1*4882a593Smuzhiyun /*
2*4882a593Smuzhiyun * Copyright (C) 2010-2011 Neil Brown
3*4882a593Smuzhiyun * Copyright (C) 2010-2018 Red Hat, Inc. All rights reserved.
4*4882a593Smuzhiyun *
5*4882a593Smuzhiyun * This file is released under the GPL.
6*4882a593Smuzhiyun */
7*4882a593Smuzhiyun
8*4882a593Smuzhiyun #include <linux/slab.h>
9*4882a593Smuzhiyun #include <linux/module.h>
10*4882a593Smuzhiyun
11*4882a593Smuzhiyun #include "md.h"
12*4882a593Smuzhiyun #include "raid1.h"
13*4882a593Smuzhiyun #include "raid5.h"
14*4882a593Smuzhiyun #include "raid10.h"
15*4882a593Smuzhiyun #include "md-bitmap.h"
16*4882a593Smuzhiyun
17*4882a593Smuzhiyun #include <linux/device-mapper.h>
18*4882a593Smuzhiyun
19*4882a593Smuzhiyun #define DM_MSG_PREFIX "raid"
20*4882a593Smuzhiyun #define MAX_RAID_DEVICES 253 /* md-raid kernel limit */
21*4882a593Smuzhiyun
22*4882a593Smuzhiyun /*
23*4882a593Smuzhiyun * Minimum sectors of free reshape space per raid device
24*4882a593Smuzhiyun */
25*4882a593Smuzhiyun #define MIN_FREE_RESHAPE_SPACE to_sector(4*4096)
26*4882a593Smuzhiyun
27*4882a593Smuzhiyun /*
28*4882a593Smuzhiyun * Minimum journal space 4 MiB in sectors.
29*4882a593Smuzhiyun */
30*4882a593Smuzhiyun #define MIN_RAID456_JOURNAL_SPACE (4*2048)
31*4882a593Smuzhiyun
32*4882a593Smuzhiyun static bool devices_handle_discard_safely = false;
33*4882a593Smuzhiyun
34*4882a593Smuzhiyun /*
35*4882a593Smuzhiyun * The following flags are used by dm-raid.c to set up the array state.
36*4882a593Smuzhiyun * They must be cleared before md_run is called.
37*4882a593Smuzhiyun */
38*4882a593Smuzhiyun #define FirstUse 10 /* rdev flag */
39*4882a593Smuzhiyun
40*4882a593Smuzhiyun struct raid_dev {
41*4882a593Smuzhiyun /*
42*4882a593Smuzhiyun * Two DM devices, one to hold metadata and one to hold the
43*4882a593Smuzhiyun * actual data/parity. The reason for this is to not confuse
44*4882a593Smuzhiyun * ti->len and give more flexibility in altering size and
45*4882a593Smuzhiyun * characteristics.
46*4882a593Smuzhiyun *
47*4882a593Smuzhiyun * While it is possible for this device to be associated
48*4882a593Smuzhiyun * with a different physical device than the data_dev, it
49*4882a593Smuzhiyun * is intended for it to be the same.
50*4882a593Smuzhiyun * |--------- Physical Device ---------|
51*4882a593Smuzhiyun * |- meta_dev -|------ data_dev ------|
52*4882a593Smuzhiyun */
53*4882a593Smuzhiyun struct dm_dev *meta_dev;
54*4882a593Smuzhiyun struct dm_dev *data_dev;
55*4882a593Smuzhiyun struct md_rdev rdev;
56*4882a593Smuzhiyun };
57*4882a593Smuzhiyun
58*4882a593Smuzhiyun /*
59*4882a593Smuzhiyun * Bits for establishing rs->ctr_flags
60*4882a593Smuzhiyun *
61*4882a593Smuzhiyun * 1 = no flag value
62*4882a593Smuzhiyun * 2 = flag with value
63*4882a593Smuzhiyun */
64*4882a593Smuzhiyun #define __CTR_FLAG_SYNC 0 /* 1 */ /* Not with raid0! */
65*4882a593Smuzhiyun #define __CTR_FLAG_NOSYNC 1 /* 1 */ /* Not with raid0! */
66*4882a593Smuzhiyun #define __CTR_FLAG_REBUILD 2 /* 2 */ /* Not with raid0! */
67*4882a593Smuzhiyun #define __CTR_FLAG_DAEMON_SLEEP 3 /* 2 */ /* Not with raid0! */
68*4882a593Smuzhiyun #define __CTR_FLAG_MIN_RECOVERY_RATE 4 /* 2 */ /* Not with raid0! */
69*4882a593Smuzhiyun #define __CTR_FLAG_MAX_RECOVERY_RATE 5 /* 2 */ /* Not with raid0! */
70*4882a593Smuzhiyun #define __CTR_FLAG_MAX_WRITE_BEHIND 6 /* 2 */ /* Only with raid1! */
71*4882a593Smuzhiyun #define __CTR_FLAG_WRITE_MOSTLY 7 /* 2 */ /* Only with raid1! */
72*4882a593Smuzhiyun #define __CTR_FLAG_STRIPE_CACHE 8 /* 2 */ /* Only with raid4/5/6! */
73*4882a593Smuzhiyun #define __CTR_FLAG_REGION_SIZE 9 /* 2 */ /* Not with raid0! */
74*4882a593Smuzhiyun #define __CTR_FLAG_RAID10_COPIES 10 /* 2 */ /* Only with raid10 */
75*4882a593Smuzhiyun #define __CTR_FLAG_RAID10_FORMAT 11 /* 2 */ /* Only with raid10 */
76*4882a593Smuzhiyun /* New for v1.9.0 */
77*4882a593Smuzhiyun #define __CTR_FLAG_DELTA_DISKS 12 /* 2 */ /* Only with reshapable raid1/4/5/6/10! */
78*4882a593Smuzhiyun #define __CTR_FLAG_DATA_OFFSET 13 /* 2 */ /* Only with reshapable raid4/5/6/10! */
79*4882a593Smuzhiyun #define __CTR_FLAG_RAID10_USE_NEAR_SETS 14 /* 2 */ /* Only with raid10! */
80*4882a593Smuzhiyun
81*4882a593Smuzhiyun /* New for v1.10.0 */
82*4882a593Smuzhiyun #define __CTR_FLAG_JOURNAL_DEV 15 /* 2 */ /* Only with raid4/5/6 (journal device)! */
83*4882a593Smuzhiyun
84*4882a593Smuzhiyun /* New for v1.11.1 */
85*4882a593Smuzhiyun #define __CTR_FLAG_JOURNAL_MODE 16 /* 2 */ /* Only with raid4/5/6 (journal mode)! */
86*4882a593Smuzhiyun
87*4882a593Smuzhiyun /*
88*4882a593Smuzhiyun * Flags for rs->ctr_flags field.
89*4882a593Smuzhiyun */
90*4882a593Smuzhiyun #define CTR_FLAG_SYNC (1 << __CTR_FLAG_SYNC)
91*4882a593Smuzhiyun #define CTR_FLAG_NOSYNC (1 << __CTR_FLAG_NOSYNC)
92*4882a593Smuzhiyun #define CTR_FLAG_REBUILD (1 << __CTR_FLAG_REBUILD)
93*4882a593Smuzhiyun #define CTR_FLAG_DAEMON_SLEEP (1 << __CTR_FLAG_DAEMON_SLEEP)
94*4882a593Smuzhiyun #define CTR_FLAG_MIN_RECOVERY_RATE (1 << __CTR_FLAG_MIN_RECOVERY_RATE)
95*4882a593Smuzhiyun #define CTR_FLAG_MAX_RECOVERY_RATE (1 << __CTR_FLAG_MAX_RECOVERY_RATE)
96*4882a593Smuzhiyun #define CTR_FLAG_MAX_WRITE_BEHIND (1 << __CTR_FLAG_MAX_WRITE_BEHIND)
97*4882a593Smuzhiyun #define CTR_FLAG_WRITE_MOSTLY (1 << __CTR_FLAG_WRITE_MOSTLY)
98*4882a593Smuzhiyun #define CTR_FLAG_STRIPE_CACHE (1 << __CTR_FLAG_STRIPE_CACHE)
99*4882a593Smuzhiyun #define CTR_FLAG_REGION_SIZE (1 << __CTR_FLAG_REGION_SIZE)
100*4882a593Smuzhiyun #define CTR_FLAG_RAID10_COPIES (1 << __CTR_FLAG_RAID10_COPIES)
101*4882a593Smuzhiyun #define CTR_FLAG_RAID10_FORMAT (1 << __CTR_FLAG_RAID10_FORMAT)
102*4882a593Smuzhiyun #define CTR_FLAG_DELTA_DISKS (1 << __CTR_FLAG_DELTA_DISKS)
103*4882a593Smuzhiyun #define CTR_FLAG_DATA_OFFSET (1 << __CTR_FLAG_DATA_OFFSET)
104*4882a593Smuzhiyun #define CTR_FLAG_RAID10_USE_NEAR_SETS (1 << __CTR_FLAG_RAID10_USE_NEAR_SETS)
105*4882a593Smuzhiyun #define CTR_FLAG_JOURNAL_DEV (1 << __CTR_FLAG_JOURNAL_DEV)
106*4882a593Smuzhiyun #define CTR_FLAG_JOURNAL_MODE (1 << __CTR_FLAG_JOURNAL_MODE)
107*4882a593Smuzhiyun
108*4882a593Smuzhiyun /*
109*4882a593Smuzhiyun * Definitions of various constructor flags to
110*4882a593Smuzhiyun * be used in checks of valid / invalid flags
111*4882a593Smuzhiyun * per raid level.
112*4882a593Smuzhiyun */
113*4882a593Smuzhiyun /* Define all any sync flags */
114*4882a593Smuzhiyun #define CTR_FLAGS_ANY_SYNC (CTR_FLAG_SYNC | CTR_FLAG_NOSYNC)
115*4882a593Smuzhiyun
116*4882a593Smuzhiyun /* Define flags for options without argument (e.g. 'nosync') */
117*4882a593Smuzhiyun #define CTR_FLAG_OPTIONS_NO_ARGS (CTR_FLAGS_ANY_SYNC | \
118*4882a593Smuzhiyun CTR_FLAG_RAID10_USE_NEAR_SETS)
119*4882a593Smuzhiyun
120*4882a593Smuzhiyun /* Define flags for options with one argument (e.g. 'delta_disks +2') */
121*4882a593Smuzhiyun #define CTR_FLAG_OPTIONS_ONE_ARG (CTR_FLAG_REBUILD | \
122*4882a593Smuzhiyun CTR_FLAG_WRITE_MOSTLY | \
123*4882a593Smuzhiyun CTR_FLAG_DAEMON_SLEEP | \
124*4882a593Smuzhiyun CTR_FLAG_MIN_RECOVERY_RATE | \
125*4882a593Smuzhiyun CTR_FLAG_MAX_RECOVERY_RATE | \
126*4882a593Smuzhiyun CTR_FLAG_MAX_WRITE_BEHIND | \
127*4882a593Smuzhiyun CTR_FLAG_STRIPE_CACHE | \
128*4882a593Smuzhiyun CTR_FLAG_REGION_SIZE | \
129*4882a593Smuzhiyun CTR_FLAG_RAID10_COPIES | \
130*4882a593Smuzhiyun CTR_FLAG_RAID10_FORMAT | \
131*4882a593Smuzhiyun CTR_FLAG_DELTA_DISKS | \
132*4882a593Smuzhiyun CTR_FLAG_DATA_OFFSET | \
133*4882a593Smuzhiyun CTR_FLAG_JOURNAL_DEV | \
134*4882a593Smuzhiyun CTR_FLAG_JOURNAL_MODE)
135*4882a593Smuzhiyun
136*4882a593Smuzhiyun /* Valid options definitions per raid level... */
137*4882a593Smuzhiyun
138*4882a593Smuzhiyun /* "raid0" does only accept data offset */
139*4882a593Smuzhiyun #define RAID0_VALID_FLAGS (CTR_FLAG_DATA_OFFSET)
140*4882a593Smuzhiyun
141*4882a593Smuzhiyun /* "raid1" does not accept stripe cache, data offset, delta_disks or any raid10 options */
142*4882a593Smuzhiyun #define RAID1_VALID_FLAGS (CTR_FLAGS_ANY_SYNC | \
143*4882a593Smuzhiyun CTR_FLAG_REBUILD | \
144*4882a593Smuzhiyun CTR_FLAG_WRITE_MOSTLY | \
145*4882a593Smuzhiyun CTR_FLAG_DAEMON_SLEEP | \
146*4882a593Smuzhiyun CTR_FLAG_MIN_RECOVERY_RATE | \
147*4882a593Smuzhiyun CTR_FLAG_MAX_RECOVERY_RATE | \
148*4882a593Smuzhiyun CTR_FLAG_MAX_WRITE_BEHIND | \
149*4882a593Smuzhiyun CTR_FLAG_REGION_SIZE | \
150*4882a593Smuzhiyun CTR_FLAG_DELTA_DISKS | \
151*4882a593Smuzhiyun CTR_FLAG_DATA_OFFSET)
152*4882a593Smuzhiyun
153*4882a593Smuzhiyun /* "raid10" does not accept any raid1 or stripe cache options */
154*4882a593Smuzhiyun #define RAID10_VALID_FLAGS (CTR_FLAGS_ANY_SYNC | \
155*4882a593Smuzhiyun CTR_FLAG_REBUILD | \
156*4882a593Smuzhiyun CTR_FLAG_DAEMON_SLEEP | \
157*4882a593Smuzhiyun CTR_FLAG_MIN_RECOVERY_RATE | \
158*4882a593Smuzhiyun CTR_FLAG_MAX_RECOVERY_RATE | \
159*4882a593Smuzhiyun CTR_FLAG_REGION_SIZE | \
160*4882a593Smuzhiyun CTR_FLAG_RAID10_COPIES | \
161*4882a593Smuzhiyun CTR_FLAG_RAID10_FORMAT | \
162*4882a593Smuzhiyun CTR_FLAG_DELTA_DISKS | \
163*4882a593Smuzhiyun CTR_FLAG_DATA_OFFSET | \
164*4882a593Smuzhiyun CTR_FLAG_RAID10_USE_NEAR_SETS)
165*4882a593Smuzhiyun
166*4882a593Smuzhiyun /*
167*4882a593Smuzhiyun * "raid4/5/6" do not accept any raid1 or raid10 specific options
168*4882a593Smuzhiyun *
169*4882a593Smuzhiyun * "raid6" does not accept "nosync", because it is not guaranteed
170*4882a593Smuzhiyun * that both parity and q-syndrome are being written properly with
171*4882a593Smuzhiyun * any writes
172*4882a593Smuzhiyun */
173*4882a593Smuzhiyun #define RAID45_VALID_FLAGS (CTR_FLAGS_ANY_SYNC | \
174*4882a593Smuzhiyun CTR_FLAG_REBUILD | \
175*4882a593Smuzhiyun CTR_FLAG_DAEMON_SLEEP | \
176*4882a593Smuzhiyun CTR_FLAG_MIN_RECOVERY_RATE | \
177*4882a593Smuzhiyun CTR_FLAG_MAX_RECOVERY_RATE | \
178*4882a593Smuzhiyun CTR_FLAG_STRIPE_CACHE | \
179*4882a593Smuzhiyun CTR_FLAG_REGION_SIZE | \
180*4882a593Smuzhiyun CTR_FLAG_DELTA_DISKS | \
181*4882a593Smuzhiyun CTR_FLAG_DATA_OFFSET | \
182*4882a593Smuzhiyun CTR_FLAG_JOURNAL_DEV | \
183*4882a593Smuzhiyun CTR_FLAG_JOURNAL_MODE)
184*4882a593Smuzhiyun
185*4882a593Smuzhiyun #define RAID6_VALID_FLAGS (CTR_FLAG_SYNC | \
186*4882a593Smuzhiyun CTR_FLAG_REBUILD | \
187*4882a593Smuzhiyun CTR_FLAG_DAEMON_SLEEP | \
188*4882a593Smuzhiyun CTR_FLAG_MIN_RECOVERY_RATE | \
189*4882a593Smuzhiyun CTR_FLAG_MAX_RECOVERY_RATE | \
190*4882a593Smuzhiyun CTR_FLAG_STRIPE_CACHE | \
191*4882a593Smuzhiyun CTR_FLAG_REGION_SIZE | \
192*4882a593Smuzhiyun CTR_FLAG_DELTA_DISKS | \
193*4882a593Smuzhiyun CTR_FLAG_DATA_OFFSET | \
194*4882a593Smuzhiyun CTR_FLAG_JOURNAL_DEV | \
195*4882a593Smuzhiyun CTR_FLAG_JOURNAL_MODE)
196*4882a593Smuzhiyun /* ...valid options definitions per raid level */
197*4882a593Smuzhiyun
198*4882a593Smuzhiyun /*
199*4882a593Smuzhiyun * Flags for rs->runtime_flags field
200*4882a593Smuzhiyun * (RT_FLAG prefix meaning "runtime flag")
201*4882a593Smuzhiyun *
202*4882a593Smuzhiyun * These are all internal and used to define runtime state,
203*4882a593Smuzhiyun * e.g. to prevent another resume from preresume processing
204*4882a593Smuzhiyun * the raid set all over again.
