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9d09e663 N |
1 | /* |
2 | * Copyright (C) 2010-2011 Neil Brown | |
6e53636f | 3 | * Copyright (C) 2010-2017 Red Hat, Inc. All rights reserved. |
9d09e663 N |
4 | * |
5 | * This file is released under the GPL. | |
6 | */ | |
7 | ||
8 | #include <linux/slab.h> | |
056075c7 | 9 | #include <linux/module.h> |
9d09e663 N |
10 | |
11 | #include "md.h" | |
32737279 | 12 | #include "raid1.h" |
9d09e663 | 13 | #include "raid5.h" |
63f33b8d | 14 | #include "raid10.h" |
935fe098 | 15 | #include "md-bitmap.h" |
9d09e663 | 16 | |
3e8dbb7f AK |
17 | #include <linux/device-mapper.h> |
18 | ||
9d09e663 | 19 | #define DM_MSG_PREFIX "raid" |
92c83d79 | 20 | #define MAX_RAID_DEVICES 253 /* md-raid kernel limit */ |
9d09e663 | 21 | |
40ba37e5 HM |
22 | /* |
23 | * Minimum sectors of free reshape space per raid device | |
24 | */ | |
25 | #define MIN_FREE_RESHAPE_SPACE to_sector(4*4096) | |
26 | ||
63c32ed4 HM |
27 | /* |
28 | * Minimum journal space 4 MiB in sectors. | |
29 | */ | |
30 | #define MIN_RAID456_JOURNAL_SPACE (4*2048) | |
31 | ||
11e47232 HM |
32 | /* Global list of all raid sets */ |
33 | LIST_HEAD(raid_sets); | |
34 | ||
48cf06bc HM |
35 | static bool devices_handle_discard_safely = false; |
36 | ||
9d09e663 | 37 | /* |
b12d437b JB |
38 | * The following flags are used by dm-raid.c to set up the array state. |
39 | * They must be cleared before md_run is called. | |
9d09e663 | 40 | */ |
43157840 | 41 | #define FirstUse 10 /* rdev flag */ |
9d09e663 N |
42 | |
43 | struct raid_dev { | |
44 | /* | |
45 | * Two DM devices, one to hold metadata and one to hold the | |
43157840 | 46 | * actual data/parity. The reason for this is to not confuse |
9d09e663 N |
47 | * ti->len and give more flexibility in altering size and |
48 | * characteristics. | |
49 | * | |
50 | * While it is possible for this device to be associated | |
51 | * with a different physical device than the data_dev, it | |
52 | * is intended for it to be the same. | |
53 | * |--------- Physical Device ---------| | |
54 | * |- meta_dev -|------ data_dev ------| | |
55 | */ | |
56 | struct dm_dev *meta_dev; | |
57 | struct dm_dev *data_dev; | |
3cb03002 | 58 | struct md_rdev rdev; |
9d09e663 N |
59 | }; |
60 | ||
61 | /* | |
4286325b | 62 | * Bits for establishing rs->ctr_flags |
702108d1 HM |
63 | * |
64 | * 1 = no flag value | |
65 | * 2 = flag with value | |
9d09e663 | 66 | */ |
4286325b MS |
67 | #define __CTR_FLAG_SYNC 0 /* 1 */ /* Not with raid0! */ |
68 | #define __CTR_FLAG_NOSYNC 1 /* 1 */ /* Not with raid0! */ | |
69 | #define __CTR_FLAG_REBUILD 2 /* 2 */ /* Not with raid0! */ | |
70 | #define __CTR_FLAG_DAEMON_SLEEP 3 /* 2 */ /* Not with raid0! */ | |
71 | #define __CTR_FLAG_MIN_RECOVERY_RATE 4 /* 2 */ /* Not with raid0! */ | |
72 | #define __CTR_FLAG_MAX_RECOVERY_RATE 5 /* 2 */ /* Not with raid0! */ | |
73 | #define __CTR_FLAG_MAX_WRITE_BEHIND 6 /* 2 */ /* Only with raid1! */ | |
74 | #define __CTR_FLAG_WRITE_MOSTLY 7 /* 2 */ /* Only with raid1! */ | |
75 | #define __CTR_FLAG_STRIPE_CACHE 8 /* 2 */ /* Only with raid4/5/6! */ | |
76 | #define __CTR_FLAG_REGION_SIZE 9 /* 2 */ /* Not with raid0! */ | |
77 | #define __CTR_FLAG_RAID10_COPIES 10 /* 2 */ /* Only with raid10 */ | |
78 | #define __CTR_FLAG_RAID10_FORMAT 11 /* 2 */ /* Only with raid10 */ | |
9b6e5423 | 79 | /* New for v1.9.0 */ |
d7ccc2e2 | 80 | #define __CTR_FLAG_DELTA_DISKS 12 /* 2 */ /* Only with reshapable raid1/4/5/6/10! */ |
4286325b MS |
81 | #define __CTR_FLAG_DATA_OFFSET 13 /* 2 */ /* Only with reshapable raid4/5/6/10! */ |
82 | #define __CTR_FLAG_RAID10_USE_NEAR_SETS 14 /* 2 */ /* Only with raid10! */ | |
83 | ||
63c32ed4 | 84 | /* New for v1.10.0 */ |
6e53636f HM |
85 | #define __CTR_FLAG_JOURNAL_DEV 15 /* 2 */ /* Only with raid4/5/6 (journal device)! */ |
86 | ||
87 | /* New for v1.11.1 */ | |
88 | #define __CTR_FLAG_JOURNAL_MODE 16 /* 2 */ /* Only with raid4/5/6 (journal mode)! */ | |
63c32ed4 | 89 | |
4286325b MS |
90 | /* |
91 | * Flags for rs->ctr_flags field. | |
92 | */ | |
93 | #define CTR_FLAG_SYNC (1 << __CTR_FLAG_SYNC) | |
94 | #define CTR_FLAG_NOSYNC (1 << __CTR_FLAG_NOSYNC) | |
95 | #define CTR_FLAG_REBUILD (1 << __CTR_FLAG_REBUILD) | |
96 | #define CTR_FLAG_DAEMON_SLEEP (1 << __CTR_FLAG_DAEMON_SLEEP) | |
97 | #define CTR_FLAG_MIN_RECOVERY_RATE (1 << __CTR_FLAG_MIN_RECOVERY_RATE) | |
98 | #define CTR_FLAG_MAX_RECOVERY_RATE (1 << __CTR_FLAG_MAX_RECOVERY_RATE) | |
99 | #define CTR_FLAG_MAX_WRITE_BEHIND (1 << __CTR_FLAG_MAX_WRITE_BEHIND) | |
100 | #define CTR_FLAG_WRITE_MOSTLY (1 << __CTR_FLAG_WRITE_MOSTLY) | |
101 | #define CTR_FLAG_STRIPE_CACHE (1 << __CTR_FLAG_STRIPE_CACHE) | |
102 | #define CTR_FLAG_REGION_SIZE (1 << __CTR_FLAG_REGION_SIZE) | |
103 | #define CTR_FLAG_RAID10_COPIES (1 << __CTR_FLAG_RAID10_COPIES) | |
104 | #define CTR_FLAG_RAID10_FORMAT (1 << __CTR_FLAG_RAID10_FORMAT) | |
105 | #define CTR_FLAG_DELTA_DISKS (1 << __CTR_FLAG_DELTA_DISKS) | |
106 | #define CTR_FLAG_DATA_OFFSET (1 << __CTR_FLAG_DATA_OFFSET) | |
107 | #define CTR_FLAG_RAID10_USE_NEAR_SETS (1 << __CTR_FLAG_RAID10_USE_NEAR_SETS) | |
63c32ed4 | 108 | #define CTR_FLAG_JOURNAL_DEV (1 << __CTR_FLAG_JOURNAL_DEV) |
6e53636f | 109 | #define CTR_FLAG_JOURNAL_MODE (1 << __CTR_FLAG_JOURNAL_MODE) |
63f33b8d | 110 | |
f090279e HM |
111 | /* |
112 | * Definitions of various constructor flags to | |
113 | * be used in checks of valid / invalid flags | |
114 | * per raid level. | |
115 | */ | |
116 | /* Define all any sync flags */ | |
117 | #define CTR_FLAGS_ANY_SYNC (CTR_FLAG_SYNC | CTR_FLAG_NOSYNC) | |
118 | ||
119 | /* Define flags for options without argument (e.g. 'nosync') */ | |
33e53f06 HM |
120 | #define CTR_FLAG_OPTIONS_NO_ARGS (CTR_FLAGS_ANY_SYNC | \ |
121 | CTR_FLAG_RAID10_USE_NEAR_SETS) | |
f090279e HM |
122 | |
123 | /* Define flags for options with one argument (e.g. 'delta_disks +2') */ | |
124 | #define CTR_FLAG_OPTIONS_ONE_ARG (CTR_FLAG_REBUILD | \ | |
125 | CTR_FLAG_WRITE_MOSTLY | \ | |
126 | CTR_FLAG_DAEMON_SLEEP | \ | |
127 | CTR_FLAG_MIN_RECOVERY_RATE | \ | |
128 | CTR_FLAG_MAX_RECOVERY_RATE | \ | |
129 | CTR_FLAG_MAX_WRITE_BEHIND | \ | |
130 | CTR_FLAG_STRIPE_CACHE | \ | |
131 | CTR_FLAG_REGION_SIZE | \ | |
132 | CTR_FLAG_RAID10_COPIES | \ | |
33e53f06 HM |
133 | CTR_FLAG_RAID10_FORMAT | \ |
134 | CTR_FLAG_DELTA_DISKS | \ | |
135 | CTR_FLAG_DATA_OFFSET) | |
f090279e | 136 | |
a30cbc0d HM |
137 | /* Valid options definitions per raid level... */ |
138 | ||
139 | /* "raid0" does only accept data offset */ | |
140 | #define RAID0_VALID_FLAGS (CTR_FLAG_DATA_OFFSET) | |
141 | ||
142 | /* "raid1" does not accept stripe cache, data offset, delta_disks or any raid10 options */ | |
143 | #define RAID1_VALID_FLAGS (CTR_FLAGS_ANY_SYNC | \ | |
144 | CTR_FLAG_REBUILD | \ | |
145 | CTR_FLAG_WRITE_MOSTLY | \ | |
146 | CTR_FLAG_DAEMON_SLEEP | \ | |
147 | CTR_FLAG_MIN_RECOVERY_RATE | \ | |
148 | CTR_FLAG_MAX_RECOVERY_RATE | \ | |
149 | CTR_FLAG_MAX_WRITE_BEHIND | \ | |
150 | CTR_FLAG_REGION_SIZE | \ | |
7a7c330f | 151 | CTR_FLAG_DELTA_DISKS | \ |
a30cbc0d | 152 | CTR_FLAG_DATA_OFFSET) |
f090279e | 153 | |
a30cbc0d HM |
154 | /* "raid10" does not accept any raid1 or stripe cache options */ |
155 | #define RAID10_VALID_FLAGS (CTR_FLAGS_ANY_SYNC | \ | |
156 | CTR_FLAG_REBUILD | \ | |
157 | CTR_FLAG_DAEMON_SLEEP | \ | |
158 | CTR_FLAG_MIN_RECOVERY_RATE | \ | |
159 | CTR_FLAG_MAX_RECOVERY_RATE | \ | |
160 | CTR_FLAG_REGION_SIZE | \ | |
f090279e | 161 | CTR_FLAG_RAID10_COPIES | \ |
33e53f06 HM |
162 | CTR_FLAG_RAID10_FORMAT | \ |
163 | CTR_FLAG_DELTA_DISKS | \ | |
a30cbc0d HM |
164 | CTR_FLAG_DATA_OFFSET | \ |
165 | CTR_FLAG_RAID10_USE_NEAR_SETS) | |
f090279e | 166 | |
f090279e HM |
167 | /* |
168 | * "raid4/5/6" do not accept any raid1 or raid10 specific options | |
169 | * | |
170 | * "raid6" does not accept "nosync", because it is not guaranteed | |
171 | * that both parity and q-syndrome are being written properly with | |
172 | * any writes | |
173 | */ | |
a30cbc0d HM |
174 | #define RAID45_VALID_FLAGS (CTR_FLAGS_ANY_SYNC | \ |
175 | CTR_FLAG_REBUILD | \ | |
176 | CTR_FLAG_DAEMON_SLEEP | \ | |
177 | CTR_FLAG_MIN_RECOVERY_RATE | \ | |
178 | CTR_FLAG_MAX_RECOVERY_RATE | \ | |
a30cbc0d HM |
179 | CTR_FLAG_STRIPE_CACHE | \ |
180 | CTR_FLAG_REGION_SIZE | \ | |
181 | CTR_FLAG_DELTA_DISKS | \ | |
63c32ed4 | 182 | CTR_FLAG_DATA_OFFSET | \ |
6e53636f HM |
183 | CTR_FLAG_JOURNAL_DEV | \ |
184 | CTR_FLAG_JOURNAL_MODE) | |
a30cbc0d HM |
185 | |
186 | #define RAID6_VALID_FLAGS (CTR_FLAG_SYNC | \ | |
187 | CTR_FLAG_REBUILD | \ | |
188 | CTR_FLAG_DAEMON_SLEEP | \ | |
189 | CTR_FLAG_MIN_RECOVERY_RATE | \ | |
190 | CTR_FLAG_MAX_RECOVERY_RATE | \ | |
a30cbc0d HM |
191 | CTR_FLAG_STRIPE_CACHE | \ |
192 | CTR_FLAG_REGION_SIZE | \ | |
193 | CTR_FLAG_DELTA_DISKS | \ | |
63c32ed4 | 194 | CTR_FLAG_DATA_OFFSET | \ |
6e53636f HM |
195 | CTR_FLAG_JOURNAL_DEV | \ |
196 | CTR_FLAG_JOURNAL_MODE) | |
a30cbc0d | 197 | /* ...valid options definitions per raid level */ |
f090279e | 198 | |
ecbfb9f1 HM |
199 | /* |
200 | * Flags for rs->runtime_flags field | |
201 | * (RT_FLAG prefix meaning "runtime flag") | |
202 | * | |
203 | * These are all internal and used to define runtime state, | |
204 | * e.g. to prevent another resume from preresume processing | |
205 | * the raid set all over again. | |
206 | */ | |
40ba37e5 HM |
207 | #define RT_FLAG_RS_PRERESUMED 0 |
208 | #define RT_FLAG_RS_RESUMED 1 | |
209 | #define RT_FLAG_RS_BITMAP_LOADED 2 | |
210 | #define RT_FLAG_UPDATE_SBS 3 | |
9dbd1aa3 | 211 | #define RT_FLAG_RESHAPE_RS 4 |
0cf352e5 | 212 | #define RT_FLAG_RS_SUSPENDED 5 |
242ea5ad | 213 | #define RT_FLAG_RS_IN_SYNC 6 |
4102d9de | 214 | #define RT_FLAG_RS_RESYNCING 7 |
ecbfb9f1 | 215 | |
d7ccc2e2 | 216 | /* Array elements of 64 bit needed for rebuild/failed disk bits */ |
33e53f06 HM |
217 | #define DISKS_ARRAY_ELEMS ((MAX_RAID_DEVICES + (sizeof(uint64_t) * 8 - 1)) / sizeof(uint64_t) / 8) |
218 | ||
ecbfb9f1 HM |
219 | /* |
220 | * raid set level, layout and chunk sectors backup/restore | |
221 | */ | |
222 | struct rs_layout { | |
223 | int new_level; | |
224 | int new_layout; | |
225 | int new_chunk_sectors; | |
226 | }; | |
227 | ||
9d09e663 N |
228 | struct raid_set { |
229 | struct dm_target *ti; | |
11e47232 | 230 | struct list_head list; |
9d09e663 | 231 | |
9dbd1aa3 | 232 | uint32_t stripe_cache_entries; |
4286325b MS |
233 | unsigned long ctr_flags; |
234 | unsigned long runtime_flags; | |
ecbfb9f1 HM |
235 | |
236 | uint64_t rebuild_disks[DISKS_ARRAY_ELEMS]; | |
9d09e663 | 237 | |
33e53f06 HM |
238 | int raid_disks; |
239 | int delta_disks; | |
4763e543 | 240 | int data_offset; |
33e53f06 | 241 | int raid10_copies; |
4257e085 | 242 | int requested_bitmap_chunk_sectors; |
33e53f06 | 243 | |
fd01b88c | 244 | struct mddev md; |
9d09e663 N |
245 | struct raid_type *raid_type; |
246 | struct dm_target_callbacks callbacks; | |
247 | ||
63c32ed4 HM |
248 | /* Optional raid4/5/6 journal device */ |
249 | struct journal_dev { | |
250 | struct dm_dev *dev; | |
251 | struct md_rdev rdev; | |
6e53636f | 252 | int mode; |
63c32ed4 HM |
253 | } journal_dev; |
254 | ||
9d09e663 N |
255 | struct raid_dev dev[0]; |
256 | }; | |
257 | ||
9dbd1aa3 | 258 | static void rs_config_backup(struct raid_set *rs, struct rs_layout *l) |
ecbfb9f1 HM |
259 | { |
260 | struct mddev *mddev = &rs->md; | |
261 | ||
262 | l->new_level = mddev->new_level; | |
263 | l->new_layout = mddev->new_layout; | |
264 | l->new_chunk_sectors = mddev->new_chunk_sectors; | |
265 | } | |
266 | ||
9dbd1aa3 | 267 | static void rs_config_restore(struct raid_set *rs, struct rs_layout *l) |
ecbfb9f1 HM |
268 | { |
269 | struct mddev *mddev = &rs->md; | |
270 | ||
271 | mddev->new_level = l->new_level; | |
272 | mddev->new_layout = l->new_layout; | |
273 | mddev->new_chunk_sectors = l->new_chunk_sectors; | |
274 | } | |
275 | ||
11e47232 HM |
276 | /* Find any raid_set in active slot for @rs on global list */ |
277 | static struct raid_set *rs_find_active(struct raid_set *rs) | |
278 | { | |
279 | struct raid_set *r; | |
280 | struct mapped_device *md = dm_table_get_md(rs->ti->table); | |
281 | ||
282 | list_for_each_entry(r, &raid_sets, list) | |
283 | if (r != rs && dm_table_get_md(r->ti->table) == md) | |
284 | return r; | |
285 | ||
286 | return NULL; | |
287 | } | |
288 | ||
33e53f06 HM |
289 | /* raid10 algorithms (i.e. formats) */ |
290 | #define ALGORITHM_RAID10_DEFAULT 0 | |
291 | #define ALGORITHM_RAID10_NEAR 1 | |
292 | #define ALGORITHM_RAID10_OFFSET 2 | |
293 | #define ALGORITHM_RAID10_FAR 3 | |
294 | ||
9d09e663 N |
295 | /* Supported raid types and properties. */ |
296 | static struct raid_type { | |
297 | const char *name; /* RAID algorithm. */ | |
298 | const char *descr; /* Descriptor text for logging. */ | |
094f394d HM |
299 | const unsigned int parity_devs; /* # of parity devices. */ |
300 | const unsigned int minimal_devs;/* minimal # of devices in set. */ | |
301 | const unsigned int level; /* RAID level. */ | |
302 | const unsigned int algorithm; /* RAID algorithm. */ | |
9d09e663 | 303 | } raid_types[] = { |
43157840 MS |
304 | {"raid0", "raid0 (striping)", 0, 2, 0, 0 /* NONE */}, |
305 | {"raid1", "raid1 (mirroring)", 0, 2, 1, 0 /* NONE */}, | |
306 | {"raid10_far", "raid10 far (striped mirrors)", 0, 2, 10, ALGORITHM_RAID10_FAR}, | |
33e53f06 | 307 | {"raid10_offset", "raid10 offset (striped mirrors)", 0, 2, 10, ALGORITHM_RAID10_OFFSET}, |
43157840 MS |
308 | {"raid10_near", "raid10 near (striped mirrors)", 0, 2, 10, ALGORITHM_RAID10_NEAR}, |
309 | {"raid10", "raid10 (striped mirrors)", 0, 2, 10, ALGORITHM_RAID10_DEFAULT}, | |
b052b07c | 310 | {"raid4", "raid4 (dedicated first parity disk)", 1, 2, 5, ALGORITHM_PARITY_0}, /* raid4 layout = raid5_0 */ |
43157840 MS |
311 | {"raid5_n", "raid5 (dedicated last parity disk)", 1, 2, 5, ALGORITHM_PARITY_N}, |
312 | {"raid5_ls", "raid5 (left symmetric)", 1, 2, 5, ALGORITHM_LEFT_SYMMETRIC}, | |
313 | {"raid5_rs", "raid5 (right symmetric)", 1, 2, 5, ALGORITHM_RIGHT_SYMMETRIC}, | |
314 | {"raid5_la", "raid5 (left asymmetric)", 1, 2, 5, ALGORITHM_LEFT_ASYMMETRIC}, | |
315 | {"raid5_ra", "raid5 (right asymmetric)", 1, 2, 5, ALGORITHM_RIGHT_ASYMMETRIC}, | |
316 | {"raid6_zr", "raid6 (zero restart)", 2, 4, 6, ALGORITHM_ROTATING_ZERO_RESTART}, | |
317 | {"raid6_nr", "raid6 (N restart)", 2, 4, 6, ALGORITHM_ROTATING_N_RESTART}, | |
318 | {"raid6_nc", "raid6 (N continue)", 2, 4, 6, ALGORITHM_ROTATING_N_CONTINUE}, | |
319 | {"raid6_n_6", "raid6 (dedicated parity/Q n/6)", 2, 4, 6, ALGORITHM_PARITY_N_6}, | |
320 | {"raid6_ls_6", "raid6 (left symmetric dedicated Q 6)", 2, 4, 6, ALGORITHM_LEFT_SYMMETRIC_6}, | |
321 | {"raid6_rs_6", "raid6 (right symmetric dedicated Q 6)", 2, 4, 6, ALGORITHM_RIGHT_SYMMETRIC_6}, | |
322 | {"raid6_la_6", "raid6 (left asymmetric dedicated Q 6)", 2, 4, 6, ALGORITHM_LEFT_ASYMMETRIC_6}, | |
323 | {"raid6_ra_6", "raid6 (right asymmetric dedicated Q 6)", 2, 4, 6, ALGORITHM_RIGHT_ASYMMETRIC_6} | |
9d09e663 N |
324 | }; |
325 | ||
92c83d79 | 326 | /* True, if @v is in inclusive range [@min, @max] */ |
bb91a63f | 327 | static bool __within_range(long v, long min, long max) |
92c83d79 HM |
328 | { |
329 | return v >= min && v <= max; | |
330 | } | |
331 | ||
702108d1 HM |
332 | /* All table line arguments are defined here */ |
333 | static struct arg_name_flag { | |
4286325b | 334 | const unsigned long flag; |
702108d1 | 335 | const char *name; |
e6ca5e1a | 336 | } __arg_name_flags[] = { |
702108d1 HM |
337 | { CTR_FLAG_SYNC, "sync"}, |
338 | { CTR_FLAG_NOSYNC, "nosync"}, | |
339 | { CTR_FLAG_REBUILD, "rebuild"}, | |
340 | { CTR_FLAG_DAEMON_SLEEP, "daemon_sleep"}, | |
341 | { CTR_FLAG_MIN_RECOVERY_RATE, "min_recovery_rate"}, | |
342 | { CTR_FLAG_MAX_RECOVERY_RATE, "max_recovery_rate"}, | |
343 | { CTR_FLAG_MAX_WRITE_BEHIND, "max_write_behind"}, | |
65359ee6 | 344 | { CTR_FLAG_WRITE_MOSTLY, "write_mostly"}, |
702108d1 HM |
345 | { CTR_FLAG_STRIPE_CACHE, "stripe_cache"}, |
346 | { CTR_FLAG_REGION_SIZE, "region_size"}, | |
347 | { CTR_FLAG_RAID10_COPIES, "raid10_copies"}, | |
348 | { CTR_FLAG_RAID10_FORMAT, "raid10_format"}, | |
4763e543 HM |
349 | { CTR_FLAG_DATA_OFFSET, "data_offset"}, |
350 | { CTR_FLAG_DELTA_DISKS, "delta_disks"}, | |
351 | { CTR_FLAG_RAID10_USE_NEAR_SETS, "raid10_use_near_sets"}, | |
63c32ed4 | 352 | { CTR_FLAG_JOURNAL_DEV, "journal_dev" }, |
6e53636f | 353 | { CTR_FLAG_JOURNAL_MODE, "journal_mode" }, |
702108d1 HM |
354 | }; |
355 | ||
356 | /* Return argument name string for given @flag */ | |
3fa6cf38 | 357 | static const char *dm_raid_arg_name_by_flag(const uint32_t flag) |
702108d1 HM |
358 | { |
359 | if (hweight32(flag) == 1) { | |
e6ca5e1a | 360 | struct arg_name_flag *anf = __arg_name_flags + ARRAY_SIZE(__arg_name_flags); |
702108d1 | 361 | |
e6ca5e1a | 362 | while (anf-- > __arg_name_flags) |
4286325b | 363 | if (flag & anf->flag) |
702108d1 HM |
364 | return anf->name; |
365 | ||
366 | } else | |
367 | DMERR("%s called with more than one flag!", __func__); | |
368 | ||
369 | return NULL; | |
370 | } | |
371 | ||
6e53636f HM |
372 | /* Define correlation of raid456 journal cache modes and dm-raid target line parameters */ |
373 | static struct { | |
374 | const int mode; | |
375 | const char *param; | |
376 | } _raid456_journal_mode[] = { | |
377 | { R5C_JOURNAL_MODE_WRITE_THROUGH , "writethrough" }, | |
378 | { R5C_JOURNAL_MODE_WRITE_BACK , "writeback" } | |
379 | }; | |
380 | ||
381 | /* Return MD raid4/5/6 journal mode for dm @journal_mode one */ | |
382 | static int dm_raid_journal_mode_to_md(const char *mode) | |
383 | { | |
384 | int m = ARRAY_SIZE(_raid456_journal_mode); | |
385 | ||
386 | while (m--) | |
387 | if (!strcasecmp(mode, _raid456_journal_mode[m].param)) | |
388 | return _raid456_journal_mode[m].mode; | |
389 | ||
390 | return -EINVAL; | |
391 | } | |
392 | ||
393 | /* Return dm-raid raid4/5/6 journal mode string for @mode */ | |
394 | static const char *md_journal_mode_to_dm_raid(const int mode) | |
395 | { | |
396 | int m = ARRAY_SIZE(_raid456_journal_mode); | |
397 | ||
398 | while (m--) | |
399 | if (mode == _raid456_journal_mode[m].mode) | |
400 | return _raid456_journal_mode[m].param; | |
401 | ||
402 | return "unknown"; | |
403 | } | |
404 | ||
33e53f06 | 405 | /* |
d7ccc2e2 HM |
406 | * Bool helpers to test for various raid levels of a raid set. |
407 | * It's level as reported by the superblock rather than | |
33e53f06 HM |
408 | * the requested raid_type passed to the constructor. |
409 | */ | |
410 | /* Return true, if raid set in @rs is raid0 */ | |
411 | static bool rs_is_raid0(struct raid_set *rs) | |
412 | { | |
413 | return !rs->md.level; | |
414 | } | |
415 | ||
9dbd1aa3 HM |
416 | /* Return true, if raid set in @rs is raid1 */ |
417 | static bool rs_is_raid1(struct raid_set *rs) | |
418 | { | |
419 | return rs->md.level == 1; | |
420 | } | |
421 | ||
33e53f06 HM |
422 | /* Return true, if raid set in @rs is raid10 */ |
423 | static bool rs_is_raid10(struct raid_set *rs) | |
424 | { | |
425 | return rs->md.level == 10; | |
426 | } | |
427 | ||
4dff2f1e HM |
428 | /* Return true, if raid set in @rs is level 6 */ |
429 | static bool rs_is_raid6(struct raid_set *rs) | |
430 | { | |
431 | return rs->md.level == 6; | |
432 | } | |
433 | ||
40ba37e5 HM |
434 | /* Return true, if raid set in @rs is level 4, 5 or 6 */ |
435 | static bool rs_is_raid456(struct raid_set *rs) | |
436 | { | |
437 | return __within_range(rs->md.level, 4, 6); | |
438 | } | |
439 | ||
440 | /* Return true, if raid set in @rs is reshapable */ | |
d7ccc2e2 | 441 | static bool __is_raid10_far(int layout); |
40ba37e5 HM |
442 | static bool rs_is_reshapable(struct raid_set *rs) |
443 | { | |
444 | return rs_is_raid456(rs) || | |
445 | (rs_is_raid10(rs) && !__is_raid10_far(rs->md.new_layout)); | |
446 | } | |
447 | ||
9dbd1aa3 HM |
448 | /* Return true, if raid set in @rs is recovering */ |
449 | static bool rs_is_recovering(struct raid_set *rs) | |
450 | { | |
50c4feb9 | 451 | return rs->md.recovery_cp < rs->md.dev_sectors; |
9dbd1aa3 HM |
452 | } |
453 | ||
454 | /* Return true, if raid set in @rs is reshaping */ | |
455 | static bool rs_is_reshaping(struct raid_set *rs) | |
456 | { | |
9dbd1aa3 HM |
457 | return rs->md.reshape_position != MaxSector; |
458 | } | |
459 | ||
f090279e | 460 | /* |
d7ccc2e2 | 461 | * bool helpers to test for various raid levels of a raid type @rt |
f090279e HM |
462 | */ |
463 | ||
464 | /* Return true, if raid type in @rt is raid0 */ | |
465 | static bool rt_is_raid0(struct raid_type *rt) | |
466 | { | |
467 | return !rt->level; | |
468 | } | |
469 | ||
470 | /* Return true, if raid type in @rt is raid1 */ | |
471 | static bool rt_is_raid1(struct raid_type *rt) | |
472 | { | |
473 | return rt->level == 1; | |
474 | } | |
475 | ||
476 | /* Return true, if raid type in @rt is raid10 */ | |
477 | static bool rt_is_raid10(struct raid_type *rt) | |
478 | { | |
479 | return rt->level == 10; | |
480 | } | |
481 | ||
482 | /* Return true, if raid type in @rt is raid4/5 */ | |
483 | static bool rt_is_raid45(struct raid_type *rt) | |
484 | { | |
bb91a63f | 485 | return __within_range(rt->level, 4, 5); |
f090279e HM |
486 | } |
487 | ||
488 | /* Return true, if raid type in @rt is raid6 */ | |
489 | static bool rt_is_raid6(struct raid_type *rt) | |
