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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.sun.com/software/products/lustre/docs/GPLv2.pdf
19  *
20  * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
21  * CA 95054 USA or visit www.sun.com if you need additional information or
22  * have any questions.
23  *
24  * GPL HEADER END
25  */
26 /*
27  * Copyright (c) 2002, 2010, Oracle and/or its affiliates. All rights reserved.
28  * Use is subject to license terms.
29  *
30  * Copyright (c) 2011, 2013, Intel Corporation.
31  */
32 /*
33  * This file is part of Lustre, http://www.lustre.org/
34  * Lustre is a trademark of Sun Microsystems, Inc.
35  *
36  * lustre/lov/lov_pack.c
37  *
38  * (Un)packing of OST/MDS requests
39  *
40  * Author: Andreas Dilger <adilger@clusterfs.com>
41  */
42
43 #define DEBUG_SUBSYSTEM S_LOV
44
45 #include <lustre_net.h>
46 #include <obd.h>
47 #include <obd_class.h>
48 #include <obd_support.h>
49 #include <lustre/lustre_user.h>
50
51 #include "lov_internal.h"
52
53 void lov_dump_lmm_common(int level, void *lmmp)
54 {
55         struct lov_mds_md *lmm = lmmp;
56         struct ost_id   oi;
57
58         lmm_oi_le_to_cpu(&oi, &lmm->lmm_oi);
59         CDEBUG(level, "objid "DOSTID", magic 0x%08x, pattern %#x\n",
60                POSTID(&oi), le32_to_cpu(lmm->lmm_magic),
61                le32_to_cpu(lmm->lmm_pattern));
62         CDEBUG(level, "stripe_size %u, stripe_count %u, layout_gen %u\n",
63                le32_to_cpu(lmm->lmm_stripe_size),
64                le16_to_cpu(lmm->lmm_stripe_count),
65                le16_to_cpu(lmm->lmm_layout_gen));
66 }
67
68 static void lov_dump_lmm_objects(int level, struct lov_ost_data *lod,
69                                  int stripe_count)
70 {
71         int i;
72
73         if (stripe_count > LOV_V1_INSANE_STRIPE_COUNT) {
74                 CDEBUG(level, "bad stripe_count %u > max_stripe_count %u\n",
75                        stripe_count, LOV_V1_INSANE_STRIPE_COUNT);
76                 return;
77         }
78
79         for (i = 0; i < stripe_count; ++i, ++lod) {
80                 struct ost_id   oi;
81
82                 ostid_le_to_cpu(&lod->l_ost_oi, &oi);
83                 CDEBUG(level, "stripe %u idx %u subobj "DOSTID"\n", i,
84                        le32_to_cpu(lod->l_ost_idx), POSTID(&oi));
85         }
86 }
87
88 void lov_dump_lmm_v1(int level, struct lov_mds_md_v1 *lmm)
89 {
90         lov_dump_lmm_common(level, lmm);
91         lov_dump_lmm_objects(level, lmm->lmm_objects,
92                              le16_to_cpu(lmm->lmm_stripe_count));
93 }
94
95 void lov_dump_lmm_v3(int level, struct lov_mds_md_v3 *lmm)
96 {
97         lov_dump_lmm_common(level, lmm);
98         CDEBUG(level,"pool_name "LOV_POOLNAMEF"\n", lmm->lmm_pool_name);
99         lov_dump_lmm_objects(level, lmm->lmm_objects,
100                              le16_to_cpu(lmm->lmm_stripe_count));
101 }
102
103 void lov_dump_lmm(int level, void *lmm)
104 {
105         int magic;
106
107         magic = le32_to_cpu(((struct lov_mds_md *)lmm)->lmm_magic);
108         switch (magic) {
109         case LOV_MAGIC_V1:
110                 lov_dump_lmm_v1(level, (struct lov_mds_md_v1 *)lmm);
111                 break;
112         case LOV_MAGIC_V3:
113                 lov_dump_lmm_v3(level, (struct lov_mds_md_v3 *)lmm);
114                 break;
115         default:
116                 CDEBUG(level, "unrecognized lmm_magic %x, assuming %x\n",
117                        magic, LOV_MAGIC_V1);
118                 lov_dump_lmm_common(level, lmm);
119                 break;
120         }
121 }
122
123 /* Pack LOV object metadata for disk storage.  It is packed in LE byte
124  * order and is opaque to the networking layer.
