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[fs/lustre-release.git] / lustre / lov / lov_pack.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) 2002, 2010, Oracle and/or its affiliates. All rights reserved.
24  * Use is subject to license terms.
25  *
26  * Copyright (c) 2011, 2017, Intel Corporation.
27  */
28 /*
29  * This file is part of Lustre, http://www.lustre.org/
30  * Lustre is a trademark of Sun Microsystems, Inc.
31  *
32  * lustre/lov/lov_pack.c
33  *
34  * (Un)packing of OST/MDS requests
35  *
36  * Author: Andreas Dilger <adilger@clusterfs.com>
37  */
38
39 #define DEBUG_SUBSYSTEM S_LOV
40
41 #include <lustre_net.h>
42 #include <lustre_swab.h>
43 #include <obd.h>
44 #include <obd_class.h>
45 #include <obd_support.h>
46
47 #include "lov_cl_internal.h"
48 #include "lov_internal.h"
49
50 void lov_dump_lmm_common(int level, void *lmmp)
51 {
52         struct lov_mds_md *lmm = lmmp;
53         struct ost_id oi;
54
55         lmm_oi_le_to_cpu(&oi, &lmm->lmm_oi);
56         CDEBUG_LIMIT(level, "objid "DOSTID", magic 0x%08x, pattern %#x\n",
57                      POSTID(&oi), le32_to_cpu(lmm->lmm_magic),
58                      le32_to_cpu(lmm->lmm_pattern));
59         CDEBUG_LIMIT(level, "stripe_size %u, stripe_count %u, layout_gen %u\n",
60                      le32_to_cpu(lmm->lmm_stripe_size),
61                      le16_to_cpu(lmm->lmm_stripe_count),
62                      le16_to_cpu(lmm->lmm_layout_gen));
63 }
64
65 static void lov_dump_lmm_objects(int level, struct lov_ost_data *lod,
66                                  int stripe_count)
67 {
68         int i;
69
70         if (stripe_count > LOV_V1_INSANE_STRIPE_COUNT) {
71                 CDEBUG_LIMIT(level,
72                              "bad stripe_count %u > max_stripe_count %u\n",
73                              stripe_count, LOV_V1_INSANE_STRIPE_COUNT);
74                 return;
75         }
76
77         for (i = 0; i < stripe_count; ++i, ++lod) {
78                 struct ost_id oi;
79
80                 ostid_le_to_cpu(&lod->l_ost_oi, &oi);
81                 CDEBUG_LIMIT(level, "stripe %u idx %u subobj "DOSTID"\n", i,
82                              le32_to_cpu(lod->l_ost_idx), POSTID(&oi));
83         }
84 }
85
86 void lov_dump_lmm_v1(int level, struct lov_mds_md_v1 *lmm)
87 {
88         lov_dump_lmm_common(level, lmm);
89         lov_dump_lmm_objects(level, lmm->lmm_objects,
90                              le16_to_cpu(lmm->lmm_stripe_count));
91 }
92
93 void lov_dump_lmm_v3(int level, struct lov_mds_md_v3 *lmm)
94 {
95         lov_dump_lmm_common(level, lmm);
96         CDEBUG_LIMIT(level, "pool_name "LOV_POOLNAMEF"\n", lmm->lmm_pool_name);
97         lov_dump_lmm_objects(level, lmm->lmm_objects,
98                              le16_to_cpu(lmm->lmm_stripe_count));
99 }
100
101 void lov_dump_lmm(int level, void *lmm)
102 {
103         int magic;
104
105         magic = le32_to_cpu(((struct lov_mds_md *)lmm)->lmm_magic);
106         switch (magic) {
107         case LOV_MAGIC_V1:
108                 lov_dump_lmm_v1(level, (struct lov_mds_md_v1 *)lmm);
109                 break;
110         case LOV_MAGIC_V3:
111                 lov_dump_lmm_v3(level, (struct lov_mds_md_v3 *)lmm);
112                 break;
113         default:
114                 CDEBUG_LIMIT(level, "unrecognized lmm_magic %x, assuming %x\n",
115                              magic, LOV_MAGIC_V1);
116                 lov_dump_lmm_common(level, lmm);
117                 break;
118         }
119 }
120
121 /**
122  * Pack LOV striping metadata for disk storage format (in little
123  * endian byte order).