490 | { | |
491 | return rt->level == 6; | |
492 | } | |
676fa5ad HM |
493 | |
494 | /* Return true, if raid type in @rt is raid4/5/6 */ | |
495 | static bool rt_is_raid456(struct raid_type *rt) | |
496 | { | |
bb91a63f | 497 | return __within_range(rt->level, 4, 6); |
676fa5ad | 498 | } |
f090279e HM |
499 | /* END: raid level bools */ |
500 | ||
a30cbc0d HM |
501 | /* Return valid ctr flags for the raid level of @rs */ |
502 | static unsigned long __valid_flags(struct raid_set *rs) | |
f090279e HM |
503 | { |
504 | if (rt_is_raid0(rs->raid_type)) | |
a30cbc0d | 505 | return RAID0_VALID_FLAGS; |
f090279e | 506 | else if (rt_is_raid1(rs->raid_type)) |
a30cbc0d | 507 | return RAID1_VALID_FLAGS; |
f090279e | 508 | else if (rt_is_raid10(rs->raid_type)) |
a30cbc0d | 509 | return RAID10_VALID_FLAGS; |
f090279e | 510 | else if (rt_is_raid45(rs->raid_type)) |
a30cbc0d | 511 | return RAID45_VALID_FLAGS; |
f090279e | 512 | else if (rt_is_raid6(rs->raid_type)) |
a30cbc0d | 513 | return RAID6_VALID_FLAGS; |
f090279e | 514 | |
d7ccc2e2 | 515 | return 0; |
f090279e HM |
516 | } |
517 | ||
518 | /* | |
a30cbc0d | 519 | * Check for valid flags set on @rs |
f090279e HM |
520 | * |
521 | * Has to be called after parsing of the ctr flags! | |
522 | */ | |
a30cbc0d | 523 | static int rs_check_for_valid_flags(struct raid_set *rs) |
f090279e | 524 | { |
a30cbc0d | 525 | if (rs->ctr_flags & ~__valid_flags(rs)) { |
4286325b | 526 | rs->ti->error = "Invalid flags combination"; |
bd83a4c4 MS |
527 | return -EINVAL; |
528 | } | |
f090279e HM |
529 | |
530 | return 0; | |
531 | } | |
532 | ||
33e53f06 HM |
533 | /* MD raid10 bit definitions and helpers */ |
534 | #define RAID10_OFFSET (1 << 16) /* stripes with data copies area adjacent on devices */ | |
535 | #define RAID10_BROCKEN_USE_FAR_SETS (1 << 17) /* Broken in raid10.c: use sets instead of whole stripe rotation */ | |
536 | #define RAID10_USE_FAR_SETS (1 << 18) /* Use sets instead of whole stripe rotation */ | |
537 | #define RAID10_FAR_COPIES_SHIFT 8 /* raid10 # far copies shift (2nd byte of layout) */ | |
538 | ||
539 | /* Return md raid10 near copies for @layout */ | |
e6ca5e1a | 540 | static unsigned int __raid10_near_copies(int layout) |
33e53f06 HM |
541 | { |
542 | return layout & 0xFF; | |
543 | } | |
544 | ||
545 | /* Return md raid10 far copies for @layout */ | |
e6ca5e1a | 546 | static unsigned int __raid10_far_copies(int layout) |
33e53f06 | 547 | { |
e6ca5e1a | 548 | return __raid10_near_copies(layout >> RAID10_FAR_COPIES_SHIFT); |
33e53f06 HM |
549 | } |
550 | ||
551 | /* Return true if md raid10 offset for @layout */ | |
d7ccc2e2 | 552 | static bool __is_raid10_offset(int layout) |
33e53f06 | 553 | { |
d7ccc2e2 | 554 | return !!(layout & RAID10_OFFSET); |
33e53f06 HM |
555 | } |
556 | ||
557 | /* Return true if md raid10 near for @layout */ | |
d7ccc2e2 | 558 | static bool __is_raid10_near(int layout) |
33e53f06 | 559 | { |
e6ca5e1a | 560 | return !__is_raid10_offset(layout) && __raid10_near_copies(layout) > 1; |
33e53f06 HM |
561 | } |
562 | ||
563 | /* Return true if md raid10 far for @layout */ | |
d7ccc2e2 | 564 | static bool __is_raid10_far(int layout) |
33e53f06 | 565 | { |
e6ca5e1a | 566 | return !__is_raid10_offset(layout) && __raid10_far_copies(layout) > 1; |
33e53f06 HM |
567 | } |
568 | ||
569 | /* Return md raid10 layout string for @layout */ | |
570 | static const char *raid10_md_layout_to_format(int layout) | |
fe5d2f4a JB |
571 | { |
572 | /* | |
33e53f06 HM |
573 | * Bit 16 stands for "offset" |
574 | * (i.e. adjacent stripes hold copies) | |
575 | * | |
fe5d2f4a JB |
576 | * Refer to MD's raid10.c for details |
577 | */ | |
e6ca5e1a | 578 | if (__is_raid10_offset(layout)) |
fe5d2f4a JB |
579 | return "offset"; |
580 | ||
e6ca5e1a | 581 | if (__raid10_near_copies(layout) > 1) |
fe5d2f4a JB |
582 | return "near"; |
583 | ||
bbac1e06 HM |
584 | if (__raid10_far_copies(layout) > 1) |
585 | return "far"; | |
33e53f06 | 586 | |
bbac1e06 | 587 | return "unknown"; |
fe5d2f4a JB |
588 | } |
589 | ||
33e53f06 | 590 | /* Return md raid10 algorithm for @name */ |
552aa679 | 591 | static const int raid10_name_to_format(const char *name) |
33e53f06 HM |
592 | { |
593 | if (!strcasecmp(name, "near")) | |
594 | return ALGORITHM_RAID10_NEAR; | |
595 | else if (!strcasecmp(name, "offset")) | |
596 | return ALGORITHM_RAID10_OFFSET; | |
597 | else if (!strcasecmp(name, "far")) | |
598 | return ALGORITHM_RAID10_FAR; | |
599 | ||
600 | return -EINVAL; | |
601 | } | |
602 | ||
33e53f06 HM |
603 | /* Return md raid10 copies for @layout */ |
604 | static unsigned int raid10_md_layout_to_copies(int layout) | |
63f33b8d | 605 | { |
d7ccc2e2 | 606 | return max(__raid10_near_copies(layout), __raid10_far_copies(layout)); |
63f33b8d JB |
607 | } |
608 | ||
33e53f06 HM |
609 | /* Return md raid10 format id for @format string */ |
610 | static int raid10_format_to_md_layout(struct raid_set *rs, | |
611 | unsigned int algorithm, | |
612 | unsigned int copies) | |
63f33b8d | 613 | { |
33e53f06 | 614 | unsigned int n = 1, f = 1, r = 0; |
fe5d2f4a | 615 | |
33e53f06 HM |
616 | /* |
617 | * MD resilienece flaw: | |
618 | * | |
619 | * enabling use_far_sets for far/offset formats causes copies | |
620 | * to be colocated on the same devs together with their origins! | |
621 | * | |
622 | * -> disable it for now in the definition above | |
623 | */ | |
624 | if (algorithm == ALGORITHM_RAID10_DEFAULT || | |
625 | algorithm == ALGORITHM_RAID10_NEAR) | |
fe5d2f4a | 626 | n = copies; |
33e53f06 HM |
627 | |
628 | else if (algorithm == ALGORITHM_RAID10_OFFSET) { | |
629 | f = copies; | |
630 | r = RAID10_OFFSET; | |
4286325b | 631 | if (!test_bit(__CTR_FLAG_RAID10_USE_NEAR_SETS, &rs->ctr_flags)) |
33e53f06 HM |
632 | r |= RAID10_USE_FAR_SETS; |
633 | ||
634 | } else if (algorithm == ALGORITHM_RAID10_FAR) { | |
fe5d2f4a | 635 | f = copies; |
33e53f06 | 636 | r = !RAID10_OFFSET; |
4286325b | 637 | if (!test_bit(__CTR_FLAG_RAID10_USE_NEAR_SETS, &rs->ctr_flags)) |
33e53f06 | 638 | r |= RAID10_USE_FAR_SETS; |
fe5d2f4a | 639 | |
33e53f06 HM |
640 | } else |
641 | return -EINVAL; | |
642 | ||
643 | return r | (f << RAID10_FAR_COPIES_SHIFT) | n; | |
644 | } | |
645 | /* END: MD raid10 bit definitions and helpers */ | |
fe5d2f4a | 646 | |
33e53f06 | 647 | /* Check for any of the raid10 algorithms */ |
d7ccc2e2 | 648 | static bool __got_raid10(struct raid_type *rtp, const int layout) |
33e53f06 HM |
649 | { |
650 | if (rtp->level == 10) { | |
651 | switch (rtp->algorithm) { | |
652 | case ALGORITHM_RAID10_DEFAULT: | |
653 | case ALGORITHM_RAID10_NEAR: | |
e6ca5e1a | 654 | return __is_raid10_near(layout); |
33e53f06 | 655 | case ALGORITHM_RAID10_OFFSET: |
e6ca5e1a | 656 | return __is_raid10_offset(layout); |
33e53f06 | 657 | case ALGORITHM_RAID10_FAR: |
e6ca5e1a | 658 | return __is_raid10_far(layout); |
33e53f06 HM |
659 | default: |
660 | break; | |
661 | } | |
662 | } | |
fe5d2f4a | 663 | |
d7ccc2e2 | 664 | return false; |
63f33b8d JB |
665 | } |
666 | ||
33e53f06 | 667 | /* Return raid_type for @name */ |
92c83d79 | 668 | static struct raid_type *get_raid_type(const char *name) |
9d09e663 | 669 | { |
33e53f06 | 670 | struct raid_type *rtp = raid_types + ARRAY_SIZE(raid_types); |
9d09e663 | 671 | |
33e53f06 HM |
672 | while (rtp-- > raid_types) |
673 | if (!strcasecmp(rtp->name, name)) | |
674 | return rtp; | |
9d09e663 N |
675 | |
676 | return NULL; | |
677 | } | |
678 | ||
33e53f06 HM |
679 | /* Return raid_type for @name based derived from @level and @layout */ |
680 | static struct raid_type *get_raid_type_by_ll(const int level, const int layout) | |
681 | { | |
682 | struct raid_type *rtp = raid_types + ARRAY_SIZE(raid_types); | |
683 | ||
684 | while (rtp-- > raid_types) { | |
685 | /* RAID10 special checks based on @layout flags/properties */ | |
686 | if (rtp->level == level && | |
e6ca5e1a | 687 | (__got_raid10(rtp, layout) || rtp->algorithm == layout)) |
33e53f06 HM |
688 | return rtp; |
689 | } | |
690 | ||
691 | return NULL; | |
692 | } | |
693 | ||
61e06e2c HM |
694 | /* Adjust rdev sectors */ |
695 | static void rs_set_rdev_sectors(struct raid_set *rs) | |
9dbd1aa3 HM |
696 | { |
697 | struct mddev *mddev = &rs->md; | |
fbe6365b | 698 | struct md_rdev *rdev; |
9dbd1aa3 | 699 | |
fbe6365b HM |
700 | /* |
701 | * raid10 sets rdev->sector to the device size, which | |
702 | * is unintended in case of out-of-place reshaping | |
703 | */ | |
704 | rdev_for_each(rdev, mddev) | |
63c32ed4 HM |
705 | if (!test_bit(Journal, &rdev->flags)) |
706 | rdev->sectors = mddev->dev_sectors; | |
61e06e2c | 707 | } |
fbe6365b | 708 | |
61e06e2c HM |
709 | /* |
710 | * Change bdev capacity of @rs in case of a disk add/remove reshape | |
711 | */ | |
712 | static void rs_set_capacity(struct raid_set *rs) | |
713 | { | |
714 | struct gendisk *gendisk = dm_disk(dm_table_get_md(rs->ti->table)); | |
715 | ||
716 | set_capacity(gendisk, rs->md.array_sectors); | |
0095dbc9 | 717 | revalidate_disk(gendisk); |
9dbd1aa3 HM |
718 | } |
719 | ||
3a1c1ef2 HM |
720 | /* |
721 | * Set the mddev properties in @rs to the current | |
722 | * ones retrieved from the freshest superblock | |
723 | */ | |
724 | static void rs_set_cur(struct raid_set *rs) | |
725 | { | |
726 | struct mddev *mddev = &rs->md; | |
727 | ||
728 | mddev->new_level = mddev->level; | |
729 | mddev->new_layout = mddev->layout; | |
730 | mddev->new_chunk_sectors = mddev->chunk_sectors; | |
731 | } | |
732 | ||
33e53f06 HM |
733 | /* |
734 | * Set the mddev properties in @rs to the new | |
735 | * ones requested by the ctr | |
736 | */ | |
737 | static void rs_set_new(struct raid_set *rs) | |
738 | { | |
739 | struct mddev *mddev = &rs->md; | |
740 | ||
741 | mddev->level = mddev->new_level; | |
742 | mddev->layout = mddev->new_layout; | |
743 | mddev->chunk_sectors = mddev->new_chunk_sectors; | |
3a1c1ef2 | 744 | mddev->raid_disks = rs->raid_disks; |
33e53f06 HM |
745 | mddev->delta_disks = 0; |
746 | } | |
747 | ||
bfcee0e3 | 748 | static struct raid_set *raid_set_alloc(struct dm_target *ti, struct raid_type *raid_type, |
094f394d | 749 | unsigned int raid_devs) |
9d09e663 | 750 | { |
094f394d | 751 | unsigned int i; |
9d09e663 | 752 | struct raid_set *rs; |
9d09e663 | 753 | |
bd83a4c4 MS |
754 | if (raid_devs <= raid_type->parity_devs) { |
755 | ti->error = "Insufficient number of devices"; | |
756 | return ERR_PTR(-EINVAL); | |
757 | } | |
9d09e663 | 758 | |
9d09e663 | 759 | rs = kzalloc(sizeof(*rs) + raid_devs * sizeof(rs->dev[0]), GFP_KERNEL); |
bd83a4c4 MS |
760 | if (!rs) { |
761 | ti->error = "Cannot allocate raid context"; | |
762 | return ERR_PTR(-ENOMEM); | |
763 | } | |
9d09e663 N |
764 | |
765 | mddev_init(&rs->md); | |
766 | ||
11e47232 | 767 | INIT_LIST_HEAD(&rs->list); |
33e53f06 HM |
768 | rs->raid_disks = raid_devs; |
769 | rs->delta_disks = 0; | |
770 | ||
9d09e663 N |
771 | rs->ti = ti; |
772 | rs->raid_type = raid_type; | |
9dbd1aa3 | 773 | rs->stripe_cache_entries = 256; |
9d09e663 N |
774 | rs->md.raid_disks = raid_devs; |
775 | rs->md.level = raid_type->level; | |
776 | rs->md.new_level = rs->md.level; | |
9d09e663 N |
777 | rs->md.layout = raid_type->algorithm; |
778 | rs->md.new_layout = rs->md.layout; | |
779 | rs->md.delta_disks = 0; | |
4dff2f1e | 780 | rs->md.recovery_cp = MaxSector; |
9d09e663 N |
781 | |
782 | for (i = 0; i < raid_devs; i++) | |
783 | md_rdev_init(&rs->dev[i].rdev); | |
784 | ||
11e47232 HM |
785 | /* Add @rs to global list. */ |
786 | list_add(&rs->list, &raid_sets); | |
787 | ||
9d09e663 N |
788 | /* |
789 | * Remaining items to be initialized by further RAID params: | |
790 | * rs->md.persistent | |
791 | * rs->md.external | |
792 | * rs->md.chunk_sectors | |
793 | * rs->md.new_chunk_sectors | |
c039c332 | 794 | * rs->md.dev_sectors |
9d09e663 N |
795 | */ |
796 | ||
797 | return rs; | |
798 | } | |
799 | ||
11e47232 | 800 | /* Free all @rs allocations and remove it from global list. */ |
bfcee0e3 | 801 | static void raid_set_free(struct raid_set *rs) |
9d09e663 N |
802 | { |
803 | int i; | |
804 | ||
63c32ed4 HM |
805 | if (rs->journal_dev.dev) { |
806 | md_rdev_clear(&rs->journal_dev.rdev); | |
807 | dm_put_device(rs->ti, rs->journal_dev.dev); | |
808 | } | |
809 | ||
ffeeac75 | 810 | for (i = 0; i < rs->raid_disks; i++) { |
b12d437b JB |
811 | if (rs->dev[i].meta_dev) |
812 | dm_put_device(rs->ti, rs->dev[i].meta_dev); | |
545c8795 | 813 | md_rdev_clear(&rs->dev[i].rdev); |
9d09e663 N |
814 | if (rs->dev[i].data_dev) |
815 | dm_put_device(rs->ti, rs->dev[i].data_dev); | |
b12d437b | 816 | } |
9d09e663 | 817 | |
11e47232 HM |
818 | list_del(&rs->list); |
819 | ||
9d09e663 N |
820 | kfree(rs); |
821 | } | |
822 | ||
823 | /* | |
824 | * For every device we have two words | |
825 | * <meta_dev>: meta device name or '-' if missing | |
826 | * <data_dev>: data device name or '-' if missing | |
827 | * | |
b12d437b JB |
828 | * The following are permitted: |
829 | * - - | |
830 | * - <data_dev> | |
831 | * <meta_dev> <data_dev> | |
832 | * | |
833 | * The following is not allowed: | |
834 | * <meta_dev> - | |
835 | * | |
836 | * This code parses those words. If there is a failure, | |
bfcee0e3 | 837 | * the caller must use raid_set_free() to unwind the operations. |
9d09e663 | 838 | */ |
702108d1 | 839 | static int parse_dev_params(struct raid_set *rs, struct dm_arg_set *as) |
9d09e663 N |
840 | { |
841 | int i; | |
842 | int rebuild = 0; | |
843 | int metadata_available = 0; | |
73c6f239 | 844 | int r = 0; |
92c83d79 | 845 | const char *arg; |
9d09e663 | 846 | |
92c83d79 HM |
847 | /* Put off the number of raid devices argument to get to dev pairs */ |
848 | arg = dm_shift_arg(as); | |
849 | if (!arg) | |
850 | return -EINVAL; | |
851 | ||
ffeeac75 | 852 | for (i = 0; i < rs->raid_disks; i++) { |
9d09e663 N |
853 | rs->dev[i].rdev.raid_disk = i; |
854 | ||
855 | rs->dev[i].meta_dev = NULL; | |
856 | rs->dev[i].data_dev = NULL; | |
857 | ||
858 | /* | |
63c32ed4 HM |
859 | * There are no offsets initially. |
860 | * Out of place reshape will set them accordingly. | |
9d09e663 N |
861 | */ |
862 | rs->dev[i].rdev.data_offset = 0; | |
63c32ed4 | 863 | rs->dev[i].rdev.new_data_offset = 0; |
9d09e663 N |
864 | rs->dev[i].rdev.mddev = &rs->md; |
865 | ||
92c83d79 HM |
866 | arg = dm_shift_arg(as); |
867 | if (!arg) | |
868 | return -EINVAL; | |
869 | ||
870 | if (strcmp(arg, "-")) { | |
bd83a4c4 MS |
871 | r = dm_get_device(rs->ti, arg, dm_table_get_mode(rs->ti->table), |
872 | &rs->dev[i].meta_dev); | |
873 | if (r) { | |
874 | rs->ti->error = "RAID metadata device lookup failure"; | |
875 | return r; | |
876 | } | |
b12d437b JB |
877 | |
878 | rs->dev[i].rdev.sb_page = alloc_page(GFP_KERNEL); | |
bd83a4c4 MS |
879 | if (!rs->dev[i].rdev.sb_page) { |
880 | rs->ti->error = "Failed to allocate superblock page"; | |
881 | return -ENOMEM; | |
882 | } | |
9d09e663 N |
883 | } |
884 | ||
92c83d79 HM |
885 | arg = dm_shift_arg(as); |
886 | if (!arg) | |
887 | return -EINVAL; | |
888 | ||
889 | if (!strcmp(arg, "-")) { | |
9d09e663 | 890 | if (!test_bit(In_sync, &rs->dev[i].rdev.flags) && |
bd83a4c4 MS |
891 | (!rs->dev[i].rdev.recovery_offset)) { |
892 | rs->ti->error = "Drive designated for rebuild not specified"; | |
893 | return -EINVAL; | |
894 | } | |
9d09e663 | 895 | |
bd83a4c4 MS |
896 | if (rs->dev[i].meta_dev) { |
897 | rs->ti->error = "No data device supplied with metadata device"; | |
898 | return -EINVAL; | |
899 | } | |
b12d437b | 900 | |
9d09e663 N |
901 | continue; |
902 | } | |
903 | ||
bd83a4c4 MS |
904 | r = dm_get_device(rs->ti, arg, dm_table_get_mode(rs->ti->table), |
905 | &rs->dev[i].data_dev); | |
906 | if (r) { | |
907 | rs->ti->error = "RAID device lookup failure"; | |
908 | return r; | |
909 | } | |
9d09e663 | 910 | |
b12d437b JB |
911 | if (rs->dev[i].meta_dev) { |
912 | metadata_available = 1; | |
913 | rs->dev[i].rdev.meta_bdev = rs->dev[i].meta_dev->bdev; | |
914 | } | |
9d09e663 | 915 | rs->dev[i].rdev.bdev = rs->dev[i].data_dev->bdev; |
3a1c1ef2 | 916 | list_add_tail(&rs->dev[i].rdev.same_set, &rs->md.disks); |
9d09e663 N |
917 | if (!test_bit(In_sync, &rs->dev[i].rdev.flags)) |
918 | rebuild++; | |
919 | } | |
920 | ||
63c32ed4 HM |
921 | if (rs->journal_dev.dev) |
922 | list_add_tail(&rs->journal_dev.rdev.same_set, &rs->md.disks); | |
923 | ||
9d09e663 N |
924 | if (metadata_available) { |
925 | rs->md.external = 0; | |
926 | rs->md.persistent = 1; | |
927 | rs->md.major_version = 2; | |
928 | } else if (rebuild && !rs->md.recovery_cp) { | |
929 | /* | |
930 | * Without metadata, we will not be able to tell if the array | |
931 | * is in-sync or not - we must assume it is not. Therefore, | |
932 | * it is impossible to rebuild a drive. | |
933 | * | |
934 | * Even if there is metadata, the on-disk information may | |
935 | * indicate that the array is not in-sync and it will then | |
936 | * fail at that time. | |
937 | * | |
938 | * User could specify 'nosync' option if desperate. | |
939 | */ | |
bd83a4c4 MS |
940 | rs->ti->error = "Unable to rebuild drive while array is not in-sync"; |
941 | return -EINVAL; | |
9d09e663 N |
942 | } |
943 | ||
944 | return 0; | |
945 | } | |
946 | ||
c1084561 JB |
947 | /* |
948 | * validate_region_size | |
949 | * @rs | |
950 | * @region_size: region size in sectors. If 0, pick a size (4MiB default). | |
951 | * | |
952 | * Set rs->md.bitmap_info.chunksize (which really refers to 'region size'). | |
953 | * Ensure that (ti->len/region_size < 2^21) - required by MD bitmap. | |
954 | * | |
955 | * Returns: 0 on success, -EINVAL on failure. | |
956 | */ | |
957 | static int validate_region_size(struct raid_set *rs, unsigned long region_size) | |
958 | { | |
959 | unsigned long min_region_size = rs->ti->len / (1 << 21); | |
960 | ||
9e7d9367 HM |
961 | if (rs_is_raid0(rs)) |
962 | return 0; | |
963 | ||
c1084561 JB |
964 | if (!region_size) { |
965 | /* | |
43157840 | 966 | * Choose a reasonable default. All figures in sectors. |
c1084561 JB |
967 | */ |
968 | if (min_region_size > (1 << 13)) { | |
3a0f9aae | 969 | /* If not a power of 2, make it the next power of 2 */ |
042745ee | 970 | region_size = roundup_pow_of_two(min_region_size); |
c1084561 JB |
971 | DMINFO("Choosing default region size of %lu sectors", |
972 | region_size); | |
c1084561 JB |
973 | } else { |
974 | DMINFO("Choosing default region size of 4MiB"); | |
975 | region_size = 1 << 13; /* sectors */ | |
976 | } | |
977 | } else { | |
978 | /* | |
979 | * Validate user-supplied value. | |
980 | */ | |
bd83a4c4 MS |
981 | if (region_size > rs->ti->len) { |
982 | rs->ti->error = "Supplied region size is too large"; | |
983 | return -EINVAL; | |
984 | } | |
c1084561 JB |
985 | |
986 | if (region_size < min_region_size) { | |
987 | DMERR("Supplied region_size (%lu sectors) below minimum (%lu)", | |
988 | region_size, min_region_size); | |
bd83a4c4 MS |
989 | rs->ti->error = "Supplied region size is too small"; |
990 | return -EINVAL; | |
c1084561 JB |
991 | } |
992 | ||
bd83a4c4 MS |
993 | if (!is_power_of_2(region_size)) { |
994 | rs->ti->error = "Region size is not a power of 2"; | |
995 | return -EINVAL; | |
996 | } | |
c1084561 | 997 | |
bd83a4c4 MS |
998 | if (region_size < rs->md.chunk_sectors) { |
999 | rs->ti->error = "Region size is smaller than the chunk size"; | |
1000 | return -EINVAL; | |
1001 | } | |
c1084561 JB |
1002 | } |
1003 | ||
1004 | /* | |
1005 | * Convert sectors to bytes. | |
1006 | */ | |
89d3d9a1 | 1007 | rs->md.bitmap_info.chunksize = to_bytes(region_size); |
c1084561 JB |
1008 | |
1009 | return 0; | |
1010 | } | |
1011 | ||
eb649123 | 1012 | /* |
55ebbb59 | 1013 | * validate_raid_redundancy |
eb649123 JB |
1014 | * @rs |
1015 | * | |
55ebbb59 JB |
1016 | * Determine if there are enough devices in the array that haven't |
1017 | * failed (or are being rebuilt) to form a usable array. | |
eb649123 JB |
1018 | * |
1019 | * Returns: 0 on success, -EINVAL on failure. | |
1020 | */ | |
55ebbb59 | 1021 | static int validate_raid_redundancy(struct raid_set *rs) |
eb649123 | 1022 | { |
094f394d HM |
1023 | unsigned int i, rebuild_cnt = 0; |
1024 | unsigned int rebuilds_per_group = 0, copies; | |
1025 | unsigned int group_size, last_group_start; | |
eb649123 | 1026 | |
eb649123 | 1027 | for (i = 0; i < rs->md.raid_disks; i++) |
55ebbb59 JB |
1028 | if (!test_bit(In_sync, &rs->dev[i].rdev.flags) || |
1029 | !rs->dev[i].rdev.sb_page) | |
eb649123 JB |
1030 | rebuild_cnt++; |
1031 | ||
53bf5384 | 1032 | switch (rs->md.level) { |
9e7d9367 HM |
1033 | case 0: |
1034 | break; | |
eb649123 JB |
1035 | case 1: |
1036 | if (rebuild_cnt >= rs->md.raid_disks) | |
1037 | goto too_many; | |
1038 | break; | |
1039 | case 4: | |
1040 | case 5: | |
1041 | case 6: | |
1042 | if (rebuild_cnt > rs->raid_type->parity_devs) | |
1043 | goto too_many; | |
1044 | break; | |
1045 | case 10: | |
9dbd1aa3 | 1046 | copies = raid10_md_layout_to_copies(rs->md.new_layout); |
53bf5384 HM |
1047 | if (copies < 2) { |
1048 | DMERR("Bogus raid10 data copies < 2!"); | |
1049 | return -EINVAL; | |
1050 | } | |
1051 | ||
4ec1e369 JB |
1052 | if (rebuild_cnt < copies) |
1053 | break; | |
1054 | ||
1055 | /* | |
1056 | * It is possible to have a higher rebuild count for RAID10, | |
1057 | * as long as the failed devices occur in different mirror | |