125  *
126  * XXX In the future, this will be enhanced to get the EA size from the
127  *     underlying OSC device(s) to get their EA sizes so we can stack
128  *     LOVs properly.  For now lov_mds_md_size() just assumes one obd_id
129  *     per stripe.
130  */
131 int lov_packmd(struct obd_export *exp, struct lov_mds_md **lmmp,
132                struct lov_stripe_md *lsm)
133 {
134         struct obd_device *obd = class_exp2obd(exp);
135         struct lov_obd *lov = &obd->u.lov;
136         struct lov_mds_md_v1 *lmmv1;
137         struct lov_mds_md_v3 *lmmv3;
138         __u16 stripe_count;
139         struct lov_ost_data_v1 *lmm_objects;
140         int lmm_size, lmm_magic;
141         int i;
142         int cplen = 0;
143         ENTRY;
144
145         if (lsm) {
146                 lmm_magic = lsm->lsm_magic;
147         } else {
148                 if (lmmp && *lmmp)
149                         lmm_magic = le32_to_cpu((*lmmp)->lmm_magic);
150                 else
151                         /* lsm == NULL and lmmp == NULL */
152                         lmm_magic = LOV_MAGIC;
153         }
154
155         if ((lmm_magic != LOV_MAGIC_V1) &&
156             (lmm_magic != LOV_MAGIC_V3)) {
157                 CERROR("bad mem LOV MAGIC: 0x%08X != 0x%08X nor 0x%08X\n",
158                         lmm_magic, LOV_MAGIC_V1, LOV_MAGIC_V3);
159                 RETURN(-EINVAL);
160
161         }
162
163         if (lsm) {
164                 /* If we are just sizing the EA, limit the stripe count
165                  * to the actual number of OSTs in this filesystem. */
166                 if (!lmmp) {
167                         stripe_count = lov_get_stripecnt(lov, lmm_magic,
168                                                         lsm->lsm_stripe_count);
169                         lsm->lsm_stripe_count = stripe_count;
170                 } else if (!lsm_is_released(lsm)) {
171                         stripe_count = lsm->lsm_stripe_count;
172                 } else {
173                         stripe_count = 0;
174                 }
175         } else {
176                 /* No need to allocate more than maximum supported stripes.
177                  * Anyway, this is pretty inaccurate since ld_tgt_count now
178                  * represents max index and we should rely on the actual number
179                  * of OSTs instead */
180                 stripe_count = lov_mds_md_max_stripe_count(
181                         lov->lov_ocd.ocd_max_easize, lmm_magic);
182
183                 if (stripe_count > lov->desc.ld_tgt_count)
184                         stripe_count = lov->desc.ld_tgt_count;
185         }
186
187         /* XXX LOV STACKING call into osc for sizes */
188         lmm_size = lov_mds_md_size(stripe_count, lmm_magic);
189
190         if (!lmmp)
191                 RETURN(lmm_size);
192
193         if (*lmmp && !lsm) {
194                 stripe_count = le16_to_cpu((*lmmp)->lmm_stripe_count);
195                 lmm_size = lov_mds_md_size(stripe_count, lmm_magic);
196                 OBD_FREE_LARGE(*lmmp, lmm_size);
197                 *lmmp = NULL;
198                 RETURN(0);
199         }
200
201         if (!*lmmp) {
202                 OBD_ALLOC_LARGE(*lmmp, lmm_size);
203                 if (!*lmmp)
204                         RETURN(-ENOMEM);
205         }
206
207         CDEBUG(D_INFO, "lov_packmd: LOV_MAGIC 0x%08X, lmm_size = %d \n",
208                lmm_magic, lmm_size);
209
210         lmmv1 = *lmmp;
211         lmmv3 = (struct lov_mds_md_v3 *)*lmmp;
212         if (lmm_magic == LOV_MAGIC_V3)
213                 lmmv3->lmm_magic = cpu_to_le32(LOV_MAGIC_V3);
214         else
215                 lmmv1->lmm_magic = cpu_to_le32(LOV_MAGIC_V1);
216
217         if (!lsm)
218                 RETURN(lmm_size);
219
