107	lreq->reg_req = req;
3108	mutex_unlock(&lreq->lock);
3109
3110	submit_request(req, true);
3111}
3112
3113static void linger_ping_cb(struct ceph_osd_request *req)
3114{
3115	struct ceph_osd_linger_request *lreq = req->r_priv;
3116
3117	mutex_lock(&lreq->lock);
3118	if (req != lreq->ping_req) {
3119		dout("%s lreq %p linger_id %llu unknown req (%p != %p)\n",
3120		     __func__, lreq, lreq->linger_id, req, lreq->ping_req);
3121		goto out;
3122	}
3123
3124	dout("%s lreq %p linger_id %llu result %d ping_sent %lu last_error %d\n",
3125	     __func__, lreq, lreq->linger_id, req->r_result, lreq->ping_sent,
3126	     lreq->last_error);
3127	if (lreq->register_gen == req->r_ops[0].watch.gen) {
3128		if (!req->r_result) {
3129			lreq->watch_valid_thru = lreq->ping_sent;
3130		} else if (!lreq->last_error) {
3131			lreq->last_error = normalize_watch_error(req->r_result);
3132			queue_watch_error(lreq);
3133		}
3134	} else {
3135		dout("lreq %p register_gen %u ignoring old pong %u\n", lreq,
3136		     lreq->register_gen, req->r_ops[0].watch.gen);
3137	}
3138
3139out:
3140	mutex_unlock(&lreq->lock);
3141	linger_put(lreq);
3142}
3143
3144static void send_linger_ping(struct ceph_osd_linger_request *lreq)
3145{
3146	struct ceph_osd_client *osdc = lreq->osdc;
3147	struct ceph_osd_request *req;
3148	int ret;
3149
3150	if (ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSERD)) {
3151		dout("%s PAUSERD\n", __func__);
3152		return;
3153	}
3154
3155	lreq->ping_sent = jiffies;
3156	dout("%s lreq %p linger_id %llu ping_sent %lu register_gen %u\n",
3157	     __func__, lreq, lreq->linger_id, lreq->ping_sent,
3158	     lreq->register_gen);
3159
3160	if (lreq->ping_req) {
3161		if (lreq->ping_req->r_osd)
3162			cancel_linger_request(lreq->ping_req);
3163		ceph_osdc_put_request(lreq->ping_req);
3164	}
3165
3166	req = ceph_osdc_alloc_request(osdc, NULL, 1, true, GFP_NOIO);
3167	BUG_ON(!req);
3168
3169	target_copy(&req->r_t, &lreq->t);
3170	osd_req_op_watch_init(req, 0, CEPH_OSD_WATCH_OP_PING, lreq->linger_id,
3171			      lreq->register_gen);
3172	req->r_callback = linger_ping_cb;
3173
3174	ret = ceph_osdc_alloc_messages(req, GFP_NOIO);
3175	BUG_ON(ret);
3176
3177	req->r_priv = linger_get(lreq);
3178	req->r_linger = true;
3179	lreq->ping_req = req;
3180
3181	ceph_osdc_get_request(req);
3182	account_request(req);
3183	req->r_tid = atomic64_inc_return(&osdc->last_tid);
3184	link_request(lreq->osd, req);
3185	send_request(req);
3186}
3187
3188static void linger_submit(struct ceph_osd_linger_request *lreq)
3189{
3190	struct ceph_osd_client *osdc = lreq->osdc;
3191	struct ceph_osd *osd;
3192
3193	down_write(&osdc->lock);
3194	linger_register(lreq);
3195
3196	calc_target(osdc, &lreq->t, false);
3197	osd = lookup_create_osd(osdc, lreq->t.osd, true);
3198	link_linger(osd, lreq);
3199
3200	send_linger(lreq);
3201	up_write(&osdc->lock);
3202}
3203
3204static void cancel_linger_map_check(struct ceph_osd_linger_request *lreq)
3205{
3206	struct ceph_osd_client *osdc = lreq->osdc;
3207	struct ceph_osd_linger_request *lookup_lreq;
3208
3209	verify_osdc_wrlocked(osdc);
3210
3211	lookup_lreq = lookup_linger_mc(&osdc->linger_map_checks,
3212				       lreq->linger_id);
3213	if (!lookup_lreq)
3214		return;
3215
3216	WARN_ON(lookup_lreq != lreq);
3217	erase_linger_mc(&osdc->linger_map_checks, lreq);
3218	linger_put(lreq);
3219}
3220
3221/*
3222 * @lreq has to be both registered and linked.
3223 */
3224static void __linger_cancel(struct ceph_osd_linger_request *lreq)
3225{
3226	if (lreq->ping_req && lreq->ping_req->r_osd)
3227		cancel_linger_request(lreq->ping_req);
3228	if (lreq->reg_req && lreq->reg_req->r_osd)
3229		cancel_linger_request(lreq->reg_req);
3230	cancel_linger_map_check(lreq);
3231	unlink_linger(lreq->osd, lreq);
3232	linger_unregister(lreq);
3233}
3234
3235static void linger_cancel(struct ceph_osd_linger_request *lreq)
3236{
3237	struct ceph_osd_client *osdc = lreq->osdc;
3238
3239	down_write(&osdc->lock);
3240	if (__linger_registered(lreq))
3241		__linger_cancel(lreq);
3242	up_write(&osdc->lock);
3243}
3244
3245static void send_linger_map_check(struct ceph_osd_linger_request *lreq);
3246
3247static void check_linger_pool_dne(struct ceph_osd_linger_request *lreq)
3248{
3249	struct ceph_osd_client *osdc = lreq->osdc;
3250	struct ceph_osdmap *map = osdc->osdmap;
3251
3252	verify_osdc_wrlocked(osdc);
3253	WARN_ON(!map->epoch);
3254
3255	if (lreq->register_gen) {
3256		lreq->map_dne_bound = map->epoch;
3257		dout("%s lreq %p linger_id %llu pool disappeared\n", __func__,
3258		     lreq, lreq->linger_id);
3259	} else {
3260		dout("%s lreq %p linger_id %llu map_dne_bound %u have %u\n",
3261		     __func__, lreq, lreq->linger_id, lreq->map_dne_bound,
3262		     map->epoch);
3263	}
3264
3265	if (lreq->map_dne_bound) {
3266		if (map->epoch >= lreq->map_dne_bound) {
3267			/* we had a new enough map */
3268			pr_info("linger_id %llu pool does not exist\n",
3269				lreq->linger_id);
3270			linger_reg_commit_complete(lreq, -ENOENT);
3271			__linger_cancel(lreq);
3272		}
3273	} else {
3274		send_linger_map_check(lreq);
3275	}
3276}
3277
3278static void linger_map_check_cb(struct ceph_mon_generic_request *greq)
3279{
3280	struct ceph_osd_client *osdc = &greq->monc->client->osdc;
3281	struct ceph_osd_linger_request *lreq;
3282	u64 linger_id = greq->private_data;
3283
3284	WARN_ON(greq->result || !greq->u.newest);
3285
3286	down_write(&osdc->lock);
3287	lreq = lookup_linger_mc(&osdc->linger_map_checks, linger_id);
3288	if (!lreq) {
3289		dout("%s linger_id %llu dne\n", __func__, linger_id);
3290		goto out_unlock;
3291	}
3292
3293	dout("%s lreq %p linger_id %llu map_dne_bound %u newest %llu\n",
3294	     __func__, lreq, lreq->linger_id, lreq->map_dne_bound,
3295	     greq->u.newest);
3296	if (!lreq->map_dne_bound)
3297		lreq->map_dne_bound = greq->u.newest;
3298	erase_linger_mc(&osdc->linger_map_checks, lreq);
3299	check_linger_pool_dne(lreq);
3300
3301	linger_put(lreq);
3302out_unlock:
3303	up_write(&osdc->lock);
3304}
3305
3306static void send_linger_map_check(struct ceph_osd_linger_request *lreq)
3307{
3308	struct ceph_osd_client *osdc = lreq->osdc;
3309	struct ceph_osd_linger_request *lookup_lreq;
3310	int ret;
3311
3312	verify_osdc_wrlocked(osdc);
3313
3314	lookup_lreq = lookup_linger_mc(&osdc->linger_map_checks,
3315				       lreq->linger_id);
3316	if (lookup_lreq) {
3317		WARN_ON(lookup_lreq != lreq);
3318		return;
3319	}
3320
3321	linger_get(lreq);
3322	insert_linger_mc(&osdc->linger_map_checks, lreq);
3323	ret = ceph_monc_get_version_async(&osdc->client->monc, "osdmap",
3324					  linger_map_check_cb, lreq->linger_id);
3325	WARN_ON(ret);
3326}
3327
3328static int linger_reg_commit_wait(struct ceph_osd_linger_request *lreq)
3329{
3330	int ret;
3331
3332	dout("%s lreq %p linger_id %llu\n", __func__, lreq, lreq->linger_id);
3333	ret = wait_for_completion_killable(&lreq->reg_commit_wait);
3334	return ret ?: lreq->reg_commit_error;
3335}
3336
3337static int linger_notify_finish_wait(struct ceph_osd_linger_request *lreq,
3338				     unsigned long timeout)
3339{
3340	long left;
3341
3342	dout("%s lreq %p linger_id %llu\n", __func__, lreq, lreq->linger_id);
3343	left = wait_for_completion_killable_timeout(&lreq->notify_finish_wait,
3344						ceph_timeout_jiffies(timeout));
3345	if (left <= 0)
3346		left = left ?: -ETIMEDOUT;
3347	else
3348		left = lreq->notify_finish_error; /* completed */
3349
3350	return left;
3351}
3352
3353/*
3354 * Timeout callback, called every N seconds.  When 1 or more OSD
3355 * requests has been active for more than N seconds, we send a keepalive
3356 * (tag + timestamp) to its OSD to ensure any communications channel
3357 * reset is detected.
3358 */
3359static void handle_timeout(struct work_struct *work)
3360{
3361	struct ceph_osd_client *osdc =
3362		container_of(work, struct ceph_osd_client, timeout_work.work);
3363	struct ceph_options *opts = osdc->client->options;
3364	unsigned long cutoff = jiffies - opts->osd_keepalive_timeout;
3365	unsigned long expiry_cutoff = jiffies - opts->osd_request_timeout;
3366	LIST_HEAD(slow_osds);
3367	struct rb_node *n, *p;
3368
3369	dout("%s osdc %p\n", __func__, osdc);
3370	down_write(&osdc->lock);
3371
3372	/*
3373	 * ping osds that are a bit slow.  this ensures that if there
3374	 * is a break in the TCP connection we will notice, and reopen
3375	 * a connection with that osd (from the fault callback).