1058 | * groups (i.e. different stripes). | |
1059 | * | |
4ec1e369 JB |
1060 | * When checking "near" format, make sure no adjacent devices |
1061 | * have failed beyond what can be handled. In addition to the | |
1062 | * simple case where the number of devices is a multiple of the | |
1063 | * number of copies, we must also handle cases where the number | |
1064 | * of devices is not a multiple of the number of copies. | |
43157840 MS |
1065 | * E.g. dev1 dev2 dev3 dev4 dev5 |
1066 | * A A B B C | |
1067 | * C D D E E | |
4ec1e369 | 1068 | */ |
9dbd1aa3 | 1069 | if (__is_raid10_near(rs->md.new_layout)) { |
ffeeac75 | 1070 | for (i = 0; i < rs->md.raid_disks; i++) { |
fe5d2f4a JB |
1071 | if (!(i % copies)) |
1072 | rebuilds_per_group = 0; | |
9dbd1aa3 | 1073 | if ((!rs->dev[i].rdev.sb_page || |
40ba37e5 | 1074 | !test_bit(In_sync, &rs->dev[i].rdev.flags)) && |
fe5d2f4a JB |
1075 | (++rebuilds_per_group >= copies)) |
1076 | goto too_many; | |
1077 | } | |
1078 | break; | |
1079 | } | |
1080 | ||
1081 | /* | |
1082 | * When checking "far" and "offset" formats, we need to ensure | |
1083 | * that the device that holds its copy is not also dead or | |
1084 | * being rebuilt. (Note that "far" and "offset" formats only | |
1085 | * support two copies right now. These formats also only ever | |
1086 | * use the 'use_far_sets' variant.) | |
1087 | * | |
1088 | * This check is somewhat complicated by the need to account | |
43157840 | 1089 | * for arrays that are not a multiple of (far) copies. This |
fe5d2f4a JB |
1090 | * results in the need to treat the last (potentially larger) |
1091 | * set differently. | |
1092 | */ | |
1093 | group_size = (rs->md.raid_disks / copies); | |
1094 | last_group_start = (rs->md.raid_disks / group_size) - 1; | |
1095 | last_group_start *= group_size; | |
1096 | for (i = 0; i < rs->md.raid_disks; i++) { | |
1097 | if (!(i % copies) && !(i > last_group_start)) | |
55ebbb59 | 1098 | rebuilds_per_group = 0; |
fe5d2f4a JB |
1099 | if ((!rs->dev[i].rdev.sb_page || |
1100 | !test_bit(In_sync, &rs->dev[i].rdev.flags)) && | |
4ec1e369 | 1101 | (++rebuilds_per_group >= copies)) |
fe5d2f4a | 1102 | goto too_many; |
4ec1e369 JB |
1103 | } |
1104 | break; | |
eb649123 | 1105 | default: |
55ebbb59 JB |
1106 | if (rebuild_cnt) |
1107 | return -EINVAL; | |
eb649123 JB |
1108 | } |
1109 | ||
1110 | return 0; | |
1111 | ||
1112 | too_many: | |
eb649123 JB |
1113 | return -EINVAL; |
1114 | } | |
1115 | ||
9d09e663 N |
1116 | /* |
1117 | * Possible arguments are... | |
9d09e663 N |
1118 | * <chunk_size> [optional_args] |
1119 | * | |
32737279 JB |
1120 | * Argument definitions |
1121 | * <chunk_size> The number of sectors per disk that | |
43157840 | 1122 | * will form the "stripe" |
32737279 | 1123 | * [[no]sync] Force or prevent recovery of the |
43157840 | 1124 | * entire array |
9d09e663 | 1125 | * [rebuild <idx>] Rebuild the drive indicated by the index |
32737279 | 1126 | * [daemon_sleep <ms>] Time between bitmap daemon work to |
43157840 | 1127 | * clear bits |
9d09e663 N |
1128 | * [min_recovery_rate <kB/sec/disk>] Throttle RAID initialization |
1129 | * [max_recovery_rate <kB/sec/disk>] Throttle RAID initialization | |
46bed2b5 | 1130 | * [write_mostly <idx>] Indicate a write mostly drive via index |
9d09e663 N |
1131 | * [max_write_behind <sectors>] See '-write-behind=' (man mdadm) |
1132 | * [stripe_cache <sectors>] Stripe cache size for higher RAIDs | |
43157840 | 1133 | * [region_size <sectors>] Defines granularity of bitmap |
63c32ed4 HM |
1134 | * [journal_dev <dev>] raid4/5/6 journaling deviice |
1135 | * (i.e. write hole closing log) | |
63f33b8d JB |
1136 | * |
1137 | * RAID10-only options: | |
43157840 | 1138 | * [raid10_copies <# copies>] Number of copies. (Default: 2) |
fe5d2f4a | 1139 | * [raid10_format <near|far|offset>] Layout algorithm. (Default: near) |
9d09e663 | 1140 | */ |
92c83d79 | 1141 | static int parse_raid_params(struct raid_set *rs, struct dm_arg_set *as, |
094f394d | 1142 | unsigned int num_raid_params) |
9d09e663 | 1143 | { |
9dbd1aa3 | 1144 | int value, raid10_format = ALGORITHM_RAID10_DEFAULT; |
094f394d HM |
1145 | unsigned int raid10_copies = 2; |
1146 | unsigned int i, write_mostly = 0; | |
1147 | unsigned int region_size = 0; | |
542f9038 | 1148 | sector_t max_io_len; |
92c83d79 | 1149 | const char *arg, *key; |
702108d1 | 1150 | struct raid_dev *rd; |
33e53f06 | 1151 | struct raid_type *rt = rs->raid_type; |
92c83d79 HM |
1152 | |
1153 | arg = dm_shift_arg(as); | |
1154 | num_raid_params--; /* Account for chunk_size argument */ | |
1155 | ||
9dbd1aa3 | 1156 | if (kstrtoint(arg, 10, &value) < 0) { |
bd83a4c4 MS |
1157 | rs->ti->error = "Bad numerical argument given for chunk_size"; |
1158 | return -EINVAL; | |
1159 | } | |
9d09e663 N |
1160 | |
1161 | /* | |
1162 | * First, parse the in-order required arguments | |
32737279 | 1163 | * "chunk_size" is the only argument of this type. |
9d09e663 | 1164 | */ |
33e53f06 | 1165 | if (rt_is_raid1(rt)) { |
32737279 JB |
1166 | if (value) |
1167 | DMERR("Ignoring chunk size parameter for RAID 1"); | |
1168 | value = 0; | |
bd83a4c4 MS |
1169 | } else if (!is_power_of_2(value)) { |
1170 | rs->ti->error = "Chunk size must be a power of 2"; | |
1171 | return -EINVAL; | |
1172 | } else if (value < 8) { | |
1173 | rs->ti->error = "Chunk size value is too small"; | |
1174 | return -EINVAL; | |
1175 | } | |
9d09e663 N |
1176 | |
1177 | rs->md.new_chunk_sectors = rs->md.chunk_sectors = value; | |
9d09e663 N |
1178 | |
1179 | /* | |
b12d437b JB |
1180 | * We set each individual device as In_sync with a completed |
1181 | * 'recovery_offset'. If there has been a device failure or | |
1182 | * replacement then one of the following cases applies: | |
1183 | * | |
1184 | * 1) User specifies 'rebuild'. | |
43157840 | 1185 | * - Device is reset when param is read. |
b12d437b | 1186 | * 2) A new device is supplied. |
43157840 | 1187 | * - No matching superblock found, resets device. |
b12d437b | 1188 | * 3) Device failure was transient and returns on reload. |
43157840 | 1189 | * - Failure noticed, resets device for bitmap replay. |
b12d437b | 1190 | * 4) Device hadn't completed recovery after previous failure. |
43157840 | 1191 | * - Superblock is read and overrides recovery_offset. |
b12d437b JB |
1192 | * |
1193 | * What is found in the superblocks of the devices is always | |
1194 | * authoritative, unless 'rebuild' or '[no]sync' was specified. | |
9d09e663 | 1195 | */ |
ffeeac75 | 1196 | for (i = 0; i < rs->raid_disks; i++) { |
9d09e663 | 1197 | set_bit(In_sync, &rs->dev[i].rdev.flags); |
b12d437b JB |
1198 | rs->dev[i].rdev.recovery_offset = MaxSector; |
1199 | } | |
9d09e663 | 1200 | |
b12d437b JB |
1201 | /* |
1202 | * Second, parse the unordered optional arguments | |
1203 | */ | |
9d09e663 | 1204 | for (i = 0; i < num_raid_params; i++) { |
4763e543 | 1205 | key = dm_shift_arg(as); |
bd83a4c4 MS |
1206 | if (!key) { |
1207 | rs->ti->error = "Not enough raid parameters given"; | |
1208 | return -EINVAL; | |
1209 | } | |
92c83d79 | 1210 | |
3fa6cf38 | 1211 | if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_NOSYNC))) { |
4286325b | 1212 | if (test_and_set_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags)) { |
bd83a4c4 MS |
1213 | rs->ti->error = "Only one 'nosync' argument allowed"; |
1214 | return -EINVAL; | |
1215 | } | |
9d09e663 N |
1216 | continue; |
1217 | } | |
3fa6cf38 | 1218 | if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_SYNC))) { |
4286325b | 1219 | if (test_and_set_bit(__CTR_FLAG_SYNC, &rs->ctr_flags)) { |
bd83a4c4 MS |
1220 | rs->ti->error = "Only one 'sync' argument allowed"; |
1221 | return -EINVAL; | |
1222 | } | |
4763e543 HM |
1223 | continue; |
1224 | } | |
3fa6cf38 | 1225 | if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_USE_NEAR_SETS))) { |
4286325b | 1226 | if (test_and_set_bit(__CTR_FLAG_RAID10_USE_NEAR_SETS, &rs->ctr_flags)) { |
bd83a4c4 MS |
1227 | rs->ti->error = "Only one 'raid10_use_new_sets' argument allowed"; |
1228 | return -EINVAL; | |
1229 | } | |
9d09e663 N |
1230 | continue; |
1231 | } | |
1232 | ||
92c83d79 HM |
1233 | arg = dm_shift_arg(as); |
1234 | i++; /* Account for the argument pairs */ | |
bd83a4c4 MS |
1235 | if (!arg) { |
1236 | rs->ti->error = "Wrong number of raid parameters given"; | |
1237 | return -EINVAL; | |
1238 | } | |
63f33b8d | 1239 | |
702108d1 HM |
1240 | /* |
1241 | * Parameters that take a string value are checked here. | |
1242 | */ | |
63c32ed4 | 1243 | /* "raid10_format {near|offset|far} */ |
3fa6cf38 | 1244 | if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_FORMAT))) { |
4286325b | 1245 | if (test_and_set_bit(__CTR_FLAG_RAID10_FORMAT, &rs->ctr_flags)) { |
bd83a4c4 MS |
1246 | rs->ti->error = "Only one 'raid10_format' argument pair allowed"; |
1247 | return -EINVAL; | |
1248 | } | |
1249 | if (!rt_is_raid10(rt)) { | |
1250 | rs->ti->error = "'raid10_format' is an invalid parameter for this RAID type"; | |
1251 | return -EINVAL; | |
1252 | } | |
33e53f06 | 1253 | raid10_format = raid10_name_to_format(arg); |
bd83a4c4 MS |
1254 | if (raid10_format < 0) { |
1255 | rs->ti->error = "Invalid 'raid10_format' value given"; | |
1256 | return raid10_format; | |
1257 | } | |
63f33b8d JB |
1258 | continue; |
1259 | } | |
1260 | ||
6e53636f | 1261 | /* "journal_dev <dev>" */ |
63c32ed4 HM |
1262 | if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_JOURNAL_DEV))) { |
1263 | int r; | |
1264 | struct md_rdev *jdev; | |
1265 | ||
1266 | if (test_and_set_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags)) { | |
1267 | rs->ti->error = "Only one raid4/5/6 set journaling device allowed"; | |
1268 | return -EINVAL; | |
1269 | } | |
1270 | if (!rt_is_raid456(rt)) { | |
1271 | rs->ti->error = "'journal_dev' is an invalid parameter for this RAID type"; | |
1272 | return -EINVAL; | |
1273 | } | |
1274 | r = dm_get_device(rs->ti, arg, dm_table_get_mode(rs->ti->table), | |
1275 | &rs->journal_dev.dev); | |
1276 | if (r) { | |
1277 | rs->ti->error = "raid4/5/6 journal device lookup failure"; | |
1278 | return r; | |
1279 | } | |
1280 | jdev = &rs->journal_dev.rdev; | |
1281 | md_rdev_init(jdev); | |
1282 | jdev->mddev = &rs->md; | |
1283 | jdev->bdev = rs->journal_dev.dev->bdev; | |
1284 | jdev->sectors = to_sector(i_size_read(jdev->bdev->bd_inode)); | |
1285 | if (jdev->sectors < MIN_RAID456_JOURNAL_SPACE) { | |
1286 | rs->ti->error = "No space for raid4/5/6 journal"; | |
1287 | return -ENOSPC; | |
1288 | } | |
6e53636f | 1289 | rs->journal_dev.mode = R5C_JOURNAL_MODE_WRITE_THROUGH; |
63c32ed4 HM |
1290 | set_bit(Journal, &jdev->flags); |
1291 | continue; | |
1292 | } | |
1293 | ||
6e53636f HM |
1294 | /* "journal_mode <mode>" ("journal_dev" mandatory!) */ |
1295 | if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_JOURNAL_MODE))) { | |
1296 | int r; | |
1297 | ||
1298 | if (!test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags)) { | |
1299 | rs->ti->error = "raid4/5/6 'journal_mode' is invalid without 'journal_dev'"; | |
1300 | return -EINVAL; | |
1301 | } | |
1302 | if (test_and_set_bit(__CTR_FLAG_JOURNAL_MODE, &rs->ctr_flags)) { | |
1303 | rs->ti->error = "Only one raid4/5/6 'journal_mode' argument allowed"; | |
1304 | return -EINVAL; | |
1305 | } | |
1306 | r = dm_raid_journal_mode_to_md(arg); | |
1307 | if (r < 0) { | |
1308 | rs->ti->error = "Invalid 'journal_mode' argument"; | |
1309 | return r; | |
1310 | } | |
1311 | rs->journal_dev.mode = r; | |
1312 | continue; | |
1313 | } | |
1314 | ||
63c32ed4 HM |
1315 | /* |
1316 | * Parameters with number values from here on. | |
1317 | */ | |
9dbd1aa3 | 1318 | if (kstrtoint(arg, 10, &value) < 0) { |
bd83a4c4 MS |
1319 | rs->ti->error = "Bad numerical argument given in raid params"; |
1320 | return -EINVAL; | |
1321 | } | |
702108d1 | 1322 | |
3fa6cf38 | 1323 | if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_REBUILD))) { |
702108d1 HM |
1324 | /* |
1325 | * "rebuild" is being passed in by userspace to provide | |
1326 | * indexes of replaced devices and to set up additional | |
1327 | * devices on raid level takeover. | |
43157840 | 1328 | */ |
bb91a63f | 1329 | if (!__within_range(value, 0, rs->raid_disks - 1)) { |
bd83a4c4 MS |
1330 | rs->ti->error = "Invalid rebuild index given"; |
1331 | return -EINVAL; | |
1332 | } | |
702108d1 | 1333 | |
bd83a4c4 MS |
1334 | if (test_and_set_bit(value, (void *) rs->rebuild_disks)) { |
1335 | rs->ti->error = "rebuild for this index already given"; | |
1336 | return -EINVAL; | |
1337 | } | |
ecbfb9f1 | 1338 | |
702108d1 HM |
1339 | rd = rs->dev + value; |
1340 | clear_bit(In_sync, &rd->rdev.flags); | |
1341 | clear_bit(Faulty, &rd->rdev.flags); | |
1342 | rd->rdev.recovery_offset = 0; | |
4286325b | 1343 | set_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags); |
3fa6cf38 | 1344 | } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_WRITE_MOSTLY))) { |
bd83a4c4 MS |
1345 | if (!rt_is_raid1(rt)) { |
1346 | rs->ti->error = "write_mostly option is only valid for RAID1"; | |
1347 | return -EINVAL; | |
1348 | } | |
702108d1 | 1349 | |
bb91a63f | 1350 | if (!__within_range(value, 0, rs->md.raid_disks - 1)) { |
bd83a4c4 MS |
1351 | rs->ti->error = "Invalid write_mostly index given"; |
1352 | return -EINVAL; | |
1353 | } | |
9d09e663 | 1354 | |
5fa146b2 | 1355 | write_mostly++; |
46bed2b5 | 1356 | set_bit(WriteMostly, &rs->dev[value].rdev.flags); |
4286325b | 1357 | set_bit(__CTR_FLAG_WRITE_MOSTLY, &rs->ctr_flags); |
3fa6cf38 | 1358 | } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_MAX_WRITE_BEHIND))) { |
bd83a4c4 MS |
1359 | if (!rt_is_raid1(rt)) { |
1360 | rs->ti->error = "max_write_behind option is only valid for RAID1"; | |
1361 | return -EINVAL; | |
1362 | } | |
702108d1 | 1363 | |
4286325b | 1364 | if (test_and_set_bit(__CTR_FLAG_MAX_WRITE_BEHIND, &rs->ctr_flags)) { |
bd83a4c4 MS |
1365 | rs->ti->error = "Only one max_write_behind argument pair allowed"; |
1366 | return -EINVAL; | |
1367 | } | |
9d09e663 N |
1368 | |
1369 | /* | |
1370 | * In device-mapper, we specify things in sectors, but | |
1371 | * MD records this value in kB | |
1372 | */ | |
1373 | value /= 2; | |
bd83a4c4 MS |
1374 | if (value > COUNTER_MAX) { |
1375 | rs->ti->error = "Max write-behind limit out of range"; | |
1376 | return -EINVAL; | |
1377 | } | |
702108d1 | 1378 | |
9d09e663 | 1379 | rs->md.bitmap_info.max_write_behind = value; |
3fa6cf38 | 1380 | } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_DAEMON_SLEEP))) { |
4286325b | 1381 | if (test_and_set_bit(__CTR_FLAG_DAEMON_SLEEP, &rs->ctr_flags)) { |
bd83a4c4 MS |
1382 | rs->ti->error = "Only one daemon_sleep argument pair allowed"; |
1383 | return -EINVAL; | |
1384 | } | |
1385 | if (!value || (value > MAX_SCHEDULE_TIMEOUT)) { | |
1386 | rs->ti->error = "daemon sleep period out of range"; | |
1387 | return -EINVAL; | |
1388 | } | |
9d09e663 | 1389 | rs->md.bitmap_info.daemon_sleep = value; |
3fa6cf38 | 1390 | } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_DATA_OFFSET))) { |
4763e543 | 1391 | /* Userspace passes new data_offset after having extended the the data image LV */ |
4286325b | 1392 | if (test_and_set_bit(__CTR_FLAG_DATA_OFFSET, &rs->ctr_flags)) { |
bd83a4c4 MS |
1393 | rs->ti->error = "Only one data_offset argument pair allowed"; |
1394 | return -EINVAL; | |
1395 | } | |
4763e543 | 1396 | /* Ensure sensible data offset */ |
75dd3b9e HM |
1397 | if (value < 0 || |
1398 | (value && (value < MIN_FREE_RESHAPE_SPACE || value % to_sector(PAGE_SIZE)))) { | |
bd83a4c4 MS |
1399 | rs->ti->error = "Bogus data_offset value"; |
1400 | return -EINVAL; | |
1401 | } | |
4763e543 | 1402 | rs->data_offset = value; |
3fa6cf38 | 1403 | } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_DELTA_DISKS))) { |
4763e543 | 1404 | /* Define the +/-# of disks to add to/remove from the given raid set */ |
4286325b | 1405 | if (test_and_set_bit(__CTR_FLAG_DELTA_DISKS, &rs->ctr_flags)) { |
bd83a4c4 MS |
1406 | rs->ti->error = "Only one delta_disks argument pair allowed"; |
1407 | return -EINVAL; | |
1408 | } | |
4763e543 | 1409 | /* Ensure MAX_RAID_DEVICES and raid type minimal_devs! */ |
bb91a63f | 1410 | if (!__within_range(abs(value), 1, MAX_RAID_DEVICES - rt->minimal_devs)) { |
bd83a4c4 MS |
1411 | rs->ti->error = "Too many delta_disk requested"; |
1412 | return -EINVAL; | |
1413 | } | |
4763e543 HM |
1414 | |
1415 | rs->delta_disks = value; | |
3fa6cf38 | 1416 | } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_STRIPE_CACHE))) { |
4286325b | 1417 | if (test_and_set_bit(__CTR_FLAG_STRIPE_CACHE, &rs->ctr_flags)) { |
bd83a4c4 MS |
1418 | rs->ti->error = "Only one stripe_cache argument pair allowed"; |
1419 | return -EINVAL; | |
1420 | } | |
1421 | ||
bd83a4c4 MS |
1422 | if (!rt_is_raid456(rt)) { |
1423 | rs->ti->error = "Inappropriate argument: stripe_cache"; | |
1424 | return -EINVAL; | |
1425 | } | |
702108d1 | 1426 | |
9dbd1aa3 | 1427 | rs->stripe_cache_entries = value; |
3fa6cf38 | 1428 | } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_MIN_RECOVERY_RATE))) { |
4286325b | 1429 | if (test_and_set_bit(__CTR_FLAG_MIN_RECOVERY_RATE, &rs->ctr_flags)) { |
bd83a4c4 MS |
1430 | rs->ti->error = "Only one min_recovery_rate argument pair allowed"; |
1431 | return -EINVAL; | |
1432 | } | |
1433 | if (value > INT_MAX) { | |
1434 | rs->ti->error = "min_recovery_rate out of range"; | |
1435 | return -EINVAL; | |
1436 | } | |
9d09e663 | 1437 | rs->md.sync_speed_min = (int)value; |
3fa6cf38 | 1438 | } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_MAX_RECOVERY_RATE))) { |
f15f64d6 | 1439 | if (test_and_set_bit(__CTR_FLAG_MAX_RECOVERY_RATE, &rs->ctr_flags)) { |
bd83a4c4 MS |
1440 | rs->ti->error = "Only one max_recovery_rate argument pair allowed"; |
1441 | return -EINVAL; | |
1442 | } | |
1443 | if (value > INT_MAX) { | |
1444 | rs->ti->error = "max_recovery_rate out of range"; | |
1445 | return -EINVAL; | |
1446 | } | |
9d09e663 | 1447 | rs->md.sync_speed_max = (int)value; |
3fa6cf38 | 1448 | } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_REGION_SIZE))) { |
4286325b | 1449 | if (test_and_set_bit(__CTR_FLAG_REGION_SIZE, &rs->ctr_flags)) { |
bd83a4c4 MS |
1450 | rs->ti->error = "Only one region_size argument pair allowed"; |
1451 | return -EINVAL; | |
1452 | } | |
702108d1 | 1453 | |
c1084561 | 1454 | region_size = value; |
4257e085 | 1455 | rs->requested_bitmap_chunk_sectors = value; |
3fa6cf38 | 1456 | } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_COPIES))) { |
4286325b | 1457 | if (test_and_set_bit(__CTR_FLAG_RAID10_COPIES, &rs->ctr_flags)) { |
bd83a4c4 MS |
1458 | rs->ti->error = "Only one raid10_copies argument pair allowed"; |
1459 | return -EINVAL; | |
1460 | } | |
702108d1 | 1461 | |
bb91a63f | 1462 | if (!__within_range(value, 2, rs->md.raid_disks)) { |
bd83a4c4 MS |
1463 | rs->ti->error = "Bad value for 'raid10_copies'"; |
1464 | return -EINVAL; | |
1465 | } | |
702108d1 | 1466 | |
63f33b8d | 1467 | raid10_copies = value; |
9d09e663 N |
1468 | } else { |
1469 | DMERR("Unable to parse RAID parameter: %s", key); | |
bd83a4c4 MS |
1470 | rs->ti->error = "Unable to parse RAID parameter"; |
1471 | return -EINVAL; | |
9d09e663 N |
1472 | } |
1473 | } | |
1474 | ||
0d851d14 HM |
1475 | if (test_bit(__CTR_FLAG_SYNC, &rs->ctr_flags) && |
1476 | test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags)) { | |
1477 | rs->ti->error = "sync and nosync are mutually exclusive"; | |
1478 | return -EINVAL; | |
1479 | } | |
1480 | ||
37f10be1 HM |
1481 | if (test_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags) && |
1482 | (test_bit(__CTR_FLAG_SYNC, &rs->ctr_flags) || | |
1483 | test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags))) { | |
1484 | rs->ti->error = "sync/nosync and rebuild are mutually exclusive"; | |
1485 | return -EINVAL; | |
1486 | } | |
1487 | ||
5fa146b2 HM |
1488 | if (write_mostly >= rs->md.raid_disks) { |
1489 | rs->ti->error = "Can't set all raid1 devices to write_mostly"; | |
1490 | return -EINVAL; | |
1491 | } | |
1492 | ||
c1084561 JB |
1493 | if (validate_region_size(rs, region_size)) |
1494 | return -EINVAL; | |
1495 | ||
1496 | if (rs->md.chunk_sectors) | |
542f9038 | 1497 | max_io_len = rs->md.chunk_sectors; |
c1084561 | 1498 | else |
542f9038 | 1499 | max_io_len = region_size; |
c1084561 | 1500 | |
542f9038 MS |
1501 | if (dm_set_target_max_io_len(rs->ti, max_io_len)) |
1502 | return -EINVAL; | |
32737279 | 1503 | |
33e53f06 | 1504 | if (rt_is_raid10(rt)) { |
bd83a4c4 MS |
1505 | if (raid10_copies > rs->md.raid_disks) { |
1506 | rs->ti->error = "Not enough devices to satisfy specification"; | |
1507 | return -EINVAL; | |
1508 | } | |
63f33b8d | 1509 | |
33e53f06 | 1510 | rs->md.new_layout = raid10_format_to_md_layout(rs, raid10_format, raid10_copies); |
bd83a4c4 MS |
1511 | if (rs->md.new_layout < 0) { |
1512 | rs->ti->error = "Error getting raid10 format"; | |
1513 | return rs->md.new_layout; | |
1514 | } | |
33e53f06 HM |
1515 | |
1516 | rt = get_raid_type_by_ll(10, rs->md.new_layout); | |
bd83a4c4 MS |
1517 | if (!rt) { |
1518 | rs->ti->error = "Failed to recognize new raid10 layout"; | |
1519 | return -EINVAL; | |
1520 | } | |
33e53f06 HM |
1521 | |
1522 | if ((rt->algorithm == ALGORITHM_RAID10_DEFAULT || | |
1523 | rt->algorithm == ALGORITHM_RAID10_NEAR) && | |
