libceph: introduce get_osdmap_client_data_v()
[firefly-linux-kernel-4.4.55.git] / net / ceph / osdmap.c
1
2 #include <linux/ceph/ceph_debug.h>
3
4 #include <linux/module.h>
5 #include <linux/slab.h>
6 #include <asm/div64.h>
7
8 #include <linux/ceph/libceph.h>
9 #include <linux/ceph/osdmap.h>
10 #include <linux/ceph/decode.h>
11 #include <linux/crush/hash.h>
12 #include <linux/crush/mapper.h>
13
14 char *ceph_osdmap_state_str(char *str, int len, int state)
15 {
16         if (!len)
17                 return str;
18
19         if ((state & CEPH_OSD_EXISTS) && (state & CEPH_OSD_UP))
20                 snprintf(str, len, "exists, up");
21         else if (state & CEPH_OSD_EXISTS)
22                 snprintf(str, len, "exists");
23         else if (state & CEPH_OSD_UP)
24                 snprintf(str, len, "up");
25         else
26                 snprintf(str, len, "doesn't exist");
27
28         return str;
29 }
30
31 /* maps */
32
33 static int calc_bits_of(unsigned int t)
34 {
35         int b = 0;
36         while (t) {
37                 t = t >> 1;
38                 b++;
39         }
40         return b;
41 }
42
43 /*
44  * the foo_mask is the smallest value 2^n-1 that is >= foo.
45  */
46 static void calc_pg_masks(struct ceph_pg_pool_info *pi)
47 {
48         pi->pg_num_mask = (1 << calc_bits_of(pi->pg_num-1)) - 1;
49         pi->pgp_num_mask = (1 << calc_bits_of(pi->pgp_num-1)) - 1;
50 }
51
52 /*
53  * decode crush map
54  */
55 static int crush_decode_uniform_bucket(void **p, void *end,
56                                        struct crush_bucket_uniform *b)
57 {
58         dout("crush_decode_uniform_bucket %p to %p\n", *p, end);
59         ceph_decode_need(p, end, (1+b->h.size) * sizeof(u32), bad);
60         b->item_weight = ceph_decode_32(p);
61         return 0;
62 bad:
63         return -EINVAL;
64 }
65
66 static int crush_decode_list_bucket(void **p, void *end,
67                                     struct crush_bucket_list *b)
68 {
69         int j;
70         dout("crush_decode_list_bucket %p to %p\n", *p, end);
71         b->item_weights = kcalloc(b->h.size, sizeof(u32), GFP_NOFS);
72         if (b->item_weights == NULL)
73                 return -ENOMEM;
74         b->sum_weights = kcalloc(b->h.size, sizeof(u32), GFP_NOFS);
75         if (b->sum_weights == NULL)
76                 return -ENOMEM;
77         ceph_decode_need(p, end, 2 * b->h.size * sizeof(u32), bad);
78         for (j = 0; j < b->h.size; j++) {
79                 b->item_weights[j] = ceph_decode_32(p);
80                 b->sum_weights[j] = ceph_decode_32(p);
81         }
82         return 0;
83 bad:
84         return -EINVAL;
85 }
86
87 static int crush_decode_tree_bucket(void **p, void *end,
88                                     struct crush_bucket_tree *b)
89 {
90         int j;
91         dout("crush_decode_tree_bucket %p to %p\n", *p, end);
92         ceph_decode_32_safe(p, end, b->num_nodes, bad);
93         b->node_weights = kcalloc(b->num_nodes, sizeof(u32), GFP_NOFS);
94         if (b->node_weights == NULL)
95                 return -ENOMEM;
96         ceph_decode_need(p, end, b->num_nodes * sizeof(u32), bad);
97         for (j = 0; j < b->num_nodes; j++)
98                 b->node_weights[j] = ceph_decode_32(p);
99         return 0;
100 bad:
101         return -EINVAL;
102 }
103
104 static int crush_decode_straw_bucket(void **p, void *end,
105                                      struct crush_bucket_straw *b)
106 {
107         int j;
108         dout("crush_decode_straw_bucket %p to %p\n", *p, end);
109         b->item_weights = kcalloc(b->h.size, sizeof(u32), GFP_NOFS);
110         if (b->item_weights == NULL)
111                 return -ENOMEM;
112         b->straws = kcalloc(b->h.size, sizeof(u32), GFP_NOFS);
113         if (b->straws == NULL)
114                 return -ENOMEM;
115         ceph_decode_need(p, end, 2 * b->h.size * sizeof(u32), bad);
116         for (j = 0; j < b->h.size; j++) {
117                 b->item_weights[j] = ceph_decode_32(p);
118                 b->straws[j] = ceph_decode_32(p);
119         }
120         return 0;
121 bad:
122         return -EINVAL;
123 }
124
125 static int skip_name_map(void **p, void *end)
126 {
127         int len;
128         ceph_decode_32_safe(p, end, len ,bad);
129         while (len--) {
130                 int strlen;
131                 *p += sizeof(u32);
132                 ceph_decode_32_safe(p, end, strlen, bad);
133                 *p += strlen;
134 }
135         return 0;
136 bad:
137         return -EINVAL;
138 }
139
140 static struct crush_map *crush_decode(void *pbyval, void *end)
141 {
142         struct crush_map *c;
143         int err = -EINVAL;
144         int i, j;
145         void **p = &pbyval;
146         void *start = pbyval;
147         u32 magic;
148         u32 num_name_maps;
149
150         dout("crush_decode %p to %p len %d\n", *p, end, (int)(end - *p));
151
152         c = kzalloc(sizeof(*c), GFP_NOFS);
153         if (c == NULL)
154                 return ERR_PTR(-ENOMEM);
155
156         /* set tunables to default values */
157         c->choose_local_tries = 2;
158         c->choose_local_fallback_tries = 5;
159         c->choose_total_tries = 19;
160         c->chooseleaf_descend_once = 0;
161
162         ceph_decode_need(p, end, 4*sizeof(u32), bad);
163         magic = ceph_decode_32(p);
164         if (magic != CRUSH_MAGIC) {
165                 pr_err("crush_decode magic %x != current %x\n",
166                        (unsigned int)magic, (unsigned int)CRUSH_MAGIC);
167                 goto bad;
168         }
169         c->max_buckets = ceph_decode_32(p);
170         c->max_rules = ceph_decode_32(p);
171         c->max_devices = ceph_decode_32(p);
172
173         c->buckets = kcalloc(c->max_buckets, sizeof(*c->buckets), GFP_NOFS);
174         if (c->buckets == NULL)
175                 goto badmem;
176         c->rules = kcalloc(c->max_rules, sizeof(*c->rules), GFP_NOFS);
177         if (c->rules == NULL)
178                 goto badmem;
179
180         /* buckets */
181         for (i = 0; i < c->max_buckets; i++) {