205*4882a593Smuzhiyun */
206*4882a593Smuzhiyun #define RT_FLAG_RS_PRERESUMED 0
207*4882a593Smuzhiyun #define RT_FLAG_RS_RESUMED 1
208*4882a593Smuzhiyun #define RT_FLAG_RS_BITMAP_LOADED 2
209*4882a593Smuzhiyun #define RT_FLAG_UPDATE_SBS 3
210*4882a593Smuzhiyun #define RT_FLAG_RESHAPE_RS 4
211*4882a593Smuzhiyun #define RT_FLAG_RS_SUSPENDED 5
212*4882a593Smuzhiyun #define RT_FLAG_RS_IN_SYNC 6
213*4882a593Smuzhiyun #define RT_FLAG_RS_RESYNCING 7
214*4882a593Smuzhiyun #define RT_FLAG_RS_GROW 8
215*4882a593Smuzhiyun
216*4882a593Smuzhiyun /* Array elements of 64 bit needed for rebuild/failed disk bits */
217*4882a593Smuzhiyun #define DISKS_ARRAY_ELEMS ((MAX_RAID_DEVICES + (sizeof(uint64_t) * 8 - 1)) / sizeof(uint64_t) / 8)
218*4882a593Smuzhiyun
219*4882a593Smuzhiyun /*
220*4882a593Smuzhiyun * raid set level, layout and chunk sectors backup/restore
221*4882a593Smuzhiyun */
222*4882a593Smuzhiyun struct rs_layout {
223*4882a593Smuzhiyun int new_level;
224*4882a593Smuzhiyun int new_layout;
225*4882a593Smuzhiyun int new_chunk_sectors;
226*4882a593Smuzhiyun };
227*4882a593Smuzhiyun
228*4882a593Smuzhiyun struct raid_set {
229*4882a593Smuzhiyun struct dm_target *ti;
230*4882a593Smuzhiyun
231*4882a593Smuzhiyun uint32_t stripe_cache_entries;
232*4882a593Smuzhiyun unsigned long ctr_flags;
233*4882a593Smuzhiyun unsigned long runtime_flags;
234*4882a593Smuzhiyun
235*4882a593Smuzhiyun uint64_t rebuild_disks[DISKS_ARRAY_ELEMS];
236*4882a593Smuzhiyun
237*4882a593Smuzhiyun int raid_disks;
238*4882a593Smuzhiyun int delta_disks;
239*4882a593Smuzhiyun int data_offset;
240*4882a593Smuzhiyun int raid10_copies;
241*4882a593Smuzhiyun int requested_bitmap_chunk_sectors;
242*4882a593Smuzhiyun
243*4882a593Smuzhiyun struct mddev md;
244*4882a593Smuzhiyun struct raid_type *raid_type;
245*4882a593Smuzhiyun
246*4882a593Smuzhiyun sector_t array_sectors;
247*4882a593Smuzhiyun sector_t dev_sectors;
248*4882a593Smuzhiyun
249*4882a593Smuzhiyun /* Optional raid4/5/6 journal device */
250*4882a593Smuzhiyun struct journal_dev {
251*4882a593Smuzhiyun struct dm_dev *dev;
252*4882a593Smuzhiyun struct md_rdev rdev;
253*4882a593Smuzhiyun int mode;
254*4882a593Smuzhiyun } journal_dev;
255*4882a593Smuzhiyun
256*4882a593Smuzhiyun struct raid_dev dev[];
257*4882a593Smuzhiyun };
258*4882a593Smuzhiyun
rs_config_backup(struct raid_set * rs,struct rs_layout * l)259*4882a593Smuzhiyun static void rs_config_backup(struct raid_set *rs, struct rs_layout *l)
260*4882a593Smuzhiyun {
261*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
262*4882a593Smuzhiyun
263*4882a593Smuzhiyun l->new_level = mddev->new_level;
264*4882a593Smuzhiyun l->new_layout = mddev->new_layout;
265*4882a593Smuzhiyun l->new_chunk_sectors = mddev->new_chunk_sectors;
266*4882a593Smuzhiyun }
267*4882a593Smuzhiyun
rs_config_restore(struct raid_set * rs,struct rs_layout * l)268*4882a593Smuzhiyun static void rs_config_restore(struct raid_set *rs, struct rs_layout *l)
269*4882a593Smuzhiyun {
270*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
271*4882a593Smuzhiyun
272*4882a593Smuzhiyun mddev->new_level = l->new_level;
273*4882a593Smuzhiyun mddev->new_layout = l->new_layout;
274*4882a593Smuzhiyun mddev->new_chunk_sectors = l->new_chunk_sectors;
275*4882a593Smuzhiyun }
276*4882a593Smuzhiyun
277*4882a593Smuzhiyun /* raid10 algorithms (i.e. formats) */
278*4882a593Smuzhiyun #define ALGORITHM_RAID10_DEFAULT 0
279*4882a593Smuzhiyun #define ALGORITHM_RAID10_NEAR 1
280*4882a593Smuzhiyun #define ALGORITHM_RAID10_OFFSET 2
281*4882a593Smuzhiyun #define ALGORITHM_RAID10_FAR 3
282*4882a593Smuzhiyun
283*4882a593Smuzhiyun /* Supported raid types and properties. */
284*4882a593Smuzhiyun static struct raid_type {
285*4882a593Smuzhiyun const char *name; /* RAID algorithm. */
286*4882a593Smuzhiyun const char *descr; /* Descriptor text for logging. */
287*4882a593Smuzhiyun const unsigned int parity_devs; /* # of parity devices. */
288*4882a593Smuzhiyun const unsigned int minimal_devs;/* minimal # of devices in set. */
289*4882a593Smuzhiyun const unsigned int level; /* RAID level. */
290*4882a593Smuzhiyun const unsigned int algorithm; /* RAID algorithm. */
291*4882a593Smuzhiyun } raid_types[] = {
292*4882a593Smuzhiyun {"raid0", "raid0 (striping)", 0, 2, 0, 0 /* NONE */},
293*4882a593Smuzhiyun {"raid1", "raid1 (mirroring)", 0, 2, 1, 0 /* NONE */},
294*4882a593Smuzhiyun {"raid10_far", "raid10 far (striped mirrors)", 0, 2, 10, ALGORITHM_RAID10_FAR},
295*4882a593Smuzhiyun {"raid10_offset", "raid10 offset (striped mirrors)", 0, 2, 10, ALGORITHM_RAID10_OFFSET},
296*4882a593Smuzhiyun {"raid10_near", "raid10 near (striped mirrors)", 0, 2, 10, ALGORITHM_RAID10_NEAR},
297*4882a593Smuzhiyun {"raid10", "raid10 (striped mirrors)", 0, 2, 10, ALGORITHM_RAID10_DEFAULT},
298*4882a593Smuzhiyun {"raid4", "raid4 (dedicated first parity disk)", 1, 2, 5, ALGORITHM_PARITY_0}, /* raid4 layout = raid5_0 */
299*4882a593Smuzhiyun {"raid5_n", "raid5 (dedicated last parity disk)", 1, 2, 5, ALGORITHM_PARITY_N},
300*4882a593Smuzhiyun {"raid5_ls", "raid5 (left symmetric)", 1, 2, 5, ALGORITHM_LEFT_SYMMETRIC},
301*4882a593Smuzhiyun {"raid5_rs", "raid5 (right symmetric)", 1, 2, 5, ALGORITHM_RIGHT_SYMMETRIC},
302*4882a593Smuzhiyun {"raid5_la", "raid5 (left asymmetric)", 1, 2, 5, ALGORITHM_LEFT_ASYMMETRIC},
303*4882a593Smuzhiyun {"raid5_ra", "raid5 (right asymmetric)", 1, 2, 5, ALGORITHM_RIGHT_ASYMMETRIC},
304*4882a593Smuzhiyun {"raid6_zr", "raid6 (zero restart)", 2, 4, 6, ALGORITHM_ROTATING_ZERO_RESTART},
305*4882a593Smuzhiyun {"raid6_nr", "raid6 (N restart)", 2, 4, 6, ALGORITHM_ROTATING_N_RESTART},
306*4882a593Smuzhiyun {"raid6_nc", "raid6 (N continue)", 2, 4, 6, ALGORITHM_ROTATING_N_CONTINUE},
307*4882a593Smuzhiyun {"raid6_n_6", "raid6 (dedicated parity/Q n/6)", 2, 4, 6, ALGORITHM_PARITY_N_6},
308*4882a593Smuzhiyun {"raid6_ls_6", "raid6 (left symmetric dedicated Q 6)", 2, 4, 6, ALGORITHM_LEFT_SYMMETRIC_6},
309*4882a593Smuzhiyun {"raid6_rs_6", "raid6 (right symmetric dedicated Q 6)", 2, 4, 6, ALGORITHM_RIGHT_SYMMETRIC_6},
310*4882a593Smuzhiyun {"raid6_la_6", "raid6 (left asymmetric dedicated Q 6)", 2, 4, 6, ALGORITHM_LEFT_ASYMMETRIC_6},
311*4882a593Smuzhiyun {"raid6_ra_6", "raid6 (right asymmetric dedicated Q 6)", 2, 4, 6, ALGORITHM_RIGHT_ASYMMETRIC_6}
312*4882a593Smuzhiyun };
313*4882a593Smuzhiyun
314*4882a593Smuzhiyun /* True, if @v is in inclusive range [@min, @max] */
__within_range(long v,long min,long max)315*4882a593Smuzhiyun static bool __within_range(long v, long min, long max)
316*4882a593Smuzhiyun {
317*4882a593Smuzhiyun return v >= min && v <= max;
318*4882a593Smuzhiyun }
319*4882a593Smuzhiyun
320*4882a593Smuzhiyun /* All table line arguments are defined here */
321*4882a593Smuzhiyun static struct arg_name_flag {
322*4882a593Smuzhiyun const unsigned long flag;
323*4882a593Smuzhiyun const char *name;
324*4882a593Smuzhiyun } __arg_name_flags[] = {
325*4882a593Smuzhiyun { CTR_FLAG_SYNC, "sync"},
326*4882a593Smuzhiyun { CTR_FLAG_NOSYNC, "nosync"},
327*4882a593Smuzhiyun { CTR_FLAG_REBUILD, "rebuild"},
328*4882a593Smuzhiyun { CTR_FLAG_DAEMON_SLEEP, "daemon_sleep"},
329*4882a593Smuzhiyun { CTR_FLAG_MIN_RECOVERY_RATE, "min_recovery_rate"},
330*4882a593Smuzhiyun { CTR_FLAG_MAX_RECOVERY_RATE, "max_recovery_rate"},
331*4882a593Smuzhiyun { CTR_FLAG_MAX_WRITE_BEHIND, "max_write_behind"},
332*4882a593Smuzhiyun { CTR_FLAG_WRITE_MOSTLY, "write_mostly"},
333*4882a593Smuzhiyun { CTR_FLAG_STRIPE_CACHE, "stripe_cache"},
334*4882a593Smuzhiyun { CTR_FLAG_REGION_SIZE, "region_size"},
335*4882a593Smuzhiyun { CTR_FLAG_RAID10_COPIES, "raid10_copies"},
336*4882a593Smuzhiyun { CTR_FLAG_RAID10_FORMAT, "raid10_format"},
337*4882a593Smuzhiyun { CTR_FLAG_DATA_OFFSET, "data_offset"},
338*4882a593Smuzhiyun { CTR_FLAG_DELTA_DISKS, "delta_disks"},
339*4882a593Smuzhiyun { CTR_FLAG_RAID10_USE_NEAR_SETS, "raid10_use_near_sets"},
340*4882a593Smuzhiyun { CTR_FLAG_JOURNAL_DEV, "journal_dev" },
341*4882a593Smuzhiyun { CTR_FLAG_JOURNAL_MODE, "journal_mode" },
342*4882a593Smuzhiyun };
343*4882a593Smuzhiyun
344*4882a593Smuzhiyun /* Return argument name string for given @flag */
dm_raid_arg_name_by_flag(const uint32_t flag)345*4882a593Smuzhiyun static const char *dm_raid_arg_name_by_flag(const uint32_t flag)
346*4882a593Smuzhiyun {
347*4882a593Smuzhiyun if (hweight32(flag) == 1) {
348*4882a593Smuzhiyun struct arg_name_flag *anf = __arg_name_flags + ARRAY_SIZE(__arg_name_flags);
349*4882a593Smuzhiyun
350*4882a593Smuzhiyun while (anf-- > __arg_name_flags)
351*4882a593Smuzhiyun if (flag & anf->flag)
352*4882a593Smuzhiyun return anf->name;
353*4882a593Smuzhiyun
354*4882a593Smuzhiyun } else
355*4882a593Smuzhiyun DMERR("%s called with more than one flag!", __func__);
356*4882a593Smuzhiyun
357*4882a593Smuzhiyun return NULL;
358*4882a593Smuzhiyun }
359*4882a593Smuzhiyun
360*4882a593Smuzhiyun /* Define correlation of raid456 journal cache modes and dm-raid target line parameters */
361*4882a593Smuzhiyun static struct {
362*4882a593Smuzhiyun const int mode;
363*4882a593Smuzhiyun const char *param;
364*4882a593Smuzhiyun } _raid456_journal_mode[] = {
365*4882a593Smuzhiyun { R5C_JOURNAL_MODE_WRITE_THROUGH , "writethrough" },
366*4882a593Smuzhiyun { R5C_JOURNAL_MODE_WRITE_BACK , "writeback" }
367*4882a593Smuzhiyun };
368*4882a593Smuzhiyun
369*4882a593Smuzhiyun /* Return MD raid4/5/6 journal mode for dm @journal_mode one */
dm_raid_journal_mode_to_md(const char * mode)370*4882a593Smuzhiyun static int dm_raid_journal_mode_to_md(const char *mode)
371*4882a593Smuzhiyun {
372*4882a593Smuzhiyun int m = ARRAY_SIZE(_raid456_journal_mode);
373*4882a593Smuzhiyun
374*4882a593Smuzhiyun while (m--)
375*4882a593Smuzhiyun if (!strcasecmp(mode, _raid456_journal_mode[m].param))
376*4882a593Smuzhiyun return _raid456_journal_mode[m].mode;
377*4882a593Smuzhiyun
378*4882a593Smuzhiyun return -EINVAL;
379*4882a593Smuzhiyun }
380*4882a593Smuzhiyun
381*4882a593Smuzhiyun /* Return dm-raid raid4/5/6 journal mode string for @mode */
md_journal_mode_to_dm_raid(const int mode)382*4882a593Smuzhiyun static const char *md_journal_mode_to_dm_raid(const int mode)
383*4882a593Smuzhiyun {
384*4882a593Smuzhiyun int m = ARRAY_SIZE(_raid456_journal_mode);
385*4882a593Smuzhiyun
386*4882a593Smuzhiyun while (m--)
387*4882a593Smuzhiyun if (mode == _raid456_journal_mode[m].mode)
388*4882a593Smuzhiyun return _raid456_journal_mode[m].param;
389*4882a593Smuzhiyun
390*4882a593Smuzhiyun return "unknown";
391*4882a593Smuzhiyun }
392*4882a593Smuzhiyun
393*4882a593Smuzhiyun /*
394*4882a593Smuzhiyun * Bool helpers to test for various raid levels of a raid set.
395*4882a593Smuzhiyun * It's level as reported by the superblock rather than
396*4882a593Smuzhiyun * the requested raid_type passed to the constructor.
397*4882a593Smuzhiyun */
398*4882a593Smuzhiyun /* Return true, if raid set in @rs is raid0 */
rs_is_raid0(struct raid_set * rs)399*4882a593Smuzhiyun static bool rs_is_raid0(struct raid_set *rs)
400*4882a593Smuzhiyun {
401*4882a593Smuzhiyun return !rs->md.level;
402*4882a593Smuzhiyun }
403*4882a593Smuzhiyun
404*4882a593Smuzhiyun /* Return true, if raid set in @rs is raid1 */
rs_is_raid1(struct raid_set * rs)405*4882a593Smuzhiyun static bool rs_is_raid1(struct raid_set *rs)
406*4882a593Smuzhiyun {
407*4882a593Smuzhiyun return rs->md.level == 1;
408*4882a593Smuzhiyun }
409*4882a593Smuzhiyun
410*4882a593Smuzhiyun /* Return true, if raid set in @rs is raid10 */
rs_is_raid10(struct raid_set * rs)411*4882a593Smuzhiyun static bool rs_is_raid10(struct raid_set *rs)
412*4882a593Smuzhiyun {
413*4882a593Smuzhiyun return rs->md.level == 10;
414*4882a593Smuzhiyun }
415*4882a593Smuzhiyun
416*4882a593Smuzhiyun /* Return true, if raid set in @rs is level 6 */
rs_is_raid6(struct raid_set * rs)417*4882a593Smuzhiyun static bool rs_is_raid6(struct raid_set *rs)
418*4882a593Smuzhiyun {
419*4882a593Smuzhiyun return rs->md.level == 6;
420*4882a593Smuzhiyun }
421*4882a593Smuzhiyun
422*4882a593Smuzhiyun /* Return true, if raid set in @rs is level 4, 5 or 6 */
rs_is_raid456(struct raid_set * rs)423*4882a593Smuzhiyun static bool rs_is_raid456(struct raid_set *rs)
424*4882a593Smuzhiyun {
425*4882a593Smuzhiyun return __within_range(rs->md.level, 4, 6);
426*4882a593Smuzhiyun }
427*4882a593Smuzhiyun
428*4882a593Smuzhiyun /* Return true, if raid set in @rs is reshapable */
429*4882a593Smuzhiyun static bool __is_raid10_far(int layout);
rs_is_reshapable(struct raid_set * rs)430*4882a593Smuzhiyun static bool rs_is_reshapable(struct raid_set *rs)
431*4882a593Smuzhiyun {
432*4882a593Smuzhiyun return rs_is_raid456(rs) ||
433*4882a593Smuzhiyun (rs_is_raid10(rs) && !__is_raid10_far(rs->md.new_layout));
434*4882a593Smuzhiyun }
435*4882a593Smuzhiyun
436*4882a593Smuzhiyun /* Return true, if raid set in @rs is recovering */
rs_is_recovering(struct raid_set * rs)437*4882a593Smuzhiyun static bool rs_is_recovering(struct raid_set *rs)
438*4882a593Smuzhiyun {
439*4882a593Smuzhiyun return rs->md.recovery_cp < rs->md.dev_sectors;
440*4882a593Smuzhiyun }
441*4882a593Smuzhiyun
442*4882a593Smuzhiyun /* Return true, if raid set in @rs is reshaping */
rs_is_reshaping(struct raid_set * rs)443*4882a593Smuzhiyun static bool rs_is_reshaping(struct raid_set *rs)
444*4882a593Smuzhiyun {
445*4882a593Smuzhiyun return rs->md.reshape_position != MaxSector;
446*4882a593Smuzhiyun }
447*4882a593Smuzhiyun
448*4882a593Smuzhiyun /*
449*4882a593Smuzhiyun * bool helpers to test for various raid levels of a raid type @rt
450*4882a593Smuzhiyun */
451*4882a593Smuzhiyun
452*4882a593Smuzhiyun /* Return true, if raid type in @rt is raid0 */
rt_is_raid0(struct raid_type * rt)453*4882a593Smuzhiyun static bool rt_is_raid0(struct raid_type *rt)
454*4882a593Smuzhiyun {
455*4882a593Smuzhiyun return !rt->level;
456*4882a593Smuzhiyun }
457*4882a593Smuzhiyun
458*4882a593Smuzhiyun /* Return true, if raid type in @rt is raid1 */
rt_is_raid1(struct raid_type * rt)459*4882a593Smuzhiyun static bool rt_is_raid1(struct raid_type *rt)
460*4882a593Smuzhiyun {
461*4882a593Smuzhiyun return rt->level == 1;
462*4882a593Smuzhiyun }
463*4882a593Smuzhiyun
464*4882a593Smuzhiyun /* Return true, if raid type in @rt is raid10 */
rt_is_raid10(struct raid_type * rt)465*4882a593Smuzhiyun static bool rt_is_raid10(struct raid_type *rt)
466*4882a593Smuzhiyun {
467*4882a593Smuzhiyun return rt->level == 10;
468*4882a593Smuzhiyun }
469*4882a593Smuzhiyun
470*4882a593Smuzhiyun /* Return true, if raid type in @rt is raid4/5 */
rt_is_raid45(struct raid_type * rt)471*4882a593Smuzhiyun static bool rt_is_raid45(struct raid_type *rt)
472*4882a593Smuzhiyun {
473*4882a593Smuzhiyun return __within_range(rt->level, 4, 5);
474*4882a593Smuzhiyun }
475*4882a593Smuzhiyun
476*4882a593Smuzhiyun /* Return true, if raid type in @rt is raid6 */
rt_is_raid6(struct raid_type * rt)477*4882a593Smuzhiyun static bool rt_is_raid6(struct raid_type *rt)
478*4882a593Smuzhiyun {
479*4882a593Smuzhiyun return rt->level == 6;
480*4882a593Smuzhiyun }
481*4882a593Smuzhiyun
482*4882a593Smuzhiyun /* Return true, if raid type in @rt is raid4/5/6 */
rt_is_raid456(struct raid_type * rt)483*4882a593Smuzhiyun static bool rt_is_raid456(struct raid_type *rt)
484*4882a593Smuzhiyun {
485*4882a593Smuzhiyun return __within_range(rt->level, 4, 6);
486*4882a593Smuzhiyun }
487*4882a593Smuzhiyun /* END: raid level bools */
488*4882a593Smuzhiyun
489*4882a593Smuzhiyun /* Return valid ctr flags for the raid level of @rs */
__valid_flags(struct raid_set * rs)490*4882a593Smuzhiyun static unsigned long __valid_flags(struct raid_set *rs)
491*4882a593Smuzhiyun {
492*4882a593Smuzhiyun if (rt_is_raid0(rs->raid_type))
493*4882a593Smuzhiyun return RAID0_VALID_FLAGS;
494*4882a593Smuzhiyun else if (rt_is_raid1(rs->raid_type))
495*4882a593Smuzhiyun return RAID1_VALID_FLAGS;
496*4882a593Smuzhiyun else if (rt_is_raid10(rs->raid_type))
497*4882a593Smuzhiyun return RAID10_VALID_FLAGS;
498*4882a593Smuzhiyun else if (rt_is_raid45(rs->raid_type))
499*4882a593Smuzhiyun return RAID45_VALID_FLAGS;
500*4882a593Smuzhiyun else if (rt_is_raid6(rs->raid_type))
501*4882a593Smuzhiyun return RAID6_VALID_FLAGS;
502*4882a593Smuzhiyun
503*4882a593Smuzhiyun return 0;
504*4882a593Smuzhiyun }
505*4882a593Smuzhiyun
506*4882a593Smuzhiyun /*
507*4882a593Smuzhiyun * Check for valid flags set on @rs
508*4882a593Smuzhiyun *
509*4882a593Smuzhiyun * Has to be called after parsing of the ctr flags!
510*4882a593Smuzhiyun */
rs_check_for_valid_flags(struct raid_set * rs)511*4882a593Smuzhiyun static int rs_check_for_valid_flags(struct raid_set *rs)
512*4882a593Smuzhiyun {
513*4882a593Smuzhiyun if (rs->ctr_flags & ~__valid_flags(rs)) {
514*4882a593Smuzhiyun rs->ti->error = "Invalid flags combination";
515*4882a593Smuzhiyun return -EINVAL;
516*4882a593Smuzhiyun }
517*4882a593Smuzhiyun
518*4882a593Smuzhiyun return 0;
519*4882a593Smuzhiyun }
520*4882a593Smuzhiyun
521*4882a593Smuzhiyun /* MD raid10 bit definitions and helpers */
522*4882a593Smuzhiyun #define RAID10_OFFSET (1 << 16) /* stripes with data copies area adjacent on devices */
523*4882a593Smuzhiyun #define RAID10_BROCKEN_USE_FAR_SETS (1 << 17) /* Broken in raid10.c: use sets instead of whole stripe rotation */
524*4882a593Smuzhiyun #define RAID10_USE_FAR_SETS (1 << 18) /* Use sets instead of whole stripe rotation */
525*4882a593Smuzhiyun #define RAID10_FAR_COPIES_SHIFT 8 /* raid10 # far copies shift (2nd byte of layout) */
526*4882a593Smuzhiyun
527*4882a593Smuzhiyun /* Return md raid10 near copies for @layout */
__raid10_near_copies(int layout)528*4882a593Smuzhiyun static unsigned int __raid10_near_copies(int layout)
529*4882a593Smuzhiyun {
530*4882a593Smuzhiyun return layout & 0xFF;
531*4882a593Smuzhiyun }
532*4882a593Smuzhiyun
533*4882a593Smuzhiyun /* Return md raid10 far copies for @layout */
__raid10_far_copies(int layout)534*4882a593Smuzhiyun static unsigned int __raid10_far_copies(int layout)
535*4882a593Smuzhiyun {
536*4882a593Smuzhiyun return __raid10_near_copies(layout >> RAID10_FAR_COPIES_SHIFT);
537*4882a593Smuzhiyun }
538*4882a593Smuzhiyun
539*4882a593Smuzhiyun /* Return true if md raid10 offset for @layout */
__is_raid10_offset(int layout)540*4882a593Smuzhiyun static bool __is_raid10_offset(int layout)
541*4882a593Smuzhiyun {
542*4882a593Smuzhiyun return !!(layout & RAID10_OFFSET);
543*4882a593Smuzhiyun }
544*4882a593Smuzhiyun
545*4882a593Smuzhiyun /* Return true if md raid10 near for @layout */
__is_raid10_near(int layout)546*4882a593Smuzhiyun static bool __is_raid10_near(int layout)
547*4882a593Smuzhiyun {
548*4882a593Smuzhiyun return !__is_raid10_offset(layout) && __raid10_near_copies(layout) > 1;
549*4882a593Smuzhiyun }
550*4882a593Smuzhiyun
551*4882a593Smuzhiyun /* Return true if md raid10 far for @layout */
__is_raid10_far(int layout)552*4882a593Smuzhiyun static bool __is_raid10_far(int layout)
553*4882a593Smuzhiyun {
554*4882a593Smuzhiyun return !__is_raid10_offset(layout) && __raid10_far_copies(layout) > 1;
555*4882a593Smuzhiyun }
556*4882a593Smuzhiyun
557*4882a593Smuzhiyun /* Return md raid10 layout string for @layout */
raid10_md_layout_to_format(int layout)558*4882a593Smuzhiyun static const char *raid10_md_layout_to_format(int layout)
559*4882a593Smuzhiyun {
560*4882a593Smuzhiyun /*
561*4882a593Smuzhiyun * Bit 16 stands for "offset"
562*4882a593Smuzhiyun * (i.e. adjacent stripes hold copies)
563*4882a593Smuzhiyun *
564*4882a593Smuzhiyun * Refer to MD's raid10.c for details
565*4882a593Smuzhiyun */
566*4882a593Smuzhiyun if (__is_raid10_offset(layout))
567*4882a593Smuzhiyun return "offset";
568*4882a593Smuzhiyun
569*4882a593Smuzhiyun if (__raid10_near_copies(layout) > 1)
570*4882a593Smuzhiyun return "near";
571*4882a593Smuzhiyun
572*4882a593Smuzhiyun if (__raid10_far_copies(layout) > 1)
573*4882a593Smuzhiyun return "far";
574*4882a593Smuzhiyun
575*4882a593Smuzhiyun return "unknown";
576*4882a593Smuzhiyun }
577*4882a593Smuzhiyun
578*4882a593Smuzhiyun /* Return md raid10 algorithm for @name */
raid10_name_to_format(const char * name)579*4882a593Smuzhiyun static int raid10_name_to_format(const char *name)
580*4882a593Smuzhiyun {
581*4882a593Smuzhiyun if (!strcasecmp(name, "near"))
582*4882a593Smuzhiyun return ALGORITHM_RAID10_NEAR;
583*4882a593Smuzhiyun else if (!strcasecmp(name, "offset"))
584*4882a593Smuzhiyun return ALGORITHM_RAID10_OFFSET;
585*4882a593Smuzhiyun else if (!strcasecmp(name, "far"))
586*4882a593Smuzhiyun return ALGORITHM_RAID10_FAR;
587*4882a593Smuzhiyun
588*4882a593Smuzhiyun return -EINVAL;
589*4882a593Smuzhiyun }
590*4882a593Smuzhiyun
591*4882a593Smuzhiyun /* Return md raid10 copies for @layout */
raid10_md_layout_to_copies(int layout)592*4882a593Smuzhiyun static unsigned int raid10_md_layout_to_copies(int layout)
593*4882a593Smuzhiyun {
594*4882a593Smuzhiyun return max(__raid10_near_copies(layout), __raid10_far_copies(layout));
595*4882a593Smuzhiyun }
596*4882a593Smuzhiyun
597*4882a593Smuzhiyun /* Return md raid10 format id for @format string */
raid10_format_to_md_layout(struct raid_set * rs,unsigned int algorithm,unsigned int copies)598*4882a593Smuzhiyun static int raid10_format_to_md_layout(struct raid_set *rs,
599*4882a593Smuzhiyun unsigned int algorithm,
600*4882a593Smuzhiyun unsigned int copies)
601*4882a593Smuzhiyun {
602*4882a593Smuzhiyun unsigned int n = 1, f = 1, r = 0;
603*4882a593Smuzhiyun
604*4882a593Smuzhiyun /*
605*4882a593Smuzhiyun * MD resilienece flaw:
606*4882a593Smuzhiyun *
607*4882a593Smuzhiyun * enabling use_far_sets for far/offset formats causes copies
608*4882a593Smuzhiyun * to be colocated on the same devs together with their origins!
