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CommitLineData
82d9eba6
NB
1/*
2 * mdadm - manage Linux "md" devices aka RAID arrays.
3 *
e736b623 4 * Copyright (C) 2001-2009 Neil Brown <neilb@suse.de>
82d9eba6
NB
5 *
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2 of the License, or
10 * (at your option) any later version.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License
18 * along with this program; if not, write to the Free Software
19 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
20 *
21 * Author: Neil Brown
e736b623 22 * Email: <neilb@suse.de>
82d9eba6
NB
23 */
24
25#include "mdadm.h"
82d9eba6
NB
26/*
27 * The version-1 superblock :
28 * All numeric fields are little-endian.
29 *
30 * total size: 256 bytes plus 2 per device.
31 * 1K allows 384 devices.
32 */
33struct mdp_superblock_1 {
34 /* constant array information - 128 bytes */
35 __u32 magic; /* MD_SB_MAGIC: 0xa92b4efc - little endian */
36 __u32 major_version; /* 1 */
37 __u32 feature_map; /* 0 for now */
38 __u32 pad0; /* always set to 0 when writing */
39
40 __u8 set_uuid[16]; /* user-space generated. */
41 char set_name[32]; /* set and interpreted by user-space */
42
43 __u64 ctime; /* lo 40 bits are seconds, top 24 are microseconds or 0*/
44 __u32 level; /* -4 (multipath), -1 (linear), 0,1,4,5 */
45 __u32 layout; /* only for raid5 currently */
46 __u64 size; /* used size of component devices, in 512byte sectors */
47
48 __u32 chunksize; /* in 512byte sectors */
49 __u32 raid_disks;
34163fc7
NB
50 __u32 bitmap_offset; /* sectors after start of superblock that bitmap starts
51 * NOTE: signed, so bitmap can be before superblock
52 * only meaningful of feature_map[0] is set.
53 */
b674b5b8
NB
54
55 /* These are only valid with feature bit '4' */
b674b5b8 56 __u32 new_level; /* new level we are reshaping to */
ac957baa 57 __u64 reshape_position; /* next address in array-space for reshape */
b674b5b8
NB
58 __u32 delta_disks; /* change in number of raid_disks */
59 __u32 new_layout; /* new layout */
60 __u32 new_chunk; /* new chunk size (bytes) */
8fe1c44f
N
61 __u32 new_offset; /* signed number to add to data_offset in new
62 * layout. 0 == no-change. This can be
63 * different on each device in the array.
64 */
82d9eba6
NB
65
66 /* constant this-device information - 64 bytes */
67 __u64 data_offset; /* sector start of data, often 0 */
68 __u64 data_size; /* sectors in this device that can be used for data */
69 __u64 super_offset; /* sector start of this superblock */
70 __u64 recovery_offset;/* sectors before this offset (from data_offset) have been recovered */
71 __u32 dev_number; /* permanent identifier of this device - not role in raid */
72 __u32 cnt_corrected_read; /* number of read errors that were corrected by re-writing */
73 __u8 device_uuid[16]; /* user-space setable, ignored by kernel */
5d500228 74 __u8 devflags; /* per-device flags. Only one defined...*/
dfd4d8ee 75#define WriteMostly1 1 /* mask for writemostly flag in above */
bf95d0f3
N
76 /* bad block log. If there are any bad blocks the feature flag is set.
77 * if offset and size are non-zero, that space is reserved and available.
78 */
79 __u8 bblog_shift; /* shift from sectors to block size for badblocklist */
80 __u16 bblog_size; /* number of sectors reserved for badblocklist */
81 __u32 bblog_offset; /* sector offset from superblock to bblog, signed */
82d9eba6
NB
82
83 /* array state information - 64 bytes */
84 __u64 utime; /* 40 bits second, 24 btes microseconds */
85 __u64 events; /* incremented when superblock updated */
86 __u64 resync_offset; /* data before this offset (from data_offset) known to be in sync */
4180aa4d
N
87 __u32 sb_csum; /* checksum upto dev_roles[max_dev] */
88 __u32 max_dev; /* size of dev_roles[] array to consider */
82d9eba6
NB
89 __u8 pad3[64-32]; /* set to 0 when writing */
90
91 /* device state information. Indexed by dev_number.
92 * 2 bytes per device
93 * Note there are no per-device state flags. State information is rolled
94 * into the 'roles' value. If a device is spare or faulty, then it doesn't
95 * have a meaningful role.
96 */
97 __u16 dev_roles[0]; /* role in array, or 0xffff for a spare, or 0xfffe for faulty */
98};
99
911cead7
N
100#define MAX_SB_SIZE 4096
101/* bitmap super size is 256, but we round up to a sector for alignment */
102#define BM_SUPER_SIZE 512
103#define MAX_DEVS ((int)(MAX_SB_SIZE - sizeof(struct mdp_superblock_1)) / 2)
41226756
JS
104#define SUPER1_SIZE (MAX_SB_SIZE + BM_SUPER_SIZE \
105 + sizeof(struct misc_dev_info))
911cead7 106
bee8ec56
NB
107struct misc_dev_info {
108 __u64 device_size;
109};
110
d2cd3ffc
NB
111/* feature_map bits */
112#define MD_FEATURE_BITMAP_OFFSET 1
113#define MD_FEATURE_RECOVERY_OFFSET 2 /* recovery_offset is present and
114 * must be honoured
115 */
b674b5b8 116#define MD_FEATURE_RESHAPE_ACTIVE 4
bf95d0f3 117#define MD_FEATURE_BAD_BLOCKS 8 /* badblock list is not empty */
8fe1c44f
N
118#define MD_FEATURE_REPLACEMENT 16 /* This device is replacing an
119 * active device with same 'role'.
120 * 'recovery_offset' is also set.
121 */
122#define MD_FEATURE_RESHAPE_BACKWARDS 32 /* Reshape doesn't change number
123 * of devices, but is going
124 * backwards anyway.
125 */
126#define MD_FEATURE_NEW_OFFSET 64 /* new_offset must be honoured */
127#define MD_FEATURE_ALL (MD_FEATURE_BITMAP_OFFSET \
128 |MD_FEATURE_RECOVERY_OFFSET \
129 |MD_FEATURE_RESHAPE_ACTIVE \
130 |MD_FEATURE_BAD_BLOCKS \
131 |MD_FEATURE_REPLACEMENT \
132 |MD_FEATURE_RESHAPE_BACKWARDS \
133 |MD_FEATURE_NEW_OFFSET \
134 )
d2cd3ffc 135
570c0542 136#ifndef offsetof
067db4df 137#define offsetof(t,f) ((size_t)&(((t*)0)->f))
570c0542 138#endif
82d9eba6
NB
139static unsigned int calc_sb_1_csum(struct mdp_superblock_1 * sb)
140{
141 unsigned int disk_csum, csum;
142 unsigned long long newcsum;
143 int size = sizeof(*sb) + __le32_to_cpu(sb->max_dev)*2;
144 unsigned int *isuper = (unsigned int*)sb;
82d9eba6
NB
145
146/* make sure I can count... */
147 if (offsetof(struct mdp_superblock_1,data_offset) != 128 ||
148 offsetof(struct mdp_superblock_1, utime) != 192 ||
149 sizeof(struct mdp_superblock_1) != 256) {
150 fprintf(stderr, "WARNING - superblock isn't sized correctly\n");
151 }
152
153 disk_csum = sb->sb_csum;
154 sb->sb_csum = 0;
155 newcsum = 0;
e4c72d1d 156 for (; size>=4; size -= 4 ) {
722966c6
PC
157 newcsum += __le32_to_cpu(*isuper);
158 isuper++;
159 }
82d9eba6
NB
160
161 if (size == 2)
162 newcsum += __le16_to_cpu(*(unsigned short*) isuper);
163
164 csum = (newcsum & 0xffffffff) + (newcsum >> 32);
165 sb->sb_csum = disk_csum;
83205b64 166 return __cpu_to_le32(csum);
82d9eba6
NB
167}
168
308340aa
JS
169/*
170 * Information related to file descriptor used for aligned reads/writes.
171 * Cache the block size.
172 */
173struct align_fd {
174 int fd;
175 int blk_sz;
176};
177
178static void init_afd(struct align_fd *afd, int fd)
179{
180 afd->fd = fd;
181
182 if (ioctl(afd->fd, BLKSSZGET, &afd->blk_sz) != 0)
183 afd->blk_sz = 512;
184}
185
5ea022a1 186static char abuf[4096+4096];
308340aa 187static int aread(struct align_fd *afd, void *buf, int len)
5ea022a1
N
188{
189 /* aligned read.
190 * On devices with a 4K sector size, we need to read
191 * the full sector and copy relevant bits into
192 * the buffer
193 */
6ef89052 194 int bsize, iosize;
5ea022a1
N
195 char *b;
196 int n;
6ef89052 197
308340aa
JS
198 bsize = afd->blk_sz;
199
200 if (!bsize || bsize > 4096 || len > 4096) {
201 if (!bsize)
202 fprintf(stderr, "WARNING - aread() called with "
203 "invalid block size\n");
5ea022a1 204 return -1;
308340aa 205 }
0a2f1894 206 b = ROUND_UP_PTR((char *)abuf, 4096);
5ea022a1 207
6ef89052
N
208 for (iosize = 0; iosize < len; iosize += bsize)
209 ;
308340aa 210 n = read(afd->fd, b, iosize);
5ea022a1
N
211 if (n <= 0)
212 return n;
308340aa 213 lseek(afd->fd, len - n, 1);
5ea022a1
N
214 if (n > len)
215 n = len;
216 memcpy(buf, b, n);
217 return n;
218}
219
308340aa 220static int awrite(struct align_fd *afd, void *buf, int len)
5ea022a1
N
221{
222 /* aligned write.
223 * On devices with a 4K sector size, we need to write
224 * the full sector. We pre-read if the sector is larger
225 * than the write.
226 * The address must be sector-aligned.
