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LU-14797 sec: add projid to nodemap
[fs/lustre-release.git] / lustre / ptlrpc / nodemap_handler.c
1 /*
2  * GPL HEADER START
3  *
4  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License version 2 only,
8  * as published by the Free Software Foundation.
9  *
10  * This program is distributed in the hope that it will be useful, but
11  * WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
13  * General Public License version 2 for more details (a copy is included
14  * in the LICENSE file that accompanied this code).
15  *
16  * You should have received a copy of the GNU General Public License
17  * version 2 along with this program; If not, see
18  * http://www.gnu.org/licenses/gpl-2.0.html
19  *
20  * GPL HEADER END
21  */
22 /*
23  * Copyright (C) 2013, Trustees of Indiana University
24  *
25  * Copyright (c) 2017, Intel Corporation.
26  *
27  * Author: Joshua Walgenbach <jjw@iu.edu>
28  */
29 #include <linux/module.h>
30 #include <linux/sort.h>
31 #include <uapi/linux/lnet/nidstr.h>
32 #include <lustre_net.h>
33 #include <lustre_acl.h>
34 #include <obd_class.h>
35 #include "nodemap_internal.h"
36
37 #define HASH_NODEMAP_BKT_BITS 3
38 #define HASH_NODEMAP_CUR_BITS 3
39 #define HASH_NODEMAP_MAX_BITS 7
40
41 #define DEFAULT_NODEMAP "default"
42
43 /* nodemap proc root proc directory under fs/lustre */
44 struct proc_dir_entry *proc_lustre_nodemap_root;
45
46 /* Copy of config active flag to avoid locking in mapping functions */
47 bool nodemap_active;
48
49 /* Lock protecting the active config, useful primarily when proc and
50  * nodemap_hash might be replaced when loading a new config
51  * Any time the active config is referenced, the lock should be held.
52  */
53 DEFINE_MUTEX(active_config_lock);
54 struct nodemap_config *active_config;
55
56 /**
57  * Nodemap destructor
58  *
59  * \param       nodemap         nodemap to destroy
60  */
61 static void nodemap_destroy(struct lu_nodemap *nodemap)
62 {
63         ENTRY;
64
65         if (nodemap->nm_pde_data != NULL)
66                 lprocfs_nodemap_remove(nodemap->nm_pde_data);
67
68         mutex_lock(&active_config_lock);
69         down_read(&active_config->nmc_range_tree_lock);
70         nm_member_reclassify_nodemap(nodemap);
71         up_read(&active_config->nmc_range_tree_lock);
72
73         down_write(&nodemap->nm_idmap_lock);
74         idmap_delete_tree(nodemap);
75         up_write(&nodemap->nm_idmap_lock);
76
77         mutex_unlock(&active_config_lock);
78
79         if (!list_empty(&nodemap->nm_member_list))
80                 CWARN("nodemap_destroy failed to reclassify all members\n");
81
82         nm_member_delete_list(nodemap);
83
84         OBD_FREE_PTR(nodemap);
85
86         EXIT;
87 }
88
89 /**
90  * Functions used for the cfs_hash
91  */
92 void nodemap_getref(struct lu_nodemap *nodemap)
93 {
94         atomic_inc(&nodemap->nm_refcount);
95         CDEBUG(D_INFO, "GETting nodemap %s(p=%p) : new refcount %d\n",
96                nodemap->nm_name, nodemap, atomic_read(&nodemap->nm_refcount));
97 }
98
99 /**
100  * Destroy nodemap if last reference is put. Should be called outside
101  * active_config_lock
102  */
103 void nodemap_putref(struct lu_nodemap *nodemap)
104 {
105         if (!nodemap)
106                 return;
107
108         LASSERT(atomic_read(&nodemap->nm_refcount) > 0);
109
110         CDEBUG(D_INFO, "PUTting nodemap %s(p=%p) : new refcount %d\n",
111                nodemap->nm_name, nodemap,
112                atomic_read(&nodemap->nm_refcount) - 1);
113
114         if (atomic_dec_and_test(&nodemap->nm_refcount))
115                 nodemap_destroy(nodemap);
116 }
117 EXPORT_SYMBOL(nodemap_putref);
118
119 static __u32 nodemap_hashfn(struct cfs_hash *hash_body,
120                             const void *key, unsigned mask)
121 {
122         return cfs_hash_djb2_hash(key, strlen(key), mask);
123 }
124
125 static void *nodemap_hs_key(struct hlist_node *hnode)
126 {
127         struct lu_nodemap *nodemap;
128
129         nodemap = hlist_entry(hnode, struct lu_nodemap, nm_hash);
130
131         return nodemap->nm_name;
132 }
133
134 static int nodemap_hs_keycmp(const void *key,
135                              struct hlist_node *compared_hnode)
136 {
137         char *nodemap_name;
138
139         nodemap_name = nodemap_hs_key(compared_hnode);
140
141         return !strcmp(key, nodemap_name);
142 }
143
144 static void *nodemap_hs_hashobject(struct hlist_node *hnode)
145 {
146         return hlist_entry(hnode, struct lu_nodemap, nm_hash);
147 }
148
149 static void nodemap_hs_get(struct cfs_hash *hs, struct hlist_node *hnode)
150 {
151         struct lu_nodemap *nodemap;
152
153         nodemap = hlist_entry(hnode, struct lu_nodemap, nm_hash);
154         nodemap_getref(nodemap);
155 }
156
157 static void nodemap_hs_put_locked(struct cfs_hash *hs,
158                                   struct hlist_node *hnode)
159 {
160         struct lu_nodemap *nodemap;
161
162         nodemap = hlist_entry(hnode, struct lu_nodemap, nm_hash);
163         nodemap_putref(nodemap);
164 }
165
166 static struct cfs_hash_ops nodemap_hash_operations = {
167         .hs_hash        = nodemap_hashfn,
168         .hs_key         = nodemap_hs_key,
169         .hs_keycmp      = nodemap_hs_keycmp,
170         .hs_object      = nodemap_hs_hashobject,
171         .hs_get         = nodemap_hs_get,
172         .hs_put_locked  = nodemap_hs_put_locked,
173 };
174
175 /* end of cfs_hash functions */
176
177 /**
178  * Initialize nodemap_hash
179  *
180  * \retval      0               success
181  * \retval      -ENOMEM         cannot create hash
182  */
183 static int nodemap_init_hash(struct nodemap_config *nmc)
184 {
185         nmc->nmc_nodemap_hash = cfs_hash_create("NODEMAP",
186                                                 HASH_NODEMAP_CUR_BITS,
187                                                 HASH_NODEMAP_MAX_BITS,
188                                                 HASH_NODEMAP_BKT_BITS, 0,
189                                                 CFS_HASH_MIN_THETA,
190                                                 CFS_HASH_MAX_THETA,
191                                                 &nodemap_hash_operations,
192                                                 CFS_HASH_DEFAULT);
193
194         if (nmc->nmc_nodemap_hash == NULL) {
195                 CERROR("cannot create nodemap_hash table\n");
196                 return -ENOMEM;
197         }
198
199         return 0;
200 }
201
202 /**
203  * Check for valid nodemap name
204  *
205  * \param       name            nodemap name
206  * \retval      true            valid
207  * \retval      false           invalid
208  */
209 static bool nodemap_name_is_valid(const char *name)
210 {
211         if (strlen(name) > LUSTRE_NODEMAP_NAME_LENGTH ||
212             strlen(name) == 0)
213                 return false;
214
215         for (; *name != '\0'; name++) {
216                 if (!isalnum(*name) && *name != '_')
217                         return false;
218         }
219
220         return true;
221 }
222
223 /**
224  * Nodemap lookup
225  *
226  * Look nodemap up in the active_config nodemap hash. Caller should hold the
227  * active_config_lock.
228  *
229  * \param       name            name of nodemap
230  * \retval      nodemap         pointer set to found nodemap
231  * \retval      -EINVAL         name is not valid
232  * \retval      -ENOENT         nodemap not found
233  */
234 struct lu_nodemap *nodemap_lookup(const char *name)
235 {
236         struct lu_nodemap *nodemap = NULL;
237
238         if (!nodemap_name_is_valid(name))
239                 return ERR_PTR(-EINVAL);
240
241         nodemap = cfs_hash_lookup(active_config->nmc_nodemap_hash, name);
242         if (nodemap == NULL)
243                 return ERR_PTR(-ENOENT);
244
245         return nodemap;
246 }
247
248 /**
249  * Classify the nid into the proper nodemap. Caller must hold active config and
250  * nm_range_tree_lock, and call nodemap_putref when done with nodemap.