182                 int size = 0;
183                 u32 alg;
184                 struct crush_bucket *b;
185
186                 ceph_decode_32_safe(p, end, alg, bad);
187                 if (alg == 0) {
188                         c->buckets[i] = NULL;
189                         continue;
190                 }
191                 dout("crush_decode bucket %d off %x %p to %p\n",
192                      i, (int)(*p-start), *p, end);
193
194                 switch (alg) {
195                 case CRUSH_BUCKET_UNIFORM:
196                         size = sizeof(struct crush_bucket_uniform);
197                         break;
198                 case CRUSH_BUCKET_LIST:
199                         size = sizeof(struct crush_bucket_list);
200                         break;
201                 case CRUSH_BUCKET_TREE:
202                         size = sizeof(struct crush_bucket_tree);
203                         break;
204                 case CRUSH_BUCKET_STRAW:
205                         size = sizeof(struct crush_bucket_straw);
206                         break;
207                 default:
208                         err = -EINVAL;
209                         goto bad;
210                 }
211                 BUG_ON(size == 0);
212                 b = c->buckets[i] = kzalloc(size, GFP_NOFS);
213                 if (b == NULL)
214                         goto badmem;
215
216                 ceph_decode_need(p, end, 4*sizeof(u32), bad);
217                 b->id = ceph_decode_32(p);
218                 b->type = ceph_decode_16(p);
219                 b->alg = ceph_decode_8(p);
220                 b->hash = ceph_decode_8(p);
221                 b->weight = ceph_decode_32(p);
222                 b->size = ceph_decode_32(p);
223
224                 dout("crush_decode bucket size %d off %x %p to %p\n",
225                      b->size, (int)(*p-start), *p, end);
226
227                 b->items = kcalloc(b->size, sizeof(__s32), GFP_NOFS);
228                 if (b->items == NULL)
229                         goto badmem;
230                 b->perm = kcalloc(b->size, sizeof(u32), GFP_NOFS);
231                 if (b->perm == NULL)
232                         goto badmem;
233                 b->perm_n = 0;
234
235                 ceph_decode_need(p, end, b->size*sizeof(u32), bad);
236                 for (j = 0; j < b->size; j++)
237                         b->items[j] = ceph_decode_32(p);
238
239                 switch (b->alg) {
240                 case CRUSH_BUCKET_UNIFORM:
241                         err = crush_decode_uniform_bucket(p, end,
242                                   (struct crush_bucket_uniform *)b);
243                         if (err < 0)
244                                 goto bad;
245                         break;
246                 case CRUSH_BUCKET_LIST:
247                         err = crush_decode_list_bucket(p, end,
248                                (struct crush_bucket_list *)b);
249                         if (err < 0)
250                                 goto bad;
251                         break;
252                 case CRUSH_BUCKET_TREE:
253                         err = crush_decode_tree_bucket(p, end,
254                                 (struct crush_bucket_tree *)b);
255                         if (err < 0)
256                                 goto bad;
257                         break;
258                 case CRUSH_BUCKET_STRAW:
259                         err = crush_decode_straw_bucket(p, end,
260                                 (struct crush_bucket_straw *)b);
261                         if (err < 0)
262                                 goto bad;
263                         break;
264                 }
265         }
266
267         /* rules */
268         dout("rule vec is %p\n", c->rules);
269         for (i = 0; i < c->max_rules; i++) {
270                 u32 yes;
271                 struct crush_rule *r;
272
273                 ceph_decode_32_safe(p, end, yes, bad);
274                 if (!yes) {
275                         dout("crush_decode NO rule %d off %x %p to %p\n",
276                              i, (int)(*p-start), *p, end);
277                         c->rules[i] = NULL;
278                         continue;
279                 }
280
281                 dout("crush_decode rule %d off %x %p to %p\n",
282                      i, (int)(*p-start), *p, end);
283
284                 /* len */
285                 ceph_decode_32_safe(p, end, yes, bad);
286 #if BITS_PER_LONG == 32
287                 err = -EINVAL;
288                 if (yes > (ULONG_MAX - sizeof(*r))
289                           / sizeof(struct crush_rule_step))
290                         goto bad;
291 #endif
292                 r = c->rules[i] = kmalloc(sizeof(*r) +
293                                           yes*sizeof(struct crush_rule_step),
294                                           GFP_NOFS);
295                 if (r == NULL)
296                         goto badmem;
297                 dout(" rule %d is at %p\n", i, r);
298                 r->len = yes;
299                 ceph_decode_copy_safe(p, end, &r->mask, 4, bad); /* 4 u8's */
300                 ceph_decode_need(p, end, r->len*3*sizeof(u32), bad);
301                 for (j = 0; j < r->len; j++) {
302                         r->steps[j].op = ceph_decode_32(p);
303                         r->steps[j].arg1 = ceph_decode_32(p);
304                         r->steps[j].arg2 = ceph_decode_32(p);
305                 }
306         }
307
308         /* ignore trailing name maps. */
309         for (num_name_maps = 0; num_name_maps < 3; num_name_maps++) {
310                 err = skip_name_map(p, end);
311                 if (err < 0)
312                         goto done;
313         }
314
315         /* tunables */
316         ceph_decode_need(p, end, 3*sizeof(u32), done);
317         c->choose_local_tries = ceph_decode_32(p);
318         c->choose_local_fallback_tries =  ceph_decode_32(p);
319         c->choose_total_tries = ceph_decode_32(p);
320         dout("crush decode tunable choose_local_tries = %d",
