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When resync finished, report the mismatch count if there is one.
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1 /*
2 * mdadm - manage Linux "md" devices aka RAID arrays.
3 *
4 * Copyright (C) 2001-2006 Neil Brown <neilb@suse.de>
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
22 * Email: <neilb@cse.unsw.edu.au>
23 * Paper: Neil Brown
24 * School of Computer Science and Engineering
25 * The University of New South Wales
26 * Sydney, 2052
27 * Australia
28 */
29
30 #include "mdadm.h"
31 /*
32 * The version-1 superblock :
33 * All numeric fields are little-endian.
34 *
35 * total size: 256 bytes plus 2 per device.
36 * 1K allows 384 devices.
37 */
38 struct mdp_superblock_1 {
39 /* constant array information - 128 bytes */
40 __u32 magic; /* MD_SB_MAGIC: 0xa92b4efc - little endian */
41 __u32 major_version; /* 1 */
42 __u32 feature_map; /* 0 for now */
43 __u32 pad0; /* always set to 0 when writing */
44
45 __u8 set_uuid[16]; /* user-space generated. */
46 char set_name[32]; /* set and interpreted by user-space */
47
48 __u64 ctime; /* lo 40 bits are seconds, top 24 are microseconds or 0*/
49 __u32 level; /* -4 (multipath), -1 (linear), 0,1,4,5 */
50 __u32 layout; /* only for raid5 currently */
51 __u64 size; /* used size of component devices, in 512byte sectors */
52
53 __u32 chunksize; /* in 512byte sectors */
54 __u32 raid_disks;
55 __u32 bitmap_offset; /* sectors after start of superblock that bitmap starts
56 * NOTE: signed, so bitmap can be before superblock
57 * only meaningful of feature_map[0] is set.
58 */
59
60 /* These are only valid with feature bit '4' */
61 __u32 new_level; /* new level we are reshaping to */
62 __u64 reshape_position; /* next address in array-space for reshape */
63 __u32 delta_disks; /* change in number of raid_disks */
64 __u32 new_layout; /* new layout */
65 __u32 new_chunk; /* new chunk size (bytes) */
66 __u8 pad1[128-124]; /* set to 0 when written */
67
68 /* constant this-device information - 64 bytes */
69 __u64 data_offset; /* sector start of data, often 0 */
70 __u64 data_size; /* sectors in this device that can be used for data */
71 __u64 super_offset; /* sector start of this superblock */
72 __u64 recovery_offset;/* sectors before this offset (from data_offset) have been recovered */
73 __u32 dev_number; /* permanent identifier of this device - not role in raid */
74 __u32 cnt_corrected_read; /* number of read errors that were corrected by re-writing */
75 __u8 device_uuid[16]; /* user-space setable, ignored by kernel */
76 __u8 devflags; /* per-device flags. Only one defined...*/
77 #define WriteMostly1 1 /* mask for writemostly flag in above */
78 __u8 pad2[64-57]; /* set to 0 when writing */
79
80 /* array state information - 64 bytes */
81 __u64 utime; /* 40 bits second, 24 btes microseconds */
82 __u64 events; /* incremented when superblock updated */
83 __u64 resync_offset; /* data before this offset (from data_offset) known to be in sync */
84 __u32 sb_csum; /* checksum upto devs[max_dev] */
85 __u32 max_dev; /* size of devs[] array to consider */
86 __u8 pad3[64-32]; /* set to 0 when writing */
87
88 /* device state information. Indexed by dev_number.
89 * 2 bytes per device
90 * Note there are no per-device state flags. State information is rolled
91 * into the 'roles' value. If a device is spare or faulty, then it doesn't
92 * have a meaningful role.
93 */
94 __u16 dev_roles[0]; /* role in array, or 0xffff for a spare, or 0xfffe for faulty */
95 };
96
97 struct misc_dev_info {
98 __u64 device_size;
99 };
100
101 /* feature_map bits */
102 #define MD_FEATURE_BITMAP_OFFSET 1
103 #define MD_FEATURE_RECOVERY_OFFSET 2 /* recovery_offset is present and
104 * must be honoured
105 */
106 #define MD_FEATURE_RESHAPE_ACTIVE 4
107
108 #define MD_FEATURE_ALL (1|2|4)
109
110 #ifndef offsetof
111 #define offsetof(t,f) ((size_t)&(((t*)0)->f))
112 #endif
113 static unsigned int calc_sb_1_csum(struct mdp_superblock_1 * sb)
114 {
115 unsigned int disk_csum, csum;
116 unsigned long long newcsum;
117 int size = sizeof(*sb) + __le32_to_cpu(sb->max_dev)*2;
118 unsigned int *isuper = (unsigned int*)sb;
119 int i;
120
121 /* make sure I can count... */
122 if (offsetof(struct mdp_superblock_1,data_offset) != 128 ||
123 offsetof(struct mdp_superblock_1, utime) != 192 ||
124 sizeof(struct mdp_superblock_1) != 256) {
125 fprintf(stderr, "WARNING - superblock isn't sized correctly\n");
126 }
127
128 disk_csum = sb->sb_csum;
129 sb->sb_csum = 0;
130 newcsum = 0;
131 for (i=0; size>=4; size -= 4 ) {
132 newcsum += __le32_to_cpu(*isuper);
133 isuper++;
134 }
135
136 if (size == 2)
137 newcsum += __le16_to_cpu(*(unsigned short*) isuper);
138
139 csum = (newcsum & 0xffffffff) + (newcsum >> 32);
140 sb->sb_csum = disk_csum;
141 return __cpu_to_le32(csum);
142 }
143
144 #ifndef MDASSEMBLE
145 static void examine_super1(void *sbv, char *homehost)
146 {
147 struct mdp_superblock_1 *sb = sbv;
148 time_t atime;
149 int d;
150 int faulty;
151 int i;
152 char *c;
153 int l = homehost ? strlen(homehost) : 0;
154 int layout;
155
156 printf(" Magic : %08x\n", __le32_to_cpu(sb->magic));
157 printf(" Version : %02d\n", 1);
158 printf(" Feature Map : 0x%x\n", __le32_to_cpu(sb->feature_map));
159 printf(" Array UUID : ");
160 for (i=0; i<16; i++) {