609*4882a593Smuzhiyun *
610*4882a593Smuzhiyun * -> disable it for now in the definition above
611*4882a593Smuzhiyun */
612*4882a593Smuzhiyun if (algorithm == ALGORITHM_RAID10_DEFAULT ||
613*4882a593Smuzhiyun algorithm == ALGORITHM_RAID10_NEAR)
614*4882a593Smuzhiyun n = copies;
615*4882a593Smuzhiyun
616*4882a593Smuzhiyun else if (algorithm == ALGORITHM_RAID10_OFFSET) {
617*4882a593Smuzhiyun f = copies;
618*4882a593Smuzhiyun r = RAID10_OFFSET;
619*4882a593Smuzhiyun if (!test_bit(__CTR_FLAG_RAID10_USE_NEAR_SETS, &rs->ctr_flags))
620*4882a593Smuzhiyun r |= RAID10_USE_FAR_SETS;
621*4882a593Smuzhiyun
622*4882a593Smuzhiyun } else if (algorithm == ALGORITHM_RAID10_FAR) {
623*4882a593Smuzhiyun f = copies;
624*4882a593Smuzhiyun if (!test_bit(__CTR_FLAG_RAID10_USE_NEAR_SETS, &rs->ctr_flags))
625*4882a593Smuzhiyun r |= RAID10_USE_FAR_SETS;
626*4882a593Smuzhiyun
627*4882a593Smuzhiyun } else
628*4882a593Smuzhiyun return -EINVAL;
629*4882a593Smuzhiyun
630*4882a593Smuzhiyun return r | (f << RAID10_FAR_COPIES_SHIFT) | n;
631*4882a593Smuzhiyun }
632*4882a593Smuzhiyun /* END: MD raid10 bit definitions and helpers */
633*4882a593Smuzhiyun
634*4882a593Smuzhiyun /* Check for any of the raid10 algorithms */
__got_raid10(struct raid_type * rtp,const int layout)635*4882a593Smuzhiyun static bool __got_raid10(struct raid_type *rtp, const int layout)
636*4882a593Smuzhiyun {
637*4882a593Smuzhiyun if (rtp->level == 10) {
638*4882a593Smuzhiyun switch (rtp->algorithm) {
639*4882a593Smuzhiyun case ALGORITHM_RAID10_DEFAULT:
640*4882a593Smuzhiyun case ALGORITHM_RAID10_NEAR:
641*4882a593Smuzhiyun return __is_raid10_near(layout);
642*4882a593Smuzhiyun case ALGORITHM_RAID10_OFFSET:
643*4882a593Smuzhiyun return __is_raid10_offset(layout);
644*4882a593Smuzhiyun case ALGORITHM_RAID10_FAR:
645*4882a593Smuzhiyun return __is_raid10_far(layout);
646*4882a593Smuzhiyun default:
647*4882a593Smuzhiyun break;
648*4882a593Smuzhiyun }
649*4882a593Smuzhiyun }
650*4882a593Smuzhiyun
651*4882a593Smuzhiyun return false;
652*4882a593Smuzhiyun }
653*4882a593Smuzhiyun
654*4882a593Smuzhiyun /* Return raid_type for @name */
get_raid_type(const char * name)655*4882a593Smuzhiyun static struct raid_type *get_raid_type(const char *name)
656*4882a593Smuzhiyun {
657*4882a593Smuzhiyun struct raid_type *rtp = raid_types + ARRAY_SIZE(raid_types);
658*4882a593Smuzhiyun
659*4882a593Smuzhiyun while (rtp-- > raid_types)
660*4882a593Smuzhiyun if (!strcasecmp(rtp->name, name))
661*4882a593Smuzhiyun return rtp;
662*4882a593Smuzhiyun
663*4882a593Smuzhiyun return NULL;
664*4882a593Smuzhiyun }
665*4882a593Smuzhiyun
666*4882a593Smuzhiyun /* Return raid_type for @name based derived from @level and @layout */
get_raid_type_by_ll(const int level,const int layout)667*4882a593Smuzhiyun static struct raid_type *get_raid_type_by_ll(const int level, const int layout)
668*4882a593Smuzhiyun {
669*4882a593Smuzhiyun struct raid_type *rtp = raid_types + ARRAY_SIZE(raid_types);
670*4882a593Smuzhiyun
671*4882a593Smuzhiyun while (rtp-- > raid_types) {
672*4882a593Smuzhiyun /* RAID10 special checks based on @layout flags/properties */
673*4882a593Smuzhiyun if (rtp->level == level &&
674*4882a593Smuzhiyun (__got_raid10(rtp, layout) || rtp->algorithm == layout))
675*4882a593Smuzhiyun return rtp;
676*4882a593Smuzhiyun }
677*4882a593Smuzhiyun
678*4882a593Smuzhiyun return NULL;
679*4882a593Smuzhiyun }
680*4882a593Smuzhiyun
681*4882a593Smuzhiyun /* Adjust rdev sectors */
rs_set_rdev_sectors(struct raid_set * rs)682*4882a593Smuzhiyun static void rs_set_rdev_sectors(struct raid_set *rs)
683*4882a593Smuzhiyun {
684*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
685*4882a593Smuzhiyun struct md_rdev *rdev;
686*4882a593Smuzhiyun
687*4882a593Smuzhiyun /*
688*4882a593Smuzhiyun * raid10 sets rdev->sector to the device size, which
689*4882a593Smuzhiyun * is unintended in case of out-of-place reshaping
690*4882a593Smuzhiyun */
691*4882a593Smuzhiyun rdev_for_each(rdev, mddev)
692*4882a593Smuzhiyun if (!test_bit(Journal, &rdev->flags))
693*4882a593Smuzhiyun rdev->sectors = mddev->dev_sectors;
694*4882a593Smuzhiyun }
695*4882a593Smuzhiyun
696*4882a593Smuzhiyun /*
697*4882a593Smuzhiyun * Change bdev capacity of @rs in case of a disk add/remove reshape
698*4882a593Smuzhiyun */
rs_set_capacity(struct raid_set * rs)699*4882a593Smuzhiyun static void rs_set_capacity(struct raid_set *rs)
700*4882a593Smuzhiyun {
701*4882a593Smuzhiyun struct gendisk *gendisk = dm_disk(dm_table_get_md(rs->ti->table));
702*4882a593Smuzhiyun
703*4882a593Smuzhiyun set_capacity(gendisk, rs->md.array_sectors);
704*4882a593Smuzhiyun revalidate_disk_size(gendisk, true);
705*4882a593Smuzhiyun }
706*4882a593Smuzhiyun
707*4882a593Smuzhiyun /*
708*4882a593Smuzhiyun * Set the mddev properties in @rs to the current
709*4882a593Smuzhiyun * ones retrieved from the freshest superblock
710*4882a593Smuzhiyun */
rs_set_cur(struct raid_set * rs)711*4882a593Smuzhiyun static void rs_set_cur(struct raid_set *rs)
712*4882a593Smuzhiyun {
713*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
714*4882a593Smuzhiyun
715*4882a593Smuzhiyun mddev->new_level = mddev->level;
716*4882a593Smuzhiyun mddev->new_layout = mddev->layout;
717*4882a593Smuzhiyun mddev->new_chunk_sectors = mddev->chunk_sectors;
718*4882a593Smuzhiyun }
719*4882a593Smuzhiyun
720*4882a593Smuzhiyun /*
721*4882a593Smuzhiyun * Set the mddev properties in @rs to the new
722*4882a593Smuzhiyun * ones requested by the ctr
723*4882a593Smuzhiyun */
rs_set_new(struct raid_set * rs)724*4882a593Smuzhiyun static void rs_set_new(struct raid_set *rs)
725*4882a593Smuzhiyun {
726*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
727*4882a593Smuzhiyun
728*4882a593Smuzhiyun mddev->level = mddev->new_level;
729*4882a593Smuzhiyun mddev->layout = mddev->new_layout;
730*4882a593Smuzhiyun mddev->chunk_sectors = mddev->new_chunk_sectors;
731*4882a593Smuzhiyun mddev->raid_disks = rs->raid_disks;
732*4882a593Smuzhiyun mddev->delta_disks = 0;
733*4882a593Smuzhiyun }
734*4882a593Smuzhiyun
raid_set_alloc(struct dm_target * ti,struct raid_type * raid_type,unsigned int raid_devs)735*4882a593Smuzhiyun static struct raid_set *raid_set_alloc(struct dm_target *ti, struct raid_type *raid_type,
736*4882a593Smuzhiyun unsigned int raid_devs)
737*4882a593Smuzhiyun {
738*4882a593Smuzhiyun unsigned int i;
739*4882a593Smuzhiyun struct raid_set *rs;
740*4882a593Smuzhiyun
741*4882a593Smuzhiyun if (raid_devs <= raid_type->parity_devs) {
742*4882a593Smuzhiyun ti->error = "Insufficient number of devices";
743*4882a593Smuzhiyun return ERR_PTR(-EINVAL);
744*4882a593Smuzhiyun }
745*4882a593Smuzhiyun
746*4882a593Smuzhiyun rs = kzalloc(struct_size(rs, dev, raid_devs), GFP_KERNEL);
747*4882a593Smuzhiyun if (!rs) {
748*4882a593Smuzhiyun ti->error = "Cannot allocate raid context";
749*4882a593Smuzhiyun return ERR_PTR(-ENOMEM);
750*4882a593Smuzhiyun }
751*4882a593Smuzhiyun
752*4882a593Smuzhiyun mddev_init(&rs->md);
753*4882a593Smuzhiyun
754*4882a593Smuzhiyun rs->raid_disks = raid_devs;
755*4882a593Smuzhiyun rs->delta_disks = 0;
756*4882a593Smuzhiyun
757*4882a593Smuzhiyun rs->ti = ti;
758*4882a593Smuzhiyun rs->raid_type = raid_type;
759*4882a593Smuzhiyun rs->stripe_cache_entries = 256;
760*4882a593Smuzhiyun rs->md.raid_disks = raid_devs;
761*4882a593Smuzhiyun rs->md.level = raid_type->level;
762*4882a593Smuzhiyun rs->md.new_level = rs->md.level;
763*4882a593Smuzhiyun rs->md.layout = raid_type->algorithm;
764*4882a593Smuzhiyun rs->md.new_layout = rs->md.layout;
765*4882a593Smuzhiyun rs->md.delta_disks = 0;
766*4882a593Smuzhiyun rs->md.recovery_cp = MaxSector;
767*4882a593Smuzhiyun
768*4882a593Smuzhiyun for (i = 0; i < raid_devs; i++)
769*4882a593Smuzhiyun md_rdev_init(&rs->dev[i].rdev);
770*4882a593Smuzhiyun
771*4882a593Smuzhiyun /*
772*4882a593Smuzhiyun * Remaining items to be initialized by further RAID params:
773*4882a593Smuzhiyun * rs->md.persistent
774*4882a593Smuzhiyun * rs->md.external
775*4882a593Smuzhiyun * rs->md.chunk_sectors
776*4882a593Smuzhiyun * rs->md.new_chunk_sectors
777*4882a593Smuzhiyun * rs->md.dev_sectors
778*4882a593Smuzhiyun */
779*4882a593Smuzhiyun
780*4882a593Smuzhiyun return rs;
781*4882a593Smuzhiyun }
782*4882a593Smuzhiyun
783*4882a593Smuzhiyun /* Free all @rs allocations */
raid_set_free(struct raid_set * rs)784*4882a593Smuzhiyun static void raid_set_free(struct raid_set *rs)
785*4882a593Smuzhiyun {
786*4882a593Smuzhiyun int i;
787*4882a593Smuzhiyun
788*4882a593Smuzhiyun if (rs->journal_dev.dev) {
789*4882a593Smuzhiyun md_rdev_clear(&rs->journal_dev.rdev);
790*4882a593Smuzhiyun dm_put_device(rs->ti, rs->journal_dev.dev);
791*4882a593Smuzhiyun }
792*4882a593Smuzhiyun
793*4882a593Smuzhiyun for (i = 0; i < rs->raid_disks; i++) {
794*4882a593Smuzhiyun if (rs->dev[i].meta_dev)
795*4882a593Smuzhiyun dm_put_device(rs->ti, rs->dev[i].meta_dev);
796*4882a593Smuzhiyun md_rdev_clear(&rs->dev[i].rdev);
797*4882a593Smuzhiyun if (rs->dev[i].data_dev)
798*4882a593Smuzhiyun dm_put_device(rs->ti, rs->dev[i].data_dev);
799*4882a593Smuzhiyun }
800*4882a593Smuzhiyun
801*4882a593Smuzhiyun kfree(rs);
802*4882a593Smuzhiyun }
803*4882a593Smuzhiyun
804*4882a593Smuzhiyun /*
805*4882a593Smuzhiyun * For every device we have two words
806*4882a593Smuzhiyun * <meta_dev>: meta device name or '-' if missing
807*4882a593Smuzhiyun * <data_dev>: data device name or '-' if missing
808*4882a593Smuzhiyun *
809*4882a593Smuzhiyun * The following are permitted:
810*4882a593Smuzhiyun * - -
811*4882a593Smuzhiyun * - <data_dev>
812*4882a593Smuzhiyun * <meta_dev> <data_dev>
813*4882a593Smuzhiyun *
814*4882a593Smuzhiyun * The following is not allowed:
815*4882a593Smuzhiyun * <meta_dev> -
816*4882a593Smuzhiyun *
817*4882a593Smuzhiyun * This code parses those words. If there is a failure,
818*4882a593Smuzhiyun * the caller must use raid_set_free() to unwind the operations.
819*4882a593Smuzhiyun */
parse_dev_params(struct raid_set * rs,struct dm_arg_set * as)820*4882a593Smuzhiyun static int parse_dev_params(struct raid_set *rs, struct dm_arg_set *as)
821*4882a593Smuzhiyun {
822*4882a593Smuzhiyun int i;
823*4882a593Smuzhiyun int rebuild = 0;
824*4882a593Smuzhiyun int metadata_available = 0;
825*4882a593Smuzhiyun int r = 0;
826*4882a593Smuzhiyun const char *arg;
827*4882a593Smuzhiyun
828*4882a593Smuzhiyun /* Put off the number of raid devices argument to get to dev pairs */
829*4882a593Smuzhiyun arg = dm_shift_arg(as);
830*4882a593Smuzhiyun if (!arg)
831*4882a593Smuzhiyun return -EINVAL;
832*4882a593Smuzhiyun
833*4882a593Smuzhiyun for (i = 0; i < rs->raid_disks; i++) {
834*4882a593Smuzhiyun rs->dev[i].rdev.raid_disk = i;
835*4882a593Smuzhiyun
836*4882a593Smuzhiyun rs->dev[i].meta_dev = NULL;
837*4882a593Smuzhiyun rs->dev[i].data_dev = NULL;
838*4882a593Smuzhiyun
839*4882a593Smuzhiyun /*
840*4882a593Smuzhiyun * There are no offsets initially.
841*4882a593Smuzhiyun * Out of place reshape will set them accordingly.
842*4882a593Smuzhiyun */
843*4882a593Smuzhiyun rs->dev[i].rdev.data_offset = 0;
844*4882a593Smuzhiyun rs->dev[i].rdev.new_data_offset = 0;
845*4882a593Smuzhiyun rs->dev[i].rdev.mddev = &rs->md;
846*4882a593Smuzhiyun
847*4882a593Smuzhiyun arg = dm_shift_arg(as);
848*4882a593Smuzhiyun if (!arg)
849*4882a593Smuzhiyun return -EINVAL;
850*4882a593Smuzhiyun
851*4882a593Smuzhiyun if (strcmp(arg, "-")) {
852*4882a593Smuzhiyun r = dm_get_device(rs->ti, arg, dm_table_get_mode(rs->ti->table),
853*4882a593Smuzhiyun &rs->dev[i].meta_dev);
854*4882a593Smuzhiyun if (r) {
855*4882a593Smuzhiyun rs->ti->error = "RAID metadata device lookup failure";
856*4882a593Smuzhiyun return r;
857*4882a593Smuzhiyun }
858*4882a593Smuzhiyun
859*4882a593Smuzhiyun rs->dev[i].rdev.sb_page = alloc_page(GFP_KERNEL);
860*4882a593Smuzhiyun if (!rs->dev[i].rdev.sb_page) {
861*4882a593Smuzhiyun rs->ti->error = "Failed to allocate superblock page";
862*4882a593Smuzhiyun return -ENOMEM;
863*4882a593Smuzhiyun }
864*4882a593Smuzhiyun }
865*4882a593Smuzhiyun
866*4882a593Smuzhiyun arg = dm_shift_arg(as);
867*4882a593Smuzhiyun if (!arg)
868*4882a593Smuzhiyun return -EINVAL;
869*4882a593Smuzhiyun
870*4882a593Smuzhiyun if (!strcmp(arg, "-")) {
871*4882a593Smuzhiyun if (!test_bit(In_sync, &rs->dev[i].rdev.flags) &&
872*4882a593Smuzhiyun (!rs->dev[i].rdev.recovery_offset)) {
873*4882a593Smuzhiyun rs->ti->error = "Drive designated for rebuild not specified";
874*4882a593Smuzhiyun return -EINVAL;
875*4882a593Smuzhiyun }
876*4882a593Smuzhiyun
877*4882a593Smuzhiyun if (rs->dev[i].meta_dev) {
878*4882a593Smuzhiyun rs->ti->error = "No data device supplied with metadata device";
879*4882a593Smuzhiyun return -EINVAL;
880*4882a593Smuzhiyun }
881*4882a593Smuzhiyun
882*4882a593Smuzhiyun continue;
883*4882a593Smuzhiyun }
884*4882a593Smuzhiyun
885*4882a593Smuzhiyun r = dm_get_device(rs->ti, arg, dm_table_get_mode(rs->ti->table),
886*4882a593Smuzhiyun &rs->dev[i].data_dev);
887*4882a593Smuzhiyun if (r) {
888*4882a593Smuzhiyun rs->ti->error = "RAID device lookup failure";
889*4882a593Smuzhiyun return r;
890*4882a593Smuzhiyun }
891*4882a593Smuzhiyun
892*4882a593Smuzhiyun if (rs->dev[i].meta_dev) {
893*4882a593Smuzhiyun metadata_available = 1;
894*4882a593Smuzhiyun rs->dev[i].rdev.meta_bdev = rs->dev[i].meta_dev->bdev;
895*4882a593Smuzhiyun }
896*4882a593Smuzhiyun rs->dev[i].rdev.bdev = rs->dev[i].data_dev->bdev;
897*4882a593Smuzhiyun list_add_tail(&rs->dev[i].rdev.same_set, &rs->md.disks);
898*4882a593Smuzhiyun if (!test_bit(In_sync, &rs->dev[i].rdev.flags))
899*4882a593Smuzhiyun rebuild++;
900*4882a593Smuzhiyun }
901*4882a593Smuzhiyun
902*4882a593Smuzhiyun if (rs->journal_dev.dev)
903*4882a593Smuzhiyun list_add_tail(&rs->journal_dev.rdev.same_set, &rs->md.disks);
904*4882a593Smuzhiyun
905*4882a593Smuzhiyun if (metadata_available) {
906*4882a593Smuzhiyun rs->md.external = 0;
907*4882a593Smuzhiyun rs->md.persistent = 1;
908*4882a593Smuzhiyun rs->md.major_version = 2;
909*4882a593Smuzhiyun } else if (rebuild && !rs->md.recovery_cp) {
910*4882a593Smuzhiyun /*
911*4882a593Smuzhiyun * Without metadata, we will not be able to tell if the array
912*4882a593Smuzhiyun * is in-sync or not - we must assume it is not. Therefore,
913*4882a593Smuzhiyun * it is impossible to rebuild a drive.
914*4882a593Smuzhiyun *
915*4882a593Smuzhiyun * Even if there is metadata, the on-disk information may
916*4882a593Smuzhiyun * indicate that the array is not in-sync and it will then
917*4882a593Smuzhiyun * fail at that time.
918*4882a593Smuzhiyun *
919*4882a593Smuzhiyun * User could specify 'nosync' option if desperate.
920*4882a593Smuzhiyun */
921*4882a593Smuzhiyun rs->ti->error = "Unable to rebuild drive while array is not in-sync";
922*4882a593Smuzhiyun return -EINVAL;
923*4882a593Smuzhiyun }
924*4882a593Smuzhiyun
925*4882a593Smuzhiyun return 0;
926*4882a593Smuzhiyun }
927*4882a593Smuzhiyun
928*4882a593Smuzhiyun /*
929*4882a593Smuzhiyun * validate_region_size
930*4882a593Smuzhiyun * @rs
931*4882a593Smuzhiyun * @region_size: region size in sectors. If 0, pick a size (4MiB default).
932*4882a593Smuzhiyun *
933*4882a593Smuzhiyun * Set rs->md.bitmap_info.chunksize (which really refers to 'region size').