220         /* lmmv1 and lmmv3 point to the same struct and have the
221          * same first fields
222          */
223         lmm_oi_cpu_to_le(&lmmv1->lmm_oi, &lsm->lsm_oi);
224         lmmv1->lmm_stripe_size = cpu_to_le32(lsm->lsm_stripe_size);
225         lmmv1->lmm_stripe_count = cpu_to_le16(stripe_count);
226         lmmv1->lmm_pattern = cpu_to_le32(lsm->lsm_pattern);
227         lmmv1->lmm_layout_gen = cpu_to_le16(lsm->lsm_layout_gen);
228         if (lsm->lsm_magic == LOV_MAGIC_V3) {
229                 cplen = strlcpy(lmmv3->lmm_pool_name, lsm->lsm_pool_name,
230                                 sizeof(lmmv3->lmm_pool_name));
231                 if (cplen >= sizeof(lmmv3->lmm_pool_name))
232                         RETURN(-E2BIG);
233                 lmm_objects = lmmv3->lmm_objects;
234         } else {
235                 lmm_objects = lmmv1->lmm_objects;
236         }
237
238         for (i = 0; i < stripe_count; i++) {
239                 struct lov_oinfo *loi = lsm->lsm_oinfo[i];
240                 /* XXX LOV STACKING call down to osc_packmd() to do packing */
241                 LASSERTF(ostid_id(&loi->loi_oi) != 0, "lmm_oi "DOSTID
242                          " stripe %u/%u idx %u\n", POSTID(&lmmv1->lmm_oi),
243                          i, stripe_count, loi->loi_ost_idx);
244                 ostid_cpu_to_le(&loi->loi_oi, &lmm_objects[i].l_ost_oi);
245                 lmm_objects[i].l_ost_gen = cpu_to_le32(loi->loi_ost_gen);
246                 lmm_objects[i].l_ost_idx = cpu_to_le32(loi->loi_ost_idx);
247         }
248
249         RETURN(lmm_size);
250 }
251
252 /* Find the max stripecount we should use */
253 __u16 lov_get_stripecnt(struct lov_obd *lov, __u32 magic, __u16 stripe_count)
254 {
255         __u32 max_stripes = LOV_MAX_STRIPE_COUNT_OLD;
256
257         if (!stripe_count)
258                 stripe_count = lov->desc.ld_default_stripe_count;
259         if (stripe_count > lov->desc.ld_active_tgt_count)
260                 stripe_count = lov->desc.ld_active_tgt_count;
261         if (!stripe_count)
262                 stripe_count = 1;
263
264         /* stripe count is based on whether ldiskfs can handle
265          * larger EA sizes */
266         if (lov->lov_ocd.ocd_connect_flags & OBD_CONNECT_MAX_EASIZE &&
267             lov->lov_ocd.ocd_max_easize)
268                 max_stripes = lov_mds_md_max_stripe_count(
269                         lov->lov_ocd.ocd_max_easize, magic);
270
271         if (stripe_count > max_stripes)
272                 stripe_count = max_stripes;
273
274         return stripe_count;
275 }
276
277
278 static int lov_verify_lmm(void *lmm, int lmm_bytes, __u16 *stripe_count)
279 {
280         int rc;
281
282         if (lsm_op_find(le32_to_cpu(*(__u32 *)lmm)) == NULL) {
283                 char *buffer;
284                 int sz;
285
286                 CERROR("bad disk LOV MAGIC: 0x%08X; dumping LMM (size=%d):\n",
287                        le32_to_cpu(*(__u32 *)lmm), lmm_bytes);
288                 sz = lmm_bytes * 2 + 1;
289                 OBD_ALLOC_LARGE(buffer, sz);
290                 if (buffer != NULL) {
291                         int i;
292
293                         for (i = 0; i < lmm_bytes; i++)
294                                 sprintf(buffer+2*i, "%.2X", ((char *)lmm)[i]);
295                         buffer[sz - 1] = '\0';
296                         CERROR("%s\n", buffer);
297                         OBD_FREE_LARGE(buffer, sz);
298                 }
299                 return -EINVAL;
300         }
301         rc = lsm_op_find(le32_to_cpu(*(__u32 *)lmm))->lsm_lmm_verify(lmm,
302                                      lmm_bytes, stripe_count);
303         return rc;
304 }
305
306 int lov_alloc_memmd(struct lov_stripe_md **lsmp, __u16 stripe_count,
307                     int pattern, int magic)
308 {