227 */
6ef89052 228 int bsize, iosize;
5ea022a1
N
229 char *b;
230 int n;
308340aa
JS
231
232 bsize = afd->blk_sz;
233 if (!bsize || bsize > 4096 || len > 4096) {
234 if (!bsize)
235 fprintf(stderr, "WARNING - awrite() called with "
236 "invalid block size\n");
5ea022a1 237 return -1;
308340aa 238 }
0a2f1894 239 b = ROUND_UP_PTR((char *)abuf, 4096);
5ea022a1 240
6ef89052
N
241 for (iosize = 0; iosize < len ; iosize += bsize)
242 ;
243
244 if (len != iosize) {
308340aa 245 n = read(afd->fd, b, iosize);
6ef89052
N
246 if (n <= 0)
247 return n;
308340aa 248 lseek(afd->fd, -n, 1);
6ef89052
N
249 }
250
5ea022a1 251 memcpy(b, buf, len);
308340aa 252 n = write(afd->fd, b, iosize);
5ea022a1
N
253 if (n <= 0)
254 return n;
308340aa 255 lseek(afd->fd, len - n, 1);
5ea022a1
N
256 return len;
257}
258
c7654afc 259#ifndef MDASSEMBLE
3da92f27 260static void examine_super1(struct supertype *st, char *homehost)
82d9eba6 261{
3da92f27 262 struct mdp_superblock_1 *sb = st->sb;
82d9eba6 263 time_t atime;
f21e18ca 264 unsigned int d;
e8e1c176 265 int role;
4180aa4d 266 int delta_extra = 0;
82d9eba6
NB
267 int i;
268 char *c;
a1cbd7d0 269 int l = homehost ? strlen(homehost) : 0;
83205b64 270 int layout;
a17a3de3 271 unsigned long long sb_offset;
5e1863d4 272 struct mdinfo info;
82d9eba6
NB
273
274 printf(" Magic : %08x\n", __le32_to_cpu(sb->magic));
a17a3de3
DL
275 printf(" Version : 1");
276 sb_offset = __le64_to_cpu(sb->super_offset);
277 if (sb_offset <= 4)
278 printf(".1\n");
279 else if (sb_offset <= 8)
280 printf(".2\n");
281 else
282 printf(".0\n");
91eedefc 283 printf(" Feature Map : 0x%x\n", __le32_to_cpu(sb->feature_map));
82d9eba6
NB
284 printf(" Array UUID : ");
285 for (i=0; i<16; i++) {
82d9eba6 286 if ((i&3)==0 && i != 0) printf(":");
34163fc7 287 printf("%02x", sb->set_uuid[i]);
82d9eba6
NB
288 }
289 printf("\n");
a1cbd7d0
NB
290 printf(" Name : %.32s", sb->set_name);
291 if (l > 0 && l < 32 &&
292 sb->set_name[l] == ':' &&
293 strncmp(sb->set_name, homehost, l) == 0)
294 printf(" (local to host %s)", homehost);
295 printf("\n");
82d9eba6
NB
296 atime = __le64_to_cpu(sb->ctime) & 0xFFFFFFFFFFULL;
297 printf(" Creation Time : %.24s\n", ctime(&atime));
298 c=map_num(pers, __le32_to_cpu(sb->level));
299 printf(" Raid Level : %s\n", c?c:"-unknown-");
300 printf(" Raid Devices : %d\n", __le32_to_cpu(sb->raid_disks));
301 printf("\n");
5cda0964 302 printf(" Avail Dev Size : %llu%s\n",
2fb749d1
NB
303 (unsigned long long)__le64_to_cpu(sb->data_size),
304 human_size(__le64_to_cpu(sb->data_size)<<9));
c43f7d91 305 if (__le32_to_cpu(sb->level) > 0) {
d4633e06 306 int ddsks = 0, ddsks_denom = 1;
b674b5b8
NB
307 switch(__le32_to_cpu(sb->level)) {
308 case 1: ddsks=1;break;
309 case 4:
83205b64
NB
310 case 5: ddsks = __le32_to_cpu(sb->raid_disks)-1; break;
311 case 6: ddsks = __le32_to_cpu(sb->raid_disks)-2; break;
312 case 10:
313 layout = __le32_to_cpu(sb->layout);
d4633e06
N
314 ddsks = __le32_to_cpu(sb->raid_disks);
315 ddsks_denom = (layout&255) * ((layout>>8)&255);
b674b5b8 316 }
d4633e06
N
317 if (ddsks) {
318 long long asize = __le64_to_cpu(sb->size);
319 asize = (asize << 9) * ddsks / ddsks_denom;
83205b64 320 printf(" Array Size : %llu%s\n",
d4633e06
N
321 asize >> 10, human_size(asize));
322 }
b674b5b8 323 if (sb->size != sb->data_size)
5cda0964 324 printf(" Used Dev Size : %llu%s\n",
83205b64
NB
325 (unsigned long long)__le64_to_cpu(sb->size),
326 human_size(__le64_to_cpu(sb->size)<<9));
b674b5b8 327 }
82d9eba6 328 if (sb->data_offset)
199171a2
NB
329 printf(" Data Offset : %llu sectors\n",
330 (unsigned long long)__le64_to_cpu(sb->data_offset));
8772113a
N
331 if (sb->new_offset &&
332 (__le32_to_cpu(sb->feature_map) & MD_FEATURE_NEW_OFFSET)) {
8fe1c44f
N
333 unsigned long long offset = __le64_to_cpu(sb->data_offset);
334 offset += (signed)(int32_t)__le32_to_cpu(sb->new_offset);
335 printf(" New Offset : %llu sectors\n", offset);
336 }
199171a2
NB
337 printf(" Super Offset : %llu sectors\n",
338 (unsigned long long)__le64_to_cpu(sb->super_offset));
d2cd3ffc
NB
339 if (__le32_to_cpu(sb->feature_map) & MD_FEATURE_RECOVERY_OFFSET)
340 printf("Recovery Offset : %llu sectors\n", (unsigned long long)__le64_to_cpu(sb->recovery_offset));
5e1863d4
N
341
342 st->ss->getinfo_super(st, &info, NULL);
343 if (info.space_after != 1 &&
344 !(__le32_to_cpu(sb->feature_map) & MD_FEATURE_NEW_OFFSET))
345 printf(" Unused Space : before=%llu sectors, after=%llu sectors\n",
346 info.space_before, info.space_after);
347
a3fd117c 348 printf(" State : %s\n", (__le64_to_cpu(sb->resync_offset)+1)? "active":"clean");
82d9eba6
NB
349 printf(" Device UUID : ");
350 for (i=0; i<16; i++) {
82d9eba6 351 if ((i&3)==0 && i != 0) printf(":");
34163fc7 352 printf("%02x", sb->device_uuid[i]);
82d9eba6
NB
353 }
354 printf("\n");
b674b5b8 355 printf("\n");
91eedefc
NB
356 if (sb->feature_map & __cpu_to_le32(MD_FEATURE_BITMAP_OFFSET)) {
357 printf("Internal Bitmap : %ld sectors from superblock\n",
68754bd1 358 (long)(int32_t)__le32_to_cpu(sb->bitmap_offset));
8fac0577 359 }
bf95d0f3 360 if (sb->feature_map & __cpu_to_le32(MD_FEATURE_RESHAPE_ACTIVE)) {
1e0d770c 361 printf(" Reshape pos'n : %llu%s\n", (unsigned long long)__le64_to_cpu(sb->reshape_position)/2,
b674b5b8
NB
362 human_size(__le64_to_cpu(sb->reshape_position)<<9));
363 if (__le32_to_cpu(sb->delta_disks)) {
364 printf(" Delta Devices : %d", __le32_to_cpu(sb->delta_disks));
4180aa4d
N
365 printf(" (%d->%d)\n",
366 __le32_to_cpu(sb->raid_disks)-__le32_to_cpu(sb->delta_disks),
367 __le32_to_cpu(sb->raid_disks));
368 if ((int)__le32_to_cpu(sb->delta_disks) < 0)
369 delta_extra = -__le32_to_cpu(sb->delta_disks);
b674b5b8
NB
370 }
371 if (__le32_to_cpu(sb->new_level) != __le32_to_cpu(sb->level)) {
372 c = map_num(pers, __le32_to_cpu(sb->new_level));
373 printf(" New Level : %s\n", c?c:"-unknown-");
374 }
375 if (__le32_to_cpu(sb->new_layout) != __le32_to_cpu(sb->layout)) {
376 if (__le32_to_cpu(sb->level) == 5) {
377 c = map_num(r5layout, __le32_to_cpu(sb->new_layout));
378 printf(" New Layout : %s\n", c?c:"-unknown-");
379 }
fe77a154
N
380 if (__le32_to_cpu(sb->level) == 6) {
381 c = map_num(r6layout, __le32_to_cpu(sb->new_layout));
382 printf(" New Layout : %s\n", c?c:"-unknown-");
383 }
b674b5b8 384 if (__le32_to_cpu(sb->level) == 10) {
e4965ef8
N
385 printf(" New Layout :");
386 print_r10_layout(__le32_to_cpu(sb->new_layout));
387 printf("\n");
b674b5b8
NB
388 }
389 }
390 if (__le32_to_cpu(sb->new_chunk) != __le32_to_cpu(sb->chunksize))
391 printf(" New Chunksize : %dK\n", __le32_to_cpu(sb->new_chunk)/2);
392 printf("\n");
393 }
dfd4d8ee 394 if (sb->devflags) {
62184891 395 printf(" Flags :");
34163fc7 396 if (sb->devflags & WriteMostly1)
dfd4d8ee
NB
397 printf(" write-mostly");
398 printf("\n");
399 }
82d9eba6
NB
400
401 atime = __le64_to_cpu(sb->utime) & 0xFFFFFFFFFFULL;
402 printf(" Update Time : %.24s\n", ctime(&atime));
403
bf95d0f3
N
404 if (sb->bblog_size && sb->bblog_offset) {
405 printf(" Bad Block Log : %d entries available at offset %ld sectors",
406 __le16_to_cpu(sb->bblog_size)*512/8,
d6e4b44f 407 (long)(int32_t)__le32_to_cpu(sb->bblog_offset));
bf95d0f3
N
408 if (sb->feature_map &
409 __cpu_to_le32(MD_FEATURE_BAD_BLOCKS))
410 printf(" - bad blocks present.");
411 printf("\n");
412 }
413
414
82d9eba6
NB
415 if (calc_sb_1_csum(sb) == sb->sb_csum)
416 printf(" Checksum : %x - correct\n", __le32_to_cpu(sb->sb_csum));
417 else
418 printf(" Checksum : %x - expected %x\n", __le32_to_cpu(sb->sb_csum),
419 __le32_to_cpu(calc_sb_1_csum(sb)));
570c0542 420 printf(" Events : %llu\n", (unsigned long long)__le64_to_cpu(sb->events));
82d9eba6
NB
421 printf("\n");
422 if (__le32_to_cpu(sb->level) == 5) {
423 c = map_num(r5layout, __le32_to_cpu(sb->layout));
424 printf(" Layout : %s\n", c?c:"-unknown-");
425 }
fe77a154
N
426 if (__le32_to_cpu(sb->level) == 6) {
427 c = map_num(r6layout, __le32_to_cpu(sb->layout));
428 printf(" Layout : %s\n", c?c:"-unknown-");
429 }
265e0f17
NB
430 if (__le32_to_cpu(sb->level) == 10) {
431 int lo = __le32_to_cpu(sb->layout);
e4965ef8
N
432 printf(" Layout :");
433 print_r10_layout(lo);
434 printf("\n");
265e0f17 435 }
82d9eba6
NB
436 switch(__le32_to_cpu(sb->level)) {
437 case 0:
438 case 4:
439 case 5:
d2cd3ffc
NB
440 case 6:
441 case 10:
b674b5b8 442 printf(" Chunk Size : %dK\n", __le32_to_cpu(sb->chunksize)/2);
82d9eba6
NB
443 break;
444 case -1:
b674b5b8 445 printf(" Rounding : %dK\n", __le32_to_cpu(sb->chunksize)/2);
82d9eba6
NB
446 break;
447 default: break;
448 }
449 printf("\n");
e8e1c176
N
450#if 0
451 /* This turns out to just be confusing */
c3684618
NB
452 printf(" Array Slot : %d (", __le32_to_cpu(sb->dev_number));
453 for (i= __le32_to_cpu(sb->max_dev); i> 0 ; i--)
454 if (__le16_to_cpu(sb->dev_roles[i-1]) != 0xffff)
455 break;
456 for (d=0; d < i; d++) {
457 int role = __le16_to_cpu(sb->dev_roles[d]);
458 if (d) printf(", ");
459 if (role == 0xffff) printf("empty");
460 else if(role == 0xfffe) printf("failed");
461 else printf("%d", role);
462 }
463 printf(")\n");
e8e1c176
N
464#endif
465 printf(" Device Role : ");
466 d = __le32_to_cpu(sb->dev_number);
4180aa4d 467 if (d < __le32_to_cpu(sb->max_dev))
e8e1c176
N
468 role = __le16_to_cpu(sb->dev_roles[d]);
469 else
470 role = 0xFFFF;
471 if (role >= 0xFFFE)
472 printf("spare\n");
24c7bc84
N
473 else if (sb->feature_map & __cpu_to_le32(MD_FEATURE_REPLACEMENT))
474 printf("Replacement device %d\n", role);
e8e1c176
N
475 else
476 printf("Active device %d\n", role);
477
82d9eba6 478 printf(" Array State : ");
4180aa4d 479 for (d=0; d<__le32_to_cpu(sb->raid_disks) + delta_extra; d++) {
82d9eba6 480 int cnt = 0;
f21e18ca 481 unsigned int i;
82d9eba6 482 for (i=0; i< __le32_to_cpu(sb->max_dev); i++) {
f21e18ca 483 unsigned int role = __le16_to_cpu(sb->dev_roles[i]);
e4c72d1d 484 if (role == d)
82d9eba6 485 cnt++;
82d9eba6 486 }
24c7bc84
N
487 if (cnt == 2)
488 printf("R");
489 else if (cnt == 1)
490 printf("A");
491 else if (cnt == 0)
492 printf(".");
493 else
494 printf("?");
82d9eba6 495 }
e8e1c176
N
496#if 0
497 /* This is confusing too */
6fbba4c9 498 faulty = 0;
82d9eba6
NB
499 for (i=0; i< __le32_to_cpu(sb->max_dev); i++) {
500 int role = __le16_to_cpu(sb->dev_roles[i]);
6fbba4c9
NB
501 if (role == 0xFFFE)
502 faulty++;
82d9eba6 503 }
82d9eba6 504 if (faulty) printf(" %d failed", faulty);
e8e1c176 505#endif
24c7bc84 506 printf(" ('A' == active, '.' == missing, 'R' == replacing)");
82d9eba6
NB
507 printf("\n");
508}
509
510
061f2c6a 511static void brief_examine_super1(struct supertype *st, int verbose)
82d9eba6 512{
3da92f27 513 struct mdp_superblock_1 *sb = st->sb;
82d9eba6 514 int i;
a17a3de3 515 unsigned long long sb_offset;
2998bc01 516 char *nm;
b015e6c2 517 char *c=map_num(pers, __le32_to_cpu(sb->level));
2998bc01
NB
518
519 nm = strchr(sb->set_name, ':');
520 if (nm)
521 nm++;
522 else if (sb->set_name[0])
523 nm = sb->set_name;
524 else
cf8de691 525 nm = NULL;
82d9eba6 526
7103b9b8
N
527 printf("ARRAY ");
528 if (nm) {
529 printf("/dev/md/");
530 print_escape(nm);
531 putchar(' ');
532 }
061f2c6a
N
533 if (verbose && c)
534 printf(" level=%s", c);
a17a3de3
DL
535 sb_offset = __le64_to_cpu(sb->super_offset);
536 if (sb_offset <= 4)
e9a0e728 537 printf(" metadata=1.1 ");
a17a3de3 538 else if (sb_offset <= 8)
e9a0e728 539 printf(" metadata=1.2 ");
a17a3de3 540 else
e9a0e728 541 printf(" metadata=1.0 ");
061f2c6a
N
542 if (verbose)
543 printf("num-devices=%d ", __le32_to_cpu(sb->raid_disks));
544 printf("UUID=");
82d9eba6 545 for (i=0; i<16; i++) {
82d9eba6 546 if ((i&3)==0 && i != 0) printf(":");
b7a708af 547 printf("%02x", sb->set_uuid[i]);
82d9eba6 548 }
7103b9b8
N
549 if (sb->set_name[0]) {
550 printf(" name=");
551 print_quoted(sb->set_name);
552 }
82d9eba6
NB
553 printf("\n");
554}
555
0d726f17
KS
556static void export_examine_super1(struct supertype *st)
557{
558 struct mdp_superblock_1 *sb = st->sb;
559 int i;
560 int len = 32;
80730bae 561 int layout;
0d726f17
KS
562
563 printf("MD_LEVEL=%s\n", map_num(pers, __le32_to_cpu(sb->level)));
564 printf("MD_DEVICES=%d\n", __le32_to_cpu(sb->raid_disks));
565 for (i=0; i<32; i++)
566 if (sb->set_name[i] == '\n' ||
567 sb->set_name[i] == '\0') {
568 len = i;
569 break;
570 }
571 if (len)
572 printf("MD_NAME=%.*s\n", len, sb->set_name);
80730bae
MN
573 if (__le32_to_cpu(sb->level) > 0) {
574 int ddsks = 0, ddsks_denom = 1;
575 switch(__le32_to_cpu(sb->level)) {
576 case 1: ddsks=1;break;
577 case 4:
578 case 5: ddsks = __le32_to_cpu(sb->raid_disks)-1; break;
579 case 6: ddsks = __le32_to_cpu(sb->raid_disks)-2; break;
580 case 10:
581 layout = __le32_to_cpu(sb->layout);
582 ddsks = __le32_to_cpu(sb->raid_disks);
583 ddsks_denom = (layout&255) * ((layout>>8)&255);
584 }
585 if (ddsks) {
586 long long asize = __le64_to_cpu(sb->size);
587 asize = (asize << 9) * ddsks / ddsks_denom;
588 printf("MD_ARRAY_SIZE=%s\n",human_size_brief(asize,JEDEC));
589 }
590 }
0d726f17
KS
591 printf("MD_UUID=");
592 for (i=0; i<16; i++) {
593 if ((i&3)==0 && i != 0) printf(":");
594 printf("%02x", sb->set_uuid[i]);
595 }
596 printf("\n");
597 printf("MD_UPDATE_TIME=%llu\n",
598 __le64_to_cpu(sb->utime) & 0xFFFFFFFFFFULL);
599 printf("MD_DEV_UUID=");
600 for (i=0; i<16; i++) {
601 if ((i&3)==0 && i != 0) printf(":");
602 printf("%02x", sb->device_uuid[i]);
603 }
604 printf("\n");
605 printf("MD_EVENTS=%llu\n",
606 (unsigned long long)__le64_to_cpu(sb->events));
607}
608
74db60b0
N
609static int copy_metadata1(struct supertype *st, int from, int to)
610{
611 /* Read superblock. If it looks good, write it out.