251  *
252  * \param       nid                     nid to classify
253  * \retval      nodemap                 nodemap containing the nid
254  * \retval      default_nodemap         default nodemap
255  * \retval      -EINVAL                 LO nid given without other local nid
256  */
257 struct lu_nodemap *nodemap_classify_nid(lnet_nid_t nid)
258 {
259         struct lu_nid_range *range;
260         struct lu_nodemap *nodemap;
261         int rc;
262
263         ENTRY;
264
265         /* don't use 0@lo, use the first non-lo local NID instead */
266         if (nid == LNET_NID_LO_0) {
267                 struct lnet_process_id id;
268                 int i = 0;
269
270                 do {
271                         rc = LNetGetId(i++, &id);
272                         if (rc < 0)
273                                 RETURN(ERR_PTR(-EINVAL));
274                 } while (id.nid == LNET_NID_LO_0);
275
276                 nid = id.nid;
277                 CDEBUG(D_INFO, "found nid %s\n", libcfs_nid2str(nid));
278         }
279
280         range = range_search(&active_config->nmc_range_tree, nid);
281         if (range != NULL)
282                 nodemap = range->rn_nodemap;
283         else
284                 nodemap = active_config->nmc_default_nodemap;
285
286         LASSERT(nodemap != NULL);
287         nodemap_getref(nodemap);
288
289         RETURN(nodemap);
290 }
291
292 /**
293  * simple check for default nodemap
294  */
295 static bool is_default_nodemap(const struct lu_nodemap *nodemap)
296 {
297         return nodemap->nm_id == 0;
298 }
299
300 /**
301  * parse a nodemap range string into two nids
302  *
303  * \param       range_str               string to parse
304  * \param       range[2]                array of two nids
305  * \reyval      0 on success
306  */
307 int nodemap_parse_range(const char *range_str, lnet_nid_t range[2])
308 {
309         char    buf[LNET_NIDSTR_SIZE * 2 + 2];
310         char    *ptr = NULL;
311         char    *start_nidstr;
312         char    *end_nidstr;
313         int     rc = 0;
314
315         snprintf(buf, sizeof(buf), "%s", range_str);
316         ptr = buf;
317         start_nidstr = strsep(&ptr, ":");
318         end_nidstr = strsep(&ptr, ":");
319
320         if (start_nidstr == NULL || end_nidstr == NULL)
321                 GOTO(out, rc = -EINVAL);
322
323         range[0] = libcfs_str2nid(start_nidstr);
324         range[1] = libcfs_str2nid(end_nidstr);
325
326 out:
327         return rc;
328
329 }
330 EXPORT_SYMBOL(nodemap_parse_range);
331
332 /**
333  * parse a string containing an id map of form "client_id:filesystem_id"
334  * into an array of __u32 * for use in mapping functions
335  *
336  * \param       idmap_str               map string
337  * \param       idmap                   array[2] of __u32
338  *
339  * \retval      0 on success
340  * \retval      -EINVAL if idmap cannot be parsed
341  */
342 int nodemap_parse_idmap(char *idmap_str, __u32 idmap[2])
343 {
344         char                    *sep;
345         long unsigned int        idmap_buf;
346         int                      rc;
347
348         if (idmap_str == NULL)
349                 return -EINVAL;
350
351         sep = strchr(idmap_str, ':');
352         if (sep == NULL)
353                 return -EINVAL;
354         *sep = '\0';
355         sep++;
356
357         rc = kstrtoul(idmap_str, 10, &idmap_buf);
358         if (rc != 0)
359                 return -EINVAL;
360         idmap[0] = idmap_buf;
361
362         rc = kstrtoul(sep, 10, &idmap_buf);
363         if (rc != 0)
364                 return -EINVAL;
365         idmap[1] = idmap_buf;
366
367         return 0;
368 }
369 EXPORT_SYMBOL(nodemap_parse_idmap);
370
371 /**
372  * add a member to a nodemap
373  *
374  * \param       nid             nid to add to the members
375  * \param       exp             obd_export structure for the connection
376  *                              that is being added
377  * \retval      -EINVAL         export is NULL, or has invalid NID
378  * \retval      -EEXIST         export is already member of a nodemap
379  */
380 int nodemap_add_member(lnet_nid_t nid, struct obd_export *exp)
381 {
382         struct lu_nodemap *nodemap;
383         int rc = 0;
384         ENTRY;
385
386         mutex_lock(&active_config_lock);
387         down_read(&active_config->nmc_range_tree_lock);
388
389         nodemap = nodemap_classify_nid(nid);
390
391         if (IS_ERR(nodemap)) {
392                 CWARN("%s: error adding to nodemap, no valid NIDs found\n",
393                           exp->exp_obd->obd_name);
394                 rc = -EINVAL;
395         } else {
396                 rc = nm_member_add(nodemap, exp);
397         }
398
399         up_read(&active_config->nmc_range_tree_lock);
400         mutex_unlock(&active_config_lock);
401
402         if (!IS_ERR(nodemap))
403                 nodemap_putref(nodemap);
404
405         RETURN(rc);
406 }
407 EXPORT_SYMBOL(nodemap_add_member);
408
409 /**
410  * delete a member from a nodemap
411  *
412  * \param       exp             export to remove from a nodemap
413  */
414 void nodemap_del_member(struct obd_export *exp)
415 {
416         struct lu_nodemap *nodemap;
417
418         ENTRY;
419
420         /* using ac lock to prevent nodemap reclassification while deleting */
421         mutex_lock(&active_config_lock);
422
423         /* use of ted_nodemap is protected by active_config_lock. we take an
424          * extra reference to make sure nodemap isn't destroyed under
425          * active_config_lock
426          */
427         nodemap = exp->exp_target_data.ted_nodemap;
428         if (nodemap == NULL)
429                 goto out;
430         else
431                 nodemap_getref(nodemap);
432
433         mutex_lock(&nodemap->nm_member_list_lock);
434         nm_member_del(nodemap, exp);
435         mutex_unlock(&nodemap->nm_member_list_lock);
436
437 out:
438         mutex_unlock(&active_config_lock);
439
440         if (nodemap)
441                 nodemap_putref(nodemap);
442
443         EXIT;
444 }
445 EXPORT_SYMBOL(nodemap_del_member);
446
447 /**
448  * add an idmap to the proper nodemap trees
449  *
450  * \param       nodemap         nodemap to add idmap to
451  * \param       id_type         NODEMAP_UID or NODEMAP_GID
452  * \param       map             array[2] __u32 containing the map values
453  *                              map[0] is client id
454  *                              map[1] is the filesystem id
455  *
456  * \retval      0       on success
457  * \retval      < 0     if error occurs
458  */
459 int nodemap_add_idmap_helper(struct lu_nodemap *nodemap,
460                              enum nodemap_id_type id_type,
461                              const __u32 map[2])
462 {
463         struct lu_idmap         *idmap;
464         struct lu_idmap         *temp;
465         int                     rc = 0;
466
467         idmap = idmap_create(map[0], map[1]);
468         if (idmap == NULL)
469                 GOTO(out, rc = -ENOMEM);
470
471         down_write(&nodemap->nm_idmap_lock);
472         temp = idmap_insert(id_type, idmap, nodemap);
473         /* If the new id_client or id_fs is matched, the old idmap and its
474          * index should be deleted according to its id_client before the new
475          * idmap is added again.