124  *
125  * This follows the getxattr() conventions. If \a buf_size is zero
126  * then return the size needed. If \a buf_size is too small then
127  * return -ERANGE. Otherwise return the size of the result.
128  */
129 ssize_t lov_lsm_pack_v1v3(const struct lov_stripe_md *lsm, void *buf,
130                           size_t buf_size)
131 {
132         struct lov_mds_md_v1 *lmmv1 = buf;
133         struct lov_mds_md_v3 *lmmv3 = buf;
134         struct lov_ost_data_v1 *lmm_objects;
135         size_t lmm_size;
136         unsigned int i;
137
138         ENTRY;
139
140         lmm_size = lov_mds_md_size(lsm->lsm_entries[0]->lsme_stripe_count,
141                                    lsm->lsm_magic);
142         if (buf_size == 0)
143                 RETURN(lmm_size);
144
145         if (buf_size < lmm_size)
146                 RETURN(-ERANGE);
147
148         /*
149          * lmmv1 and lmmv3 point to the same struct and have the
150          * same first fields
151          */
152         lmmv1->lmm_magic = cpu_to_le32(lsm->lsm_magic);
153         lmm_oi_cpu_to_le(&lmmv1->lmm_oi, &lsm->lsm_oi);
154         lmmv1->lmm_stripe_size = cpu_to_le32(
155                                 lsm->lsm_entries[0]->lsme_stripe_size);
156         lmmv1->lmm_stripe_count = cpu_to_le16(
157                                 lsm->lsm_entries[0]->lsme_stripe_count);
158         lmmv1->lmm_pattern = cpu_to_le32(lsm->lsm_entries[0]->lsme_pattern);
159         lmmv1->lmm_layout_gen = cpu_to_le16(lsm->lsm_layout_gen);
160
161         if (lsm->lsm_magic == LOV_MAGIC_V3) {
162                 CLASSERT(sizeof(lsm->lsm_entries[0]->lsme_pool_name) ==
163                          sizeof(lmmv3->lmm_pool_name));
164                 strlcpy(lmmv3->lmm_pool_name,
165                         lsm->lsm_entries[0]->lsme_pool_name,
166                         sizeof(lmmv3->lmm_pool_name));
167                 lmm_objects = lmmv3->lmm_objects;
168         } else {
169                 lmm_objects = lmmv1->lmm_objects;
170         }
171
172         if (lsm->lsm_is_released)
173                 RETURN(lmm_size);
174
175         for (i = 0; i < lsm->lsm_entries[0]->lsme_stripe_count; i++) {
176                 struct lov_oinfo *loi = lsm->lsm_entries[0]->lsme_oinfo[i];
177
178                 ostid_cpu_to_le(&loi->loi_oi, &lmm_objects[i].l_ost_oi);
179                 lmm_objects[i].l_ost_gen = cpu_to_le32(loi->loi_ost_gen);
180                 lmm_objects[i].l_ost_idx = cpu_to_le32(loi->loi_ost_idx);
181         }
182
183         RETURN(lmm_size);
184 }
185
186 ssize_t lov_lsm_pack(const struct lov_stripe_md *lsm, void *buf,
187                      size_t buf_size)
188 {
189         struct lov_comp_md_v1 *lcmv1 = buf;
190         struct lov_comp_md_entry_v1 *lcme;
191         struct lov_ost_data_v1 *lmm_objects;
192         size_t lmm_size;
193         unsigned int entry;
194         unsigned int offset;
195         unsigned int size;
196         unsigned int i;
197
198         ENTRY;
199
200         if (lsm->lsm_magic == LOV_MAGIC_V1 || lsm->lsm_magic == LOV_MAGIC_V3)
201                 return lov_lsm_pack_v1v3(lsm, buf, buf_size);
202
203         lmm_size = lov_comp_md_size(lsm);
204         if (buf_size == 0)
205                 RETURN(lmm_size);
206
207         if (buf_size < lmm_size)
208                 RETURN(-ERANGE);
209
210         lcmv1->lcm_magic = cpu_to_le32(lsm->lsm_magic);
211         lcmv1->lcm_size = cpu_to_le32(lmm_size);
212         lcmv1->lcm_layout_gen = cpu_to_le32(lsm->lsm_layout_gen);
213         lcmv1->lcm_flags = cpu_to_le16(lsm->lsm_flags);
214         lcmv1->lcm_mirror_count = cpu_to_le16(lsm->lsm_mirror_count);