934*4882a593Smuzhiyun * Ensure that (ti->len/region_size < 2^21) - required by MD bitmap.
935*4882a593Smuzhiyun *
936*4882a593Smuzhiyun * Returns: 0 on success, -EINVAL on failure.
937*4882a593Smuzhiyun */
validate_region_size(struct raid_set * rs,unsigned long region_size)938*4882a593Smuzhiyun static int validate_region_size(struct raid_set *rs, unsigned long region_size)
939*4882a593Smuzhiyun {
940*4882a593Smuzhiyun unsigned long min_region_size = rs->ti->len / (1 << 21);
941*4882a593Smuzhiyun
942*4882a593Smuzhiyun if (rs_is_raid0(rs))
943*4882a593Smuzhiyun return 0;
944*4882a593Smuzhiyun
945*4882a593Smuzhiyun if (!region_size) {
946*4882a593Smuzhiyun /*
947*4882a593Smuzhiyun * Choose a reasonable default. All figures in sectors.
948*4882a593Smuzhiyun */
949*4882a593Smuzhiyun if (min_region_size > (1 << 13)) {
950*4882a593Smuzhiyun /* If not a power of 2, make it the next power of 2 */
951*4882a593Smuzhiyun region_size = roundup_pow_of_two(min_region_size);
952*4882a593Smuzhiyun DMINFO("Choosing default region size of %lu sectors",
953*4882a593Smuzhiyun region_size);
954*4882a593Smuzhiyun } else {
955*4882a593Smuzhiyun DMINFO("Choosing default region size of 4MiB");
956*4882a593Smuzhiyun region_size = 1 << 13; /* sectors */
957*4882a593Smuzhiyun }
958*4882a593Smuzhiyun } else {
959*4882a593Smuzhiyun /*
960*4882a593Smuzhiyun * Validate user-supplied value.
961*4882a593Smuzhiyun */
962*4882a593Smuzhiyun if (region_size > rs->ti->len) {
963*4882a593Smuzhiyun rs->ti->error = "Supplied region size is too large";
964*4882a593Smuzhiyun return -EINVAL;
965*4882a593Smuzhiyun }
966*4882a593Smuzhiyun
967*4882a593Smuzhiyun if (region_size < min_region_size) {
968*4882a593Smuzhiyun DMERR("Supplied region_size (%lu sectors) below minimum (%lu)",
969*4882a593Smuzhiyun region_size, min_region_size);
970*4882a593Smuzhiyun rs->ti->error = "Supplied region size is too small";
971*4882a593Smuzhiyun return -EINVAL;
972*4882a593Smuzhiyun }
973*4882a593Smuzhiyun
974*4882a593Smuzhiyun if (!is_power_of_2(region_size)) {
975*4882a593Smuzhiyun rs->ti->error = "Region size is not a power of 2";
976*4882a593Smuzhiyun return -EINVAL;
977*4882a593Smuzhiyun }
978*4882a593Smuzhiyun
979*4882a593Smuzhiyun if (region_size < rs->md.chunk_sectors) {
980*4882a593Smuzhiyun rs->ti->error = "Region size is smaller than the chunk size";
981*4882a593Smuzhiyun return -EINVAL;
982*4882a593Smuzhiyun }
983*4882a593Smuzhiyun }
984*4882a593Smuzhiyun
985*4882a593Smuzhiyun /*
986*4882a593Smuzhiyun * Convert sectors to bytes.
987*4882a593Smuzhiyun */
988*4882a593Smuzhiyun rs->md.bitmap_info.chunksize = to_bytes(region_size);
989*4882a593Smuzhiyun
990*4882a593Smuzhiyun return 0;
991*4882a593Smuzhiyun }
992*4882a593Smuzhiyun
993*4882a593Smuzhiyun /*
994*4882a593Smuzhiyun * validate_raid_redundancy
995*4882a593Smuzhiyun * @rs
996*4882a593Smuzhiyun *
997*4882a593Smuzhiyun * Determine if there are enough devices in the array that haven't
998*4882a593Smuzhiyun * failed (or are being rebuilt) to form a usable array.
999*4882a593Smuzhiyun *
1000*4882a593Smuzhiyun * Returns: 0 on success, -EINVAL on failure.
1001*4882a593Smuzhiyun */
validate_raid_redundancy(struct raid_set * rs)1002*4882a593Smuzhiyun static int validate_raid_redundancy(struct raid_set *rs)
1003*4882a593Smuzhiyun {
1004*4882a593Smuzhiyun unsigned int i, rebuild_cnt = 0;
1005*4882a593Smuzhiyun unsigned int rebuilds_per_group = 0, copies, raid_disks;
1006*4882a593Smuzhiyun unsigned int group_size, last_group_start;
1007*4882a593Smuzhiyun
1008*4882a593Smuzhiyun for (i = 0; i < rs->raid_disks; i++)
1009*4882a593Smuzhiyun if (!test_bit(FirstUse, &rs->dev[i].rdev.flags) &&
1010*4882a593Smuzhiyun ((!test_bit(In_sync, &rs->dev[i].rdev.flags) ||
1011*4882a593Smuzhiyun !rs->dev[i].rdev.sb_page)))
1012*4882a593Smuzhiyun rebuild_cnt++;
1013*4882a593Smuzhiyun
1014*4882a593Smuzhiyun switch (rs->md.level) {
1015*4882a593Smuzhiyun case 0:
1016*4882a593Smuzhiyun break;
1017*4882a593Smuzhiyun case 1:
1018*4882a593Smuzhiyun if (rebuild_cnt >= rs->md.raid_disks)
1019*4882a593Smuzhiyun goto too_many;
1020*4882a593Smuzhiyun break;
1021*4882a593Smuzhiyun case 4:
1022*4882a593Smuzhiyun case 5:
1023*4882a593Smuzhiyun case 6:
1024*4882a593Smuzhiyun if (rebuild_cnt > rs->raid_type->parity_devs)
1025*4882a593Smuzhiyun goto too_many;
1026*4882a593Smuzhiyun break;
1027*4882a593Smuzhiyun case 10:
1028*4882a593Smuzhiyun copies = raid10_md_layout_to_copies(rs->md.new_layout);
1029*4882a593Smuzhiyun if (copies < 2) {
1030*4882a593Smuzhiyun DMERR("Bogus raid10 data copies < 2!");
1031*4882a593Smuzhiyun return -EINVAL;
1032*4882a593Smuzhiyun }
1033*4882a593Smuzhiyun
1034*4882a593Smuzhiyun if (rebuild_cnt < copies)
1035*4882a593Smuzhiyun break;
1036*4882a593Smuzhiyun
1037*4882a593Smuzhiyun /*
1038*4882a593Smuzhiyun * It is possible to have a higher rebuild count for RAID10,
1039*4882a593Smuzhiyun * as long as the failed devices occur in different mirror
1040*4882a593Smuzhiyun * groups (i.e. different stripes).
1041*4882a593Smuzhiyun *
1042*4882a593Smuzhiyun * When checking "near" format, make sure no adjacent devices
1043*4882a593Smuzhiyun * have failed beyond what can be handled. In addition to the
1044*4882a593Smuzhiyun * simple case where the number of devices is a multiple of the
1045*4882a593Smuzhiyun * number of copies, we must also handle cases where the number
1046*4882a593Smuzhiyun * of devices is not a multiple of the number of copies.
1047*4882a593Smuzhiyun * E.g. dev1 dev2 dev3 dev4 dev5
1048*4882a593Smuzhiyun * A A B B C
1049*4882a593Smuzhiyun * C D D E E
1050*4882a593Smuzhiyun */
1051*4882a593Smuzhiyun raid_disks = min(rs->raid_disks, rs->md.raid_disks);
1052*4882a593Smuzhiyun if (__is_raid10_near(rs->md.new_layout)) {
1053*4882a593Smuzhiyun for (i = 0; i < raid_disks; i++) {
1054*4882a593Smuzhiyun if (!(i % copies))
1055*4882a593Smuzhiyun rebuilds_per_group = 0;
1056*4882a593Smuzhiyun if ((!rs->dev[i].rdev.sb_page ||
1057*4882a593Smuzhiyun !test_bit(In_sync, &rs->dev[i].rdev.flags)) &&
1058*4882a593Smuzhiyun (++rebuilds_per_group >= copies))
1059*4882a593Smuzhiyun goto too_many;
1060*4882a593Smuzhiyun }
1061*4882a593Smuzhiyun break;
1062*4882a593Smuzhiyun }
1063*4882a593Smuzhiyun
1064*4882a593Smuzhiyun /*
1065*4882a593Smuzhiyun * When checking "far" and "offset" formats, we need to ensure
1066*4882a593Smuzhiyun * that the device that holds its copy is not also dead or
1067*4882a593Smuzhiyun * being rebuilt. (Note that "far" and "offset" formats only
1068*4882a593Smuzhiyun * support two copies right now. These formats also only ever
1069*4882a593Smuzhiyun * use the 'use_far_sets' variant.)
1070*4882a593Smuzhiyun *
1071*4882a593Smuzhiyun * This check is somewhat complicated by the need to account
1072*4882a593Smuzhiyun * for arrays that are not a multiple of (far) copies. This
1073*4882a593Smuzhiyun * results in the need to treat the last (potentially larger)
1074*4882a593Smuzhiyun * set differently.
1075*4882a593Smuzhiyun */
1076*4882a593Smuzhiyun group_size = (raid_disks / copies);
1077*4882a593Smuzhiyun last_group_start = (raid_disks / group_size) - 1;
1078*4882a593Smuzhiyun last_group_start *= group_size;
1079*4882a593Smuzhiyun for (i = 0; i < raid_disks; i++) {
1080*4882a593Smuzhiyun if (!(i % copies) && !(i > last_group_start))
1081*4882a593Smuzhiyun rebuilds_per_group = 0;
1082*4882a593Smuzhiyun if ((!rs->dev[i].rdev.sb_page ||
1083*4882a593Smuzhiyun !test_bit(In_sync, &rs->dev[i].rdev.flags)) &&
1084*4882a593Smuzhiyun (++rebuilds_per_group >= copies))
1085*4882a593Smuzhiyun goto too_many;
1086*4882a593Smuzhiyun }
1087*4882a593Smuzhiyun break;
1088*4882a593Smuzhiyun default:
1089*4882a593Smuzhiyun if (rebuild_cnt)
1090*4882a593Smuzhiyun return -EINVAL;
1091*4882a593Smuzhiyun }
1092*4882a593Smuzhiyun
1093*4882a593Smuzhiyun return 0;
1094*4882a593Smuzhiyun
1095*4882a593Smuzhiyun too_many:
1096*4882a593Smuzhiyun return -EINVAL;
1097*4882a593Smuzhiyun }
1098*4882a593Smuzhiyun
1099*4882a593Smuzhiyun /*
1100*4882a593Smuzhiyun * Possible arguments are...
1101*4882a593Smuzhiyun * <chunk_size> [optional_args]
1102*4882a593Smuzhiyun *
1103*4882a593Smuzhiyun * Argument definitions
1104*4882a593Smuzhiyun * <chunk_size> The number of sectors per disk that
1105*4882a593Smuzhiyun * will form the "stripe"
1106*4882a593Smuzhiyun * [[no]sync] Force or prevent recovery of the
1107*4882a593Smuzhiyun * entire array
1108*4882a593Smuzhiyun * [rebuild <idx>] Rebuild the drive indicated by the index
1109*4882a593Smuzhiyun * [daemon_sleep <ms>] Time between bitmap daemon work to
1110*4882a593Smuzhiyun * clear bits
1111*4882a593Smuzhiyun * [min_recovery_rate <kB/sec/disk>] Throttle RAID initialization
1112*4882a593Smuzhiyun * [max_recovery_rate <kB/sec/disk>] Throttle RAID initialization
1113*4882a593Smuzhiyun * [write_mostly <idx>] Indicate a write mostly drive via index
1114*4882a593Smuzhiyun * [max_write_behind <sectors>] See '-write-behind=' (man mdadm)
1115*4882a593Smuzhiyun * [stripe_cache <sectors>] Stripe cache size for higher RAIDs
1116*4882a593Smuzhiyun * [region_size <sectors>] Defines granularity of bitmap
1117*4882a593Smuzhiyun * [journal_dev <dev>] raid4/5/6 journaling deviice
1118*4882a593Smuzhiyun * (i.e. write hole closing log)
1119*4882a593Smuzhiyun *
1120*4882a593Smuzhiyun * RAID10-only options:
1121*4882a593Smuzhiyun * [raid10_copies <# copies>] Number of copies. (Default: 2)
1122*4882a593Smuzhiyun * [raid10_format <near|far|offset>] Layout algorithm. (Default: near)
1123*4882a593Smuzhiyun */
parse_raid_params(struct raid_set * rs,struct dm_arg_set * as,unsigned int num_raid_params)1124*4882a593Smuzhiyun static int parse_raid_params(struct raid_set *rs, struct dm_arg_set *as,
1125*4882a593Smuzhiyun unsigned int num_raid_params)
1126*4882a593Smuzhiyun {
1127*4882a593Smuzhiyun int value, raid10_format = ALGORITHM_RAID10_DEFAULT;
1128*4882a593Smuzhiyun unsigned int raid10_copies = 2;
1129*4882a593Smuzhiyun unsigned int i, write_mostly = 0;
1130*4882a593Smuzhiyun unsigned int region_size = 0;
1131*4882a593Smuzhiyun sector_t max_io_len;
1132*4882a593Smuzhiyun const char *arg, *key;
1133*4882a593Smuzhiyun struct raid_dev *rd;
1134*4882a593Smuzhiyun struct raid_type *rt = rs->raid_type;
1135*4882a593Smuzhiyun
1136*4882a593Smuzhiyun arg = dm_shift_arg(as);
1137*4882a593Smuzhiyun num_raid_params--; /* Account for chunk_size argument */
1138*4882a593Smuzhiyun
1139*4882a593Smuzhiyun if (kstrtoint(arg, 10, &value) < 0) {
1140*4882a593Smuzhiyun rs->ti->error = "Bad numerical argument given for chunk_size";
1141*4882a593Smuzhiyun return -EINVAL;
1142*4882a593Smuzhiyun }
1143*4882a593Smuzhiyun
1144*4882a593Smuzhiyun /*
1145*4882a593Smuzhiyun * First, parse the in-order required arguments
1146*4882a593Smuzhiyun * "chunk_size" is the only argument of this type.
1147*4882a593Smuzhiyun */
1148*4882a593Smuzhiyun if (rt_is_raid1(rt)) {
1149*4882a593Smuzhiyun if (value)
1150*4882a593Smuzhiyun DMERR("Ignoring chunk size parameter for RAID 1");
1151*4882a593Smuzhiyun value = 0;
1152*4882a593Smuzhiyun } else if (!is_power_of_2(value)) {
1153*4882a593Smuzhiyun rs->ti->error = "Chunk size must be a power of 2";
1154*4882a593Smuzhiyun return -EINVAL;
1155*4882a593Smuzhiyun } else if (value < 8) {
1156*4882a593Smuzhiyun rs->ti->error = "Chunk size value is too small";
1157*4882a593Smuzhiyun return -EINVAL;
1158*4882a593Smuzhiyun }
1159*4882a593Smuzhiyun
1160*4882a593Smuzhiyun rs->md.new_chunk_sectors = rs->md.chunk_sectors = value;
1161*4882a593Smuzhiyun
1162*4882a593Smuzhiyun /*
1163*4882a593Smuzhiyun * We set each individual device as In_sync with a completed
1164*4882a593Smuzhiyun * 'recovery_offset'. If there has been a device failure or
1165*4882a593Smuzhiyun * replacement then one of the following cases applies:
1166*4882a593Smuzhiyun *
1167*4882a593Smuzhiyun * 1) User specifies 'rebuild'.
1168*4882a593Smuzhiyun * - Device is reset when param is read.
1169*4882a593Smuzhiyun * 2) A new device is supplied.
1170*4882a593Smuzhiyun * - No matching superblock found, resets device.
1171*4882a593Smuzhiyun * 3) Device failure was transient and returns on reload.
1172*4882a593Smuzhiyun * - Failure noticed, resets device for bitmap replay.
1173*4882a593Smuzhiyun * 4) Device hadn't completed recovery after previous failure.
1174*4882a593Smuzhiyun * - Superblock is read and overrides recovery_offset.
1175*4882a593Smuzhiyun *
1176*4882a593Smuzhiyun * What is found in the superblocks of the devices is always
1177*4882a593Smuzhiyun * authoritative, unless 'rebuild' or '[no]sync' was specified.
1178*4882a593Smuzhiyun */
1179*4882a593Smuzhiyun for (i = 0; i < rs->raid_disks; i++) {
1180*4882a593Smuzhiyun set_bit(In_sync, &rs->dev[i].rdev.flags);
1181*4882a593Smuzhiyun rs->dev[i].rdev.recovery_offset = MaxSector;
1182*4882a593Smuzhiyun }
1183*4882a593Smuzhiyun
1184*4882a593Smuzhiyun /*
1185*4882a593Smuzhiyun * Second, parse the unordered optional arguments
1186*4882a593Smuzhiyun */
1187*4882a593Smuzhiyun for (i = 0; i < num_raid_params; i++) {
1188*4882a593Smuzhiyun key = dm_shift_arg(as);
1189*4882a593Smuzhiyun if (!key) {
1190*4882a593Smuzhiyun rs->ti->error = "Not enough raid parameters given";
1191*4882a593Smuzhiyun return -EINVAL;
1192*4882a593Smuzhiyun }
1193*4882a593Smuzhiyun
1194*4882a593Smuzhiyun if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_NOSYNC))) {
1195*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags)) {
1196*4882a593Smuzhiyun rs->ti->error = "Only one 'nosync' argument allowed";
1197*4882a593Smuzhiyun return -EINVAL;
1198*4882a593Smuzhiyun }
1199*4882a593Smuzhiyun continue;
1200*4882a593Smuzhiyun }
1201*4882a593Smuzhiyun if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_SYNC))) {
1202*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_SYNC, &rs->ctr_flags)) {
1203*4882a593Smuzhiyun rs->ti->error = "Only one 'sync' argument allowed";
1204*4882a593Smuzhiyun return -EINVAL;
1205*4882a593Smuzhiyun }
1206*4882a593Smuzhiyun continue;
1207*4882a593Smuzhiyun }
1208*4882a593Smuzhiyun if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_USE_NEAR_SETS))) {
1209*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_RAID10_USE_NEAR_SETS, &rs->ctr_flags)) {
1210*4882a593Smuzhiyun rs->ti->error = "Only one 'raid10_use_new_sets' argument allowed";
1211*4882a593Smuzhiyun return -EINVAL;
1212*4882a593Smuzhiyun }
1213*4882a593Smuzhiyun continue;
1214*4882a593Smuzhiyun }
1215*4882a593Smuzhiyun
1216*4882a593Smuzhiyun arg = dm_shift_arg(as);
1217*4882a593Smuzhiyun i++; /* Account for the argument pairs */
1218*4882a593Smuzhiyun if (!arg) {
1219*4882a593Smuzhiyun rs->ti->error = "Wrong number of raid parameters given";
1220*4882a593Smuzhiyun return -EINVAL;
1221*4882a593Smuzhiyun }
1222*4882a593Smuzhiyun
1223*4882a593Smuzhiyun /*
1224*4882a593Smuzhiyun * Parameters that take a string value are checked here.
1225*4882a593Smuzhiyun */
1226*4882a593Smuzhiyun /* "raid10_format {near|offset|far} */
1227*4882a593Smuzhiyun if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_FORMAT))) {
1228*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_RAID10_FORMAT, &rs->ctr_flags)) {
1229*4882a593Smuzhiyun rs->ti->error = "Only one 'raid10_format' argument pair allowed";
1230*4882a593Smuzhiyun return -EINVAL;
1231*4882a593Smuzhiyun }
1232*4882a593Smuzhiyun if (!rt_is_raid10(rt)) {
1233*4882a593Smuzhiyun rs->ti->error = "'raid10_format' is an invalid parameter for this RAID type";
1234*4882a593Smuzhiyun return -EINVAL;
1235*4882a593Smuzhiyun }
1236*4882a593Smuzhiyun raid10_format = raid10_name_to_format(arg);
1237*4882a593Smuzhiyun if (raid10_format < 0) {
1238*4882a593Smuzhiyun rs->ti->error = "Invalid 'raid10_format' value given";
1239*4882a593Smuzhiyun return raid10_format;
1240*4882a593Smuzhiyun }
1241*4882a593Smuzhiyun continue;
1242*4882a593Smuzhiyun }
1243*4882a593Smuzhiyun
1244*4882a593Smuzhiyun /* "journal_dev <dev>" */
1245*4882a593Smuzhiyun if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_JOURNAL_DEV))) {
1246*4882a593Smuzhiyun int r;
1247*4882a593Smuzhiyun struct md_rdev *jdev;
1248*4882a593Smuzhiyun
1249*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags)) {
1250*4882a593Smuzhiyun rs->ti->error = "Only one raid4/5/6 set journaling device allowed";
1251*4882a593Smuzhiyun return -EINVAL;
1252*4882a593Smuzhiyun }
1253*4882a593Smuzhiyun if (!rt_is_raid456(rt)) {
1254*4882a593Smuzhiyun rs->ti->error = "'journal_dev' is an invalid parameter for this RAID type";
1255*4882a593Smuzhiyun return -EINVAL;
1256*4882a593Smuzhiyun }
1257*4882a593Smuzhiyun r = dm_get_device(rs->ti, arg, dm_table_get_mode(rs->ti->table),
1258*4882a593Smuzhiyun &rs->journal_dev.dev);
1259*4882a593Smuzhiyun if (r) {
1260*4882a593Smuzhiyun rs->ti->error = "raid4/5/6 journal device lookup failure";
1261*4882a593Smuzhiyun return r;
1262*4882a593Smuzhiyun }
1263*4882a593Smuzhiyun jdev = &rs->journal_dev.rdev;
1264*4882a593Smuzhiyun md_rdev_init(jdev);
1265*4882a593Smuzhiyun jdev->mddev = &rs->md;
1266*4882a593Smuzhiyun jdev->bdev = rs->journal_dev.dev->bdev;
1267*4882a593Smuzhiyun jdev->sectors = to_sector(i_size_read(jdev->bdev->bd_inode));
1268*4882a593Smuzhiyun if (jdev->sectors < MIN_RAID456_JOURNAL_SPACE) {
1269*4882a593Smuzhiyun rs->ti->error = "No space for raid4/5/6 journal";
1270*4882a593Smuzhiyun return -ENOSPC;
1271*4882a593Smuzhiyun }
1272*4882a593Smuzhiyun rs->journal_dev.mode = R5C_JOURNAL_MODE_WRITE_THROUGH;
1273*4882a593Smuzhiyun set_bit(Journal, &jdev->flags);
1274*4882a593Smuzhiyun continue;
1275*4882a593Smuzhiyun }
1276*4882a593Smuzhiyun
1277*4882a593Smuzhiyun /* "journal_mode <mode>" ("journal_dev" mandatory!) */
1278*4882a593Smuzhiyun if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_JOURNAL_MODE))) {
1279*4882a593Smuzhiyun int r;
1280*4882a593Smuzhiyun
1281*4882a593Smuzhiyun if (!test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags)) {
1282*4882a593Smuzhiyun rs->ti->error = "raid4/5/6 'journal_mode' is invalid without 'journal_dev'";
1283*4882a593Smuzhiyun return -EINVAL;
1284*4882a593Smuzhiyun }
1285*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_JOURNAL_MODE, &rs->ctr_flags)) {
1286*4882a593Smuzhiyun rs->ti->error = "Only one raid4/5/6 'journal_mode' argument allowed";
1287*4882a593Smuzhiyun return -EINVAL;
1288*4882a593Smuzhiyun }
1289*4882a593Smuzhiyun r = dm_raid_journal_mode_to_md(arg);
1290*4882a593Smuzhiyun if (r < 0) {
1291*4882a593Smuzhiyun rs->ti->error = "Invalid 'journal_mode' argument";
1292*4882a593Smuzhiyun return r;
1293*4882a593Smuzhiyun }
1294*4882a593Smuzhiyun rs->journal_dev.mode = r;
1295*4882a593Smuzhiyun continue;
1296*4882a593Smuzhiyun }
1297*4882a593Smuzhiyun
1298*4882a593Smuzhiyun /*
1299*4882a593Smuzhiyun * Parameters with number values from here on.