476          */
477         if (IS_ERR(temp))
478                 GOTO(out_insert, rc = PTR_ERR(temp));
479         if (temp) {
480                 __u32 del_map[2];
481
482                 del_map[0] = temp->id_client;
483                 idmap_delete(id_type, temp, nodemap);
484                 rc = nodemap_idx_idmap_del(nodemap, id_type, del_map);
485                 /* In case there is any corrupted idmap */
486                 if (!rc || unlikely(rc == -ENOENT)) {
487                         temp = idmap_insert(id_type, idmap, nodemap);
488                         if (IS_ERR(temp))
489                                 rc = PTR_ERR(temp);
490                         else if (!temp)
491                                 rc = 0;
492                         else
493                                 rc = -EPERM;
494                 }
495         }
496 out_insert:
497         if (rc)
498                 OBD_FREE_PTR(idmap);
499         up_write(&nodemap->nm_idmap_lock);
500         nm_member_revoke_locks(nodemap);
501
502 out:
503         return rc;
504 }
505
506 int nodemap_add_idmap(const char *name, enum nodemap_id_type id_type,
507                       const __u32 map[2])
508 {
509         struct lu_nodemap       *nodemap = NULL;
510         int                      rc;
511
512         ENTRY;
513
514         mutex_lock(&active_config_lock);
515         nodemap = nodemap_lookup(name);
516         if (IS_ERR(nodemap)) {
517                 mutex_unlock(&active_config_lock);
518                 GOTO(out, rc = PTR_ERR(nodemap));
519         }
520
521         if (is_default_nodemap(nodemap)) {
522                 rc = -EINVAL;
523         } else {
524                 rc = nodemap_add_idmap_helper(nodemap, id_type, map);
525                 if (rc == 0)
526                         rc = nodemap_idx_idmap_add(nodemap, id_type, map);
527         }
528         mutex_unlock(&active_config_lock);
529         nodemap_putref(nodemap);
530
531 out:
532         RETURN(rc);
533 }
534 EXPORT_SYMBOL(nodemap_add_idmap);
535
536 /**
537  * delete idmap from proper nodemap tree
538  *
539  * \param       name            name of nodemap
540  * \param       id_type         NODEMAP_UID or NODEMAP_GID
541  * \param       map             array[2] __u32 containing the mapA values
542  *                              map[0] is client id
543  *                              map[1] is the filesystem id
544  *
545  * \retval      0 on success
546  */
547 int nodemap_del_idmap(const char *name, enum nodemap_id_type id_type,
548                       const __u32 map[2])
549 {
550         struct lu_nodemap       *nodemap = NULL;
551         struct lu_idmap         *idmap = NULL;
552         int                     rc = 0;
553
554         ENTRY;
555
556         mutex_lock(&active_config_lock);
557         nodemap = nodemap_lookup(name);
558         if (IS_ERR(nodemap)) {
559                 mutex_unlock(&active_config_lock);
560                 GOTO(out, rc = PTR_ERR(nodemap));
561         }
562
563         if (is_default_nodemap(nodemap))
564                 GOTO(out_putref, rc = -EINVAL);
565
566         down_write(&nodemap->nm_idmap_lock);
567         idmap = idmap_search(nodemap, NODEMAP_CLIENT_TO_FS, id_type,
568                              map[0]);
569         if (idmap == NULL) {
570                 rc = -EINVAL;
571         } else {
572                 idmap_delete(id_type, idmap, nodemap);
573                 rc = nodemap_idx_idmap_del(nodemap, id_type, map);
574         }
575         up_write(&nodemap->nm_idmap_lock);
576
577 out_putref:
578         mutex_unlock(&active_config_lock);
579         if (rc == 0)
580                 nm_member_revoke_locks(nodemap);
581         nodemap_putref(nodemap);
582
583 out:
584         RETURN(rc);
585 }
586 EXPORT_SYMBOL(nodemap_del_idmap);
587
588 /**
589  * Get nodemap assigned to given export. Takes a reference on the nodemap.
590  *
591  * Note that this function may return either NULL, or an ERR_PTR()
592  * or a valid nodemap pointer.  All of the functions accessing the
593  * returned nodemap can check IS_ERR(nodemap) to see if an error is
594  * returned.  NULL is not considered an error, which is OK since this
595  * is a valid case if nodemap are not in use.  All nodemap handling
596  * functions must check for nodemap == NULL and do nothing, and the
597  * nodemap returned from this function should not be dereferenced.
598  *
599  * \param       export          export to get nodemap for
600  *
601  * \retval      pointer to nodemap on success
602  * \retval      NULL    nodemap subsystem disabled
603  * \retval      -EACCES export does not have nodemap assigned
604  */
605 struct lu_nodemap *nodemap_get_from_exp(struct obd_export *exp)
606 {
607         struct lu_nodemap *nodemap;
608
609         ENTRY;
610
611         if (!nodemap_active)
612                 RETURN(NULL);
613
614         spin_lock(&exp->exp_target_data.ted_nodemap_lock);
615         nodemap = exp->exp_target_data.ted_nodemap;
616         if (nodemap)
617                 nodemap_getref(nodemap);
618         spin_unlock(&exp->exp_target_data.ted_nodemap_lock);
619
620         if (!nodemap) {
621                 CDEBUG(D_INFO, "%s: nodemap null on export %s (at %s)\n",
622                        exp->exp_obd->obd_name,
623                        obd_uuid2str(&exp->exp_client_uuid),
624                        obd_export_nid2str(exp));
625                 RETURN(ERR_PTR(-EACCES));
626         }
627
628         RETURN(nodemap);
629 }
630 EXPORT_SYMBOL(nodemap_get_from_exp);
631
632 /**
633  * mapping function for nodemap idmaps
634  *
635  * \param       nodemap         lu_nodemap structure defining nodemap
636  * \param       node_type       NODEMAP_UID or NODEMAP_GID or NODEMAP_PROJID
637  * \param       tree_type       NODEMAP_CLIENT_TO_FS or
638  *                              NODEMAP_FS_TO_CLIENT
639  * \param       id              id to map
640  *
641  * \retval      mapped id according to the rules below.
642  *
643  * if the nodemap_active is false, just return the passed id without mapping
644  *
645  * if the id to be looked up is 0, check that root access is allowed and if it
646  * is, return 0. Otherwise, return the squash uid or gid.
647  *
648  * if the nodemap is configured to trusted the ids from the client system, just
649  * return the passed id without mapping.
650  *
651  * if by this point, we haven't returned and the nodemap in question is the
652  * default nodemap, return the squash uid or gid.
653  *
654  * after these checks, search the proper tree for the mapping, and if found
655  * return the mapped value, otherwise return the squash uid or gid.
656  */
657 __u32 nodemap_map_id(struct lu_nodemap *nodemap,
658                      enum nodemap_id_type id_type,
659                      enum nodemap_tree_type tree_type, __u32 id)
660 {
661         struct lu_idmap         *idmap = NULL;
662         __u32                    found_id;
663
664         ENTRY;
665
666         if (!nodemap_active)
667                 goto out;
668
669         if (unlikely(nodemap == NULL))
670                 goto out;
671
672         if (id_type == NODEMAP_UID &&
673             !(nodemap->nmf_map_mode & NODEMAP_MAP_UID))
674                 goto out;
675
676         if (id_type == NODEMAP_GID &&
677             !(nodemap->nmf_map_mode & NODEMAP_MAP_GID))
678                 goto out;
679
680         if (id_type == NODEMAP_PROJID &&
681             !(nodemap->nmf_map_mode & NODEMAP_MAP_PROJID))
682                 goto out;
683
684         if (id == 0) {
685                 if (nodemap->nmf_allow_root_access)
686                         goto out;
687                 else
688                         goto squash;
689         }
690
691         if (nodemap->nmf_trust_client_ids)
692                 goto out;
693
694         if (is_default_nodemap(nodemap))
695                 goto squash;
696
697         down_read(&nodemap->nm_idmap_lock);
698         idmap = idmap_search(nodemap, tree_type, id_type, id);
699         if (idmap == NULL) {
700                 up_read(&nodemap->nm_idmap_lock);
701                 goto squash;
702         }
703
704         if (tree_type == NODEMAP_FS_TO_CLIENT)
705                 found_id = idmap->id_client;
706         else
707                 found_id = idmap->id_fs;
708         up_read(&nodemap->nm_idmap_lock);
709         RETURN(found_id);
710
711 squash:
712         if (id_type == NODEMAP_UID)
713                 RETURN(nodemap->nm_squash_uid);
714         if (id_type == NODEMAP_GID)
715                 RETURN(nodemap->nm_squash_gid);
716         if (id_type == NODEMAP_PROJID)
717                 RETURN(nodemap->nm_squash_projid);
718 out:
719         RETURN(id);
720 }
721 EXPORT_SYMBOL(nodemap_map_id);
722
723 /**
724  * Map posix ACL entries according to the nodemap membership. Removes any
725  * squashed ACLs.