3376	 */
3377	for (n = rb_first(&osdc->osds); n; n = rb_next(n)) {
3378		struct ceph_osd *osd = rb_entry(n, struct ceph_osd, o_node);
3379		bool found = false;
3380
3381		for (p = rb_first(&osd->o_requests); p; ) {
3382			struct ceph_osd_request *req =
3383			    rb_entry(p, struct ceph_osd_request, r_node);
3384
3385			p = rb_next(p); /* abort_request() */
3386
3387			if (time_before(req->r_stamp, cutoff)) {
3388				dout(" req %p tid %llu on osd%d is laggy\n",
3389				     req, req->r_tid, osd->o_osd);
3390				found = true;
3391			}
3392			if (opts->osd_request_timeout &&
3393			    time_before(req->r_start_stamp, expiry_cutoff)) {
3394				pr_err_ratelimited("tid %llu on osd%d timeout\n",
3395				       req->r_tid, osd->o_osd);
3396				abort_request(req, -ETIMEDOUT);
3397			}
3398		}
3399		for (p = rb_first(&osd->o_linger_requests); p; p = rb_next(p)) {
3400			struct ceph_osd_linger_request *lreq =
3401			    rb_entry(p, struct ceph_osd_linger_request, node);
3402
3403			dout(" lreq %p linger_id %llu is served by osd%d\n",
3404			     lreq, lreq->linger_id, osd->o_osd);
3405			found = true;
3406
3407			mutex_lock(&lreq->lock);
3408			if (lreq->is_watch && lreq->committed && !lreq->last_error)
3409				send_linger_ping(lreq);
3410			mutex_unlock(&lreq->lock);
3411		}
3412
3413		if (found)
3414			list_move_tail(&osd->o_keepalive_item, &slow_osds);
3415	}
3416
3417	if (opts->osd_request_timeout) {
3418		for (p = rb_first(&osdc->homeless_osd.o_requests); p; ) {
3419			struct ceph_osd_request *req =
3420			    rb_entry(p, struct ceph_osd_request, r_node);
3421
3422			p = rb_next(p); /* abort_request() */
3423
3424			if (time_before(req->r_start_stamp, expiry_cutoff)) {
3425				pr_err_ratelimited("tid %llu on osd%d timeout\n",
3426				       req->r_tid, osdc->homeless_osd.o_osd);
3427				abort_request(req, -ETIMEDOUT);
3428			}
3429		}
3430	}
3431
3432	if (atomic_read(&osdc->num_homeless) || !list_empty(&slow_osds))
3433		maybe_request_map(osdc);
3434
3435	while (!list_empty(&slow_osds)) {
3436		struct ceph_osd *osd = list_first_entry(&slow_osds,
3437							struct ceph_osd,
3438							o_keepalive_item);
3439		list_del_init(&osd->o_keepalive_item);
3440		ceph_con_keepalive(&osd->o_con);
3441	}
3442
3443	up_write(&osdc->lock);
3444	schedule_delayed_work(&osdc->timeout_work,
3445			      osdc->client->options->osd_keepalive_timeout);
3446}
3447
3448static void handle_osds_timeout(struct work_struct *work)
3449{
3450	struct ceph_osd_client *osdc =
3451		container_of(work, struct ceph_osd_client,
3452			     osds_timeout_work.work);
3453	unsigned long delay = osdc->client->options->osd_idle_ttl / 4;
3454	struct ceph_osd *osd, *nosd;
3455
3456	dout("%s osdc %p\n", __func__, osdc);
3457	down_write(&osdc->lock);
3458	list_for_each_entry_safe(osd, nosd, &osdc->osd_lru, o_osd_lru) {
3459		if (time_before(jiffies, osd->lru_ttl))
3460			break;
3461
3462		WARN_ON(!RB_EMPTY_ROOT(&osd->o_requests));
3463		WARN_ON(!RB_EMPTY_ROOT(&osd->o_linger_requests));
3464		close_osd(osd);
3465	}
3466
3467	up_write(&osdc->lock);
3468	schedule_delayed_work(&osdc->osds_timeout_work,
3469			      round_jiffies_relative(delay));
3470}
3471
3472static int ceph_oloc_decode(void **p, void *end,
3473			    struct ceph_object_locator *oloc)
3474{
3475	u8 struct_v, struct_cv;
3476	u32 len;
3477	void *struct_end;
3478	int ret = 0;
3479
3480	ceph_decode_need(p, end, 1 + 1 + 4, e_inval);
3481	struct_v = ceph_decode_8(p);
3482	struct_cv = ceph_decode_8(p);
3483	if (struct_v < 3) {
3484		pr_warn("got v %d < 3 cv %d of ceph_object_locator\n",
3485			struct_v, struct_cv);
3486		goto e_inval;
3487	}
3488	if (struct_cv > 6) {
3489		pr_warn("got v %d cv %d > 6 of ceph_object_locator\n",
3490			struct_v, struct_cv);
3491		goto e_inval;
3492	}
3493	len = ceph_decode_32(p);
3494	ceph_decode_need(p, end, len, e_inval);
3495	struct_end = *p + len;
3496
3497	oloc->pool = ceph_decode_64(p);
3498	*p += 4; /* skip preferred */
3499
3500	len = ceph_decode_32(p);
3501	if (len > 0) {
3502		pr_warn("ceph_object_locator::key is set\n");
3503		goto e_inval;
3504	}
3505
3506	if (struct_v >= 5) {
3507		bool changed = false;
3508
3509		len = ceph_decode_32(p);
3510		if (len > 0) {
3511			ceph_decode_need(p, end, len, e_inval);
3512			if (!oloc->pool_ns ||
3513			    ceph_compare_string(oloc->pool_ns, *p, len))
3514				changed = true;
3515			*p += len;
3516		} else {
3517			if (oloc->pool_ns)
3518				changed = true;
3519		}
3520		if (changed) {
3521			/* redirect changes namespace */
3522			pr_warn("ceph_object_locator::nspace is changed\n");
3523			goto e_inval;
3524		}
3525	}
3526
3527	if (struct_v >= 6) {
3528		s64 hash = ceph_decode_64(p);
3529		if (hash != -1) {
3530			pr_warn("ceph_object_locator::hash is set\n");
3531			goto e_inval;
3532		}
3533	}
3534
3535	/* skip the rest */
3536	*p = struct_end;
3537out:
3538	return ret;
3539
3540e_inval:
3541	ret = -EINVAL;
3542	goto out;
3543}
3544
3545static int ceph_redirect_decode(void **p, void *end,
3546				struct ceph_request_redirect *redir)
3547{
3548	u8 struct_v, struct_cv;
3549	u32 len;
3550	void *struct_end;
3551	int ret;
3552
3553	ceph_decode_need(p, end, 1 + 1 + 4, e_inval);
3554	struct_v = ceph_decode_8(p);
3555	struct_cv = ceph_decode_8(p);
3556	if (struct_cv > 1) {
3557		pr_warn("got v %d cv %d > 1 of ceph_request_redirect\n",
3558			struct_v, struct_cv);
3559		goto e_inval;
3560	}
3561	len = ceph_decode_32(p);
3562	ceph_decode_need(p, end, len, e_inval);
3563	struct_end = *p + len;
3564
3565	ret = ceph_oloc_decode(p, end, &redir->oloc);
3566	if (ret)
3567		goto out;
3568
3569	len = ceph_decode_32(p);
3570	if (len > 0) {
3571		pr_warn("ceph_request_redirect::object_name is set\n");
3572		goto e_inval;
3573	}
3574
3575	/* skip the rest */
3576	*p = struct_end;
3577out:
3578	return ret;
3579
3580e_inval:
3581	ret = -EINVAL;
3582	goto out;
3583}
3584
3585struct MOSDOpReply {
3586	struct ceph_pg pgid;
3587	u64 flags;
3588	int result;
3589	u32 epoch;
3590	int num_ops;
3591	u32 outdata_len[CEPH_OSD_MAX_OPS];
3592	s32 rval[CEPH_OSD_MAX_OPS];
3593	int retry_attempt;
3594	struct ceph_eversion replay_version;
3595	u64 user_version;
3596	struct ceph_request_redirect redirect;
3597};
3598
3599static int decode_MOSDOpReply(const struct ceph_msg *msg, struct MOSDOpReply *m)
3600{
3601	void *p = msg->front.iov_base;
3602	void *const end = p + msg->front.iov_len;
3603	u16 version = le16_to_cpu(msg->hdr.version);
3604	struct ceph_eversion bad_replay_version;
3605	u8 decode_redir;
3606	u32 len;
3607	int ret;
3608	int i;
3609
3610	ceph_decode_32_safe(&p, end, len, e_inval);
3611	ceph_decode_need(&p, end, len, e_inval);
3612	p += len; /* skip oid */
3613
3614	ret = ceph_decode_pgid(&p, end, &m->pgid);
3615	if (ret)
3616		return ret;
3617
3618	ceph_decode_64_safe(&p, end, m->flags, e_inval);
3619	ceph_decode_32_safe(&p, end, m->result, e_inval);
3620	ceph_decode_need(&p, end, sizeof(bad_replay_version), e_inval);
3621	memcpy(&bad_replay_version, p, sizeof(bad_replay_version));
3622	p += sizeof(bad_replay_version);
3623	ceph_decode_32_safe(&p, end, m->epoch, e_inval);
3624
3625	ceph_decode_32_safe(&p, end, m->num_ops, e_inval);
3626	if (m->num_ops > ARRAY_SIZE(m->outdata_len))
3627		goto e_inval;
3628
3629	ceph_decode_need(&p, end, m->num_ops * sizeof(struct ceph_osd_op),
3630			 e_inval);
3631	for (i = 0; i < m->num_ops; i++) {
3632		struct ceph_osd_op *op = p;
3633
3634		m->outdata_len[i] = le32_to_cpu(op->payload_len);
3635		p += sizeof(*op);
3636	}
3637
3638	ceph_decode_32_safe(&p, end, m->retry_attempt, e_inval);
3639	for (i = 0; i < m->num_ops; i++)
3640		ceph_decode_32_safe(&p, end, m->rval[i], e_inval);
3641
3642	if (version >= 5) {
3643		ceph_decode_need(&p, end, sizeof(m->replay_version), e_inval);
3644		memcpy(&m->replay_version, p, sizeof(m->replay_version));
3645		p += sizeof(m->replay_version);
3646		ceph_decode_64_safe(&p, end, m->user_version, e_inval);
3647	} else {
3648		m->replay_version = bad_replay_version; /* struct */
3649		m->user_version = le64_to_cpu(m->replay_version.version);
3650	}
3651
3652	if (version >= 6) {
3653		if (version >= 7)
3654			ceph_decode_8_safe(&p, end, decode_redir, e_inval);
3655		else
3656			decode_redir = 1;
3657	} else {
3658		decode_redir = 0;
3659	}
3660
3661	if (decode_redir) {
3662		ret = ceph_redirect_decode(&p, end, &m->redirect);
3663		if (ret)
3664			return ret;
3665	} else {
3666		ceph_oloc_init(&m->redirect.oloc);
3667	}
3668
3669	return 0;
3670
3671e_inval:
3672	return -EINVAL;
3673}
3674
3675/*
3676 * Handle MOSDOpReply.  Set ->r_result and call the callback if it is
3677 * specified.
3678 */
3679static void handle_reply(struct ceph_osd *osd, struct ceph_msg *msg)
3680{
3681	struct ceph_osd_client *osdc = osd->o_osdc;
3682	struct ceph_osd_request *req;
3683	struct MOSDOpReply m;
3684	u64 tid = le64_to_cpu(msg->hdr.tid);
3685	u32 data_len = 0;
3686	int ret;
3687	int i;
3688
3689	dout("%s msg %p tid %llu\n", __func__, msg, tid);
3690
3691	down_read(&osdc->lock);
3692	if (!osd_registered(osd)) {
3693		dout("%s osd%d unknown\n", __func__, osd->o_osd);
3694		goto out_unlock_osdc;
3695	}
3696	WARN_ON(osd->o_osd != le64_to_cpu(msg->hdr.src.num));
3697
3698	mutex_lock(&osd->lock);
3699	req = lookup_request(&osd->o_requests, tid);
3700	if (!req) {
3701		dout("%s osd%d tid %llu unknown\n", __func__, osd->o_osd, tid);
3702		goto out_unlock_session;
3703	}
3704
3705	m.redirect.oloc.pool_ns = req->r_t.target_oloc.pool_ns;
3706	ret = decode_MOSDOpReply(msg, &m);
3707	m.redirect.oloc.pool_ns = NULL;
3708	if (ret) {
3709		pr_err("failed to decode MOSDOpReply for tid %llu: %d\n",
3710		       req->r_tid, ret);
3711		ceph_msg_dump(msg);
3712		goto fail_request;
3713	}
3714	dout("%s req %p tid %llu flags 0x%llx pgid %llu.%x epoch %u attempt %d v %u'%llu uv %llu\n",
3715	     __func__, req, req->r_tid, m.flags, m.pgid.pool, m.pgid.seed,
3716	     m.epoch, m.retry_attempt, le32_to_cpu(m.replay_version.epoch),
3717	     le64_to_cpu(m.replay_version.version), m.user_version);
3718
3719	if (m.retry_attempt >= 0) {
3720		if (m.retry_attempt != req->r_attempts - 1) {
3721			dout("req %p tid %llu retry_attempt %d != %d, ignoring\n",
3722			     req, req->r_tid, m.retry_attempt,
3723			     req->r_attempts - 1);
3724			goto out_unlock_session;
3725		}
3726	} else {
3727		WARN_ON(1); /* MOSDOpReply v4 is assumed */
3728	}
3729
3730	if (!ceph_oloc_empty(&m.redirect.oloc)) {
3731		dout("req %p tid %llu redirect pool %lld\n", req, req->r_tid,
3732		     m.redirect.oloc.pool);
3733		unlink_request(osd, req);
3734		mutex_unlock(&osd->lock);
3735
3736		/*
3737		 * Not ceph_oloc_copy() - changing pool_ns is not
3738		 * supported.