4286325b | 1524 | test_bit(__CTR_FLAG_RAID10_USE_NEAR_SETS, &rs->ctr_flags)) { |
bd83a4c4 MS |
1525 | rs->ti->error = "RAID10 format 'near' and 'raid10_use_near_sets' are incompatible"; |
1526 | return -EINVAL; | |
1527 | } | |
bd83a4c4 | 1528 | } |
702108d1 | 1529 | |
33e53f06 | 1530 | rs->raid10_copies = raid10_copies; |
c039c332 | 1531 | |
9d09e663 N |
1532 | /* Assume there are no metadata devices until the drives are parsed */ |
1533 | rs->md.persistent = 0; | |
1534 | rs->md.external = 1; | |
1535 | ||
f090279e | 1536 | /* Check, if any invalid ctr arguments have been passed in for the raid level */ |
a30cbc0d | 1537 | return rs_check_for_valid_flags(rs); |
9d09e663 N |
1538 | } |
1539 | ||
9dbd1aa3 HM |
1540 | /* Set raid4/5/6 cache size */ |
1541 | static int rs_set_raid456_stripe_cache(struct raid_set *rs) | |
1542 | { | |
1543 | int r; | |
1544 | struct r5conf *conf; | |
1545 | struct mddev *mddev = &rs->md; | |
1546 | uint32_t min_stripes = max(mddev->chunk_sectors, mddev->new_chunk_sectors) / 2; | |
1547 | uint32_t nr_stripes = rs->stripe_cache_entries; | |
1548 | ||
1549 | if (!rt_is_raid456(rs->raid_type)) { | |
1550 | rs->ti->error = "Inappropriate raid level; cannot change stripe_cache size"; | |
1551 | return -EINVAL; | |
1552 | } | |
1553 | ||
1554 | if (nr_stripes < min_stripes) { | |
1555 | DMINFO("Adjusting requested %u stripe cache entries to %u to suit stripe size", | |
1556 | nr_stripes, min_stripes); | |
1557 | nr_stripes = min_stripes; | |
1558 | } | |
1559 | ||
1560 | conf = mddev->private; | |
1561 | if (!conf) { | |
1562 | rs->ti->error = "Cannot change stripe_cache size on inactive RAID set"; | |
1563 | return -EINVAL; | |
1564 | } | |
1565 | ||
1566 | /* Try setting number of stripes in raid456 stripe cache */ | |
1567 | if (conf->min_nr_stripes != nr_stripes) { | |
1568 | r = raid5_set_cache_size(mddev, nr_stripes); | |
1569 | if (r) { | |
1570 | rs->ti->error = "Failed to set raid4/5/6 stripe cache size"; | |
1571 | return r; | |
1572 | } | |
1573 | ||
1574 | DMINFO("%u stripe cache entries", nr_stripes); | |
1575 | } | |
1576 | ||
1577 | return 0; | |
1578 | } | |
1579 | ||
3a1c1ef2 HM |
1580 | /* Return # of data stripes as kept in mddev as of @rs (i.e. as of superblock) */ |
1581 | static unsigned int mddev_data_stripes(struct raid_set *rs) | |
1582 | { | |
1583 | return rs->md.raid_disks - rs->raid_type->parity_devs; | |
1584 | } | |
1585 | ||
40ba37e5 HM |
1586 | /* Return # of data stripes of @rs (i.e. as of ctr) */ |
1587 | static unsigned int rs_data_stripes(struct raid_set *rs) | |
1588 | { | |
1589 | return rs->raid_disks - rs->raid_type->parity_devs; | |
1590 | } | |
1591 | ||
50c4feb9 HM |
1592 | /* |
1593 | * Retrieve rdev->sectors from any valid raid device of @rs | |
1594 | * to allow userpace to pass in arbitray "- -" device tupples. | |
1595 | */ | |
1596 | static sector_t __rdev_sectors(struct raid_set *rs) | |
1597 | { | |
1598 | int i; | |
1599 | ||
1600 | for (i = 0; i < rs->md.raid_disks; i++) { | |
1601 | struct md_rdev *rdev = &rs->dev[i].rdev; | |
1602 | ||
63c32ed4 HM |
1603 | if (!test_bit(Journal, &rdev->flags) && |
1604 | rdev->bdev && rdev->sectors) | |
50c4feb9 HM |
1605 | return rdev->sectors; |
1606 | } | |
1607 | ||
4d49f1b4 | 1608 | return 0; |
50c4feb9 HM |
1609 | } |
1610 | ||
188a212d HM |
1611 | /* Check that calculated dev_sectors fits all component devices. */ |
1612 | static int _check_data_dev_sectors(struct raid_set *rs) | |
1613 | { | |
1614 | sector_t ds = ~0; | |
1615 | struct md_rdev *rdev; | |
1616 | ||
1617 | rdev_for_each(rdev, &rs->md) | |
1618 | if (!test_bit(Journal, &rdev->flags) && rdev->bdev) { | |
1619 | ds = min(ds, to_sector(i_size_read(rdev->bdev->bd_inode))); | |
1620 | if (ds < rs->md.dev_sectors) { | |
1621 | rs->ti->error = "Component device(s) too small"; | |
1622 | return -EINVAL; | |
1623 | } | |
1624 | } | |
1625 | ||
1626 | return 0; | |
1627 | } | |
1628 | ||
40ba37e5 HM |
1629 | /* Calculate the sectors per device and per array used for @rs */ |
1630 | static int rs_set_dev_and_array_sectors(struct raid_set *rs, bool use_mddev) | |
1631 | { | |
1632 | int delta_disks; | |
1633 | unsigned int data_stripes; | |
1634 | struct mddev *mddev = &rs->md; | |
1635 | struct md_rdev *rdev; | |
1636 | sector_t array_sectors = rs->ti->len, dev_sectors = rs->ti->len; | |
1637 | ||
1638 | if (use_mddev) { | |
1639 | delta_disks = mddev->delta_disks; | |
1640 | data_stripes = mddev_data_stripes(rs); | |
1641 | } else { | |
1642 | delta_disks = rs->delta_disks; | |
1643 | data_stripes = rs_data_stripes(rs); | |
1644 | } | |
1645 | ||
1646 | /* Special raid1 case w/o delta_disks support (yet) */ | |
1647 | if (rt_is_raid1(rs->raid_type)) | |
1648 | ; | |
1649 | else if (rt_is_raid10(rs->raid_type)) { | |
1650 | if (rs->raid10_copies < 2 || | |
1651 | delta_disks < 0) { | |
1652 | rs->ti->error = "Bogus raid10 data copies or delta disks"; | |
094f394d | 1653 | return -EINVAL; |
40ba37e5 HM |
1654 | } |
1655 | ||
1656 | dev_sectors *= rs->raid10_copies; | |
1657 | if (sector_div(dev_sectors, data_stripes)) | |
1658 | goto bad; | |
1659 | ||
1660 | array_sectors = (data_stripes + delta_disks) * dev_sectors; | |
1661 | if (sector_div(array_sectors, rs->raid10_copies)) | |
1662 | goto bad; | |
1663 | ||
1664 | } else if (sector_div(dev_sectors, data_stripes)) | |
1665 | goto bad; | |
1666 | ||
1667 | else | |
1668 | /* Striped layouts */ | |
1669 | array_sectors = (data_stripes + delta_disks) * dev_sectors; | |
1670 | ||
1671 | rdev_for_each(rdev, mddev) | |
63c32ed4 HM |
1672 | if (!test_bit(Journal, &rdev->flags)) |
1673 | rdev->sectors = dev_sectors; | |
40ba37e5 HM |
1674 | |
1675 | mddev->array_sectors = array_sectors; | |
1676 | mddev->dev_sectors = dev_sectors; | |
1677 | ||
188a212d | 1678 | return _check_data_dev_sectors(rs); |
40ba37e5 HM |
1679 | bad: |
1680 | rs->ti->error = "Target length not divisible by number of data devices"; | |
094f394d | 1681 | return -EINVAL; |
40ba37e5 HM |
1682 | } |
1683 | ||
4dff2f1e HM |
1684 | /* Setup recovery on @rs */ |
1685 | static void __rs_setup_recovery(struct raid_set *rs, sector_t dev_sectors) | |
1686 | { | |
1687 | /* raid0 does not recover */ | |
1688 | if (rs_is_raid0(rs)) | |
1689 | rs->md.recovery_cp = MaxSector; | |
1690 | /* | |
1691 | * A raid6 set has to be recovered either | |
1692 | * completely or for the grown part to | |
1693 | * ensure proper parity and Q-Syndrome | |
1694 | */ | |
1695 | else if (rs_is_raid6(rs)) | |
1696 | rs->md.recovery_cp = dev_sectors; | |
1697 | /* | |
1698 | * Other raid set types may skip recovery | |
1699 | * depending on the 'nosync' flag. | |
1700 | */ | |
1701 | else | |
1702 | rs->md.recovery_cp = test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags) | |
1703 | ? MaxSector : dev_sectors; | |
1704 | } | |
1705 | ||
1706 | /* Setup recovery on @rs based on raid type, device size and 'nosync' flag */ | |
1707 | static void rs_setup_recovery(struct raid_set *rs, sector_t dev_sectors) | |
1708 | { | |
1709 | if (!dev_sectors) | |
1710 | /* New raid set or 'sync' flag provided */ | |
1711 | __rs_setup_recovery(rs, 0); | |
1712 | else if (dev_sectors == MaxSector) | |
1713 | /* Prevent recovery */ | |
1714 | __rs_setup_recovery(rs, MaxSector); | |
50c4feb9 | 1715 | else if (__rdev_sectors(rs) < dev_sectors) |
4dff2f1e | 1716 | /* Grown raid set */ |
50c4feb9 | 1717 | __rs_setup_recovery(rs, __rdev_sectors(rs)); |
4dff2f1e HM |
1718 | else |
1719 | __rs_setup_recovery(rs, MaxSector); | |
1720 | } | |
1721 | ||
9d09e663 N |
1722 | static void do_table_event(struct work_struct *ws) |
1723 | { | |
1724 | struct raid_set *rs = container_of(ws, struct raid_set, md.event_work); | |
1725 | ||
9d9d939c | 1726 | smp_rmb(); /* Make sure we access most actual mddev properties */ |
61e06e2c HM |
1727 | if (!rs_is_reshaping(rs)) { |
1728 | if (rs_is_raid10(rs)) | |
1729 | rs_set_rdev_sectors(rs); | |
9d9d939c | 1730 | rs_set_capacity(rs); |
61e06e2c | 1731 | } |
9d09e663 N |
1732 | dm_table_event(rs->ti->table); |
1733 | } | |
1734 | ||
1735 | static int raid_is_congested(struct dm_target_callbacks *cb, int bits) | |
1736 | { | |
1737 | struct raid_set *rs = container_of(cb, struct raid_set, callbacks); | |
1738 | ||
5c675f83 | 1739 | return mddev_congested(&rs->md, bits); |
9d09e663 N |
1740 | } |
1741 | ||
ecbfb9f1 HM |
1742 | /* |
1743 | * Make sure a valid takover (level switch) is being requested on @rs | |
1744 | * | |
1745 | * Conversions of raid sets from one MD personality to another | |
1746 | * have to conform to restrictions which are enforced here. | |
ecbfb9f1 HM |
1747 | */ |
1748 | static int rs_check_takeover(struct raid_set *rs) | |
1749 | { | |
1750 | struct mddev *mddev = &rs->md; | |
1751 | unsigned int near_copies; | |
1752 | ||
9dbd1aa3 HM |
1753 | if (rs->md.degraded) { |
1754 | rs->ti->error = "Can't takeover degraded raid set"; | |
1755 | return -EPERM; | |
1756 | } | |
1757 | ||
1758 | if (rs_is_reshaping(rs)) { | |
1759 | rs->ti->error = "Can't takeover reshaping raid set"; | |
1760 | return -EPERM; | |
1761 | } | |
1762 | ||
ecbfb9f1 HM |
1763 | switch (mddev->level) { |
1764 | case 0: | |
1765 | /* raid0 -> raid1/5 with one disk */ | |
1766 | if ((mddev->new_level == 1 || mddev->new_level == 5) && | |
1767 | mddev->raid_disks == 1) | |
1768 | return 0; | |
1769 | ||
1770 | /* raid0 -> raid10 */ | |
1771 | if (mddev->new_level == 10 && | |
9dbd1aa3 | 1772 | !(rs->raid_disks % mddev->raid_disks)) |
ecbfb9f1 HM |
1773 | return 0; |
1774 | ||
1775 | /* raid0 with multiple disks -> raid4/5/6 */ | |
bb91a63f | 1776 | if (__within_range(mddev->new_level, 4, 6) && |
ecbfb9f1 HM |
1777 | mddev->new_layout == ALGORITHM_PARITY_N && |
1778 | mddev->raid_disks > 1) | |
1779 | return 0; | |
1780 | ||
1781 | break; | |
1782 | ||
1783 | case 10: | |
1784 | /* Can't takeover raid10_offset! */ | |
e6ca5e1a | 1785 | if (__is_raid10_offset(mddev->layout)) |
ecbfb9f1 HM |
1786 | break; |
1787 | ||
e6ca5e1a | 1788 | near_copies = __raid10_near_copies(mddev->layout); |
ecbfb9f1 HM |
1789 | |
1790 | /* raid10* -> raid0 */ | |
1791 | if (mddev->new_level == 0) { | |
1792 | /* Can takeover raid10_near with raid disks divisable by data copies! */ | |
1793 | if (near_copies > 1 && | |
1794 | !(mddev->raid_disks % near_copies)) { | |
1795 | mddev->raid_disks /= near_copies; | |
1796 | mddev->delta_disks = mddev->raid_disks; | |
1797 | return 0; | |
1798 | } | |
1799 | ||
1800 | /* Can takeover raid10_far */ | |
1801 | if (near_copies == 1 && | |
e6ca5e1a | 1802 | __raid10_far_copies(mddev->layout) > 1) |
ecbfb9f1 HM |
1803 | return 0; |
1804 | ||
1805 | break; | |
1806 | } | |
1807 | ||
1808 | /* raid10_{near,far} -> raid1 */ | |
1809 | if (mddev->new_level == 1 && | |
e6ca5e1a | 1810 | max(near_copies, __raid10_far_copies(mddev->layout)) == mddev->raid_disks) |
ecbfb9f1 HM |
1811 | return 0; |
1812 | ||
1813 | /* raid10_{near,far} with 2 disks -> raid4/5 */ | |
bb91a63f | 1814 | if (__within_range(mddev->new_level, 4, 5) && |
ecbfb9f1 HM |
1815 | mddev->raid_disks == 2) |
1816 | return 0; | |
1817 | break; | |
1818 | ||
1819 | case 1: | |
1820 | /* raid1 with 2 disks -> raid4/5 */ | |
bb91a63f | 1821 | if (__within_range(mddev->new_level, 4, 5) && |
ecbfb9f1 HM |
1822 | mddev->raid_disks == 2) { |
1823 | mddev->degraded = 1; | |
1824 | return 0; | |
1825 | } | |
1826 | ||
1827 | /* raid1 -> raid0 */ | |
1828 | if (mddev->new_level == 0 && | |
1829 | mddev->raid_disks == 1) | |
1830 | return 0; | |
1831 | ||
1832 | /* raid1 -> raid10 */ | |
1833 | if (mddev->new_level == 10) | |
1834 | return 0; | |
ecbfb9f1 HM |
1835 | break; |
1836 | ||
1837 | case 4: | |
1838 | /* raid4 -> raid0 */ | |
1839 | if (mddev->new_level == 0) | |
1840 | return 0; | |
1841 | ||
1842 | /* raid4 -> raid1/5 with 2 disks */ | |
1843 | if ((mddev->new_level == 1 || mddev->new_level == 5) && | |
1844 | mddev->raid_disks == 2) | |
1845 | return 0; | |
1846 | ||
1847 | /* raid4 -> raid5/6 with parity N */ | |
bb91a63f | 1848 | if (__within_range(mddev->new_level, 5, 6) && |
ecbfb9f1 HM |
1849 | mddev->layout == ALGORITHM_PARITY_N) |
1850 | return 0; | |
1851 | break; | |
1852 | ||
1853 | case 5: | |
1854 | /* raid5 with parity N -> raid0 */ | |
1855 | if (mddev->new_level == 0 && | |
1856 | mddev->layout == ALGORITHM_PARITY_N) | |
1857 | return 0; | |
1858 | ||
1859 | /* raid5 with parity N -> raid4 */ | |
1860 | if (mddev->new_level == 4 && | |
1861 | mddev->layout == ALGORITHM_PARITY_N) | |
1862 | return 0; | |
1863 | ||
1864 | /* raid5 with 2 disks -> raid1/4/10 */ | |
1865 | if ((mddev->new_level == 1 || mddev->new_level == 4 || mddev->new_level == 10) && | |
1866 | mddev->raid_disks == 2) | |
1867 | return 0; | |
1868 | ||
6ee0bae9 | 1869 | /* raid5_* -> raid6_*_6 with Q-Syndrome N (e.g. raid5_ra -> raid6_ra_6 */ |
ecbfb9f1 HM |
1870 | if (mddev->new_level == 6 && |
1871 | ((mddev->layout == ALGORITHM_PARITY_N && mddev->new_layout == ALGORITHM_PARITY_N) || | |
bb91a63f | 1872 | __within_range(mddev->new_layout, ALGORITHM_LEFT_ASYMMETRIC_6, ALGORITHM_RIGHT_SYMMETRIC_6))) |
ecbfb9f1 HM |
1873 | return 0; |
1874 | break; | |
1875 | ||
1876 | case 6: | |
1877 | /* raid6 with parity N -> raid0 */ | |
1878 | if (mddev->new_level == 0 && | |
1879 | mddev->layout == ALGORITHM_PARITY_N) | |
1880 | return 0; | |
1881 | ||
1882 | /* raid6 with parity N -> raid4 */ | |
1883 | if (mddev->new_level == 4 && | |
1884 | mddev->layout == ALGORITHM_PARITY_N) | |
1885 | return 0; | |
1886 | ||
6ee0bae9 | 1887 | /* raid6_*_n with Q-Syndrome N -> raid5_* */ |
ecbfb9f1 HM |
1888 | if (mddev->new_level == 5 && |
1889 | ((mddev->layout == ALGORITHM_PARITY_N && mddev->new_layout == ALGORITHM_PARITY_N) || | |
bb91a63f | 1890 | __within_range(mddev->new_layout, ALGORITHM_LEFT_ASYMMETRIC, ALGORITHM_RIGHT_SYMMETRIC))) |
ecbfb9f1 HM |
1891 | return 0; |
1892 | ||
1893 | default: | |
1894 | break; | |
1895 | } | |
1896 | ||
bd83a4c4 MS |
1897 | rs->ti->error = "takeover not possible"; |
1898 | return -EINVAL; | |
ecbfb9f1 HM |
1899 | } |
1900 | ||
1901 | /* True if @rs requested to be taken over */ | |
1902 | static bool rs_takeover_requested(struct raid_set *rs) | |
1903 | { | |
1904 | return rs->md.new_level != rs->md.level; | |
1905 | } | |
1906 | ||
40ba37e5 HM |
1907 | /* True if @rs is requested to reshape by ctr */ |
1908 | static bool rs_reshape_requested(struct raid_set *rs) | |
1909 | { | |
469b304b | 1910 | bool change; |
40ba37e5 HM |
1911 | struct mddev *mddev = &rs->md; |
1912 | ||
469b304b HM |
1913 | if (rs_takeover_requested(rs)) |
1914 | return false; | |
1915 | ||
552aa679 | 1916 | if (rs_is_raid0(rs)) |
40ba37e5 HM |
1917 | return false; |
1918 | ||
469b304b HM |
1919 | change = mddev->new_layout != mddev->layout || |
1920 | mddev->new_chunk_sectors != mddev->chunk_sectors || | |
1921 | rs->delta_disks; | |
1922 | ||
1923 | /* Historical case to support raid1 reshape without delta disks */ | |
552aa679 | 1924 | if (rs_is_raid1(rs)) { |
7a7c330f HM |
1925 | if (rs->delta_disks) |
1926 | return !!rs->delta_disks; | |
1927 | ||
469b304b HM |
1928 | return !change && |
1929 | mddev->raid_disks != rs->raid_disks; | |
7a7c330f | 1930 | } |
469b304b | 1931 | |
552aa679 | 1932 | if (rs_is_raid10(rs)) |
469b304b HM |
1933 | return change && |
1934 | !__is_raid10_far(mddev->new_layout) && | |
1935 | rs->delta_disks >= 0; | |
1936 | ||
1937 | return change; | |
40ba37e5 HM |
1938 | } |
1939 | ||
33e53f06 | 1940 | /* Features */ |
9b6e5423 | 1941 | #define FEATURE_FLAG_SUPPORTS_V190 0x1 /* Supports extended superblock */ |
33e53f06 HM |
1942 | |
1943 | /* State flags for sb->flags */ | |
1944 | #define SB_FLAG_RESHAPE_ACTIVE 0x1 | |
1945 | #define SB_FLAG_RESHAPE_BACKWARDS 0x2 | |
1946 | ||
b12d437b JB |
1947 | /* |
1948 | * This structure is never routinely used by userspace, unlike md superblocks. | |
1949 | * Devices with this superblock should only ever be accessed via device-mapper. | |
1950 | */ | |
1951 | #define DM_RAID_MAGIC 0x64526D44 | |
1952 | struct dm_raid_superblock { | |
1953 | __le32 magic; /* "DmRd" */ | |
9b6e5423 | 1954 | __le32 compat_features; /* Used to indicate compatible features (like 1.9.0 ondisk metadata extension) */ |
b12d437b | 1955 | |
33e53f06 HM |
1956 | __le32 num_devices; /* Number of devices in this raid set. (Max 64) */ |
1957 | __le32 array_position; /* The position of this drive in the raid set */ | |
b12d437b JB |
1958 | |
1959 | __le64 events; /* Incremented by md when superblock updated */ | |
9b6e5423 | 1960 | __le64 failed_devices; /* Pre 1.9.0 part of bit field of devices to */ |
33e53f06 | 1961 | /* indicate failures (see extension below) */ |
b12d437b JB |
1962 | |
1963 | /* | |
1964 | * This offset tracks the progress of the repair or replacement of | |
1965 | * an individual drive. | |
1966 | */ | |
1967 | __le64 disk_recovery_offset; | |
1968 | ||
1969 | /* | |
33e53f06 | 1970 | * This offset tracks the progress of the initial raid set |
b12d437b JB |
1971 | * synchronisation/parity calculation. |
1972 | */ | |
1973 | __le64 array_resync_offset; | |
1974 | ||
1975 | /* | |
33e53f06 | 1976 | * raid characteristics |
b12d437b JB |
1977 | */ |
1978 | __le32 level; | |
1979 | __le32 layout; | |
1980 | __le32 stripe_sectors; | |
1981 | ||
33e53f06 | 1982 | /******************************************************************** |
9b6e5423 | 1983 | * BELOW FOLLOW V1.9.0 EXTENSIONS TO THE PRISTINE SUPERBLOCK FORMAT!!! |
33e53f06 | 1984 | * |
c4d097d1 | 1985 | * FEATURE_FLAG_SUPPORTS_V190 in the compat_features member indicates that those exist |
33e53f06 HM |
1986 | */ |
1987 | ||
1988 | __le32 flags; /* Flags defining array states for reshaping */ | |
1989 | ||
1990 | /* | |
1991 | * This offset tracks the progress of a raid | |
1992 | * set reshape in order to be able to restart it | |
1993 | */ | |
1994 | __le64 reshape_position; | |
1995 | ||
1996 | /* | |
1997 | * These define the properties of the array in case of an interrupted reshape | |
1998 | */ | |
1999 | __le32 new_level; | |
2000 | __le32 new_layout; | |
2001 | __le32 new_stripe_sectors; | |
2002 | __le32 delta_disks; | |
2003 | ||
2004 | __le64 array_sectors; /* Array size in sectors */ | |
2005 | ||
2006 | /* | |
2007 | * Sector offsets to data on devices (reshaping). | |
2008 | * Needed to support out of place reshaping, thus | |
2009 | * not writing over any stripes whilst converting | |
2010 | * them from old to new layout | |
2011 | */ | |
2012 | __le64 data_offset; | |
2013 | __le64 new_data_offset; | |
2014 | ||
2015 | __le64 sectors; /* Used device size in sectors */ | |
2016 | ||
2017 | /* | |
2018 | * Additonal Bit field of devices indicating failures to support | |
9b6e5423 | 2019 | * up to 256 devices with the 1.9.0 on-disk metadata format |
33e53f06 HM |
2020 | */ |
2021 | __le64 extended_failed_devices[DISKS_ARRAY_ELEMS - 1]; | |
2022 | ||
2023 | __le32 incompat_features; /* Used to indicate any incompatible features */ | |
2024 | ||
2025 | /* Always set rest up to logical block size to 0 when writing (see get_metadata_device() below). */ | |
b12d437b JB |
2026 | } __packed; |
2027 | ||
9dbd1aa3 HM |
2028 | /* |
2029 | * Check for reshape constraints on raid set @rs: | |
2030 | * | |
2031 | * - reshape function non-existent | |
2032 | * - degraded set | |
2033 | * - ongoing recovery | |
2034 | * - ongoing reshape | |
2035 | * | |
2036 | * Returns 0 if none or -EPERM if given constraint | |
2037 | * and error message reference in @errmsg | |
2038 | */ | |
2039 | static int rs_check_reshape(struct raid_set *rs) | |
2040 | { | |
2041 | struct mddev *mddev = &rs->md; | |
2042 | ||
9dbd1aa3 HM |
2043 | if (!mddev->pers || !mddev->pers->check_reshape) |
2044 | rs->ti->error = "Reshape not supported"; | |
2045 | else if (mddev->degraded) | |
2046 | rs->ti->error = "Can't reshape degraded raid set"; | |
2047 | else if (rs_is_recovering(rs)) | |
2048 | rs->ti->error = "Convert request on recovering raid set prohibited"; | |
469b304b | 2049 | else if (rs_is_reshaping(rs)) |
9dbd1aa3 | 2050 | rs->ti->error = "raid set already reshaping!"; |
7a7c330f HM |
2051 | else if (!(rs_is_raid1(rs) || rs_is_raid10(rs) || rs_is_raid456(rs))) |
2052 | rs->ti->error = "Reshaping only supported for raid1/4/5/6/10"; | |
9dbd1aa3 HM |
2053 | else |
2054 | return 0; | |
2055 | ||
2056 | return -EPERM; | |
2057 | } | |
2058 | ||
e2568465 | 2059 | static int read_disk_sb(struct md_rdev *rdev, int size, bool force_reload) |
b12d437b JB |
2060 | { |
2061 | BUG_ON(!rdev->sb_page); | |
2062 | ||
e2568465 | 2063 | if (rdev->sb_loaded && !force_reload) |
b12d437b JB |
2064 | return 0; |
2065 | ||
e2568465 HM |
2066 | rdev->sb_loaded = 0; |
2067 | ||
0a7b8188 | 2068 | if (!sync_page_io(rdev, 0, size, rdev->sb_page, REQ_OP_READ, 0, true)) { |
0447568f JB |
2069 | DMERR("Failed to read superblock of device at position %d", |
2070 | rdev->raid_disk); | |
c32fb9e7 | 2071 | md_error(rdev->mddev, rdev); |
e2568465 HM |
2072 | set_bit(Faulty, &rdev->flags); |
2073 | return -EIO; | |
b12d437b JB |
2074 | } |
2075 | ||
2076 | rdev->sb_loaded = 1; | |
2077 | ||
2078 | return 0; | |
2079 | } | |
2080 | ||
33e53f06 HM |
2081 | static void sb_retrieve_failed_devices(struct dm_raid_superblock *sb, uint64_t *failed_devices) |
2082 | { | |