1300*4882a593Smuzhiyun */
1301*4882a593Smuzhiyun if (kstrtoint(arg, 10, &value) < 0) {
1302*4882a593Smuzhiyun rs->ti->error = "Bad numerical argument given in raid params";
1303*4882a593Smuzhiyun return -EINVAL;
1304*4882a593Smuzhiyun }
1305*4882a593Smuzhiyun
1306*4882a593Smuzhiyun if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_REBUILD))) {
1307*4882a593Smuzhiyun /*
1308*4882a593Smuzhiyun * "rebuild" is being passed in by userspace to provide
1309*4882a593Smuzhiyun * indexes of replaced devices and to set up additional
1310*4882a593Smuzhiyun * devices on raid level takeover.
1311*4882a593Smuzhiyun */
1312*4882a593Smuzhiyun if (!__within_range(value, 0, rs->raid_disks - 1)) {
1313*4882a593Smuzhiyun rs->ti->error = "Invalid rebuild index given";
1314*4882a593Smuzhiyun return -EINVAL;
1315*4882a593Smuzhiyun }
1316*4882a593Smuzhiyun
1317*4882a593Smuzhiyun if (test_and_set_bit(value, (void *) rs->rebuild_disks)) {
1318*4882a593Smuzhiyun rs->ti->error = "rebuild for this index already given";
1319*4882a593Smuzhiyun return -EINVAL;
1320*4882a593Smuzhiyun }
1321*4882a593Smuzhiyun
1322*4882a593Smuzhiyun rd = rs->dev + value;
1323*4882a593Smuzhiyun clear_bit(In_sync, &rd->rdev.flags);
1324*4882a593Smuzhiyun clear_bit(Faulty, &rd->rdev.flags);
1325*4882a593Smuzhiyun rd->rdev.recovery_offset = 0;
1326*4882a593Smuzhiyun set_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags);
1327*4882a593Smuzhiyun } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_WRITE_MOSTLY))) {
1328*4882a593Smuzhiyun if (!rt_is_raid1(rt)) {
1329*4882a593Smuzhiyun rs->ti->error = "write_mostly option is only valid for RAID1";
1330*4882a593Smuzhiyun return -EINVAL;
1331*4882a593Smuzhiyun }
1332*4882a593Smuzhiyun
1333*4882a593Smuzhiyun if (!__within_range(value, 0, rs->md.raid_disks - 1)) {
1334*4882a593Smuzhiyun rs->ti->error = "Invalid write_mostly index given";
1335*4882a593Smuzhiyun return -EINVAL;
1336*4882a593Smuzhiyun }
1337*4882a593Smuzhiyun
1338*4882a593Smuzhiyun write_mostly++;
1339*4882a593Smuzhiyun set_bit(WriteMostly, &rs->dev[value].rdev.flags);
1340*4882a593Smuzhiyun set_bit(__CTR_FLAG_WRITE_MOSTLY, &rs->ctr_flags);
1341*4882a593Smuzhiyun } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_MAX_WRITE_BEHIND))) {
1342*4882a593Smuzhiyun if (!rt_is_raid1(rt)) {
1343*4882a593Smuzhiyun rs->ti->error = "max_write_behind option is only valid for RAID1";
1344*4882a593Smuzhiyun return -EINVAL;
1345*4882a593Smuzhiyun }
1346*4882a593Smuzhiyun
1347*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_MAX_WRITE_BEHIND, &rs->ctr_flags)) {
1348*4882a593Smuzhiyun rs->ti->error = "Only one max_write_behind argument pair allowed";
1349*4882a593Smuzhiyun return -EINVAL;
1350*4882a593Smuzhiyun }
1351*4882a593Smuzhiyun
1352*4882a593Smuzhiyun /*
1353*4882a593Smuzhiyun * In device-mapper, we specify things in sectors, but
1354*4882a593Smuzhiyun * MD records this value in kB
1355*4882a593Smuzhiyun */
1356*4882a593Smuzhiyun if (value < 0 || value / 2 > COUNTER_MAX) {
1357*4882a593Smuzhiyun rs->ti->error = "Max write-behind limit out of range";
1358*4882a593Smuzhiyun return -EINVAL;
1359*4882a593Smuzhiyun }
1360*4882a593Smuzhiyun
1361*4882a593Smuzhiyun rs->md.bitmap_info.max_write_behind = value / 2;
1362*4882a593Smuzhiyun } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_DAEMON_SLEEP))) {
1363*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_DAEMON_SLEEP, &rs->ctr_flags)) {
1364*4882a593Smuzhiyun rs->ti->error = "Only one daemon_sleep argument pair allowed";
1365*4882a593Smuzhiyun return -EINVAL;
1366*4882a593Smuzhiyun }
1367*4882a593Smuzhiyun if (value < 0) {
1368*4882a593Smuzhiyun rs->ti->error = "daemon sleep period out of range";
1369*4882a593Smuzhiyun return -EINVAL;
1370*4882a593Smuzhiyun }
1371*4882a593Smuzhiyun rs->md.bitmap_info.daemon_sleep = value;
1372*4882a593Smuzhiyun } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_DATA_OFFSET))) {
1373*4882a593Smuzhiyun /* Userspace passes new data_offset after having extended the the data image LV */
1374*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_DATA_OFFSET, &rs->ctr_flags)) {
1375*4882a593Smuzhiyun rs->ti->error = "Only one data_offset argument pair allowed";
1376*4882a593Smuzhiyun return -EINVAL;
1377*4882a593Smuzhiyun }
1378*4882a593Smuzhiyun /* Ensure sensible data offset */
1379*4882a593Smuzhiyun if (value < 0 ||
1380*4882a593Smuzhiyun (value && (value < MIN_FREE_RESHAPE_SPACE || value % to_sector(PAGE_SIZE)))) {
1381*4882a593Smuzhiyun rs->ti->error = "Bogus data_offset value";
1382*4882a593Smuzhiyun return -EINVAL;
1383*4882a593Smuzhiyun }
1384*4882a593Smuzhiyun rs->data_offset = value;
1385*4882a593Smuzhiyun } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_DELTA_DISKS))) {
1386*4882a593Smuzhiyun /* Define the +/-# of disks to add to/remove from the given raid set */
1387*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_DELTA_DISKS, &rs->ctr_flags)) {
1388*4882a593Smuzhiyun rs->ti->error = "Only one delta_disks argument pair allowed";
1389*4882a593Smuzhiyun return -EINVAL;
1390*4882a593Smuzhiyun }
1391*4882a593Smuzhiyun /* Ensure MAX_RAID_DEVICES and raid type minimal_devs! */
1392*4882a593Smuzhiyun if (!__within_range(abs(value), 1, MAX_RAID_DEVICES - rt->minimal_devs)) {
1393*4882a593Smuzhiyun rs->ti->error = "Too many delta_disk requested";
1394*4882a593Smuzhiyun return -EINVAL;
1395*4882a593Smuzhiyun }
1396*4882a593Smuzhiyun
1397*4882a593Smuzhiyun rs->delta_disks = value;
1398*4882a593Smuzhiyun } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_STRIPE_CACHE))) {
1399*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_STRIPE_CACHE, &rs->ctr_flags)) {
1400*4882a593Smuzhiyun rs->ti->error = "Only one stripe_cache argument pair allowed";
1401*4882a593Smuzhiyun return -EINVAL;
1402*4882a593Smuzhiyun }
1403*4882a593Smuzhiyun
1404*4882a593Smuzhiyun if (!rt_is_raid456(rt)) {
1405*4882a593Smuzhiyun rs->ti->error = "Inappropriate argument: stripe_cache";
1406*4882a593Smuzhiyun return -EINVAL;
1407*4882a593Smuzhiyun }
1408*4882a593Smuzhiyun
1409*4882a593Smuzhiyun if (value < 0) {
1410*4882a593Smuzhiyun rs->ti->error = "Bogus stripe cache entries value";
1411*4882a593Smuzhiyun return -EINVAL;
1412*4882a593Smuzhiyun }
1413*4882a593Smuzhiyun rs->stripe_cache_entries = value;
1414*4882a593Smuzhiyun } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_MIN_RECOVERY_RATE))) {
1415*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_MIN_RECOVERY_RATE, &rs->ctr_flags)) {
1416*4882a593Smuzhiyun rs->ti->error = "Only one min_recovery_rate argument pair allowed";
1417*4882a593Smuzhiyun return -EINVAL;
1418*4882a593Smuzhiyun }
1419*4882a593Smuzhiyun
1420*4882a593Smuzhiyun if (value < 0) {
1421*4882a593Smuzhiyun rs->ti->error = "min_recovery_rate out of range";
1422*4882a593Smuzhiyun return -EINVAL;
1423*4882a593Smuzhiyun }
1424*4882a593Smuzhiyun rs->md.sync_speed_min = value;
1425*4882a593Smuzhiyun } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_MAX_RECOVERY_RATE))) {
1426*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_MAX_RECOVERY_RATE, &rs->ctr_flags)) {
1427*4882a593Smuzhiyun rs->ti->error = "Only one max_recovery_rate argument pair allowed";
1428*4882a593Smuzhiyun return -EINVAL;
1429*4882a593Smuzhiyun }
1430*4882a593Smuzhiyun
1431*4882a593Smuzhiyun if (value < 0) {
1432*4882a593Smuzhiyun rs->ti->error = "max_recovery_rate out of range";
1433*4882a593Smuzhiyun return -EINVAL;
1434*4882a593Smuzhiyun }
1435*4882a593Smuzhiyun rs->md.sync_speed_max = value;
1436*4882a593Smuzhiyun } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_REGION_SIZE))) {
1437*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_REGION_SIZE, &rs->ctr_flags)) {
1438*4882a593Smuzhiyun rs->ti->error = "Only one region_size argument pair allowed";
1439*4882a593Smuzhiyun return -EINVAL;
1440*4882a593Smuzhiyun }
1441*4882a593Smuzhiyun
1442*4882a593Smuzhiyun region_size = value;
1443*4882a593Smuzhiyun rs->requested_bitmap_chunk_sectors = value;
1444*4882a593Smuzhiyun } else if (!strcasecmp(key, dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_COPIES))) {
1445*4882a593Smuzhiyun if (test_and_set_bit(__CTR_FLAG_RAID10_COPIES, &rs->ctr_flags)) {
1446*4882a593Smuzhiyun rs->ti->error = "Only one raid10_copies argument pair allowed";
1447*4882a593Smuzhiyun return -EINVAL;
1448*4882a593Smuzhiyun }
1449*4882a593Smuzhiyun
1450*4882a593Smuzhiyun if (!__within_range(value, 2, rs->md.raid_disks)) {
1451*4882a593Smuzhiyun rs->ti->error = "Bad value for 'raid10_copies'";
1452*4882a593Smuzhiyun return -EINVAL;
1453*4882a593Smuzhiyun }
1454*4882a593Smuzhiyun
1455*4882a593Smuzhiyun raid10_copies = value;
1456*4882a593Smuzhiyun } else {
1457*4882a593Smuzhiyun DMERR("Unable to parse RAID parameter: %s", key);
1458*4882a593Smuzhiyun rs->ti->error = "Unable to parse RAID parameter";
1459*4882a593Smuzhiyun return -EINVAL;
1460*4882a593Smuzhiyun }
1461*4882a593Smuzhiyun }
1462*4882a593Smuzhiyun
1463*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_SYNC, &rs->ctr_flags) &&
1464*4882a593Smuzhiyun test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags)) {
1465*4882a593Smuzhiyun rs->ti->error = "sync and nosync are mutually exclusive";
1466*4882a593Smuzhiyun return -EINVAL;
1467*4882a593Smuzhiyun }
1468*4882a593Smuzhiyun
1469*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags) &&
1470*4882a593Smuzhiyun (test_bit(__CTR_FLAG_SYNC, &rs->ctr_flags) ||
1471*4882a593Smuzhiyun test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags))) {
1472*4882a593Smuzhiyun rs->ti->error = "sync/nosync and rebuild are mutually exclusive";
1473*4882a593Smuzhiyun return -EINVAL;
1474*4882a593Smuzhiyun }
1475*4882a593Smuzhiyun
1476*4882a593Smuzhiyun if (write_mostly >= rs->md.raid_disks) {
1477*4882a593Smuzhiyun rs->ti->error = "Can't set all raid1 devices to write_mostly";
1478*4882a593Smuzhiyun return -EINVAL;
1479*4882a593Smuzhiyun }
1480*4882a593Smuzhiyun
1481*4882a593Smuzhiyun if (rs->md.sync_speed_max &&
1482*4882a593Smuzhiyun rs->md.sync_speed_min > rs->md.sync_speed_max) {
1483*4882a593Smuzhiyun rs->ti->error = "Bogus recovery rates";
1484*4882a593Smuzhiyun return -EINVAL;
1485*4882a593Smuzhiyun }
1486*4882a593Smuzhiyun
1487*4882a593Smuzhiyun if (validate_region_size(rs, region_size))
1488*4882a593Smuzhiyun return -EINVAL;
1489*4882a593Smuzhiyun
1490*4882a593Smuzhiyun if (rs->md.chunk_sectors)
1491*4882a593Smuzhiyun max_io_len = rs->md.chunk_sectors;
1492*4882a593Smuzhiyun else
1493*4882a593Smuzhiyun max_io_len = region_size;
1494*4882a593Smuzhiyun
1495*4882a593Smuzhiyun if (dm_set_target_max_io_len(rs->ti, max_io_len))
1496*4882a593Smuzhiyun return -EINVAL;
1497*4882a593Smuzhiyun
1498*4882a593Smuzhiyun if (rt_is_raid10(rt)) {
1499*4882a593Smuzhiyun if (raid10_copies > rs->md.raid_disks) {
1500*4882a593Smuzhiyun rs->ti->error = "Not enough devices to satisfy specification";
1501*4882a593Smuzhiyun return -EINVAL;
1502*4882a593Smuzhiyun }
1503*4882a593Smuzhiyun
1504*4882a593Smuzhiyun rs->md.new_layout = raid10_format_to_md_layout(rs, raid10_format, raid10_copies);
1505*4882a593Smuzhiyun if (rs->md.new_layout < 0) {
1506*4882a593Smuzhiyun rs->ti->error = "Error getting raid10 format";
1507*4882a593Smuzhiyun return rs->md.new_layout;
1508*4882a593Smuzhiyun }
1509*4882a593Smuzhiyun
1510*4882a593Smuzhiyun rt = get_raid_type_by_ll(10, rs->md.new_layout);
1511*4882a593Smuzhiyun if (!rt) {
1512*4882a593Smuzhiyun rs->ti->error = "Failed to recognize new raid10 layout";
1513*4882a593Smuzhiyun return -EINVAL;
1514*4882a593Smuzhiyun }
1515*4882a593Smuzhiyun
1516*4882a593Smuzhiyun if ((rt->algorithm == ALGORITHM_RAID10_DEFAULT ||
1517*4882a593Smuzhiyun rt->algorithm == ALGORITHM_RAID10_NEAR) &&
1518*4882a593Smuzhiyun test_bit(__CTR_FLAG_RAID10_USE_NEAR_SETS, &rs->ctr_flags)) {
1519*4882a593Smuzhiyun rs->ti->error = "RAID10 format 'near' and 'raid10_use_near_sets' are incompatible";
1520*4882a593Smuzhiyun return -EINVAL;
1521*4882a593Smuzhiyun }
1522*4882a593Smuzhiyun }
1523*4882a593Smuzhiyun
1524*4882a593Smuzhiyun rs->raid10_copies = raid10_copies;
1525*4882a593Smuzhiyun
1526*4882a593Smuzhiyun /* Assume there are no metadata devices until the drives are parsed */
1527*4882a593Smuzhiyun rs->md.persistent = 0;
1528*4882a593Smuzhiyun rs->md.external = 1;
1529*4882a593Smuzhiyun
1530*4882a593Smuzhiyun /* Check, if any invalid ctr arguments have been passed in for the raid level */
1531*4882a593Smuzhiyun return rs_check_for_valid_flags(rs);
1532*4882a593Smuzhiyun }
1533*4882a593Smuzhiyun
1534*4882a593Smuzhiyun /* Set raid4/5/6 cache size */
rs_set_raid456_stripe_cache(struct raid_set * rs)1535*4882a593Smuzhiyun static int rs_set_raid456_stripe_cache(struct raid_set *rs)
1536*4882a593Smuzhiyun {
1537*4882a593Smuzhiyun int r;
1538*4882a593Smuzhiyun struct r5conf *conf;
1539*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
1540*4882a593Smuzhiyun uint32_t min_stripes = max(mddev->chunk_sectors, mddev->new_chunk_sectors) / 2;
1541*4882a593Smuzhiyun uint32_t nr_stripes = rs->stripe_cache_entries;
1542*4882a593Smuzhiyun
1543*4882a593Smuzhiyun if (!rt_is_raid456(rs->raid_type)) {
1544*4882a593Smuzhiyun rs->ti->error = "Inappropriate raid level; cannot change stripe_cache size";
1545*4882a593Smuzhiyun return -EINVAL;
1546*4882a593Smuzhiyun }
1547*4882a593Smuzhiyun
1548*4882a593Smuzhiyun if (nr_stripes < min_stripes) {
1549*4882a593Smuzhiyun DMINFO("Adjusting requested %u stripe cache entries to %u to suit stripe size",
1550*4882a593Smuzhiyun nr_stripes, min_stripes);
1551*4882a593Smuzhiyun nr_stripes = min_stripes;
1552*4882a593Smuzhiyun }
1553*4882a593Smuzhiyun
1554*4882a593Smuzhiyun conf = mddev->private;
1555*4882a593Smuzhiyun if (!conf) {
1556*4882a593Smuzhiyun rs->ti->error = "Cannot change stripe_cache size on inactive RAID set";
1557*4882a593Smuzhiyun return -EINVAL;
1558*4882a593Smuzhiyun }
1559*4882a593Smuzhiyun
1560*4882a593Smuzhiyun /* Try setting number of stripes in raid456 stripe cache */
1561*4882a593Smuzhiyun if (conf->min_nr_stripes != nr_stripes) {
1562*4882a593Smuzhiyun r = raid5_set_cache_size(mddev, nr_stripes);
1563*4882a593Smuzhiyun if (r) {
1564*4882a593Smuzhiyun rs->ti->error = "Failed to set raid4/5/6 stripe cache size";
1565*4882a593Smuzhiyun return r;
1566*4882a593Smuzhiyun }
1567*4882a593Smuzhiyun
1568*4882a593Smuzhiyun DMINFO("%u stripe cache entries", nr_stripes);
1569*4882a593Smuzhiyun }
1570*4882a593Smuzhiyun
1571*4882a593Smuzhiyun return 0;
1572*4882a593Smuzhiyun }
1573*4882a593Smuzhiyun
1574*4882a593Smuzhiyun /* Return # of data stripes as kept in mddev as of @rs (i.e. as of superblock) */
mddev_data_stripes(struct raid_set * rs)1575*4882a593Smuzhiyun static unsigned int mddev_data_stripes(struct raid_set *rs)
1576*4882a593Smuzhiyun {
1577*4882a593Smuzhiyun return rs->md.raid_disks - rs->raid_type->parity_devs;
1578*4882a593Smuzhiyun }
1579*4882a593Smuzhiyun
1580*4882a593Smuzhiyun /* Return # of data stripes of @rs (i.e. as of ctr) */
rs_data_stripes(struct raid_set * rs)1581*4882a593Smuzhiyun static unsigned int rs_data_stripes(struct raid_set *rs)
1582*4882a593Smuzhiyun {
1583*4882a593Smuzhiyun return rs->raid_disks - rs->raid_type->parity_devs;
1584*4882a593Smuzhiyun }
1585*4882a593Smuzhiyun
1586*4882a593Smuzhiyun /*
1587*4882a593Smuzhiyun * Retrieve rdev->sectors from any valid raid device of @rs
1588*4882a593Smuzhiyun * to allow userpace to pass in arbitray "- -" device tupples.