3739		 */
3740		req->r_t.target_oloc.pool = m.redirect.oloc.pool;
3741		req->r_flags |= CEPH_OSD_FLAG_REDIRECTED |
3742				CEPH_OSD_FLAG_IGNORE_OVERLAY |
3743				CEPH_OSD_FLAG_IGNORE_CACHE;
3744		req->r_tid = 0;
3745		__submit_request(req, false);
3746		goto out_unlock_osdc;
3747	}
3748
3749	if (m.result == -EAGAIN) {
3750		dout("req %p tid %llu EAGAIN\n", req, req->r_tid);
3751		unlink_request(osd, req);
3752		mutex_unlock(&osd->lock);
3753
3754		/*
3755		 * The object is missing on the replica or not (yet)
3756		 * readable.  Clear pgid to force a resend to the primary
3757		 * via legacy_change.
3758		 */
3759		req->r_t.pgid.pool = 0;
3760		req->r_t.pgid.seed = 0;
3761		WARN_ON(!req->r_t.used_replica);
3762		req->r_flags &= ~(CEPH_OSD_FLAG_BALANCE_READS |
3763				  CEPH_OSD_FLAG_LOCALIZE_READS);
3764		req->r_tid = 0;
3765		__submit_request(req, false);
3766		goto out_unlock_osdc;
3767	}
3768
3769	if (m.num_ops != req->r_num_ops) {
3770		pr_err("num_ops %d != %d for tid %llu\n", m.num_ops,
3771		       req->r_num_ops, req->r_tid);
3772		goto fail_request;
3773	}
3774	for (i = 0; i < req->r_num_ops; i++) {
3775		dout(" req %p tid %llu op %d rval %d len %u\n", req,
3776		     req->r_tid, i, m.rval[i], m.outdata_len[i]);
3777		req->r_ops[i].rval = m.rval[i];
3778		req->r_ops[i].outdata_len = m.outdata_len[i];
3779		data_len += m.outdata_len[i];
3780	}
3781	if (data_len != le32_to_cpu(msg->hdr.data_len)) {
3782		pr_err("sum of lens %u != %u for tid %llu\n", data_len,
3783		       le32_to_cpu(msg->hdr.data_len), req->r_tid);
3784		goto fail_request;
3785	}
3786	dout("%s req %p tid %llu result %d data_len %u\n", __func__,
3787	     req, req->r_tid, m.result, data_len);
3788
3789	/*
3790	 * Since we only ever request ONDISK, we should only ever get
3791	 * one (type of) reply back.
3792	 */
3793	WARN_ON(!(m.flags & CEPH_OSD_FLAG_ONDISK));
3794	req->r_result = m.result ?: data_len;
3795	finish_request(req);
3796	mutex_unlock(&osd->lock);
3797	up_read(&osdc->lock);
3798
3799	__complete_request(req);
3800	return;
3801
3802fail_request:
3803	complete_request(req, -EIO);
3804out_unlock_session:
3805	mutex_unlock(&osd->lock);
3806out_unlock_osdc:
3807	up_read(&osdc->lock);
3808}
3809
3810static void set_pool_was_full(struct ceph_osd_client *osdc)
3811{
3812	struct rb_node *n;
3813
3814	for (n = rb_first(&osdc->osdmap->pg_pools); n; n = rb_next(n)) {
3815		struct ceph_pg_pool_info *pi =
3816		    rb_entry(n, struct ceph_pg_pool_info, node);
3817
3818		pi->was_full = __pool_full(pi);
3819	}
3820}
3821
3822static bool pool_cleared_full(struct ceph_osd_client *osdc, s64 pool_id)
3823{
3824	struct ceph_pg_pool_info *pi;
3825
3826	pi = ceph_pg_pool_by_id(osdc->osdmap, pool_id);
3827	if (!pi)
3828		return false;
3829
3830	return pi->was_full && !__pool_full(pi);
3831}
3832
3833static enum calc_target_result
3834recalc_linger_target(struct ceph_osd_linger_request *lreq)
3835{
3836	struct ceph_osd_client *osdc = lreq->osdc;
3837	enum calc_target_result ct_res;
3838
3839	ct_res = calc_target(osdc, &lreq->t, true);
3840	if (ct_res == CALC_TARGET_NEED_RESEND) {
3841		struct ceph_osd *osd;
3842
3843		osd = lookup_create_osd(osdc, lreq->t.osd, true);
3844		if (osd != lreq->osd) {
3845			unlink_linger(lreq->osd, lreq);
3846			link_linger(osd, lreq);
3847		}
3848	}
3849
3850	return ct_res;
3851}
3852
3853/*
3854 * Requeue requests whose mapping to an OSD has changed.
3855 */
3856static void scan_requests(struct ceph_osd *osd,
3857			  bool force_resend,
3858			  bool cleared_full,
3859			  bool check_pool_cleared_full,
3860			  struct rb_root *need_resend,
3861			  struct list_head *need_resend_linger)
3862{
3863	struct ceph_osd_client *osdc = osd->o_osdc;
3864	struct rb_node *n;
3865	bool force_resend_writes;
3866
3867	for (n = rb_first(&osd->o_linger_requests); n; ) {
3868		struct ceph_osd_linger_request *lreq =
3869		    rb_entry(n, struct ceph_osd_linger_request, node);
3870		enum calc_target_result ct_res;
3871
3872		n = rb_next(n); /* recalc_linger_target() */
3873
3874		dout("%s lreq %p linger_id %llu\n", __func__, lreq,
3875		     lreq->linger_id);
3876		ct_res = recalc_linger_target(lreq);
3877		switch (ct_res) {
3878		case CALC_TARGET_NO_ACTION:
3879			force_resend_writes = cleared_full ||
3880			    (check_pool_cleared_full &&
3881			     pool_cleared_full(osdc, lreq->t.base_oloc.pool));
3882			if (!force_resend && !force_resend_writes)
3883				break;
3884
3885			fallthrough;
3886		case CALC_TARGET_NEED_RESEND:
3887			cancel_linger_map_check(lreq);
3888			/*
3889			 * scan_requests() for the previous epoch(s)
3890			 * may have already added it to the list, since
3891			 * it's not unlinked here.
3892			 */
3893			if (list_empty(&lreq->scan_item))
3894				list_add_tail(&lreq->scan_item, need_resend_linger);
3895			break;
3896		case CALC_TARGET_POOL_DNE:
3897			list_del_init(&lreq->scan_item);
3898			check_linger_pool_dne(lreq);
3899			break;
3900		}
3901	}
3902
3903	for (n = rb_first(&osd->o_requests); n; ) {
3904		struct ceph_osd_request *req =
3905		    rb_entry(n, struct ceph_osd_request, r_node);
3906		enum calc_target_result ct_res;
3907
3908		n = rb_next(n); /* unlink_request(), check_pool_dne() */
3909
3910		dout("%s req %p tid %llu\n", __func__, req, req->r_tid);
3911		ct_res = calc_target(osdc, &req->r_t, false);
3912		switch (ct_res) {
3913		case CALC_TARGET_NO_ACTION:
3914			force_resend_writes = cleared_full ||
3915			    (check_pool_cleared_full &&
3916			     pool_cleared_full(osdc, req->r_t.base_oloc.pool));
3917			if (!force_resend &&
3918			    (!(req->r_flags & CEPH_OSD_FLAG_WRITE) ||
3919			     !force_resend_writes))
3920				break;
3921
3922			fallthrough;
3923		case CALC_TARGET_NEED_RESEND:
3924			cancel_map_check(req);
3925			unlink_request(osd, req);
3926			insert_request(need_resend, req);
3927			break;
3928		case CALC_TARGET_POOL_DNE:
3929			check_pool_dne(req);
3930			break;
3931		}
3932	}
3933}
3934
3935static int handle_one_map(struct ceph_osd_client *osdc,
3936			  void *p, void *end, bool incremental,
3937			  struct rb_root *need_resend,
3938			  struct list_head *need_resend_linger)
3939{
3940	struct ceph_osdmap *newmap;
3941	struct rb_node *n;
3942	bool skipped_map = false;
3943	bool was_full;
3944
3945	was_full = ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL);
3946	set_pool_was_full(osdc);
3947
3948	if (incremental)
3949		newmap = osdmap_apply_incremental(&p, end, osdc->osdmap);
3950	else
3951		newmap = ceph_osdmap_decode(&p, end);
3952	if (IS_ERR(newmap))
3953		return PTR_ERR(newmap);
3954
3955	if (newmap != osdc->osdmap) {
3956		/*
3957		 * Preserve ->was_full before destroying the old map.
3958		 * For pools that weren't in the old map, ->was_full
3959		 * should be false.
3960		 */
3961		for (n = rb_first(&newmap->pg_pools); n; n = rb_next(n)) {
3962			struct ceph_pg_pool_info *pi =
3963			    rb_entry(n, struct ceph_pg_pool_info, node);
3964			struct ceph_pg_pool_info *old_pi;
3965
3966			old_pi = ceph_pg_pool_by_id(osdc->osdmap, pi->id);
3967			if (old_pi)
3968				pi->was_full = old_pi->was_full;
3969			else
3970				WARN_ON(pi->was_full);
3971		}
3972
3973		if (osdc->osdmap->epoch &&
3974		    osdc->osdmap->epoch + 1 < newmap->epoch) {
3975			WARN_ON(incremental);
3976			skipped_map = true;
3977		}
3978
3979		ceph_osdmap_destroy(osdc->osdmap);
3980		osdc->osdmap = newmap;
3981	}
3982
3983	was_full &= !ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL);
3984	scan_requests(&osdc->homeless_osd, skipped_map, was_full, true,
3985		      need_resend, need_resend_linger);
3986
3987	for (n = rb_first(&osdc->osds); n; ) {
3988		struct ceph_osd *osd = rb_entry(n, struct ceph_osd, o_node);
3989
3990		n = rb_next(n); /* close_osd() */
3991
3992		scan_requests(osd, skipped_map, was_full, true, need_resend,
3993			      need_resend_linger);
3994		if (!ceph_osd_is_up(osdc->osdmap, osd->o_osd) ||
3995		    memcmp(&osd->o_con.peer_addr,
3996			   ceph_osd_addr(osdc->osdmap, osd->o_osd),
3997			   sizeof(struct ceph_entity_addr)))
3998			close_osd(osd);
3999	}
4000
4001	return 0;
4002}
4003
4004static void kick_requests(struct ceph_osd_client *osdc,
4005			  struct rb_root *need_resend,
4006			  struct list_head *need_resend_linger)
4007{
4008	struct ceph_osd_linger_request *lreq, *nlreq;
4009	enum calc_target_result ct_res;
4010	struct rb_node *n;
4011
4012	/* make sure need_resend targets reflect latest map */
4013	for (n = rb_first(need_resend); n; ) {
4014		struct ceph_osd_request *req =
4015		    rb_entry(n, struct ceph_osd_request, r_node);
4016
4017		n = rb_next(n);
4018
4019		if (req->r_t.epoch < osdc->osdmap->epoch) {
4020			ct_res = calc_target(osdc, &req->r_t, false);
4021			if (ct_res == CALC_TARGET_POOL_DNE) {
4022				erase_request(need_resend, req);
4023				check_pool_dne(req);
4024			}
4025		}
4026	}
4027
4028	for (n = rb_first(need_resend); n; ) {
4029		struct ceph_osd_request *req =
4030		    rb_entry(n, struct ceph_osd_request, r_node);
4031		struct ceph_osd *osd;
4032
4033		n = rb_next(n);
4034		erase_request(need_resend, req); /* before link_request() */
4035
4036		osd = lookup_create_osd(osdc, req->r_t.osd, true);
4037		link_request(osd, req);
4038		if (!req->r_linger) {
4039			if (!osd_homeless(osd) && !req->r_t.paused)
4040				send_request(req);
4041		} else {
4042			cancel_linger_request(req);
4043		}
4044	}
4045
4046	list_for_each_entry_safe(lreq, nlreq, need_resend_linger, scan_item) {
4047		if (!osd_homeless(lreq->osd))
4048			send_linger(lreq);
4049
4050		list_del_init(&lreq->scan_item);
4051	}
4052}
4053
4054/*
4055 * Process updated osd map.