2083 | failed_devices[0] = le64_to_cpu(sb->failed_devices); | |
2084 | memset(failed_devices + 1, 0, sizeof(sb->extended_failed_devices)); | |
2085 | ||
4286325b | 2086 | if (le32_to_cpu(sb->compat_features) & FEATURE_FLAG_SUPPORTS_V190) { |
33e53f06 HM |
2087 | int i = ARRAY_SIZE(sb->extended_failed_devices); |
2088 | ||
2089 | while (i--) | |
2090 | failed_devices[i+1] = le64_to_cpu(sb->extended_failed_devices[i]); | |
2091 | } | |
2092 | } | |
2093 | ||
7b34df74 HM |
2094 | static void sb_update_failed_devices(struct dm_raid_superblock *sb, uint64_t *failed_devices) |
2095 | { | |
2096 | int i = ARRAY_SIZE(sb->extended_failed_devices); | |
2097 | ||
2098 | sb->failed_devices = cpu_to_le64(failed_devices[0]); | |
2099 | while (i--) | |
2100 | sb->extended_failed_devices[i] = cpu_to_le64(failed_devices[i+1]); | |
2101 | } | |
2102 | ||
2103 | /* | |
2104 | * Synchronize the superblock members with the raid set properties | |
2105 | * | |
2106 | * All superblock data is little endian. | |
2107 | */ | |
fd01b88c | 2108 | static void super_sync(struct mddev *mddev, struct md_rdev *rdev) |
b12d437b | 2109 | { |
7b34df74 HM |
2110 | bool update_failed_devices = false; |
2111 | unsigned int i; | |
2112 | uint64_t failed_devices[DISKS_ARRAY_ELEMS]; | |
b12d437b | 2113 | struct dm_raid_superblock *sb; |
81f382f9 | 2114 | struct raid_set *rs = container_of(mddev, struct raid_set, md); |
b12d437b | 2115 | |
7b34df74 HM |
2116 | /* No metadata device, no superblock */ |
2117 | if (!rdev->meta_bdev) | |
2118 | return; | |
2119 | ||
2120 | BUG_ON(!rdev->sb_page); | |
2121 | ||
b12d437b | 2122 | sb = page_address(rdev->sb_page); |
b12d437b | 2123 | |
7b34df74 | 2124 | sb_retrieve_failed_devices(sb, failed_devices); |
b12d437b | 2125 | |
7b34df74 HM |
2126 | for (i = 0; i < rs->raid_disks; i++) |
2127 | if (!rs->dev[i].data_dev || test_bit(Faulty, &rs->dev[i].rdev.flags)) { | |
2128 | update_failed_devices = true; | |
2129 | set_bit(i, (void *) failed_devices); | |
2130 | } | |
2131 | ||
2132 | if (update_failed_devices) | |
2133 | sb_update_failed_devices(sb, failed_devices); | |
b12d437b JB |
2134 | |
2135 | sb->magic = cpu_to_le32(DM_RAID_MAGIC); | |
9b6e5423 | 2136 | sb->compat_features = cpu_to_le32(FEATURE_FLAG_SUPPORTS_V190); |
b12d437b JB |
2137 | |
2138 | sb->num_devices = cpu_to_le32(mddev->raid_disks); | |
2139 | sb->array_position = cpu_to_le32(rdev->raid_disk); | |
2140 | ||
2141 | sb->events = cpu_to_le64(mddev->events); | |
b12d437b JB |
2142 | |
2143 | sb->disk_recovery_offset = cpu_to_le64(rdev->recovery_offset); | |
2144 | sb->array_resync_offset = cpu_to_le64(mddev->recovery_cp); | |
2145 | ||
2146 | sb->level = cpu_to_le32(mddev->level); | |
2147 | sb->layout = cpu_to_le32(mddev->layout); | |
2148 | sb->stripe_sectors = cpu_to_le32(mddev->chunk_sectors); | |
7b34df74 | 2149 | |
c4d097d1 HM |
2150 | /******************************************************************** |
2151 | * BELOW FOLLOW V1.9.0 EXTENSIONS TO THE PRISTINE SUPERBLOCK FORMAT!!! | |
2152 | * | |
2153 | * FEATURE_FLAG_SUPPORTS_V190 in the compat_features member indicates that those exist | |
2154 | */ | |
7b34df74 HM |
2155 | sb->new_level = cpu_to_le32(mddev->new_level); |
2156 | sb->new_layout = cpu_to_le32(mddev->new_layout); | |
2157 | sb->new_stripe_sectors = cpu_to_le32(mddev->new_chunk_sectors); | |
2158 | ||
2159 | sb->delta_disks = cpu_to_le32(mddev->delta_disks); | |
2160 | ||
2161 | smp_rmb(); /* Make sure we access most recent reshape position */ | |
2162 | sb->reshape_position = cpu_to_le64(mddev->reshape_position); | |
2163 | if (le64_to_cpu(sb->reshape_position) != MaxSector) { | |
2164 | /* Flag ongoing reshape */ | |
2165 | sb->flags |= cpu_to_le32(SB_FLAG_RESHAPE_ACTIVE); | |
2166 | ||
2167 | if (mddev->delta_disks < 0 || mddev->reshape_backwards) | |
2168 | sb->flags |= cpu_to_le32(SB_FLAG_RESHAPE_BACKWARDS); | |
4286325b MS |
2169 | } else { |
2170 | /* Clear reshape flags */ | |
2171 | sb->flags &= ~(cpu_to_le32(SB_FLAG_RESHAPE_ACTIVE|SB_FLAG_RESHAPE_BACKWARDS)); | |
2172 | } | |
7b34df74 HM |
2173 | |
2174 | sb->array_sectors = cpu_to_le64(mddev->array_sectors); | |
2175 | sb->data_offset = cpu_to_le64(rdev->data_offset); | |
2176 | sb->new_data_offset = cpu_to_le64(rdev->new_data_offset); | |
2177 | sb->sectors = cpu_to_le64(rdev->sectors); | |
b2a4872a | 2178 | sb->incompat_features = cpu_to_le32(0); |
7b34df74 HM |
2179 | |
2180 | /* Zero out the rest of the payload after the size of the superblock */ | |
2181 | memset(sb + 1, 0, rdev->sb_size - sizeof(*sb)); | |
b12d437b JB |
2182 | } |
2183 | ||
2184 | /* | |
2185 | * super_load | |
2186 | * | |
2187 | * This function creates a superblock if one is not found on the device | |
2188 | * and will decide which superblock to use if there's a choice. | |
2189 | * | |
2190 | * Return: 1 if use rdev, 0 if use refdev, -Exxx otherwise | |
2191 | */ | |
3cb03002 | 2192 | static int super_load(struct md_rdev *rdev, struct md_rdev *refdev) |
b12d437b | 2193 | { |
73c6f239 | 2194 | int r; |
b12d437b JB |
2195 | struct dm_raid_superblock *sb; |
2196 | struct dm_raid_superblock *refsb; | |
2197 | uint64_t events_sb, events_refsb; | |
2198 | ||
e2568465 | 2199 | r = read_disk_sb(rdev, rdev->sb_size, false); |
73c6f239 HM |
2200 | if (r) |
2201 | return r; | |
b12d437b JB |
2202 | |
2203 | sb = page_address(rdev->sb_page); | |
3aa3b2b2 JB |
2204 | |
2205 | /* | |
2206 | * Two cases that we want to write new superblocks and rebuild: | |
2207 | * 1) New device (no matching magic number) | |
2208 | * 2) Device specified for rebuild (!In_sync w/ offset == 0) | |
2209 | */ | |
2210 | if ((sb->magic != cpu_to_le32(DM_RAID_MAGIC)) || | |
2211 | (!test_bit(In_sync, &rdev->flags) && !rdev->recovery_offset)) { | |
b12d437b JB |
2212 | super_sync(rdev->mddev, rdev); |
2213 | ||
2214 | set_bit(FirstUse, &rdev->flags); | |
9b6e5423 | 2215 | sb->compat_features = cpu_to_le32(FEATURE_FLAG_SUPPORTS_V190); |
b12d437b JB |
2216 | |
2217 | /* Force writing of superblocks to disk */ | |
2953079c | 2218 | set_bit(MD_SB_CHANGE_DEVS, &rdev->mddev->sb_flags); |
b12d437b JB |
2219 | |
2220 | /* Any superblock is better than none, choose that if given */ | |
2221 | return refdev ? 0 : 1; | |
2222 | } | |
2223 | ||
2224 | if (!refdev) | |
2225 | return 1; | |
2226 | ||
2227 | events_sb = le64_to_cpu(sb->events); | |
2228 | ||
2229 | refsb = page_address(refdev->sb_page); | |
2230 | events_refsb = le64_to_cpu(refsb->events); | |
2231 | ||
2232 | return (events_sb > events_refsb) ? 1 : 0; | |
2233 | } | |
2234 | ||
33e53f06 | 2235 | static int super_init_validation(struct raid_set *rs, struct md_rdev *rdev) |
b12d437b JB |
2236 | { |
2237 | int role; | |
33e53f06 HM |
2238 | unsigned int d; |
2239 | struct mddev *mddev = &rs->md; | |
b12d437b | 2240 | uint64_t events_sb; |
33e53f06 | 2241 | uint64_t failed_devices[DISKS_ARRAY_ELEMS]; |
b12d437b | 2242 | struct dm_raid_superblock *sb; |
33e53f06 | 2243 | uint32_t new_devs = 0, rebuild_and_new = 0, rebuilds = 0; |
dafb20fa | 2244 | struct md_rdev *r; |
b12d437b JB |
2245 | struct dm_raid_superblock *sb2; |
2246 | ||
2247 | sb = page_address(rdev->sb_page); | |
2248 | events_sb = le64_to_cpu(sb->events); | |
b12d437b JB |
2249 | |
2250 | /* | |
2251 | * Initialise to 1 if this is a new superblock. | |
2252 | */ | |
2253 | mddev->events = events_sb ? : 1; | |
2254 | ||
33e53f06 HM |
2255 | mddev->reshape_position = MaxSector; |
2256 | ||
453c2a89 HM |
2257 | mddev->raid_disks = le32_to_cpu(sb->num_devices); |
2258 | mddev->level = le32_to_cpu(sb->level); | |
2259 | mddev->layout = le32_to_cpu(sb->layout); | |
2260 | mddev->chunk_sectors = le32_to_cpu(sb->stripe_sectors); | |
2261 | ||
b12d437b | 2262 | /* |
33e53f06 HM |
2263 | * Reshaping is supported, e.g. reshape_position is valid |
2264 | * in superblock and superblock content is authoritative. | |
b12d437b | 2265 | */ |
4286325b | 2266 | if (le32_to_cpu(sb->compat_features) & FEATURE_FLAG_SUPPORTS_V190) { |
33e53f06 | 2267 | /* Superblock is authoritative wrt given raid set layout! */ |
33e53f06 HM |
2268 | mddev->new_level = le32_to_cpu(sb->new_level); |
2269 | mddev->new_layout = le32_to_cpu(sb->new_layout); | |
2270 | mddev->new_chunk_sectors = le32_to_cpu(sb->new_stripe_sectors); | |
2271 | mddev->delta_disks = le32_to_cpu(sb->delta_disks); | |
2272 | mddev->array_sectors = le64_to_cpu(sb->array_sectors); | |
2273 | ||
2274 | /* raid was reshaping and got interrupted */ | |
4286325b MS |
2275 | if (le32_to_cpu(sb->flags) & SB_FLAG_RESHAPE_ACTIVE) { |
2276 | if (test_bit(__CTR_FLAG_DELTA_DISKS, &rs->ctr_flags)) { | |
33e53f06 HM |
2277 | DMERR("Reshape requested but raid set is still reshaping"); |
2278 | return -EINVAL; | |
2279 | } | |
b12d437b | 2280 | |
33e53f06 | 2281 | if (mddev->delta_disks < 0 || |
4286325b | 2282 | (!mddev->delta_disks && (le32_to_cpu(sb->flags) & SB_FLAG_RESHAPE_BACKWARDS))) |
33e53f06 HM |
2283 | mddev->reshape_backwards = 1; |
2284 | else | |
2285 | mddev->reshape_backwards = 0; | |
2286 | ||
2287 | mddev->reshape_position = le64_to_cpu(sb->reshape_position); | |
2288 | rs->raid_type = get_raid_type_by_ll(mddev->level, mddev->layout); | |
2289 | } | |
2290 | ||
2291 | } else { | |
2292 | /* | |
9b6e5423 | 2293 | * No takeover/reshaping, because we don't have the extended v1.9.0 metadata |
33e53f06 | 2294 | */ |
453c2a89 HM |
2295 | struct raid_type *rt_cur = get_raid_type_by_ll(mddev->level, mddev->layout); |
2296 | struct raid_type *rt_new = get_raid_type_by_ll(mddev->new_level, mddev->new_layout); | |
33e53f06 | 2297 | |
453c2a89 HM |
2298 | if (rs_takeover_requested(rs)) { |
2299 | if (rt_cur && rt_new) | |
2300 | DMERR("Takeover raid sets from %s to %s not yet supported by metadata. (raid level change)", | |
2301 | rt_cur->name, rt_new->name); | |
2302 | else | |
2303 | DMERR("Takeover raid sets not yet supported by metadata. (raid level change)"); | |
2304 | return -EINVAL; | |
2305 | } else if (rs_reshape_requested(rs)) { | |
2306 | DMERR("Reshaping raid sets not yet supported by metadata. (raid layout change keeping level)"); | |
2307 | if (mddev->layout != mddev->new_layout) { | |
2308 | if (rt_cur && rt_new) | |
2309 | DMERR(" current layout %s vs new layout %s", | |
2310 | rt_cur->name, rt_new->name); | |
2311 | else | |
2312 | DMERR(" current layout 0x%X vs new layout 0x%X", | |
2313 | le32_to_cpu(sb->layout), mddev->new_layout); | |
2314 | } | |
2315 | if (mddev->chunk_sectors != mddev->new_chunk_sectors) | |
2316 | DMERR(" current stripe sectors %u vs new stripe sectors %u", | |
2317 | mddev->chunk_sectors, mddev->new_chunk_sectors); | |
2318 | if (rs->delta_disks) | |
2319 | DMERR(" current %u disks vs new %u disks", | |
2320 | mddev->raid_disks, mddev->raid_disks + rs->delta_disks); | |
2321 | if (rs_is_raid10(rs)) { | |
2322 | DMERR(" Old layout: %s w/ %u copies", | |
2323 | raid10_md_layout_to_format(mddev->layout), | |
2324 | raid10_md_layout_to_copies(mddev->layout)); | |
2325 | DMERR(" New layout: %s w/ %u copies", | |
2326 | raid10_md_layout_to_format(mddev->new_layout), | |
2327 | raid10_md_layout_to_copies(mddev->new_layout)); | |
2328 | } | |
33e53f06 HM |
2329 | return -EINVAL; |
2330 | } | |
2331 | ||
b052b07c | 2332 | DMINFO("Discovered old metadata format; upgrading to extended metadata format"); |
b12d437b JB |
2333 | } |
2334 | ||
4286325b | 2335 | if (!test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags)) |
b12d437b JB |
2336 | mddev->recovery_cp = le64_to_cpu(sb->array_resync_offset); |
2337 | ||
2338 | /* | |
2339 | * During load, we set FirstUse if a new superblock was written. | |
2340 | * There are two reasons we might not have a superblock: | |
33e53f06 | 2341 | * 1) The raid set is brand new - in which case, all of the |
43157840 | 2342 | * devices must have their In_sync bit set. Also, |
b12d437b | 2343 | * recovery_cp must be 0, unless forced. |
33e53f06 | 2344 | * 2) This is a new device being added to an old raid set |
b12d437b JB |
2345 | * and the new device needs to be rebuilt - in which |
2346 | * case the In_sync bit will /not/ be set and | |
2347 | * recovery_cp must be MaxSector. | |
9dbd1aa3 HM |
2348 | * 3) This is/are a new device(s) being added to an old |
2349 | * raid set during takeover to a higher raid level | |
2350 | * to provide capacity for redundancy or during reshape | |
2351 | * to add capacity to grow the raid set. | |
b12d437b | 2352 | */ |
33e53f06 | 2353 | d = 0; |
dafb20fa | 2354 | rdev_for_each(r, mddev) { |
63c32ed4 HM |
2355 | if (test_bit(Journal, &rdev->flags)) |
2356 | continue; | |
2357 | ||
33e53f06 HM |
2358 | if (test_bit(FirstUse, &r->flags)) |
2359 | new_devs++; | |
2360 | ||
b12d437b | 2361 | if (!test_bit(In_sync, &r->flags)) { |
33e53f06 HM |
2362 | DMINFO("Device %d specified for rebuild; clearing superblock", |
2363 | r->raid_disk); | |
b12d437b | 2364 | rebuilds++; |
33e53f06 HM |
2365 | |
2366 | if (test_bit(FirstUse, &r->flags)) | |
2367 | rebuild_and_new++; | |
2368 | } | |
2369 | ||
2370 | d++; | |
b12d437b JB |
2371 | } |
2372 | ||
33e53f06 HM |
2373 | if (new_devs == rs->raid_disks || !rebuilds) { |
2374 | /* Replace a broken device */ | |
2375 | if (new_devs == 1 && !rs->delta_disks) | |
2376 | ; | |
2377 | if (new_devs == rs->raid_disks) { | |
2378 | DMINFO("Superblocks created for new raid set"); | |
b12d437b | 2379 | set_bit(MD_ARRAY_FIRST_USE, &mddev->flags); |
9dbd1aa3 HM |
2380 | } else if (new_devs != rebuilds && |
2381 | new_devs != rs->delta_disks) { | |
33e53f06 HM |
2382 | DMERR("New device injected into existing raid set without " |
2383 | "'delta_disks' or 'rebuild' parameter specified"); | |
b12d437b JB |
2384 | return -EINVAL; |
2385 | } | |
33e53f06 HM |
2386 | } else if (new_devs && new_devs != rebuilds) { |
2387 | DMERR("%u 'rebuild' devices cannot be injected into" | |
2388 | " a raid set with %u other first-time devices", | |
2389 | rebuilds, new_devs); | |
b12d437b | 2390 | return -EINVAL; |
33e53f06 HM |
2391 | } else if (rebuilds) { |
2392 | if (rebuild_and_new && rebuilds != rebuild_and_new) { | |
2393 | DMERR("new device%s provided without 'rebuild'", | |
2394 | new_devs > 1 ? "s" : ""); | |
2395 | return -EINVAL; | |
11e47232 | 2396 | } else if (!test_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags) && rs_is_recovering(rs)) { |
33e53f06 HM |
2397 | DMERR("'rebuild' specified while raid set is not in-sync (recovery_cp=%llu)", |
2398 | (unsigned long long) mddev->recovery_cp); | |
2399 | return -EINVAL; | |
9dbd1aa3 HM |
2400 | } else if (rs_is_reshaping(rs)) { |
2401 | DMERR("'rebuild' specified while raid set is being reshaped (reshape_position=%llu)", | |
2402 | (unsigned long long) mddev->reshape_position); | |
33e53f06 HM |
2403 | return -EINVAL; |
2404 | } | |
b12d437b JB |
2405 | } |
2406 | ||
2407 | /* | |
2408 | * Now we set the Faulty bit for those devices that are | |
2409 | * recorded in the superblock as failed. | |
2410 | */ | |
33e53f06 | 2411 | sb_retrieve_failed_devices(sb, failed_devices); |
dafb20fa | 2412 | rdev_for_each(r, mddev) { |
63c32ed4 HM |
2413 | if (test_bit(Journal, &rdev->flags) || |
2414 | !r->sb_page) | |
b12d437b JB |
2415 | continue; |
2416 | sb2 = page_address(r->sb_page); | |
2417 | sb2->failed_devices = 0; | |
33e53f06 | 2418 | memset(sb2->extended_failed_devices, 0, sizeof(sb2->extended_failed_devices)); |
b12d437b JB |
2419 | |
2420 | /* | |
2421 | * Check for any device re-ordering. | |
2422 | */ | |
2423 | if (!test_bit(FirstUse, &r->flags) && (r->raid_disk >= 0)) { | |
2424 | role = le32_to_cpu(sb2->array_position); | |
33e53f06 HM |
2425 | if (role < 0) |
2426 | continue; | |
2427 | ||
b12d437b | 2428 | if (role != r->raid_disk) { |
453c2a89 | 2429 | if (rs_is_raid10(rs) && __is_raid10_near(mddev->layout)) { |
e6ca5e1a | 2430 | if (mddev->raid_disks % __raid10_near_copies(mddev->layout) || |
bd83a4c4 MS |
2431 | rs->raid_disks % rs->raid10_copies) { |
2432 | rs->ti->error = | |
2433 | "Cannot change raid10 near set to odd # of devices!"; | |
2434 | return -EINVAL; | |
2435 | } | |
33e53f06 HM |
2436 | |
2437 | sb2->array_position = cpu_to_le32(r->raid_disk); | |
2438 | ||
2439 | } else if (!(rs_is_raid10(rs) && rt_is_raid0(rs->raid_type)) && | |
bd83a4c4 MS |
2440 | !(rs_is_raid0(rs) && rt_is_raid10(rs->raid_type)) && |
2441 | !rt_is_raid1(rs->raid_type)) { | |
2442 | rs->ti->error = "Cannot change device positions in raid set"; | |
2443 | return -EINVAL; | |
2444 | } | |
33e53f06 | 2445 | |
bd83a4c4 | 2446 | DMINFO("raid device #%d now at position #%d", role, r->raid_disk); |
b12d437b JB |
2447 | } |
2448 | ||
2449 | /* | |
2450 | * Partial recovery is performed on | |
2451 | * returning failed devices. | |
2452 | */ | |
33e53f06 | 2453 | if (test_bit(role, (void *) failed_devices)) |
b12d437b JB |
2454 | set_bit(Faulty, &r->flags); |
2455 | } | |
2456 | } | |
2457 | ||
2458 | return 0; | |
2459 | } | |
2460 | ||
0cf45031 | 2461 | static int super_validate(struct raid_set *rs, struct md_rdev *rdev) |
b12d437b | 2462 | { |
0cf45031 | 2463 | struct mddev *mddev = &rs->md; |
33e53f06 HM |
2464 | struct dm_raid_superblock *sb; |
2465 | ||
c63ede3b | 2466 | if (rs_is_raid0(rs) || !rdev->sb_page || rdev->raid_disk < 0) |
33e53f06 HM |
2467 | return 0; |
2468 | ||
2469 | sb = page_address(rdev->sb_page); | |
b12d437b JB |
2470 | |
2471 | /* | |
2472 | * If mddev->events is not set, we know we have not yet initialized | |
2473 | * the array. | |
2474 | */ | |
33e53f06 | 2475 | if (!mddev->events && super_init_validation(rs, rdev)) |
b12d437b JB |
2476 | return -EINVAL; |
2477 | ||
5c33677c AW |
2478 | if (le32_to_cpu(sb->compat_features) && |
2479 | le32_to_cpu(sb->compat_features) != FEATURE_FLAG_SUPPORTS_V190) { | |
9b6e5423 MS |
2480 | rs->ti->error = "Unable to assemble array: Unknown flag(s) in compatible feature flags"; |
2481 | return -EINVAL; | |
2482 | } | |
2483 | ||
2484 | if (sb->incompat_features) { | |
ecbfb9f1 | 2485 | rs->ti->error = "Unable to assemble array: No incompatible feature flags supported yet"; |
4c9971ca HM |
2486 | return -EINVAL; |
2487 | } | |
2488 | ||
0cf45031 | 2489 | /* Enable bitmap creation for RAID levels != 0 */ |
676fa5ad | 2490 | mddev->bitmap_info.offset = rt_is_raid0(rs->raid_type) ? 0 : to_sector(4096); |
977f1a0a | 2491 | mddev->bitmap_info.default_offset = mddev->bitmap_info.offset; |
0cf45031 | 2492 | |
33e53f06 | 2493 | if (!test_and_clear_bit(FirstUse, &rdev->flags)) { |
c4d097d1 HM |
2494 | /* |
2495 | * Retrieve rdev size stored in superblock to be prepared for shrink. | |
2496 | * Check extended superblock members are present otherwise the size | |
2497 | * will not be set! | |
2498 | */ | |
2499 | if (le32_to_cpu(sb->compat_features) & FEATURE_FLAG_SUPPORTS_V190) | |
2500 | rdev->sectors = le64_to_cpu(sb->sectors); | |
2501 | ||
b12d437b | 2502 | rdev->recovery_offset = le64_to_cpu(sb->disk_recovery_offset); |
33e53f06 HM |
2503 | if (rdev->recovery_offset == MaxSector) |
2504 | set_bit(In_sync, &rdev->flags); | |
2505 | /* | |
2506 | * If no reshape in progress -> we're recovering single | |
2507 | * disk(s) and have to set the device(s) to out-of-sync | |
2508 | */ | |
9dbd1aa3 | 2509 | else if (!rs_is_reshaping(rs)) |
33e53f06 | 2510 | clear_bit(In_sync, &rdev->flags); /* Mandatory for recovery */ |
b12d437b JB |
2511 | } |
2512 | ||
2513 | /* | |
2514 | * If a device comes back, set it as not In_sync and no longer faulty. | |
2515 | */ | |
33e53f06 HM |
2516 | if (test_and_clear_bit(Faulty, &rdev->flags)) { |
2517 | rdev->recovery_offset = 0; | |
b12d437b JB |
2518 | clear_bit(In_sync, &rdev->flags); |
2519 | rdev->saved_raid_disk = rdev->raid_disk; | |
b12d437b JB |
2520 | } |
2521 | ||
33e53f06 HM |
2522 | /* Reshape support -> restore repective data offsets */ |
2523 | rdev->data_offset = le64_to_cpu(sb->data_offset); | |
2524 | rdev->new_data_offset = le64_to_cpu(sb->new_data_offset); | |
b12d437b JB |
2525 | |
2526 | return 0; | |
2527 | } | |
2528 | ||
2529 | /* | |
2530 | * Analyse superblocks and select the freshest. | |
2531 | */ | |
2532 | static int analyse_superblocks(struct dm_target *ti, struct raid_set *rs) | |
2533 | { | |
73c6f239 | 2534 | int r; |
c63ede3b | 2535 | struct md_rdev *rdev, *freshest; |
fd01b88c | 2536 | struct mddev *mddev = &rs->md; |
b12d437b JB |
2537 | |
2538 | freshest = NULL; | |
c63ede3b | 2539 | rdev_for_each(rdev, mddev) { |
63c32ed4 HM |
2540 | if (test_bit(Journal, &rdev->flags)) |
2541 | continue; | |
2542 | ||
23397844 HM |
2543 | if (!rdev->meta_bdev) |
2544 | continue; | |
2545 | ||
2546 | /* Set superblock offset/size for metadata device. */ | |
2547 | rdev->sb_start = 0; | |
2548 | rdev->sb_size = bdev_logical_block_size(rdev->meta_bdev); | |
2549 | if (rdev->sb_size < sizeof(struct dm_raid_superblock) || rdev->sb_size > PAGE_SIZE) { | |
2550 | DMERR("superblock size of a logical block is no longer valid"); | |
2551 | return -EINVAL; | |
2552 | } | |
2553 | ||
761becff | 2554 | /* |
c76d53f4 | 2555 | * Skipping super_load due to CTR_FLAG_SYNC will cause |
761becff | 2556 | * the array to undergo initialization again as |
43157840 | 2557 | * though it were new. This is the intended effect |
761becff JB |
2558 | * of the "sync" directive. |
2559 | * | |
c63ede3b HM |
2560 | * With reshaping capability added, we must ensure that |