612 * Then if a bitmap is present, copy that.
613 * And if a bad-block-list is present, copy that too.
614 */
615 void *buf;
616 unsigned long long dsize, sb_offset;
617 const int bufsize = 4*1024;
618 struct mdp_superblock_1 super, *sb;
619
620 if (posix_memalign(&buf, 4096, bufsize) != 0)
621 return 1;
622
623 if (!get_dev_size(from, NULL, &dsize))
624 goto err;
625
626 dsize >>= 9;
627 if (dsize < 24)
628 goto err;
629 switch(st->minor_version) {
630 case 0:
631 sb_offset = dsize;
632 sb_offset -= 8*2;
633 sb_offset &= ~(4*2-1);
634 break;
635 case 1:
636 sb_offset = 0;
637 break;
638 case 2:
639 sb_offset = 4*2;
640 break;
641 default:
642 goto err;
643 }
644
645 if (lseek64(from, sb_offset << 9, 0) < 0LL)
646 goto err;
647 if (read(from, buf, bufsize) != bufsize)
648 goto err;
649
650 sb = buf;
651 super = *sb; // save most of sb for when we reuse buf
652
653 if (__le32_to_cpu(super.magic) != MD_SB_MAGIC ||
654 __le32_to_cpu(super.major_version) != 1 ||
655 __le64_to_cpu(super.super_offset) != sb_offset ||
656 calc_sb_1_csum(sb) != super.sb_csum)
657 goto err;
658
659 if (lseek64(to, sb_offset << 9, 0) < 0LL)
660 goto err;
661 if (write(to, buf, bufsize) != bufsize)
662 goto err;
663
664 if (super.feature_map & __le32_to_cpu(MD_FEATURE_BITMAP_OFFSET)) {
665 unsigned long long bitmap_offset = sb_offset;
666 int bytes = 4096; // just an estimate.
667 int written = 0;
668 struct align_fd afrom, ato;
669
670 init_afd(&afrom, from);
671 init_afd(&ato, to);
672
673 bitmap_offset += (int32_t)__le32_to_cpu(super.bitmap_offset);
674
675 if (lseek64(from, bitmap_offset<<9, 0) < 0)
676 goto err;
677 if (lseek64(to, bitmap_offset<<9, 0) < 0)
678 goto err;
679
680 for (written = 0; written < bytes ; ) {
681 int n = bytes - written;
682 if (n > 4096)
683 n = 4096;
684 if (aread(&afrom, buf, n) != n)
685 goto err;
686 if (written == 0) {
687 /* have the header, can calculate
688 * correct bitmap bytes */
689 bitmap_super_t *bms;
690 int bits;
691 bms = (void*)buf;
692 bits = __le64_to_cpu(bms->sync_size) / (__le32_to_cpu(bms->chunksize)>>9);
693 bytes = (bits+7) >> 3;
694 bytes += sizeof(bitmap_super_t);
695 bytes = ROUND_UP(bytes, 512);
696 if (n > bytes)
697 n = bytes;
698 }
699 if (awrite(&ato, buf, n) != n)
700 goto err;
701 written += n;
702 }
703 }
704
705 if (super.bblog_size != 0 &&
706 __le32_to_cpu(super.bblog_size) <= 100 &&
707 super.bblog_offset != 0 &&
708 (super.feature_map & __le32_to_cpu(MD_FEATURE_BAD_BLOCKS))) {
709 /* There is a bad block log */
710 unsigned long long bb_offset = sb_offset;
711 int bytes = __le32_to_cpu(super.bblog_size) * 512;
712 int written = 0;
713 struct align_fd afrom, ato;
714
715 init_afd(&afrom, from);
716 init_afd(&ato, to);
717
718 bb_offset += (int32_t)__le32_to_cpu(super.bblog_offset);
719
720 if (lseek64(from, bb_offset<<9, 0) < 0)
721 goto err;
722 if (lseek64(to, bb_offset<<9, 0) < 0)
723 goto err;
724
725 for (written = 0; written < bytes ; ) {
726 int n = bytes - written;
727 if (n > 4096)
728 n = 4096;
729 if (aread(&afrom, buf, n) != n)
730 goto err;
731
732 if (awrite(&ato, buf, n) != n)
733 goto err;
734 written += n;
735 }
736 }
737
738 free(buf);
739 return 0;
740
741err:
742 free(buf);
743 return 1;
744}
745
3da92f27 746static void detail_super1(struct supertype *st, char *homehost)
82d9eba6 747{
3da92f27 748 struct mdp_superblock_1 *sb = st->sb;
82d9eba6 749 int i;
b6750aa8 750 int l = homehost ? strlen(homehost) : 0;
82d9eba6 751
b6750aa8
NB
752 printf(" Name : %.32s", sb->set_name);
753 if (l > 0 && l < 32 &&
754 sb->set_name[l] == ':' &&
755 strncmp(sb->set_name, homehost, l) == 0)
756 printf(" (local to host %s)", homehost);
757 printf("\n UUID : ");
82d9eba6 758 for (i=0; i<16; i++) {
82d9eba6 759 if ((i&3)==0 && i != 0) printf(":");
34163fc7 760 printf("%02x", sb->set_uuid[i]);
82d9eba6 761 }
570c0542 762 printf("\n Events : %llu\n\n", (unsigned long long)__le64_to_cpu(sb->events));
82d9eba6
NB
763}
764
3da92f27 765static void brief_detail_super1(struct supertype *st)
82d9eba6 766{
3da92f27 767 struct mdp_superblock_1 *sb = st->sb;
82d9eba6
NB
768 int i;
769
7103b9b8
N
770 if (sb->set_name[0]) {
771 printf(" name=");
772 print_quoted(sb->set_name);
773 }
82d9eba6
NB
774 printf(" UUID=");
775 for (i=0; i<16; i++) {
82d9eba6 776 if ((i&3)==0 && i != 0) printf(":");
34163fc7 777 printf("%02x", sb->set_uuid[i]);
82d9eba6
NB
778 }
779}
780
0d726f17 781static void export_detail_super1(struct supertype *st)
54bad364 782{
3da92f27 783 struct mdp_superblock_1 *sb = st->sb;
54bad364
KS
784 int i;
785 int len = 32;
786
787 for (i=0; i<32; i++)
788 if (sb->set_name[i] == '\n' ||
789 sb->set_name[i] == '\0') {
790 len = i;
791 break;
792 }
793 if (len)
794 printf("MD_NAME=%.*s\n", len, sb->set_name);
54bad364
KS
795}
796
6d388a88
N
797static int examine_badblocks_super1(struct supertype *st, int fd, char *devname)
798{
799 struct mdp_superblock_1 *sb = st->sb;
800 unsigned long long offset;
801 int size;
802 __u64 *bbl, *bbp;
803 int i;
804
805 if (!sb->bblog_size || __le32_to_cpu(sb->bblog_size) > 100
806 || !sb->bblog_offset){
807 printf("No bad-blocks list configured on %s\n", devname);
808 return 0;
809 }
810 if ((sb->feature_map & __cpu_to_le32(MD_FEATURE_BAD_BLOCKS))
811 == 0) {
812 printf("Bad-blocks list is empty in %s\n", devname);
813 return 0;
814 }
815
816 size = __le32_to_cpu(sb->bblog_size)* 512;
0cf83229
N
817 if (posix_memalign((void**)&bbl, 4096, size) != 0) {
818 pr_err("%s could not allocate badblocks list\n", __func__);
819 return 0;
820 }
6d388a88
N
821 offset = __le64_to_cpu(sb->super_offset) +
822 (int)__le32_to_cpu(sb->bblog_offset);
823 offset <<= 9;
824 if (lseek64(fd, offset, 0) < 0) {
825 pr_err("Cannot seek to bad-blocks list\n");
826 return 1;
827 }
828 if (read(fd, bbl, size) != size) {
829 pr_err("Cannot read bad-blocks list\n");
830 return 1;
831 }
832 /* 64bits per entry. 10 bits is block-count, 54 bits is block
833 * offset. Blocks are sectors unless bblog->shift makes them bigger
834 */
835 bbp = (__u64*)bbl;
836 printf("Bad-blocks on %s:\n", devname);
837 for (i = 0; i < size/8; i++, bbp++) {
838 __u64 bb = __le64_to_cpu(*bbp);
839 int count = bb & 0x3ff;
840 unsigned long long sector = bb >> 10;
841
842 if (bb + 1 == 0)
843 break;
844
845 sector <<= sb->bblog_shift;
846 count <<= sb->bblog_shift;
847
848 printf("%20llu for %d sectors\n", sector, count);
849 }
850 return 0;
851}
852
c7654afc
NB
853#endif
854
3da92f27 855static int match_home1(struct supertype *st, char *homehost)
83b6208e 856{
3da92f27 857 struct mdp_superblock_1 *sb = st->sb;
83b6208e
NB
858 int l = homehost ? strlen(homehost) : 0;
859
860 return (l > 0 && l < 32 &&
861 sb->set_name[l] == ':' &&
862 strncmp(sb->set_name, homehost, l) == 0);
863}
864
3da92f27 865static void uuid_from_super1(struct supertype *st, int uuid[4])
82d9eba6 866{
3da92f27 867 struct mdp_superblock_1 *super = st->sb;
82d9eba6
NB
868 char *cuuid = (char*)uuid;
869 int i;
870 for (i=0; i<16; i++)
871 cuuid[i] = super->set_uuid[i];
872}
873
a5d85af7 874static void getinfo_super1(struct supertype *st, struct mdinfo *info, char *map)
82d9eba6 875{
3da92f27 876 struct mdp_superblock_1 *sb = st->sb;
80bf9135
N
877 struct bitmap_super_s *bsb = (void*)(((char*)sb)+MAX_SB_SIZE);
878 struct misc_dev_info *misc = (void*)(((char*)sb)+MAX_SB_SIZE+BM_SUPER_SIZE);
82d9eba6 879 int working = 0;
f21e18ca 880 unsigned int i;
a5d85af7
N
881 unsigned int role;
882 unsigned int map_disks = info->array.raid_disks;
80bf9135
N
883 unsigned long long super_offset;
884 unsigned long long data_size;
82d9eba6 885
95eeceeb 886 memset(info, 0, sizeof(*info));
82d9eba6 887 info->array.major_version = 1;
b8ac1967 888 info->array.minor_version = st->minor_version;
82d9eba6
NB
889 info->array.patch_version = 0;
890 info->array.raid_disks = __le32_to_cpu(sb->raid_disks);
891 info->array.level = __le32_to_cpu(sb->level);
265e0f17 892 info->array.layout = __le32_to_cpu(sb->layout);
82d9eba6
NB
893 info->array.md_minor = -1;
894 info->array.ctime = __le64_to_cpu(sb->ctime);
353632d9 895 info->array.utime = __le64_to_cpu(sb->utime);
bed256c2 896 info->array.chunk_size = __le32_to_cpu(sb->chunksize)*512;
4855f95c 897 info->array.state =
d5977056 898 (__le64_to_cpu(sb->resync_offset) == MaxSector)
4855f95c 899 ? 1 : 0;
353632d9
NB
900
901 info->data_offset = __le64_to_cpu(sb->data_offset);
902 info->component_size = __le64_to_cpu(sb->size);
c0c1acd6 903 if (sb->feature_map & __le32_to_cpu(MD_FEATURE_BITMAP_OFFSET))
34a13953 904 info->bitmap_offset = (int32_t)__le32_to_cpu(sb->bitmap_offset);
82d9eba6
NB
905
906 info->disk.major = 0;
907 info->disk.minor = 0;
fbf8a0b7 908 info->disk.number = __le32_to_cpu(sb->dev_number);
82d9eba6 909 if (__le32_to_cpu(sb->dev_number) >= __le32_to_cpu(sb->max_dev) ||
911cead7 910 __le32_to_cpu(sb->dev_number) >= MAX_DEVS)
82d9eba6
NB
911 role = 0xfffe;
912 else
913 role = __le16_to_cpu(sb->dev_roles[__le32_to_cpu(sb->dev_number)]);
914
80bf9135
N
915 super_offset = __le64_to_cpu(sb->super_offset);
916 data_size = __le64_to_cpu(sb->size);
917 if (info->data_offset < super_offset) {
918 unsigned long long end;
919 info->space_before = info->data_offset;
920 end = super_offset;
cc3130a7
N
921
922 if (sb->bblog_offset && sb->bblog_size) {
923 unsigned long long bboffset = super_offset;
924 bboffset += (int32_t)__le32_to_cpu(sb->bblog_offset);
925 if (bboffset < end)
926 end = bboffset;
927 }
928
929 if (super_offset + info->bitmap_offset < end)
930 end = super_offset + info->bitmap_offset;
931
80bf9135
N
932 if (info->data_offset + data_size < end)
933 info->space_after = end - data_size - info->data_offset;
934 else
935 info->space_after = 0;
936 } else {
cc3130a7
N
937 unsigned long long earliest;
938 earliest = super_offset + (32+4)*2; /* match kernel */
80bf9135
N
939 if (info->bitmap_offset > 0) {
940 unsigned long long bmend = info->bitmap_offset;
941 unsigned long long size = __le64_to_cpu(bsb->sync_size);
942 size /= __le32_to_cpu(bsb->chunksize) >> 9;
943 size = (size + 7) >> 3;
944 size += sizeof(bitmap_super_t);
945 size = ROUND_UP(size, 4096);
946 size /= 512;
cc3130a7
N
947 bmend += size;
948 if (bmend > earliest)
949 bmend = earliest;
950 }
951 if (sb->bblog_offset && sb->bblog_size) {
952 unsigned long long bbend = super_offset;
953 bbend += (int32_t)__le32_to_cpu(sb->bblog_offset);
954 bbend += __le32_to_cpu(sb->bblog_size);
955 if (bbend > earliest)
956 earliest = bbend;
957 }
958 if (earliest < info->data_offset)
959 info->space_before = info->data_offset - earliest;
960 else
961 info->space_before = 0;
80bf9135
N
962 info->space_after = misc->device_size - data_size - info->data_offset;
963 }
c4b26c64
N
964 if (info->space_before == 0 && info->space_after == 0) {
965 /* It will look like we don't support data_offset changes,
966 * be we do - it's just that there is no room.