321              c->choose_local_tries);
322         dout("crush decode tunable choose_local_fallback_tries = %d",
323              c->choose_local_fallback_tries);
324         dout("crush decode tunable choose_total_tries = %d",
325              c->choose_total_tries);
326
327         ceph_decode_need(p, end, sizeof(u32), done);
328         c->chooseleaf_descend_once = ceph_decode_32(p);
329         dout("crush decode tunable chooseleaf_descend_once = %d",
330              c->chooseleaf_descend_once);
331
332 done:
333         dout("crush_decode success\n");
334         return c;
335
336 badmem:
337         err = -ENOMEM;
338 bad:
339         dout("crush_decode fail %d\n", err);
340         crush_destroy(c);
341         return ERR_PTR(err);
342 }
343
344 /*
345  * rbtree of pg_mapping for handling pg_temp (explicit mapping of pgid
346  * to a set of osds)
347  */
348 static int pgid_cmp(struct ceph_pg l, struct ceph_pg r)
349 {
350         if (l.pool < r.pool)
351                 return -1;
352         if (l.pool > r.pool)
353                 return 1;
354         if (l.seed < r.seed)
355                 return -1;
356         if (l.seed > r.seed)
357                 return 1;
358         return 0;
359 }
360
361 static int __insert_pg_mapping(struct ceph_pg_mapping *new,
362                                struct rb_root *root)
363 {
364         struct rb_node **p = &root->rb_node;
365         struct rb_node *parent = NULL;
366         struct ceph_pg_mapping *pg = NULL;
367         int c;
368
369         dout("__insert_pg_mapping %llx %p\n", *(u64 *)&new->pgid, new);
370         while (*p) {
371                 parent = *p;
372                 pg = rb_entry(parent, struct ceph_pg_mapping, node);
373                 c = pgid_cmp(new->pgid, pg->pgid);
374                 if (c < 0)
375                         p = &(*p)->rb_left;
376                 else if (c > 0)
377                         p = &(*p)->rb_right;
378                 else
379                         return -EEXIST;
380         }
381
382         rb_link_node(&new->node, parent, p);
383         rb_insert_color(&new->node, root);
384         return 0;
385 }
386
387 static struct ceph_pg_mapping *__lookup_pg_mapping(struct rb_root *root,
388                                                    struct ceph_pg pgid)
389 {
390         struct rb_node *n = root->rb_node;
391         struct ceph_pg_mapping *pg;
392         int c;
393
394         while (n) {
395                 pg = rb_entry(n, struct ceph_pg_mapping, node);
396                 c = pgid_cmp(pgid, pg->pgid);
397                 if (c < 0) {
398                         n = n->rb_left;
399                 } else if (c > 0) {
400                         n = n->rb_right;
401                 } else {
402                         dout("__lookup_pg_mapping %lld.%x got %p\n",
403                              pgid.pool, pgid.seed, pg);
404                         return pg;
405                 }
406         }
407         return NULL;
408 }
409
410 static int __remove_pg_mapping(struct rb_root *root, struct ceph_pg pgid)
411 {
412         struct ceph_pg_mapping *pg = __lookup_pg_mapping(root, pgid);
413
414         if (pg) {
415                 dout("__remove_pg_mapping %lld.%x %p\n", pgid.pool, pgid.seed,
416                      pg);
417                 rb_erase(&pg->node, root);
418                 kfree(pg);
419                 return 0;
420         }
421         dout("__remove_pg_mapping %lld.%x dne\n", pgid.pool, pgid.seed);
422         return -ENOENT;
423 }
424
425 /*
426  * rbtree of pg pool info
427  */
428 static int __insert_pg_pool(struct rb_root *root, struct ceph_pg_pool_info *new)
429 {
430         struct rb_node **p = &root->rb_node;
431         struct rb_node *parent = NULL;
432         struct ceph_pg_pool_info *pi = NULL;
433
434         while (*p) {
435                 parent = *p;
436                 pi = rb_entry(parent, struct ceph_pg_pool_info, node);
437                 if (new->id < pi->id)
438                         p = &(*p)->rb_left;
439                 else if (new->id > pi->id)
440                         p = &(*p)->rb_right;
441                 else
442                         return -EEXIST;
443         }
444
445         rb_link_node(&new->node, parent, p);
446         rb_insert_color(&new->node, root);
447         return 0;
448 }
449
450 static struct ceph_pg_pool_info *__lookup_pg_pool(struct rb_root *root, u64 id)
451 {
452         struct ceph_pg_pool_info *pi;
453         struct rb_node *n = root->rb_node;
454
455         while (n) {
456                 pi = rb_entry(n, struct ceph_pg_pool_info, node);
457                 if (id < pi->id)
458                         n = n->rb_left;
459                 else if (id > pi->id)
460                         n = n->rb_right;
461                 else
462                         return pi;
463         }
464         return NULL;
465 }
466
467 struct ceph_pg_pool_info *ceph_pg_pool_by_id(struct ceph_osdmap *map, u64 id)
468 {
469         return __lookup_pg_pool(&map->pg_pools, id);
470 }
471
472 const char *ceph_pg_pool_name_by_id(struct ceph_osdmap *map, u64 id)
473 {
474         struct ceph_pg_pool_info *pi;
475
476         if (id == CEPH_NOPOOL)
477                 return NULL;
478
479         if (WARN_ON_ONCE(id > (u64) INT_MAX))
480                 return NULL;
481
482         pi = __lookup_pg_pool(&map->pg_pools, (int) id);
483
484         return pi ? pi->name : NULL;
485 }
486 EXPORT_SYMBOL(ceph_pg_pool_name_by_id);
487
488 int ceph_pg_poolid_by_name(struct ceph_osdmap *map, const char *name)
489 {
490         struct rb_node *rbp;
491
492         for (rbp = rb_first(&map->pg_pools); rbp; rbp = rb_next(rbp)) {
493                 struct ceph_pg_pool_info *pi =
494                         rb_entry(rbp, struct ceph_pg_pool_info, node);
495                 if (pi->name && strcmp(pi->name, name) == 0)
496                         return pi->id;
497         }
498         return -ENOENT;
499 }
500 EXPORT_SYMBOL(ceph_pg_poolid_by_name);
501
502 static void __remove_pg_pool(struct rb_root *root, struct ceph_pg_pool_info *pi)
503 {