161 if ((i&3)==0 && i != 0) printf(":");
162 printf("%02x", sb->set_uuid[i]);
163 }
164 printf("\n");
165 printf(" Name : %.32s", sb->set_name);
166 if (l > 0 && l < 32 &&
167 sb->set_name[l] == ':' &&
168 strncmp(sb->set_name, homehost, l) == 0)
169 printf(" (local to host %s)", homehost);
170 printf("\n");
171 atime = __le64_to_cpu(sb->ctime) & 0xFFFFFFFFFFULL;
172 printf(" Creation Time : %.24s\n", ctime(&atime));
173 c=map_num(pers, __le32_to_cpu(sb->level));
174 printf(" Raid Level : %s\n", c?c:"-unknown-");
175 printf(" Raid Devices : %d\n", __le32_to_cpu(sb->raid_disks));
176 printf("\n");
177 printf(" Used Dev Size : %llu%s\n",
178 (unsigned long long)sb->data_size,
179 human_size(sb->data_size<<9));
180 if (__le32_to_cpu(sb->level) >= 0) {
181 int ddsks=0;
182 switch(__le32_to_cpu(sb->level)) {
183 case 1: ddsks=1;break;
184 case 4:
185 case 5: ddsks = __le32_to_cpu(sb->raid_disks)-1; break;
186 case 6: ddsks = __le32_to_cpu(sb->raid_disks)-2; break;
187 case 10:
188 layout = __le32_to_cpu(sb->layout);
189 ddsks = __le32_to_cpu(sb->raid_disks)
190 / (layout&255) / ((layout>>8)&255);
191 }
192 if (ddsks)
193 printf(" Array Size : %llu%s\n",
194 ddsks*(unsigned long long)__le64_to_cpu(sb->size),
195 human_size(ddsks*__le64_to_cpu(sb->size)<<9));
196 if (sb->size != sb->data_size)
197 printf(" Used Size : %llu%s\n",
198 (unsigned long long)__le64_to_cpu(sb->size),
199 human_size(__le64_to_cpu(sb->size)<<9));
200 }
201 if (sb->data_offset)
202 printf(" Data Offset : %llu sectors\n",
203 (unsigned long long)__le64_to_cpu(sb->data_offset));
204 printf(" Super Offset : %llu sectors\n",
205 (unsigned long long)__le64_to_cpu(sb->super_offset));
206 if (__le32_to_cpu(sb->feature_map) & MD_FEATURE_RECOVERY_OFFSET)
207 printf("Recovery Offset : %llu sectors\n", (unsigned long long)__le64_to_cpu(sb->recovery_offset));
208 printf(" State : %s\n", (__le64_to_cpu(sb->resync_offset)+1)? "active":"clean");
209 printf(" Device UUID : ");
210 for (i=0; i<16; i++) {
211 if ((i&3)==0 && i != 0) printf(":");
212 printf("%02x", sb->device_uuid[i]);
213 }
214 printf("\n");
215 printf("\n");
216 if (sb->feature_map & __cpu_to_le32(MD_FEATURE_BITMAP_OFFSET)) {
217 printf("Internal Bitmap : %ld sectors from superblock\n",
218 (long)__le32_to_cpu(sb->bitmap_offset));
219 }
220 if (sb->feature_map & __le32_to_cpu(MD_FEATURE_RESHAPE_ACTIVE)) {
221 printf(" Reshape pos'n : %llu%s\n", (unsigned long long)__le64_to_cpu(sb->reshape_position)/2,
222 human_size(__le64_to_cpu(sb->reshape_position)<<9));
223 if (__le32_to_cpu(sb->delta_disks)) {
224 printf(" Delta Devices : %d", __le32_to_cpu(sb->delta_disks));
225 if (__le32_to_cpu(sb->delta_disks))
226 printf(" (%d->%d)\n",
227 __le32_to_cpu(sb->raid_disks)-__le32_to_cpu(sb->delta_disks),
228 __le32_to_cpu(sb->raid_disks));
229 else
230 printf(" (%d->%d)\n", __le32_to_cpu(sb->raid_disks),
231 __le32_to_cpu(sb->raid_disks)+__le32_to_cpu(sb->delta_disks));
232 }
233 if (__le32_to_cpu(sb->new_level) != __le32_to_cpu(sb->level)) {
234 c = map_num(pers, __le32_to_cpu(sb->new_level));
235 printf(" New Level : %s\n", c?c:"-unknown-");
236 }
237 if (__le32_to_cpu(sb->new_layout) != __le32_to_cpu(sb->layout)) {
238 if (__le32_to_cpu(sb->level) == 5) {
239 c = map_num(r5layout, __le32_to_cpu(sb->new_layout));
240 printf(" New Layout : %s\n", c?c:"-unknown-");
241 }
242 if (__le32_to_cpu(sb->level) == 10) {
243 printf(" New Layout : near=%d, %s=%d\n",
244 __le32_to_cpu(sb->new_layout)&255,
245 (__le32_to_cpu(sb->new_layout)&0x10000)?"offset":"far",
246 (__le32_to_cpu(sb->new_layout)>>8)&255);
247 }
248 }
249 if (__le32_to_cpu(sb->new_chunk) != __le32_to_cpu(sb->chunksize))
250 printf(" New Chunksize : %dK\n", __le32_to_cpu(sb->new_chunk)/2);
251 printf("\n");
252 }
253 if (sb->devflags) {
254 printf(" Flags :");
255 if (sb->devflags & WriteMostly1)
256 printf(" write-mostly");
257 printf("\n");
258 }
259
260 atime = __le64_to_cpu(sb->utime) & 0xFFFFFFFFFFULL;
261 printf(" Update Time : %.24s\n", ctime(&atime));
262
263 if (calc_sb_1_csum(sb) == sb->sb_csum)
264 printf(" Checksum : %x - correct\n", __le32_to_cpu(sb->sb_csum));
265 else
266 printf(" Checksum : %x - expected %x\n", __le32_to_cpu(sb->sb_csum),
267 __le32_to_cpu(calc_sb_1_csum(sb)));
268 printf(" Events : %llu\n", (unsigned long long)__le64_to_cpu(sb->events));
269 printf("\n");
270 if (__le32_to_cpu(sb->level) == 5) {
271 c = map_num(r5layout, __le32_to_cpu(sb->layout));
272 printf(" Layout : %s\n", c?c:"-unknown-");
273 }
274 if (__le32_to_cpu(sb->level) == 10) {
275 int lo = __le32_to_cpu(sb->layout);
276 printf(" Layout : near=%d, %s=%d\n",
277 lo&255,
278 (lo&0x10000)?"offset":"far",
279 (lo>>8)&255);
280 }
281 switch(__le32_to_cpu(sb->level)) {
282 case 0:
283 case 4:
284 case 5:
285 case 6:
286 case 10:
287 printf(" Chunk Size : %dK\n", __le32_to_cpu(sb->chunksize)/2);
288 break;
289 case -1:
290 printf(" Rounding : %dK\n", __le32_to_cpu(sb->chunksize)/2);
291 break;
292 default: break;
293 }
294 printf("\n");
295 printf(" Array Slot : %d (", __le32_to_cpu(sb->dev_number));
296 for (i= __le32_to_cpu(sb->max_dev); i> 0 ; i--)
297 if (__le16_to_cpu(sb->dev_roles[i-1]) != 0xffff)
298 break;
299 for (d=0; d < i; d++) {
300 int role = __le16_to_cpu(sb->dev_roles[d]);
301 if (d) printf(", ");
302 if (role == 0xffff) printf("empty");
303 else if(role == 0xfffe) printf("failed");