967 * A change that reduced the number of devices should
968 * still be allowed, so set the otherwise useless value of '1'
969 */
970 info->space_after = 1;
971 }
80bf9135 972
82d9eba6
NB
973 info->disk.raid_disk = -1;
974 switch(role) {
975 case 0xFFFF:
f22385f9 976 info->disk.state = 0; /* spare: not active, not sync, not faulty */
82d9eba6
NB
977 break;
978 case 0xFFFE:
979 info->disk.state = 1; /* faulty */
980 break;
981 default:
982 info->disk.state = 6; /* active and in sync */
983 info->disk.raid_disk = role;
984 }
cb099724
N
985 if (sb->devflags & WriteMostly1)
986 info->disk.state |= (1 << MD_DISK_WRITEMOSTLY);
82d9eba6 987 info->events = __le64_to_cpu(sb->events);
1522c538 988 sprintf(info->text_version, "1.%d", st->minor_version);
a67dd8cc 989 info->safe_mode_delay = 200;
82d9eba6
NB
990
991 memcpy(info->uuid, sb->set_uuid, 16);
992
31317663
NB
993 strncpy(info->name, sb->set_name, 32);
994 info->name[32] = 0;
947fd4dd 995
aacb2f81 996 if ((__le32_to_cpu(sb->feature_map)&MD_FEATURE_REPLACEMENT)) {
72e7fb13 997 info->disk.state &= ~(1 << MD_DISK_SYNC);
aacb2f81
N
998 info->disk.state |= 1 << MD_DISK_REPLACEMENT;
999 }
1000
1001
921d9e16
N
1002 if (sb->feature_map & __le32_to_cpu(MD_FEATURE_RECOVERY_OFFSET))
1003 info->recovery_start = __le32_to_cpu(sb->recovery_offset);
1004 else
1005 info->recovery_start = MaxSector;
1006
353632d9
NB
1007 if (sb->feature_map & __le32_to_cpu(MD_FEATURE_RESHAPE_ACTIVE)) {
1008 info->reshape_active = 1;
26bf5587
N
1009 if ((sb->feature_map & __le32_to_cpu(MD_FEATURE_NEW_OFFSET)) &&
1010 sb->new_offset != 0)
5e88ab2e 1011 info->reshape_active |= RESHAPE_NO_BACKUP;
353632d9
NB
1012 info->reshape_progress = __le64_to_cpu(sb->reshape_position);
1013 info->new_level = __le32_to_cpu(sb->new_level);
1014 info->delta_disks = __le32_to_cpu(sb->delta_disks);
1015 info->new_layout = __le32_to_cpu(sb->new_layout);
bed256c2 1016 info->new_chunk = __le32_to_cpu(sb->new_chunk)<<9;
4180aa4d
N
1017 if (info->delta_disks < 0)
1018 info->array.raid_disks -= info->delta_disks;
353632d9
NB
1019 } else
1020 info->reshape_active = 0;
1021
6e75048b
AK
1022 info->recovery_blocked = info->reshape_active;
1023
a5d85af7
N
1024 if (map)
1025 for (i=0; i<map_disks; i++)
1026 map[i] = 0;
f21e18ca 1027 for (i = 0; i < __le32_to_cpu(sb->max_dev); i++) {
82d9eba6 1028 role = __le16_to_cpu(sb->dev_roles[i]);
a5d85af7 1029 if (/*role == 0xFFFF || */role < (unsigned) info->array.raid_disks) {
82d9eba6 1030 working++;
a5d85af7
N
1031 if (map && role < map_disks)
1032 map[role] = 1;
1033 }
82d9eba6
NB
1034 }
1035
1036 info->array.working_disks = working;
1037}
1038
00bbdbda
N
1039static struct mdinfo *container_content1(struct supertype *st, char *subarray)
1040{
1041 struct mdinfo *info;
1042
1043 if (subarray)
1044 return NULL;
1045
503975b9 1046 info = xmalloc(sizeof(*info));
00bbdbda
N
1047 getinfo_super1(st, info, NULL);
1048 return info;
1049}
1050
68c7d6d7 1051static int update_super1(struct supertype *st, struct mdinfo *info,
3da92f27 1052 char *update,
e5eac01f
NB
1053 char *devname, int verbose,
1054 int uuid_set, char *homehost)
82d9eba6 1055{
5a31170d
N
1056 /* NOTE: for 'assemble' and 'force' we need to return non-zero
1057 * if any change was made. For others, the return value is
1058 * ignored.
c4d831e1 1059 */
82d9eba6 1060 int rv = 0;
3da92f27 1061 struct mdp_superblock_1 *sb = st->sb;
82d9eba6 1062
def11332
N
1063 if (strcmp(update, "homehost") == 0 &&
1064 homehost) {
1065 /* Note that 'homehost' is special as it is really
1066 * a "name" update.
1067 */
1068 char *c;
1069 update = "name";
1070 c = strchr(sb->set_name, ':');
1071 if (c)
1072 strncpy(info->name, c+1, 31 - (c-sb->set_name));
1073 else
1074 strncpy(info->name, sb->set_name, 32);
1075 info->name[32] = 0;
1076 }
1077
67a8c82d
NB
1078 if (strcmp(update, "force-one")==0) {
1079 /* Not enough devices for a working array,
1080 * so bring this one up-to-date
1081 */
c4d831e1
NB
1082 if (sb->events != __cpu_to_le64(info->events))
1083 rv = 1;
6d3d5804 1084 sb->events = __cpu_to_le64(info->events);
1e2b2765 1085 } else if (strcmp(update, "force-array")==0) {
67a8c82d
NB
1086 /* Degraded array and 'force' requests to
1087 * maybe need to mark it 'clean'.
1088 */
82d9eba6
NB
1089 switch(__le32_to_cpu(sb->level)) {
1090 case 5: case 4: case 6:
1091 /* need to force clean */
b7528a20 1092 if (sb->resync_offset != MaxSector)
c4d831e1 1093 rv = 1;
b7528a20 1094 sb->resync_offset = MaxSector;
82d9eba6 1095 }
1e2b2765 1096 } else if (strcmp(update, "assemble")==0) {
82d9eba6
NB
1097 int d = info->disk.number;
1098 int want;
aacb2f81 1099 if (info->disk.state & (1<<MD_DISK_ACTIVE))
a2ce5a1a 1100 want = info->disk.raid_disk;
82d9eba6
NB
1101 else
1102 want = 0xFFFF;
a2ce5a1a
N
1103 if (sb->dev_roles[d] != __cpu_to_le16(want)) {
1104 sb->dev_roles[d] = __cpu_to_le16(want);
82d9eba6
NB
1105 rv = 1;
1106 }
d43494fc
N
1107 if (info->reshape_active &&
1108 sb->feature_map & __le32_to_cpu(MD_FEATURE_RESHAPE_ACTIVE) &&
1109 info->delta_disks >= 0 &&
1110 info->reshape_progress < __le64_to_cpu(sb->reshape_position)) {
1111 sb->reshape_position = __cpu_to_le64(info->reshape_progress);
1112 rv = 1;
1113 }
1114 if (info->reshape_active &&
1115 sb->feature_map & __le32_to_cpu(MD_FEATURE_RESHAPE_ACTIVE) &&
1116 info->delta_disks < 0 &&
1117 info->reshape_progress > __le64_to_cpu(sb->reshape_position)) {
1118 sb->reshape_position = __cpu_to_le64(info->reshape_progress);
1119 rv = 1;
1120 }
1e2b2765 1121 } else if (strcmp(update, "linear-grow-new") == 0) {
f21e18ca 1122 unsigned int i;
1c6cb603 1123 int rfd, fd;
f21e18ca 1124 unsigned int max = __le32_to_cpu(sb->max_dev);
f752781f
NB
1125
1126 for (i=0 ; i < max ; i++)
1127 if (__le16_to_cpu(sb->dev_roles[i]) >= 0xfffe)
1128 break;
1129 sb->dev_number = __cpu_to_le32(i);
1130 info->disk.number = i;
1131 if (max >= __le32_to_cpu(sb->max_dev))
1132 sb->max_dev = __cpu_to_le32(max+1);
1133
1134 if ((rfd = open("/dev/urandom", O_RDONLY)) < 0 ||
1135 read(rfd, sb->device_uuid, 16) != 16) {
caa0f6c6
N
1136 __u32 r[4] = {random(), random(), random(), random()};
1137 memcpy(sb->device_uuid, r, 16);
f752781f 1138 }
7cbeb80e
N
1139 if (rfd >= 0)
1140 close(rfd);
f752781f
NB
1141
1142 sb->dev_roles[i] =
1143 __cpu_to_le16(info->disk.raid_disk);
1c6cb603
N
1144
1145 fd = open(devname, O_RDONLY);
1146 if (fd >= 0) {
1147 unsigned long long ds;
1148 get_dev_size(fd, devname, &ds);
1149 close(fd);
1150 ds >>= 9;
1151 if (__le64_to_cpu(sb->super_offset) <
1152 __le64_to_cpu(sb->data_offset)) {
1153 sb->data_size = __cpu_to_le64(
1154 ds - __le64_to_cpu(sb->data_offset));
1155 } else {
1156 ds -= 8*2;
1157 ds &= ~(unsigned long long)(4*2-1);
1158 sb->super_offset = __cpu_to_le64(ds);
1159 sb->data_size = __cpu_to_le64(
1160 ds - __le64_to_cpu(sb->data_offset));
1161 }
1162 }
1e2b2765 1163 } else if (strcmp(update, "linear-grow-update") == 0) {
82d9eba6 1164 sb->raid_disks = __cpu_to_le32(info->array.raid_disks);
f752781f
NB
1165 sb->dev_roles[info->disk.number] =
1166 __cpu_to_le16(info->disk.raid_disk);
1e2b2765 1167 } else if (strcmp(update, "resync") == 0) {
82d9eba6 1168 /* make sure resync happens */
434b7755 1169 sb->resync_offset = 0ULL;
1e2b2765 1170 } else if (strcmp(update, "uuid") == 0) {
350f29f9 1171 copy_uuid(sb->set_uuid, info->uuid, super1.swapuuid);
bf4fb153 1172
14263cf1
NB
1173 if (__le32_to_cpu(sb->feature_map)&MD_FEATURE_BITMAP_OFFSET) {
1174 struct bitmap_super_s *bm;
911cead7 1175 bm = (struct bitmap_super_s*)(st->sb+MAX_SB_SIZE);
bf4fb153 1176 memcpy(bm->uuid, sb->set_uuid, 16);
14263cf1 1177 }
5a31170d
N
1178 } else if (strcmp(update, "no-bitmap") == 0) {
1179 sb->feature_map &= ~__cpu_to_le32(MD_FEATURE_BITMAP_OFFSET);
688e99a7
N
1180 } else if (strcmp(update, "bbl") == 0) {
1181 /* only possible if there is room after the bitmap, or if
1182 * there is no bitmap
1183 */
1184 unsigned long long sb_offset = __le64_to_cpu(sb->super_offset);
1185 unsigned long long data_offset = __le64_to_cpu(sb->data_offset);
d6e4b44f 1186 long bitmap_offset = (long)(int32_t)__le32_to_cpu(sb->bitmap_offset);
688e99a7
N
1187 long bm_sectors = 0;
1188 long space;
1189
5a23a06e 1190#ifndef MDASSEMBLE
688e99a7
N
1191 if (sb->feature_map & __cpu_to_le32(MD_FEATURE_BITMAP_OFFSET)) {
1192 struct bitmap_super_s *bsb;
1193 bsb = (struct bitmap_super_s *)(((char*)sb)+MAX_SB_SIZE);
1194 bm_sectors = bitmap_sectors(bsb);
1195 }
5a23a06e 1196#endif
688e99a7 1197 if (sb_offset < data_offset) {
f79bbf4f 1198 /* 1.1 or 1.2. Put bbl after bitmap leaving at least 32K
688e99a7
N
1199 */
1200 long bb_offset;
f79bbf4f 1201 bb_offset = sb_offset + 8;
688e99a7 1202 if (bm_sectors && bitmap_offset > 0)
f79bbf4f
N
1203 bb_offset = bitmap_offset + bm_sectors;
1204 while (bb_offset < (long)sb_offset + 8 + 32*2
1205 && bb_offset + 8+8 <= (long)data_offset)
1206 /* too close to bitmap, and room to grow */
1207 bb_offset += 8;
1208 if (bb_offset + 8 <= (long)data_offset) {