4056 *
4057 * The message contains any number of incremental and full maps, normally
4058 * indicating some sort of topology change in the cluster.  Kick requests
4059 * off to different OSDs as needed.
4060 */
4061void ceph_osdc_handle_map(struct ceph_osd_client *osdc, struct ceph_msg *msg)
4062{
4063	void *p = msg->front.iov_base;
4064	void *const end = p + msg->front.iov_len;
4065	u32 nr_maps, maplen;
4066	u32 epoch;
4067	struct ceph_fsid fsid;
4068	struct rb_root need_resend = RB_ROOT;
4069	LIST_HEAD(need_resend_linger);
4070	bool handled_incremental = false;
4071	bool was_pauserd, was_pausewr;
4072	bool pauserd, pausewr;
4073	int err;
4074
4075	dout("%s have %u\n", __func__, osdc->osdmap->epoch);
4076	down_write(&osdc->lock);
4077
4078	/* verify fsid */
4079	ceph_decode_need(&p, end, sizeof(fsid), bad);
4080	ceph_decode_copy(&p, &fsid, sizeof(fsid));
4081	if (ceph_check_fsid(osdc->client, &fsid) < 0)
4082		goto bad;
4083
4084	was_pauserd = ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSERD);
4085	was_pausewr = ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSEWR) ||
4086		      ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL) ||
4087		      have_pool_full(osdc);
4088
4089	/* incremental maps */
4090	ceph_decode_32_safe(&p, end, nr_maps, bad);
4091	dout(" %d inc maps\n", nr_maps);
4092	while (nr_maps > 0) {
4093		ceph_decode_need(&p, end, 2*sizeof(u32), bad);
4094		epoch = ceph_decode_32(&p);
4095		maplen = ceph_decode_32(&p);
4096		ceph_decode_need(&p, end, maplen, bad);
4097		if (osdc->osdmap->epoch &&
4098		    osdc->osdmap->epoch + 1 == epoch) {
4099			dout("applying incremental map %u len %d\n",
4100			     epoch, maplen);
4101			err = handle_one_map(osdc, p, p + maplen, true,
4102					     &need_resend, &need_resend_linger);
4103			if (err)
4104				goto bad;
4105			handled_incremental = true;
4106		} else {
4107			dout("ignoring incremental map %u len %d\n",
4108			     epoch, maplen);
4109		}
4110		p += maplen;
4111		nr_maps--;
4112	}
4113	if (handled_incremental)
4114		goto done;
4115
4116	/* full maps */
4117	ceph_decode_32_safe(&p, end, nr_maps, bad);
4118	dout(" %d full maps\n", nr_maps);
4119	while (nr_maps) {
4120		ceph_decode_need(&p, end, 2*sizeof(u32), bad);
4121		epoch = ceph_decode_32(&p);
4122		maplen = ceph_decode_32(&p);
4123		ceph_decode_need(&p, end, maplen, bad);
4124		if (nr_maps > 1) {
4125			dout("skipping non-latest full map %u len %d\n",
4126			     epoch, maplen);
4127		} else if (osdc->osdmap->epoch >= epoch) {
4128			dout("skipping full map %u len %d, "
4129			     "older than our %u\n", epoch, maplen,
4130			     osdc->osdmap->epoch);
4131		} else {
4132			dout("taking full map %u len %d\n", epoch, maplen);
4133			err = handle_one_map(osdc, p, p + maplen, false,
4134					     &need_resend, &need_resend_linger);
4135			if (err)
4136				goto bad;
4137		}
4138		p += maplen;
4139		nr_maps--;
4140	}
4141
4142done:
4143	/*
4144	 * subscribe to subsequent osdmap updates if full to ensure
4145	 * we find out when we are no longer full and stop returning
4146	 * ENOSPC.
4147	 */
4148	pauserd = ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSERD);
4149	pausewr = ceph_osdmap_flag(osdc, CEPH_OSDMAP_PAUSEWR) ||
4150		  ceph_osdmap_flag(osdc, CEPH_OSDMAP_FULL) ||
4151		  have_pool_full(osdc);
4152	if (was_pauserd || was_pausewr || pauserd || pausewr ||
4153	    osdc->osdmap->epoch < osdc->epoch_barrier)
4154		maybe_request_map(osdc);
4155
4156	kick_requests(osdc, &need_resend, &need_resend_linger);
4157
4158	ceph_osdc_abort_on_full(osdc);
4159	ceph_monc_got_map(&osdc->client->monc, CEPH_SUB_OSDMAP,
4160			  osdc->osdmap->epoch);
4161	up_write(&osdc->lock);
4162	wake_up_all(&osdc->client->auth_wq);
4163	return;
4164
4165bad:
4166	pr_err("osdc handle_map corrupt msg\n");
4167	ceph_msg_dump(msg);
4168	up_write(&osdc->lock);
4169}
4170
4171/*
4172 * Resubmit requests pending on the given osd.
4173 */
4174static void kick_osd_requests(struct ceph_osd *osd)
4175{
4176	struct rb_node *n;
4177
4178	clear_backoffs(osd);
4179
4180	for (n = rb_first(&osd->o_requests); n; ) {
4181		struct ceph_osd_request *req =
4182		    rb_entry(n, struct ceph_osd_request, r_node);
4183
4184		n = rb_next(n); /* cancel_linger_request() */
4185
4186		if (!req->r_linger) {
4187			if (!req->r_t.paused)
4188				send_request(req);
4189		} else {
4190			cancel_linger_request(req);
4191		}
4192	}
4193	for (n = rb_first(&osd->o_linger_requests); n; n = rb_next(n)) {
4194		struct ceph_osd_linger_request *lreq =
4195		    rb_entry(n, struct ceph_osd_linger_request, node);
4196
4197		send_linger(lreq);
4198	}
4199}
4200
4201/*
4202 * If the osd connection drops, we need to resubmit all requests.
4203 */
4204static void osd_fault(struct ceph_connection *con)
4205{
4206	struct ceph_osd *osd = con->private;
4207	struct ceph_osd_client *osdc = osd->o_osdc;
4208
4209	dout("%s osd %p osd%d\n", __func__, osd, osd->o_osd);
4210
4211	down_write(&osdc->lock);
4212	if (!osd_registered(osd)) {
4213		dout("%s osd%d unknown\n", __func__, osd->o_osd);
4214		goto out_unlock;
4215	}
4216
4217	if (!reopen_osd(osd))
4218		kick_osd_requests(osd);
4219	maybe_request_map(osdc);
4220
4221out_unlock:
4222	up_write(&osdc->lock);
4223}
4224
4225struct MOSDBackoff {
4226	struct ceph_spg spgid;
4227	u32 map_epoch;
4228	u8 op;
4229	u64 id;
4230	struct ceph_hobject_id *begin;
4231	struct ceph_hobject_id *end;
4232};
4233
4234static int decode_MOSDBackoff(const struct ceph_msg *msg, struct MOSDBackoff *m)
4235{
4236	void *p = msg->front.iov_base;
4237	void *const end = p + msg->front.iov_len;
4238	u8 struct_v;
4239	u32 struct_len;
4240	int ret;
4241
4242	ret = ceph_start_decoding(&p, end, 1, "spg_t", &struct_v, &struct_len);
4243	if (ret)
4244		return ret;
4245
4246	ret = ceph_decode_pgid(&p, end, &m->spgid.pgid);
4247	if (ret)
4248		return ret;
4249
4250	ceph_decode_8_safe(&p, end, m->spgid.shard, e_inval);
4251	ceph_decode_32_safe(&p, end, m->map_epoch, e_inval);
4252	ceph_decode_8_safe(&p, end, m->op, e_inval);
4253	ceph_decode_64_safe(&p, end, m->id, e_inval);
4254
4255	m->begin = kzalloc(sizeof(*m->begin), GFP_NOIO);
4256	if (!m->begin)
4257		return -ENOMEM;
4258
4259	ret = decode_hoid(&p, end, m->begin);
4260	if (ret) {
4261		free_hoid(m->begin);
4262		return ret;
4263	}
4264
4265	m->end = kzalloc(sizeof(*m->end), GFP_NOIO);
4266	if (!m->end) {
4267		free_hoid(m->begin);
4268		return -ENOMEM;
4269	}
4270
4271	ret = decode_hoid(&p, end, m->end);
4272	if (ret) {
4273		free_hoid(m->begin);
4274		free_hoid(m->end);
4275		return ret;
4276	}
4277
4278	return 0;
4279
4280e_inval:
4281	return -EINVAL;
4282}
4283
4284static struct ceph_msg *create_backoff_message(
4285				const struct ceph_osd_backoff *backoff,
4286				u32 map_epoch)
4287{
4288	struct ceph_msg *msg;
4289	void *p, *end;
4290	int msg_size;
4291
4292	msg_size = CEPH_ENCODING_START_BLK_LEN +
4293			CEPH_PGID_ENCODING_LEN + 1; /* spgid */
4294	msg_size += 4 + 1 + 8; /* map_epoch, op, id */
4295	msg_size += CEPH_ENCODING_START_BLK_LEN +
4296			hoid_encoding_size(backoff->begin);
4297	msg_size += CEPH_ENCODING_START_BLK_LEN +
4298			hoid_encoding_size(backoff->end);
4299
4300	msg = ceph_msg_new(CEPH_MSG_OSD_BACKOFF, msg_size, GFP_NOIO, true);
4301	if (!msg)
4302		return NULL;
4303
4304	p = msg->front.iov_base;
4305	end = p + msg->front_alloc_len;
4306
4307	encode_spgid(&p, &backoff->spgid);
4308	ceph_encode_32(&p, map_epoch);
4309	ceph_encode_8(&p, CEPH_OSD_BACKOFF_OP_ACK_BLOCK);
4310	ceph_encode_64(&p, backoff->id);
4311	encode_hoid(&p, end, backoff->begin);
4312	encode_hoid(&p, end, backoff->end);
4313	BUG_ON(p != end);
4314
4315	msg->front.iov_len = p - msg->front.iov_base;
4316	msg->hdr.version = cpu_to_le16(1); /* MOSDBackoff v1 */
4317	msg->hdr.front_len = cpu_to_le32(msg->front.iov_len);
4318
4319	return msg;
4320}
4321
4322static void handle_backoff_block(struct ceph_osd *osd, struct MOSDBackoff *m)
4323{
4324	struct ceph_spg_mapping *spg;
4325	struct ceph_osd_backoff *backoff;
4326	struct ceph_msg *msg;
4327
4328	dout("%s osd%d spgid %llu.%xs%d id %llu\n", __func__, osd->o_osd,
4329	     m->spgid.pgid.pool, m->spgid.pgid.seed, m->spgid.shard, m->id);
4330
4331	spg = lookup_spg_mapping(&osd->o_backoff_mappings, &m->spgid);
4332	if (!spg) {
4333		spg = alloc_spg_mapping();
4334		if (!spg) {
4335			pr_err("%s failed to allocate spg\n", __func__);
4336			return;
4337		}
4338		spg->spgid = m->spgid; /* struct */
4339		insert_spg_mapping(&osd->o_backoff_mappings, spg);
4340	}
4341
4342	backoff = alloc_backoff();
4343	if (!backoff) {
4344		pr_err("%s failed to allocate backoff\n", __func__);
4345		return;
4346	}
4347	backoff->spgid = m->spgid; /* struct */
4348	backoff->id = m->id;
4349	backoff->begin = m->begin;
4350	m->begin = NULL; /* backoff now owns this */
4351	backoff->end = m->end;
4352	m->end = NULL;   /* ditto */
4353
4354	insert_backoff(&spg->backoffs, backoff);
4355	insert_backoff_by_id(&osd->o_backoffs_by_id, backoff);
4356
4357	/*
4358	 * Ack with original backoff's epoch so that the OSD can
4359	 * discard this if there was a PG split.