309         int i, lsm_size;
310         ENTRY;
311
312         CDEBUG(D_INFO, "alloc lsm, stripe_count %d\n", stripe_count);
313
314         *lsmp = lsm_alloc_plain(stripe_count, &lsm_size);
315         if (!*lsmp) {
316                 CERROR("can't allocate lsmp stripe_count %d\n", stripe_count);
317                 RETURN(-ENOMEM);
318         }
319
320         atomic_set(&(*lsmp)->lsm_refc, 1);
321         spin_lock_init(&(*lsmp)->lsm_lock);
322         (*lsmp)->lsm_magic = magic;
323         (*lsmp)->lsm_stripe_count = stripe_count;
324         (*lsmp)->lsm_maxbytes = LUSTRE_EXT3_STRIPE_MAXBYTES * stripe_count;
325         (*lsmp)->lsm_pattern = pattern;
326         (*lsmp)->lsm_pool_name[0] = '\0';
327         (*lsmp)->lsm_layout_gen = 0;
328         if (stripe_count > 0)
329                 (*lsmp)->lsm_oinfo[0]->loi_ost_idx = ~0;
330
331         for (i = 0; i < stripe_count; i++)
332                 loi_init((*lsmp)->lsm_oinfo[i]);
333
334         RETURN(lsm_size);
335 }
336
337 int lov_free_memmd(struct lov_stripe_md **lsmp)
338 {
339         struct lov_stripe_md *lsm = *lsmp;
340         int refc;
341
342         *lsmp = NULL;
343         refc = atomic_dec_return(&lsm->lsm_refc);
344         LASSERT(refc >= 0);
345         if (refc == 0) {
346                 LASSERT(lsm_op_find(lsm->lsm_magic) != NULL);
347                 lsm_op_find(lsm->lsm_magic)->lsm_free(lsm);
348         }
349         return refc;
350 }
351
352
353 /* Unpack LOV object metadata from disk storage.  It is packed in LE byte
354  * order and is opaque to the networking layer.
355  */
356 int lov_unpackmd(struct obd_export *exp,  struct lov_stripe_md **lsmp,
357                  struct lov_mds_md *lmm, int lmm_bytes)
358 {
359         struct obd_device *obd = class_exp2obd(exp);
360         struct lov_obd *lov = &obd->u.lov;
361         int rc = 0, lsm_size;
362         __u16 stripe_count;
363         __u32 magic;
364         __u32 pattern;
365         ENTRY;
366
367         /* If passed an MDS struct use values from there, otherwise defaults */
368         if (lmm) {
369                 rc = lov_verify_lmm(lmm, lmm_bytes, &stripe_count);
370                 if (rc)
371                         RETURN(rc);
372                 magic = le32_to_cpu(lmm->lmm_magic);
373                 pattern = le32_to_cpu(lmm->lmm_pattern);
374         } else {
375                 magic = LOV_MAGIC;
376                 stripe_count = lov_get_stripecnt(lov, magic, 0);
377                 pattern = LOV_PATTERN_RAID0;
378         }
379
380         /* If we aren't passed an lsmp struct, we just want the size */
381         if (!lsmp) {
382                 /* XXX LOV STACKING call into osc for sizes */
383                 LBUG();
384                 RETURN(lov_stripe_md_size(stripe_count));
385         }
386         /* If we are passed an allocated struct but nothing to unpack, free */
387         if (*lsmp && !lmm) {
388                 lov_free_memmd(lsmp);
389                 RETURN(0);
390         }
391
392         lsm_size = lov_alloc_memmd(lsmp, stripe_count, pattern, magic);
393         if (lsm_size < 0)
394                 RETURN(lsm_size);
395
396         /* If we are passed a pointer but nothing to unpack, we only alloc */
397         if (!lmm)
398                 RETURN(lsm_size);
399
400         LASSERT(lsm_op_find(magic) != NULL);
401         rc = lsm_op_find(magic)->lsm_unpackmd(lov, *lsmp, lmm);
402         if (rc) {
403                 lov_free_memmd(lsmp);
404                 RETURN(rc);
405         }
406
407         RETURN(lsm_size);
408 }
409
410 /* Retrieve object striping information.
411  *
412  * @lump is a pointer to an in-core struct with lmm_ost_count indicating
413  * the maximum number of OST indices which will fit in the user buffer.
414  * lmm_magic must be LOV_USER_MAGIC.