504         rb_erase(&pi->node, root);
505         kfree(pi->name);
506         kfree(pi);
507 }
508
509 static int decode_pool(void **p, void *end, struct ceph_pg_pool_info *pi)
510 {
511         u8 ev, cv;
512         unsigned len, num;
513         void *pool_end;
514
515         ceph_decode_need(p, end, 2 + 4, bad);
516         ev = ceph_decode_8(p);  /* encoding version */
517         cv = ceph_decode_8(p); /* compat version */
518         if (ev < 5) {
519                 pr_warning("got v %d < 5 cv %d of ceph_pg_pool\n", ev, cv);
520                 return -EINVAL;
521         }
522         if (cv > 9) {
523                 pr_warning("got v %d cv %d > 9 of ceph_pg_pool\n", ev, cv);
524                 return -EINVAL;
525         }
526         len = ceph_decode_32(p);
527         ceph_decode_need(p, end, len, bad);
528         pool_end = *p + len;
529
530         pi->type = ceph_decode_8(p);
531         pi->size = ceph_decode_8(p);
532         pi->crush_ruleset = ceph_decode_8(p);
533         pi->object_hash = ceph_decode_8(p);
534
535         pi->pg_num = ceph_decode_32(p);
536         pi->pgp_num = ceph_decode_32(p);
537
538         *p += 4 + 4;  /* skip lpg* */
539         *p += 4;      /* skip last_change */
540         *p += 8 + 4;  /* skip snap_seq, snap_epoch */
541
542         /* skip snaps */
543         num = ceph_decode_32(p);
544         while (num--) {
545                 *p += 8;  /* snapid key */
546                 *p += 1 + 1; /* versions */
547                 len = ceph_decode_32(p);
548                 *p += len;
549         }
550
551         /* skip removed_snaps */
552         num = ceph_decode_32(p);
553         *p += num * (8 + 8);
554
555         *p += 8;  /* skip auid */
556         pi->flags = ceph_decode_64(p);
557         *p += 4;  /* skip crash_replay_interval */
558
559         if (ev >= 7)
560                 *p += 1;  /* skip min_size */
561
562         if (ev >= 8)
563                 *p += 8 + 8;  /* skip quota_max_* */
564
565         if (ev >= 9) {
566                 /* skip tiers */
567                 num = ceph_decode_32(p);
568                 *p += num * 8;
569
570                 *p += 8;  /* skip tier_of */
571                 *p += 1;  /* skip cache_mode */
572
573                 pi->read_tier = ceph_decode_64(p);
574                 pi->write_tier = ceph_decode_64(p);
575         } else {
576                 pi->read_tier = -1;
577                 pi->write_tier = -1;
578         }
579
580         /* ignore the rest */
581
582         *p = pool_end;
583         calc_pg_masks(pi);
584         return 0;
585
586 bad:
587         return -EINVAL;
588 }
589
590 static int decode_pool_names(void **p, void *end, struct ceph_osdmap *map)
591 {
592         struct ceph_pg_pool_info *pi;
593         u32 num, len;
594         u64 pool;
595
596         ceph_decode_32_safe(p, end, num, bad);
597         dout(" %d pool names\n", num);
598         while (num--) {
599                 ceph_decode_64_safe(p, end, pool, bad);
600                 ceph_decode_32_safe(p, end, len, bad);
601                 dout("  pool %llu len %d\n", pool, len);
602                 ceph_decode_need(p, end, len, bad);
603                 pi = __lookup_pg_pool(&map->pg_pools, pool);
604                 if (pi) {
605                         char *name = kstrndup(*p, len, GFP_NOFS);
606
607                         if (!name)
608                                 return -ENOMEM;
609                         kfree(pi->name);
610                         pi->name = name;
611                         dout("  name is %s\n", pi->name);
612                 }
613                 *p += len;
614         }
615         return 0;
616
617 bad:
618         return -EINVAL;
619 }
620
621 /*
622  * osd map
623  */
624 void ceph_osdmap_destroy(struct ceph_osdmap *map)
625 {
626         dout("osdmap_destroy %p\n", map);
627         if (map->crush)
628                 crush_destroy(map->crush);
629         while (!RB_EMPTY_ROOT(&map->pg_temp)) {
630                 struct ceph_pg_mapping *pg =
631                         rb_entry(rb_first(&map->pg_temp),
632                                  struct ceph_pg_mapping, node);
633                 rb_erase(&pg->node, &map->pg_temp);
634                 kfree(pg);
635         }
636         while (!RB_EMPTY_ROOT(&map->pg_pools)) {
637                 struct ceph_pg_pool_info *pi =
638                         rb_entry(rb_first(&map->pg_pools),
639                                  struct ceph_pg_pool_info, node);
640                 __remove_pg_pool(&map->pg_pools, pi);
641         }
642         kfree(map->osd_state);
643         kfree(map->osd_weight);
644         kfree(map->osd_addr);
645         kfree(map);
646 }
647
648 /*
649  * Adjust max_osd value, (re)allocate arrays.
650  *
651  * The new elements are properly initialized.
652  */
653 static int osdmap_set_max_osd(struct ceph_osdmap *map, int max)
654 {
655         u8 *state;
656         u32 *weight;
657         struct ceph_entity_addr *addr;
658         int i;
659
660         state = krealloc(map->osd_state, max*sizeof(*state), GFP_NOFS);
661         weight = krealloc(map->osd_weight, max*sizeof(*weight), GFP_NOFS);
662         addr = krealloc(map->osd_addr, max*sizeof(*addr), GFP_NOFS);
663         if (!state || !weight || !addr) {
664                 kfree(state);
665                 kfree(weight);
666                 kfree(addr);
667
668                 return -ENOMEM;
669         }
670
671         for (i = map->max_osd; i < max; i++) {
672                 state[i] = 0;
673                 weight[i] = CEPH_OSD_OUT;
674                 memset(addr + i, 0, sizeof(*addr));
675         }
676
677         map->osd_state = state;
678         map->osd_weight = weight;
679         map->osd_addr = addr;
680
681         map->max_osd = max;
682
683         return 0;
684 }
685
686 #define OSDMAP_WRAPPER_COMPAT_VER       7
687 #define OSDMAP_CLIENT_DATA_COMPAT_VER   1
688
689 /*
690  * Return 0 or error.  On success, *v is set to 0 for old (v6) osdmaps,
691  * to struct_v of the client_data section for new (v7 and above)
692  * osdmaps.