1589*4882a593Smuzhiyun */
__rdev_sectors(struct raid_set * rs)1590*4882a593Smuzhiyun static sector_t __rdev_sectors(struct raid_set *rs)
1591*4882a593Smuzhiyun {
1592*4882a593Smuzhiyun int i;
1593*4882a593Smuzhiyun
1594*4882a593Smuzhiyun for (i = 0; i < rs->raid_disks; i++) {
1595*4882a593Smuzhiyun struct md_rdev *rdev = &rs->dev[i].rdev;
1596*4882a593Smuzhiyun
1597*4882a593Smuzhiyun if (!test_bit(Journal, &rdev->flags) &&
1598*4882a593Smuzhiyun rdev->bdev && rdev->sectors)
1599*4882a593Smuzhiyun return rdev->sectors;
1600*4882a593Smuzhiyun }
1601*4882a593Smuzhiyun
1602*4882a593Smuzhiyun return 0;
1603*4882a593Smuzhiyun }
1604*4882a593Smuzhiyun
1605*4882a593Smuzhiyun /* Check that calculated dev_sectors fits all component devices. */
_check_data_dev_sectors(struct raid_set * rs)1606*4882a593Smuzhiyun static int _check_data_dev_sectors(struct raid_set *rs)
1607*4882a593Smuzhiyun {
1608*4882a593Smuzhiyun sector_t ds = ~0;
1609*4882a593Smuzhiyun struct md_rdev *rdev;
1610*4882a593Smuzhiyun
1611*4882a593Smuzhiyun rdev_for_each(rdev, &rs->md)
1612*4882a593Smuzhiyun if (!test_bit(Journal, &rdev->flags) && rdev->bdev) {
1613*4882a593Smuzhiyun ds = min(ds, to_sector(i_size_read(rdev->bdev->bd_inode)));
1614*4882a593Smuzhiyun if (ds < rs->md.dev_sectors) {
1615*4882a593Smuzhiyun rs->ti->error = "Component device(s) too small";
1616*4882a593Smuzhiyun return -EINVAL;
1617*4882a593Smuzhiyun }
1618*4882a593Smuzhiyun }
1619*4882a593Smuzhiyun
1620*4882a593Smuzhiyun return 0;
1621*4882a593Smuzhiyun }
1622*4882a593Smuzhiyun
1623*4882a593Smuzhiyun /* Calculate the sectors per device and per array used for @rs */
rs_set_dev_and_array_sectors(struct raid_set * rs,sector_t sectors,bool use_mddev)1624*4882a593Smuzhiyun static int rs_set_dev_and_array_sectors(struct raid_set *rs, sector_t sectors, bool use_mddev)
1625*4882a593Smuzhiyun {
1626*4882a593Smuzhiyun int delta_disks;
1627*4882a593Smuzhiyun unsigned int data_stripes;
1628*4882a593Smuzhiyun sector_t array_sectors = sectors, dev_sectors = sectors;
1629*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
1630*4882a593Smuzhiyun
1631*4882a593Smuzhiyun if (use_mddev) {
1632*4882a593Smuzhiyun delta_disks = mddev->delta_disks;
1633*4882a593Smuzhiyun data_stripes = mddev_data_stripes(rs);
1634*4882a593Smuzhiyun } else {
1635*4882a593Smuzhiyun delta_disks = rs->delta_disks;
1636*4882a593Smuzhiyun data_stripes = rs_data_stripes(rs);
1637*4882a593Smuzhiyun }
1638*4882a593Smuzhiyun
1639*4882a593Smuzhiyun /* Special raid1 case w/o delta_disks support (yet) */
1640*4882a593Smuzhiyun if (rt_is_raid1(rs->raid_type))
1641*4882a593Smuzhiyun ;
1642*4882a593Smuzhiyun else if (rt_is_raid10(rs->raid_type)) {
1643*4882a593Smuzhiyun if (rs->raid10_copies < 2 ||
1644*4882a593Smuzhiyun delta_disks < 0) {
1645*4882a593Smuzhiyun rs->ti->error = "Bogus raid10 data copies or delta disks";
1646*4882a593Smuzhiyun return -EINVAL;
1647*4882a593Smuzhiyun }
1648*4882a593Smuzhiyun
1649*4882a593Smuzhiyun dev_sectors *= rs->raid10_copies;
1650*4882a593Smuzhiyun if (sector_div(dev_sectors, data_stripes))
1651*4882a593Smuzhiyun goto bad;
1652*4882a593Smuzhiyun
1653*4882a593Smuzhiyun array_sectors = (data_stripes + delta_disks) * dev_sectors;
1654*4882a593Smuzhiyun if (sector_div(array_sectors, rs->raid10_copies))
1655*4882a593Smuzhiyun goto bad;
1656*4882a593Smuzhiyun
1657*4882a593Smuzhiyun } else if (sector_div(dev_sectors, data_stripes))
1658*4882a593Smuzhiyun goto bad;
1659*4882a593Smuzhiyun
1660*4882a593Smuzhiyun else
1661*4882a593Smuzhiyun /* Striped layouts */
1662*4882a593Smuzhiyun array_sectors = (data_stripes + delta_disks) * dev_sectors;
1663*4882a593Smuzhiyun
1664*4882a593Smuzhiyun mddev->array_sectors = array_sectors;
1665*4882a593Smuzhiyun mddev->dev_sectors = dev_sectors;
1666*4882a593Smuzhiyun rs_set_rdev_sectors(rs);
1667*4882a593Smuzhiyun
1668*4882a593Smuzhiyun return _check_data_dev_sectors(rs);
1669*4882a593Smuzhiyun bad:
1670*4882a593Smuzhiyun rs->ti->error = "Target length not divisible by number of data devices";
1671*4882a593Smuzhiyun return -EINVAL;
1672*4882a593Smuzhiyun }
1673*4882a593Smuzhiyun
1674*4882a593Smuzhiyun /* Setup recovery on @rs */
rs_setup_recovery(struct raid_set * rs,sector_t dev_sectors)1675*4882a593Smuzhiyun static void rs_setup_recovery(struct raid_set *rs, sector_t dev_sectors)
1676*4882a593Smuzhiyun {
1677*4882a593Smuzhiyun /* raid0 does not recover */
1678*4882a593Smuzhiyun if (rs_is_raid0(rs))
1679*4882a593Smuzhiyun rs->md.recovery_cp = MaxSector;
1680*4882a593Smuzhiyun /*
1681*4882a593Smuzhiyun * A raid6 set has to be recovered either
1682*4882a593Smuzhiyun * completely or for the grown part to
1683*4882a593Smuzhiyun * ensure proper parity and Q-Syndrome
1684*4882a593Smuzhiyun */
1685*4882a593Smuzhiyun else if (rs_is_raid6(rs))
1686*4882a593Smuzhiyun rs->md.recovery_cp = dev_sectors;
1687*4882a593Smuzhiyun /*
1688*4882a593Smuzhiyun * Other raid set types may skip recovery
1689*4882a593Smuzhiyun * depending on the 'nosync' flag.
1690*4882a593Smuzhiyun */
1691*4882a593Smuzhiyun else
1692*4882a593Smuzhiyun rs->md.recovery_cp = test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags)
1693*4882a593Smuzhiyun ? MaxSector : dev_sectors;
1694*4882a593Smuzhiyun }
1695*4882a593Smuzhiyun
do_table_event(struct work_struct * ws)1696*4882a593Smuzhiyun static void do_table_event(struct work_struct *ws)
1697*4882a593Smuzhiyun {
1698*4882a593Smuzhiyun struct raid_set *rs = container_of(ws, struct raid_set, md.event_work);
1699*4882a593Smuzhiyun
1700*4882a593Smuzhiyun smp_rmb(); /* Make sure we access most actual mddev properties */
1701*4882a593Smuzhiyun if (!rs_is_reshaping(rs)) {
1702*4882a593Smuzhiyun if (rs_is_raid10(rs))
1703*4882a593Smuzhiyun rs_set_rdev_sectors(rs);
1704*4882a593Smuzhiyun rs_set_capacity(rs);
1705*4882a593Smuzhiyun }
1706*4882a593Smuzhiyun dm_table_event(rs->ti->table);
1707*4882a593Smuzhiyun }
1708*4882a593Smuzhiyun
1709*4882a593Smuzhiyun /*
1710*4882a593Smuzhiyun * Make sure a valid takover (level switch) is being requested on @rs
1711*4882a593Smuzhiyun *
1712*4882a593Smuzhiyun * Conversions of raid sets from one MD personality to another
1713*4882a593Smuzhiyun * have to conform to restrictions which are enforced here.
1714*4882a593Smuzhiyun */
rs_check_takeover(struct raid_set * rs)1715*4882a593Smuzhiyun static int rs_check_takeover(struct raid_set *rs)
1716*4882a593Smuzhiyun {
1717*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
1718*4882a593Smuzhiyun unsigned int near_copies;
1719*4882a593Smuzhiyun
1720*4882a593Smuzhiyun if (rs->md.degraded) {
1721*4882a593Smuzhiyun rs->ti->error = "Can't takeover degraded raid set";
1722*4882a593Smuzhiyun return -EPERM;
1723*4882a593Smuzhiyun }
1724*4882a593Smuzhiyun
1725*4882a593Smuzhiyun if (rs_is_reshaping(rs)) {
1726*4882a593Smuzhiyun rs->ti->error = "Can't takeover reshaping raid set";
1727*4882a593Smuzhiyun return -EPERM;
1728*4882a593Smuzhiyun }
1729*4882a593Smuzhiyun
1730*4882a593Smuzhiyun switch (mddev->level) {
1731*4882a593Smuzhiyun case 0:
1732*4882a593Smuzhiyun /* raid0 -> raid1/5 with one disk */
1733*4882a593Smuzhiyun if ((mddev->new_level == 1 || mddev->new_level == 5) &&
1734*4882a593Smuzhiyun mddev->raid_disks == 1)
1735*4882a593Smuzhiyun return 0;
1736*4882a593Smuzhiyun
1737*4882a593Smuzhiyun /* raid0 -> raid10 */
1738*4882a593Smuzhiyun if (mddev->new_level == 10 &&
1739*4882a593Smuzhiyun !(rs->raid_disks % mddev->raid_disks))
1740*4882a593Smuzhiyun return 0;
1741*4882a593Smuzhiyun
1742*4882a593Smuzhiyun /* raid0 with multiple disks -> raid4/5/6 */
1743*4882a593Smuzhiyun if (__within_range(mddev->new_level, 4, 6) &&
1744*4882a593Smuzhiyun mddev->new_layout == ALGORITHM_PARITY_N &&
1745*4882a593Smuzhiyun mddev->raid_disks > 1)
1746*4882a593Smuzhiyun return 0;
1747*4882a593Smuzhiyun
1748*4882a593Smuzhiyun break;
1749*4882a593Smuzhiyun
1750*4882a593Smuzhiyun case 10:
1751*4882a593Smuzhiyun /* Can't takeover raid10_offset! */
1752*4882a593Smuzhiyun if (__is_raid10_offset(mddev->layout))
1753*4882a593Smuzhiyun break;
1754*4882a593Smuzhiyun
1755*4882a593Smuzhiyun near_copies = __raid10_near_copies(mddev->layout);
1756*4882a593Smuzhiyun
1757*4882a593Smuzhiyun /* raid10* -> raid0 */
1758*4882a593Smuzhiyun if (mddev->new_level == 0) {
1759*4882a593Smuzhiyun /* Can takeover raid10_near with raid disks divisable by data copies! */
1760*4882a593Smuzhiyun if (near_copies > 1 &&
1761*4882a593Smuzhiyun !(mddev->raid_disks % near_copies)) {
1762*4882a593Smuzhiyun mddev->raid_disks /= near_copies;
1763*4882a593Smuzhiyun mddev->delta_disks = mddev->raid_disks;
1764*4882a593Smuzhiyun return 0;
1765*4882a593Smuzhiyun }
1766*4882a593Smuzhiyun
1767*4882a593Smuzhiyun /* Can takeover raid10_far */
1768*4882a593Smuzhiyun if (near_copies == 1 &&
1769*4882a593Smuzhiyun __raid10_far_copies(mddev->layout) > 1)
1770*4882a593Smuzhiyun return 0;
1771*4882a593Smuzhiyun
1772*4882a593Smuzhiyun break;
1773*4882a593Smuzhiyun }
1774*4882a593Smuzhiyun
1775*4882a593Smuzhiyun /* raid10_{near,far} -> raid1 */
1776*4882a593Smuzhiyun if (mddev->new_level == 1 &&
1777*4882a593Smuzhiyun max(near_copies, __raid10_far_copies(mddev->layout)) == mddev->raid_disks)
1778*4882a593Smuzhiyun return 0;
1779*4882a593Smuzhiyun
1780*4882a593Smuzhiyun /* raid10_{near,far} with 2 disks -> raid4/5 */
1781*4882a593Smuzhiyun if (__within_range(mddev->new_level, 4, 5) &&
1782*4882a593Smuzhiyun mddev->raid_disks == 2)
1783*4882a593Smuzhiyun return 0;
1784*4882a593Smuzhiyun break;
1785*4882a593Smuzhiyun
1786*4882a593Smuzhiyun case 1:
1787*4882a593Smuzhiyun /* raid1 with 2 disks -> raid4/5 */
1788*4882a593Smuzhiyun if (__within_range(mddev->new_level, 4, 5) &&
1789*4882a593Smuzhiyun mddev->raid_disks == 2) {
1790*4882a593Smuzhiyun mddev->degraded = 1;
1791*4882a593Smuzhiyun return 0;
1792*4882a593Smuzhiyun }
1793*4882a593Smuzhiyun
1794*4882a593Smuzhiyun /* raid1 -> raid0 */
1795*4882a593Smuzhiyun if (mddev->new_level == 0 &&
1796*4882a593Smuzhiyun mddev->raid_disks == 1)
1797*4882a593Smuzhiyun return 0;
1798*4882a593Smuzhiyun
1799*4882a593Smuzhiyun /* raid1 -> raid10 */
1800*4882a593Smuzhiyun if (mddev->new_level == 10)
1801*4882a593Smuzhiyun return 0;
1802*4882a593Smuzhiyun break;
1803*4882a593Smuzhiyun
1804*4882a593Smuzhiyun case 4:
1805*4882a593Smuzhiyun /* raid4 -> raid0 */
1806*4882a593Smuzhiyun if (mddev->new_level == 0)
1807*4882a593Smuzhiyun return 0;
1808*4882a593Smuzhiyun
1809*4882a593Smuzhiyun /* raid4 -> raid1/5 with 2 disks */
1810*4882a593Smuzhiyun if ((mddev->new_level == 1 || mddev->new_level == 5) &&
1811*4882a593Smuzhiyun mddev->raid_disks == 2)
1812*4882a593Smuzhiyun return 0;
1813*4882a593Smuzhiyun
1814*4882a593Smuzhiyun /* raid4 -> raid5/6 with parity N */
1815*4882a593Smuzhiyun if (__within_range(mddev->new_level, 5, 6) &&
1816*4882a593Smuzhiyun mddev->layout == ALGORITHM_PARITY_N)
1817*4882a593Smuzhiyun return 0;
1818*4882a593Smuzhiyun break;
1819*4882a593Smuzhiyun
1820*4882a593Smuzhiyun case 5:
1821*4882a593Smuzhiyun /* raid5 with parity N -> raid0 */
1822*4882a593Smuzhiyun if (mddev->new_level == 0 &&
1823*4882a593Smuzhiyun mddev->layout == ALGORITHM_PARITY_N)
1824*4882a593Smuzhiyun return 0;
1825*4882a593Smuzhiyun
1826*4882a593Smuzhiyun /* raid5 with parity N -> raid4 */
1827*4882a593Smuzhiyun if (mddev->new_level == 4 &&
1828*4882a593Smuzhiyun mddev->layout == ALGORITHM_PARITY_N)
1829*4882a593Smuzhiyun return 0;
1830*4882a593Smuzhiyun
1831*4882a593Smuzhiyun /* raid5 with 2 disks -> raid1/4/10 */
1832*4882a593Smuzhiyun if ((mddev->new_level == 1 || mddev->new_level == 4 || mddev->new_level == 10) &&
1833*4882a593Smuzhiyun mddev->raid_disks == 2)
1834*4882a593Smuzhiyun return 0;
1835*4882a593Smuzhiyun
1836*4882a593Smuzhiyun /* raid5_* -> raid6_*_6 with Q-Syndrome N (e.g. raid5_ra -> raid6_ra_6 */
1837*4882a593Smuzhiyun if (mddev->new_level == 6 &&
1838*4882a593Smuzhiyun ((mddev->layout == ALGORITHM_PARITY_N && mddev->new_layout == ALGORITHM_PARITY_N) ||
1839*4882a593Smuzhiyun __within_range(mddev->new_layout, ALGORITHM_LEFT_ASYMMETRIC_6, ALGORITHM_RIGHT_SYMMETRIC_6)))
1840*4882a593Smuzhiyun return 0;
1841*4882a593Smuzhiyun break;
1842*4882a593Smuzhiyun
1843*4882a593Smuzhiyun case 6:
1844*4882a593Smuzhiyun /* raid6 with parity N -> raid0 */
1845*4882a593Smuzhiyun if (mddev->new_level == 0 &&
1846*4882a593Smuzhiyun mddev->layout == ALGORITHM_PARITY_N)
1847*4882a593Smuzhiyun return 0;
1848*4882a593Smuzhiyun
1849*4882a593Smuzhiyun /* raid6 with parity N -> raid4 */
1850*4882a593Smuzhiyun if (mddev->new_level == 4 &&
1851*4882a593Smuzhiyun mddev->layout == ALGORITHM_PARITY_N)
1852*4882a593Smuzhiyun return 0;
1853*4882a593Smuzhiyun
1854*4882a593Smuzhiyun /* raid6_*_n with Q-Syndrome N -> raid5_* */
1855*4882a593Smuzhiyun if (mddev->new_level == 5 &&
1856*4882a593Smuzhiyun ((mddev->layout == ALGORITHM_PARITY_N && mddev->new_layout == ALGORITHM_PARITY_N) ||
1857*4882a593Smuzhiyun __within_range(mddev->new_layout, ALGORITHM_LEFT_ASYMMETRIC, ALGORITHM_RIGHT_SYMMETRIC)))
1858*4882a593Smuzhiyun return 0;
1859*4882a593Smuzhiyun
1860*4882a593Smuzhiyun default:
1861*4882a593Smuzhiyun break;
1862*4882a593Smuzhiyun }
1863*4882a593Smuzhiyun
1864*4882a593Smuzhiyun rs->ti->error = "takeover not possible";
1865*4882a593Smuzhiyun return -EINVAL;
1866*4882a593Smuzhiyun }
1867*4882a593Smuzhiyun
1868*4882a593Smuzhiyun /* True if @rs requested to be taken over */
rs_takeover_requested(struct raid_set * rs)1869*4882a593Smuzhiyun static bool rs_takeover_requested(struct raid_set *rs)
1870*4882a593Smuzhiyun {
1871*4882a593Smuzhiyun return rs->md.new_level != rs->md.level;
1872*4882a593Smuzhiyun }
1873*4882a593Smuzhiyun
1874*4882a593Smuzhiyun /* True if layout is set to reshape. */
rs_is_layout_change(struct raid_set * rs,bool use_mddev)1875*4882a593Smuzhiyun static bool rs_is_layout_change(struct raid_set *rs, bool use_mddev)
1876*4882a593Smuzhiyun {
1877*4882a593Smuzhiyun return (use_mddev ? rs->md.delta_disks : rs->delta_disks) ||
1878*4882a593Smuzhiyun rs->md.new_layout != rs->md.layout ||
1879*4882a593Smuzhiyun rs->md.new_chunk_sectors != rs->md.chunk_sectors;
1880*4882a593Smuzhiyun }
1881*4882a593Smuzhiyun
1882*4882a593Smuzhiyun /* True if @rs is requested to reshape by ctr */
rs_reshape_requested(struct raid_set * rs)1883*4882a593Smuzhiyun static bool rs_reshape_requested(struct raid_set *rs)
1884*4882a593Smuzhiyun {
1885*4882a593Smuzhiyun bool change;
1886*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
1887*4882a593Smuzhiyun
1888*4882a593Smuzhiyun if (rs_takeover_requested(rs))
1889*4882a593Smuzhiyun return false;
1890*4882a593Smuzhiyun
1891*4882a593Smuzhiyun if (rs_is_raid0(rs))
1892*4882a593Smuzhiyun return false;
1893*4882a593Smuzhiyun
1894*4882a593Smuzhiyun change = rs_is_layout_change(rs, false);
1895*4882a593Smuzhiyun
1896*4882a593Smuzhiyun /* Historical case to support raid1 reshape without delta disks */
1897*4882a593Smuzhiyun if (rs_is_raid1(rs)) {
1898*4882a593Smuzhiyun if (rs->delta_disks)
1899*4882a593Smuzhiyun return !!rs->delta_disks;
1900*4882a593Smuzhiyun
1901*4882a593Smuzhiyun return !change &&
1902*4882a593Smuzhiyun mddev->raid_disks != rs->raid_disks;
1903*4882a593Smuzhiyun }
1904*4882a593Smuzhiyun
1905*4882a593Smuzhiyun if (rs_is_raid10(rs))
1906*4882a593Smuzhiyun return change &&
1907*4882a593Smuzhiyun !__is_raid10_far(mddev->new_layout) &&
1908*4882a593Smuzhiyun rs->delta_disks >= 0;
1909*4882a593Smuzhiyun
1910*4882a593Smuzhiyun return change;
1911*4882a593Smuzhiyun }
1912*4882a593Smuzhiyun
1913*4882a593Smuzhiyun /* Features */
1914*4882a593Smuzhiyun #define FEATURE_FLAG_SUPPORTS_V190 0x1 /* Supports extended superblock */
1915*4882a593Smuzhiyun
1916*4882a593Smuzhiyun /* State flags for sb->flags */
1917*4882a593Smuzhiyun #define SB_FLAG_RESHAPE_ACTIVE 0x1
1918*4882a593Smuzhiyun #define SB_FLAG_RESHAPE_BACKWARDS 0x2
1919*4882a593Smuzhiyun
1920*4882a593Smuzhiyun /*
1921*4882a593Smuzhiyun * This structure is never routinely used by userspace, unlike md superblocks.
1922*4882a593Smuzhiyun * Devices with this superblock should only ever be accessed via device-mapper.
1923*4882a593Smuzhiyun */
1924*4882a593Smuzhiyun #define DM_RAID_MAGIC 0x64526D44
1925*4882a593Smuzhiyun struct dm_raid_superblock {
1926*4882a593Smuzhiyun __le32 magic; /* "DmRd" */
1927*4882a593Smuzhiyun __le32 compat_features; /* Used to indicate compatible features (like 1.9.0 ondisk metadata extension) */
1928*4882a593Smuzhiyun
1929*4882a593Smuzhiyun __le32 num_devices; /* Number of devices in this raid set. (Max 64) */
1930*4882a593Smuzhiyun __le32 array_position; /* The position of this drive in the raid set */
1931*4882a593Smuzhiyun
1932*4882a593Smuzhiyun __le64 events; /* Incremented by md when superblock updated */
1933*4882a593Smuzhiyun __le64 failed_devices; /* Pre 1.9.0 part of bit field of devices to */
1934*4882a593Smuzhiyun /* indicate failures (see extension below) */
1935*4882a593Smuzhiyun
1936*4882a593Smuzhiyun /*
1937*4882a593Smuzhiyun * This offset tracks the progress of the repair or replacement of
1938*4882a593Smuzhiyun * an individual drive.