2561 | * that the "sync" directive is disallowed during the reshape. | |
761becff | 2562 | */ |
4286325b | 2563 | if (test_bit(__CTR_FLAG_SYNC, &rs->ctr_flags)) |
761becff JB |
2564 | continue; |
2565 | ||
73c6f239 | 2566 | r = super_load(rdev, freshest); |
b12d437b | 2567 | |
73c6f239 | 2568 | switch (r) { |
b12d437b JB |
2569 | case 1: |
2570 | freshest = rdev; | |
2571 | break; | |
2572 | case 0: | |
2573 | break; | |
2574 | default: | |
c63ede3b | 2575 | /* This is a failure to read the superblock from the metadata device. */ |
9e7d9367 HM |
2576 | /* |
2577 | * We have to keep any raid0 data/metadata device pairs or | |
2578 | * the MD raid0 personality will fail to start the array. | |
2579 | */ | |
2580 | if (rs_is_raid0(rs)) | |
2581 | continue; | |
2582 | ||
55ebbb59 | 2583 | /* |
c63ede3b HM |
2584 | * We keep the dm_devs to be able to emit the device tuple |
2585 | * properly on the table line in raid_status() (rather than | |
2586 | * mistakenly acting as if '- -' got passed into the constructor). | |
2587 | * | |
2588 | * The rdev has to stay on the same_set list to allow for | |
2589 | * the attempt to restore faulty devices on second resume. | |
55ebbb59 | 2590 | */ |
c63ede3b HM |
2591 | rdev->raid_disk = rdev->saved_raid_disk = -1; |
2592 | break; | |
b12d437b JB |
2593 | } |
2594 | } | |
2595 | ||
2596 | if (!freshest) | |
2597 | return 0; | |
2598 | ||
2599 | /* | |
2600 | * Validation of the freshest device provides the source of | |
2601 | * validation for the remaining devices. | |
2602 | */ | |
9dbd1aa3 HM |
2603 | rs->ti->error = "Unable to assemble array: Invalid superblocks"; |
2604 | if (super_validate(rs, freshest)) | |
bd83a4c4 | 2605 | return -EINVAL; |
b12d437b | 2606 | |
f4af3f82 HM |
2607 | if (validate_raid_redundancy(rs)) { |
2608 | rs->ti->error = "Insufficient redundancy to activate array"; | |
2609 | return -EINVAL; | |
2610 | } | |
2611 | ||
dafb20fa | 2612 | rdev_for_each(rdev, mddev) |
63c32ed4 HM |
2613 | if (!test_bit(Journal, &rdev->flags) && |
2614 | rdev != freshest && | |
2615 | super_validate(rs, rdev)) | |
b12d437b | 2616 | return -EINVAL; |
b12d437b JB |
2617 | return 0; |
2618 | } | |
2619 | ||
40ba37e5 HM |
2620 | /* |
2621 | * Adjust data_offset and new_data_offset on all disk members of @rs | |
2622 | * for out of place reshaping if requested by contructor | |
2623 | * | |
2624 | * We need free space at the beginning of each raid disk for forward | |
2625 | * and at the end for backward reshapes which userspace has to provide | |
2626 | * via remapping/reordering of space. | |
2627 | */ | |
2628 | static int rs_adjust_data_offsets(struct raid_set *rs) | |
2629 | { | |
2630 | sector_t data_offset = 0, new_data_offset = 0; | |
2631 | struct md_rdev *rdev; | |
2632 | ||
2633 | /* Constructor did not request data offset change */ | |
2634 | if (!test_bit(__CTR_FLAG_DATA_OFFSET, &rs->ctr_flags)) { | |
2635 | if (!rs_is_reshapable(rs)) | |
2636 | goto out; | |
2637 | ||
2638 | return 0; | |
2639 | } | |
2640 | ||
2641 | /* HM FIXME: get InSync raid_dev? */ | |
2642 | rdev = &rs->dev[0].rdev; | |
2643 | ||
2644 | if (rs->delta_disks < 0) { | |
2645 | /* | |
2646 | * Removing disks (reshaping backwards): | |
2647 | * | |
2648 | * - before reshape: data is at offset 0 and free space | |
2649 | * is at end of each component LV | |
2650 | * | |
2651 | * - after reshape: data is at offset rs->data_offset != 0 on each component LV | |
2652 | */ | |
2653 | data_offset = 0; | |
2654 | new_data_offset = rs->data_offset; | |
2655 | ||
2656 | } else if (rs->delta_disks > 0) { | |
2657 | /* | |
2658 | * Adding disks (reshaping forwards): | |
2659 | * | |
2660 | * - before reshape: data is at offset rs->data_offset != 0 and | |
2661 | * free space is at begin of each component LV | |
2662 | * | |
2663 | * - after reshape: data is at offset 0 on each component LV | |
2664 | */ | |
2665 | data_offset = rs->data_offset; | |
2666 | new_data_offset = 0; | |
2667 | ||
2668 | } else { | |
2669 | /* | |
2670 | * User space passes in 0 for data offset after having removed reshape space | |
2671 | * | |
2672 | * - or - (data offset != 0) | |
2673 | * | |
2674 | * Changing RAID layout or chunk size -> toggle offsets | |
2675 | * | |
2676 | * - before reshape: data is at offset rs->data_offset 0 and | |
2677 | * free space is at end of each component LV | |
2678 | * -or- | |
2679 | * data is at offset rs->data_offset != 0 and | |
2680 | * free space is at begin of each component LV | |
2681 | * | |
2527b56e HM |
2682 | * - after reshape: data is at offset 0 if it was at offset != 0 |
2683 | * or at offset != 0 if it was at offset 0 | |
40ba37e5 HM |
2684 | * on each component LV |
2685 | * | |
2686 | */ | |
2687 | data_offset = rs->data_offset ? rdev->data_offset : 0; | |
2688 | new_data_offset = data_offset ? 0 : rs->data_offset; | |
2689 | set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags); | |
2690 | } | |
2691 | ||
2692 | /* | |
2693 | * Make sure we got a minimum amount of free sectors per device | |
2694 | */ | |
2695 | if (rs->data_offset && | |
052b2b1e | 2696 | to_sector(i_size_read(rdev->bdev->bd_inode)) - rs->md.dev_sectors < MIN_FREE_RESHAPE_SPACE) { |
40ba37e5 HM |
2697 | rs->ti->error = data_offset ? "No space for forward reshape" : |
2698 | "No space for backward reshape"; | |
2699 | return -ENOSPC; | |
2700 | } | |
2701 | out: | |
052b2b1e HM |
2702 | /* |
2703 | * Raise recovery_cp in case data_offset != 0 to | |
2704 | * avoid false recovery positives in the constructor. | |
2705 | */ | |
2706 | if (rs->md.recovery_cp < rs->md.dev_sectors) | |
2707 | rs->md.recovery_cp += rs->dev[0].rdev.data_offset; | |
2708 | ||
63c32ed4 | 2709 | /* Adjust data offsets on all rdevs but on any raid4/5/6 journal device */ |
40ba37e5 | 2710 | rdev_for_each(rdev, &rs->md) { |
63c32ed4 HM |
2711 | if (!test_bit(Journal, &rdev->flags)) { |
2712 | rdev->data_offset = data_offset; | |
2713 | rdev->new_data_offset = new_data_offset; | |
2714 | } | |
40ba37e5 HM |
2715 | } |
2716 | ||
2717 | return 0; | |
2718 | } | |
2719 | ||
ecbfb9f1 | 2720 | /* Userpace reordered disks -> adjust raid_disk indexes in @rs */ |
e6ca5e1a | 2721 | static void __reorder_raid_disk_indexes(struct raid_set *rs) |
ecbfb9f1 HM |
2722 | { |
2723 | int i = 0; | |
2724 | struct md_rdev *rdev; | |
2725 | ||
2726 | rdev_for_each(rdev, &rs->md) { | |
63c32ed4 HM |
2727 | if (!test_bit(Journal, &rdev->flags)) { |
2728 | rdev->raid_disk = i++; | |
2729 | rdev->saved_raid_disk = rdev->new_raid_disk = -1; | |
2730 | } | |
ecbfb9f1 HM |
2731 | } |
2732 | } | |
2733 | ||
2734 | /* | |
2735 | * Setup @rs for takeover by a different raid level | |
2736 | */ | |
2737 | static int rs_setup_takeover(struct raid_set *rs) | |
2738 | { | |
2739 | struct mddev *mddev = &rs->md; | |
2740 | struct md_rdev *rdev; | |
2741 | unsigned int d = mddev->raid_disks = rs->raid_disks; | |
2742 | sector_t new_data_offset = rs->dev[0].rdev.data_offset ? 0 : rs->data_offset; | |
2743 | ||
2744 | if (rt_is_raid10(rs->raid_type)) { | |
552aa679 | 2745 | if (rs_is_raid0(rs)) { |
ecbfb9f1 | 2746 | /* Userpace reordered disks -> adjust raid_disk indexes */ |
e6ca5e1a | 2747 | __reorder_raid_disk_indexes(rs); |
ecbfb9f1 HM |
2748 | |
2749 | /* raid0 -> raid10_far layout */ | |
2750 | mddev->layout = raid10_format_to_md_layout(rs, ALGORITHM_RAID10_FAR, | |
2751 | rs->raid10_copies); | |
552aa679 | 2752 | } else if (rs_is_raid1(rs)) |
ecbfb9f1 HM |
2753 | /* raid1 -> raid10_near layout */ |
2754 | mddev->layout = raid10_format_to_md_layout(rs, ALGORITHM_RAID10_NEAR, | |
2755 | rs->raid_disks); | |
094f394d | 2756 | else |
ecbfb9f1 HM |
2757 | return -EINVAL; |
2758 | ||
2759 | } | |
2760 | ||
2761 | clear_bit(MD_ARRAY_FIRST_USE, &mddev->flags); | |
2762 | mddev->recovery_cp = MaxSector; | |
2763 | ||
2764 | while (d--) { | |
2765 | rdev = &rs->dev[d].rdev; | |
2766 | ||
2767 | if (test_bit(d, (void *) rs->rebuild_disks)) { | |
2768 | clear_bit(In_sync, &rdev->flags); | |
2769 | clear_bit(Faulty, &rdev->flags); | |
2770 | mddev->recovery_cp = rdev->recovery_offset = 0; | |
2771 | /* Bitmap has to be created when we do an "up" takeover */ | |
2772 | set_bit(MD_ARRAY_FIRST_USE, &mddev->flags); | |
2773 | } | |
2774 | ||
2775 | rdev->new_data_offset = new_data_offset; | |
2776 | } | |
2777 | ||
ecbfb9f1 HM |
2778 | return 0; |
2779 | } | |
2780 | ||
469b304b HM |
2781 | /* Prepare @rs for reshape */ |
2782 | static int rs_prepare_reshape(struct raid_set *rs) | |
2783 | { | |
2784 | bool reshape; | |
2785 | struct mddev *mddev = &rs->md; | |
2786 | ||
2787 | if (rs_is_raid10(rs)) { | |
2788 | if (rs->raid_disks != mddev->raid_disks && | |
2789 | __is_raid10_near(mddev->layout) && | |
2790 | rs->raid10_copies && | |
2791 | rs->raid10_copies != __raid10_near_copies(mddev->layout)) { | |
2792 | /* | |
2793 | * raid disk have to be multiple of data copies to allow this conversion, | |
2794 | * | |
2795 | * This is actually not a reshape it is a | |
2796 | * rebuild of any additional mirrors per group | |
2797 | */ | |
2798 | if (rs->raid_disks % rs->raid10_copies) { | |
2799 | rs->ti->error = "Can't reshape raid10 mirror groups"; | |
2800 | return -EINVAL; | |
2801 | } | |
2802 | ||
2803 | /* Userpace reordered disks to add/remove mirrors -> adjust raid_disk indexes */ | |
2804 | __reorder_raid_disk_indexes(rs); | |
2805 | mddev->layout = raid10_format_to_md_layout(rs, ALGORITHM_RAID10_NEAR, | |
2806 | rs->raid10_copies); | |
2807 | mddev->new_layout = mddev->layout; | |
2808 | reshape = false; | |
2809 | } else | |
2810 | reshape = true; | |
2811 | ||
2812 | } else if (rs_is_raid456(rs)) | |
2813 | reshape = true; | |
2814 | ||
469b304b | 2815 | else if (rs_is_raid1(rs)) { |
7a7c330f HM |
2816 | if (rs->delta_disks) { |
2817 | /* Process raid1 via delta_disks */ | |
2818 | mddev->degraded = rs->delta_disks < 0 ? -rs->delta_disks : rs->delta_disks; | |
2819 | reshape = true; | |
2820 | } else { | |
2821 | /* Process raid1 without delta_disks */ | |
2822 | mddev->raid_disks = rs->raid_disks; | |
7a7c330f HM |
2823 | reshape = false; |
2824 | } | |
469b304b HM |
2825 | } else { |
2826 | rs->ti->error = "Called with bogus raid type"; | |
2827 | return -EINVAL; | |
2828 | } | |
2829 | ||
2830 | if (reshape) { | |
2831 | set_bit(RT_FLAG_RESHAPE_RS, &rs->runtime_flags); | |
2832 | set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags); | |
7a7c330f HM |
2833 | } else if (mddev->raid_disks < rs->raid_disks) |
2834 | /* Create new superblocks and bitmaps, if any new disks */ | |
469b304b | 2835 | set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags); |
469b304b HM |
2836 | |
2837 | return 0; | |
2838 | } | |
2839 | ||
052b2b1e HM |
2840 | /* Get reshape sectors from data_offsets or raid set */ |
2841 | static sector_t _get_reshape_sectors(struct raid_set *rs) | |
2842 | { | |
2843 | struct md_rdev *rdev; | |
2844 | sector_t reshape_sectors = 0; | |
2845 | ||
2846 | rdev_for_each(rdev, &rs->md) | |
2847 | if (!test_bit(Journal, &rdev->flags)) { | |
2848 | reshape_sectors = (rdev->data_offset > rdev->new_data_offset) ? | |
2849 | rdev->data_offset - rdev->new_data_offset : | |
2850 | rdev->new_data_offset - rdev->data_offset; | |
2851 | break; | |
2852 | } | |
2853 | ||
2854 | return max(reshape_sectors, (sector_t) rs->data_offset); | |
2855 | } | |
2856 | ||
9dbd1aa3 HM |
2857 | /* |
2858 | * | |
2859 | * - change raid layout | |
2860 | * - change chunk size | |
2861 | * - add disks | |
2862 | * - remove disks | |
2863 | */ | |
2864 | static int rs_setup_reshape(struct raid_set *rs) | |
2865 | { | |
2866 | int r = 0; | |
2867 | unsigned int cur_raid_devs, d; | |
052b2b1e | 2868 | sector_t reshape_sectors = _get_reshape_sectors(rs); |
9dbd1aa3 HM |
2869 | struct mddev *mddev = &rs->md; |
2870 | struct md_rdev *rdev; | |
2871 | ||
2872 | mddev->delta_disks = rs->delta_disks; | |
2873 | cur_raid_devs = mddev->raid_disks; | |
2874 | ||
2875 | /* Ignore impossible layout change whilst adding/removing disks */ | |
2876 | if (mddev->delta_disks && | |
2877 | mddev->layout != mddev->new_layout) { | |
2878 | DMINFO("Ignoring invalid layout change with delta_disks=%d", rs->delta_disks); | |
2879 | mddev->new_layout = mddev->layout; | |
2880 | } | |
2881 | ||
2882 | /* | |
2883 | * Adjust array size: | |
2884 | * | |
052b2b1e | 2885 | * - in case of adding disk(s), array size has |
9dbd1aa3 HM |
2886 | * to grow after the disk adding reshape, |
2887 | * which'll hapen in the event handler; | |
2888 | * reshape will happen forward, so space has to | |
2889 | * be available at the beginning of each disk | |
2890 | * | |
052b2b1e | 2891 | * - in case of removing disk(s), array size |
9dbd1aa3 HM |
2892 | * has to shrink before starting the reshape, |
2893 | * which'll happen here; | |
2894 | * reshape will happen backward, so space has to | |
2895 | * be available at the end of each disk | |
2896 | * | |
2897 | * - data_offset and new_data_offset are | |
ae3c6cff | 2898 | * adjusted for aforementioned out of place |
9dbd1aa3 HM |
2899 | * reshaping based on userspace passing in |
2900 | * the "data_offset <sectors>" key/value | |
ae3c6cff | 2901 | * pair via the constructor |
9dbd1aa3 HM |
2902 | */ |
2903 | ||
2904 | /* Add disk(s) */ | |
2905 | if (rs->delta_disks > 0) { | |
2906 | /* Prepare disks for check in raid4/5/6/10 {check|start}_reshape */ | |
2907 | for (d = cur_raid_devs; d < rs->raid_disks; d++) { | |
2908 | rdev = &rs->dev[d].rdev; | |
2909 | clear_bit(In_sync, &rdev->flags); | |
2910 | ||
2911 | /* | |
2912 | * save_raid_disk needs to be -1, or recovery_offset will be set to 0 | |
2913 | * by md, which'll store that erroneously in the superblock on reshape | |
2914 | */ | |
2915 | rdev->saved_raid_disk = -1; | |
2916 | rdev->raid_disk = d; | |
2917 | ||
2918 | rdev->sectors = mddev->dev_sectors; | |
7a7c330f | 2919 | rdev->recovery_offset = rs_is_raid1(rs) ? 0 : MaxSector; |
9dbd1aa3 HM |
2920 | } |
2921 | ||
052b2b1e | 2922 | mddev->reshape_backwards = 0; /* adding disk(s) -> forward reshape */ |
9dbd1aa3 HM |
2923 | |
2924 | /* Remove disk(s) */ | |
2925 | } else if (rs->delta_disks < 0) { | |
2926 | r = rs_set_dev_and_array_sectors(rs, true); | |
2927 | mddev->reshape_backwards = 1; /* removing disk(s) -> backward reshape */ | |
2928 | ||
2929 | /* Change layout and/or chunk size */ | |
2930 | } else { | |
2931 | /* | |
2932 | * Reshape layout (e.g. raid5_ls -> raid5_n) and/or chunk size: | |
2933 | * | |
2934 | * keeping number of disks and do layout change -> | |
2935 | * | |
2936 | * toggle reshape_backward depending on data_offset: | |
2937 | * | |
2938 | * - free space upfront -> reshape forward | |
2939 | * | |
2940 | * - free space at the end -> reshape backward | |
2941 | * | |
2942 | * | |
2943 | * This utilizes free reshape space avoiding the need | |
2944 | * for userspace to move (parts of) LV segments in | |
2945 | * case of layout/chunksize change (for disk | |
2946 | * adding/removing reshape space has to be at | |
2947 | * the proper address (see above with delta_disks): | |
2948 | * | |
2949 | * add disk(s) -> begin | |
2950 | * remove disk(s)-> end | |
2951 | */ | |
2952 | mddev->reshape_backwards = rs->dev[0].rdev.data_offset ? 0 : 1; | |
2953 | } | |
2954 | ||
052b2b1e HM |
2955 | /* |
2956 | * Adjust device size for forward reshape | |
2957 | * because md_finish_reshape() reduces it. | |
2958 | */ | |
2959 | if (!mddev->reshape_backwards) | |
2960 | rdev_for_each(rdev, &rs->md) | |
2961 | if (!test_bit(Journal, &rdev->flags)) | |
2962 | rdev->sectors += reshape_sectors; | |
2963 | ||
9dbd1aa3 HM |
2964 | return r; |
2965 | } | |
2966 | ||
75b8e04b | 2967 | /* |
48cf06bc HM |
2968 | * Enable/disable discard support on RAID set depending on |
2969 | * RAID level and discard properties of underlying RAID members. | |
75b8e04b | 2970 | */ |
ecbfb9f1 | 2971 | static void configure_discard_support(struct raid_set *rs) |
75b8e04b | 2972 | { |
48cf06bc HM |
2973 | int i; |
2974 | bool raid456; | |
ecbfb9f1 | 2975 | struct dm_target *ti = rs->ti; |
48cf06bc | 2976 | |
48920ff2 CH |
2977 | /* |
2978 | * XXX: RAID level 4,5,6 require zeroing for safety. | |
2979 | */ | |
552aa679 | 2980 | raid456 = rs_is_raid456(rs); |
75b8e04b | 2981 | |
ffeeac75 | 2982 | for (i = 0; i < rs->raid_disks; i++) { |
d20c4b08 | 2983 | struct request_queue *q; |
48cf06bc | 2984 | |
d20c4b08 HM |
2985 | if (!rs->dev[i].rdev.bdev) |
2986 | continue; | |
2987 | ||
2988 | q = bdev_get_queue(rs->dev[i].rdev.bdev); | |
48cf06bc HM |
2989 | if (!q || !blk_queue_discard(q)) |
2990 | return; | |
2991 | ||
2992 | if (raid456) { | |
48cf06bc HM |
2993 | if (!devices_handle_discard_safely) { |
2994 | DMERR("raid456 discard support disabled due to discard_zeroes_data uncertainty."); | |
2995 | DMERR("Set dm-raid.devices_handle_discard_safely=Y to override."); | |
2996 | return; | |
2997 | } | |
2998 | } | |
2999 | } | |
3000 | ||
75b8e04b HM |
3001 | /* |
3002 | * RAID1 and RAID10 personalities require bio splitting, | |
48cf06bc | 3003 | * RAID0/4/5/6 don't and process large discard bios properly. |
75b8e04b | 3004 | */ |
552aa679 | 3005 | ti->split_discard_bios = !!(rs_is_raid1(rs) || rs_is_raid10(rs)); |
75b8e04b HM |
3006 | ti->num_discard_bios = 1; |
3007 | } | |
3008 | ||
9d09e663 | 3009 | /* |
73c6f239 | 3010 | * Construct a RAID0/1/10/4/5/6 mapping: |
9d09e663 | 3011 | * Args: |
43157840 MS |
3012 | * <raid_type> <#raid_params> <raid_params>{0,} \ |
3013 | * <#raid_devs> [<meta_dev1> <dev1>]{1,} | |
9d09e663 | 3014 | * |
43157840 | 3015 | * <raid_params> varies by <raid_type>. See 'parse_raid_params' for |
9d09e663 | 3016 | * details on possible <raid_params>. |
73c6f239 HM |
3017 | * |
3018 | * Userspace is free to initialize the metadata devices, hence the superblocks to | |
3019 | * enforce recreation based on the passed in table parameters. | |
3020 | * | |
9d09e663 | 3021 | */ |
094f394d | 3022 | static int raid_ctr(struct dm_target *ti, unsigned int argc, char **argv) |
9d09e663 | 3023 | { |
73c6f239 | 3024 | int r; |
7501537e | 3025 | bool resize = false; |
9d09e663 | 3026 | struct raid_type *rt; |
094f394d | 3027 | unsigned int num_raid_params, num_raid_devs; |
7501537e | 3028 | sector_t calculated_dev_sectors, rdev_sectors, reshape_sectors; |
9d09e663 | 3029 | struct raid_set *rs = NULL; |
92c83d79 | 3030 | const char *arg; |
9dbd1aa3 | 3031 | struct rs_layout rs_layout; |
92c83d79 HM |
3032 | struct dm_arg_set as = { argc, argv }, as_nrd; |
3033 | struct dm_arg _args[] = { | |
3034 | { 0, as.argc, "Cannot understand number of raid parameters" }, | |
3035 | { 1, 254, "Cannot understand number of raid devices parameters" } | |
3036 | }; | |
3037 | ||
3038 | /* Must have <raid_type> */ | |
3039 | arg = dm_shift_arg(&as); | |
bd83a4c4 MS |
3040 | if (!arg) { |
3041 | ti->error = "No arguments"; | |
3042 | return -EINVAL; | |
3043 | } | |
9d09e663 | 3044 | |
92c83d79 | 3045 | rt = get_raid_type(arg); |
bd83a4c4 MS |
3046 | if (!rt) { |
3047 | ti->error = "Unrecognised raid_type"; | |
3048 | return -EINVAL; | |
3049 | } | |
9d09e663 | 3050 | |
92c83d79 HM |
3051 | /* Must have <#raid_params> */ |
3052 | if (dm_read_arg_group(_args, &as, &num_raid_params, &ti->error)) | |
43157840 | 3053 | return -EINVAL; |
9d09e663 | 3054 | |
92c83d79 HM |
3055 | /* number of raid device tupples <meta_dev data_dev> */ |
3056 | as_nrd = as; | |
3057 | dm_consume_args(&as_nrd, num_raid_params); | |
3058 | _args[1].max = (as_nrd.argc - 1) / 2; | |
3059 | if (dm_read_arg(_args + 1, &as_nrd, &num_raid_devs, &ti->error)) | |
43157840 | 3060 | return -EINVAL; |
9d09e663 | 3061 | |
bb91a63f | 3062 | if (!__within_range(num_raid_devs, 1, MAX_RAID_DEVICES)) { |
bd83a4c4 MS |
3063 | ti->error = "Invalid number of supplied raid devices"; |
3064 | return -EINVAL; | |
3065 | } | |
3ca5a21a | 3066 | |
bfcee0e3 | 3067 | rs = raid_set_alloc(ti, rt, num_raid_devs); |
9d09e663 N |
3068 | if (IS_ERR(rs)) |
3069 | return PTR_ERR(rs); | |
3070 | ||
92c83d79 | 3071 | r = parse_raid_params(rs, &as, num_raid_params); |
73c6f239 | 3072 | if (r) |
9d09e663 N |
3073 | goto bad; |
3074 | ||
702108d1 | 3075 | r = parse_dev_params(rs, &as); |
73c6f239 | 3076 | if (r) |
9d09e663 N |
3077 | goto bad; |
3078 | ||
b12d437b | 3079 | rs->md.sync_super = super_sync; |
ecbfb9f1 | 3080 | |
2527b56e HM |
3081 | /* |
3082 | * Calculate ctr requested array and device sizes to allow | |
3083 | * for superblock analysis needing device sizes defined. | |
3084 | * | |
3085 | * Any existing superblock will overwrite the array and device sizes | |
3086 | */ | |
40ba37e5 HM |
3087 | r = rs_set_dev_and_array_sectors(rs, false); |
3088 | if (r) | |
b1956dc4 | 3089 | goto bad; |
40ba37e5 | 3090 | |
50c4feb9 | 3091 | calculated_dev_sectors = rs->md.dev_sectors; |
4dff2f1e | 3092 | |
ecbfb9f1 HM |
3093 | /* |
3094 | * Backup any new raid set level, layout, ... | |
3095 | * requested to be able to compare to superblock | |
3096 | * members for conversion decisions. | |
3097 | */ | |
9dbd1aa3 | 3098 | rs_config_backup(rs, &rs_layout); |
ecbfb9f1 | 3099 | |
73c6f239 HM |
3100 | r = analyse_superblocks(ti, rs); |
3101 | if (r) | |
b12d437b JB |
3102 | goto bad; |
3103 | ||
4d49f1b4 HM |
3104 | rdev_sectors = __rdev_sectors(rs); |
3105 | if (!rdev_sectors) { | |
3106 | ti->error = "Invalid rdev size"; | |