304 else printf("%d", role);
305 }
306 printf(")\n");
307 printf(" Array State : ");
308 for (d=0; d<__le32_to_cpu(sb->raid_disks); d++) {
309 int cnt = 0;
310 int me = 0;
311 int i;
312 for (i=0; i< __le32_to_cpu(sb->max_dev); i++) {
313 int role = __le16_to_cpu(sb->dev_roles[i]);
314 if (role == d) {
315 if (i == __le32_to_cpu(sb->dev_number))
316 me = 1;
317 cnt++;
318 }
319 }
320 if (cnt > 1) printf("?");
321 else if (cnt == 1 && me) printf("U");
322 else if (cnt == 1) printf("u");
323 else printf ("_");
324 }
325 faulty = 0;
326 for (i=0; i< __le32_to_cpu(sb->max_dev); i++) {
327 int role = __le16_to_cpu(sb->dev_roles[i]);
328 if (role == 0xFFFE)
329 faulty++;
330 }
331 if (faulty) printf(" %d failed", faulty);
332 printf("\n");
333 }
334
335
336 static void brief_examine_super1(void *sbv)
337 {
338 struct mdp_superblock_1 *sb = sbv;
339 int i;
340 char *nm;
341 char *c=map_num(pers, __le32_to_cpu(sb->level));
342
343 nm = strchr(sb->set_name, ':');
344 if (nm)
345 nm++;
346 else if (sb->set_name[0])
347 nm = sb->set_name;
348 else
349 nm = "??";
350
351 printf("ARRAY /dev/md/%s level=%s metadata=1 num-devices=%d UUID=",
352 nm,
353 c?c:"-unknown-", __le32_to_cpu(sb->raid_disks));
354 for (i=0; i<16; i++) {
355 if ((i&3)==0 && i != 0) printf(":");
356 printf("%02x", sb->set_uuid[i]);
357 }
358 if (sb->set_name[0])
359 printf(" name=%.32s", sb->set_name);
360 printf("\n");
361 }
362
363 static void detail_super1(void *sbv, char *homehost)
364 {
365 struct mdp_superblock_1 *sb = sbv;
366 int i;
367 int l = homehost ? strlen(homehost) : 0;
368
369 printf(" Name : %.32s", sb->set_name);
370 if (l > 0 && l < 32 &&
371 sb->set_name[l] == ':' &&
372 strncmp(sb->set_name, homehost, l) == 0)
373 printf(" (local to host %s)", homehost);
374 printf("\n UUID : ");
375 for (i=0; i<16; i++) {
376 if ((i&3)==0 && i != 0) printf(":");
377 printf("%02x", sb->set_uuid[i]);
378 }
379 printf("\n Events : %llu\n\n", (unsigned long long)__le64_to_cpu(sb->events));
380 }
381
382 static void brief_detail_super1(void *sbv)
383 {
384 struct mdp_superblock_1 *sb = sbv;
385 int i;
386
387 if (sb->set_name[0])
388 printf(" name=%.32s", sb->set_name);
389 printf(" UUID=");
390 for (i=0; i<16; i++) {
391 if ((i&3)==0 && i != 0) printf(":");
392 printf("%02x", sb->set_uuid[i]);
393 }
394 }
395
396 #endif
397
398 static int match_home1(void *sbv, char *homehost)
399 {
400 struct mdp_superblock_1 *sb = sbv;
401 int l = homehost ? strlen(homehost) : 0;
402
403 return (l > 0 && l < 32 &&
404 sb->set_name[l] == ':' &&
405 strncmp(sb->set_name, homehost, l) == 0);
406 }
407
408 static void uuid_from_super1(int uuid[4], void * sbv)
409 {
410 struct mdp_superblock_1 *super = sbv;
411 char *cuuid = (char*)uuid;
412 int i;
413 for (i=0; i<16; i++)
414 cuuid[i] = super->set_uuid[i];
415 }
416
417 static void getinfo_super1(struct mdinfo *info, void *sbv)
418 {
419 struct mdp_superblock_1 *sb = sbv;
420 int working = 0;
421 int i;
422 int role;
423
424 info->array.major_version = 1;
425 info->array.minor_version = __le32_to_cpu(sb->feature_map);
426 info->array.patch_version = 0;
427 info->array.raid_disks = __le32_to_cpu(sb->raid_disks);
428 info->array.level = __le32_to_cpu(sb->level);
429 info->array.layout = __le32_to_cpu(sb->layout);
430 info->array.md_minor = -1;
431 info->array.ctime = __le64_to_cpu(sb->ctime);
432 info->array.utime = __le64_to_cpu(sb->utime);
433 info->array.chunk_size = __le32_to_cpu(sb->chunksize)*512;
434 info->array.state = (__le64_to_cpu(sb->resync_offset)+1) ? 0 : 1;
435
436 info->data_offset = __le64_to_cpu(sb->data_offset);
437 info->component_size = __le64_to_cpu(sb->size);
438
439 info->disk.major = 0;
440 info->disk.minor = 0;
441 info->disk.number = __le32_to_cpu(sb->dev_number);
442 if (__le32_to_cpu(sb->dev_number) >= __le32_to_cpu(sb->max_dev) ||
443 __le32_to_cpu(sb->max_dev) > 512)
444 role = 0xfffe;
445 else
446 role = __le16_to_cpu(sb->dev_roles[__le32_to_cpu(sb->dev_number)]);
447
448 info->disk.raid_disk = -1;
449 switch(role) {
450 case 0xFFFF:
451 info->disk.state = 2; /* spare: ACTIVE, not sync, not faulty */
452 break;
453 case 0xFFFE:
454 info->disk.state = 1; /* faulty */
455 break;
456 default:
457 info->disk.state = 6; /* active and in sync */
458 info->disk.raid_disk = role;
459 }
460 info->events = __le64_to_cpu(sb->events);
461
462 memcpy(info->uuid, sb->set_uuid, 16);
463
464 strncpy(info->name, sb->set_name, 32);
465 info->name[32] = 0;
466
467 if (sb->feature_map & __le32_to_cpu(MD_FEATURE_RESHAPE_ACTIVE)) {
468 info->reshape_active = 1;
469 info->reshape_progress = __le64_to_cpu(sb->reshape_position);
470 info->new_level = __le32_to_cpu(sb->new_level);
471 info->delta_disks = __le32_to_cpu(sb->delta_disks);
472 info->new_layout = __le32_to_cpu(sb->new_layout);
473 info->new_chunk = __le32_to_cpu(sb->new_chunk)<<9;
474 } else
475 info->reshape_active = 0;
476
477 for (i=0; i< __le32_to_cpu(sb->max_dev); i++) {
478 role = __le16_to_cpu(sb->dev_roles[i]);
479 if (/*role == 0xFFFF || */role < info->array.raid_disks)
480 working++;
481 }
482
483 info->array.working_disks = working;
484 }
485
486 static int update_super1(struct mdinfo *info, void *sbv, char *update,
487 char *devname, int verbose,
488 int uuid_set, char *homehost)
489 {
490 /* NOTE: for 'assemble' and 'force' we need to return non-zero if any change was made.