688e99a7
N
1209 sb->bblog_size = __cpu_to_le16(8);
1210 sb->bblog_offset = __cpu_to_le32(bb_offset);
1211 }
1212 } else {
1213 /* 1.0 - Put bbl just before super block */
1214 if (bm_sectors && bitmap_offset < 0)
1215 space = -bitmap_offset - bm_sectors;
1216 else
1217 space = sb_offset - data_offset -
1218 __le64_to_cpu(sb->data_size);
1219 if (space >= 8) {
1220 sb->bblog_size = __cpu_to_le16(8);
1221 sb->bblog_offset = __cpu_to_le32((unsigned)-8);
1222 }
1223 }
1224 } else if (strcmp(update, "no-bbl") == 0) {
1225 if (sb->feature_map & __cpu_to_le32(MD_FEATURE_BAD_BLOCKS))
1226 pr_err("Cannot remove active bbl from %s\n",devname);
1227 else {
1228 sb->bblog_size = 0;
1229 sb->bblog_shift = 0;
1230 sb->bblog_offset = 0;
1231 }
1e2b2765 1232 } else if (strcmp(update, "name") == 0) {
c4f12c13
NB
1233 if (info->name[0] == 0)
1234 sprintf(info->name, "%d", info->array.md_minor);
1235 memset(sb->set_name, 0, sizeof(sb->set_name));
1236 if (homehost &&
1237 strchr(info->name, ':') == NULL &&
1238 strlen(homehost)+1+strlen(info->name) < 32) {
1239 strcpy(sb->set_name, homehost);
1240 strcat(sb->set_name, ":");
1241 strcat(sb->set_name, info->name);
1242 } else
1243 strcpy(sb->set_name, info->name);
1e2b2765 1244 } else if (strcmp(update, "devicesize") == 0 &&
bee8ec56
NB
1245 __le64_to_cpu(sb->super_offset) <
1246 __le64_to_cpu(sb->data_offset)) {
1247 /* set data_size to device size less data_offset */
1248 struct misc_dev_info *misc = (struct misc_dev_info*)
911cead7 1249 (st->sb + MAX_SB_SIZE + BM_SUPER_SIZE);
eb9199fb
NB
1250 printf("Size was %llu\n", (unsigned long long)
1251 __le64_to_cpu(sb->data_size));
bee8ec56
NB
1252 sb->data_size = __cpu_to_le64(
1253 misc->device_size - __le64_to_cpu(sb->data_offset));
eb9199fb
NB
1254 printf("Size is %llu\n", (unsigned long long)
1255 __le64_to_cpu(sb->data_size));
199f1a1f
N
1256 } else if (strcmp(update, "revert-reshape") == 0) {
1257 rv = -2;
1258 if (!(sb->feature_map & __cpu_to_le32(MD_FEATURE_RESHAPE_ACTIVE)))
1259 pr_err("No active reshape to revert on %s\n",
1260 devname);
1261 else {
1262 rv = 0;
1263 __u32 temp;
1264 sb->raid_disks = __cpu_to_le32(__le32_to_cpu(sb->raid_disks) +
1265 __le32_to_cpu(sb->delta_disks));
1266 if (sb->delta_disks == 0)
1267 sb->feature_map ^= __cpu_to_le32(MD_FEATURE_RESHAPE_BACKWARDS);
1268 else
1269 sb->delta_disks = __cpu_to_le32(-__le32_to_cpu(sb->delta_disks));
1270
1271 temp = sb->new_layout;
1272 sb->new_layout = sb->layout;
1273 sb->layout = temp;
1274
1275 temp = sb->new_chunk;
1276 sb->new_chunk = sb->chunksize;
1277 sb->chunksize = temp;
1278
1279 if (sb->feature_map & __cpu_to_le32(MD_FEATURE_NEW_OFFSET)) {
1280 sb->data_offset = __cpu_to_le64(__le64_to_cpu(sb->data_offset) +
1281 (long)(int32_t)__le32_to_cpu(sb->new_offset));
1282 sb->new_offset = __cpu_to_le32(-(int32_t)__le32_to_cpu(sb->new_offset));
1283 }
1284 }
1e2b2765 1285 } else if (strcmp(update, "_reshape_progress")==0)
353632d9 1286 sb->reshape_position = __cpu_to_le64(info->reshape_progress);
16715c01
DL
1287 else if (strcmp(update, "writemostly")==0)
1288 sb->devflags |= WriteMostly1;
1289 else if (strcmp(update, "readwrite")==0)
1290 sb->devflags &= ~WriteMostly1;
1e2b2765
N
1291 else
1292 rv = -1;
82d9eba6
NB
1293
1294 sb->sb_csum = calc_sb_1_csum(sb);
1295 return rv;
1296}
1297
3da92f27 1298static int init_super1(struct supertype *st, mdu_array_info_t *info,
83cd1e97
N
1299 unsigned long long size, char *name, char *homehost,
1300 int *uuid, unsigned long long data_offset)
82d9eba6 1301{
6416d527 1302 struct mdp_superblock_1 *sb;
82d9eba6 1303 int spares;
34163fc7 1304 int rfd;
05697ec1 1305 char defname[10];
911cead7 1306 int sbsize;
6416d527 1307
3c0bcd46 1308 if (posix_memalign((void**)&sb, 4096, SUPER1_SIZE) != 0) {
e7b84f9d 1309 pr_err("%s could not allocate superblock\n", __func__);
3d2c4fc7
DW
1310 return 0;
1311 }
1afa9308 1312 memset(sb, 0, SUPER1_SIZE);
82d9eba6 1313
64557c33 1314 st->sb = sb;
ba7eb04f 1315 if (info == NULL) {
82d9eba6
NB
1316 /* zeroing superblock */
1317 return 0;
05697ec1 1318 }
82d9eba6
NB
1319
1320 spares = info->working_disks - info->active_disks;
911cead7 1321 if (info->raid_disks + spares > MAX_DEVS) {
e7b84f9d 1322 pr_err("too many devices requested: %d+%d > %d\n",
911cead7 1323 info->raid_disks , spares, MAX_DEVS);
82d9eba6
NB
1324 return 0;
1325 }
1326
82d9eba6
NB
1327 sb->magic = __cpu_to_le32(MD_SB_MAGIC);
1328 sb->major_version = __cpu_to_le32(1);
1329 sb->feature_map = 0;
1330 sb->pad0 = 0;
34163fc7 1331
350f29f9
NB
1332 if (uuid)
1333 copy_uuid(sb->set_uuid, uuid, super1.swapuuid);
1334 else {
3d3dd91e
NB
1335 if ((rfd = open("/dev/urandom", O_RDONLY)) < 0 ||
1336 read(rfd, sb->set_uuid, 16) != 16) {
caa0f6c6
N
1337 __u32 r[4] = {random(), random(), random(), random()};
1338 memcpy(sb->set_uuid, r, 16);
3d3dd91e
NB
1339 }
1340 if (rfd >= 0) close(rfd);
34163fc7 1341 }
82d9eba6 1342
05697ec1
NB
1343 if (name == NULL || *name == 0) {
1344 sprintf(defname, "%d", info->md_minor);
1345 name = defname;
1346 }
05697ec1
NB
1347 if (homehost &&
1348 strchr(name, ':')== NULL &&
1349 strlen(homehost)+1+strlen(name) < 32) {
1350 strcpy(sb->set_name, homehost);
1351 strcat(sb->set_name, ":");
1352 strcat(sb->set_name, name);
1353 } else
1354 strcpy(sb->set_name, name);
82d9eba6
NB
1355
1356 sb->ctime = __cpu_to_le64((unsigned long long)time(0));
1357 sb->level = __cpu_to_le32(info->level);
ea329559 1358 sb->layout = __cpu_to_le32(info->layout);
5dd497ee 1359 sb->size = __cpu_to_le64(size*2ULL);
82d9eba6
NB
1360 sb->chunksize = __cpu_to_le32(info->chunk_size>>9);
1361 sb->raid_disks = __cpu_to_le32(info->raid_disks);
1362
83cd1e97 1363 sb->data_offset = __cpu_to_le64(data_offset);
82d9eba6
NB
1364 sb->data_size = __cpu_to_le64(0);
1365 sb->super_offset = __cpu_to_le64(0);
1366 sb->recovery_offset = __cpu_to_le64(0);
1367
1368 sb->utime = sb->ctime;
1369 sb->events = __cpu_to_le64(1);
34321279 1370 if (info->state & (1<<MD_SB_CLEAN))
b7528a20 1371 sb->resync_offset = MaxSector;
82d9eba6
NB
1372 else
1373 sb->resync_offset = 0;
911cead7
N
1374 sbsize = sizeof(struct mdp_superblock_1) + 2 * (info->raid_disks + spares);
1375 sbsize = ROUND_UP(sbsize, 512);
1376 sb->max_dev = __cpu_to_le32((sbsize - sizeof(struct mdp_superblock_1)) / 2);
82d9eba6 1377
911cead7 1378 memset(sb->dev_roles, 0xff, MAX_SB_SIZE - sizeof(struct mdp_superblock_1));
82d9eba6 1379
82d9eba6
NB
1380 return 1;
1381}
1382
111d01fc
NB
1383struct devinfo {
1384 int fd;
1385 char *devname;
72ca9bcf 1386 long long data_offset;
111d01fc
NB
1387 mdu_disk_info_t disk;
1388 struct devinfo *next;
1389};
0e600426 1390#ifndef MDASSEMBLE
82d9eba6 1391/* Add a device to the superblock being created */
f20c3968 1392static int add_to_super1(struct supertype *st, mdu_disk_info_t *dk,
72ca9bcf 1393 int fd, char *devname, unsigned long long data_offset)
82d9eba6 1394{
3da92f27 1395 struct mdp_superblock_1 *sb = st->sb;
82d9eba6 1396 __u16 *rp = sb->dev_roles + dk->number;
111d01fc
NB
1397 struct devinfo *di, **dip;
1398
dfd4d8ee 1399 if ((dk->state & 6) == 6) /* active, sync */
82d9eba6 1400 *rp = __cpu_to_le16(dk->raid_disk);
412ca2e5 1401 else if ((dk->state & ~2) == 0) /* active or idle -> spare */
82d9eba6 1402 *rp = 0xffff;
34163fc7 1403 else
82d9eba6 1404 *rp = 0xfffe;
111d01fc 1405
f21e18ca 1406 if (dk->number >= (int)__le32_to_cpu(sb->max_dev) &&
911cead7 1407 __le32_to_cpu(sb->max_dev) < MAX_DEVS)
9df04a4f 1408 sb->max_dev = __cpu_to_le32(dk->number+1);
8844e291 1409
d2ca6449 1410 sb->dev_number = __cpu_to_le32(dk->number);
16715c01 1411 sb->devflags = 0; /* don't copy another disks flags */
d2ca6449
NB
1412 sb->sb_csum = calc_sb_1_csum(sb);
1413
111d01fc
NB
1414 dip = (struct devinfo **)&st->info;
1415 while (*dip)
1416 dip = &(*dip)->next;
503975b9 1417 di = xmalloc(sizeof(struct devinfo));
111d01fc
NB
1418 di->fd = fd;
1419 di->devname = devname;
1420 di->disk = *dk;
72ca9bcf 1421 di->data_offset = data_offset;
111d01fc
NB
1422 di->next = NULL;
1423 *dip = di;
f20c3968
DW
1424
1425 return 0;
82d9eba6 1426}
0e600426 1427#endif
82d9eba6 1428
3da92f27 1429static void locate_bitmap1(struct supertype *st, int fd);
14263cf1 1430
3da92f27 1431static int store_super1(struct supertype *st, int fd)
82d9eba6 1432{
3da92f27 1433 struct mdp_superblock_1 *sb = st->sb;
6fbba4c9 1434 unsigned long long sb_offset;
308340aa 1435 struct align_fd afd;
82d9eba6 1436 int sbsize;
5dd497ee 1437 unsigned long long dsize;
96395475 1438
beae1dfe
NB
1439 if (!get_dev_size(fd, NULL, &dsize))
1440 return 1;
1441
1442 dsize >>= 9;
96395475 1443
5dd497ee 1444 if (dsize < 24)
96395475
NB
1445 return 2;
1446
308340aa
JS
1447 init_afd(&afd, fd);
1448
96395475
NB
1449 /*
1450 * Calculate the position of the superblock.
1451 * It is always aligned to a 4K boundary and
1452 * depending on minor_version, it can be:
1453 * 0: At least 8K, but less than 12K, from end of device
1454 * 1: At start of device
1455 * 2: 4K from start of device.