215         lcmv1->lcm_entry_count = cpu_to_le16(lsm->lsm_entry_count);
216
217         offset = sizeof(*lcmv1) + sizeof(*lcme) * lsm->lsm_entry_count;
218
219         for (entry = 0; entry < lsm->lsm_entry_count; entry++) {
220                 struct lov_stripe_md_entry *lsme;
221                 struct lov_mds_md *lmm;
222                 __u16 stripe_count;
223
224                 lsme = lsm->lsm_entries[entry];
225                 lcme = &lcmv1->lcm_entries[entry];
226
227                 lcme->lcme_id = cpu_to_le32(lsme->lsme_id);
228                 lcme->lcme_flags = cpu_to_le32(lsme->lsme_flags);
229                 if (lsme->lsme_flags & LCME_FL_NOSYNC)
230                         lcme->lcme_timestamp =
231                                 cpu_to_le64(lsme->lsme_timestamp);
232                 lcme->lcme_extent.e_start =
233                         cpu_to_le64(lsme->lsme_extent.e_start);
234                 lcme->lcme_extent.e_end =
235                         cpu_to_le64(lsme->lsme_extent.e_end);
236                 lcme->lcme_offset = cpu_to_le32(offset);
237
238                 lmm = (struct lov_mds_md *)((char *)lcmv1 + offset);
239                 lmm->lmm_magic = cpu_to_le32(lsme->lsme_magic);
240                 /* lmm->lmm_oi not set */
241                 lmm->lmm_pattern = cpu_to_le32(lsme->lsme_pattern);
242                 lmm->lmm_stripe_size = cpu_to_le32(lsme->lsme_stripe_size);
243                 lmm->lmm_stripe_count = cpu_to_le16(lsme->lsme_stripe_count);
244                 lmm->lmm_layout_gen = cpu_to_le16(lsme->lsme_layout_gen);
245
246                 if (lsme->lsme_magic == LOV_MAGIC_V3) {
247                         struct lov_mds_md_v3 *lmmv3 =
248                                                 (struct lov_mds_md_v3 *)lmm;
249
250                         strlcpy(lmmv3->lmm_pool_name, lsme->lsme_pool_name,
251                                 sizeof(lmmv3->lmm_pool_name));
252                         lmm_objects = lmmv3->lmm_objects;
253                 } else {
254                         lmm_objects =
255                                 ((struct lov_mds_md_v1 *)lmm)->lmm_objects;
256                 }
257
258                 if (lsme_inited(lsme) &&
259                     !(lsme->lsme_pattern & LOV_PATTERN_F_RELEASED))
260                         stripe_count = lsme->lsme_stripe_count;
261                 else
262                         stripe_count = 0;
263
264                 for (i = 0; i < stripe_count; i++) {
265                         struct lov_oinfo *loi = lsme->lsme_oinfo[i];
266
267                         ostid_cpu_to_le(&loi->loi_oi, &lmm_objects[i].l_ost_oi);
268                         lmm_objects[i].l_ost_gen =
269                                         cpu_to_le32(loi->loi_ost_gen);
270                         lmm_objects[i].l_ost_idx =
271                                         cpu_to_le32(loi->loi_ost_idx);
272                 }
273
274                 size = lov_mds_md_size(stripe_count, lsme->lsme_magic);
275                 lcme->lcme_size = cpu_to_le32(size);
276                 offset += size;
277         } /* for each layout component */
278
279         RETURN(lmm_size);
280 }
281
282 /* Find the max stripecount we should use */
283 __u16 lov_get_stripe_count(struct lov_obd *lov, __u32 magic, __u16 stripe_count)
284 {
285         __u32 max_stripes = LOV_MAX_STRIPE_COUNT_OLD;
286
287         if (!stripe_count)
288                 stripe_count = lov->desc.ld_default_stripe_count;
289         if (stripe_count > lov->desc.ld_active_tgt_count)
290                 stripe_count = lov->desc.ld_active_tgt_count;
291         if (!stripe_count)
292                 stripe_count = 1;