726  *
727  * \param       lu_nodemap      nodemap
728  * \param       buf             buffer containing xattr encoded ACLs
729  * \param       size            size of ACLs in bytes
730  * \param       tree_type       direction of mapping
731  * \retval      size            new size of ACLs in bytes
732  * \retval      -EINVAL         bad \a size param, see posix_acl_xattr_count()
733  */
734 ssize_t nodemap_map_acl(struct lu_nodemap *nodemap, void *buf, size_t size,
735                         enum nodemap_tree_type tree_type)
736 {
737         posix_acl_xattr_header  *header = buf;
738         posix_acl_xattr_entry   *entry = GET_POSIX_ACL_XATTR_ENTRY(header);
739         posix_acl_xattr_entry   *new_entry = entry;
740         posix_acl_xattr_entry   *end;
741         int                      count;
742
743         ENTRY;
744
745         if (!nodemap_active)
746                 RETURN(size);
747
748         if (unlikely(nodemap == NULL))
749                 RETURN(size);
750
751         count = posix_acl_xattr_count(size);
752         if (count < 0)
753                 RETURN(-EINVAL);
754         if (count == 0)
755                 /* if not proper ACL, do nothing and return initial size */
756                 RETURN(size);
757
758         for (end = entry + count; entry != end; entry++) {
759                 __u16 tag = le16_to_cpu(entry->e_tag);
760                 __u32 id = le32_to_cpu(entry->e_id);
761
762                 switch (tag) {
763                 case ACL_USER:
764                         id = nodemap_map_id(nodemap, NODEMAP_UID,
765                                             tree_type, id);
766                         if (id == nodemap->nm_squash_uid)
767                                 continue;
768                         entry->e_id = cpu_to_le32(id);
769                         break;
770                 case ACL_GROUP:
771                         id = nodemap_map_id(nodemap, NODEMAP_GID,
772                                             tree_type, id);
773                         if (id == nodemap->nm_squash_gid)
774                                 continue;
775                         entry->e_id = cpu_to_le32(id);
776                         break;
777                 }
778
779                 /* if we skip an ACL, copy the following ones over it */
780                 if (new_entry != entry)
781                         *new_entry = *entry;
782
783                 new_entry++;
784         }
785
786         RETURN((void *)new_entry - (void *)header);
787 }
788 EXPORT_SYMBOL(nodemap_map_acl);
789
790 /*
791  * Add nid range to given nodemap
792  *
793  * \param       config          nodemap config to work on
794  * \param       nodemap         nodemap to add range to
795  * \param       nid             nid range to add
796  * \param       range_id        should be 0 unless loading from disk
797  * \retval      0               success
798  * \retval      -ENOMEM
799  *
800  */
801 int nodemap_add_range_helper(struct nodemap_config *config,
802                              struct lu_nodemap *nodemap,
803                              const lnet_nid_t nid[2],
804                              unsigned int range_id)
805 {
806         struct lu_nid_range     *range;
807         int rc;
808
809         down_write(&config->nmc_range_tree_lock);
810         range = range_create(&config->nmc_range_tree, nid[0], nid[1],
811                              nodemap, range_id);
812         if (range == NULL) {
813                 up_write(&config->nmc_range_tree_lock);
814                 GOTO(out, rc = -ENOMEM);
815         }
816
817         rc = range_insert(&config->nmc_range_tree, range);
818         if (rc != 0) {
819                 CERROR("cannot insert nodemap range into '%s': rc = %d\n",
820                       nodemap->nm_name, rc);
821                 up_write(&config->nmc_range_tree_lock);
822                 list_del(&range->rn_list);
823                 range_destroy(range);
824                 GOTO(out, rc = -ENOMEM);
825         }
826
827         list_add(&range->rn_list, &nodemap->nm_ranges);
828
829         /* nodemaps have no members if they aren't on the active config */
830         if (config == active_config)
831                 nm_member_reclassify_nodemap(config->nmc_default_nodemap);
832
833         up_write(&config->nmc_range_tree_lock);
834
835         /* if range_id is non-zero, we are loading from disk */
836         if (range_id == 0)
837                 rc = nodemap_idx_range_add(range, nid);
838
839         if (config == active_config) {
840                 nm_member_revoke_locks(config->nmc_default_nodemap);
841                 nm_member_revoke_locks(nodemap);
842         }
843
844 out:
845         return rc;
846 }
847 int nodemap_add_range(const char *name, const lnet_nid_t nid[2])
848 {
849         struct lu_nodemap       *nodemap = NULL;
850         int                      rc;
851
852         mutex_lock(&active_config_lock);
853         nodemap = nodemap_lookup(name);
854         if (IS_ERR(nodemap)) {
855                 mutex_unlock(&active_config_lock);
856                 GOTO(out, rc = PTR_ERR(nodemap));
857         }
858
859         if (is_default_nodemap(nodemap))
860                 rc = -EINVAL;
861         else
862                 rc = nodemap_add_range_helper(active_config, nodemap, nid, 0);
863         mutex_unlock(&active_config_lock);
864         nodemap_putref(nodemap);
865 out:
866         return rc;
867 }
868 EXPORT_SYMBOL(nodemap_add_range);
869
870 /**
871  * delete a range
872  * \param       name            nodemap name
873  * \param       nid             nid range
874  * \retval      0 on success
875  *
876  * Delete range from global range tree, and remove it
877  * from the list in the associated nodemap.
878  */
879 int nodemap_del_range(const char *name, const lnet_nid_t nid[2])
880 {
881         struct lu_nodemap       *nodemap;
882         struct lu_nid_range     *range;
883         int                     rc = 0;
884
885         mutex_lock(&active_config_lock);
886         nodemap = nodemap_lookup(name);
887         if (IS_ERR(nodemap)) {
888                 mutex_unlock(&active_config_lock);
889                 GOTO(out, rc = PTR_ERR(nodemap));
890         }
891
892         if (is_default_nodemap(nodemap))
893                 GOTO(out_putref, rc = -EINVAL);
894
895         down_write(&active_config->nmc_range_tree_lock);
896         range = range_find(&active_config->nmc_range_tree, nid[0], nid[1]);
897         if (range == NULL) {
898                 up_write(&active_config->nmc_range_tree_lock);
899                 GOTO(out_putref, rc = -EINVAL);
900         }
901         if (range->rn_nodemap != nodemap) {
902                 up_write(&active_config->nmc_range_tree_lock);
903                 GOTO(out_putref, rc = -EINVAL);
904         }
905         rc = nodemap_idx_range_del(range);
906         range_delete(&active_config->nmc_range_tree, range);
907         nm_member_reclassify_nodemap(nodemap);
908         up_write(&active_config->nmc_range_tree_lock);
909
910         nm_member_revoke_locks(active_config->nmc_default_nodemap);
911         nm_member_revoke_locks(nodemap);
912
913 out_putref:
914         mutex_unlock(&active_config_lock);
915         nodemap_putref(nodemap);
916 out:
917         return rc;
918 }
919 EXPORT_SYMBOL(nodemap_del_range);
920
921 /**
922  * set fileset on nodemap
923  * \param       name            nodemap to set fileset on
924  * \param       fileset         string containing fileset
925  * \retval      0 on success
926  *
927  * set a fileset on the named nodemap
928  */
929 static int nodemap_set_fileset_helper(struct nodemap_config *config,
930                                       struct lu_nodemap *nodemap,
931                                       const char *fileset)
932 {
933         int rc = 0;
934
935         /* Allow 'fileset=clear' in addition to 'fileset=""' to clear fileset
936          * because either command 'lctl set_param -P *.*.fileset=""' or
937          * 'lctl nodemap_set_fileset --fileset ""' can only work correctly
938          * on MGS, while on other servers, both commands will invoke upcall
939          * "/usr/sbin/lctl set_param nodemap.default.fileset=" by function
940          * process_param2_config(), which will cause "no value" error and
941          * won't clear fileset.
942          * 'fileset=""' is still kept for compatibility reason.