1456 */
1457 switch(st->minor_version) {
1458 case 0:
5dd497ee 1459 sb_offset = dsize;
96395475
NB
1460 sb_offset -= 8*2;
1461 sb_offset &= ~(4*2-1);
1462 break;
1463 case 1:
6fbba4c9 1464 sb_offset = 0;
96395475
NB
1465 break;
1466 case 2:
1467 sb_offset = 4*2;
1468 break;
1469 default:
1470 return -EINVAL;
1471 }
1472
82d9eba6 1473
34163fc7 1474
6fbba4c9
NB
1475 if (sb_offset != __le64_to_cpu(sb->super_offset) &&
1476 0 != __le64_to_cpu(sb->super_offset)
96395475 1477 ) {
e7b84f9d 1478 pr_err("internal error - sb_offset is wrong\n");
96395475
NB
1479 abort();
1480 }
82d9eba6 1481
6fbba4c9 1482 if (lseek64(fd, sb_offset << 9, 0)< 0LL)
82d9eba6
NB
1483 return 3;
1484
0a2f1894 1485 sbsize = ROUND_UP(sizeof(*sb) + 2 * __le32_to_cpu(sb->max_dev), 512);
82d9eba6 1486
308340aa 1487 if (awrite(&afd, sb, sbsize) != sbsize)
82d9eba6
NB
1488 return 4;
1489
14263cf1
NB
1490 if (sb->feature_map & __cpu_to_le32(MD_FEATURE_BITMAP_OFFSET)) {
1491 struct bitmap_super_s *bm = (struct bitmap_super_s*)
911cead7 1492 (((char*)sb)+MAX_SB_SIZE);
14263cf1 1493 if (__le32_to_cpu(bm->magic) == BITMAP_MAGIC) {
3da92f27 1494 locate_bitmap1(st, fd);
308340aa
JS
1495 if (awrite(&afd, bm, sizeof(*bm)) != sizeof(*bm))
1496 return 5;
14263cf1
NB
1497 }
1498 }
570c0542 1499 fsync(fd);
82d9eba6
NB
1500 return 0;
1501}
1502
3da92f27 1503static int load_super1(struct supertype *st, int fd, char *devname);
892debc8 1504
2fb749d1
NB
1505static unsigned long choose_bm_space(unsigned long devsize)
1506{
1507 /* if the device is bigger than 8Gig, save 64k for bitmap usage,
1508 * if bigger than 200Gig, save 128k
a380e275
N
1509 * NOTE: result must be multiple of 4K else bad things happen
1510 * on 4K-sector devices.
2fb749d1 1511 */
69646c14 1512 if (devsize < 64*2) return 0;
2fb749d1
NB
1513 if (devsize - 64*2 >= 200*1024*1024*2)
1514 return 128*2;
1515 if (devsize - 4*2 > 8*1024*1024*2)
1516 return 64*2;
1517 return 4*2;
1518}
1519
e8090005
N
1520static void free_super1(struct supertype *st);
1521
111d01fc
NB
1522#ifndef MDASSEMBLE
1523static int write_init_super1(struct supertype *st)
82d9eba6 1524{
3da92f27 1525 struct mdp_superblock_1 *sb = st->sb;
e8090005 1526 struct supertype *refst;
dfe47e00 1527 int rfd;
111d01fc 1528 int rv = 0;
f21e18ca 1529 unsigned long long bm_space;
a380e275 1530 unsigned long long reserved;
111d01fc 1531 struct devinfo *di;
8fac0577 1532 unsigned long long dsize, array_size;
508a7f16 1533 unsigned long long sb_offset, headroom;
83cd1e97 1534 unsigned long long data_offset;
82d9eba6 1535
4687f160 1536 for (di = st->info; di; di = di->next) {
111d01fc
NB
1537 if (di->disk.state == 1)
1538 continue;
a0c8a17f
NB
1539 if (di->fd < 0)
1540 continue;
82d9eba6 1541
ba728be7 1542 while (Kill(di->devname, NULL, 0, -1, 1) == 0)
9277cc77 1543 ;
82d9eba6 1544
111d01fc
NB
1545 sb->dev_number = __cpu_to_le32(di->disk.number);
1546 if (di->disk.state & (1<<MD_DISK_WRITEMOSTLY))
adbb382b 1547 sb->devflags |= WriteMostly1;
9a88e7b6 1548 else
adbb382b 1549 sb->devflags &= ~WriteMostly1;
892debc8 1550
111d01fc
NB
1551 if ((rfd = open("/dev/urandom", O_RDONLY)) < 0 ||
1552 read(rfd, sb->device_uuid, 16) != 16) {
83208785
N
1553 __u32 r[4] = {random(), random(), random(), random()};
1554 memcpy(sb->device_uuid, r, 16);
111d01fc 1555 }
83208785
N
1556 if (rfd >= 0)
1557 close(rfd);
1558
111d01fc
NB
1559 sb->events = 0;
1560
e8090005
N
1561 refst = dup_super(st);
1562 if (load_super1(refst, di->fd, NULL)==0) {
1563 struct mdp_superblock_1 *refsb = refst->sb;
111d01fc
NB
1564
1565 memcpy(sb->device_uuid, refsb->device_uuid, 16);
1566 if (memcmp(sb->set_uuid, refsb->set_uuid, 16)==0) {
1567 /* same array, so preserve events and
1568 * dev_number */
1569 sb->events = refsb->events;
1570 /* bugs in 2.6.17 and earlier mean the
1571 * dev_number chosen in Manage must be preserved
1572 */
1573 if (get_linux_version() >= 2006018)
1574 sb->dev_number = refsb->dev_number;
1575 }
e8090005 1576 free_super1(refst);
892debc8 1577 }
e8090005 1578 free(refst);
34163fc7 1579
40114213
JS
1580 if (!get_dev_size(di->fd, NULL, &dsize)) {
1581 rv = 1;
1582 goto error_out;
1583 }
111d01fc 1584 dsize >>= 9;
82d9eba6 1585
111d01fc
NB
1586 if (dsize < 24) {
1587 close(di->fd);
40114213
JS
1588 rv = 2;
1589 goto error_out;
111d01fc 1590 }
82d9eba6
NB
1591
1592
111d01fc
NB
1593 /*
1594 * Calculate the position of the superblock.
1595 * It is always aligned to a 4K boundary and
1596 * depending on minor_version, it can be:
1597 * 0: At least 8K, but less than 12K, from end of device
1598 * 1: At start of device
1599 * 2: 4K from start of device.
1600 * Depending on the array size, we might leave extra space
1601 * for a bitmap.
bf95d0f3 1602 * Also leave 4K for bad-block log.
111d01fc
NB
1603 */
1604 array_size = __le64_to_cpu(sb->size);
bf95d0f3
N
1605 /* work out how much space we left for a bitmap,
1606 * Add 8 sectors for bad block log */
1607 bm_space = choose_bm_space(array_size) + 8;
111d01fc 1608
508a7f16
N
1609 /* We try to leave 0.1% at the start for reshape
1610 * operations, but limit this to 128Meg (0.1% of 10Gig)
1611 * which is plenty for efficient reshapes
cb19a251
N
1612 * However we make it at least 2 chunks as one chunk
1613 * is minimum needed for reshape.
508a7f16
N
1614 */
1615 headroom = 128 * 1024 * 2;
cb19a251
N
1616 while (headroom << 10 > array_size &&
1617 headroom/2 >= __le32_to_cpu(sb->chunksize) * 2)
508a7f16
N
1618 headroom >>= 1;
1619
72ca9bcf 1620 data_offset = di->data_offset;
111d01fc
NB
1621 switch(st->minor_version) {
1622 case 0:
1623 sb_offset = dsize;
1624 sb_offset -= 8*2;
1625 sb_offset &= ~(4*2-1);
1626 sb->super_offset = __cpu_to_le64(sb_offset);
83cd1e97
N
1627 if (data_offset == INVALID_SECTORS)
1628 sb->data_offset = 0;
f21e18ca 1629 if (sb_offset < array_size + bm_space)
a380e275 1630 bm_space = sb_offset - array_size;
111d01fc 1631 sb->data_size = __cpu_to_le64(sb_offset - bm_space);
bf95d0f3
N
1632 if (bm_space >= 8) {
1633 sb->bblog_size = __cpu_to_le16(8);
1634 sb->bblog_offset = __cpu_to_le32((unsigned)-8);
1635 }
111d01fc
NB
1636 break;
1637 case 1:
1638 sb->super_offset = __cpu_to_le64(0);
83cd1e97
N
1639 if (data_offset == INVALID_SECTORS) {
1640 reserved = bm_space + 4*2;
1641 if (reserved < headroom)
1642 reserved = headroom;
1643 if (reserved + array_size > dsize)
1644 reserved = dsize - array_size;
1645 /* Try for multiple of 1Meg so it is nicely aligned */
1646 #define ONE_MEG (2*1024)
1647 if (reserved > ONE_MEG)
1648 reserved = (reserved/ONE_MEG) * ONE_MEG;
1649
1650 /* force 4K alignment */
1651 reserved &= ~7ULL;
1652
1653 } else
1654 reserved = data_offset;
a380e275
N
1655
1656 sb->data_offset = __cpu_to_le64(reserved);
1657 sb->data_size = __cpu_to_le64(dsize - reserved);
f79bbf4f
N
1658 if (reserved >= 8 + 32*2 + 8) {
1659 sb->bblog_size = __cpu_to_le16(8);
1660 sb->bblog_offset = __cpu_to_le32(8 + 32*2);
1661 } else if (reserved >= 16) {
bf95d0f3
N
1662 sb->bblog_size = __cpu_to_le16(8);
1663 sb->bblog_offset = __cpu_to_le32(reserved-8);
1664 }
111d01fc
NB
1665 break;
1666 case 2:
1667 sb_offset = 4*2;
1668 sb->super_offset = __cpu_to_le64(4*2);
83cd1e97
N
1669 if (data_offset == INVALID_SECTORS) {
1670 if (4*2 + 4*2 + bm_space + array_size
1671 > dsize)
1672 bm_space = dsize - array_size
1673 - 4*2 - 4*2;
1674
1675 reserved = bm_space + 4*2 + 4*2;
1676 if (reserved < headroom)
1677 reserved = headroom;
1678 if (reserved + array_size > dsize)
1679 reserved = dsize - array_size;
1680 /* Try for multiple of 1Meg so it is nicely aligned */
1681 #define ONE_MEG (2*1024)
1682 if (reserved > ONE_MEG)
1683 reserved = (reserved/ONE_MEG) * ONE_MEG;
1684
1685 /* force 4K alignment */
1686 reserved &= ~7ULL;
1687
1688 } else
1689 reserved = data_offset;
a380e275
N
1690
1691 sb->data_offset = __cpu_to_le64(reserved);
1692 sb->data_size = __cpu_to_le64(dsize - reserved);
f79bbf4f
N
1693 if (reserved >= 16 + 32*2 + 8) {
1694 sb->bblog_size = __cpu_to_le16(8);
1695 sb->bblog_offset = __cpu_to_le32(8 + 32*2);
1696 } else if (reserved >= 16+16) {
bf95d0f3
N
1697 sb->bblog_size = __cpu_to_le16(8);
1698 /* '8' sectors for the bblog, and another '8'
1699 * because we want offset from superblock, not
1700 * start of device.
1701 */
1702 sb->bblog_offset = __cpu_to_le32(reserved-8-8);
1703 }
111d01fc
NB
1704 break;
1705 default:
e7b84f9d
N
1706 pr_err("Failed to write invalid "
1707 "metadata format 1.%i to %s\n",
1708 st->minor_version, di->devname);
40114213
JS
1709 rv = -EINVAL;
1710 goto out;
111d01fc 1711 }
82d9eba6 1712
111d01fc
NB
1713 sb->sb_csum = calc_sb_1_csum(sb);
1714 rv = store_super1(st, di->fd);
111d01fc
NB
1715 if (rv == 0 && (__le32_to_cpu(sb->feature_map) & 1))
1716 rv = st->ss->write_bitmap(st, di->fd);
1717 close(di->fd);
1718 di->fd = -1;
4687f160 1719 if (rv)
1720 goto error_out;
111d01fc 1721 }
40114213
JS
1722error_out:
1723 if (rv)
e7b84f9d
N
1724 pr_err("Failed to write metadata to %s\n",
1725 di->devname);
40114213 1726out:
82d9eba6
NB
1727 return rv;
1728}
111d01fc 1729#endif
82d9eba6 1730
64557c33 1731static int compare_super1(struct supertype *st, struct supertype *tst)
82d9eba6
NB
1732{
1733 /*
1734 * return:
1735 * 0 same, or first was empty, and second was copied
1736 * 1 second had wrong number
1737 * 2 wrong uuid
1738 * 3 wrong other info
1739 */
64557c33
NB
1740 struct mdp_superblock_1 *first = st->sb;
1741 struct mdp_superblock_1 *second = tst->sb;
82d9eba6
NB
1742
1743 if (second->magic != __cpu_to_le32(MD_SB_MAGIC))
1744 return 1;
1745 if (second->major_version != __cpu_to_le32(1))
1746 return 1;
1747
1748 if (!first) {
3c0bcd46 1749 if (posix_memalign((void**)&first, 4096, SUPER1_SIZE) != 0) {
e7b84f9d 1750 pr_err("%s could not allocate superblock\n", __func__);
3d2c4fc7
DW
1751 return 1;
1752 }
41226756 1753 memcpy(first, second, SUPER1_SIZE);
64557c33 1754 st->sb = first;
82d9eba6
NB
1755 return 0;
1756 }
1757 if (memcmp(first->set_uuid, second->set_uuid, 16)!= 0)
1758 return 2;
1759
1760 if (first->ctime != second->ctime ||
1761 first->level != second->level ||
1762 first->layout != second->layout ||
1763 first->size != second->size ||
1764 first->chunksize != second->chunksize ||
1765 first->raid_disks != second->raid_disks)
1766 return 3;
1767 return 0;
1768}
1769
3da92f27 1770static int load_super1(struct supertype *st, int fd, char *devname)
82d9eba6 1771{
5dd497ee 1772 unsigned long long dsize;
82d9eba6
NB
1773 unsigned long long sb_offset;
1774 struct mdp_superblock_1 *super;
14263cf1
NB
1775 int uuid[4];
1776 struct bitmap_super_s *bsb;
bee8ec56 1777 struct misc_dev_info *misc;
308340aa 1778 struct align_fd afd;
82d9eba6 1779
3da92f27 1780 free_super1(st);
82d9eba6 1781
308340aa
JS
1782 init_afd(&afd, fd);
1783
a17a3de3 1784 if (st->ss == NULL || st->minor_version == -1) {
570c0542 1785 int bestvers = -1;
23dc1ae8 1786 struct supertype tst;
570c0542
NB
1787 __u64 bestctime = 0;
1788 /* guess... choose latest ctime */
ef609477 1789 memset(&tst, 0, sizeof(tst));
23dc1ae8
NB
1790 tst.ss = &super1;
1791 for (tst.minor_version = 0; tst.minor_version <= 2 ; tst.minor_version++) {
3da92f27
NB
1792 switch(load_super1(&tst, fd, devname)) {
1793 case 0: super = tst.sb;
570c0542
NB
1794 if (bestvers == -1 ||
1795 bestctime < __le64_to_cpu(super->ctime)) {
23dc1ae8 1796 bestvers = tst.minor_version;
570c0542
NB
1797 bestctime = __le64_to_cpu(super->ctime);
1798 }
1799 free(super);
3da92f27 1800 tst.sb = NULL;
570c0542 1801 break;
23dc1ae8 1802 case 1: return 1; /*bad device */
82d9eba6
NB
1803 case 2: break; /* bad, try next */
1804 }
1805 }
570c0542
NB
1806 if (bestvers != -1) {
1807 int rv;
23dc1ae8
NB
1808 tst.minor_version = bestvers;
1809 tst.ss = &super1;
911cead7 1810 tst.max_devs = MAX_DEVS;
3da92f27 1811 rv = load_super1(&tst, fd, devname);
23dc1ae8
NB
1812 if (rv == 0)
1813 *st = tst;
570c0542
NB
1814 return rv;
1815 }
82d9eba6
NB
1816 return 2;
1817 }
beae1dfe
NB
1818 if (!get_dev_size(fd, devname, &dsize))
1819 return 1;
1820 dsize >>= 9;
82d9eba6 1821
5dd497ee 1822 if (dsize < 24) {
82d9eba6 1823 if (devname)
e7b84f9d 1824 pr_err("%s is too small for md: size is %llu sectors.\n",
5dd497ee 1825 devname, dsize);
82d9eba6
NB
1826 return 1;
1827 }
1828
1829 /*
1830 * Calculate the position of the superblock.