491 * For others, the return value is ignored.
492 */
493 int rv = 0;
494 struct mdp_superblock_1 *sb = sbv;
495
496 if (strcmp(update, "force-one")==0) {
497 /* Not enough devices for a working array,
498 * so bring this one up-to-date
499 */
500 if (sb->events != __cpu_to_le64(info->events))
501 rv = 1;
502 sb->events = __cpu_to_le64(info->events);
503 }
504 if (strcmp(update, "force-array")==0) {
505 /* Degraded array and 'force' requests to
506 * maybe need to mark it 'clean'.
507 */
508 switch(__le32_to_cpu(sb->level)) {
509 case 5: case 4: case 6:
510 /* need to force clean */
511 if (sb->resync_offset != ~0ULL)
512 rv = 1;
513 sb->resync_offset = ~0ULL;
514 }
515 }
516 if (strcmp(update, "assemble")==0) {
517 int d = info->disk.number;
518 int want;
519 if (info->disk.state == 6)
520 want = __cpu_to_le32(info->disk.raid_disk);
521 else
522 want = 0xFFFF;
523 if (sb->dev_roles[d] != want) {
524 sb->dev_roles[d] = want;
525 rv = 1;
526 }
527 }
528 if (strcmp(update, "grow") == 0) {
529 sb->raid_disks = __cpu_to_le32(info->array.raid_disks);
530 /* As we are just adding a spare, there is no need to
531 * make any change to the dev_roles array
532 */
533 }
534 if (strcmp(update, "resync") == 0) {
535 /* make sure resync happens */
536 sb->resync_offset = 0ULL;
537 }
538 if (strcmp(update, "uuid") == 0) {
539 memcpy(sb->set_uuid, info->uuid, 16);
540 if (__le32_to_cpu(sb->feature_map)&MD_FEATURE_BITMAP_OFFSET) {
541 struct bitmap_super_s *bm;
542 bm = (struct bitmap_super_s*)(sbv+1024);
543 memcpy(bm->uuid, info->uuid, 16);
544 }
545 }
546 if (strcmp(update, "homehost") == 0 &&
547 homehost) {
548 char *c;
549 update = "name";
550 c = strchr(sb->set_name, ':');
551 if (c)
552 strncpy(info->name, c+1, 31 - (c-sb->set_name));
553 else
554 strncpy(info->name, sb->set_name, 32);
555 info->name[32] = 0;
556 }
557 if (strcmp(update, "name") == 0) {
558 if (info->name[0] == 0)
559 sprintf(info->name, "%d", info->array.md_minor);
560 memset(sb->set_name, 0, sizeof(sb->set_name));
561 if (homehost &&
562 strchr(info->name, ':') == NULL &&
563 strlen(homehost)+1+strlen(info->name) < 32) {
564 strcpy(sb->set_name, homehost);
565 strcat(sb->set_name, ":");
566 strcat(sb->set_name, info->name);
567 } else
568 strcpy(sb->set_name, info->name);
569 }
570 if (strcmp(update, "devicesize") == 0 &&
571 __le64_to_cpu(sb->super_offset) <
572 __le64_to_cpu(sb->data_offset)) {
573 /* set data_size to device size less data_offset */
574 struct misc_dev_info *misc = (struct misc_dev_info*)
575 (sbv + 1024 + sizeof(struct bitmap_super_s));
576 printf("Size was %llu\n", __le64_to_cpu(sb->data_size));
577 sb->data_size = __cpu_to_le64(
578 misc->device_size - __le64_to_cpu(sb->data_offset));
579 printf("Size is %llu\n", __le64_to_cpu(sb->data_size));
580 }
581 if (strcmp(update, "_reshape_progress")==0)
582 sb->reshape_position = __cpu_to_le64(info->reshape_progress);
583
584 sb->sb_csum = calc_sb_1_csum(sb);
585 return rv;
586 }
587
588 static int init_super1(struct supertype *st, void **sbp, mdu_array_info_t *info,
589 unsigned long long size, char *name, char *homehost)
590 {
591 struct mdp_superblock_1 *sb = malloc(1024 + sizeof(bitmap_super_t) +
592 sizeof(struct misc_dev_info));
593 int spares;
594 int rfd;
595 char defname[10];
596 memset(sb, 0, 1024);
597
598 if (info->major_version == -1) {
599 /* zeroing superblock */
600 *sbp = sb;
601 return 0;
602 }
603
604 spares = info->working_disks - info->active_disks;
605 if (info->raid_disks + spares > 384) {
606 fprintf(stderr, Name ": too many devices requested: %d+%d > %d\n",
607 info->raid_disks , spares, 384);
608 return 0;
609 }
610
611 sb->magic = __cpu_to_le32(MD_SB_MAGIC);
612 sb->major_version = __cpu_to_le32(1);
613 sb->feature_map = 0;
614 sb->pad0 = 0;
615
616 if ((rfd = open("/dev/urandom", O_RDONLY)) < 0 ||
617 read(rfd, sb->set_uuid, 16) != 16) {
618 *(__u32*)(sb->set_uuid) = random();
619 *(__u32*)(sb->set_uuid+4) = random();
620 *(__u32*)(sb->set_uuid+8) = random();
621 *(__u32*)(sb->set_uuid+12) = random();
622 }
623 if (rfd >= 0) close(rfd);
624
625 if (name == NULL || *name == 0) {
626 sprintf(defname, "%d", info->md_minor);
627 name = defname;
628 }
629 memset(sb->set_name, 0, 32);
630 if (homehost &&
631 strchr(name, ':')== NULL &&
632 strlen(homehost)+1+strlen(name) < 32) {
633 strcpy(sb->set_name, homehost);
634 strcat(sb->set_name, ":");
635 strcat(sb->set_name, name);
636 } else
637 strcpy(sb->set_name, name);
638
639 sb->ctime = __cpu_to_le64((unsigned long long)time(0));
640 sb->level = __cpu_to_le32(info->level);
641 sb->layout = __cpu_to_le32(info->layout);
642 sb->size = __cpu_to_le64(size*2ULL);
643 sb->chunksize = __cpu_to_le32(info->chunk_size>>9);
644 sb->raid_disks = __cpu_to_le32(info->raid_disks);
645