943          */
944         if (fileset == NULL)
945                 rc = -EINVAL;
946         else if (fileset[0] == '\0' || strcmp(fileset, "clear") == 0)
947                 nodemap->nm_fileset[0] = '\0';
948         else if (fileset[0] != '/')
949                 rc = -EINVAL;
950         else if (strlcpy(nodemap->nm_fileset, fileset,
951                          sizeof(nodemap->nm_fileset)) >=
952                  sizeof(nodemap->nm_fileset))
953                 rc = -ENAMETOOLONG;
954
955         return rc;
956 }
957
958 int nodemap_set_fileset(const char *name, const char *fileset)
959 {
960         struct lu_nodemap       *nodemap = NULL;
961         int                      rc = 0;
962
963         mutex_lock(&active_config_lock);
964         nodemap = nodemap_lookup(name);
965         if (IS_ERR(nodemap)) {
966                 mutex_unlock(&active_config_lock);
967                 GOTO(out, rc = PTR_ERR(nodemap));
968         }
969
970         rc = nodemap_set_fileset_helper(active_config, nodemap, fileset);
971         mutex_unlock(&active_config_lock);
972
973         nodemap_putref(nodemap);
974 out:
975         return rc;
976 }
977 EXPORT_SYMBOL(nodemap_set_fileset);
978
979 /**
980  * get fileset defined on nodemap
981  * \param       nodemap         nodemap to get fileset from
982  * \retval      fileset name, or NULL if not defined or not activated
983  *
984  * get the fileset defined on the nodemap
985  */
986 char *nodemap_get_fileset(const struct lu_nodemap *nodemap)
987 {
988         if (!nodemap_active)
989                 return NULL;
990
991         return (char *)nodemap->nm_fileset;
992 }
993 EXPORT_SYMBOL(nodemap_get_fileset);
994
995 static int nodemap_validate_sepol(const char *sepol)
996 {
997         char buf[LUSTRE_NODEMAP_SEPOL_LENGTH + 1];
998         char *p = (char *)sepol;
999         char *q = buf;
1000         char polname[NAME_MAX + 1] = "";
1001         char hash[SELINUX_POLICY_HASH_LEN + 1] = "";
1002         unsigned char mode;
1003         unsigned short ver;
1004
1005         BUILD_BUG_ON(sizeof(buf) != sizeof(((struct lu_nodemap *)0)->nm_sepol));
1006
1007         if (sepol == NULL)
1008                 return -EINVAL;
1009
1010         /* we allow sepol = "" which means clear SELinux policy info */
1011         if (sepol[0] == '\0')
1012                 return 0;
1013
1014         /* make a copy of sepol, by replacing ':' with space
1015          * so that we can use sscanf over the string
1016          */
1017         while (p-sepol < sizeof(buf)) {
1018                 if (*p == ':')
1019                         *q = ' ';
1020                 else
1021                         *q = *p;
1022                 if (*p == '\0')
1023                         break;
1024                 p++;
1025                 q++;
1026         }
1027         if (p-sepol == sizeof(buf))
1028                 return -ENAMETOOLONG;
1029
1030         if (sscanf(buf, "%1hhu %s %hu %s", &mode, polname, &ver, hash) != 4)
1031                 return -EINVAL;
1032
1033         if (mode != 0 && mode != 1)
1034                 return -EINVAL;
1035
1036         return 0;
1037 }
1038
1039 /**
1040  * set SELinux policy on nodemap
1041  * \param       name            nodemap to set SELinux policy info on
1042  * \param       sepol           string containing SELinux policy info
1043  * \retval      0 on success
1044  *
1045  * set SELinux policy info on the named nodemap
1046  */
1047 int nodemap_set_sepol(const char *name, const char *sepol)
1048 {
1049         struct lu_nodemap       *nodemap = NULL;
1050         int                      rc;
1051
1052         rc = nodemap_validate_sepol(sepol);
1053         if (rc < 0)
1054                 GOTO(out, rc);
1055
1056         mutex_lock(&active_config_lock);
1057         nodemap = nodemap_lookup(name);
1058         if (IS_ERR(nodemap)) {
1059                 mutex_unlock(&active_config_lock);
1060                 GOTO(out, rc = PTR_ERR(nodemap));
1061         }
1062
1063         if (is_default_nodemap(nodemap)) {
1064                 /* We do not want nodes in the default nodemap to have
1065                  * SELinux restrictions. Sec admin should create dedicated
1066                  * nodemap entries for this.
1067                  */
1068                 GOTO(out_putref, rc = -EINVAL);
1069         }
1070
1071         /* truncation cannot happen, as string length was checked in
1072          * nodemap_validate_sepol()
1073          */
1074         strlcpy(nodemap->nm_sepol, sepol, sizeof(nodemap->nm_sepol));
1075
1076 out_putref:
1077         mutex_unlock(&active_config_lock);
1078         nodemap_putref(nodemap);
1079 out:
1080         return rc;
1081 }
1082 EXPORT_SYMBOL(nodemap_set_sepol);
1083
1084 /**
1085  * get SELinux policy info defined on nodemap
1086  * \param       nodemap         nodemap to get SELinux policy info from
1087  * \retval      SELinux policy info, or NULL if not defined or not activated
1088  *
1089  * get the SELinux policy info defined on the nodemap
1090  */
1091 const char *nodemap_get_sepol(const struct lu_nodemap *nodemap)
1092 {
1093         if (is_default_nodemap(nodemap))
1094                 return NULL;
1095         else
1096                 return (char *)nodemap->nm_sepol;
1097 }
1098 EXPORT_SYMBOL(nodemap_get_sepol);
1099
1100 /**
1101  * Nodemap constructor
1102  *
1103  * Creates an lu_nodemap structure and assigns sane default
1104  * member values. If this is the default nodemap, the defaults
1105  * are the most restrictive in terms of mapping behavior. Otherwise
1106  * the default flags should be inherited from the default nodemap.
1107  * The adds nodemap to nodemap_hash.
1108  *
1109  * Requires that the caller take the active_config_lock
1110  *
1111  * \param       name            name of nodemap
1112  * \param       is_default      true if default nodemap
1113  * \retval      nodemap         success
1114  * \retval      -EINVAL         invalid nodemap name
1115  * \retval      -EEXIST         nodemap already exists
1116  * \retval      -ENOMEM         cannot allocate memory for nodemap
1117  */
1118 struct lu_nodemap *nodemap_create(const char *name,
1119                                   struct nodemap_config *config,
1120                                   bool is_default)
1121 {
1122         struct lu_nodemap       *nodemap = NULL;
1123         struct lu_nodemap       *default_nodemap;
1124         struct cfs_hash         *hash = config->nmc_nodemap_hash;
1125         int                      rc = 0;
1126         ENTRY;
1127
1128         default_nodemap = config->nmc_default_nodemap;
1129
1130         if (!nodemap_name_is_valid(name))
1131                 GOTO(out, rc = -EINVAL);
1132
1133         if (hash == NULL) {
1134                 CERROR("Config nodemap hash is NULL, unable to add %s\n", name);
1135                 GOTO(out, rc = -EINVAL);
1136         }
1137
1138         OBD_ALLOC_PTR(nodemap);
1139         if (nodemap == NULL) {
1140                 CERROR("cannot allocate memory (%zu bytes) for nodemap '%s'\n",
1141                        sizeof(*nodemap), name);
1142                 GOTO(out, rc = -ENOMEM);
1143         }
1144
1145         /*
1146          * take an extra reference to prevent nodemap from being destroyed
1147          * while it's being created.
1148          */
1149         atomic_set(&nodemap->nm_refcount, 2);
1150         snprintf(nodemap->nm_name, sizeof(nodemap->nm_name), "%s", name);
1151         rc = cfs_hash_add_unique(hash, name, &nodemap->nm_hash);
1152         if (rc != 0) {
1153                 OBD_FREE_PTR(nodemap);
1154                 GOTO(out, rc = -EEXIST);
1155         }
1156
1157         INIT_LIST_HEAD(&nodemap->nm_ranges);
1158         INIT_LIST_HEAD(&nodemap->nm_list);
1159         INIT_LIST_HEAD(&nodemap->nm_member_list);
1160
1161         mutex_init(&nodemap->nm_member_list_lock);
1162         init_rwsem(&nodemap->nm_idmap_lock);
1163         nodemap->nm_fs_to_client_uidmap = RB_ROOT;
1164         nodemap->nm_client_to_fs_uidmap = RB_ROOT;
1165         nodemap->nm_fs_to_client_gidmap = RB_ROOT;
1166         nodemap->nm_client_to_fs_gidmap = RB_ROOT;
1167         nodemap->nm_fs_to_client_projidmap = RB_ROOT;
1168         nodemap->nm_client_to_fs_projidmap = RB_ROOT;
1169
1170         if (is_default) {
1171                 nodemap->nm_id = LUSTRE_NODEMAP_DEFAULT_ID;
1172                 config->nmc_default_nodemap = nodemap;
1173         } else {
1174                 config->nmc_nodemap_highest_id++;
1175                 nodemap->nm_id = config->nmc_nodemap_highest_id;
1176         }
1177
1178         if (is_default || default_nodemap == NULL) {
1179                 nodemap->nmf_trust_client_ids = 0;
1180                 nodemap->nmf_allow_root_access = 0;
1181                 nodemap->nmf_deny_unknown = 0;
1182                 nodemap->nmf_map_mode = NODEMAP_MAP_ALL;
1183                 nodemap->nmf_enable_audit = 1;
1184                 nodemap->nmf_forbid_encryption = 0;
1185
1186                 nodemap->nm_squash_uid = NODEMAP_NOBODY_UID;
1187                 nodemap->nm_squash_gid = NODEMAP_NOBODY_GID;
1188                 nodemap->nm_squash_projid = NODEMAP_NOBODY_PROJID;
1189                 nodemap->nm_fileset[0] = '\0';
1190                 nodemap->nm_sepol[0] = '\0';
1191                 if (!is_default)
1192                         CWARN("adding nodemap '%s' to config without"
1193                               " default nodemap\n", nodemap->nm_name);
1194         } else {
1195                 nodemap->nmf_trust_client_ids =
1196                                 default_nodemap->nmf_trust_client_ids;
1197                 nodemap->nmf_allow_root_access =
1198                                 default_nodemap->nmf_allow_root_access;
1199                 nodemap->nmf_deny_unknown = default_nodemap->nmf_deny_unknown;
1200                 nodemap->nmf_map_mode = default_nodemap->nmf_map_mode;
1201                 nodemap->nmf_enable_audit = default_nodemap->nmf_enable_audit;
1202                 nodemap->nmf_forbid_encryption =
1203                         default_nodemap->nmf_forbid_encryption;
1204
1205                 nodemap->nm_squash_uid = default_nodemap->nm_squash_uid;
1206                 nodemap->nm_squash_gid = default_nodemap->nm_squash_gid;
1207                 nodemap->nm_squash_projid = default_nodemap->nm_squash_projid;
1208                 nodemap->nm_fileset[0] = '\0';
1209                 nodemap->nm_sepol[0] = '\0';
1210         }
1211
1212         RETURN(nodemap);
1213
1214 out:
1215         CERROR("cannot add nodemap: '%s': rc = %d\n", name, rc);
1216         RETURN(ERR_PTR(rc));
1217 }
1218
1219 /**
1220  * Set the nmf_deny_unknown flag to true or false.