1831 * It is always aligned to a 4K boundary and
14263cf1 1832 * depending on minor_version, it can be:
82d9eba6
NB
1833 * 0: At least 8K, but less than 12K, from end of device
1834 * 1: At start of device
1835 * 2: 4K from start of device.
1836 */
1837 switch(st->minor_version) {
1838 case 0:
5dd497ee 1839 sb_offset = dsize;
82d9eba6
NB
1840 sb_offset -= 8*2;
1841 sb_offset &= ~(4*2-1);
1842 break;
1843 case 1:
1844 sb_offset = 0;
1845 break;
1846 case 2:
1847 sb_offset = 4*2;
1848 break;
1849 default:
1850 return -EINVAL;
1851 }
1852
82d9eba6
NB
1853 if (lseek64(fd, sb_offset << 9, 0)< 0LL) {
1854 if (devname)
e7b84f9d 1855 pr_err("Cannot seek to superblock on %s: %s\n",
82d9eba6
NB
1856 devname, strerror(errno));
1857 return 1;
1858 }
1859
3c0bcd46 1860 if (posix_memalign((void**)&super, 4096, SUPER1_SIZE) != 0) {
e7b84f9d 1861 pr_err("%s could not allocate superblock\n",
3d2c4fc7
DW
1862 __func__);
1863 return 1;
1864 }
82d9eba6 1865
308340aa 1866 if (aread(&afd, super, MAX_SB_SIZE) != MAX_SB_SIZE) {
82d9eba6 1867 if (devname)
e7b84f9d 1868 pr_err("Cannot read superblock on %s\n",
82d9eba6
NB
1869 devname);
1870 free(super);
1871 return 1;
1872 }
1873
1874 if (__le32_to_cpu(super->magic) != MD_SB_MAGIC) {
1875 if (devname)
e7b84f9d 1876 pr_err("No super block found on %s (Expected magic %08x, got %08x)\n",
82d9eba6
NB
1877 devname, MD_SB_MAGIC, __le32_to_cpu(super->magic));
1878 free(super);
1879 return 2;
1880 }
1881
1882 if (__le32_to_cpu(super->major_version) != 1) {
1883 if (devname)
e7b84f9d 1884 pr_err("Cannot interpret superblock on %s - version is %d\n",
82d9eba6
NB
1885 devname, __le32_to_cpu(super->major_version));
1886 free(super);
1887 return 2;
1888 }
1889 if (__le64_to_cpu(super->super_offset) != sb_offset) {
1890 if (devname)
e7b84f9d 1891 pr_err("No superblock found on %s (super_offset is wrong)\n",
82d9eba6
NB
1892 devname);
1893 free(super);
1894 return 2;
1895 }
64557c33 1896 st->sb = super;
14263cf1 1897
911cead7 1898 bsb = (struct bitmap_super_s *)(((char*)super)+MAX_SB_SIZE);
bee8ec56 1899
911cead7 1900 misc = (struct misc_dev_info*) (((char*)super)+MAX_SB_SIZE+BM_SUPER_SIZE);
bee8ec56
NB
1901 misc->device_size = dsize;
1902
14263cf1
NB
1903 /* Now check on the bitmap superblock */
1904 if ((__le32_to_cpu(super->feature_map)&MD_FEATURE_BITMAP_OFFSET) == 0)
1905 return 0;
1906 /* Read the bitmap superblock and make sure it looks
1907 * valid. If it doesn't clear the bit. An --assemble --force
1908 * should get that written out.
1909 */
3da92f27 1910 locate_bitmap1(st, fd);
308340aa 1911 if (aread(&afd, bsb, 512) != 512)
14263cf1
NB
1912 goto no_bitmap;
1913
3da92f27 1914 uuid_from_super1(st, uuid);
14263cf1
NB
1915 if (__le32_to_cpu(bsb->magic) != BITMAP_MAGIC ||
1916 memcmp(bsb->uuid, uuid, 16) != 0)
1917 goto no_bitmap;
1918 return 0;
1919
1920 no_bitmap:
c0c1acd6
N
1921 super->feature_map = __cpu_to_le32(__le32_to_cpu(super->feature_map)
1922 & ~MD_FEATURE_BITMAP_OFFSET);
82d9eba6
NB
1923 return 0;
1924}
1925
1926
1927static struct supertype *match_metadata_desc1(char *arg)
1928{
503975b9 1929 struct supertype *st = xcalloc(1, sizeof(*st));
82d9eba6 1930
4dd2df09 1931 st->container_devnm[0] = 0;
82d9eba6 1932 st->ss = &super1;
911cead7 1933 st->max_devs = MAX_DEVS;
64557c33 1934 st->sb = NULL;
9b2a22d3
N
1935 /* leading zeros can be safely ignored. --detail generates them. */
1936 while (*arg == '0')
1937 arg++;
1938 if (strcmp(arg, "1.0") == 0 ||
1939 strcmp(arg, "1.00") == 0) {
82d9eba6
NB
1940 st->minor_version = 0;
1941 return st;
1942 }
9b2a22d3 1943 if (strcmp(arg, "1.1") == 0 ||
50827504 1944 strcmp(arg, "1.01") == 0
7d5c3964 1945 ) {
82d9eba6
NB
1946 st->minor_version = 1;
1947 return st;
1948 }
9b2a22d3 1949 if (strcmp(arg, "1.2") == 0 ||
26f467a9 1950#ifndef DEFAULT_OLD_METADATA /* ifdef in super0.c */
ad90adb6 1951 strcmp(arg, "default") == 0 ||
26f467a9 1952#endif /* DEFAULT_OLD_METADATA */
9b2a22d3 1953 strcmp(arg, "1.02") == 0) {
82d9eba6
NB
1954 st->minor_version = 2;
1955 return st;
1956 }
a17a3de3 1957 if (strcmp(arg, "1") == 0 ||
17f25ca6 1958 strcmp(arg, "default") == 0) {
a17a3de3
DL
1959 st->minor_version = -1;
1960 return st;
1961 }
82d9eba6
NB
1962
1963 free(st);
1964 return NULL;
1965}
1966
34163fc7
NB
1967/* find available size on device with this devsize, using
1968 * superblock type st, and reserving 'reserve' sectors for
1969 * a possible bitmap
1970 */
cb19a251
N
1971static __u64 _avail_size1(struct supertype *st, __u64 devsize,
1972 unsigned long long data_offset, int chunksize)
82d9eba6 1973{
2a528478 1974 struct mdp_superblock_1 *super = st->sb;
387fcd59 1975 int bmspace = 0;
82d9eba6
NB
1976 if (devsize < 24)
1977 return 0;
1978
2a528478
N
1979 if (super == NULL)
1980 /* creating: allow suitable space for bitmap */
387fcd59 1981 bmspace = choose_bm_space(devsize);
2a528478
N
1982#ifndef MDASSEMBLE
1983 else if (__le32_to_cpu(super->feature_map)&MD_FEATURE_BITMAP_OFFSET) {
1984 /* hot-add. allow for actual size of bitmap */
1985 struct bitmap_super_s *bsb;
911cead7 1986 bsb = (struct bitmap_super_s *)(((char*)super)+MAX_SB_SIZE);
387fcd59 1987 bmspace = bitmap_sectors(bsb);
2a528478
N
1988 }
1989#endif
88af981f
N
1990 /* Allow space for bad block log */
1991 if (super && super->bblog_size)
1992 devsize -= __le16_to_cpu(super->bblog_size);
1993 else
1994 devsize -= 8;
21e92547 1995
387fcd59 1996
a380e275
N
1997 if (st->minor_version < 0)
1998 /* not specified, so time to set default */
1999 st->minor_version = 2;
387fcd59
N
2000
2001 if (data_offset != INVALID_SECTORS)
2002 switch(st->minor_version) {
2003 case 0:
2004 return devsize - data_offset - 8*2;
2005 case 1:
2006 case 2:
2007 return devsize - data_offset;
2008 default:
2009 return 0;
2010 }
2011
2012 devsize -= bmspace;
2013
a380e275
N
2014 if (super == NULL && st->minor_version > 0) {
2015 /* haven't committed to a size yet, so allow some
508a7f16
N
2016 * slack for space for reshape.
2017 * Limit slack to 128M, but aim for about 0.1%
a380e275 2018 */
508a7f16 2019 unsigned long long headroom = 128*1024*2;
cb19a251
N
2020 while ((headroom << 10) > devsize &&
2021 (chunksize == 0 ||
2022 headroom / 2 >= ((unsigned)chunksize*2)*2))
508a7f16
N
2023 headroom >>= 1;
2024 devsize -= headroom;
a380e275 2025 }
34163fc7
NB
2026 switch(st->minor_version) {
2027 case 0:
1bf4e2d9
NB
2028 /* at end */
2029 return ((devsize - 8*2 ) & ~(4*2-1));
34163fc7 2030 case 1:
1bf4e2d9
NB
2031 /* at start, 4K for superblock and possible bitmap */
2032 return devsize - 4*2;
34163fc7 2033 case 2:
1bf4e2d9
NB
2034 /* 4k from start, 4K for superblock and possible bitmap */
2035 return devsize - (4+4)*2;
34163fc7
NB
2036 }
2037 return 0;
2038}
cb19a251
N
2039static __u64 avail_size1(struct supertype *st, __u64 devsize,
2040 unsigned long long data_offset)
2041{
2042 return _avail_size1(st, devsize, data_offset, 0);
2043}
34163fc7 2044
1bf4e2d9 2045static int
3da92f27 2046add_internal_bitmap1(struct supertype *st,
199171a2
NB
2047 int *chunkp, int delay, int write_behind,
2048 unsigned long long size,
21e92547 2049 int may_change, int major)
34163fc7
NB
2050{
2051 /*
c0c1acd6
N
2052 * If not may_change, then this is a 'Grow' without sysfs support for
2053 * bitmaps, and the bitmap must fit after the superblock at 1K offset.
2054 * If may_change, then this is create or a Grow with sysfs syupport,
2055 * and we can put the bitmap wherever we like.
34163fc7 2056 *
f9c25f1d 2057 * size is in sectors, chunk is in bytes !!!
34163fc7
NB
2058 */
2059
1bf4e2d9 2060 unsigned long long bits;
199171a2 2061 unsigned long long max_bits;
34163fc7 2062 unsigned long long min_chunk;
199171a2 2063 long offset;
88af981f 2064 long bbl_offset, bbl_size;
f21e18ca 2065 unsigned long long chunk = *chunkp;
37dfc3d6 2066 int room = 0;
c0c1acd6 2067 int creating = 0;
3da92f27 2068 struct mdp_superblock_1 *sb = st->sb;
911cead7 2069 bitmap_super_t *bms = (bitmap_super_t*)(((char*)sb) + MAX_SB_SIZE);
3b7e9d0c 2070 int uuid[4];
34163fc7 2071
88af981f 2072
c0c1acd6
N
2073 if (__le64_to_cpu(sb->data_size) == 0)
2074 /* Must be creating the array, else data_size would be non-zero */
2075 creating = 1;
199171a2
NB
2076 switch(st->minor_version) {
2077 case 0:
a31128d2
N
2078 /* either 3K after the superblock (when hot-add),
2079 * or some amount of space before.
199171a2 2080 */
c0c1acd6 2081 if (creating) {
199171a2
NB
2082 /* We are creating array, so we *know* how much room has
2083 * been left.