4360	 */
4361	msg = create_backoff_message(backoff, m->map_epoch);
4362	if (!msg) {
4363		pr_err("%s failed to allocate msg\n", __func__);
4364		return;
4365	}
4366	ceph_con_send(&osd->o_con, msg);
4367}
4368
4369static bool target_contained_by(const struct ceph_osd_request_target *t,
4370				const struct ceph_hobject_id *begin,
4371				const struct ceph_hobject_id *end)
4372{
4373	struct ceph_hobject_id hoid;
4374	int cmp;
4375
4376	hoid_fill_from_target(&hoid, t);
4377	cmp = hoid_compare(&hoid, begin);
4378	return !cmp || (cmp > 0 && hoid_compare(&hoid, end) < 0);
4379}
4380
4381static void handle_backoff_unblock(struct ceph_osd *osd,
4382				   const struct MOSDBackoff *m)
4383{
4384	struct ceph_spg_mapping *spg;
4385	struct ceph_osd_backoff *backoff;
4386	struct rb_node *n;
4387
4388	dout("%s osd%d spgid %llu.%xs%d id %llu\n", __func__, osd->o_osd,
4389	     m->spgid.pgid.pool, m->spgid.pgid.seed, m->spgid.shard, m->id);
4390
4391	backoff = lookup_backoff_by_id(&osd->o_backoffs_by_id, m->id);
4392	if (!backoff) {
4393		pr_err("%s osd%d spgid %llu.%xs%d id %llu backoff dne\n",
4394		       __func__, osd->o_osd, m->spgid.pgid.pool,
4395		       m->spgid.pgid.seed, m->spgid.shard, m->id);
4396		return;
4397	}
4398
4399	if (hoid_compare(backoff->begin, m->begin) &&
4400	    hoid_compare(backoff->end, m->end)) {
4401		pr_err("%s osd%d spgid %llu.%xs%d id %llu bad range?\n",
4402		       __func__, osd->o_osd, m->spgid.pgid.pool,
4403		       m->spgid.pgid.seed, m->spgid.shard, m->id);
4404		/* unblock it anyway... */
4405	}
4406
4407	spg = lookup_spg_mapping(&osd->o_backoff_mappings, &backoff->spgid);
4408	BUG_ON(!spg);
4409
4410	erase_backoff(&spg->backoffs, backoff);
4411	erase_backoff_by_id(&osd->o_backoffs_by_id, backoff);
4412	free_backoff(backoff);
4413
4414	if (RB_EMPTY_ROOT(&spg->backoffs)) {
4415		erase_spg_mapping(&osd->o_backoff_mappings, spg);
4416		free_spg_mapping(spg);
4417	}
4418
4419	for (n = rb_first(&osd->o_requests); n; n = rb_next(n)) {
4420		struct ceph_osd_request *req =
4421		    rb_entry(n, struct ceph_osd_request, r_node);
4422
4423		if (!ceph_spg_compare(&req->r_t.spgid, &m->spgid)) {
4424			/*
4425			 * Match against @m, not @backoff -- the PG may
4426			 * have split on the OSD.
4427			 */
4428			if (target_contained_by(&req->r_t, m->begin, m->end)) {
4429				/*
4430				 * If no other installed backoff applies,
4431				 * resend.
4432				 */
4433				send_request(req);
4434			}
4435		}
4436	}
4437}
4438
4439static void handle_backoff(struct ceph_osd *osd, struct ceph_msg *msg)
4440{
4441	struct ceph_osd_client *osdc = osd->o_osdc;
4442	struct MOSDBackoff m;
4443	int ret;
4444
4445	down_read(&osdc->lock);
4446	if (!osd_registered(osd)) {
4447		dout("%s osd%d unknown\n", __func__, osd->o_osd);
4448		up_read(&osdc->lock);
4449		return;
4450	}
4451	WARN_ON(osd->o_osd != le64_to_cpu(msg->hdr.src.num));
4452
4453	mutex_lock(&osd->lock);
4454	ret = decode_MOSDBackoff(msg, &m);
4455	if (ret) {
4456		pr_err("failed to decode MOSDBackoff: %d\n", ret);
4457		ceph_msg_dump(msg);
4458		goto out_unlock;
4459	}
4460
4461	switch (m.op) {
4462	case CEPH_OSD_BACKOFF_OP_BLOCK:
4463		handle_backoff_block(osd, &m);
4464		break;
4465	case CEPH_OSD_BACKOFF_OP_UNBLOCK:
4466		handle_backoff_unblock(osd, &m);
4467		break;
4468	default:
4469		pr_err("%s osd%d unknown op %d\n", __func__, osd->o_osd, m.op);
4470	}
4471
4472	free_hoid(m.begin);
4473	free_hoid(m.end);
4474
4475out_unlock:
4476	mutex_unlock(&osd->lock);
4477	up_read(&osdc->lock);
4478}
4479
4480/*
4481 * Process osd watch notifications
4482 */
4483static void handle_watch_notify(struct ceph_osd_client *osdc,
4484				struct ceph_msg *msg)
4485{
4486	void *p = msg->front.iov_base;
4487	void *const end = p + msg->front.iov_len;
4488	struct ceph_osd_linger_request *lreq;
4489	struct linger_work *lwork;
4490	u8 proto_ver, opcode;
4491	u64 cookie, notify_id;
4492	u64 notifier_id = 0;
4493	s32 return_code = 0;
4494	void *payload = NULL;
4495	u32 payload_len = 0;
4496
4497	ceph_decode_8_safe(&p, end, proto_ver, bad);
4498	ceph_decode_8_safe(&p, end, opcode, bad);
4499	ceph_decode_64_safe(&p, end, cookie, bad);
4500	p += 8; /* skip ver */
4501	ceph_decode_64_safe(&p, end, notify_id, bad);
4502
4503	if (proto_ver >= 1) {
4504		ceph_decode_32_safe(&p, end, payload_len, bad);
4505		ceph_decode_need(&p, end, payload_len, bad);
4506		payload = p;
4507		p += payload_len;
4508	}
4509
4510	if (le16_to_cpu(msg->hdr.version) >= 2)
4511		ceph_decode_32_safe(&p, end, return_code, bad);
4512
4513	if (le16_to_cpu(msg->hdr.version) >= 3)
4514		ceph_decode_64_safe(&p, end, notifier_id, bad);
4515
4516	down_read(&osdc->lock);
4517	lreq = lookup_linger_osdc(&osdc->linger_requests, cookie);
4518	if (!lreq) {
4519		dout("%s opcode %d cookie %llu dne\n", __func__, opcode,
4520		     cookie);
4521		goto out_unlock_osdc;
4522	}
4523
4524	mutex_lock(&lreq->lock);
4525	dout("%s opcode %d cookie %llu lreq %p is_watch %d\n", __func__,
4526	     opcode, cookie, lreq, lreq->is_watch);
4527	if (opcode == CEPH_WATCH_EVENT_DISCONNECT) {
4528		if (!lreq->last_error) {
4529			lreq->last_error = -ENOTCONN;
4530			queue_watch_error(lreq);
4531		}
4532	} else if (!lreq->is_watch) {
4533		/* CEPH_WATCH_EVENT_NOTIFY_COMPLETE */
4534		if (lreq->notify_id && lreq->notify_id != notify_id) {
4535			dout("lreq %p notify_id %llu != %llu, ignoring\n", lreq,
4536			     lreq->notify_id, notify_id);
4537		} else if (!completion_done(&lreq->notify_finish_wait)) {
4538			struct ceph_msg_data *data =
4539			    msg->num_data_items ? &msg->data[0] : NULL;
4540
4541			if (data) {
4542				if (lreq->preply_pages) {
4543					WARN_ON(data->type !=
4544							CEPH_MSG_DATA_PAGES);
4545					*lreq->preply_pages = data->pages;
4546					*lreq->preply_len = data->length;
4547					data->own_pages = false;
4548				}
4549			}
4550			lreq->notify_finish_error = return_code;
4551			complete_all(&lreq->notify_finish_wait);
4552		}
4553	} else {
4554		/* CEPH_WATCH_EVENT_NOTIFY */
4555		lwork = lwork_alloc(lreq, do_watch_notify);
4556		if (!lwork) {
4557			pr_err("failed to allocate notify-lwork\n");
4558			goto out_unlock_lreq;
4559		}
4560
4561		lwork->notify.notify_id = notify_id;
4562		lwork->notify.notifier_id = notifier_id;
4563		lwork->notify.payload = payload;
4564		lwork->notify.payload_len = payload_len;
4565		lwork->notify.msg = ceph_msg_get(msg);
4566		lwork_queue(lwork);
4567	}
4568
4569out_unlock_lreq:
4570	mutex_unlock(&lreq->lock);
4571out_unlock_osdc:
4572	up_read(&osdc->lock);
4573	return;
4574
4575bad:
4576	pr_err("osdc handle_watch_notify corrupt msg\n");
4577}
4578
4579/*
4580 * Register request, send initial attempt.
4581 */
4582int ceph_osdc_start_request(struct ceph_osd_client *osdc,
4583			    struct ceph_osd_request *req,
4584			    bool nofail)
4585{
4586	down_read(&osdc->lock);
4587	submit_request(req, false);
4588	up_read(&osdc->lock);
4589
4590	return 0;
4591}
4592EXPORT_SYMBOL(ceph_osdc_start_request);
4593
4594/*
4595 * Unregister a registered request.  The request is not completed:
4596 * ->r_result isn't set and __complete_request() isn't called.
4597 */
4598void ceph_osdc_cancel_request(struct ceph_osd_request *req)
4599{
4600	struct ceph_osd_client *osdc = req->r_osdc;
4601
4602	down_write(&osdc->lock);
4603	if (req->r_osd)
4604		cancel_request(req);
4605	up_write(&osdc->lock);
4606}
4607EXPORT_SYMBOL(ceph_osdc_cancel_request);
4608
4609/*
4610 * @timeout: in jiffies, 0 means "wait forever"
4611 */
4612static int wait_request_timeout(struct ceph_osd_request *req,
4613				unsigned long timeout)
4614{
4615	long left;
4616
4617	dout("%s req %p tid %llu\n", __func__, req, req->r_tid);
4618	left = wait_for_completion_killable_timeout(&req->r_completion,
4619						ceph_timeout_jiffies(timeout));
4620	if (left <= 0) {
4621		left = left ?: -ETIMEDOUT;
4622		ceph_osdc_cancel_request(req);
4623	} else {
4624		left = req->r_result; /* completed */
4625	}
4626
4627	return left;
4628}
4629
4630/*
4631 * wait for a request to complete
4632 */
4633int ceph_osdc_wait_request(struct ceph_osd_client *osdc,
4634			   struct ceph_osd_request *req)
4635{
4636	return wait_request_timeout(req, 0);
4637}
4638EXPORT_SYMBOL(ceph_osdc_wait_request);
4639
4640/*
4641 * sync - wait for all in-flight requests to flush.  avoid starvation.
4642 */
4643void ceph_osdc_sync(struct ceph_osd_client *osdc)
4644{
4645	struct rb_node *n, *p;
4646	u64 last_tid = atomic64_read(&osdc->last_tid);
4647
4648again:
4649	down_read(&osdc->lock);
4650	for (n = rb_first(&osdc->osds); n; n = rb_next(n)) {
4651		struct ceph_osd *osd = rb_entry(n, struct ceph_osd, o_node);
4652
4653		mutex_lock(&osd->lock);
4654		for (p = rb_first(&osd->o_requests); p; p = rb_next(p)) {
4655			struct ceph_osd_request *req =
4656			    rb_entry(p, struct ceph_osd_request, r_node);
4657
4658			if (req->r_tid > last_tid)
4659				break;
4660
4661			if (!(req->r_flags & CEPH_OSD_FLAG_WRITE))
4662				continue;
4663
4664			ceph_osdc_get_request(req);
4665			mutex_unlock(&osd->lock);
4666			up_read(&osdc->lock);
4667			dout("%s waiting on req %p tid %llu last_tid %llu\n",
4668			     __func__, req, req->r_tid, last_tid);
4669			wait_for_completion(&req->r_completion);
4670			ceph_osdc_put_request(req);
4671			goto again;
4672		}
4673
4674		mutex_unlock(&osd->lock);
4675	}
4676
4677	up_read(&osdc->lock);
4678	dout("%s done last_tid %llu\n", __func__, last_tid);
4679}
4680EXPORT_SYMBOL(ceph_osdc_sync);
4681
4682/*
4683 * Returns a handle, caller owns a ref.