693  */
694 static int get_osdmap_client_data_v(void **p, void *end,
695                                     const char *prefix, u8 *v)
696 {
697         u8 struct_v;
698
699         ceph_decode_8_safe(p, end, struct_v, e_inval);
700         if (struct_v >= 7) {
701                 u8 struct_compat;
702
703                 ceph_decode_8_safe(p, end, struct_compat, e_inval);
704                 if (struct_compat > OSDMAP_WRAPPER_COMPAT_VER) {
705                         pr_warning("got v %d cv %d > %d of %s ceph_osdmap\n",
706                                    struct_v, struct_compat,
707                                    OSDMAP_WRAPPER_COMPAT_VER, prefix);
708                         return -EINVAL;
709                 }
710                 *p += 4; /* ignore wrapper struct_len */
711
712                 ceph_decode_8_safe(p, end, struct_v, e_inval);
713                 ceph_decode_8_safe(p, end, struct_compat, e_inval);
714                 if (struct_compat > OSDMAP_CLIENT_DATA_COMPAT_VER) {
715                         pr_warning("got v %d cv %d > %d of %s ceph_osdmap client data\n",
716                                    struct_v, struct_compat,
717                                    OSDMAP_CLIENT_DATA_COMPAT_VER, prefix);
718                         return -EINVAL;
719                 }
720                 *p += 4; /* ignore client data struct_len */
721         } else {
722                 u16 version;
723
724                 *p -= 1;
725                 ceph_decode_16_safe(p, end, version, e_inval);
726                 if (version < 6) {
727                         pr_warning("got v %d < 6 of %s ceph_osdmap\n", version,
728                                    prefix);
729                         return -EINVAL;
730                 }
731
732                 /* old osdmap enconding */
733                 struct_v = 0;
734         }
735
736         *v = struct_v;
737         return 0;
738
739 e_inval:
740         return -EINVAL;
741 }
742
743 static int __decode_pools(void **p, void *end, struct ceph_osdmap *map,
744                           bool incremental)
745 {
746         u32 n;
747
748         ceph_decode_32_safe(p, end, n, e_inval);
749         while (n--) {
750                 struct ceph_pg_pool_info *pi;
751                 u64 pool;
752                 int ret;
753
754                 ceph_decode_64_safe(p, end, pool, e_inval);
755
756                 pi = __lookup_pg_pool(&map->pg_pools, pool);
757                 if (!incremental || !pi) {
758                         pi = kzalloc(sizeof(*pi), GFP_NOFS);
759                         if (!pi)
760                                 return -ENOMEM;
761
762                         pi->id = pool;
763
764                         ret = __insert_pg_pool(&map->pg_pools, pi);
765                         if (ret) {
766                                 kfree(pi);
767                                 return ret;
768                         }
769                 }
770
771                 ret = decode_pool(p, end, pi);
772                 if (ret)
773                         return ret;
774         }
775
776         return 0;
777
778 e_inval:
779         return -EINVAL;
780 }
781
782 static int decode_pools(void **p, void *end, struct ceph_osdmap *map)
783 {
784         return __decode_pools(p, end, map, false);
785 }
786
787 static int decode_new_pools(void **p, void *end, struct ceph_osdmap *map)
788 {
789         return __decode_pools(p, end, map, true);
790 }
791
792 static int __decode_pg_temp(void **p, void *end, struct ceph_osdmap *map,
793                             bool incremental)
794 {
795         u32 n;
796
797         ceph_decode_32_safe(p, end, n, e_inval);
798         while (n--) {
799                 struct ceph_pg pgid;
800                 u32 len, i;
801                 int ret;
802
803                 ret = ceph_decode_pgid(p, end, &pgid);
804                 if (ret)
805                         return ret;
806
807                 ceph_decode_32_safe(p, end, len, e_inval);
808
809                 ret = __remove_pg_mapping(&map->pg_temp, pgid);
810                 BUG_ON(!incremental && ret != -ENOENT);
811
812                 if (!incremental || len > 0) {
813                         struct ceph_pg_mapping *pg;
814
815                         ceph_decode_need(p, end, len*sizeof(u32), e_inval);
816
817                         if (len > (UINT_MAX - sizeof(*pg)) / sizeof(u32))
818                                 return -EINVAL;
819
820                         pg = kzalloc(sizeof(*pg) + len*sizeof(u32), GFP_NOFS);
821                         if (!pg)
822                                 return -ENOMEM;
823
824                         pg->pgid = pgid;
825                         pg->len = len;
826                         for (i = 0; i < len; i++)
827                                 pg->osds[i] = ceph_decode_32(p);
828
829                         ret = __insert_pg_mapping(pg, &map->pg_temp);
830                         if (ret) {
831                                 kfree(pg);
832                                 return ret;
833                         }
834                 }
835         }
836
837         return 0;
838
839 e_inval:
840         return -EINVAL;
841 }
842
843 static int decode_pg_temp(void **p, void *end, struct ceph_osdmap *map)
844 {
845         return __decode_pg_temp(p, end, map, false);
846 }
847
848 static int decode_new_pg_temp(void **p, void *end, struct ceph_osdmap *map)
849 {
850         return __decode_pg_temp(p, end, map, true);
851 }
852
853 /*
854  * decode a full map.