646 sb->data_offset = __cpu_to_le64(0);
647 sb->data_size = __cpu_to_le64(0);
648 sb->super_offset = __cpu_to_le64(0);
649 sb->recovery_offset = __cpu_to_le64(0);
650
651 sb->utime = sb->ctime;
652 sb->events = __cpu_to_le64(1);
653 if (info->state & (1<<MD_SB_CLEAN))
654 sb->resync_offset = ~0ULL;
655 else
656 sb->resync_offset = 0;
657 sb->max_dev = __cpu_to_le32((1024- sizeof(struct mdp_superblock_1))/
658 sizeof(sb->dev_roles[0]));
659 memset(sb->pad3, 0, sizeof(sb->pad3));
660
661 memset(sb->dev_roles, 0xff, 1024 - sizeof(struct mdp_superblock_1));
662
663 *sbp = sb;
664 return 1;
665 }
666
667 /* Add a device to the superblock being created */
668 static void add_to_super1(void *sbv, mdu_disk_info_t *dk)
669 {
670 struct mdp_superblock_1 *sb = sbv;
671 __u16 *rp = sb->dev_roles + dk->number;
672 if ((dk->state & 6) == 6) /* active, sync */
673 *rp = __cpu_to_le16(dk->raid_disk);
674 else if ((dk->state & ~2) == 0) /* active or idle -> spare */
675 *rp = 0xffff;
676 else
677 *rp = 0xfffe;
678 }
679
680 static void locate_bitmap1(struct supertype *st, int fd, void *sbv);
681
682 static int store_super1(struct supertype *st, int fd, void *sbv)
683 {
684 struct mdp_superblock_1 *sb = sbv;
685 unsigned long long sb_offset;
686 int sbsize;
687 unsigned long size;
688 unsigned long long dsize;
689
690 #ifdef BLKGETSIZE64
691 if (ioctl(fd, BLKGETSIZE64, &dsize) != 0)
692 #endif
693 {
694 if (ioctl(fd, BLKGETSIZE, &size))
695 return 1;
696 else
697 dsize = (unsigned long long)size;
698 } else
699 dsize >>= 9;
700
701 if (dsize < 24)
702 return 2;
703
704 /*
705 * Calculate the position of the superblock.
706 * It is always aligned to a 4K boundary and
707 * depending on minor_version, it can be:
708 * 0: At least 8K, but less than 12K, from end of device
709 * 1: At start of device
710 * 2: 4K from start of device.
711 */
712 switch(st->minor_version) {
713 case 0:
714 sb_offset = dsize;
715 sb_offset -= 8*2;
716 sb_offset &= ~(4*2-1);
717 break;
718 case 1:
719 sb_offset = 0;
720 break;
721 case 2:
722 sb_offset = 4*2;
723 break;
724 default:
725 return -EINVAL;
726 }
727
728
729
730 if (sb_offset != __le64_to_cpu(sb->super_offset) &&
731 0 != __le64_to_cpu(sb->super_offset)
732 ) {
733 fprintf(stderr, Name ": internal error - sb_offset is wrong\n");
734 abort();
735 }
736
737 if (lseek64(fd, sb_offset << 9, 0)< 0LL)
738 return 3;
739
740 sbsize = sizeof(*sb) + 2 * __le32_to_cpu(sb->max_dev);
741
742 if (write(fd, sb, sbsize) != sbsize)
743 return 4;
744
745 if (sb->feature_map & __cpu_to_le32(MD_FEATURE_BITMAP_OFFSET)) {
746 struct bitmap_super_s *bm = (struct bitmap_super_s*)
747 (((char*)sb)+1024);
748 if (__le32_to_cpu(bm->magic) == BITMAP_MAGIC) {
749 locate_bitmap1(st, fd, sbv);
750 if (write(fd, bm, sizeof(*bm)) != sizeof(*bm))
751 return 5;
752 }
753 }
754 fsync(fd);
755 return 0;
756 }
757
758 static int load_super1(struct supertype *st, int fd, void **sbp, char *devname);
759
760 static int write_init_super1(struct supertype *st, void *sbv,
761 mdu_disk_info_t *dinfo, char *devname)
762 {
763 struct mdp_superblock_1 *sb = sbv;
764 void *refsbv = NULL;
765 int fd = open(devname, O_RDWR | O_EXCL);
766 int rfd;
767 int rv;
768 int bm_space;
769
770 unsigned long space;
771 unsigned long long dsize, array_size;
772 long long sb_offset;
773
774
775 if (fd < 0) {
776 fprintf(stderr, Name ": Failed to open %s to write superblock\n",
777 devname);
778 return -1;
779 }
780
781 sb->dev_number = __cpu_to_le32(dinfo->number);
782 if (dinfo->state & (1<<MD_DISK_WRITEMOSTLY))
783 sb->devflags |= __cpu_to_le32(WriteMostly1);
784
785 if ((rfd = open("/dev/urandom", O_RDONLY)) < 0 ||
786 read(rfd, sb->device_uuid, 16) != 16) {
787 *(__u32*)(sb->device_uuid) = random();
788 *(__u32*)(sb->device_uuid+4) = random();
789 *(__u32*)(sb->device_uuid+8) = random();
790 *(__u32*)(sb->device_uuid+12) = random();
791 }
792 if (rfd >= 0) close(rfd);
793 sb->events = 0;
794
795 if (load_super1(st, fd, &refsbv, NULL)==0) {
796 struct mdp_superblock_1 *refsb = refsbv;
797
798 memcpy(sb->device_uuid, refsb->device_uuid, 16);
799 if (memcmp(sb->set_uuid, refsb->set_uuid, 16)==0) {
800 /* same array, so preserve events and dev_number */
801 sb->events = refsb->events;
802 /* bugs in 2.6.17 and earlier mean the dev_number
803 * chosen in Manage must be preserved
804 */
805 if (get_linux_version() >= 2006018)
806 sb->dev_number = refsb->dev_number;
807 }
808 free(refsb);
809 }
810
811 #ifdef BLKGETSIZE64
812 if (ioctl(fd, BLKGETSIZE64, &dsize) != 0)
813 #endif
814 {
815 unsigned long size;
816 if (ioctl(fd, BLKGETSIZE, &size))
817 return 1;
818 else
819 dsize = size;
820 } else
821 dsize >>= 9;
822
823 if (dsize < 24) {
824 close(fd);
825 return 2;
826 }
827
828
829 /*
830 * Calculate the position of the superblock.