4684 */
4685struct ceph_osd_linger_request *
4686ceph_osdc_watch(struct ceph_osd_client *osdc,
4687		struct ceph_object_id *oid,
4688		struct ceph_object_locator *oloc,
4689		rados_watchcb2_t wcb,
4690		rados_watcherrcb_t errcb,
4691		void *data)
4692{
4693	struct ceph_osd_linger_request *lreq;
4694	int ret;
4695
4696	lreq = linger_alloc(osdc);
4697	if (!lreq)
4698		return ERR_PTR(-ENOMEM);
4699
4700	lreq->is_watch = true;
4701	lreq->wcb = wcb;
4702	lreq->errcb = errcb;
4703	lreq->data = data;
4704	lreq->watch_valid_thru = jiffies;
4705
4706	ceph_oid_copy(&lreq->t.base_oid, oid);
4707	ceph_oloc_copy(&lreq->t.base_oloc, oloc);
4708	lreq->t.flags = CEPH_OSD_FLAG_WRITE;
4709	ktime_get_real_ts64(&lreq->mtime);
4710
4711	linger_submit(lreq);
4712	ret = linger_reg_commit_wait(lreq);
4713	if (ret) {
4714		linger_cancel(lreq);
4715		goto err_put_lreq;
4716	}
4717
4718	return lreq;
4719
4720err_put_lreq:
4721	linger_put(lreq);
4722	return ERR_PTR(ret);
4723}
4724EXPORT_SYMBOL(ceph_osdc_watch);
4725
4726/*
4727 * Releases a ref.
4728 *
4729 * Times out after mount_timeout to preserve rbd unmap behaviour
4730 * introduced in 2894e1d76974 ("rbd: timeout watch teardown on unmap
4731 * with mount_timeout").
4732 */
4733int ceph_osdc_unwatch(struct ceph_osd_client *osdc,
4734		      struct ceph_osd_linger_request *lreq)
4735{
4736	struct ceph_options *opts = osdc->client->options;
4737	struct ceph_osd_request *req;
4738	int ret;
4739
4740	req = ceph_osdc_alloc_request(osdc, NULL, 1, false, GFP_NOIO);
4741	if (!req)
4742		return -ENOMEM;
4743
4744	ceph_oid_copy(&req->r_base_oid, &lreq->t.base_oid);
4745	ceph_oloc_copy(&req->r_base_oloc, &lreq->t.base_oloc);
4746	req->r_flags = CEPH_OSD_FLAG_WRITE;
4747	ktime_get_real_ts64(&req->r_mtime);
4748	osd_req_op_watch_init(req, 0, CEPH_OSD_WATCH_OP_UNWATCH,
4749			      lreq->linger_id, 0);
4750
4751	ret = ceph_osdc_alloc_messages(req, GFP_NOIO);
4752	if (ret)
4753		goto out_put_req;
4754
4755	ceph_osdc_start_request(osdc, req, false);
4756	linger_cancel(lreq);
4757	linger_put(lreq);
4758	ret = wait_request_timeout(req, opts->mount_timeout);
4759
4760out_put_req:
4761	ceph_osdc_put_request(req);
4762	return ret;
4763}
4764EXPORT_SYMBOL(ceph_osdc_unwatch);
4765
4766static int osd_req_op_notify_ack_init(struct ceph_osd_request *req, int which,
4767				      u64 notify_id, u64 cookie, void *payload,
4768				      u32 payload_len)
4769{
4770	struct ceph_osd_req_op *op;
4771	struct ceph_pagelist *pl;
4772	int ret;
4773
4774	op = osd_req_op_init(req, which, CEPH_OSD_OP_NOTIFY_ACK, 0);
4775
4776	pl = ceph_pagelist_alloc(GFP_NOIO);
4777	if (!pl)
4778		return -ENOMEM;
4779
4780	ret = ceph_pagelist_encode_64(pl, notify_id);
4781	ret |= ceph_pagelist_encode_64(pl, cookie);
4782	if (payload) {
4783		ret |= ceph_pagelist_encode_32(pl, payload_len);
4784		ret |= ceph_pagelist_append(pl, payload, payload_len);
4785	} else {
4786		ret |= ceph_pagelist_encode_32(pl, 0);
4787	}
4788	if (ret) {
4789		ceph_pagelist_release(pl);
4790		return -ENOMEM;
4791	}
4792
4793	ceph_osd_data_pagelist_init(&op->notify_ack.request_data, pl);
4794	op->indata_len = pl->length;
4795	return 0;
4796}
4797
4798int ceph_osdc_notify_ack(struct ceph_osd_client *osdc,
4799			 struct ceph_object_id *oid,
4800			 struct ceph_object_locator *oloc,
4801			 u64 notify_id,
4802			 u64 cookie,
4803			 void *payload,
4804			 u32 payload_len)
4805{
4806	struct ceph_osd_request *req;
4807	int ret;
4808
4809	req = ceph_osdc_alloc_request(osdc, NULL, 1, false, GFP_NOIO);
4810	if (!req)
4811		return -ENOMEM;
4812
4813	ceph_oid_copy(&req->r_base_oid, oid);
4814	ceph_oloc_copy(&req->r_base_oloc, oloc);
4815	req->r_flags = CEPH_OSD_FLAG_READ;
4816
4817	ret = osd_req_op_notify_ack_init(req, 0, notify_id, cookie, payload,
4818					 payload_len);
4819	if (ret)
4820		goto out_put_req;
4821
4822	ret = ceph_osdc_alloc_messages(req, GFP_NOIO);
4823	if (ret)
4824		goto out_put_req;
4825
4826	ceph_osdc_start_request(osdc, req, false);
4827	ret = ceph_osdc_wait_request(osdc, req);
4828
4829out_put_req:
4830	ceph_osdc_put_request(req);
4831	return ret;
4832}
4833EXPORT_SYMBOL(ceph_osdc_notify_ack);
4834
4835/*
4836 * @timeout: in seconds
4837 *
4838 * @preply_{pages,len} are initialized both on success and error.
4839 * The caller is responsible for:
4840 *
4841 *     ceph_release_page_vector(reply_pages, calc_pages_for(0, reply_len))
4842 */
4843int ceph_osdc_notify(struct ceph_osd_client *osdc,
4844		     struct ceph_object_id *oid,
4845		     struct ceph_object_locator *oloc,
4846		     void *payload,
4847		     u32 payload_len,
4848		     u32 timeout,
4849		     struct page ***preply_pages,
4850		     size_t *preply_len)
4851{
4852	struct ceph_osd_linger_request *lreq;
4853	int ret;
4854
4855	WARN_ON(!timeout);
4856	if (preply_pages) {
4857		*preply_pages = NULL;
4858		*preply_len = 0;
4859	}
4860
4861	lreq = linger_alloc(osdc);
4862	if (!lreq)
4863		return -ENOMEM;
4864
4865	lreq->request_pl = ceph_pagelist_alloc(GFP_NOIO);
4866	if (!lreq->request_pl) {
4867		ret = -ENOMEM;
4868		goto out_put_lreq;
4869	}
4870
4871	ret = ceph_pagelist_encode_32(lreq->request_pl, 1); /* prot_ver */
4872	ret |= ceph_pagelist_encode_32(lreq->request_pl, timeout);
4873	ret |= ceph_pagelist_encode_32(lreq->request_pl, payload_len);
4874	ret |= ceph_pagelist_append(lreq->request_pl, payload, payload_len);
4875	if (ret) {
4876		ret = -ENOMEM;
4877		goto out_put_lreq;
4878	}
4879
4880	/* for notify_id */
4881	lreq->notify_id_pages = ceph_alloc_page_vector(1, GFP_NOIO);
4882	if (IS_ERR(lreq->notify_id_pages)) {
4883		ret = PTR_ERR(lreq->notify_id_pages);
4884		lreq->notify_id_pages = NULL;
4885		goto out_put_lreq;
4886	}
4887
4888	lreq->preply_pages = preply_pages;
4889	lreq->preply_len = preply_len;
4890
4891	ceph_oid_copy(&lreq->t.base_oid, oid);
4892	ceph_oloc_copy(&lreq->t.base_oloc, oloc);
4893	lreq->t.flags = CEPH_OSD_FLAG_READ;
4894
4895	linger_submit(lreq);
4896	ret = linger_reg_commit_wait(lreq);
4897	if (!ret)
4898		ret = linger_notify_finish_wait(lreq,
4899				 msecs_to_jiffies(2 * timeout * MSEC_PER_SEC));
4900	else
4901		dout("lreq %p failed to initiate notify %d\n", lreq, ret);
4902
4903	linger_cancel(lreq);
4904out_put_lreq:
4905	linger_put(lreq);
4906	return ret;
4907}
4908EXPORT_SYMBOL(ceph_osdc_notify);
4909
4910/*
4911 * Return the number of milliseconds since the watch was last
4912 * confirmed, or an error.  If there is an error, the watch is no
4913 * longer valid, and should be destroyed with ceph_osdc_unwatch().
4914 */
4915int ceph_osdc_watch_check(struct ceph_osd_client *osdc,
4916			  struct ceph_osd_linger_request *lreq)
4917{
4918	unsigned long stamp, age;
4919	int ret;
4920
4921	down_read(&osdc->lock);
4922	mutex_lock(&lreq->lock);
4923	stamp = lreq->watch_valid_thru;
4924	if (!list_empty(&lreq->pending_lworks)) {
4925		struct linger_work *lwork =
4926		    list_first_entry(&lreq->pending_lworks,
4927				     struct linger_work,
4928				     pending_item);
4929
4930		if (time_before(lwork->queued_stamp, stamp))
4931			stamp = lwork->queued_stamp;
4932	}
4933	age = jiffies - stamp;
4934	dout("%s lreq %p linger_id %llu age %lu last_error %d\n", __func__,
4935	     lreq, lreq->linger_id, age, lreq->last_error);
4936	/* we are truncating to msecs, so return a safe upper bound */
4937	ret = lreq->last_error ?: 1 + jiffies_to_msecs(age);
4938
4939	mutex_unlock(&lreq->lock);
4940	up_read(&osdc->lock);
4941	return ret;
4942}
4943
4944static int decode_watcher(void **p, void *end, struct ceph_watch_item *item)
4945{
4946	u8 struct_v;
4947	u32 struct_len;
4948	int ret;
4949
4950	ret = ceph_start_decoding(p, end, 2, "watch_item_t",
4951				  &struct_v, &struct_len);
4952	if (ret)
4953		goto bad;
4954
4955	ret = -EINVAL;
4956	ceph_decode_copy_safe(p, end, &item->name, sizeof(item->name), bad);
4957	ceph_decode_64_safe(p, end, item->cookie, bad);
4958	ceph_decode_skip_32(p, end, bad); /* skip timeout seconds */
4959
4960	if (struct_v >= 2) {
4961		ret = ceph_decode_entity_addr(p, end, &item->addr);
4962		if (ret)
4963			goto bad;
4964	} else {
4965		ret = 0;
4966	}
4967
4968	dout("%s %s%llu cookie %llu addr %s\n", __func__,
4969	     ENTITY_NAME(item->name), item->cookie,
4970	     ceph_pr_addr(&item->addr));
4971bad:
4972	return ret;
4973}
4974
4975static int decode_watchers(void **p, void *end,
4976			   struct ceph_watch_item **watchers,
4977			   u32 *num_watchers)
4978{
4979	u8 struct_v;
4980	u32 struct_len;
4981	int i;
4982	int ret;
4983
4984	ret = ceph_start_decoding(p, end, 1, "obj_list_watch_response_t",
4985				  &struct_v, &struct_len);
4986	if (ret)
4987		return ret;
4988
4989	*num_watchers = ceph_decode_32(p);
4990	*watchers = kcalloc(*num_watchers, sizeof(**watchers), GFP_NOIO);
4991	if (!*watchers)
4992		return -ENOMEM;
4993
4994	for (i = 0; i < *num_watchers; i++) {
4995		ret = decode_watcher(p, end, *watchers + i);
4996		if (ret) {
4997			kfree(*watchers);
4998			return ret;
4999		}
5000	}
5001
5002	return 0;
5003}
5004
5005/*
5006 * On success, the caller is responsible for:
5007 *
5008 *     kfree(watchers);
5009 */
5010int ceph_osdc_list_watchers(struct ceph_osd_client *osdc,
5011			    struct ceph_object_id *oid,
5012			    struct ceph_object_locator *oloc,
5013			    struct ceph_watch_item **watchers,
5014			    u32 *num_watchers)
5015{
5016	struct ceph_osd_request *req;
5017	struct page **pages;
5018	int ret;
5019
5020	req = ceph_osdc_alloc_request(osdc, NULL, 1, false, GFP_NOIO);
5021	if (!req)
5022		return -ENOMEM;
5023
5024	ceph_oid_copy(&req->r_base_oid, oid);
5025	ceph_oloc_copy(&req->r_base_oloc, oloc);
5026	req->r_flags = CEPH_OSD_FLAG_READ;
5027
5028	pages = ceph_alloc_page_vector(1, GFP_NOIO);
5029	if (IS_ERR(pages)) {
5030		ret = PTR_ERR(pages);
5031		goto out_put_req;
5032	}
5033
5034	osd_req_op_init(req, 0, CEPH_OSD_OP_LIST_WATCHERS, 0);
5035	ceph_osd_data_pages_init(osd_req_op_data(req, 0, list_watchers,
5036						 response_data),
5037				 pages, PAGE_SIZE, 0, false, true);
5038
5039	ret = ceph_osdc_alloc_messages(req, GFP_NOIO);
5040	if (ret)
5041		goto out_put_req;
5042
5043	ceph_osdc_start_request(osdc, req, false);
5044	ret = ceph_osdc_wait_request(osdc, req);
5045	if (ret >= 0) {
5046		void *p = page_address(pages[0]);
5047		void *const end = p + req->r_ops[0].outdata_len;
5048
5049		ret = decode_watchers(&p, end, watchers, num_watchers);
5050	}
5051
5052out_put_req:
5053	ceph_osdc_put_request(req);
5054	return ret;
5055}
5056EXPORT_SYMBOL(ceph_osdc_list_watchers);
5057
5058/*
5059 * Call all pending notify callbacks - for use after a watch is
5060 * unregistered, to make sure no more callbacks for it will be invoked
5061 */
5062void ceph_osdc_flush_notifies(struct ceph_osd_client *osdc)
5063{
5064	dout("%s osdc %p\n", __func__, osdc);
5065	flush_workqueue(osdc->notify_wq);
5066}
5067EXPORT_SYMBOL(ceph_osdc_flush_notifies);
5068
5069void ceph_osdc_maybe_request_map(struct ceph_osd_client *osdc)
5070{
5071	down_read(&osdc->lock);
5072	maybe_request_map(osdc);
5073	up_read(&osdc->lock);
5074}
5075EXPORT_SYMBOL(ceph_osdc_maybe_request_map);
5076
5077/*
5078 * Execute an OSD class method on an object.