3107 | r = -EINVAL; | |
3108 | goto bad; | |
3109 | } | |
3110 | ||
7501537e HM |
3111 | |
3112 | reshape_sectors = _get_reshape_sectors(rs); | |
3113 | if (calculated_dev_sectors != rdev_sectors) | |
3114 | resize = calculated_dev_sectors != (reshape_sectors ? rdev_sectors - reshape_sectors : rdev_sectors); | |
4dff2f1e | 3115 | |
9d09e663 | 3116 | INIT_WORK(&rs->md.event_work, do_table_event); |
9d09e663 | 3117 | ti->private = rs; |
55a62eef | 3118 | ti->num_flush_bios = 1; |
9d09e663 | 3119 | |
ecbfb9f1 | 3120 | /* Restore any requested new layout for conversion decision */ |
9dbd1aa3 | 3121 | rs_config_restore(rs, &rs_layout); |
ecbfb9f1 | 3122 | |
469b304b HM |
3123 | /* |
3124 | * Now that we have any superblock metadata available, | |
3125 | * check for new, recovering, reshaping, to be taken over, | |
3126 | * to be reshaped or an existing, unchanged raid set to | |
3127 | * run in sequence. | |
3128 | */ | |
9dbd1aa3 | 3129 | if (test_bit(MD_ARRAY_FIRST_USE, &rs->md.flags)) { |
2d92a3c2 HM |
3130 | /* A new raid6 set has to be recovered to ensure proper parity and Q-Syndrome */ |
3131 | if (rs_is_raid6(rs) && | |
3132 | test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags)) { | |
3133 | ti->error = "'nosync' not allowed for new raid6 set"; | |
b1956dc4 HM |
3134 | r = -EINVAL; |
3135 | goto bad; | |
2d92a3c2 HM |
3136 | } |
3137 | rs_setup_recovery(rs, 0); | |
2a5556c2 HM |
3138 | set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags); |
3139 | rs_set_new(rs); | |
3140 | } else if (rs_is_recovering(rs)) { | |
469b304b | 3141 | /* A recovering raid set may be resized */ |
2a5556c2 HM |
3142 | ; /* skip setup rs */ |
3143 | } else if (rs_is_reshaping(rs)) { | |
3144 | /* Have to reject size change request during reshape */ | |
3145 | if (resize) { | |
3146 | ti->error = "Can't resize a reshaping raid set"; | |
b1956dc4 HM |
3147 | r = -EPERM; |
3148 | goto bad; | |
2d92a3c2 | 3149 | } |
469b304b | 3150 | /* skip setup rs */ |
2d92a3c2 | 3151 | } else if (rs_takeover_requested(rs)) { |
9dbd1aa3 HM |
3152 | if (rs_is_reshaping(rs)) { |
3153 | ti->error = "Can't takeover a reshaping raid set"; | |
b1956dc4 HM |
3154 | r = -EPERM; |
3155 | goto bad; | |
9dbd1aa3 HM |
3156 | } |
3157 | ||
63c32ed4 HM |
3158 | /* We can't takeover a journaled raid4/5/6 */ |
3159 | if (test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags)) { | |
3160 | ti->error = "Can't takeover a journaled raid4/5/6 set"; | |
3161 | r = -EPERM; | |
3162 | goto bad; | |
3163 | } | |
3164 | ||
9dbd1aa3 | 3165 | /* |
2527b56e | 3166 | * If a takeover is needed, userspace sets any additional |
469b304b HM |
3167 | * devices to rebuild and we can check for a valid request here. |
3168 | * | |
3169 | * If acceptible, set the level to the new requested | |
2a5556c2 HM |
3170 | * one, prohibit requesting recovery, allow the raid |
3171 | * set to run and store superblocks during resume. | |
9dbd1aa3 | 3172 | */ |
ecbfb9f1 HM |
3173 | r = rs_check_takeover(rs); |
3174 | if (r) | |
b1956dc4 | 3175 | goto bad; |
ecbfb9f1 HM |
3176 | |
3177 | r = rs_setup_takeover(rs); | |
3178 | if (r) | |
b1956dc4 | 3179 | goto bad; |
ecbfb9f1 | 3180 | |
4286325b | 3181 | set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags); |
469b304b | 3182 | /* Takeover ain't recovery, so disable recovery */ |
2a5556c2 | 3183 | rs_setup_recovery(rs, MaxSector); |
3a1c1ef2 | 3184 | rs_set_new(rs); |
40ba37e5 | 3185 | } else if (rs_reshape_requested(rs)) { |
63c32ed4 HM |
3186 | /* |
3187 | * No need to check for 'ongoing' takeover here, because takeover | |
3188 | * is an instant operation as oposed to an ongoing reshape. | |
3189 | */ | |
3190 | ||
3191 | /* We can't reshape a journaled raid4/5/6 */ | |
3192 | if (test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags)) { | |
3193 | ti->error = "Can't reshape a journaled raid4/5/6 set"; | |
3194 | r = -EPERM; | |
3195 | goto bad; | |
3196 | } | |
3197 | ||
11e47232 HM |
3198 | /* Out-of-place space has to be available to allow for a reshape unless raid1! */ |
3199 | if (reshape_sectors || rs_is_raid1(rs)) { | |
3200 | /* | |
3201 | * We can only prepare for a reshape here, because the | |
3202 | * raid set needs to run to provide the repective reshape | |
3203 | * check functions via its MD personality instance. | |
3204 | * | |
3205 | * So do the reshape check after md_run() succeeded. | |
3206 | */ | |
3207 | r = rs_prepare_reshape(rs); | |
3208 | if (r) | |
3209 | return r; | |
9dbd1aa3 | 3210 | |
11e47232 HM |
3211 | /* Reshaping ain't recovery, so disable recovery */ |
3212 | rs_setup_recovery(rs, MaxSector); | |
3213 | } | |
3a1c1ef2 | 3214 | rs_set_cur(rs); |
2a5556c2 HM |
3215 | } else { |
3216 | /* May not set recovery when a device rebuild is requested */ | |
37f10be1 HM |
3217 | if (test_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags)) { |
3218 | rs_setup_recovery(rs, MaxSector); | |
3219 | set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags); | |
3220 | } else | |
3221 | rs_setup_recovery(rs, test_bit(__CTR_FLAG_SYNC, &rs->ctr_flags) ? | |
2a5556c2 HM |
3222 | 0 : (resize ? calculated_dev_sectors : MaxSector)); |
3223 | rs_set_cur(rs); | |
4dff2f1e | 3224 | } |
ecbfb9f1 | 3225 | |
40ba37e5 HM |
3226 | /* If constructor requested it, change data and new_data offsets */ |
3227 | r = rs_adjust_data_offsets(rs); | |
3228 | if (r) | |
b1956dc4 | 3229 | goto bad; |
40ba37e5 | 3230 | |
ecbfb9f1 HM |
3231 | /* Start raid set read-only and assumed clean to change in raid_resume() */ |
3232 | rs->md.ro = 1; | |
3233 | rs->md.in_sync = 1; | |
3234 | set_bit(MD_RECOVERY_FROZEN, &rs->md.recovery); | |
75b8e04b | 3235 | |
0cf45031 HM |
3236 | /* Has to be held on running the array */ |
3237 | mddev_lock_nointr(&rs->md); | |
73c6f239 | 3238 | r = md_run(&rs->md); |
9d09e663 | 3239 | rs->md.in_sync = 0; /* Assume already marked dirty */ |
73c6f239 | 3240 | if (r) { |
9dbd1aa3 HM |
3241 | ti->error = "Failed to run raid array"; |
3242 | mddev_unlock(&rs->md); | |
9d09e663 N |
3243 | goto bad; |
3244 | } | |
3245 | ||
3246 | rs->callbacks.congested_fn = raid_is_congested; | |
9d09e663 N |
3247 | dm_table_add_target_callbacks(ti->table, &rs->callbacks); |
3248 | ||
6e53636f HM |
3249 | /* If raid4/5/6 journal mode explictely requested (only possible with journal dev) -> set it */ |
3250 | if (test_bit(__CTR_FLAG_JOURNAL_MODE, &rs->ctr_flags)) { | |
3251 | r = r5c_journal_mode_set(&rs->md, rs->journal_dev.mode); | |
3252 | if (r) { | |
3253 | ti->error = "Failed to set raid4/5/6 journal mode"; | |
3254 | mddev_unlock(&rs->md); | |
3255 | goto bad_journal_mode_set; | |
3256 | } | |
3257 | } | |
3258 | ||
32737279 | 3259 | mddev_suspend(&rs->md); |
0cf352e5 | 3260 | set_bit(RT_FLAG_RS_SUSPENDED, &rs->runtime_flags); |
9dbd1aa3 HM |
3261 | |
3262 | /* Try to adjust the raid4/5/6 stripe cache size to the stripe size */ | |
3263 | if (rs_is_raid456(rs)) { | |
3264 | r = rs_set_raid456_stripe_cache(rs); | |
3265 | if (r) | |
3266 | goto bad_stripe_cache; | |
3267 | } | |
3268 | ||
3269 | /* Now do an early reshape check */ | |
3270 | if (test_bit(RT_FLAG_RESHAPE_RS, &rs->runtime_flags)) { | |
3271 | r = rs_check_reshape(rs); | |
3272 | if (r) | |
b1956dc4 | 3273 | goto bad_check_reshape; |
9dbd1aa3 HM |
3274 | |
3275 | /* Restore new, ctr requested layout to perform check */ | |
3276 | rs_config_restore(rs, &rs_layout); | |
3277 | ||
7a7c330f HM |
3278 | if (rs->md.pers->start_reshape) { |
3279 | r = rs->md.pers->check_reshape(&rs->md); | |
3280 | if (r) { | |
3281 | ti->error = "Reshape check failed"; | |
3282 | goto bad_check_reshape; | |
3283 | } | |
9dbd1aa3 HM |
3284 | } |
3285 | } | |
3286 | ||
11e29684 HM |
3287 | /* Disable/enable discard support on raid set. */ |
3288 | configure_discard_support(rs); | |
3289 | ||
9dbd1aa3 | 3290 | mddev_unlock(&rs->md); |
9d09e663 N |
3291 | return 0; |
3292 | ||
6e53636f | 3293 | bad_journal_mode_set: |
9dbd1aa3 HM |
3294 | bad_stripe_cache: |
3295 | bad_check_reshape: | |
63f33b8d | 3296 | md_stop(&rs->md); |
9d09e663 | 3297 | bad: |
bfcee0e3 | 3298 | raid_set_free(rs); |
9d09e663 | 3299 | |
73c6f239 | 3300 | return r; |
9d09e663 N |
3301 | } |
3302 | ||
3303 | static void raid_dtr(struct dm_target *ti) | |
3304 | { | |
3305 | struct raid_set *rs = ti->private; | |
3306 | ||
3307 | list_del_init(&rs->callbacks.list); | |
3308 | md_stop(&rs->md); | |
bfcee0e3 | 3309 | raid_set_free(rs); |
9d09e663 N |
3310 | } |
3311 | ||
7de3ee57 | 3312 | static int raid_map(struct dm_target *ti, struct bio *bio) |
9d09e663 N |
3313 | { |
3314 | struct raid_set *rs = ti->private; | |
fd01b88c | 3315 | struct mddev *mddev = &rs->md; |
9d09e663 | 3316 | |
9dbd1aa3 HM |
3317 | /* |
3318 | * If we're reshaping to add disk(s)), ti->len and | |
3319 | * mddev->array_sectors will differ during the process | |
3320 | * (ti->len > mddev->array_sectors), so we have to requeue | |
3321 | * bios with addresses > mddev->array_sectors here or | |
2527b56e | 3322 | * there will occur accesses past EOD of the component |
9dbd1aa3 HM |
3323 | * data images thus erroring the raid set. |
3324 | */ | |
3325 | if (unlikely(bio_end_sector(bio) > mddev->array_sectors)) | |
3326 | return DM_MAPIO_REQUEUE; | |
3327 | ||
c4d6a1b8 | 3328 | md_handle_request(mddev, bio); |
9d09e663 N |
3329 | |
3330 | return DM_MAPIO_SUBMITTED; | |
3331 | } | |
3332 | ||
3a1c1ef2 | 3333 | /* Return string describing the current sync action of @mddev */ |
67143510 | 3334 | static const char *decipher_sync_action(struct mddev *mddev, unsigned long recovery) |
be83651f | 3335 | { |
67143510 | 3336 | if (test_bit(MD_RECOVERY_FROZEN, &recovery)) |
be83651f JB |
3337 | return "frozen"; |
3338 | ||
4102d9de HM |
3339 | /* The MD sync thread can be done with io but still be running */ |
3340 | if (!test_bit(MD_RECOVERY_DONE, &recovery) && | |
3341 | (test_bit(MD_RECOVERY_RUNNING, &recovery) || | |
3342 | (!mddev->ro && test_bit(MD_RECOVERY_NEEDED, &recovery)))) { | |
67143510 | 3343 | if (test_bit(MD_RECOVERY_RESHAPE, &recovery)) |
be83651f JB |
3344 | return "reshape"; |
3345 | ||
67143510 HM |
3346 | if (test_bit(MD_RECOVERY_SYNC, &recovery)) { |
3347 | if (!test_bit(MD_RECOVERY_REQUESTED, &recovery)) | |
be83651f | 3348 | return "resync"; |
67143510 | 3349 | else if (test_bit(MD_RECOVERY_CHECK, &recovery)) |
be83651f JB |
3350 | return "check"; |
3351 | return "repair"; | |
3352 | } | |
3353 | ||
67143510 | 3354 | if (test_bit(MD_RECOVERY_RECOVER, &recovery)) |
be83651f JB |
3355 | return "recover"; |
3356 | } | |
3357 | ||
3358 | return "idle"; | |
3359 | } | |
3360 | ||
3a1c1ef2 | 3361 | /* |
63c32ed4 | 3362 | * Return status string for @rdev |
3a1c1ef2 HM |
3363 | * |
3364 | * Status characters: | |
3365 | * | |
63c32ed4 | 3366 | * 'D' = Dead/Failed raid set component or raid4/5/6 journal device |
6e53636f HM |
3367 | * 'a' = Alive but not in-sync raid set component _or_ alive raid4/5/6 'write_back' journal device |
3368 | * 'A' = Alive and in-sync raid set component _or_ alive raid4/5/6 'write_through' journal device | |
c63ede3b | 3369 | * '-' = Non-existing device (i.e. uspace passed '- -' into the ctr) |
3a1c1ef2 | 3370 | */ |
242ea5ad | 3371 | static const char *__raid_dev_status(struct raid_set *rs, struct md_rdev *rdev) |
9d09e663 | 3372 | { |
c63ede3b HM |
3373 | if (!rdev->bdev) |
3374 | return "-"; | |
3375 | else if (test_bit(Faulty, &rdev->flags)) | |
3a1c1ef2 | 3376 | return "D"; |
63c32ed4 | 3377 | else if (test_bit(Journal, &rdev->flags)) |
6e53636f | 3378 | return (rs->journal_dev.mode == R5C_JOURNAL_MODE_WRITE_THROUGH) ? "A" : "a"; |
4102d9de HM |
3379 | else if (test_bit(RT_FLAG_RS_RESYNCING, &rs->runtime_flags) || |
3380 | (!test_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags) && | |
3381 | !test_bit(In_sync, &rdev->flags))) | |
3a1c1ef2 HM |
3382 | return "a"; |
3383 | else | |
3384 | return "A"; | |
3385 | } | |
9d09e663 | 3386 | |
242ea5ad | 3387 | /* Helper to return resync/reshape progress for @rs and runtime flags for raid set in sync / resynching */ |
67143510 | 3388 | static sector_t rs_get_progress(struct raid_set *rs, unsigned long recovery, |
242ea5ad | 3389 | sector_t resync_max_sectors) |
3a1c1ef2 | 3390 | { |
4102d9de | 3391 | sector_t r; |
3a1c1ef2 | 3392 | struct mddev *mddev = &rs->md; |
9d09e663 | 3393 | |
242ea5ad | 3394 | clear_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags); |
4102d9de | 3395 | clear_bit(RT_FLAG_RS_RESYNCING, &rs->runtime_flags); |
3a1c1ef2 HM |
3396 | |
3397 | if (rs_is_raid0(rs)) { | |
3398 | r = resync_max_sectors; | |
242ea5ad | 3399 | set_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags); |
3a1c1ef2 HM |
3400 | |
3401 | } else { | |
7c29744e HM |
3402 | if (test_bit(MD_RECOVERY_NEEDED, &recovery) || |
3403 | test_bit(MD_RECOVERY_RESHAPE, &recovery) || | |
3404 | test_bit(MD_RECOVERY_RUNNING, &recovery)) | |
4102d9de | 3405 | r = mddev->curr_resync_completed; |
3a1c1ef2 | 3406 | else |
41dcf197 | 3407 | r = mddev->recovery_cp; |
3a1c1ef2 | 3408 | |
4102d9de HM |
3409 | if (r >= resync_max_sectors && |
3410 | (!test_bit(MD_RECOVERY_REQUESTED, &recovery) || | |
3411 | (!test_bit(MD_RECOVERY_FROZEN, &recovery) && | |
3412 | !test_bit(MD_RECOVERY_NEEDED, &recovery) && | |
3413 | !test_bit(MD_RECOVERY_RUNNING, &recovery)))) { | |
3a1c1ef2 HM |
3414 | /* |
3415 | * Sync complete. | |
3416 | */ | |
4102d9de HM |
3417 | /* In case we have finished recovering, the array is in sync. */ |
3418 | if (test_bit(MD_RECOVERY_RECOVER, &recovery)) | |
3419 | set_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags); | |
3420 | ||
3421 | } else if (test_bit(MD_RECOVERY_RECOVER, &recovery)) { | |
3422 | /* | |
3423 | * In case we are recovering, the array is not in sync | |
3424 | * and health chars should show the recovering legs. | |
3425 | */ | |
3426 | ; | |
3427 | ||
3428 | } else if (test_bit(MD_RECOVERY_SYNC, &recovery) && | |
3429 | !test_bit(MD_RECOVERY_REQUESTED, &recovery)) { | |
3430 | /* | |
3431 | * If "resync" is occurring, the raid set | |
3432 | * is or may be out of sync hence the health | |
3433 | * characters shall be 'a'. | |
3434 | */ | |
3435 | set_bit(RT_FLAG_RS_RESYNCING, &rs->runtime_flags); | |
3436 | ||
dc15b943 HM |
3437 | } else if (test_bit(MD_RECOVERY_RESHAPE, &recovery) && |
3438 | !test_bit(MD_RECOVERY_REQUESTED, &recovery)) { | |
3439 | /* | |
3440 | * If "reshape" is occurring, the raid set | |
3441 | * is or may be out of sync hence the health | |
3442 | * characters shall be 'a'. | |
3443 | */ | |
3444 | set_bit(RT_FLAG_RS_RESYNCING, &rs->runtime_flags); | |
3445 | ||
67143510 | 3446 | } else if (test_bit(MD_RECOVERY_REQUESTED, &recovery)) { |
3a1c1ef2 HM |
3447 | /* |
3448 | * If "check" or "repair" is occurring, the raid set has | |
3449 | * undergone an initial sync and the health characters | |
3450 | * should not be 'a' anymore. | |
3451 | */ | |
242ea5ad | 3452 | set_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags); |
4102d9de | 3453 | |
0cf45031 | 3454 | } else { |
3a1c1ef2 | 3455 | struct md_rdev *rdev; |
be83651f | 3456 | |
4102d9de HM |
3457 | /* |
3458 | * We are idle and recovery is needed, prevent 'A' chars race | |
3459 | * caused by components still set to in-sync by constrcuctor. | |
3460 | */ | |
3461 | if (test_bit(MD_RECOVERY_NEEDED, &recovery)) | |
3462 | set_bit(RT_FLAG_RS_RESYNCING, &rs->runtime_flags); | |
3463 | ||
3a1c1ef2 HM |
3464 | /* |
3465 | * The raid set may be doing an initial sync, or it may | |
43157840 | 3466 | * be rebuilding individual components. If all the |
3a1c1ef2 HM |
3467 | * devices are In_sync, then it is the raid set that is |
3468 | * being initialized. | |
3469 | */ | |
4102d9de | 3470 | set_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags); |
3a1c1ef2 | 3471 | rdev_for_each(rdev, mddev) |
63c32ed4 | 3472 | if (!test_bit(Journal, &rdev->flags) && |
4102d9de HM |
3473 | !test_bit(In_sync, &rdev->flags)) { |
3474 | clear_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags); | |
3475 | break; | |
3476 | } | |
2e727c3c | 3477 | } |
3a1c1ef2 HM |
3478 | } |
3479 | ||
4102d9de | 3480 | return min(r, resync_max_sectors); |
3a1c1ef2 HM |
3481 | } |
3482 | ||
3483 | /* Helper to return @dev name or "-" if !@dev */ | |
e6ca5e1a | 3484 | static const char *__get_dev_name(struct dm_dev *dev) |
3a1c1ef2 HM |
3485 | { |
3486 | return dev ? dev->name : "-"; | |
3487 | } | |
3488 | ||
3489 | static void raid_status(struct dm_target *ti, status_type_t type, | |
3490 | unsigned int status_flags, char *result, unsigned int maxlen) | |
3491 | { | |
3492 | struct raid_set *rs = ti->private; | |
3493 | struct mddev *mddev = &rs->md; | |
3494 | struct r5conf *conf = mddev->private; | |
7a7c330f | 3495 | int i, max_nr_stripes = conf ? conf->max_nr_stripes : 0; |
67143510 | 3496 | unsigned long recovery; |
3a1c1ef2 HM |
3497 | unsigned int raid_param_cnt = 1; /* at least 1 for chunksize */ |
3498 | unsigned int sz = 0; | |
7a7c330f | 3499 | unsigned int rebuild_disks; |
3a1c1ef2 HM |
3500 | unsigned int write_mostly_params = 0; |
3501 | sector_t progress, resync_max_sectors, resync_mismatches; | |
3502 | const char *sync_action; | |
3503 | struct raid_type *rt; | |
3a1c1ef2 HM |
3504 | |
3505 | switch (type) { | |
3506 | case STATUSTYPE_INFO: | |
3507 | /* *Should* always succeed */ | |
3508 | rt = get_raid_type_by_ll(mddev->new_level, mddev->new_layout); | |
3509 | if (!rt) | |
3510 | return; | |
3511 | ||
9dbd1aa3 | 3512 | DMEMIT("%s %d ", rt->name, mddev->raid_disks); |
3a1c1ef2 HM |
3513 | |
3514 | /* Access most recent mddev properties for status output */ | |
3515 | smp_rmb(); | |
67143510 | 3516 | recovery = rs->md.recovery; |
3a1c1ef2 | 3517 | /* Get sensible max sectors even if raid set not yet started */ |
4286325b | 3518 | resync_max_sectors = test_bit(RT_FLAG_RS_PRERESUMED, &rs->runtime_flags) ? |
3a1c1ef2 | 3519 | mddev->resync_max_sectors : mddev->dev_sectors; |
242ea5ad | 3520 | progress = rs_get_progress(rs, recovery, resync_max_sectors); |
3a1c1ef2 | 3521 | resync_mismatches = (mddev->last_sync_action && !strcasecmp(mddev->last_sync_action, "check")) ? |
9dbd1aa3 | 3522 | atomic64_read(&mddev->resync_mismatches) : 0; |
67143510 | 3523 | sync_action = decipher_sync_action(&rs->md, recovery); |
3a1c1ef2 | 3524 | |
c63ede3b HM |
3525 | /* HM FIXME: do we want another state char for raid0? It shows 'D'/'A'/'-' now */ |
3526 | for (i = 0; i < rs->raid_disks; i++) | |
242ea5ad | 3527 | DMEMIT(__raid_dev_status(rs, &rs->dev[i].rdev)); |
9d09e663 | 3528 | |
2e727c3c | 3529 | /* |
3a1c1ef2 | 3530 | * In-sync/Reshape ratio: |
2e727c3c | 3531 | * The in-sync ratio shows the progress of: |
3a1c1ef2 HM |
3532 | * - Initializing the raid set |
3533 | * - Rebuilding a subset of devices of the raid set | |
2e727c3c JB |
3534 | * The user can distinguish between the two by referring |
3535 | * to the status characters. | |
3a1c1ef2 HM |
3536 | * |
3537 | * The reshape ratio shows the progress of | |
3538 | * changing the raid layout or the number of | |
3539 | * disks of a raid set | |
2e727c3c | 3540 | */ |
3a1c1ef2 HM |
3541 | DMEMIT(" %llu/%llu", (unsigned long long) progress, |
3542 | (unsigned long long) resync_max_sectors); | |
9d09e663 | 3543 | |
be83651f | 3544 | /* |
3a1c1ef2 HM |
3545 | * v1.5.0+: |
3546 | * | |
be83651f | 3547 | * Sync action: |
3a1c1ef2 | 3548 | * See Documentation/device-mapper/dm-raid.txt for |
be83651f JB |
3549 | * information on each of these states. |
3550 | */ | |
3a1c1ef2 | 3551 | DMEMIT(" %s", sync_action); |
be83651f JB |
3552 | |
3553 | /* | |
3a1c1ef2 HM |
3554 | * v1.5.0+: |
3555 | * | |
be83651f JB |
3556 | * resync_mismatches/mismatch_cnt |
3557 | * This field shows the number of discrepancies found when | |
3a1c1ef2 | 3558 | * performing a "check" of the raid set. |
be83651f | 3559 | */ |
3a1c1ef2 | 3560 | DMEMIT(" %llu", (unsigned long long) resync_mismatches); |
9d09e663 | 3561 | |
3a1c1ef2 | 3562 | /* |
9b6e5423 | 3563 | * v1.9.0+: |
3a1c1ef2 HM |
3564 | * |
3565 | * data_offset (needed for out of space reshaping) | |
3566 | * This field shows the data offset into the data | |
3567 | * image LV where the first stripes data starts. | |
3568 | * | |
3569 | * We keep data_offset equal on all raid disks of the set, | |
3570 | * so retrieving it from the first raid disk is sufficient. | |
3571 | */ | |
3572 | DMEMIT(" %llu", (unsigned long long) rs->dev[0].rdev.data_offset); | |
63c32ed4 HM |
3573 | |
3574 | /* | |
3575 | * v1.10.0+: | |
3576 | */ | |
3577 | DMEMIT(" %s", test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags) ? | |
242ea5ad | 3578 | __raid_dev_status(rs, &rs->journal_dev.rdev) : "-"); |
3a1c1ef2 | 3579 | break; |
9d09e663 | 3580 | |
3a1c1ef2 HM |
3581 | case STATUSTYPE_TABLE: |
3582 | /* Report the table line string you would use to construct this raid set */ | |
3583 | ||
3584 | /* Calculate raid parameter count */ | |
7a7c330f HM |
3585 | for (i = 0; i < rs->raid_disks; i++) |
3586 | if (test_bit(WriteMostly, &rs->dev[i].rdev.flags)) | |
3a1c1ef2 | 3587 | write_mostly_params += 2; |
7a7c330f HM |
3588 | rebuild_disks = memweight(rs->rebuild_disks, DISKS_ARRAY_ELEMS * sizeof(*rs->rebuild_disks)); |
3589 | raid_param_cnt += rebuild_disks * 2 + | |
3a1c1ef2 HM |
3590 | write_mostly_params + |
3591 | hweight32(rs->ctr_flags & CTR_FLAG_OPTIONS_NO_ARGS) + | |