1939*4882a593Smuzhiyun */
1940*4882a593Smuzhiyun __le64 disk_recovery_offset;
1941*4882a593Smuzhiyun
1942*4882a593Smuzhiyun /*
1943*4882a593Smuzhiyun * This offset tracks the progress of the initial raid set
1944*4882a593Smuzhiyun * synchronisation/parity calculation.
1945*4882a593Smuzhiyun */
1946*4882a593Smuzhiyun __le64 array_resync_offset;
1947*4882a593Smuzhiyun
1948*4882a593Smuzhiyun /*
1949*4882a593Smuzhiyun * raid characteristics
1950*4882a593Smuzhiyun */
1951*4882a593Smuzhiyun __le32 level;
1952*4882a593Smuzhiyun __le32 layout;
1953*4882a593Smuzhiyun __le32 stripe_sectors;
1954*4882a593Smuzhiyun
1955*4882a593Smuzhiyun /********************************************************************
1956*4882a593Smuzhiyun * BELOW FOLLOW V1.9.0 EXTENSIONS TO THE PRISTINE SUPERBLOCK FORMAT!!!
1957*4882a593Smuzhiyun *
1958*4882a593Smuzhiyun * FEATURE_FLAG_SUPPORTS_V190 in the compat_features member indicates that those exist
1959*4882a593Smuzhiyun */
1960*4882a593Smuzhiyun
1961*4882a593Smuzhiyun __le32 flags; /* Flags defining array states for reshaping */
1962*4882a593Smuzhiyun
1963*4882a593Smuzhiyun /*
1964*4882a593Smuzhiyun * This offset tracks the progress of a raid
1965*4882a593Smuzhiyun * set reshape in order to be able to restart it
1966*4882a593Smuzhiyun */
1967*4882a593Smuzhiyun __le64 reshape_position;
1968*4882a593Smuzhiyun
1969*4882a593Smuzhiyun /*
1970*4882a593Smuzhiyun * These define the properties of the array in case of an interrupted reshape
1971*4882a593Smuzhiyun */
1972*4882a593Smuzhiyun __le32 new_level;
1973*4882a593Smuzhiyun __le32 new_layout;
1974*4882a593Smuzhiyun __le32 new_stripe_sectors;
1975*4882a593Smuzhiyun __le32 delta_disks;
1976*4882a593Smuzhiyun
1977*4882a593Smuzhiyun __le64 array_sectors; /* Array size in sectors */
1978*4882a593Smuzhiyun
1979*4882a593Smuzhiyun /*
1980*4882a593Smuzhiyun * Sector offsets to data on devices (reshaping).
1981*4882a593Smuzhiyun * Needed to support out of place reshaping, thus
1982*4882a593Smuzhiyun * not writing over any stripes whilst converting
1983*4882a593Smuzhiyun * them from old to new layout
1984*4882a593Smuzhiyun */
1985*4882a593Smuzhiyun __le64 data_offset;
1986*4882a593Smuzhiyun __le64 new_data_offset;
1987*4882a593Smuzhiyun
1988*4882a593Smuzhiyun __le64 sectors; /* Used device size in sectors */
1989*4882a593Smuzhiyun
1990*4882a593Smuzhiyun /*
1991*4882a593Smuzhiyun * Additonal Bit field of devices indicating failures to support
1992*4882a593Smuzhiyun * up to 256 devices with the 1.9.0 on-disk metadata format
1993*4882a593Smuzhiyun */
1994*4882a593Smuzhiyun __le64 extended_failed_devices[DISKS_ARRAY_ELEMS - 1];
1995*4882a593Smuzhiyun
1996*4882a593Smuzhiyun __le32 incompat_features; /* Used to indicate any incompatible features */
1997*4882a593Smuzhiyun
1998*4882a593Smuzhiyun /* Always set rest up to logical block size to 0 when writing (see get_metadata_device() below). */
1999*4882a593Smuzhiyun } __packed;
2000*4882a593Smuzhiyun
2001*4882a593Smuzhiyun /*
2002*4882a593Smuzhiyun * Check for reshape constraints on raid set @rs:
2003*4882a593Smuzhiyun *
2004*4882a593Smuzhiyun * - reshape function non-existent
2005*4882a593Smuzhiyun * - degraded set
2006*4882a593Smuzhiyun * - ongoing recovery
2007*4882a593Smuzhiyun * - ongoing reshape
2008*4882a593Smuzhiyun *
2009*4882a593Smuzhiyun * Returns 0 if none or -EPERM if given constraint
2010*4882a593Smuzhiyun * and error message reference in @errmsg
2011*4882a593Smuzhiyun */
rs_check_reshape(struct raid_set * rs)2012*4882a593Smuzhiyun static int rs_check_reshape(struct raid_set *rs)
2013*4882a593Smuzhiyun {
2014*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
2015*4882a593Smuzhiyun
2016*4882a593Smuzhiyun if (!mddev->pers || !mddev->pers->check_reshape)
2017*4882a593Smuzhiyun rs->ti->error = "Reshape not supported";
2018*4882a593Smuzhiyun else if (mddev->degraded)
2019*4882a593Smuzhiyun rs->ti->error = "Can't reshape degraded raid set";
2020*4882a593Smuzhiyun else if (rs_is_recovering(rs))
2021*4882a593Smuzhiyun rs->ti->error = "Convert request on recovering raid set prohibited";
2022*4882a593Smuzhiyun else if (rs_is_reshaping(rs))
2023*4882a593Smuzhiyun rs->ti->error = "raid set already reshaping!";
2024*4882a593Smuzhiyun else if (!(rs_is_raid1(rs) || rs_is_raid10(rs) || rs_is_raid456(rs)))
2025*4882a593Smuzhiyun rs->ti->error = "Reshaping only supported for raid1/4/5/6/10";
2026*4882a593Smuzhiyun else
2027*4882a593Smuzhiyun return 0;
2028*4882a593Smuzhiyun
2029*4882a593Smuzhiyun return -EPERM;
2030*4882a593Smuzhiyun }
2031*4882a593Smuzhiyun
read_disk_sb(struct md_rdev * rdev,int size,bool force_reload)2032*4882a593Smuzhiyun static int read_disk_sb(struct md_rdev *rdev, int size, bool force_reload)
2033*4882a593Smuzhiyun {
2034*4882a593Smuzhiyun BUG_ON(!rdev->sb_page);
2035*4882a593Smuzhiyun
2036*4882a593Smuzhiyun if (rdev->sb_loaded && !force_reload)
2037*4882a593Smuzhiyun return 0;
2038*4882a593Smuzhiyun
2039*4882a593Smuzhiyun rdev->sb_loaded = 0;
2040*4882a593Smuzhiyun
2041*4882a593Smuzhiyun if (!sync_page_io(rdev, 0, size, rdev->sb_page, REQ_OP_READ, 0, true)) {
2042*4882a593Smuzhiyun DMERR("Failed to read superblock of device at position %d",
2043*4882a593Smuzhiyun rdev->raid_disk);
2044*4882a593Smuzhiyun md_error(rdev->mddev, rdev);
2045*4882a593Smuzhiyun set_bit(Faulty, &rdev->flags);
2046*4882a593Smuzhiyun return -EIO;
2047*4882a593Smuzhiyun }
2048*4882a593Smuzhiyun
2049*4882a593Smuzhiyun rdev->sb_loaded = 1;
2050*4882a593Smuzhiyun
2051*4882a593Smuzhiyun return 0;
2052*4882a593Smuzhiyun }
2053*4882a593Smuzhiyun
sb_retrieve_failed_devices(struct dm_raid_superblock * sb,uint64_t * failed_devices)2054*4882a593Smuzhiyun static void sb_retrieve_failed_devices(struct dm_raid_superblock *sb, uint64_t *failed_devices)
2055*4882a593Smuzhiyun {
2056*4882a593Smuzhiyun failed_devices[0] = le64_to_cpu(sb->failed_devices);
2057*4882a593Smuzhiyun memset(failed_devices + 1, 0, sizeof(sb->extended_failed_devices));
2058*4882a593Smuzhiyun
2059*4882a593Smuzhiyun if (le32_to_cpu(sb->compat_features) & FEATURE_FLAG_SUPPORTS_V190) {
2060*4882a593Smuzhiyun int i = ARRAY_SIZE(sb->extended_failed_devices);
2061*4882a593Smuzhiyun
2062*4882a593Smuzhiyun while (i--)
2063*4882a593Smuzhiyun failed_devices[i+1] = le64_to_cpu(sb->extended_failed_devices[i]);
2064*4882a593Smuzhiyun }
2065*4882a593Smuzhiyun }
2066*4882a593Smuzhiyun
sb_update_failed_devices(struct dm_raid_superblock * sb,uint64_t * failed_devices)2067*4882a593Smuzhiyun static void sb_update_failed_devices(struct dm_raid_superblock *sb, uint64_t *failed_devices)
2068*4882a593Smuzhiyun {
2069*4882a593Smuzhiyun int i = ARRAY_SIZE(sb->extended_failed_devices);
2070*4882a593Smuzhiyun
2071*4882a593Smuzhiyun sb->failed_devices = cpu_to_le64(failed_devices[0]);
2072*4882a593Smuzhiyun while (i--)
2073*4882a593Smuzhiyun sb->extended_failed_devices[i] = cpu_to_le64(failed_devices[i+1]);
2074*4882a593Smuzhiyun }
2075*4882a593Smuzhiyun
2076*4882a593Smuzhiyun /*
2077*4882a593Smuzhiyun * Synchronize the superblock members with the raid set properties
2078*4882a593Smuzhiyun *
2079*4882a593Smuzhiyun * All superblock data is little endian.
2080*4882a593Smuzhiyun */
super_sync(struct mddev * mddev,struct md_rdev * rdev)2081*4882a593Smuzhiyun static void super_sync(struct mddev *mddev, struct md_rdev *rdev)
2082*4882a593Smuzhiyun {
2083*4882a593Smuzhiyun bool update_failed_devices = false;
2084*4882a593Smuzhiyun unsigned int i;
2085*4882a593Smuzhiyun uint64_t failed_devices[DISKS_ARRAY_ELEMS];
2086*4882a593Smuzhiyun struct dm_raid_superblock *sb;
2087*4882a593Smuzhiyun struct raid_set *rs = container_of(mddev, struct raid_set, md);
2088*4882a593Smuzhiyun
2089*4882a593Smuzhiyun /* No metadata device, no superblock */
2090*4882a593Smuzhiyun if (!rdev->meta_bdev)
2091*4882a593Smuzhiyun return;
2092*4882a593Smuzhiyun
2093*4882a593Smuzhiyun BUG_ON(!rdev->sb_page);
2094*4882a593Smuzhiyun
2095*4882a593Smuzhiyun sb = page_address(rdev->sb_page);
2096*4882a593Smuzhiyun
2097*4882a593Smuzhiyun sb_retrieve_failed_devices(sb, failed_devices);
2098*4882a593Smuzhiyun
2099*4882a593Smuzhiyun for (i = 0; i < rs->raid_disks; i++)
2100*4882a593Smuzhiyun if (!rs->dev[i].data_dev || test_bit(Faulty, &rs->dev[i].rdev.flags)) {
2101*4882a593Smuzhiyun update_failed_devices = true;
2102*4882a593Smuzhiyun set_bit(i, (void *) failed_devices);
2103*4882a593Smuzhiyun }
2104*4882a593Smuzhiyun
2105*4882a593Smuzhiyun if (update_failed_devices)
2106*4882a593Smuzhiyun sb_update_failed_devices(sb, failed_devices);
2107*4882a593Smuzhiyun
2108*4882a593Smuzhiyun sb->magic = cpu_to_le32(DM_RAID_MAGIC);
2109*4882a593Smuzhiyun sb->compat_features = cpu_to_le32(FEATURE_FLAG_SUPPORTS_V190);
2110*4882a593Smuzhiyun
2111*4882a593Smuzhiyun sb->num_devices = cpu_to_le32(mddev->raid_disks);
2112*4882a593Smuzhiyun sb->array_position = cpu_to_le32(rdev->raid_disk);
2113*4882a593Smuzhiyun
2114*4882a593Smuzhiyun sb->events = cpu_to_le64(mddev->events);
2115*4882a593Smuzhiyun
2116*4882a593Smuzhiyun sb->disk_recovery_offset = cpu_to_le64(rdev->recovery_offset);
2117*4882a593Smuzhiyun sb->array_resync_offset = cpu_to_le64(mddev->recovery_cp);
2118*4882a593Smuzhiyun
2119*4882a593Smuzhiyun sb->level = cpu_to_le32(mddev->level);
2120*4882a593Smuzhiyun sb->layout = cpu_to_le32(mddev->layout);
2121*4882a593Smuzhiyun sb->stripe_sectors = cpu_to_le32(mddev->chunk_sectors);
2122*4882a593Smuzhiyun
2123*4882a593Smuzhiyun /********************************************************************
2124*4882a593Smuzhiyun * BELOW FOLLOW V1.9.0 EXTENSIONS TO THE PRISTINE SUPERBLOCK FORMAT!!!
2125*4882a593Smuzhiyun *
2126*4882a593Smuzhiyun * FEATURE_FLAG_SUPPORTS_V190 in the compat_features member indicates that those exist
2127*4882a593Smuzhiyun */
2128*4882a593Smuzhiyun sb->new_level = cpu_to_le32(mddev->new_level);
2129*4882a593Smuzhiyun sb->new_layout = cpu_to_le32(mddev->new_layout);
2130*4882a593Smuzhiyun sb->new_stripe_sectors = cpu_to_le32(mddev->new_chunk_sectors);
2131*4882a593Smuzhiyun
2132*4882a593Smuzhiyun sb->delta_disks = cpu_to_le32(mddev->delta_disks);
2133*4882a593Smuzhiyun
2134*4882a593Smuzhiyun smp_rmb(); /* Make sure we access most recent reshape position */
2135*4882a593Smuzhiyun sb->reshape_position = cpu_to_le64(mddev->reshape_position);
2136*4882a593Smuzhiyun if (le64_to_cpu(sb->reshape_position) != MaxSector) {
2137*4882a593Smuzhiyun /* Flag ongoing reshape */
2138*4882a593Smuzhiyun sb->flags |= cpu_to_le32(SB_FLAG_RESHAPE_ACTIVE);
2139*4882a593Smuzhiyun
2140*4882a593Smuzhiyun if (mddev->delta_disks < 0 || mddev->reshape_backwards)
2141*4882a593Smuzhiyun sb->flags |= cpu_to_le32(SB_FLAG_RESHAPE_BACKWARDS);
2142*4882a593Smuzhiyun } else {
2143*4882a593Smuzhiyun /* Clear reshape flags */
2144*4882a593Smuzhiyun sb->flags &= ~(cpu_to_le32(SB_FLAG_RESHAPE_ACTIVE|SB_FLAG_RESHAPE_BACKWARDS));
2145*4882a593Smuzhiyun }
2146*4882a593Smuzhiyun
2147*4882a593Smuzhiyun sb->array_sectors = cpu_to_le64(mddev->array_sectors);
2148*4882a593Smuzhiyun sb->data_offset = cpu_to_le64(rdev->data_offset);
2149*4882a593Smuzhiyun sb->new_data_offset = cpu_to_le64(rdev->new_data_offset);
2150*4882a593Smuzhiyun sb->sectors = cpu_to_le64(rdev->sectors);
2151*4882a593Smuzhiyun sb->incompat_features = cpu_to_le32(0);
2152*4882a593Smuzhiyun
2153*4882a593Smuzhiyun /* Zero out the rest of the payload after the size of the superblock */
2154*4882a593Smuzhiyun memset(sb + 1, 0, rdev->sb_size - sizeof(*sb));
2155*4882a593Smuzhiyun }
2156*4882a593Smuzhiyun
2157*4882a593Smuzhiyun /*
2158*4882a593Smuzhiyun * super_load
2159*4882a593Smuzhiyun *
2160*4882a593Smuzhiyun * This function creates a superblock if one is not found on the device
2161*4882a593Smuzhiyun * and will decide which superblock to use if there's a choice.
2162*4882a593Smuzhiyun *
2163*4882a593Smuzhiyun * Return: 1 if use rdev, 0 if use refdev, -Exxx otherwise
2164*4882a593Smuzhiyun */
super_load(struct md_rdev * rdev,struct md_rdev * refdev)2165*4882a593Smuzhiyun static int super_load(struct md_rdev *rdev, struct md_rdev *refdev)
2166*4882a593Smuzhiyun {
2167*4882a593Smuzhiyun int r;
2168*4882a593Smuzhiyun struct dm_raid_superblock *sb;
2169*4882a593Smuzhiyun struct dm_raid_superblock *refsb;
2170*4882a593Smuzhiyun uint64_t events_sb, events_refsb;
2171*4882a593Smuzhiyun
2172*4882a593Smuzhiyun r = read_disk_sb(rdev, rdev->sb_size, false);
2173*4882a593Smuzhiyun if (r)
2174*4882a593Smuzhiyun return r;
2175*4882a593Smuzhiyun
2176*4882a593Smuzhiyun sb = page_address(rdev->sb_page);
2177*4882a593Smuzhiyun
2178*4882a593Smuzhiyun /*
2179*4882a593Smuzhiyun * Two cases that we want to write new superblocks and rebuild:
2180*4882a593Smuzhiyun * 1) New device (no matching magic number)
2181*4882a593Smuzhiyun * 2) Device specified for rebuild (!In_sync w/ offset == 0)
2182*4882a593Smuzhiyun */
2183*4882a593Smuzhiyun if ((sb->magic != cpu_to_le32(DM_RAID_MAGIC)) ||
2184*4882a593Smuzhiyun (!test_bit(In_sync, &rdev->flags) && !rdev->recovery_offset)) {
2185*4882a593Smuzhiyun super_sync(rdev->mddev, rdev);
2186*4882a593Smuzhiyun
2187*4882a593Smuzhiyun set_bit(FirstUse, &rdev->flags);
2188*4882a593Smuzhiyun sb->compat_features = cpu_to_le32(FEATURE_FLAG_SUPPORTS_V190);
2189*4882a593Smuzhiyun
2190*4882a593Smuzhiyun /* Force writing of superblocks to disk */
2191*4882a593Smuzhiyun set_bit(MD_SB_CHANGE_DEVS, &rdev->mddev->sb_flags);
2192*4882a593Smuzhiyun
2193*4882a593Smuzhiyun /* Any superblock is better than none, choose that if given */
2194*4882a593Smuzhiyun return refdev ? 0 : 1;
2195*4882a593Smuzhiyun }
2196*4882a593Smuzhiyun
2197*4882a593Smuzhiyun if (!refdev)
2198*4882a593Smuzhiyun return 1;
2199*4882a593Smuzhiyun
2200*4882a593Smuzhiyun events_sb = le64_to_cpu(sb->events);
2201*4882a593Smuzhiyun
2202*4882a593Smuzhiyun refsb = page_address(refdev->sb_page);
2203*4882a593Smuzhiyun events_refsb = le64_to_cpu(refsb->events);
2204*4882a593Smuzhiyun
2205*4882a593Smuzhiyun return (events_sb > events_refsb) ? 1 : 0;
2206*4882a593Smuzhiyun }
2207*4882a593Smuzhiyun
super_init_validation(struct raid_set * rs,struct md_rdev * rdev)2208*4882a593Smuzhiyun static int super_init_validation(struct raid_set *rs, struct md_rdev *rdev)
2209*4882a593Smuzhiyun {
2210*4882a593Smuzhiyun int role;
2211*4882a593Smuzhiyun unsigned int d;
2212*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
2213*4882a593Smuzhiyun uint64_t events_sb;
2214*4882a593Smuzhiyun uint64_t failed_devices[DISKS_ARRAY_ELEMS];
2215*4882a593Smuzhiyun struct dm_raid_superblock *sb;
2216*4882a593Smuzhiyun uint32_t new_devs = 0, rebuild_and_new = 0, rebuilds = 0;
2217*4882a593Smuzhiyun struct md_rdev *r;
2218*4882a593Smuzhiyun struct dm_raid_superblock *sb2;
2219*4882a593Smuzhiyun
2220*4882a593Smuzhiyun sb = page_address(rdev->sb_page);
2221*4882a593Smuzhiyun events_sb = le64_to_cpu(sb->events);
2222*4882a593Smuzhiyun
2223*4882a593Smuzhiyun /*
2224*4882a593Smuzhiyun * Initialise to 1 if this is a new superblock.
2225*4882a593Smuzhiyun */
2226*4882a593Smuzhiyun mddev->events = events_sb ? : 1;
2227*4882a593Smuzhiyun
2228*4882a593Smuzhiyun mddev->reshape_position = MaxSector;
2229*4882a593Smuzhiyun
2230*4882a593Smuzhiyun mddev->raid_disks = le32_to_cpu(sb->num_devices);
2231*4882a593Smuzhiyun mddev->level = le32_to_cpu(sb->level);
2232*4882a593Smuzhiyun mddev->layout = le32_to_cpu(sb->layout);
2233*4882a593Smuzhiyun mddev->chunk_sectors = le32_to_cpu(sb->stripe_sectors);
2234*4882a593Smuzhiyun
2235*4882a593Smuzhiyun /*
2236*4882a593Smuzhiyun * Reshaping is supported, e.g. reshape_position is valid
2237*4882a593Smuzhiyun * in superblock and superblock content is authoritative.