831 * It is always aligned to a 4K boundary and
832 * depending on minor_version, it can be:
833 * 0: At least 8K, but less than 12K, from end of device
834 * 1: At start of device
835 * 2: 4K from start of device.
836 * Depending on the array size, we might leave extra space
837 * for a bitmap.
838 */
839 array_size = __le64_to_cpu(sb->size);
840 /* work out how much space we left of a bitmap */
841 if (array_size >= 200*1024*1024*2)
842 bm_space = 128*2;
843 else if (array_size > 8*1024*1024*2)
844 bm_space = 64*2;
845 else
846 bm_space = 0;
847
848 switch(st->minor_version) {
849 case 0:
850 sb_offset = dsize;
851 sb_offset -= 8*2;
852 sb_offset &= ~(4*2-1);
853 sb->super_offset = __cpu_to_le64(sb_offset);
854 sb->data_offset = __cpu_to_le64(0);
855 sb->data_size = __cpu_to_le64(sb_offset - bm_space);
856 break;
857 case 1:
858 sb->super_offset = __cpu_to_le64(0);
859 sb->data_offset = __cpu_to_le64(bm_space + 4*2);
860 sb->data_size = __cpu_to_le64(dsize - bm_space - 4*2);
861 break;
862 case 2:
863 sb_offset = 4*2;
864 if (dsize - 4*2 - 64*2 >= array_size && array_size > 8*1024*1024*2)
865 space = 64*2;
866 else
867 space = 4*2;
868 sb->super_offset = __cpu_to_le64(4*2);
869 sb->data_offset = __cpu_to_le64(4*2 + 4*2 + bm_space);
870 sb->data_size = __cpu_to_le64(dsize - 4*2 - 4*2 - bm_space );
871 break;
872 default:
873 return -EINVAL;
874 }
875
876
877 sb->sb_csum = calc_sb_1_csum(sb);
878 rv = store_super1(st, fd, sb);
879 if (rv)
880 fprintf(stderr, Name ": failed to write superblock to %s\n", devname);
881
882 if (rv == 0 && (__le32_to_cpu(sb->feature_map) & 1))
883 rv = st->ss->write_bitmap(st, fd, sbv);
884 close(fd);
885 return rv;
886 }
887
888 static int compare_super1(void **firstp, void *secondv)
889 {
890 /*
891 * return:
892 * 0 same, or first was empty, and second was copied
893 * 1 second had wrong number
894 * 2 wrong uuid
895 * 3 wrong other info
896 */
897 struct mdp_superblock_1 *first = *firstp;
898 struct mdp_superblock_1 *second = secondv;
899
900 if (second->magic != __cpu_to_le32(MD_SB_MAGIC))
901 return 1;
902 if (second->major_version != __cpu_to_le32(1))
903 return 1;
904
905 if (!first) {
906 first = malloc(1024+sizeof(bitmap_super_t) +
907 sizeof(struct misc_dev_info));
908 memcpy(first, second, 1024+sizeof(bitmap_super_t) +
909 sizeof(struct misc_dev_info));
910 *firstp = first;
911 return 0;
912 }
913 if (memcmp(first->set_uuid, second->set_uuid, 16)!= 0)
914 return 2;
915
916 if (first->ctime != second->ctime ||
917 first->level != second->level ||
918 first->layout != second->layout ||
919 first->size != second->size ||
920 first->chunksize != second->chunksize ||
921 first->raid_disks != second->raid_disks)
922 return 3;
923 return 0;
924 }
925
926 static int load_super1(struct supertype *st, int fd, void **sbp, char *devname)
927 {
928 unsigned long size;
929 unsigned long long dsize;
930 unsigned long long sb_offset;
931 struct mdp_superblock_1 *super;
932 int uuid[4];
933 struct bitmap_super_s *bsb;
934 struct misc_dev_info *misc;
935
936
937 if (st->ss == NULL) {
938 int bestvers = -1;
939 __u64 bestctime = 0;
940 /* guess... choose latest ctime */
941 st->ss = &super1;
942 for (st->minor_version = 0; st->minor_version <= 2 ; st->minor_version++) {
943 switch(load_super1(st, fd, sbp, devname)) {
944 case 0: super = *sbp;
945 if (bestvers == -1 ||
946 bestctime < __le64_to_cpu(super->ctime)) {
947 bestvers = st->minor_version;
948 bestctime = __le64_to_cpu(super->ctime);
949 }
950 free(super);
951 *sbp = NULL;
952 break;
953 case 1: st->ss = NULL; return 1; /*bad device */
954 case 2: break; /* bad, try next */
955 }
956 }
957 if (bestvers != -1) {
958 int rv;
959 st->minor_version = bestvers;
960 st->ss = &super1;
961 st->max_devs = 384;
962 rv = load_super1(st, fd, sbp, devname);
963 if (rv) st->ss = NULL;
964 return rv;
965 }
966 st->ss = NULL;
967 return 2;
968 }
969 #ifdef BLKGETSIZE64
970 if (ioctl(fd, BLKGETSIZE64, &dsize) != 0)
971 #endif
972 {
973 if (ioctl(fd, BLKGETSIZE, &size)) {
974 if (devname)
975 fprintf(stderr, Name ": cannot find device size for %s: %s\n",
976 devname, strerror(errno));
977 return 1;
978 }
979 dsize = size;
980 } else
981 dsize >>= 9;
982
983 if (dsize < 24) {
984 if (devname)
985 fprintf(stderr, Name ": %s is too small for md: size is %llu sectors.\n",
986 devname, dsize);
987 return 1;
988 }
989
990 /*
991 * Calculate the position of the superblock.