855  */
856 static int osdmap_decode(void **p, void *end, struct ceph_osdmap *map)
857 {
858         u8 struct_v;
859         u32 epoch = 0;
860         void *start = *p;
861         u32 max;
862         u32 len, i;
863         int err;
864
865         dout("%s %p to %p len %d\n", __func__, *p, end, (int)(end - *p));
866
867         err = get_osdmap_client_data_v(p, end, "full", &struct_v);
868         if (err)
869                 goto bad;
870
871         /* fsid, epoch, created, modified */
872         ceph_decode_need(p, end, sizeof(map->fsid) + sizeof(u32) +
873                          sizeof(map->created) + sizeof(map->modified), e_inval);
874         ceph_decode_copy(p, &map->fsid, sizeof(map->fsid));
875         epoch = map->epoch = ceph_decode_32(p);
876         ceph_decode_copy(p, &map->created, sizeof(map->created));
877         ceph_decode_copy(p, &map->modified, sizeof(map->modified));
878
879         /* pools */
880         err = decode_pools(p, end, map);
881         if (err)
882                 goto bad;
883
884         /* pool_name */
885         err = decode_pool_names(p, end, map);
886         if (err)
887                 goto bad;
888
889         ceph_decode_32_safe(p, end, map->pool_max, e_inval);
890
891         ceph_decode_32_safe(p, end, map->flags, e_inval);
892
893         /* max_osd */
894         ceph_decode_32_safe(p, end, max, e_inval);
895
896         /* (re)alloc osd arrays */
897         err = osdmap_set_max_osd(map, max);
898         if (err)
899                 goto bad;
900
901         /* osd_state, osd_weight, osd_addrs->client_addr */
902         ceph_decode_need(p, end, 3*sizeof(u32) +
903                          map->max_osd*(1 + sizeof(*map->osd_weight) +
904                                        sizeof(*map->osd_addr)), e_inval);
905
906         if (ceph_decode_32(p) != map->max_osd)
907                 goto e_inval;
908
909         ceph_decode_copy(p, map->osd_state, map->max_osd);
910
911         if (ceph_decode_32(p) != map->max_osd)
912                 goto e_inval;
913
914         for (i = 0; i < map->max_osd; i++)
915                 map->osd_weight[i] = ceph_decode_32(p);
916
917         if (ceph_decode_32(p) != map->max_osd)
918                 goto e_inval;
919
920         ceph_decode_copy(p, map->osd_addr, map->max_osd*sizeof(*map->osd_addr));
921         for (i = 0; i < map->max_osd; i++)
922                 ceph_decode_addr(&map->osd_addr[i]);
923
924         /* pg_temp */
925         err = decode_pg_temp(p, end, map);
926         if (err)
927                 goto bad;
928
929         /* crush */
930         ceph_decode_32_safe(p, end, len, e_inval);
931         map->crush = crush_decode(*p, min(*p + len, end));
932         if (IS_ERR(map->crush)) {
933                 err = PTR_ERR(map->crush);
934                 map->crush = NULL;
935                 goto bad;
936         }
937         *p += len;
938
939         /* ignore the rest */
940         *p = end;
941
942         dout("full osdmap epoch %d max_osd %d\n", map->epoch, map->max_osd);
943         return 0;
944
945 e_inval:
946         err = -EINVAL;
947 bad:
948         pr_err("corrupt full osdmap (%d) epoch %d off %d (%p of %p-%p)\n",
949                err, epoch, (int)(*p - start), *p, start, end);
950         print_hex_dump(KERN_DEBUG, "osdmap: ",
951                        DUMP_PREFIX_OFFSET, 16, 1,
952                        start, end - start, true);
953         return err;
954 }
955
956 /*
957  * Allocate and decode a full map.
958  */
959 struct ceph_osdmap *ceph_osdmap_decode(void **p, void *end)
960 {
961         struct ceph_osdmap *map;
962         int ret;
963
964         map = kzalloc(sizeof(*map), GFP_NOFS);
965         if (!map)
966                 return ERR_PTR(-ENOMEM);
967
968         map->pg_temp = RB_ROOT;
969         mutex_init(&map->crush_scratch_mutex);
970
971         ret = osdmap_decode(p, end, map);
972         if (ret) {
973                 ceph_osdmap_destroy(map);
974                 return ERR_PTR(ret);
975         }
976
977         return map;
978 }
979
980 /*
981  * decode and apply an incremental map update.
982  */
983 struct ceph_osdmap *osdmap_apply_incremental(void **p, void *end,
984                                              struct ceph_osdmap *map,
985                                              struct ceph_messenger *msgr)
986 {
987         struct crush_map *newcrush = NULL;
988         struct ceph_fsid fsid;
989         u32 epoch = 0;
990         struct ceph_timespec modified;
991         s32 len;
992         u64 pool;
993         __s64 new_pool_max;
994         __s32 new_flags, max;
995         void *start = *p;
996         int err;
997         u8 struct_v;
998
999         dout("%s %p to %p len %d\n", __func__, *p, end, (int)(end - *p));
1000
1001         err = get_osdmap_client_data_v(p, end, "inc", &struct_v);
1002         if (err)
1003                 goto bad;
1004
1005         /* fsid, epoch, modified, new_pool_max, new_flags */
1006         ceph_decode_need(p, end, sizeof(fsid) + sizeof(u32) + sizeof(modified) +
1007                          sizeof(u64) + sizeof(u32), e_inval);
1008         ceph_decode_copy(p, &fsid, sizeof(fsid));
1009         epoch = ceph_decode_32(p);
1010         BUG_ON(epoch != map->epoch+1);
1011         ceph_decode_copy(p, &modified, sizeof(modified));
1012         new_pool_max = ceph_decode_64(p);
1013         new_flags = ceph_decode_32(p);
1014
1015         /* full map? */
1016         ceph_decode_32_safe(p, end, len, e_inval);
1017         if (len > 0) {
1018                 dout("apply_incremental full map len %d, %p to %p\n",
1019                      len, *p, end);
1020                 return ceph_osdmap_decode(p, min(*p+len, end));
1021         }
1022
1023         /* new crush? */
1024         ceph_decode_32_safe(p, end, len, e_inval);
1025         if (len > 0) {
1026                 newcrush = crush_decode(*p, min(*p+len, end));
1027                 if (IS_ERR(newcrush)) {
1028                         err = PTR_ERR(newcrush);
1029                         newcrush = NULL;
1030                         goto bad;
1031                 }
1032                 *p += len;
1033         }
1034
1035         /* new flags? */
1036         if (new_flags >= 0)