1221  * \param       name            nodemap name
1222  * \param       deny_unknown    if true, squashed users will get EACCES
1223  * \retval      0 on success
1224  *
1225  */
1226 int nodemap_set_deny_unknown(const char *name, bool deny_unknown)
1227 {
1228         struct lu_nodemap       *nodemap = NULL;
1229         int                     rc = 0;
1230
1231         mutex_lock(&active_config_lock);
1232         nodemap = nodemap_lookup(name);
1233         mutex_unlock(&active_config_lock);
1234         if (IS_ERR(nodemap))
1235                 GOTO(out, rc = PTR_ERR(nodemap));
1236
1237         nodemap->nmf_deny_unknown = deny_unknown;
1238         rc = nodemap_idx_nodemap_update(nodemap);
1239
1240         nm_member_revoke_locks(nodemap);
1241         nodemap_putref(nodemap);
1242 out:
1243         return rc;
1244 }
1245 EXPORT_SYMBOL(nodemap_set_deny_unknown);
1246
1247 /**
1248  * Set the nmf_allow_root_access flag to true or false.
1249  * \param       name            nodemap name
1250  * \param       allow_root      if true, nodemap will not squash the root user
1251  * \retval      0 on success
1252  *
1253  */
1254 int nodemap_set_allow_root(const char *name, bool allow_root)
1255 {
1256         struct lu_nodemap       *nodemap = NULL;
1257         int                     rc = 0;
1258
1259         mutex_lock(&active_config_lock);
1260         nodemap = nodemap_lookup(name);
1261         mutex_unlock(&active_config_lock);
1262         if (IS_ERR(nodemap))
1263                 GOTO(out, rc = PTR_ERR(nodemap));
1264
1265         nodemap->nmf_allow_root_access = allow_root;
1266         rc = nodemap_idx_nodemap_update(nodemap);
1267
1268         nm_member_revoke_locks(nodemap);
1269         nodemap_putref(nodemap);
1270 out:
1271         return rc;
1272 }
1273 EXPORT_SYMBOL(nodemap_set_allow_root);
1274
1275 /**
1276  * Set the nmf_trust_client_ids flag to true or false.
1277  *
1278  * \param       name                    nodemap name
1279  * \param       trust_client_ids        if true, nodemap will not map its IDs
1280  * \retval      0 on success
1281  *
1282  */
1283 int nodemap_set_trust_client_ids(const char *name, bool trust_client_ids)
1284 {
1285         struct lu_nodemap       *nodemap = NULL;
1286         int                     rc = 0;
1287
1288         mutex_lock(&active_config_lock);
1289         nodemap = nodemap_lookup(name);
1290         mutex_unlock(&active_config_lock);
1291         if (IS_ERR(nodemap))
1292                 GOTO(out, rc = PTR_ERR(nodemap));
1293
1294         nodemap->nmf_trust_client_ids = trust_client_ids;
1295         rc = nodemap_idx_nodemap_update(nodemap);
1296
1297         nm_member_revoke_locks(nodemap);
1298         nodemap_putref(nodemap);
1299 out:
1300         return rc;
1301 }
1302 EXPORT_SYMBOL(nodemap_set_trust_client_ids);
1303
1304 int nodemap_set_mapping_mode(const char *name,
1305                              enum nodemap_mapping_modes map_mode)
1306 {
1307         struct lu_nodemap       *nodemap = NULL;
1308         int                     rc = 0;
1309
1310         mutex_lock(&active_config_lock);
1311         nodemap = nodemap_lookup(name);
1312         mutex_unlock(&active_config_lock);
1313         if (IS_ERR(nodemap))
1314                 GOTO(out, rc = PTR_ERR(nodemap));
1315
1316         nodemap->nmf_map_mode = map_mode;
1317         rc = nodemap_idx_nodemap_update(nodemap);
1318
1319         nm_member_revoke_locks(nodemap);
1320         nodemap_putref(nodemap);
1321 out:
1322         return rc;
1323 }
1324 EXPORT_SYMBOL(nodemap_set_mapping_mode);
1325
1326 /**
1327  * Update the squash_uid for a nodemap.
1328  *
1329  * \param       name            nodemap name
1330  * \param       uid             the new uid to squash unknown users to
1331  * \retval      0 on success
1332  *
1333  * Update the squash_uid for a nodemap. The squash_uid is the uid
1334  * that the all client uids are mapped to if nodemap is active,
1335  * the trust_client_ids flag is not set, and the uid is not in
1336  * the idmap tree.
1337  */
1338 int nodemap_set_squash_uid(const char *name, uid_t uid)
1339 {
1340         struct lu_nodemap       *nodemap = NULL;
1341         int                     rc = 0;
1342
1343         mutex_lock(&active_config_lock);
1344         nodemap = nodemap_lookup(name);
1345         mutex_unlock(&active_config_lock);
1346         if (IS_ERR(nodemap))
1347                 GOTO(out, rc = PTR_ERR(nodemap));
1348
1349         nodemap->nm_squash_uid = uid;
1350         rc = nodemap_idx_nodemap_update(nodemap);
1351
1352         nm_member_revoke_locks(nodemap);
1353         nodemap_putref(nodemap);
1354 out:
1355         return rc;
1356 }
1357 EXPORT_SYMBOL(nodemap_set_squash_uid);
1358
1359 /**
1360  * Update the squash_gid for a nodemap.
1361  *
1362  * \param       name            nodemap name
1363  * \param       gid             the new gid to squash unknown gids to
1364  * \retval      0 on success
1365  *
1366  * Update the squash_gid for a nodemap. The squash_gid is the gid
1367  * that the all client gids are mapped to if nodemap is active,
1368  * the trust_client_ids flag is not set, and the gid is not in
1369  * the idmap tree.
1370  */
1371 int nodemap_set_squash_gid(const char *name, gid_t gid)
1372 {
1373         struct lu_nodemap       *nodemap = NULL;
1374         int                     rc = 0;
1375
1376         mutex_lock(&active_config_lock);
1377         nodemap = nodemap_lookup(name);
1378         mutex_unlock(&active_config_lock);
1379         if (IS_ERR(nodemap))
1380                 GOTO(out, rc = PTR_ERR(nodemap));
1381
1382         nodemap->nm_squash_gid = gid;
1383         rc = nodemap_idx_nodemap_update(nodemap);
1384
1385         nm_member_revoke_locks(nodemap);
1386         nodemap_putref(nodemap);
1387 out:
1388         return rc;
1389 }
1390 EXPORT_SYMBOL(nodemap_set_squash_gid);
1391
1392 /**
1393  * Update the squash_projid for a nodemap.
1394  *
1395  * \param       name            nodemap name
1396  * \param       gid             the new projid to squash unknown projids to
1397  * \retval      0 on success
1398  *
1399  * Update the squash_projid for a nodemap. The squash_projid is the projid
1400  * that the all client projids are mapped to if nodemap is active,
1401  * the trust_client_ids flag is not set, and the projid is not in
1402  * the idmap tree.
1403  */
1404 int nodemap_set_squash_projid(const char *name, projid_t projid)
1405 {
1406         struct lu_nodemap       *nodemap = NULL;
1407         int                     rc = 0;
1408
1409         mutex_lock(&active_config_lock);
1410         nodemap = nodemap_lookup(name);
1411         mutex_unlock(&active_config_lock);
1412         if (IS_ERR(nodemap))
1413                 GOTO(out, rc = PTR_ERR(nodemap));
1414
1415         nodemap->nm_squash_projid = projid;
1416         rc = nodemap_idx_nodemap_update(nodemap);
1417
1418         nm_member_revoke_locks(nodemap);
1419         nodemap_putref(nodemap);
1420 out:
1421         return rc;
1422 }
1423 EXPORT_SYMBOL(nodemap_set_squash_projid);
1424
1425 /**
1426  * Returns true if this nodemap has root user access. Always returns true if
1427  * nodemaps are not active.
1428  *
1429  * \param       nodemap         nodemap to check access for
1430  */
1431 bool nodemap_can_setquota(const struct lu_nodemap *nodemap)
1432 {
1433         return !nodemap_active || (nodemap && nodemap->nmf_allow_root_access);
1434 }
1435 EXPORT_SYMBOL(nodemap_can_setquota);
1436
1437 /**
1438  * Set the nmf_enable_audit flag to true or false.