992 * It is always aligned to a 4K boundary and
993 * depending on minor_version, it can be:
994 * 0: At least 8K, but less than 12K, from end of device
995 * 1: At start of device
996 * 2: 4K from start of device.
997 */
998 switch(st->minor_version) {
999 case 0:
1000 sb_offset = dsize;
1001 sb_offset -= 8*2;
1002 sb_offset &= ~(4*2-1);
1003 break;
1004 case 1:
1005 sb_offset = 0;
1006 break;
1007 case 2:
1008 sb_offset = 4*2;
1009 break;
1010 default:
1011 return -EINVAL;
1012 }
1013
1014 ioctl(fd, BLKFLSBUF, 0); /* make sure we read current data */
1015
1016
1017 if (lseek64(fd, sb_offset << 9, 0)< 0LL) {
1018 if (devname)
1019 fprintf(stderr, Name ": Cannot seek to superblock on %s: %s\n",
1020 devname, strerror(errno));
1021 return 1;
1022 }
1023
1024 super = malloc(1024 + sizeof(bitmap_super_t) +
1025 sizeof(struct misc_dev_info));
1026
1027 if (read(fd, super, 1024) != 1024) {
1028 if (devname)
1029 fprintf(stderr, Name ": Cannot read superblock on %s\n",
1030 devname);
1031 free(super);
1032 return 1;
1033 }
1034
1035 if (__le32_to_cpu(super->magic) != MD_SB_MAGIC) {
1036 if (devname)
1037 fprintf(stderr, Name ": No super block found on %s (Expected magic %08x, got %08x)\n",
1038 devname, MD_SB_MAGIC, __le32_to_cpu(super->magic));
1039 free(super);
1040 return 2;
1041 }
1042
1043 if (__le32_to_cpu(super->major_version) != 1) {
1044 if (devname)
1045 fprintf(stderr, Name ": Cannot interpret superblock on %s - version is %d\n",
1046 devname, __le32_to_cpu(super->major_version));
1047 free(super);
1048 return 2;
1049 }
1050 if (__le64_to_cpu(super->super_offset) != sb_offset) {
1051 if (devname)
1052 fprintf(stderr, Name ": No superblock found on %s (super_offset is wrong)\n",
1053 devname);
1054 free(super);
1055 return 2;
1056 }
1057 *sbp = super;
1058
1059 bsb = (struct bitmap_super_s *)(((char*)super)+1024);
1060
1061 misc = (struct misc_dev_info*) (bsb+1);
1062 misc->device_size = dsize;
1063
1064 /* Now check on the bitmap superblock */
1065 if ((__le32_to_cpu(super->feature_map)&MD_FEATURE_BITMAP_OFFSET) == 0)
1066 return 0;
1067 /* Read the bitmap superblock and make sure it looks
1068 * valid. If it doesn't clear the bit. An --assemble --force
1069 * should get that written out.
1070 */
1071 locate_bitmap1(st, fd, super);
1072 if (read(fd, ((char*)super)+1024, sizeof(struct bitmap_super_s))
1073 != sizeof(struct bitmap_super_s))
1074 goto no_bitmap;
1075
1076 uuid_from_super1(uuid, super);
1077 if (__le32_to_cpu(bsb->magic) != BITMAP_MAGIC ||
1078 memcmp(bsb->uuid, uuid, 16) != 0)
1079 goto no_bitmap;
1080 return 0;
1081
1082 no_bitmap:
1083 super->feature_map = __cpu_to_le32(__le32_to_cpu(super->feature_map) & ~1);
1084 return 0;
1085 }
1086
1087
1088 static struct supertype *match_metadata_desc1(char *arg)
1089 {
1090 struct supertype *st = malloc(sizeof(*st));
1091 if (!st) return st;
1092
1093 st->ss = &super1;
1094 st->max_devs = 384;
1095 if (strcmp(arg, "1") == 0 ||
1096 strcmp(arg, "1.0") == 0 ||
1097 strcmp(arg, "default/large") == 0) {
1098 st->minor_version = 0;
1099 return st;
1100 }
1101 if (strcmp(arg, "1.1") == 0) {
1102 st->minor_version = 1;
1103 return st;
1104 }
1105 if (strcmp(arg, "1.2") == 0) {
1106 st->minor_version = 2;
1107 return st;
1108 }
1109
1110 free(st);
1111 return NULL;
1112 }
1113
1114 /* find available size on device with this devsize, using
1115 * superblock type st, and reserving 'reserve' sectors for
1116 * a possible bitmap
1117 */
1118 static __u64 avail_size1(struct supertype *st, __u64 devsize)
1119 {
1120 if (devsize < 24)
1121 return 0;
1122
1123 /* if the device is bigger than 8Gig, save 64k for bitmap usage,
1124 * if bigger than 200Gig, save 128k
1125 */
1126 if (devsize-64*2 >= 200*1024*1024*2)
1127 devsize -= 128*2;
1128 else if (devsize >= 8*1024*1024*2)
1129 devsize -= 64*2;
1130
1131 switch(st->minor_version) {
1132 case 0:
1133 /* at end */
1134 return ((devsize - 8*2 ) & ~(4*2-1));
1135 case 1:
1136 /* at start, 4K for superblock and possible bitmap */
1137 return devsize - 4*2;
1138 case 2:
1139 /* 4k from start, 4K for superblock and possible bitmap */
1140 return devsize - (4+4)*2;
1141 }
1142 return 0;
1143 }
1144
1145 static int
1146 add_internal_bitmap1(struct supertype *st, void *sbv,
1147 int *chunkp, int delay, int write_behind,
1148 unsigned long long size,
1149 int may_change, int major)
1150 {
1151 /*
1152 * If not may_change, then this is a 'Grow', and the bitmap
1153 * must fit after the superblock.
1154 * If may_change, then this is create, and we can put the bitmap
1155 * before the superblock if we like, or may move the start.
1156 * If !may_change, the bitmap MUST live at offset of 1K, until
1157 * we get a sysfs interface.
1158 *
1159 * size is in sectors, chunk is in bytes !!!
1160 */
1161
1162 unsigned long long bits;
1163 unsigned long long max_bits;
1164 unsigned long long min_chunk;
1165 long offset;
1166 int chunk = *chunkp;
1167 int room = 0;
1168 struct mdp_superblock_1 *sb = sbv;
1169 bitmap_super_t *bms = (bitmap_super_t*)(((char*)sb) + 1024);
1170
1171 switch(st->minor_version) {
1172 case 0:
1173 /* either 3K after the superblock, or some amount of space
1174 * before.
1175 */
1176 if (may_change) {
1177 /* We are creating array, so we *know* how much room has
1178 * been left.