1037                 map->flags = new_flags;
1038         if (new_pool_max >= 0)
1039                 map->pool_max = new_pool_max;
1040
1041         /* new max? */
1042         ceph_decode_32_safe(p, end, max, e_inval);
1043         if (max >= 0) {
1044                 err = osdmap_set_max_osd(map, max);
1045                 if (err)
1046                         goto bad;
1047         }
1048
1049         map->epoch++;
1050         map->modified = modified;
1051         if (newcrush) {
1052                 if (map->crush)
1053                         crush_destroy(map->crush);
1054                 map->crush = newcrush;
1055                 newcrush = NULL;
1056         }
1057
1058         /* new_pools */
1059         err = decode_new_pools(p, end, map);
1060         if (err)
1061                 goto bad;
1062
1063         /* new_pool_names */
1064         err = decode_pool_names(p, end, map);
1065         if (err)
1066                 goto bad;
1067
1068         /* old_pool */
1069         ceph_decode_32_safe(p, end, len, e_inval);
1070         while (len--) {
1071                 struct ceph_pg_pool_info *pi;
1072
1073                 ceph_decode_64_safe(p, end, pool, e_inval);
1074                 pi = __lookup_pg_pool(&map->pg_pools, pool);
1075                 if (pi)
1076                         __remove_pg_pool(&map->pg_pools, pi);
1077         }
1078
1079         /* new_up */
1080         ceph_decode_32_safe(p, end, len, e_inval);
1081         while (len--) {
1082                 u32 osd;
1083                 struct ceph_entity_addr addr;
1084                 ceph_decode_32_safe(p, end, osd, e_inval);
1085                 ceph_decode_copy_safe(p, end, &addr, sizeof(addr), e_inval);
1086                 ceph_decode_addr(&addr);
1087                 pr_info("osd%d up\n", osd);
1088                 BUG_ON(osd >= map->max_osd);
1089                 map->osd_state[osd] |= CEPH_OSD_UP;
1090                 map->osd_addr[osd] = addr;
1091         }
1092
1093         /* new_state */
1094         ceph_decode_32_safe(p, end, len, e_inval);
1095         while (len--) {
1096                 u32 osd;
1097                 u8 xorstate;
1098                 ceph_decode_32_safe(p, end, osd, e_inval);
1099                 xorstate = **(u8 **)p;
1100                 (*p)++;  /* clean flag */
1101                 if (xorstate == 0)
1102                         xorstate = CEPH_OSD_UP;
1103                 if (xorstate & CEPH_OSD_UP)
1104                         pr_info("osd%d down\n", osd);
1105                 if (osd < map->max_osd)
1106                         map->osd_state[osd] ^= xorstate;
1107         }
1108
1109         /* new_weight */
1110         ceph_decode_32_safe(p, end, len, e_inval);
1111         while (len--) {
1112                 u32 osd, off;
1113                 ceph_decode_need(p, end, sizeof(u32)*2, e_inval);
1114                 osd = ceph_decode_32(p);
1115                 off = ceph_decode_32(p);
1116                 pr_info("osd%d weight 0x%x %s\n", osd, off,
1117                      off == CEPH_OSD_IN ? "(in)" :
1118                      (off == CEPH_OSD_OUT ? "(out)" : ""));
1119                 if (osd < map->max_osd)
1120                         map->osd_weight[osd] = off;
1121         }
1122
1123         /* new_pg_temp */
1124         err = decode_new_pg_temp(p, end, map);
1125         if (err)
1126                 goto bad;
1127
1128         /* ignore the rest */
1129         *p = end;
1130
1131         dout("inc osdmap epoch %d max_osd %d\n", map->epoch, map->max_osd);
1132         return map;
1133
1134 e_inval:
1135         err = -EINVAL;
1136 bad:
1137         pr_err("corrupt inc osdmap (%d) epoch %d off %d (%p of %p-%p)\n",
1138                err, epoch, (int)(*p - start), *p, start, end);
1139         print_hex_dump(KERN_DEBUG, "osdmap: ",
1140                        DUMP_PREFIX_OFFSET, 16, 1,
1141                        start, end - start, true);
1142         if (newcrush)
1143                 crush_destroy(newcrush);
1144         return ERR_PTR(err);
1145 }
1146
1147
1148
1149
1150 /*
1151  * calculate file layout from given offset, length.
1152  * fill in correct oid, logical length, and object extent
1153  * offset, length.
1154  *
1155  * for now, we write only a single su, until we can
1156  * pass a stride back to the caller.
1157  */
1158 int ceph_calc_file_object_mapping(struct ceph_file_layout *layout,
1159                                    u64 off, u64 len,
1160                                    u64 *ono,
1161                                    u64 *oxoff, u64 *oxlen)
1162 {
1163         u32 osize = le32_to_cpu(layout->fl_object_size);
1164         u32 su = le32_to_cpu(layout->fl_stripe_unit);
1165         u32 sc = le32_to_cpu(layout->fl_stripe_count);
1166         u32 bl, stripeno, stripepos, objsetno;
1167         u32 su_per_object;
1168         u64 t, su_offset;
1169
1170         dout("mapping %llu~%llu  osize %u fl_su %u\n", off, len,
1171              osize, su);
1172         if (su == 0 || sc == 0)
1173                 goto invalid;
1174         su_per_object = osize / su;
1175         if (su_per_object == 0)
1176                 goto invalid;
1177         dout("osize %u / su %u = su_per_object %u\n", osize, su,
1178              su_per_object);
1179
1180         if ((su & ~PAGE_MASK) != 0)
1181                 goto invalid;
1182
1183         /* bl = *off / su; */
1184         t = off;
1185         do_div(t, su);
1186         bl = t;
1187         dout("off %llu / su %u = bl %u\n", off, su, bl);
1188
1189         stripeno = bl / sc;
1190         stripepos = bl % sc;
1191         objsetno = stripeno / su_per_object;
1192
1193         *ono = objsetno * sc + stripepos;
1194         dout("objset %u * sc %u = ono %u\n", objsetno, sc, (unsigned int)*ono);
1195
1196         /* *oxoff = *off % layout->fl_stripe_unit;  # offset in su */
1197         t = off;
1198         su_offset = do_div(t, su);
1199         *oxoff = su_offset + (stripeno % su_per_object) * su;
1200
1201         /*
1202          * Calculate the length of the extent being written to the selected
1203          * object. This is the minimum of the full length requested (len) or
1204          * the remainder of the current stripe being written to.