2084 */
2085 offset = 0;
2fb749d1 2086 room = choose_bm_space(__le64_to_cpu(sb->size));
88af981f 2087 bbl_size = 8;
199171a2
NB
2088 } else {
2089 room = __le64_to_cpu(sb->super_offset)
2090 - __le64_to_cpu(sb->data_offset)
2091 - __le64_to_cpu(sb->data_size);
88af981f
N
2092 bbl_size = __le16_to_cpu(sb->bblog_size);
2093 if (bbl_size < 8)
2094 bbl_size = 8;
2095 bbl_offset = (__s32)__le32_to_cpu(sb->bblog_offset);
2096 if (bbl_size < -bbl_offset)
2097 bbl_size = -bbl_offset;
c0c1acd6
N
2098
2099 if (!may_change || (room < 3*2 &&
199171a2
NB
2100 __le32_to_cpu(sb->max_dev) <= 384)) {
2101 room = 3*2;
2102 offset = 1*2;
88af981f 2103 bbl_size = 0;
199171a2
NB
2104 } else {
2105 offset = 0; /* means movable offset */
2106 }
2107 }
2108 break;
2109 case 1:
2110 case 2: /* between superblock and data */
c0c1acd6 2111 if (creating) {
199171a2 2112 offset = 4*2;
2fb749d1 2113 room = choose_bm_space(__le64_to_cpu(sb->size));
88af981f 2114 bbl_size = 8;
199171a2
NB
2115 } else {
2116 room = __le64_to_cpu(sb->data_offset)
2117 - __le64_to_cpu(sb->super_offset);
88af981f
N
2118 bbl_size = __le16_to_cpu(sb->bblog_size);
2119 if (bbl_size)
2120 room = __le32_to_cpu(sb->bblog_offset) + bbl_size;
2121 else
2122 bbl_size = 8;
2123
c0c1acd6
N
2124 if (!may_change) {
2125 room -= 2; /* Leave 1K for superblock */
199171a2 2126 offset = 2;
88af981f 2127 bbl_size = 0;
199171a2 2128 } else {
c0c1acd6 2129 room -= 4*2; /* leave 4K for superblock */
199171a2
NB
2130 offset = 4*2;
2131 }
2132 }
2133 break;
ae491d1e
NB
2134 default:
2135 return 0;
199171a2 2136 }
1bf4e2d9 2137
88af981f 2138 room -= bbl_size;
199171a2
NB
2139 if (chunk == UnSet && room > 128*2)
2140 /* Limit to 128K of bitmap when chunk size not requested */
2141 room = 128*2;
1bf4e2d9 2142
199171a2 2143 max_bits = (room * 512 - sizeof(bitmap_super_t)) * 8;
34163fc7
NB
2144
2145 min_chunk = 4096; /* sub-page chunks don't work yet.. */
f9c25f1d 2146 bits = (size*512)/min_chunk +1;
34163fc7
NB
2147 while (bits > max_bits) {
2148 min_chunk *= 2;
2149 bits = (bits+1)/2;
2150 }
b8ab2a50
N
2151 if (chunk == UnSet) {
2152 /* For practical purpose, 64Meg is a good
2153 * default chunk size for internal bitmaps.
2154 */
34163fc7 2155 chunk = min_chunk;
b8ab2a50
N
2156 if (chunk < 64*1024*1024)
2157 chunk = 64*1024*1024;
2158 } else if (chunk < min_chunk)
34163fc7 2159 return 0; /* chunk size too small */
21e92547
NB
2160 if (chunk == 0) /* rounding problem */
2161 return 0;
34163fc7 2162
199171a2 2163 if (offset == 0) {
a31128d2
N
2164 /* start bitmap on a 4K boundary with enough space for
2165 * the bitmap
2166 */
199171a2 2167 bits = (size*512) / chunk + 1;
a31128d2
N
2168 room = ((bits+7)/8 + sizeof(bitmap_super_t) +4095)/4096;
2169 room *= 8; /* convert 4K blocks to sectors */
88af981f 2170 offset = -room - bbl_size;
199171a2
NB
2171 }
2172
34a13953 2173 sb->bitmap_offset = (int32_t)__cpu_to_le32(offset);
34163fc7 2174
c0c1acd6
N
2175 sb->feature_map = __cpu_to_le32(__le32_to_cpu(sb->feature_map)
2176 | MD_FEATURE_BITMAP_OFFSET);
29e766a5 2177 memset(bms, 0, sizeof(*bms));
34163fc7 2178 bms->magic = __cpu_to_le32(BITMAP_MAGIC);
dcec9ee5 2179 bms->version = __cpu_to_le32(major);
3b7e9d0c
LB
2180 uuid_from_super1(st, uuid);
2181 memcpy(bms->uuid, uuid, 16);
34163fc7
NB
2182 bms->chunksize = __cpu_to_le32(chunk);
2183 bms->daemon_sleep = __cpu_to_le32(delay);
f9c25f1d 2184 bms->sync_size = __cpu_to_le64(size);
34163fc7
NB
2185 bms->write_behind = __cpu_to_le32(write_behind);
2186
199171a2 2187 *chunkp = chunk;
34163fc7
NB
2188 return 1;
2189}
2190
3da92f27 2191static void locate_bitmap1(struct supertype *st, int fd)
34163fc7 2192{
34163fc7 2193 unsigned long long offset;
1e0d770c
NB
2194 struct mdp_superblock_1 *sb;
2195 int mustfree = 0;
34163fc7 2196
3da92f27
NB
2197 if (!st->sb) {
2198 if (st->ss->load_super(st, fd, NULL))
f6d75de8 2199 return; /* no error I hope... */
1e0d770c
NB
2200 mustfree = 1;
2201 }
3da92f27 2202 sb = st->sb;
e478dc86 2203
1bf4e2d9 2204 offset = __le64_to_cpu(sb->super_offset);
68754bd1 2205 offset += (int32_t) __le32_to_cpu(sb->bitmap_offset);
1e0d770c 2206 if (mustfree)
f6d75de8 2207 free(sb);
1bf4e2d9 2208 lseek64(fd, offset<<9, 0);
34163fc7
NB
2209}
2210
3da92f27 2211static int write_bitmap1(struct supertype *st, int fd)
34163fc7 2212{
3da92f27 2213 struct mdp_superblock_1 *sb = st->sb;
911cead7 2214 bitmap_super_t *bms = (bitmap_super_t*)(((char*)sb)+MAX_SB_SIZE);
34163fc7 2215 int rv = 0;
d669228f 2216 void *buf;
34163fc7 2217 int towrite, n;
308340aa
JS
2218 struct align_fd afd;
2219
2220 init_afd(&afd, fd);
34163fc7 2221
3da92f27 2222 locate_bitmap1(st, fd);
34163fc7 2223
d669228f
JS
2224 if (posix_memalign(&buf, 4096, 4096))
2225 return -ENOMEM;
2226
6416d527 2227 memset(buf, 0xff, 4096);
b2bfdfa0 2228 memcpy(buf, (char *)bms, sizeof(bitmap_super_t));
6416d527 2229
1bf4e2d9
NB
2230 towrite = __le64_to_cpu(bms->sync_size) / (__le32_to_cpu(bms->chunksize)>>9);
2231 towrite = (towrite+7) >> 3; /* bits to bytes */
6416d527
NB
2232 towrite += sizeof(bitmap_super_t);
2233 towrite = ROUND_UP(towrite, 512);
34163fc7
NB
2234 while (towrite > 0) {
2235 n = towrite;
6416d527
NB
2236 if (n > 4096)
2237 n = 4096;
308340aa 2238 n = awrite(&afd, buf, n);
34163fc7
NB
2239 if (n > 0)
2240 towrite -= n;
2241 else
2242 break;
6416d527 2243 memset(buf, 0xff, 4096);
34163fc7
NB
2244 }
2245 fsync(fd);
2246 if (towrite)
2247 rv = -2;
2248
d669228f 2249 free(buf);
34163fc7 2250 return rv;
82d9eba6
NB
2251}
2252
3da92f27 2253static void free_super1(struct supertype *st)
df37ffc0 2254{
3da92f27
NB
2255 if (st->sb)
2256 free(st->sb);
1cc7f4fe
N
2257 while (st->info) {
2258 struct devinfo *di = st->info;
2259 st->info = di->next;
2260 if (di->fd >= 0)
2261 close(di->fd);
2262 free(di);
2263 }
3da92f27 2264 st->sb = NULL;
df37ffc0
NB
2265}
2266
0e600426 2267#ifndef MDASSEMBLE
17f25ca6
NB
2268static int validate_geometry1(struct supertype *st, int level,
2269 int layout, int raiddisks,
c21e737b 2270 int *chunk, unsigned long long size,
af4348dd 2271 unsigned long long data_offset,
2c514b71
NB
2272 char *subdev, unsigned long long *freesize,
2273 int verbose)
17f25ca6
NB
2274{
2275 unsigned long long ldsize;
2276 int fd;
2277
b42f577a
N
2278 if (level == LEVEL_CONTAINER) {
2279 if (verbose)
e7b84f9d 2280 pr_err("1.x metadata does not support containers\n");
17f25ca6 2281 return 0;
b42f577a 2282 }
bb7295f1
N
2283 if (chunk && *chunk == UnSet)
2284 *chunk = DEFAULT_CHUNK;
2285
17f25ca6
NB
2286 if (!subdev)
2287 return 1;
2288
2289 fd = open(subdev, O_RDONLY|O_EXCL, 0);
2290 if (fd < 0) {
2c514b71 2291 if (verbose)
e7b84f9d 2292 pr_err("super1.x cannot open %s: %s\n",
2c514b71 2293 subdev, strerror(errno));
17f25ca6
NB
2294 return 0;
2295 }
2c514b71 2296
17f25ca6
NB
2297 if (!get_dev_size(fd, subdev, &ldsize)) {
2298 close(fd);
2299 return 0;
2300 }
2301 close(fd);
2302
cb19a251 2303 *freesize = _avail_size1(st, ldsize >> 9, data_offset, *chunk);
17f25ca6
NB
2304 return 1;
2305}
0e600426 2306#endif /* MDASSEMBLE */
17f25ca6 2307
afa368f4
N
2308void *super1_make_v0(struct supertype *st, struct mdinfo *info, mdp_super_t *sb0)
2309{
2310 /* Create a v1.0 superblock based on 'info'*/
2311 void *ret;
2312 struct mdp_superblock_1 *sb;
2313 int i;
2314 int rfd;
2315 unsigned long long offset;
2316
2317 if (posix_memalign(&ret, 4096, 1024) != 0)
2318 return NULL;
2319 sb = ret;
2320 memset(ret, 0, 1024);
2321 sb->magic = __cpu_to_le32(MD_SB_MAGIC);
2322 sb->major_version = __cpu_to_le32(1);
2323
2324 copy_uuid(sb->set_uuid, info->uuid, super1.swapuuid);
2325 sprintf(sb->set_name, "%d", sb0->md_minor);
2326 sb->ctime = __cpu_to_le32(info->array.ctime+1);
2327 sb->level = __cpu_to_le32(info->array.level);
2328 sb->layout = __cpu_to_le32(info->array.layout);
2329 sb->size = __cpu_to_le64(info->component_size);
2330 sb->chunksize = __cpu_to_le32(info->array.chunk_size/512);
2331 sb->raid_disks = __cpu_to_le32(info->array.raid_disks);
2332 sb->data_size = sb->size;
2333 sb->resync_offset = MaxSector;
2334 sb->max_dev = __cpu_to_le32(MD_SB_DISKS);
2335 sb->dev_number = __cpu_to_le32(info->disk.number);
2336 sb->utime = __cpu_to_le64(info->array.utime);
2337
2338 offset = st->devsize/512 - 8*2;
2339 offset &= ~(4*2-1);
2340 sb->super_offset = __cpu_to_le64(offset);
2341 //*(__u64*)(st->other + 128 + 8 + 8) = __cpu_to_le64(offset);
2342
2343 if ((rfd = open("/dev/urandom", O_RDONLY)) < 0 ||
2344 read(rfd, sb->device_uuid, 16) != 16) {
2345 __u32 r[4] = {random(), random(), random(), random()};
2346 memcpy(sb->device_uuid, r, 16);
2347 }
2348 if (rfd >= 0)
2349 close(rfd);
2350
2351 for (i = 0; i < MD_SB_DISKS; i++) {
2352 int state = sb0->disks[i].state;
2353 sb->dev_roles[i] = 0xFFFF;
2354 if ((state & (1<<MD_DISK_SYNC)) &&
2355 !(state & (1<<MD_DISK_FAULTY)))
2356 sb->dev_roles[i] = __cpu_to_le16(sb0->disks[i].raid_disk);
2357 }
2358 sb->sb_csum = calc_sb_1_csum(sb);
2359 return ret;
2360}
2361
82d9eba6 2362struct superswitch super1 = {
c7654afc 2363#ifndef MDASSEMBLE
82d9eba6
NB
2364 .examine_super = examine_super1,
2365 .brief_examine_super = brief_examine_super1,
0d726f17 2366 .export_examine_super = export_examine_super1,
82d9eba6
NB
2367 .detail_super = detail_super1,
2368 .brief_detail_super = brief_detail_super1,
0d726f17 2369 .export_detail_super = export_detail_super1,
111d01fc 2370 .write_init_super = write_init_super1,
0e600426
N
2371 .validate_geometry = validate_geometry1,
2372 .add_to_super = add_to_super1,
6d388a88 2373 .examine_badblocks = examine_badblocks_super1,
74db60b0 2374 .copy_metadata = copy_metadata1,
c7654afc 2375#endif
83b6208e 2376 .match_home = match_home1,
82d9eba6
NB
2377 .uuid_from_super = uuid_from_super1,
2378 .getinfo_super = getinfo_super1,
00bbdbda 2379 .container_content = container_content1,
82d9eba6 2380 .update_super = update_super1,
82d9eba6 2381 .init_super = init_super1,
82d9eba6 2382 .store_super = store_super1,
82d9eba6
NB
2383 .compare_super = compare_super1,
2384 .load_super = load_super1,
2385 .match_metadata_desc = match_metadata_desc1,
2386 .avail_size = avail_size1,
34163fc7
NB
2387 .add_internal_bitmap = add_internal_bitmap1,
2388 .locate_bitmap = locate_bitmap1,
2389 .write_bitmap = write_bitmap1,
df37ffc0 2390 .free_super = free_super1,
f277ce36
NB
2391#if __BYTE_ORDER == BIG_ENDIAN
2392 .swapuuid = 0,
2393#else
2394 .swapuuid = 1,
2395#endif
31015d57 2396 .name = "1.x",
82d9eba6 2397};