5079 *
5080 * @flags: CEPH_OSD_FLAG_*
5081 * @resp_len: in/out param for reply length
5082 */
5083int ceph_osdc_call(struct ceph_osd_client *osdc,
5084		   struct ceph_object_id *oid,
5085		   struct ceph_object_locator *oloc,
5086		   const char *class, const char *method,
5087		   unsigned int flags,
5088		   struct page *req_page, size_t req_len,
5089		   struct page **resp_pages, size_t *resp_len)
5090{
5091	struct ceph_osd_request *req;
5092	int ret;
5093
5094	if (req_len > PAGE_SIZE)
5095		return -E2BIG;
5096
5097	req = ceph_osdc_alloc_request(osdc, NULL, 1, false, GFP_NOIO);
5098	if (!req)
5099		return -ENOMEM;
5100
5101	ceph_oid_copy(&req->r_base_oid, oid);
5102	ceph_oloc_copy(&req->r_base_oloc, oloc);
5103	req->r_flags = flags;
5104
5105	ret = osd_req_op_cls_init(req, 0, class, method);
5106	if (ret)
5107		goto out_put_req;
5108
5109	if (req_page)
5110		osd_req_op_cls_request_data_pages(req, 0, &req_page, req_len,
5111						  0, false, false);
5112	if (resp_pages)
5113		osd_req_op_cls_response_data_pages(req, 0, resp_pages,
5114						   *resp_len, 0, false, false);
5115
5116	ret = ceph_osdc_alloc_messages(req, GFP_NOIO);
5117	if (ret)
5118		goto out_put_req;
5119
5120	ceph_osdc_start_request(osdc, req, false);
5121	ret = ceph_osdc_wait_request(osdc, req);
5122	if (ret >= 0) {
5123		ret = req->r_ops[0].rval;
5124		if (resp_pages)
5125			*resp_len = req->r_ops[0].outdata_len;
5126	}
5127
5128out_put_req:
5129	ceph_osdc_put_request(req);
5130	return ret;
5131}
5132EXPORT_SYMBOL(ceph_osdc_call);
5133
5134/*
5135 * reset all osd connections
5136 */
5137void ceph_osdc_reopen_osds(struct ceph_osd_client *osdc)
5138{
5139	struct rb_node *n;
5140
5141	down_write(&osdc->lock);
5142	for (n = rb_first(&osdc->osds); n; ) {
5143		struct ceph_osd *osd = rb_entry(n, struct ceph_osd, o_node);
5144
5145		n = rb_next(n);
5146		if (!reopen_osd(osd))
5147			kick_osd_requests(osd);
5148	}
5149	up_write(&osdc->lock);
5150}
5151
5152/*
5153 * init, shutdown
5154 */
5155int ceph_osdc_init(struct ceph_osd_client *osdc, struct ceph_client *client)
5156{
5157	int err;
5158
5159	dout("init\n");
5160	osdc->client = client;
5161	init_rwsem(&osdc->lock);
5162	osdc->osds = RB_ROOT;
5163	INIT_LIST_HEAD(&osdc->osd_lru);
5164	spin_lock_init(&osdc->osd_lru_lock);
5165	osd_init(&osdc->homeless_osd);
5166	osdc->homeless_osd.o_osdc = osdc;
5167	osdc->homeless_osd.o_osd = CEPH_HOMELESS_OSD;
5168	osdc->last_linger_id = CEPH_LINGER_ID_START;
5169	osdc->linger_requests = RB_ROOT;
5170	osdc->map_checks = RB_ROOT;
5171	osdc->linger_map_checks = RB_ROOT;
5172	INIT_DELAYED_WORK(&osdc->timeout_work, handle_timeout);
5173	INIT_DELAYED_WORK(&osdc->osds_timeout_work, handle_osds_timeout);
5174
5175	err = -ENOMEM;
5176	osdc->osdmap = ceph_osdmap_alloc();
5177	if (!osdc->osdmap)
5178		goto out;
5179
5180	osdc->req_mempool = mempool_create_slab_pool(10,
5181						     ceph_osd_request_cache);
5182	if (!osdc->req_mempool)
5183		goto out_map;
5184
5185	err = ceph_msgpool_init(&osdc->msgpool_op, CEPH_MSG_OSD_OP,
5186				PAGE_SIZE, CEPH_OSD_SLAB_OPS, 10, "osd_op");
5187	if (err < 0)
5188		goto out_mempool;
5189	err = ceph_msgpool_init(&osdc->msgpool_op_reply, CEPH_MSG_OSD_OPREPLY,
5190				PAGE_SIZE, CEPH_OSD_SLAB_OPS, 10,
5191				"osd_op_reply");
5192	if (err < 0)
5193		goto out_msgpool;
5194
5195	err = -ENOMEM;
5196	osdc->notify_wq = create_singlethread_workqueue("ceph-watch-notify");
5197	if (!osdc->notify_wq)
5198		goto out_msgpool_reply;
5199
5200	osdc->completion_wq = create_singlethread_workqueue("ceph-completion");
5201	if (!osdc->completion_wq)
5202		goto out_notify_wq;
5203
5204	schedule_delayed_work(&osdc->timeout_work,
5205			      osdc->client->options->osd_keepalive_timeout);
5206	schedule_delayed_work(&osdc->osds_timeout_work,
5207	    round_jiffies_relative(osdc->client->options->osd_idle_ttl));
5208
5209	return 0;
5210
5211out_notify_wq:
5212	destroy_workqueue(osdc->notify_wq);
5213out_msgpool_reply:
5214	ceph_msgpool_destroy(&osdc->msgpool_op_reply);
5215out_msgpool:
5216	ceph_msgpool_destroy(&osdc->msgpool_op);
5217out_mempool:
5218	mempool_destroy(osdc->req_mempool);
5219out_map:
5220	ceph_osdmap_destroy(osdc->osdmap);
5221out:
5222	return err;
5223}
5224
5225void ceph_osdc_stop(struct ceph_osd_client *osdc)
5226{
5227	destroy_workqueue(osdc->completion_wq);
5228	destroy_workqueue(osdc->notify_wq);
5229	cancel_delayed_work_sync(&osdc->timeout_work);
5230	cancel_delayed_work_sync(&osdc->osds_timeout_work);
5231
5232	down_write(&osdc->lock);
5233	while (!RB_EMPTY_ROOT(&osdc->osds)) {
5234		struct ceph_osd *osd = rb_entry(rb_first(&osdc->osds),
5235						struct ceph_osd, o_node);
5236		close_osd(osd);
5237	}
5238	up_write(&osdc->lock);
5239	WARN_ON(refcount_read(&osdc->homeless_osd.o_ref) != 1);
5240	osd_cleanup(&osdc->homeless_osd);
5241
5242	WARN_ON(!list_empty(&osdc->osd_lru));
5243	WARN_ON(!RB_EMPTY_ROOT(&osdc->linger_requests));
5244	WARN_ON(!RB_EMPTY_ROOT(&osdc->map_checks));
5245	WARN_ON(!RB_EMPTY_ROOT(&osdc->linger_map_checks));
5246	WARN_ON(atomic_read(&osdc->num_requests));
5247	WARN_ON(atomic_read(&osdc->num_homeless));
5248
5249	ceph_osdmap_destroy(osdc->osdmap);
5250	mempool_destroy(osdc->req_mempool);
5251	ceph_msgpool_destroy(&osdc->msgpool_op);
5252	ceph_msgpool_destroy(&osdc->msgpool_op_reply);
5253}
5254
5255static int osd_req_op_copy_from_init(struct ceph_osd_request *req,
5256				     u64 src_snapid, u64 src_version,
5257				     struct ceph_object_id *src_oid,
5258				     struct ceph_object_locator *src_oloc,
5259				     u32 src_fadvise_flags,
5260				     u32 dst_fadvise_flags,
5261				     u32 truncate_seq, u64 truncate_size,
5262				     u8 copy_from_flags)
5263{
5264	struct ceph_osd_req_op *op;
5265	struct page **pages;
5266	void *p, *end;
5267
5268	pages = ceph_alloc_page_vector(1, GFP_KERNEL);
5269	if (IS_ERR(pages))
5270		return PTR_ERR(pages);
5271
5272	op = osd_req_op_init(req, 0, CEPH_OSD_OP_COPY_FROM2,
5273			     dst_fadvise_flags);
5274	op->copy_from.snapid = src_snapid;
5275	op->copy_from.src_version = src_version;
5276	op->copy_from.flags = copy_from_flags;
5277	op->copy_from.src_fadvise_flags = src_fadvise_flags;
5278
5279	p = page_address(pages[0]);
5280	end = p + PAGE_SIZE;
5281	ceph_encode_string(&p, end, src_oid->name, src_oid->name_len);
5282	encode_oloc(&p, end, src_oloc);
5283	ceph_encode_32(&p, truncate_seq);
5284	ceph_encode_64(&p, truncate_size);
5285	op->indata_len = PAGE_SIZE - (end - p);
5286
5287	ceph_osd_data_pages_init(&op->copy_from.osd_data, pages,
5288				 op->indata_len, 0, false, true);
5289	return 0;
5290}
5291
5292int ceph_osdc_copy_from(struct ceph_osd_client *osdc,
5293			u64 src_snapid, u64 src_version,
5294			struct ceph_object_id *src_oid,
5295			struct ceph_object_locator *src_oloc,
5296			u32 src_fadvise_flags,
5297			struct ceph_object_id *dst_oid,
5298			struct ceph_object_locator *dst_oloc,
5299			u32 dst_fadvise_flags,
5300			u32 truncate_seq, u64 truncate_size,
5301			u8 copy_from_flags)
5302{
5303	struct ceph_osd_request *req;
5304	int ret;
5305
5306	req = ceph_osdc_alloc_request(osdc, NULL, 1, false, GFP_KERNEL);
5307	if (!req)
5308		return -ENOMEM;
5309
5310	req->r_flags = CEPH_OSD_FLAG_WRITE;
5311
5312	ceph_oloc_copy(&req->r_t.base_oloc, dst_oloc);
5313	ceph_oid_copy(&req->r_t.base_oid, dst_oid);
5314
5315	ret = osd_req_op_copy_from_init(req, src_snapid, src_version, src_oid,
5316					src_oloc, src_fadvise_flags,
5317					dst_fadvise_flags, truncate_seq,
5318					truncate_size, copy_from_flags);
5319	if (ret)
5320		goto out;
5321
5322	ret = ceph_osdc_alloc_messages(req, GFP_KERNEL);
5323	if (ret)
5324		goto out;
5325
5326	ceph_osdc_start_request(osdc, req, false);
5327	ret = ceph_osdc_wait_request(osdc, req);
5328
5329out:
5330	ceph_osdc_put_request(req);
5331	return ret;
5332}
5333EXPORT_SYMBOL(ceph_osdc_copy_from);
5334
5335int __init ceph_osdc_setup(void)
5336{
5337	size_t size = sizeof(struct ceph_osd_request) +
5338	    CEPH_OSD_SLAB_OPS * sizeof(struct ceph_osd_req_op);
5339
5340	BUG_ON(ceph_osd_request_cache);
5341	ceph_osd_request_cache = kmem_cache_create("ceph_osd_request", size,
5342						   0, 0, NULL);
5343
5344	return ceph_osd_request_cache ? 0 : -ENOMEM;
5345}
5346
5347void ceph_osdc_cleanup(void)
5348{
5349	BUG_ON(!ceph_osd_request_cache);
5350	kmem_cache_destroy(ceph_osd_request_cache);
5351	ceph_osd_request_cache = NULL;
5352}
5353
5354/*
5355 * handle incoming message
5356 */
5357static void dispatch(struct ceph_connection *con, struct ceph_msg *msg)
5358{
5359	struct ceph_osd *osd = con->private;
5360	struct ceph_osd_client *osdc = osd->o_osdc;
5361	int type = le16_to_cpu(msg->hdr.type);
5362
5363	switch (type) {
5364	case CEPH_MSG_OSD_MAP:
5365		ceph_osdc_handle_map(osdc, msg);
5366		break;
5367	case CEPH_MSG_OSD_OPREPLY:
5368		handle_reply(osd, msg);
5369		break;
5370	case CEPH_MSG_OSD_BACKOFF:
5371		handle_backoff(osd, msg);
5372		break;
5373	case CEPH_MSG_WATCH_NOTIFY:
5374		handle_watch_notify(osdc, msg);
5375		break;
5376
5377	default:
5378		pr_err("received unknown message type %d %s\n", type,
5379		       ceph_msg_type_name(type));
5380	}
5381
5382	ceph_msg_put(msg);
5383}
5384
5385/*
5386 * Lookup and return message for incoming reply.  Don't try to do
5387 * anything about a larger than preallocated data portion of the
5388 * message at the moment - for now, just skip the message.