1205          */
1206         *oxlen = min_t(u64, len, su - su_offset);
1207
1208         dout(" obj extent %llu~%llu\n", *oxoff, *oxlen);
1209         return 0;
1210
1211 invalid:
1212         dout(" invalid layout\n");
1213         *ono = 0;
1214         *oxoff = 0;
1215         *oxlen = 0;
1216         return -EINVAL;
1217 }
1218 EXPORT_SYMBOL(ceph_calc_file_object_mapping);
1219
1220 /*
1221  * Calculate mapping of a (oloc, oid) pair to a PG.  Should only be
1222  * called with target's (oloc, oid), since tiering isn't taken into
1223  * account.
1224  */
1225 int ceph_oloc_oid_to_pg(struct ceph_osdmap *osdmap,
1226                         struct ceph_object_locator *oloc,
1227                         struct ceph_object_id *oid,
1228                         struct ceph_pg *pg_out)
1229 {
1230         struct ceph_pg_pool_info *pi;
1231
1232         pi = __lookup_pg_pool(&osdmap->pg_pools, oloc->pool);
1233         if (!pi)
1234                 return -EIO;
1235
1236         pg_out->pool = oloc->pool;
1237         pg_out->seed = ceph_str_hash(pi->object_hash, oid->name,
1238                                      oid->name_len);
1239
1240         dout("%s '%.*s' pgid %llu.%x\n", __func__, oid->name_len, oid->name,
1241              pg_out->pool, pg_out->seed);
1242         return 0;
1243 }
1244 EXPORT_SYMBOL(ceph_oloc_oid_to_pg);
1245
1246 static int do_crush(struct ceph_osdmap *map, int ruleno, int x,
1247                     int *result, int result_max,
1248                     const __u32 *weight, int weight_max)
1249 {
1250         int r;
1251
1252         BUG_ON(result_max > CEPH_PG_MAX_SIZE);
1253
1254         mutex_lock(&map->crush_scratch_mutex);
1255         r = crush_do_rule(map->crush, ruleno, x, result, result_max,
1256                           weight, weight_max, map->crush_scratch_ary);
1257         mutex_unlock(&map->crush_scratch_mutex);
1258
1259         return r;
1260 }
1261
1262 /*
1263  * Calculate raw osd vector for the given pgid.  Return pointer to osd
1264  * array, or NULL on failure.
1265  */
1266 static int *calc_pg_raw(struct ceph_osdmap *osdmap, struct ceph_pg pgid,
1267                         int *osds, int *num)
1268 {
1269         struct ceph_pg_mapping *pg;
1270         struct ceph_pg_pool_info *pool;
1271         int ruleno;
1272         int r;
1273         u32 pps;
1274
1275         pool = __lookup_pg_pool(&osdmap->pg_pools, pgid.pool);
1276         if (!pool)
1277                 return NULL;
1278
1279         /* pg_temp? */
1280         pgid.seed = ceph_stable_mod(pgid.seed, pool->pg_num,
1281                                     pool->pg_num_mask);
1282         pg = __lookup_pg_mapping(&osdmap->pg_temp, pgid);
1283         if (pg) {
1284                 *num = pg->len;
1285                 return pg->osds;
1286         }
1287
1288         /* crush */
1289         ruleno = crush_find_rule(osdmap->crush, pool->crush_ruleset,
1290                                  pool->type, pool->size);
1291         if (ruleno < 0) {
1292                 pr_err("no crush rule pool %lld ruleset %d type %d size %d\n",
1293                        pgid.pool, pool->crush_ruleset, pool->type,
1294                        pool->size);
1295                 return NULL;
1296         }
1297
1298         if (pool->flags & CEPH_POOL_FLAG_HASHPSPOOL) {
1299                 /* hash pool id and seed sothat pool PGs do not overlap */
1300                 pps = crush_hash32_2(CRUSH_HASH_RJENKINS1,
1301                                      ceph_stable_mod(pgid.seed, pool->pgp_num,
1302                                                      pool->pgp_num_mask),
1303                                      pgid.pool);
1304         } else {
1305                 /*
1306                  * legacy ehavior: add ps and pool together.  this is
1307                  * not a great approach because the PGs from each pool
1308                  * will overlap on top of each other: 0.5 == 1.4 ==
1309                  * 2.3 == ...
1310                  */
1311                 pps = ceph_stable_mod(pgid.seed, pool->pgp_num,
1312                                       pool->pgp_num_mask) +
1313                         (unsigned)pgid.pool;
1314         }
1315         r = do_crush(osdmap, ruleno, pps, osds, min_t(int, pool->size, *num),
1316                      osdmap->osd_weight, osdmap->max_osd);
1317         if (r < 0) {
1318                 pr_err("error %d from crush rule: pool %lld ruleset %d type %d"
1319                        " size %d\n", r, pgid.pool, pool->crush_ruleset,
1320                        pool->type, pool->size);
1321                 return NULL;
1322         }
1323         *num = r;
1324         return osds;
1325 }
1326
1327 /*
1328  * Return acting set for given pgid.
1329  */
1330 int ceph_calc_pg_acting(struct ceph_osdmap *osdmap, struct ceph_pg pgid,
1331                         int *acting)
1332 {
1333         int rawosds[CEPH_PG_MAX_SIZE], *osds;
1334         int i, o, num = CEPH_PG_MAX_SIZE;
1335
1336         osds = calc_pg_raw(osdmap, pgid, rawosds, &num);
1337         if (!osds)
1338                 return -1;
1339
1340         /* primary is first up osd */
1341         o = 0;
1342         for (i = 0; i < num; i++)
1343                 if (ceph_osd_is_up(osdmap, osds[i]))
1344                         acting[o++] = osds[i];
1345         return o;
1346 }
1347
1348 /*
1349  * Return primary osd for given pgid, or -1 if none.
1350  */
1351 int ceph_calc_pg_primary(struct ceph_osdmap *osdmap, struct ceph_pg pgid)
1352 {
1353         int rawosds[CEPH_PG_MAX_SIZE], *osds;
1354         int i, num = CEPH_PG_MAX_SIZE;
1355
1356         osds = calc_pg_raw(osdmap, pgid, rawosds, &num);
1357         if (!osds)
1358                 return -1;
1359
1360         /* primary is first up osd */
1361         for (i = 0; i < num; i++)
1362                 if (ceph_osd_is_up(osdmap, osds[i]))
1363                         return osds[i];
1364         return -1;
1365 }
1366 EXPORT_SYMBOL(ceph_calc_pg_primary);