63c32ed4 | 3592 | hweight32(rs->ctr_flags & CTR_FLAG_OPTIONS_ONE_ARG) * 2 + |
6e53636f HM |
3593 | (test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags) ? 2 : 0) + |
3594 | (test_bit(__CTR_FLAG_JOURNAL_MODE, &rs->ctr_flags) ? 2 : 0); | |
4464e36e | 3595 | |
3a1c1ef2 | 3596 | /* Emit table line */ |
4464e36e | 3597 | /* This has to be in the documented order for userspace! */ |
3a1c1ef2 | 3598 | DMEMIT("%s %u %u", rs->raid_type->name, raid_param_cnt, mddev->new_chunk_sectors); |
4286325b | 3599 | if (test_bit(__CTR_FLAG_SYNC, &rs->ctr_flags)) |
3fa6cf38 | 3600 | DMEMIT(" %s", dm_raid_arg_name_by_flag(CTR_FLAG_SYNC)); |
4464e36e HM |
3601 | if (test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags)) |
3602 | DMEMIT(" %s", dm_raid_arg_name_by_flag(CTR_FLAG_NOSYNC)); | |
7a7c330f HM |
3603 | if (rebuild_disks) |
3604 | for (i = 0; i < rs->raid_disks; i++) | |
3605 | if (test_bit(rs->dev[i].rdev.raid_disk, (void *) rs->rebuild_disks)) | |
3606 | DMEMIT(" %s %u", dm_raid_arg_name_by_flag(CTR_FLAG_REBUILD), | |
3607 | rs->dev[i].rdev.raid_disk); | |
4464e36e HM |
3608 | if (test_bit(__CTR_FLAG_DAEMON_SLEEP, &rs->ctr_flags)) |
3609 | DMEMIT(" %s %lu", dm_raid_arg_name_by_flag(CTR_FLAG_DAEMON_SLEEP), | |
3610 | mddev->bitmap_info.daemon_sleep); | |
3611 | if (test_bit(__CTR_FLAG_MIN_RECOVERY_RATE, &rs->ctr_flags)) | |
3612 | DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_MIN_RECOVERY_RATE), | |
3613 | mddev->sync_speed_min); | |
3614 | if (test_bit(__CTR_FLAG_MAX_RECOVERY_RATE, &rs->ctr_flags)) | |
3615 | DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_MAX_RECOVERY_RATE), | |
3616 | mddev->sync_speed_max); | |
7a7c330f HM |
3617 | if (write_mostly_params) |
3618 | for (i = 0; i < rs->raid_disks; i++) | |
3619 | if (test_bit(WriteMostly, &rs->dev[i].rdev.flags)) | |
3620 | DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_WRITE_MOSTLY), | |
3621 | rs->dev[i].rdev.raid_disk); | |
4286325b | 3622 | if (test_bit(__CTR_FLAG_MAX_WRITE_BEHIND, &rs->ctr_flags)) |
3fa6cf38 | 3623 | DMEMIT(" %s %lu", dm_raid_arg_name_by_flag(CTR_FLAG_MAX_WRITE_BEHIND), |
3a1c1ef2 | 3624 | mddev->bitmap_info.max_write_behind); |
4464e36e HM |
3625 | if (test_bit(__CTR_FLAG_STRIPE_CACHE, &rs->ctr_flags)) |
3626 | DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_STRIPE_CACHE), | |
3627 | max_nr_stripes); | |
3628 | if (test_bit(__CTR_FLAG_REGION_SIZE, &rs->ctr_flags)) | |
3629 | DMEMIT(" %s %llu", dm_raid_arg_name_by_flag(CTR_FLAG_REGION_SIZE), | |
3630 | (unsigned long long) to_sector(mddev->bitmap_info.chunksize)); | |
3631 | if (test_bit(__CTR_FLAG_RAID10_COPIES, &rs->ctr_flags)) | |
3632 | DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_COPIES), | |
3633 | raid10_md_layout_to_copies(mddev->layout)); | |
3634 | if (test_bit(__CTR_FLAG_RAID10_FORMAT, &rs->ctr_flags)) | |
3635 | DMEMIT(" %s %s", dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_FORMAT), | |
3636 | raid10_md_layout_to_format(mddev->layout)); | |
3637 | if (test_bit(__CTR_FLAG_DELTA_DISKS, &rs->ctr_flags)) | |
3638 | DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_DELTA_DISKS), | |
3639 | max(rs->delta_disks, mddev->delta_disks)); | |
3640 | if (test_bit(__CTR_FLAG_DATA_OFFSET, &rs->ctr_flags)) | |
3641 | DMEMIT(" %s %llu", dm_raid_arg_name_by_flag(CTR_FLAG_DATA_OFFSET), | |
3642 | (unsigned long long) rs->data_offset); | |
63c32ed4 HM |
3643 | if (test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags)) |
3644 | DMEMIT(" %s %s", dm_raid_arg_name_by_flag(CTR_FLAG_JOURNAL_DEV), | |
3645 | __get_dev_name(rs->journal_dev.dev)); | |
6e53636f HM |
3646 | if (test_bit(__CTR_FLAG_JOURNAL_MODE, &rs->ctr_flags)) |
3647 | DMEMIT(" %s %s", dm_raid_arg_name_by_flag(CTR_FLAG_JOURNAL_MODE), | |
3648 | md_journal_mode_to_dm_raid(rs->journal_dev.mode)); | |
3a1c1ef2 | 3649 | DMEMIT(" %d", rs->raid_disks); |
7a7c330f HM |
3650 | for (i = 0; i < rs->raid_disks; i++) |
3651 | DMEMIT(" %s %s", __get_dev_name(rs->dev[i].meta_dev), | |
3652 | __get_dev_name(rs->dev[i].data_dev)); | |
9d09e663 | 3653 | } |
9d09e663 N |
3654 | } |
3655 | ||
094f394d | 3656 | static int raid_message(struct dm_target *ti, unsigned int argc, char **argv) |
be83651f JB |
3657 | { |
3658 | struct raid_set *rs = ti->private; | |
3659 | struct mddev *mddev = &rs->md; | |
3660 | ||
be83651f JB |
3661 | if (!mddev->pers || !mddev->pers->sync_request) |
3662 | return -EINVAL; | |
3663 | ||
3664 | if (!strcasecmp(argv[0], "frozen")) | |
3665 | set_bit(MD_RECOVERY_FROZEN, &mddev->recovery); | |
3666 | else | |
3667 | clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery); | |
3668 | ||
3669 | if (!strcasecmp(argv[0], "idle") || !strcasecmp(argv[0], "frozen")) { | |
3670 | if (mddev->sync_thread) { | |
3671 | set_bit(MD_RECOVERY_INTR, &mddev->recovery); | |
3672 | md_reap_sync_thread(mddev); | |
3673 | } | |
3674 | } else if (test_bit(MD_RECOVERY_RUNNING, &mddev->recovery) || | |
3675 | test_bit(MD_RECOVERY_NEEDED, &mddev->recovery)) | |
3676 | return -EBUSY; | |
3677 | else if (!strcasecmp(argv[0], "resync")) | |
3a1c1ef2 HM |
3678 | ; /* MD_RECOVERY_NEEDED set below */ |
3679 | else if (!strcasecmp(argv[0], "recover")) | |
be83651f | 3680 | set_bit(MD_RECOVERY_RECOVER, &mddev->recovery); |
3a1c1ef2 | 3681 | else { |
ad470472 | 3682 | if (!strcasecmp(argv[0], "check")) { |
be83651f | 3683 | set_bit(MD_RECOVERY_CHECK, &mddev->recovery); |
ad470472 MS |
3684 | set_bit(MD_RECOVERY_REQUESTED, &mddev->recovery); |
3685 | set_bit(MD_RECOVERY_SYNC, &mddev->recovery); | |
3686 | } else if (!strcasecmp(argv[0], "repair")) { | |
105db599 MS |
3687 | set_bit(MD_RECOVERY_REQUESTED, &mddev->recovery); |
3688 | set_bit(MD_RECOVERY_SYNC, &mddev->recovery); | |
3689 | } else | |
be83651f | 3690 | return -EINVAL; |
be83651f JB |
3691 | } |
3692 | if (mddev->ro == 2) { | |
3693 | /* A write to sync_action is enough to justify | |
3694 | * canceling read-auto mode | |
3695 | */ | |
3696 | mddev->ro = 0; | |
3a1c1ef2 | 3697 | if (!mddev->suspended && mddev->sync_thread) |
be83651f JB |
3698 | md_wakeup_thread(mddev->sync_thread); |
3699 | } | |
3700 | set_bit(MD_RECOVERY_NEEDED, &mddev->recovery); | |
3a1c1ef2 | 3701 | if (!mddev->suspended && mddev->thread) |
be83651f JB |
3702 | md_wakeup_thread(mddev->thread); |
3703 | ||
3704 | return 0; | |
3705 | } | |
3706 | ||
3707 | static int raid_iterate_devices(struct dm_target *ti, | |
3708 | iterate_devices_callout_fn fn, void *data) | |
9d09e663 N |
3709 | { |
3710 | struct raid_set *rs = ti->private; | |
094f394d | 3711 | unsigned int i; |
73c6f239 | 3712 | int r = 0; |
9d09e663 | 3713 | |
73c6f239 | 3714 | for (i = 0; !r && i < rs->md.raid_disks; i++) |
9d09e663 | 3715 | if (rs->dev[i].data_dev) |
73c6f239 | 3716 | r = fn(ti, |
9d09e663 N |
3717 | rs->dev[i].data_dev, |
3718 | 0, /* No offset on data devs */ | |
3719 | rs->md.dev_sectors, | |
3720 | data); | |
3721 | ||
73c6f239 | 3722 | return r; |
9d09e663 N |
3723 | } |
3724 | ||
3725 | static void raid_io_hints(struct dm_target *ti, struct queue_limits *limits) | |
3726 | { | |
3727 | struct raid_set *rs = ti->private; | |
89d3d9a1 | 3728 | unsigned int chunk_size = to_bytes(rs->md.chunk_sectors); |
9d09e663 N |
3729 | |
3730 | blk_limits_io_min(limits, chunk_size); | |
89d3d9a1 | 3731 | blk_limits_io_opt(limits, chunk_size * mddev_data_stripes(rs)); |
9d09e663 N |
3732 | } |
3733 | ||
9d09e663 N |
3734 | static void raid_postsuspend(struct dm_target *ti) |
3735 | { | |
3736 | struct raid_set *rs = ti->private; | |
3737 | ||
4d5324f7 | 3738 | if (!test_and_set_bit(RT_FLAG_RS_SUSPENDED, &rs->runtime_flags)) { |
1af2048a HM |
3739 | /* Writes have to be stopped before suspending to avoid deadlocks. */ |
3740 | if (!test_bit(MD_RECOVERY_FROZEN, &rs->md.recovery)) | |
3741 | md_stop_writes(&rs->md); | |
3742 | ||
4d5324f7 | 3743 | mddev_lock_nointr(&rs->md); |
31e10a41 | 3744 | mddev_suspend(&rs->md); |
4d5324f7 N |
3745 | mddev_unlock(&rs->md); |
3746 | } | |
9d09e663 N |
3747 | } |
3748 | ||
f381e71b | 3749 | static void attempt_restore_of_faulty_devices(struct raid_set *rs) |
9d09e663 | 3750 | { |
9092c02d | 3751 | int i; |
a3c06a38 | 3752 | uint64_t cleared_failed_devices[DISKS_ARRAY_ELEMS]; |
9092c02d | 3753 | unsigned long flags; |
a3c06a38 | 3754 | bool cleared = false; |
9092c02d | 3755 | struct dm_raid_superblock *sb; |
a3c06a38 | 3756 | struct mddev *mddev = &rs->md; |
9092c02d | 3757 | struct md_rdev *r; |
9d09e663 | 3758 | |
a3c06a38 HM |
3759 | /* RAID personalities have to provide hot add/remove methods or we need to bail out. */ |
3760 | if (!mddev->pers || !mddev->pers->hot_add_disk || !mddev->pers->hot_remove_disk) | |
3761 | return; | |
3762 | ||
3763 | memset(cleared_failed_devices, 0, sizeof(cleared_failed_devices)); | |
3764 | ||
c63ede3b | 3765 | for (i = 0; i < mddev->raid_disks; i++) { |
f381e71b | 3766 | r = &rs->dev[i].rdev; |
63c32ed4 HM |
3767 | /* HM FIXME: enhance journal device recovery processing */ |
3768 | if (test_bit(Journal, &r->flags)) | |
3769 | continue; | |
3770 | ||
e2568465 HM |
3771 | if (test_bit(Faulty, &r->flags) && |
3772 | r->meta_bdev && !read_disk_sb(r, r->sb_size, true)) { | |
f381e71b JB |
3773 | DMINFO("Faulty %s device #%d has readable super block." |
3774 | " Attempting to revive it.", | |
3775 | rs->raid_type->name, i); | |
a4dc163a JB |
3776 | |
3777 | /* | |
3778 | * Faulty bit may be set, but sometimes the array can | |
3779 | * be suspended before the personalities can respond | |
3780 | * by removing the device from the array (i.e. calling | |
43157840 | 3781 | * 'hot_remove_disk'). If they haven't yet removed |
a4dc163a JB |
3782 | * the failed device, its 'raid_disk' number will be |
3783 | * '>= 0' - meaning we must call this function | |
3784 | * ourselves. | |
3785 | */ | |
f381e71b | 3786 | flags = r->flags; |
c63ede3b HM |
3787 | clear_bit(In_sync, &r->flags); /* Mandatory for hot remove. */ |
3788 | if (r->raid_disk >= 0) { | |
3789 | if (mddev->pers->hot_remove_disk(mddev, r)) { | |
3790 | /* Failed to revive this device, try next */ | |
3791 | r->flags = flags; | |
3792 | continue; | |
3793 | } | |
3794 | } else | |
3795 | r->raid_disk = r->saved_raid_disk = i; | |
3796 | ||
f381e71b JB |
3797 | clear_bit(Faulty, &r->flags); |
3798 | clear_bit(WriteErrorSeen, &r->flags); | |
c63ede3b | 3799 | |
a3c06a38 | 3800 | if (mddev->pers->hot_add_disk(mddev, r)) { |
c63ede3b HM |
3801 | /* Failed to revive this device, try next */ |
3802 | r->raid_disk = r->saved_raid_disk = -1; | |
f381e71b JB |
3803 | r->flags = flags; |
3804 | } else { | |
c63ede3b | 3805 | clear_bit(In_sync, &r->flags); |
f381e71b | 3806 | r->recovery_offset = 0; |
a3c06a38 HM |
3807 | set_bit(i, (void *) cleared_failed_devices); |
3808 | cleared = true; | |
f381e71b JB |
3809 | } |
3810 | } | |
3811 | } | |
a3c06a38 HM |
3812 | |
3813 | /* If any failed devices could be cleared, update all sbs failed_devices bits */ | |
3814 | if (cleared) { | |
3815 | uint64_t failed_devices[DISKS_ARRAY_ELEMS]; | |
3816 | ||
f381e71b | 3817 | rdev_for_each(r, &rs->md) { |
63c32ed4 HM |
3818 | if (test_bit(Journal, &r->flags)) |
3819 | continue; | |
3820 | ||
f381e71b | 3821 | sb = page_address(r->sb_page); |
a3c06a38 HM |
3822 | sb_retrieve_failed_devices(sb, failed_devices); |
3823 | ||
3824 | for (i = 0; i < DISKS_ARRAY_ELEMS; i++) | |
3825 | failed_devices[i] &= ~cleared_failed_devices[i]; | |
3826 | ||
3827 | sb_update_failed_devices(sb, failed_devices); | |
f381e71b JB |
3828 | } |
3829 | } | |
3830 | } | |
3831 | ||
e6ca5e1a | 3832 | static int __load_dirty_region_bitmap(struct raid_set *rs) |
ecbfb9f1 HM |
3833 | { |
3834 | int r = 0; | |
3835 | ||
3836 | /* Try loading the bitmap unless "raid0", which does not have one */ | |
3837 | if (!rs_is_raid0(rs) && | |
4286325b | 3838 | !test_and_set_bit(RT_FLAG_RS_BITMAP_LOADED, &rs->runtime_flags)) { |
ecbfb9f1 HM |
3839 | r = bitmap_load(&rs->md); |
3840 | if (r) | |
3841 | DMERR("Failed to load bitmap"); | |
3842 | } | |
3843 | ||
3844 | return r; | |
3845 | } | |
3846 | ||
6e20902e HM |
3847 | /* Enforce updating all superblocks */ |
3848 | static void rs_update_sbs(struct raid_set *rs) | |
3849 | { | |
3850 | struct mddev *mddev = &rs->md; | |
3851 | int ro = mddev->ro; | |
3852 | ||
2953079c | 3853 | set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags); |
6e20902e HM |
3854 | mddev->ro = 0; |
3855 | md_update_sb(mddev, 1); | |
3856 | mddev->ro = ro; | |
3857 | } | |
3858 | ||
9dbd1aa3 HM |
3859 | /* |
3860 | * Reshape changes raid algorithm of @rs to new one within personality | |
3861 | * (e.g. raid6_zr -> raid6_nc), changes stripe size, adds/removes | |
3862 | * disks from a raid set thus growing/shrinking it or resizes the set | |
3863 | * | |
3864 | * Call mddev_lock_nointr() before! | |
3865 | */ | |
3866 | static int rs_start_reshape(struct raid_set *rs) | |
3867 | { | |
3868 | int r; | |
3869 | struct mddev *mddev = &rs->md; | |
3870 | struct md_personality *pers = mddev->pers; | |
3871 | ||
3872 | r = rs_setup_reshape(rs); | |
3873 | if (r) | |
3874 | return r; | |
3875 | ||
3876 | /* Need to be resumed to be able to start reshape, recovery is frozen until raid_resume() though */ | |
0cf352e5 | 3877 | if (test_and_clear_bit(RT_FLAG_RS_SUSPENDED, &rs->runtime_flags)) |
9dbd1aa3 HM |
3878 | mddev_resume(mddev); |
3879 | ||
3880 | /* | |
3881 | * Check any reshape constraints enforced by the personalility | |
3882 | * | |
3883 | * May as well already kick the reshape off so that * pers->start_reshape() becomes optional. | |
3884 | */ | |
3885 | r = pers->check_reshape(mddev); | |
3886 | if (r) { | |
3887 | rs->ti->error = "pers->check_reshape() failed"; | |
3888 | return r; | |
3889 | } | |
3890 | ||
3891 | /* | |
3892 | * Personality may not provide start reshape method in which | |
3893 | * case check_reshape above has already covered everything | |
3894 | */ | |
3895 | if (pers->start_reshape) { | |
3896 | r = pers->start_reshape(mddev); | |
3897 | if (r) { | |
3898 | rs->ti->error = "pers->start_reshape() failed"; | |
3899 | return r; | |
3900 | } | |
3901 | } | |
3902 | ||
3903 | /* Suspend because a resume will happen in raid_resume() */ | |
0cf352e5 HM |
3904 | set_bit(RT_FLAG_RS_SUSPENDED, &rs->runtime_flags); |
3905 | mddev_suspend(mddev); | |
9dbd1aa3 | 3906 | |
6e20902e HM |
3907 | /* |
3908 | * Now reshape got set up, update superblocks to | |
3909 | * reflect the fact so that a table reload will | |
3910 | * access proper superblock content in the ctr. | |
3911 | */ | |
3912 | rs_update_sbs(rs); | |
9dbd1aa3 HM |
3913 | |
3914 | return 0; | |
3915 | } | |
3916 | ||
ecbfb9f1 HM |
3917 | static int raid_preresume(struct dm_target *ti) |
3918 | { | |
9dbd1aa3 | 3919 | int r; |
ecbfb9f1 HM |
3920 | struct raid_set *rs = ti->private; |
3921 | struct mddev *mddev = &rs->md; | |
3922 | ||
11e47232 | 3923 | /* This is a resume after a suspend of the set -> it's already started. */ |
4286325b | 3924 | if (test_and_set_bit(RT_FLAG_RS_PRERESUMED, &rs->runtime_flags)) |
ecbfb9f1 HM |
3925 | return 0; |
3926 | ||
11e47232 HM |
3927 | if (!test_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags)) { |
3928 | struct raid_set *rs_active = rs_find_active(rs); | |
3929 | ||
3930 | if (rs_active) { | |
3931 | /* | |
3932 | * In case no rebuilds have been requested | |
3933 | * and an active table slot exists, copy | |
3934 | * current resynchonization completed and | |
3935 | * reshape position pointers across from | |
3936 | * suspended raid set in the active slot. | |
3937 | * | |
3938 | * This resumes the new mapping at current | |
3939 | * offsets to continue recover/reshape without | |
3940 | * necessarily redoing a raid set partially or | |
3941 | * causing data corruption in case of a reshape. | |
3942 | */ | |
3943 | if (rs_active->md.curr_resync_completed != MaxSector) | |
3944 | mddev->curr_resync_completed = rs_active->md.curr_resync_completed; | |
3945 | if (rs_active->md.reshape_position != MaxSector) | |
3946 | mddev->reshape_position = rs_active->md.reshape_position; | |
3947 | } | |
3948 | } | |
3949 | ||
ecbfb9f1 HM |
3950 | /* |
3951 | * The superblocks need to be updated on disk if the | |
6e20902e HM |
3952 | * array is new or new devices got added (thus zeroed |
3953 | * out by userspace) or __load_dirty_region_bitmap | |
3954 | * will overwrite them in core with old data or fail. | |
ecbfb9f1 | 3955 | */ |
6e20902e HM |
3956 | if (test_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags)) |
3957 | rs_update_sbs(rs); | |
ecbfb9f1 | 3958 | |
ecbfb9f1 | 3959 | /* Load the bitmap from disk unless raid0 */ |
9dbd1aa3 HM |
3960 | r = __load_dirty_region_bitmap(rs); |
3961 | if (r) | |
3962 | return r; | |
3963 | ||
4257e085 | 3964 | /* Resize bitmap to adjust to changed region size (aka MD bitmap chunksize) */ |
7a0c5c5b | 3965 | if (test_bit(RT_FLAG_RS_BITMAP_LOADED, &rs->runtime_flags) && mddev->bitmap && |
4257e085 HM |
3966 | mddev->bitmap_info.chunksize != to_bytes(rs->requested_bitmap_chunk_sectors)) { |
3967 | r = bitmap_resize(mddev->bitmap, mddev->dev_sectors, | |
3968 | to_bytes(rs->requested_bitmap_chunk_sectors), 0); | |
3969 | if (r) | |
3970 | DMERR("Failed to resize bitmap"); | |
3971 | } | |
3972 | ||
9dbd1aa3 HM |
3973 | /* Check for any resize/reshape on @rs and adjust/initiate */ |
3974 | /* Be prepared for mddev_resume() in raid_resume() */ | |
3975 | set_bit(MD_RECOVERY_FROZEN, &mddev->recovery); | |
3976 | if (mddev->recovery_cp && mddev->recovery_cp < MaxSector) { | |
9dbd1aa3 HM |
3977 | set_bit(MD_RECOVERY_SYNC, &mddev->recovery); |
3978 | mddev->resync_min = mddev->recovery_cp; | |
3979 | } | |
3980 | ||
345a6cdc | 3981 | /* Check for any reshape request unless new raid set */ |
d39f0010 | 3982 | if (test_bit(RT_FLAG_RESHAPE_RS, &rs->runtime_flags)) { |
9dbd1aa3 | 3983 | /* Initiate a reshape. */ |
61e06e2c | 3984 | rs_set_rdev_sectors(rs); |
9dbd1aa3 HM |
3985 | mddev_lock_nointr(mddev); |
3986 | r = rs_start_reshape(rs); | |
3987 | mddev_unlock(mddev); | |
3988 | if (r) | |
3989 | DMWARN("Failed to check/start reshape, continuing without change"); | |
3990 | r = 0; | |
3991 | } | |
3992 | ||
3993 | return r; | |
ecbfb9f1 HM |
3994 | } |
3995 | ||
f381e71b JB |
3996 | static void raid_resume(struct dm_target *ti) |
3997 | { | |
3998 | struct raid_set *rs = ti->private; | |
ecbfb9f1 | 3999 | struct mddev *mddev = &rs->md; |
f381e71b | 4000 | |
4286325b | 4001 | if (test_and_set_bit(RT_FLAG_RS_RESUMED, &rs->runtime_flags)) { |
ecbfb9f1 HM |
4002 | /* |
4003 | * A secondary resume while the device is active. | |
4004 | * Take this opportunity to check whether any failed | |
4005 | * devices are reachable again. | |
4006 | */ | |
4007 | attempt_restore_of_faulty_devices(rs); | |
31e10a41 | 4008 | } |
34f8ac6d | 4009 | |
4d5324f7 | 4010 | if (test_and_clear_bit(RT_FLAG_RS_SUSPENDED, &rs->runtime_flags)) { |
11e47232 HM |
4011 | /* Only reduce raid set size before running a disk removing reshape. */ |
4012 | if (mddev->delta_disks < 0) | |
4013 | rs_set_capacity(rs); | |
4014 | ||
4d5324f7 | 4015 | mddev_lock_nointr(mddev); |
11e47232 | 4016 | clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery); |
78a75d10 HM |
4017 | mddev->ro = 0; |
4018 | mddev->in_sync = 0; | |
31e10a41 | 4019 | mddev_resume(mddev); |
4d5324f7 N |
4020 | mddev_unlock(mddev); |
4021 | } | |
9d09e663 N |
4022 | } |
4023 | ||
4024 | static struct target_type raid_target = { | |
4025 | .name = "raid", | |
11e47232 | 4026 | .version = {1, 13, 2}, |
9d09e663 N |
4027 | .module = THIS_MODULE, |
4028 | .ctr = raid_ctr, | |
4029 | .dtr = raid_dtr, | |
4030 | .map = raid_map, | |
4031 | .status = raid_status, | |
be83651f | 4032 | .message = raid_message, |
9d09e663 N |
4033 | .iterate_devices = raid_iterate_devices, |
4034 | .io_hints = raid_io_hints, | |
9d09e663 | 4035 | .postsuspend = raid_postsuspend, |
ecbfb9f1 | 4036 | .preresume = raid_preresume, |
9d09e663 N |
4037 | .resume = raid_resume, |
4038 | }; | |
4039 | ||
4040 | static int __init dm_raid_init(void) | |
4041 | { | |
fe5d2f4a JB |
4042 | DMINFO("Loading target version %u.%u.%u", |
4043 | raid_target.version[0], | |
4044 | raid_target.version[1], | |
4045 | raid_target.version[2]); | |
9d09e663 N |
4046 | return dm_register_target(&raid_target); |
4047 | } | |
4048 | ||
4049 | static void __exit dm_raid_exit(void) | |
4050 | { | |
4051 | dm_unregister_target(&raid_target); | |
4052 | } | |
4053 | ||
4054 | module_init(dm_raid_init); | |
4055 | module_exit(dm_raid_exit); | |
4056 | ||
48cf06bc HM |
4057 | module_param(devices_handle_discard_safely, bool, 0644); |
4058 | MODULE_PARM_DESC(devices_handle_discard_safely, | |
4059 | "Set to Y if all devices in each array reliably return zeroes on reads from discarded regions"); | |
4060 | ||
ef9b85a6 MS |
4061 | MODULE_DESCRIPTION(DM_NAME " raid0/1/10/4/5/6 target"); |
4062 | MODULE_ALIAS("dm-raid0"); | |
63f33b8d JB |
4063 | MODULE_ALIAS("dm-raid1"); |
4064 | MODULE_ALIAS("dm-raid10"); | |
9d09e663 N |
4065 | MODULE_ALIAS("dm-raid4"); |
4066 | MODULE_ALIAS("dm-raid5"); | |
4067 | MODULE_ALIAS("dm-raid6"); | |
4068 | MODULE_AUTHOR("Neil Brown <[email protected]>"); | |
3a1c1ef2 | 4069 | MODULE_AUTHOR("Heinz Mauelshagen <[email protected]>"); |
9d09e663 | 4070 | MODULE_LICENSE("GPL"); |