1179 */
1180 offset = 0;
1181 if (__le64_to_cpu(sb->size) >= 200*1024*1024*2)
1182 room = 128*2;
1183 else if (__le64_to_cpu(sb->size) > 8*1024*1024*2)
1184 room = 64*2;
1185 else {
1186 room = 3*2;
1187 offset = 2;
1188 }
1189 } else {
1190 room = __le64_to_cpu(sb->super_offset)
1191 - __le64_to_cpu(sb->data_offset)
1192 - __le64_to_cpu(sb->data_size);
1193 /* remove '1 ||' when we can set offset via sysfs */
1194 if (1 || (room < 3*2 &&
1195 __le32_to_cpu(sb->max_dev) <= 384)) {
1196 room = 3*2;
1197 offset = 1*2;
1198 } else {
1199 offset = 0; /* means movable offset */
1200 }
1201 }
1202 break;
1203 case 1:
1204 case 2: /* between superblock and data */
1205 if (may_change) {
1206 offset = 4*2;
1207 if (__le64_to_cpu(sb->size) >= 200*1024*1024*2)
1208 room = 128*2;
1209 else if (__le64_to_cpu(sb->size) > 8*1024*1024*2)
1210 room = 64*2;
1211 else
1212 room = 3*2;
1213 } else {
1214 room = __le64_to_cpu(sb->data_offset)
1215 - __le64_to_cpu(sb->super_offset);
1216 if (1 || __le32_to_cpu(sb->max_dev) <= 384) {
1217 room -= 2;
1218 offset = 2;
1219 } else {
1220 room -= 4*2;
1221 offset = 4*2;
1222 }
1223 }
1224 break;
1225 }
1226
1227 if (chunk == UnSet && room > 128*2)
1228 /* Limit to 128K of bitmap when chunk size not requested */
1229 room = 128*2;
1230
1231 max_bits = (room * 512 - sizeof(bitmap_super_t)) * 8;
1232
1233 min_chunk = 4096; /* sub-page chunks don't work yet.. */
1234 bits = (size*512)/min_chunk +1;
1235 while (bits > max_bits) {
1236 min_chunk *= 2;
1237 bits = (bits+1)/2;
1238 }
1239 if (chunk == UnSet)
1240 chunk = min_chunk;
1241 else if (chunk < min_chunk)
1242 return 0; /* chunk size too small */
1243 if (chunk == 0) /* rounding problem */
1244 return 0;
1245
1246 if (offset == 0) {
1247 bits = (size*512) / chunk + 1;
1248 room = ((bits+7)/8 + sizeof(bitmap_super_t) +511)/512;
1249 offset = -room;
1250 }
1251
1252 sb->bitmap_offset = __cpu_to_le32(offset);
1253
1254 sb->feature_map = __cpu_to_le32(__le32_to_cpu(sb->feature_map) | 1);
1255 memset(bms, 0, sizeof(*bms));
1256 bms->magic = __cpu_to_le32(BITMAP_MAGIC);
1257 bms->version = __cpu_to_le32(major);
1258 uuid_from_super1((int*)bms->uuid, sb);
1259 bms->chunksize = __cpu_to_le32(chunk);
1260 bms->daemon_sleep = __cpu_to_le32(delay);
1261 bms->sync_size = __cpu_to_le64(size);
1262 bms->write_behind = __cpu_to_le32(write_behind);
1263
1264 *chunkp = chunk;
1265 return 1;
1266 }
1267
1268
1269 static void locate_bitmap1(struct supertype *st, int fd, void *sbv)
1270 {
1271 unsigned long long offset;
1272 struct mdp_superblock_1 *sb;
1273 int mustfree = 0;
1274
1275 if (!sbv) {
1276 if (st->ss->load_super(st, fd, &sbv, NULL))
1277 return; /* no error I hope... */
1278 mustfree = 1;
1279 }
1280 sb = sbv;
1281
1282 offset = __le64_to_cpu(sb->super_offset);
1283 offset += (long) __le32_to_cpu(sb->bitmap_offset);
1284 if (mustfree)
1285 free(sb);
1286 lseek64(fd, offset<<9, 0);
1287 }
1288
1289 static int write_bitmap1(struct supertype *st, int fd, void *sbv)
1290 {
1291 struct mdp_superblock_1 *sb = sbv;
1292 bitmap_super_t *bms = (bitmap_super_t*)(((char*)sb)+1024);
1293 int rv = 0;
1294
1295 int towrite, n;
1296 char buf[4096];
1297
1298 locate_bitmap1(st, fd, sbv);
1299
1300 if (write(fd, ((char*)sb)+1024, sizeof(bitmap_super_t)) !=
1301 sizeof(bitmap_super_t))
1302 return -2;
1303 towrite = __le64_to_cpu(bms->sync_size) / (__le32_to_cpu(bms->chunksize)>>9);
1304 towrite = (towrite+7) >> 3; /* bits to bytes */
1305 memset(buf, 0xff, sizeof(buf));
1306 while (towrite > 0) {
1307 n = towrite;
1308 if (n > sizeof(buf))
1309 n = sizeof(buf);
1310 n = write(fd, buf, n);
1311 if (n > 0)
1312 towrite -= n;
1313 else
1314 break;
1315 }
1316 fsync(fd);
1317 if (towrite)
1318 rv = -2;
1319
1320 return rv;
1321 }
1322
1323 struct superswitch super1 = {
1324 #ifndef MDASSEMBLE
1325 .examine_super = examine_super1,
1326 .brief_examine_super = brief_examine_super1,
1327 .detail_super = detail_super1,
1328 .brief_detail_super = brief_detail_super1,
1329 #endif
1330 .match_home = match_home1,
1331 .uuid_from_super = uuid_from_super1,
1332 .getinfo_super = getinfo_super1,
1333 .update_super = update_super1,
1334 .init_super = init_super1,
1335 .add_to_super = add_to_super1,
1336 .store_super = store_super1,
1337 .write_init_super = write_init_super1,
1338 .compare_super = compare_super1,
1339 .load_super = load_super1,
1340 .match_metadata_desc = match_metadata_desc1,
1341 .avail_size = avail_size1,
1342 .add_internal_bitmap = add_internal_bitmap1,
1343 .locate_bitmap = locate_bitmap1,
1344 .write_bitmap = write_bitmap1,
1345 .major = 1,
1346 #if __BYTE_ORDER == BIG_ENDIAN
1347 .swapuuid = 0,
1348 #else
1349 .swapuuid = 1,
1350 #endif
1351 };