293
294         /*
295          * stripe count is based on whether ldiskfs can handle
296          * larger EA sizes
297          */
298         if (lov->lov_ocd.ocd_connect_flags & OBD_CONNECT_MAX_EASIZE &&
299             lov->lov_ocd.ocd_max_easize)
300                 max_stripes = lov_mds_md_max_stripe_count(
301                         lov->lov_ocd.ocd_max_easize, magic);
302
303         if (stripe_count > max_stripes)
304                 stripe_count = max_stripes;
305
306         return stripe_count;
307 }
308
309 int lov_free_memmd(struct lov_stripe_md **lsmp)
310 {
311         struct lov_stripe_md *lsm = *lsmp;
312         int refc;
313
314         *lsmp = NULL;
315         refc = atomic_dec_return(&lsm->lsm_refc);
316         LASSERT(refc >= 0);
317         if (refc == 0)
318                 lsm_free(lsm);
319
320         return refc;
321 }
322
323 /*
324  * Unpack LOV object metadata from disk storage.  It is packed in LE byte
325  * order and is opaque to the networking layer.
326  */
327 struct lov_stripe_md *lov_unpackmd(struct lov_obd *lov, void *buf,
328                                    size_t buf_size)
329 {
330         const struct lsm_operations *op;
331         struct lov_stripe_md *lsm;
332         u32 magic;
333
334         ENTRY;
335
336         if (buf_size < sizeof(magic))
337                 RETURN(ERR_PTR(-EINVAL));
338
339         magic = le32_to_cpu(*(u32 *)buf);
340         op = lsm_op_find(magic);
341         if (!op)
342                 RETURN(ERR_PTR(-EINVAL));
343
344         lsm = op->lsm_unpackmd(lov, buf, buf_size);
345
346         RETURN(lsm);
347 }
348
349 /*
350  * Retrieve object striping information.
351  *
352  * @lump is a pointer to an in-core struct with lmm_ost_count indicating
353  * the maximum number of OST indices which will fit in the user buffer.
354  * lmm_magic must be LOV_USER_MAGIC.
355  *
356  * If @size > 0, User specified limited buffer size, usually the buffer is from
357  * ll_lov_setstripe(), and the buffer can only hold basic layout template info.
358  */
359 int lov_getstripe(const struct lu_env *env, struct lov_object *obj,
360                   struct lov_stripe_md *lsm, struct lov_user_md __user *lump,
361                   size_t size)
362 {
363         /* we use lov_user_md_v3 because it is larger than lov_user_md_v1 */
364         struct lov_mds_md *lmmk, *lmm;
365         struct lov_user_md_v1 lum;
366         size_t lmmk_size;
367         ssize_t lmm_size, lum_size = 0;
368         static bool printed;
369         int rc = 0;
370
371         ENTRY;
372
373         if (lsm->lsm_magic != LOV_MAGIC_V1 && lsm->lsm_magic != LOV_MAGIC_V3 &&
374             lsm->lsm_magic != LOV_MAGIC_COMP_V1) {
375                 CERROR("bad LSM MAGIC: 0x%08X != 0x%08X nor 0x%08X\n",
376                        lsm->lsm_magic, LOV_MAGIC_V1, LOV_MAGIC_V3);
377                 GOTO(out, rc = -EIO);
378         }
379
380         if (!printed) {
381                 LCONSOLE_WARN("%s: using old ioctl(LL_IOC_LOV_GETSTRIPE) on "
382                               DFID", use llapi_layout_get_by_path()\n",
383                               current->comm,
384                               PFID(&obj->lo_cl.co_lu.lo_header->loh_fid));
385                 printed = true;
386         }
387
388         lmmk_size = lov_comp_md_size(lsm);
389
390         OBD_ALLOC_LARGE(lmmk, lmmk_size);
391         if (!lmmk)
392                 GOTO(out, rc = -ENOMEM);
393
394         lmm_size = lov_lsm_pack(lsm, lmmk, lmmk_size);
395         if (lmm_size < 0)
396                 GOTO(out_free, rc = lmm_size);
397
398         if (cpu_to_le32(LOV_MAGIC) != LOV_MAGIC) {