415  */
416 int lov_getstripe(struct obd_export *exp, struct lov_stripe_md *lsm,
417                   struct lov_user_md __user *lump)
418 {
419         /*
420          * XXX huge struct allocated on stack.
421          */
422         /* we use lov_user_md_v3 because it is larger than lov_user_md_v1 */
423         struct lov_user_md_v3 lum;
424         struct lov_mds_md *lmmk = NULL;
425         int rc, lmm_size;
426         int lum_size;
427         ENTRY;
428
429         if (!lsm)
430                 RETURN(-ENODATA);
431
432         /* we only need the header part from user space to get lmm_magic and
433          * lmm_stripe_count, (the header part is common to v1 and v3) */
434         lum_size = sizeof(struct lov_user_md_v1);
435         if (copy_from_user(&lum, lump, lum_size))
436                 GOTO(out_set, rc = -EFAULT);
437         else if ((lum.lmm_magic != LOV_USER_MAGIC) &&
438                  (lum.lmm_magic != LOV_USER_MAGIC_V3))
439                 GOTO(out_set, rc = -EINVAL);
440
441         if (lum.lmm_stripe_count &&
442             (lum.lmm_stripe_count < lsm->lsm_stripe_count)) {
443                 /* Return right size of stripe to user */
444                 lum.lmm_stripe_count = lsm->lsm_stripe_count;
445                 rc = copy_to_user(lump, &lum, lum_size);
446                 GOTO(out_set, rc = -EOVERFLOW);
447         }
448         rc = lov_packmd(exp, &lmmk, lsm);
449         if (rc < 0)
450                 GOTO(out_set, rc);
451         lmm_size = rc;
452         rc = 0;
453
454         /* FIXME: Bug 1185 - copy fields properly when structs change */
455         /* struct lov_user_md_v3 and struct lov_mds_md_v3 must be the same */
456         CLASSERT(sizeof(lum) == sizeof(struct lov_mds_md_v3));
457         CLASSERT(sizeof lum.lmm_objects[0] == sizeof lmmk->lmm_objects[0]);
458
459         if ((cpu_to_le32(LOV_MAGIC) != LOV_MAGIC) &&
460             ((lmmk->lmm_magic == cpu_to_le32(LOV_MAGIC_V1)) ||
461             (lmmk->lmm_magic == cpu_to_le32(LOV_MAGIC_V3)))) {
462                 lustre_swab_lov_mds_md(lmmk);
463                 lustre_swab_lov_user_md_objects(
464                                 (struct lov_user_ost_data*)lmmk->lmm_objects,
465                                 lmmk->lmm_stripe_count);
466         }
467         if (lum.lmm_magic == LOV_USER_MAGIC) {
468                 /* User request for v1, we need skip lmm_pool_name */
469                 if (lmmk->lmm_magic == LOV_MAGIC_V3) {
470                         memmove(((struct lov_mds_md_v1 *)lmmk)->lmm_objects,
471                                 ((struct lov_mds_md_v3 *)lmmk)->lmm_objects,
472                                 lmmk->lmm_stripe_count *
473                                 sizeof(struct lov_ost_data_v1));
474                         lmm_size -= LOV_MAXPOOLNAME;
475                 }
476         } else {
477                 /* if v3 we just have to update the lum_size */
478                 lum_size = sizeof(struct lov_user_md_v3);
479         }
480
481         /* User wasn't expecting this many OST entries */
482         if (lum.lmm_stripe_count == 0)
483                 lmm_size = lum_size;
484         else if (lum.lmm_stripe_count < lmmk->lmm_stripe_count)
485                 GOTO(out_set, rc = -EOVERFLOW);
486         /*
487          * Have a difference between lov_mds_md & lov_user_md.
488          * So we have to re-order the data before copy to user.
489          */
490         lum.lmm_stripe_count = lmmk->lmm_stripe_count;
491         lum.lmm_layout_gen = lmmk->lmm_layout_gen;
492         ((struct lov_user_md *)lmmk)->lmm_layout_gen = lum.lmm_layout_gen;
493         ((struct lov_user_md *)lmmk)->lmm_stripe_count = lum.lmm_stripe_count;
494         if (copy_to_user(lump, lmmk, lmm_size))
495                 rc = -EFAULT;
496
497         obd_free_diskmd(exp, &lmmk);
498 out_set:
499         RETURN(rc);
500 }