1439  * \param       name            nodemap name
1440  * \param       audit_mode      if true, allow audit
1441  * \retval      0 on success
1442  *
1443  */
1444 int nodemap_set_audit_mode(const char *name, bool enable_audit)
1445 {
1446         struct lu_nodemap       *nodemap = NULL;
1447         int                     rc = 0;
1448
1449         mutex_lock(&active_config_lock);
1450         nodemap = nodemap_lookup(name);
1451         mutex_unlock(&active_config_lock);
1452         if (IS_ERR(nodemap))
1453                 GOTO(out, rc = PTR_ERR(nodemap));
1454
1455         nodemap->nmf_enable_audit = enable_audit;
1456         rc = nodemap_idx_nodemap_update(nodemap);
1457
1458         nm_member_revoke_locks(nodemap);
1459         nodemap_putref(nodemap);
1460 out:
1461         return rc;
1462 }
1463 EXPORT_SYMBOL(nodemap_set_audit_mode);
1464
1465 /**
1466  * Set the nmf_forbid_encryption flag to true or false.
1467  * \param       name                    nodemap name
1468  * \param       forbid_encryption       if true, forbid encryption
1469  * \retval      0 on success
1470  *
1471  */
1472 int nodemap_set_forbid_encryption(const char *name, bool forbid_encryption)
1473 {
1474         struct lu_nodemap       *nodemap = NULL;
1475         int                     rc = 0;
1476
1477         mutex_lock(&active_config_lock);
1478         nodemap = nodemap_lookup(name);
1479         mutex_unlock(&active_config_lock);
1480         if (IS_ERR(nodemap))
1481                 GOTO(out, rc = PTR_ERR(nodemap));
1482
1483         nodemap->nmf_forbid_encryption = forbid_encryption;
1484         rc = nodemap_idx_nodemap_update(nodemap);
1485
1486         nm_member_revoke_locks(nodemap);
1487         nodemap_putref(nodemap);
1488 out:
1489         return rc;
1490 }
1491 EXPORT_SYMBOL(nodemap_set_forbid_encryption);
1492
1493
1494 /**
1495  * Add a nodemap
1496  *
1497  * \param       name            name of nodemap
1498  * \retval      0               success
1499  * \retval      -EINVAL         invalid nodemap name
1500  * \retval      -EEXIST         nodemap already exists
1501  * \retval      -ENOMEM         cannot allocate memory for nodemap
1502  */
1503 int nodemap_add(const char *nodemap_name)
1504 {
1505         struct lu_nodemap *nodemap;
1506         int rc;
1507
1508         mutex_lock(&active_config_lock);
1509         nodemap = nodemap_create(nodemap_name, active_config, 0);
1510         if (IS_ERR(nodemap)) {
1511                 mutex_unlock(&active_config_lock);
1512                 return PTR_ERR(nodemap);
1513         }
1514
1515         rc = nodemap_idx_nodemap_add(nodemap);
1516         if (rc == 0)
1517                 rc = lprocfs_nodemap_register(nodemap, 0);
1518
1519         mutex_unlock(&active_config_lock);
1520         nodemap_putref(nodemap);
1521
1522         return rc;
1523 }
1524 EXPORT_SYMBOL(nodemap_add);
1525
1526 /**
1527  * Delete a nodemap
1528  *
1529  * \param       name            name of nodemmap
1530  * \retval      0               success
1531  * \retval      -EINVAL         invalid input
1532  * \retval      -ENOENT         no existing nodemap
1533  */
1534 int nodemap_del(const char *nodemap_name)
1535 {
1536         struct lu_nodemap       *nodemap;
1537         struct lu_nid_range     *range;
1538         struct lu_nid_range     *range_temp;
1539         int                      rc = 0;
1540         int                      rc2 = 0;
1541
1542         if (strcmp(nodemap_name, DEFAULT_NODEMAP) == 0)
1543                 RETURN(-EINVAL);
1544
1545         mutex_lock(&active_config_lock);
1546         nodemap = cfs_hash_del_key(active_config->nmc_nodemap_hash,
1547                                    nodemap_name);
1548         if (nodemap == NULL) {
1549                 mutex_unlock(&active_config_lock);
1550                 GOTO(out, rc = -ENOENT);
1551         }
1552
1553         /* erase nodemap from active ranges to prevent client assignment */
1554         down_write(&active_config->nmc_range_tree_lock);
1555         list_for_each_entry_safe(range, range_temp, &nodemap->nm_ranges,
1556                                  rn_list) {
1557                 rc2 = nodemap_idx_range_del(range);
1558                 if (rc2 < 0)
1559                         rc = rc2;
1560
1561                 range_delete(&active_config->nmc_range_tree, range);
1562         }
1563         up_write(&active_config->nmc_range_tree_lock);
1564
1565         rc2 = nodemap_idx_nodemap_del(nodemap);
1566         if (rc2 < 0)
1567                 rc = rc2;
1568
1569         /*
1570          * remove procfs here in case nodemap_create called with same name
1571          * before nodemap_destroy is run.
1572          */
1573         lprocfs_nodemap_remove(nodemap->nm_pde_data);
1574         nodemap->nm_pde_data = NULL;
1575
1576         /* reclassify all member exports from nodemap, so they put their refs */
1577         down_read(&active_config->nmc_range_tree_lock);
1578         nm_member_reclassify_nodemap(nodemap);
1579         up_read(&active_config->nmc_range_tree_lock);
1580
1581         if (!list_empty(&nodemap->nm_member_list))
1582                 CWARN("nodemap_del failed to reclassify all members\n");
1583
1584         mutex_unlock(&active_config_lock);
1585
1586         nodemap_putref(nodemap);
1587
1588 out:
1589         return rc;
1590 }
1591 EXPORT_SYMBOL(nodemap_del);
1592
1593 /**
1594  * activate nodemap functions
1595  *
1596  * \param       value           1 for on, 0 for off
1597  */
1598 void nodemap_activate(const bool value)
1599 {
1600         mutex_lock(&active_config_lock);
1601         active_config->nmc_nodemap_is_active = value;
1602
1603         /* copy active value to global to avoid locking in map functions */
1604         nodemap_active = value;
1605         nodemap_idx_nodemap_activate(value);
1606         mutex_unlock(&active_config_lock);
1607         nm_member_revoke_all();
1608 }
1609 EXPORT_SYMBOL(nodemap_activate);
1610
1611 /**
1612  * Helper iterator to convert nodemap hash to list.
1613  *
1614  * \param       hs                      hash structure
1615  * \param       bd                      bucket descriptor
1616  * \param       hnode                   hash node
1617  * \param       nodemap_list_head       list head for list of nodemaps in hash
1618  */
1619 static int nodemap_cleanup_iter_cb(struct cfs_hash *hs, struct cfs_hash_bd *bd,
1620                                    struct hlist_node *hnode,
1621                                    void *nodemap_list_head)
1622 {
1623         struct lu_nodemap *nodemap;
1624
1625         nodemap = hlist_entry(hnode, struct lu_nodemap, nm_hash);
1626         list_add(&nodemap->nm_list, nodemap_list_head);
1627
1628         cfs_hash_bd_del_locked(hs, bd, hnode);
1629
1630         return 0;
1631 }
1632
1633 struct nodemap_config *nodemap_config_alloc(void)
1634 {
1635         struct nodemap_config *config;
1636         int rc = 0;
1637
1638         OBD_ALLOC_PTR(config);
1639         if (config == NULL)
1640                 return ERR_PTR(-ENOMEM);
1641
1642         rc = nodemap_init_hash(config);
1643         if (rc != 0) {
1644                 OBD_FREE_PTR(config);
1645                 return ERR_PTR(rc);
1646         }
1647
1648         init_rwsem(&config->nmc_range_tree_lock);
1649
1650         config->nmc_range_tree.nmrt_range_interval_root = INTERVAL_TREE_ROOT;
1651
1652         return config;
1653 }
1654 EXPORT_SYMBOL(nodemap_config_alloc);
1655
1656 /**
1657  * Walk the nodemap_hash and remove all nodemaps.