5389 */
5390static struct ceph_msg *get_reply(struct ceph_connection *con,
5391				  struct ceph_msg_header *hdr,
5392				  int *skip)
5393{
5394	struct ceph_osd *osd = con->private;
5395	struct ceph_osd_client *osdc = osd->o_osdc;
5396	struct ceph_msg *m = NULL;
5397	struct ceph_osd_request *req;
5398	int front_len = le32_to_cpu(hdr->front_len);
5399	int data_len = le32_to_cpu(hdr->data_len);
5400	u64 tid = le64_to_cpu(hdr->tid);
5401
5402	down_read(&osdc->lock);
5403	if (!osd_registered(osd)) {
5404		dout("%s osd%d unknown, skipping\n", __func__, osd->o_osd);
5405		*skip = 1;
5406		goto out_unlock_osdc;
5407	}
5408	WARN_ON(osd->o_osd != le64_to_cpu(hdr->src.num));
5409
5410	mutex_lock(&osd->lock);
5411	req = lookup_request(&osd->o_requests, tid);
5412	if (!req) {
5413		dout("%s osd%d tid %llu unknown, skipping\n", __func__,
5414		     osd->o_osd, tid);
5415		*skip = 1;
5416		goto out_unlock_session;
5417	}
5418
5419	ceph_msg_revoke_incoming(req->r_reply);
5420
5421	if (front_len > req->r_reply->front_alloc_len) {
5422		pr_warn("%s osd%d tid %llu front %d > preallocated %d\n",
5423			__func__, osd->o_osd, req->r_tid, front_len,
5424			req->r_reply->front_alloc_len);
5425		m = ceph_msg_new(CEPH_MSG_OSD_OPREPLY, front_len, GFP_NOFS,
5426				 false);
5427		if (!m)
5428			goto out_unlock_session;
5429		ceph_msg_put(req->r_reply);
5430		req->r_reply = m;
5431	}
5432
5433	if (data_len > req->r_reply->data_length) {
5434		pr_warn("%s osd%d tid %llu data %d > preallocated %zu, skipping\n",
5435			__func__, osd->o_osd, req->r_tid, data_len,
5436			req->r_reply->data_length);
5437		m = NULL;
5438		*skip = 1;
5439		goto out_unlock_session;
5440	}
5441
5442	m = ceph_msg_get(req->r_reply);
5443	dout("get_reply tid %lld %p\n", tid, m);
5444
5445out_unlock_session:
5446	mutex_unlock(&osd->lock);
5447out_unlock_osdc:
5448	up_read(&osdc->lock);
5449	return m;
5450}
5451
5452static struct ceph_msg *alloc_msg_with_page_vector(struct ceph_msg_header *hdr)
5453{
5454	struct ceph_msg *m;
5455	int type = le16_to_cpu(hdr->type);
5456	u32 front_len = le32_to_cpu(hdr->front_len);
5457	u32 data_len = le32_to_cpu(hdr->data_len);
5458
5459	m = ceph_msg_new2(type, front_len, 1, GFP_NOIO, false);
5460	if (!m)
5461		return NULL;
5462
5463	if (data_len) {
5464		struct page **pages;
5465
5466		pages = ceph_alloc_page_vector(calc_pages_for(0, data_len),
5467					       GFP_NOIO);
5468		if (IS_ERR(pages)) {
5469			ceph_msg_put(m);
5470			return NULL;
5471		}
5472
5473		ceph_msg_data_add_pages(m, pages, data_len, 0, true);
5474	}
5475
5476	return m;
5477}
5478
5479static struct ceph_msg *alloc_msg(struct ceph_connection *con,
5480				  struct ceph_msg_header *hdr,
5481				  int *skip)
5482{
5483	struct ceph_osd *osd = con->private;
5484	int type = le16_to_cpu(hdr->type);
5485
5486	*skip = 0;
5487	switch (type) {
5488	case CEPH_MSG_OSD_MAP:
5489	case CEPH_MSG_OSD_BACKOFF:
5490	case CEPH_MSG_WATCH_NOTIFY:
5491		return alloc_msg_with_page_vector(hdr);
5492	case CEPH_MSG_OSD_OPREPLY:
5493		return get_reply(con, hdr, skip);
5494	default:
5495		pr_warn("%s osd%d unknown msg type %d, skipping\n", __func__,
5496			osd->o_osd, type);
5497		*skip = 1;
5498		return NULL;
5499	}
5500}
5501
5502/*
5503 * Wrappers to refcount containing ceph_osd struct
5504 */
5505static struct ceph_connection *get_osd_con(struct ceph_connection *con)
5506{
5507	struct ceph_osd *osd = con->private;
5508	if (get_osd(osd))
5509		return con;
5510	return NULL;
5511}
5512
5513static void put_osd_con(struct ceph_connection *con)
5514{
5515	struct ceph_osd *osd = con->private;
5516	put_osd(osd);
5517}
5518
5519/*
5520 * authentication
5521 */
5522/*
5523 * Note: returned pointer is the address of a structure that's
5524 * managed separately.  Caller must *not* attempt to free it.
5525 */
5526static struct ceph_auth_handshake *get_authorizer(struct ceph_connection *con,
5527					int *proto, int force_new)
5528{
5529	struct ceph_osd *o = con->private;
5530	struct ceph_osd_client *osdc = o->o_osdc;
5531	struct ceph_auth_client *ac = osdc->client->monc.auth;
5532	struct ceph_auth_handshake *auth = &o->o_auth;
5533
5534	if (force_new && auth->authorizer) {
5535		ceph_auth_destroy_authorizer(auth->authorizer);
5536		auth->authorizer = NULL;
5537	}
5538	if (!auth->authorizer) {
5539		int ret = ceph_auth_create_authorizer(ac, CEPH_ENTITY_TYPE_OSD,
5540						      auth);
5541		if (ret)
5542			return ERR_PTR(ret);
5543	} else {
5544		int ret = ceph_auth_update_authorizer(ac, CEPH_ENTITY_TYPE_OSD,
5545						     auth);
5546		if (ret)
5547			return ERR_PTR(ret);
5548	}
5549	*proto = ac->protocol;
5550
5551	return auth;
5552}
5553
5554static int add_authorizer_challenge(struct ceph_connection *con,
5555				    void *challenge_buf, int challenge_buf_len)
5556{
5557	struct ceph_osd *o = con->private;
5558	struct ceph_osd_client *osdc = o->o_osdc;
5559	struct ceph_auth_client *ac = osdc->client->monc.auth;
5560
5561	return ceph_auth_add_authorizer_challenge(ac, o->o_auth.authorizer,
5562					    challenge_buf, challenge_buf_len);
5563}
5564
5565static int verify_authorizer_reply(struct ceph_connection *con)
5566{
5567	struct ceph_osd *o = con->private;
5568	struct ceph_osd_client *osdc = o->o_osdc;
5569	struct ceph_auth_client *ac = osdc->client->monc.auth;
5570
5571	return ceph_auth_verify_authorizer_reply(ac, o->o_auth.authorizer);
5572}
5573
5574static int invalidate_authorizer(struct ceph_connection *con)
5575{
5576	struct ceph_osd *o = con->private;
5577	struct ceph_osd_client *osdc = o->o_osdc;
5578	struct ceph_auth_client *ac = osdc->client->monc.auth;
5579
5580	ceph_auth_invalidate_authorizer(ac, CEPH_ENTITY_TYPE_OSD);
5581	return ceph_monc_validate_auth(&osdc->client->monc);
5582}
5583
5584static void osd_reencode_message(struct ceph_msg *msg)
5585{
5586	int type = le16_to_cpu(msg->hdr.type);
5587
5588	if (type == CEPH_MSG_OSD_OP)
5589		encode_request_finish(msg);
5590}
5591
5592static int osd_sign_message(struct ceph_msg *msg)
5593{
5594	struct ceph_osd *o = msg->con->private;
5595	struct ceph_auth_handshake *auth = &o->o_auth;
5596
5597	return ceph_auth_sign_message(auth, msg);
5598}
5599
5600static int osd_check_message_signature(struct ceph_msg *msg)
5601{
5602	struct ceph_osd *o = msg->con->private;
5603	struct ceph_auth_handshake *auth = &o->o_auth;
5604
5605	return ceph_auth_check_message_signature(auth, msg);
5606}
5607
5608static const struct ceph_connection_operations osd_con_ops = {
5609	.get = get_osd_con,
5610	.put = put_osd_con,
5611	.dispatch = dispatch,
5612	.get_authorizer = get_authorizer,
5613	.add_authorizer_challenge = add_authorizer_challenge,
5614	.verify_authorizer_reply = verify_authorizer_reply,
5615	.invalidate_authorizer = invalidate_authorizer,
5616	.alloc_msg = alloc_msg,
5617	.reencode_message = osd_reencode_message,
5618	.sign_message = osd_sign_message,
5619	.check_message_signature = osd_check_message_signature,
5620	.fault = osd_fault,
5621};
5622