399                 if (lmmk->lmm_magic == cpu_to_le32(LOV_MAGIC_V1) ||
400                     lmmk->lmm_magic == cpu_to_le32(LOV_MAGIC_V3)) {
401                         lustre_swab_lov_mds_md(lmmk);
402                         lustre_swab_lov_user_md_objects(
403                                 (struct lov_user_ost_data *)lmmk->lmm_objects,
404                                 lmmk->lmm_stripe_count);
405                 } else if (lmmk->lmm_magic == cpu_to_le32(LOV_MAGIC_COMP_V1)) {
406                         lustre_swab_lov_comp_md_v1(
407                                         (struct lov_comp_md_v1 *)lmmk);
408                 }
409         }
410
411         /*
412          * Legacy appication passes limited buffer, we need to figure out
413          * the user buffer size by the passed in lmm_stripe_count.
414          */
415         if (copy_from_user(&lum, lump, sizeof(struct lov_user_md_v1)))
416                 GOTO(out_free, rc = -EFAULT);
417
418         if (lum.lmm_magic == LOV_USER_MAGIC_V1 ||
419             lum.lmm_magic == LOV_USER_MAGIC_V3)
420                 lum_size = lov_user_md_size(lum.lmm_stripe_count,
421                                             lum.lmm_magic);
422
423         if (lum_size != 0) {
424                 struct lov_mds_md *comp_md = lmmk;
425
426                 /*
427                  * Legacy app (ADIO for instance) treats the layout as V1/V3
428                  * blindly, we'd return a reasonable V1/V3 for them.
429                  */
430                 if (lmmk->lmm_magic == LOV_MAGIC_COMP_V1) {
431                         struct lov_comp_md_v1 *comp_v1;
432                         struct cl_object *cl_obj;
433                         struct cl_attr attr;
434                         int i;
435
436                         attr.cat_size = 0;
437                         cl_obj = cl_object_top(&obj->lo_cl);
438                         cl_object_attr_lock(cl_obj);
439                         cl_object_attr_get(env, cl_obj, &attr);
440                         cl_object_attr_unlock(cl_obj);
441
442                         /*
443                          * return the last instantiated component if file size
444                          * is non-zero, otherwise, return the last component.
445                          */
446                         comp_v1 = (struct lov_comp_md_v1 *)lmmk;
447                         i = attr.cat_size == 0 ? comp_v1->lcm_entry_count : 0;
448                         for (; i < comp_v1->lcm_entry_count; i++) {
449                                 if (!(comp_v1->lcm_entries[i].lcme_flags &
450                                                 LCME_FL_INIT))
451                                         break;
452                         }
453                         if (i > 0)
454                                 i--;
455                         comp_md = (struct lov_mds_md *)((char *)comp_v1 +
456                                         comp_v1->lcm_entries[i].lcme_offset);
457                 }
458
459                 lmm = comp_md;
460                 lmm_size = lum_size;
461         } else {
462                 lmm = lmmk;
463                 lmm_size = lmmk_size;
464         }
465         /**
466          * User specified limited buffer size, usually the buffer is
467          * from ll_lov_setstripe(), and the buffer can only hold basic
468          * layout template info.
469          */
470         if (size == 0 || size > lmm_size)
471                 size = lmm_size;
472         if (copy_to_user(lump, lmm, size))
473                 GOTO(out_free, rc = -EFAULT);
474
475 out_free:
476         OBD_FREE_LARGE(lmmk, lmmk_size);
477 out:
478         RETURN(rc);
479 }