1658  */
1659 void nodemap_config_dealloc(struct nodemap_config *config)
1660 {
1661         struct lu_nodemap       *nodemap = NULL;
1662         struct lu_nodemap       *nodemap_temp;
1663         struct lu_nid_range     *range;
1664         struct lu_nid_range     *range_temp;
1665         LIST_HEAD(nodemap_list_head);
1666
1667         cfs_hash_for_each_safe(config->nmc_nodemap_hash,
1668                                nodemap_cleanup_iter_cb, &nodemap_list_head);
1669         cfs_hash_putref(config->nmc_nodemap_hash);
1670
1671         /* Because nodemap_destroy might sleep, we can't destroy them
1672          * in cfs_hash_for_each, so we build a list there and destroy here
1673          */
1674         list_for_each_entry_safe(nodemap, nodemap_temp, &nodemap_list_head,
1675                                  nm_list) {
1676                 mutex_lock(&active_config_lock);
1677                 down_write(&config->nmc_range_tree_lock);
1678
1679                 /* move members to new config, requires ac lock */
1680                 nm_member_reclassify_nodemap(nodemap);
1681                 list_for_each_entry_safe(range, range_temp, &nodemap->nm_ranges,
1682                                          rn_list)
1683                         range_delete(&config->nmc_range_tree, range);
1684                 up_write(&config->nmc_range_tree_lock);
1685                 mutex_unlock(&active_config_lock);
1686
1687                 /* putref must be outside of ac lock if nm could be destroyed */
1688                 nodemap_putref(nodemap);
1689         }
1690         OBD_FREE_PTR(config);
1691 }
1692 EXPORT_SYMBOL(nodemap_config_dealloc);
1693
1694 /*
1695  * callback for cfs_hash_for_each_safe used to convert a nodemap hash to a
1696  * nodemap list, generally for locking purposes as a hash cb can't sleep.
1697  */
1698 int nm_hash_list_cb(struct cfs_hash *hs, struct cfs_hash_bd *bd,
1699                     struct hlist_node *hnode,
1700                     void *nodemap_list_head)
1701 {
1702         struct lu_nodemap *nodemap;
1703
1704         nodemap = hlist_entry(hnode, struct lu_nodemap, nm_hash);
1705         list_add(&nodemap->nm_list, nodemap_list_head);
1706         return 0;
1707 }
1708
1709 void nodemap_config_set_active(struct nodemap_config *config)
1710 {
1711         struct nodemap_config   *old_config = active_config;
1712         struct lu_nodemap       *nodemap;
1713         struct lu_nodemap       *tmp;
1714         bool revoke_locks;
1715         LIST_HEAD(nodemap_list_head);
1716
1717         ENTRY;
1718
1719         LASSERT(active_config != config);
1720         LASSERT(config->nmc_default_nodemap);
1721
1722         mutex_lock(&active_config_lock);
1723
1724         /* move proc entries from already existing nms, create for new nms */
1725         cfs_hash_for_each_safe(config->nmc_nodemap_hash,
1726                                nm_hash_list_cb, &nodemap_list_head);
1727         list_for_each_entry_safe(nodemap, tmp, &nodemap_list_head, nm_list) {
1728                 struct lu_nodemap *old_nm = NULL;
1729
1730                 if (active_config != NULL)
1731                         old_nm = cfs_hash_lookup(
1732                                         active_config->nmc_nodemap_hash,
1733                                         nodemap->nm_name);
1734                 if (old_nm != NULL) {
1735                         nodemap->nm_pde_data = old_nm->nm_pde_data;
1736                         old_nm->nm_pde_data = NULL;
1737                         nodemap_putref(old_nm);
1738                 } else {
1739                         bool is_def = (nodemap == config->nmc_default_nodemap);
1740
1741                         lprocfs_nodemap_register(nodemap, is_def);
1742                 }
1743         }
1744
1745         /*
1746          * We only need to revoke locks if old nodemap was active, and new
1747          * config is now nodemap inactive. nodemap_config_dealloc will
1748          * reclassify exports, triggering a lock revoke if and only if new
1749          * nodemap is active.
1750          */
1751         revoke_locks = !config->nmc_nodemap_is_active && nodemap_active;
1752
1753         /* if new config is inactive, deactivate live config before switching */
1754         if (!config->nmc_nodemap_is_active)
1755                 nodemap_active = false;
1756         active_config = config;
1757         if (config->nmc_nodemap_is_active)
1758                 nodemap_active = true;
1759
1760         mutex_unlock(&active_config_lock);
1761
1762         if (old_config != NULL)
1763                 nodemap_config_dealloc(old_config);
1764
1765         if (revoke_locks)
1766                 nm_member_revoke_all();
1767
1768         EXIT;
1769 }
1770
1771 /**
1772  * Cleanup nodemap module on exit
1773  */
1774 void nodemap_mod_exit(void)
1775 {
1776         nodemap_config_dealloc(active_config);
1777         nodemap_procfs_exit();
1778 }
1779
1780 /**
1781  * Initialize the nodemap module
1782  */
1783 int nodemap_mod_init(void)
1784 {
1785         struct nodemap_config   *new_config;
1786         struct lu_nodemap       *nodemap;
1787         int                      rc = 0;
1788
1789         rc = nodemap_procfs_init();
1790         if (rc != 0)
1791                 return rc;
1792
1793         new_config = nodemap_config_alloc();
1794         if (IS_ERR(new_config)) {
1795                 nodemap_procfs_exit();
1796                 GOTO(out, rc = PTR_ERR(new_config));
1797         }
1798
1799         nodemap = nodemap_create(DEFAULT_NODEMAP, new_config, 1);
1800         if (IS_ERR(nodemap)) {
1801                 nodemap_config_dealloc(new_config);
1802                 nodemap_procfs_exit();
1803                 GOTO(out, rc = PTR_ERR(nodemap));
1804         }
1805
1806         nodemap_config_set_active(new_config);
1807         nodemap_putref(nodemap);
1808
1809 out:
1810         return rc;
1811 }
1812
1813 /**
1814  * Revoke locks for all nodemaps.
1815  */
1816 void nm_member_revoke_all(void)
1817 {
1818         struct lu_nodemap *nodemap;
1819         struct lu_nodemap *tmp;
1820         LIST_HEAD(nodemap_list_head);
1821
1822         mutex_lock(&active_config_lock);
1823         cfs_hash_for_each_safe(active_config->nmc_nodemap_hash,
1824                                nm_hash_list_cb, &nodemap_list_head);
1825
1826         /* revoke_locks sleeps, so can't call in cfs hash cb */
1827         list_for_each_entry_safe(nodemap, tmp, &nodemap_list_head, nm_list)
1828                 nm_member_revoke_locks_always(nodemap);
1829         mutex_unlock(&active_config_lock);
1830 }
1831
1832 /**
1833  * Returns the nodemap classification for a given nid into an ioctl buffer.
1834  * Useful for testing the nodemap configuration to make sure it is working as
1835  * expected.
1836  *
1837  * \param       nid             nid to classify
1838  * \param[out]  name_buf        buffer to write the nodemap name to
1839  * \param       name_len        length of buffer
1840  */
1841 void nodemap_test_nid(lnet_nid_t nid, char *name_buf, size_t name_len)
1842 {
1843         struct lu_nodemap       *nodemap;
1844
1845         mutex_lock(&active_config_lock);
1846         down_read(&active_config->nmc_range_tree_lock);
1847         nodemap = nodemap_classify_nid(nid);
1848         up_read(&active_config->nmc_range_tree_lock);
1849         mutex_unlock(&active_config_lock);
1850
1851         if (IS_ERR(nodemap))
1852                 return;
1853
1854         strncpy(name_buf, nodemap->nm_name, name_len);
1855         if (name_len > 0)
1856                 name_buf[name_len - 1] = '\0';
1857
1858         nodemap_putref(nodemap);
1859 }
1860 EXPORT_SYMBOL(nodemap_test_nid);
1861
1862 /**
1863  * Passes back the id mapping for a given nid/id pair. Useful for testing the
1864  * nodemap configuration to make sure it is working as expected.
1865  *
1866  * \param       nid             nid to classify
1867  * \param       idtype          uid or gid
1868  * \param       client_id       id to map to fs
1869  * \param       fs_id_buf       pointer to save mapped fs_id to
1870  *
1871  * \retval      0       success
1872  * \retval      -EINVAL invalid NID
1873  */
1874 int nodemap_test_id(lnet_nid_t nid, enum nodemap_id_type idtype,
1875                     __u32 client_id, __u32 *fs_id)
1876 {
1877         struct lu_nodemap       *nodemap;
1878
1879         mutex_lock(&active_config_lock);
1880         down_read(&active_config->nmc_range_tree_lock);
1881         nodemap = nodemap_classify_nid(nid);
1882         up_read(&active_config->nmc_range_tree_lock);
1883         mutex_unlock(&active_config_lock);
1884
1885         if (IS_ERR(nodemap))
1886                 return PTR_ERR(nodemap);
1887
1888         *fs_id = nodemap_map_id(nodemap, idtype, NODEMAP_CLIENT_TO_FS,
1889                                client_id);
1890         nodemap_putref(nodemap);
1891
1892         return 0;
1893 }
1894 EXPORT_SYMBOL(nodemap_test_id);