2238*4882a593Smuzhiyun */
2239*4882a593Smuzhiyun if (le32_to_cpu(sb->compat_features) & FEATURE_FLAG_SUPPORTS_V190) {
2240*4882a593Smuzhiyun /* Superblock is authoritative wrt given raid set layout! */
2241*4882a593Smuzhiyun mddev->new_level = le32_to_cpu(sb->new_level);
2242*4882a593Smuzhiyun mddev->new_layout = le32_to_cpu(sb->new_layout);
2243*4882a593Smuzhiyun mddev->new_chunk_sectors = le32_to_cpu(sb->new_stripe_sectors);
2244*4882a593Smuzhiyun mddev->delta_disks = le32_to_cpu(sb->delta_disks);
2245*4882a593Smuzhiyun mddev->array_sectors = le64_to_cpu(sb->array_sectors);
2246*4882a593Smuzhiyun
2247*4882a593Smuzhiyun /* raid was reshaping and got interrupted */
2248*4882a593Smuzhiyun if (le32_to_cpu(sb->flags) & SB_FLAG_RESHAPE_ACTIVE) {
2249*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_DELTA_DISKS, &rs->ctr_flags)) {
2250*4882a593Smuzhiyun DMERR("Reshape requested but raid set is still reshaping");
2251*4882a593Smuzhiyun return -EINVAL;
2252*4882a593Smuzhiyun }
2253*4882a593Smuzhiyun
2254*4882a593Smuzhiyun if (mddev->delta_disks < 0 ||
2255*4882a593Smuzhiyun (!mddev->delta_disks && (le32_to_cpu(sb->flags) & SB_FLAG_RESHAPE_BACKWARDS)))
2256*4882a593Smuzhiyun mddev->reshape_backwards = 1;
2257*4882a593Smuzhiyun else
2258*4882a593Smuzhiyun mddev->reshape_backwards = 0;
2259*4882a593Smuzhiyun
2260*4882a593Smuzhiyun mddev->reshape_position = le64_to_cpu(sb->reshape_position);
2261*4882a593Smuzhiyun rs->raid_type = get_raid_type_by_ll(mddev->level, mddev->layout);
2262*4882a593Smuzhiyun }
2263*4882a593Smuzhiyun
2264*4882a593Smuzhiyun } else {
2265*4882a593Smuzhiyun /*
2266*4882a593Smuzhiyun * No takeover/reshaping, because we don't have the extended v1.9.0 metadata
2267*4882a593Smuzhiyun */
2268*4882a593Smuzhiyun struct raid_type *rt_cur = get_raid_type_by_ll(mddev->level, mddev->layout);
2269*4882a593Smuzhiyun struct raid_type *rt_new = get_raid_type_by_ll(mddev->new_level, mddev->new_layout);
2270*4882a593Smuzhiyun
2271*4882a593Smuzhiyun if (rs_takeover_requested(rs)) {
2272*4882a593Smuzhiyun if (rt_cur && rt_new)
2273*4882a593Smuzhiyun DMERR("Takeover raid sets from %s to %s not yet supported by metadata. (raid level change)",
2274*4882a593Smuzhiyun rt_cur->name, rt_new->name);
2275*4882a593Smuzhiyun else
2276*4882a593Smuzhiyun DMERR("Takeover raid sets not yet supported by metadata. (raid level change)");
2277*4882a593Smuzhiyun return -EINVAL;
2278*4882a593Smuzhiyun } else if (rs_reshape_requested(rs)) {
2279*4882a593Smuzhiyun DMERR("Reshaping raid sets not yet supported by metadata. (raid layout change keeping level)");
2280*4882a593Smuzhiyun if (mddev->layout != mddev->new_layout) {
2281*4882a593Smuzhiyun if (rt_cur && rt_new)
2282*4882a593Smuzhiyun DMERR(" current layout %s vs new layout %s",
2283*4882a593Smuzhiyun rt_cur->name, rt_new->name);
2284*4882a593Smuzhiyun else
2285*4882a593Smuzhiyun DMERR(" current layout 0x%X vs new layout 0x%X",
2286*4882a593Smuzhiyun le32_to_cpu(sb->layout), mddev->new_layout);
2287*4882a593Smuzhiyun }
2288*4882a593Smuzhiyun if (mddev->chunk_sectors != mddev->new_chunk_sectors)
2289*4882a593Smuzhiyun DMERR(" current stripe sectors %u vs new stripe sectors %u",
2290*4882a593Smuzhiyun mddev->chunk_sectors, mddev->new_chunk_sectors);
2291*4882a593Smuzhiyun if (rs->delta_disks)
2292*4882a593Smuzhiyun DMERR(" current %u disks vs new %u disks",
2293*4882a593Smuzhiyun mddev->raid_disks, mddev->raid_disks + rs->delta_disks);
2294*4882a593Smuzhiyun if (rs_is_raid10(rs)) {
2295*4882a593Smuzhiyun DMERR(" Old layout: %s w/ %u copies",
2296*4882a593Smuzhiyun raid10_md_layout_to_format(mddev->layout),
2297*4882a593Smuzhiyun raid10_md_layout_to_copies(mddev->layout));
2298*4882a593Smuzhiyun DMERR(" New layout: %s w/ %u copies",
2299*4882a593Smuzhiyun raid10_md_layout_to_format(mddev->new_layout),
2300*4882a593Smuzhiyun raid10_md_layout_to_copies(mddev->new_layout));
2301*4882a593Smuzhiyun }
2302*4882a593Smuzhiyun return -EINVAL;
2303*4882a593Smuzhiyun }
2304*4882a593Smuzhiyun
2305*4882a593Smuzhiyun DMINFO("Discovered old metadata format; upgrading to extended metadata format");
2306*4882a593Smuzhiyun }
2307*4882a593Smuzhiyun
2308*4882a593Smuzhiyun if (!test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags))
2309*4882a593Smuzhiyun mddev->recovery_cp = le64_to_cpu(sb->array_resync_offset);
2310*4882a593Smuzhiyun
2311*4882a593Smuzhiyun /*
2312*4882a593Smuzhiyun * During load, we set FirstUse if a new superblock was written.
2313*4882a593Smuzhiyun * There are two reasons we might not have a superblock:
2314*4882a593Smuzhiyun * 1) The raid set is brand new - in which case, all of the
2315*4882a593Smuzhiyun * devices must have their In_sync bit set. Also,
2316*4882a593Smuzhiyun * recovery_cp must be 0, unless forced.
2317*4882a593Smuzhiyun * 2) This is a new device being added to an old raid set
2318*4882a593Smuzhiyun * and the new device needs to be rebuilt - in which
2319*4882a593Smuzhiyun * case the In_sync bit will /not/ be set and
2320*4882a593Smuzhiyun * recovery_cp must be MaxSector.
2321*4882a593Smuzhiyun * 3) This is/are a new device(s) being added to an old
2322*4882a593Smuzhiyun * raid set during takeover to a higher raid level
2323*4882a593Smuzhiyun * to provide capacity for redundancy or during reshape
2324*4882a593Smuzhiyun * to add capacity to grow the raid set.
2325*4882a593Smuzhiyun */
2326*4882a593Smuzhiyun d = 0;
2327*4882a593Smuzhiyun rdev_for_each(r, mddev) {
2328*4882a593Smuzhiyun if (test_bit(Journal, &rdev->flags))
2329*4882a593Smuzhiyun continue;
2330*4882a593Smuzhiyun
2331*4882a593Smuzhiyun if (test_bit(FirstUse, &r->flags))
2332*4882a593Smuzhiyun new_devs++;
2333*4882a593Smuzhiyun
2334*4882a593Smuzhiyun if (!test_bit(In_sync, &r->flags)) {
2335*4882a593Smuzhiyun DMINFO("Device %d specified for rebuild; clearing superblock",
2336*4882a593Smuzhiyun r->raid_disk);
2337*4882a593Smuzhiyun rebuilds++;
2338*4882a593Smuzhiyun
2339*4882a593Smuzhiyun if (test_bit(FirstUse, &r->flags))
2340*4882a593Smuzhiyun rebuild_and_new++;
2341*4882a593Smuzhiyun }
2342*4882a593Smuzhiyun
2343*4882a593Smuzhiyun d++;
2344*4882a593Smuzhiyun }
2345*4882a593Smuzhiyun
2346*4882a593Smuzhiyun if (new_devs == rs->raid_disks || !rebuilds) {
2347*4882a593Smuzhiyun /* Replace a broken device */
2348*4882a593Smuzhiyun if (new_devs == rs->raid_disks) {
2349*4882a593Smuzhiyun DMINFO("Superblocks created for new raid set");
2350*4882a593Smuzhiyun set_bit(MD_ARRAY_FIRST_USE, &mddev->flags);
2351*4882a593Smuzhiyun } else if (new_devs != rebuilds &&
2352*4882a593Smuzhiyun new_devs != rs->delta_disks) {
2353*4882a593Smuzhiyun DMERR("New device injected into existing raid set without "
2354*4882a593Smuzhiyun "'delta_disks' or 'rebuild' parameter specified");
2355*4882a593Smuzhiyun return -EINVAL;
2356*4882a593Smuzhiyun }
2357*4882a593Smuzhiyun } else if (new_devs && new_devs != rebuilds) {
2358*4882a593Smuzhiyun DMERR("%u 'rebuild' devices cannot be injected into"
2359*4882a593Smuzhiyun " a raid set with %u other first-time devices",
2360*4882a593Smuzhiyun rebuilds, new_devs);
2361*4882a593Smuzhiyun return -EINVAL;
2362*4882a593Smuzhiyun } else if (rebuilds) {
2363*4882a593Smuzhiyun if (rebuild_and_new && rebuilds != rebuild_and_new) {
2364*4882a593Smuzhiyun DMERR("new device%s provided without 'rebuild'",
2365*4882a593Smuzhiyun new_devs > 1 ? "s" : "");
2366*4882a593Smuzhiyun return -EINVAL;
2367*4882a593Smuzhiyun } else if (!test_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags) && rs_is_recovering(rs)) {
2368*4882a593Smuzhiyun DMERR("'rebuild' specified while raid set is not in-sync (recovery_cp=%llu)",
2369*4882a593Smuzhiyun (unsigned long long) mddev->recovery_cp);
2370*4882a593Smuzhiyun return -EINVAL;
2371*4882a593Smuzhiyun } else if (rs_is_reshaping(rs)) {
2372*4882a593Smuzhiyun DMERR("'rebuild' specified while raid set is being reshaped (reshape_position=%llu)",
2373*4882a593Smuzhiyun (unsigned long long) mddev->reshape_position);
2374*4882a593Smuzhiyun return -EINVAL;
2375*4882a593Smuzhiyun }
2376*4882a593Smuzhiyun }
2377*4882a593Smuzhiyun
2378*4882a593Smuzhiyun /*
2379*4882a593Smuzhiyun * Now we set the Faulty bit for those devices that are
2380*4882a593Smuzhiyun * recorded in the superblock as failed.
2381*4882a593Smuzhiyun */
2382*4882a593Smuzhiyun sb_retrieve_failed_devices(sb, failed_devices);
2383*4882a593Smuzhiyun rdev_for_each(r, mddev) {
2384*4882a593Smuzhiyun if (test_bit(Journal, &rdev->flags) ||
2385*4882a593Smuzhiyun !r->sb_page)
2386*4882a593Smuzhiyun continue;
2387*4882a593Smuzhiyun sb2 = page_address(r->sb_page);
2388*4882a593Smuzhiyun sb2->failed_devices = 0;
2389*4882a593Smuzhiyun memset(sb2->extended_failed_devices, 0, sizeof(sb2->extended_failed_devices));
2390*4882a593Smuzhiyun
2391*4882a593Smuzhiyun /*
2392*4882a593Smuzhiyun * Check for any device re-ordering.
2393*4882a593Smuzhiyun */
2394*4882a593Smuzhiyun if (!test_bit(FirstUse, &r->flags) && (r->raid_disk >= 0)) {
2395*4882a593Smuzhiyun role = le32_to_cpu(sb2->array_position);
2396*4882a593Smuzhiyun if (role < 0)
2397*4882a593Smuzhiyun continue;
2398*4882a593Smuzhiyun
2399*4882a593Smuzhiyun if (role != r->raid_disk) {
2400*4882a593Smuzhiyun if (rs_is_raid10(rs) && __is_raid10_near(mddev->layout)) {
2401*4882a593Smuzhiyun if (mddev->raid_disks % __raid10_near_copies(mddev->layout) ||
2402*4882a593Smuzhiyun rs->raid_disks % rs->raid10_copies) {
2403*4882a593Smuzhiyun rs->ti->error =
2404*4882a593Smuzhiyun "Cannot change raid10 near set to odd # of devices!";
2405*4882a593Smuzhiyun return -EINVAL;
2406*4882a593Smuzhiyun }
2407*4882a593Smuzhiyun
2408*4882a593Smuzhiyun sb2->array_position = cpu_to_le32(r->raid_disk);
2409*4882a593Smuzhiyun
2410*4882a593Smuzhiyun } else if (!(rs_is_raid10(rs) && rt_is_raid0(rs->raid_type)) &&
2411*4882a593Smuzhiyun !(rs_is_raid0(rs) && rt_is_raid10(rs->raid_type)) &&
2412*4882a593Smuzhiyun !rt_is_raid1(rs->raid_type)) {
2413*4882a593Smuzhiyun rs->ti->error = "Cannot change device positions in raid set";
2414*4882a593Smuzhiyun return -EINVAL;
2415*4882a593Smuzhiyun }
2416*4882a593Smuzhiyun
2417*4882a593Smuzhiyun DMINFO("raid device #%d now at position #%d", role, r->raid_disk);
2418*4882a593Smuzhiyun }
2419*4882a593Smuzhiyun
2420*4882a593Smuzhiyun /*
2421*4882a593Smuzhiyun * Partial recovery is performed on
2422*4882a593Smuzhiyun * returning failed devices.
2423*4882a593Smuzhiyun */
2424*4882a593Smuzhiyun if (test_bit(role, (void *) failed_devices))
2425*4882a593Smuzhiyun set_bit(Faulty, &r->flags);
2426*4882a593Smuzhiyun }
2427*4882a593Smuzhiyun }
2428*4882a593Smuzhiyun
2429*4882a593Smuzhiyun return 0;
2430*4882a593Smuzhiyun }
2431*4882a593Smuzhiyun
super_validate(struct raid_set * rs,struct md_rdev * rdev)2432*4882a593Smuzhiyun static int super_validate(struct raid_set *rs, struct md_rdev *rdev)
2433*4882a593Smuzhiyun {
2434*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
2435*4882a593Smuzhiyun struct dm_raid_superblock *sb;
2436*4882a593Smuzhiyun
2437*4882a593Smuzhiyun if (rs_is_raid0(rs) || !rdev->sb_page || rdev->raid_disk < 0)
2438*4882a593Smuzhiyun return 0;
2439*4882a593Smuzhiyun
2440*4882a593Smuzhiyun sb = page_address(rdev->sb_page);
2441*4882a593Smuzhiyun
2442*4882a593Smuzhiyun /*
2443*4882a593Smuzhiyun * If mddev->events is not set, we know we have not yet initialized
2444*4882a593Smuzhiyun * the array.
2445*4882a593Smuzhiyun */
2446*4882a593Smuzhiyun if (!mddev->events && super_init_validation(rs, rdev))
2447*4882a593Smuzhiyun return -EINVAL;
2448*4882a593Smuzhiyun
2449*4882a593Smuzhiyun if (le32_to_cpu(sb->compat_features) &&
2450*4882a593Smuzhiyun le32_to_cpu(sb->compat_features) != FEATURE_FLAG_SUPPORTS_V190) {
2451*4882a593Smuzhiyun rs->ti->error = "Unable to assemble array: Unknown flag(s) in compatible feature flags";
2452*4882a593Smuzhiyun return -EINVAL;
2453*4882a593Smuzhiyun }
2454*4882a593Smuzhiyun
2455*4882a593Smuzhiyun if (sb->incompat_features) {
2456*4882a593Smuzhiyun rs->ti->error = "Unable to assemble array: No incompatible feature flags supported yet";
2457*4882a593Smuzhiyun return -EINVAL;
2458*4882a593Smuzhiyun }
2459*4882a593Smuzhiyun
2460*4882a593Smuzhiyun /* Enable bitmap creation on @rs unless no metadevs or raid0 or journaled raid4/5/6 set. */
2461*4882a593Smuzhiyun mddev->bitmap_info.offset = (rt_is_raid0(rs->raid_type) || rs->journal_dev.dev) ? 0 : to_sector(4096);
2462*4882a593Smuzhiyun mddev->bitmap_info.default_offset = mddev->bitmap_info.offset;
2463*4882a593Smuzhiyun
2464*4882a593Smuzhiyun if (!test_and_clear_bit(FirstUse, &rdev->flags)) {
2465*4882a593Smuzhiyun /*
2466*4882a593Smuzhiyun * Retrieve rdev size stored in superblock to be prepared for shrink.
2467*4882a593Smuzhiyun * Check extended superblock members are present otherwise the size
2468*4882a593Smuzhiyun * will not be set!
2469*4882a593Smuzhiyun */
2470*4882a593Smuzhiyun if (le32_to_cpu(sb->compat_features) & FEATURE_FLAG_SUPPORTS_V190)
2471*4882a593Smuzhiyun rdev->sectors = le64_to_cpu(sb->sectors);
2472*4882a593Smuzhiyun
2473*4882a593Smuzhiyun rdev->recovery_offset = le64_to_cpu(sb->disk_recovery_offset);
2474*4882a593Smuzhiyun if (rdev->recovery_offset == MaxSector)
2475*4882a593Smuzhiyun set_bit(In_sync, &rdev->flags);
2476*4882a593Smuzhiyun /*
2477*4882a593Smuzhiyun * If no reshape in progress -> we're recovering single
2478*4882a593Smuzhiyun * disk(s) and have to set the device(s) to out-of-sync
2479*4882a593Smuzhiyun */
2480*4882a593Smuzhiyun else if (!rs_is_reshaping(rs))
2481*4882a593Smuzhiyun clear_bit(In_sync, &rdev->flags); /* Mandatory for recovery */
2482*4882a593Smuzhiyun }
2483*4882a593Smuzhiyun
2484*4882a593Smuzhiyun /*
2485*4882a593Smuzhiyun * If a device comes back, set it as not In_sync and no longer faulty.
2486*4882a593Smuzhiyun */
2487*4882a593Smuzhiyun if (test_and_clear_bit(Faulty, &rdev->flags)) {
2488*4882a593Smuzhiyun rdev->recovery_offset = 0;
2489*4882a593Smuzhiyun clear_bit(In_sync, &rdev->flags);
2490*4882a593Smuzhiyun rdev->saved_raid_disk = rdev->raid_disk;
2491*4882a593Smuzhiyun }
2492*4882a593Smuzhiyun
2493*4882a593Smuzhiyun /* Reshape support -> restore repective data offsets */
2494*4882a593Smuzhiyun rdev->data_offset = le64_to_cpu(sb->data_offset);
2495*4882a593Smuzhiyun rdev->new_data_offset = le64_to_cpu(sb->new_data_offset);
2496*4882a593Smuzhiyun
2497*4882a593Smuzhiyun return 0;
2498*4882a593Smuzhiyun }
2499*4882a593Smuzhiyun
2500*4882a593Smuzhiyun /*
2501*4882a593Smuzhiyun * Analyse superblocks and select the freshest.
2502*4882a593Smuzhiyun */
analyse_superblocks(struct dm_target * ti,struct raid_set * rs)2503*4882a593Smuzhiyun static int analyse_superblocks(struct dm_target *ti, struct raid_set *rs)
2504*4882a593Smuzhiyun {
2505*4882a593Smuzhiyun int r;
2506*4882a593Smuzhiyun struct md_rdev *rdev, *freshest;
2507*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
2508*4882a593Smuzhiyun
2509*4882a593Smuzhiyun freshest = NULL;
2510*4882a593Smuzhiyun rdev_for_each(rdev, mddev) {
2511*4882a593Smuzhiyun if (test_bit(Journal, &rdev->flags))
2512*4882a593Smuzhiyun continue;
2513*4882a593Smuzhiyun
2514*4882a593Smuzhiyun if (!rdev->meta_bdev)
2515*4882a593Smuzhiyun continue;
2516*4882a593Smuzhiyun
2517*4882a593Smuzhiyun /* Set superblock offset/size for metadata device. */
2518*4882a593Smuzhiyun rdev->sb_start = 0;
2519*4882a593Smuzhiyun rdev->sb_size = bdev_logical_block_size(rdev->meta_bdev);
2520*4882a593Smuzhiyun if (rdev->sb_size < sizeof(struct dm_raid_superblock) || rdev->sb_size > PAGE_SIZE) {
2521*4882a593Smuzhiyun DMERR("superblock size of a logical block is no longer valid");
2522*4882a593Smuzhiyun return -EINVAL;
2523*4882a593Smuzhiyun }
2524*4882a593Smuzhiyun
2525*4882a593Smuzhiyun /*
2526*4882a593Smuzhiyun * Skipping super_load due to CTR_FLAG_SYNC will cause
2527*4882a593Smuzhiyun * the array to undergo initialization again as
2528*4882a593Smuzhiyun * though it were new. This is the intended effect
2529*4882a593Smuzhiyun * of the "sync" directive.
2530*4882a593Smuzhiyun *
2531*4882a593Smuzhiyun * With reshaping capability added, we must ensure that
2532*4882a593Smuzhiyun * that the "sync" directive is disallowed during the reshape.
2533*4882a593Smuzhiyun */
2534*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_SYNC, &rs->ctr_flags))
2535*4882a593Smuzhiyun continue;
2536*4882a593Smuzhiyun
2537*4882a593Smuzhiyun r = super_load(rdev, freshest);
2538*4882a593Smuzhiyun
2539*4882a593Smuzhiyun switch (r) {
2540*4882a593Smuzhiyun case 1:
2541*4882a593Smuzhiyun freshest = rdev;
2542*4882a593Smuzhiyun break;
2543*4882a593Smuzhiyun case 0:
2544*4882a593Smuzhiyun break;
2545*4882a593Smuzhiyun default:
2546*4882a593Smuzhiyun /* This is a failure to read the superblock from the metadata device. */
2547*4882a593Smuzhiyun /*
2548*4882a593Smuzhiyun * We have to keep any raid0 data/metadata device pairs or
2549*4882a593Smuzhiyun * the MD raid0 personality will fail to start the array.
2550*4882a593Smuzhiyun */
2551*4882a593Smuzhiyun if (rs_is_raid0(rs))
2552*4882a593Smuzhiyun continue;
2553*4882a593Smuzhiyun
2554*4882a593Smuzhiyun /*
2555*4882a593Smuzhiyun * We keep the dm_devs to be able to emit the device tuple
2556*4882a593Smuzhiyun * properly on the table line in raid_status() (rather than
2557*4882a593Smuzhiyun * mistakenly acting as if '- -' got passed into the constructor).
2558*4882a593Smuzhiyun *
2559*4882a593Smuzhiyun * The rdev has to stay on the same_set list to allow for
2560*4882a593Smuzhiyun * the attempt to restore faulty devices on second resume.
2561*4882a593Smuzhiyun */
2562*4882a593Smuzhiyun rdev->raid_disk = rdev->saved_raid_disk = -1;
2563*4882a593Smuzhiyun break;
2564*4882a593Smuzhiyun }
2565*4882a593Smuzhiyun }
2566*4882a593Smuzhiyun
2567*4882a593Smuzhiyun if (!freshest)
2568*4882a593Smuzhiyun return 0;
2569*4882a593Smuzhiyun
2570*4882a593Smuzhiyun /*
2571*4882a593Smuzhiyun * Validation of the freshest device provides the source of
2572*4882a593Smuzhiyun * validation for the remaining devices.
2573*4882a593Smuzhiyun */
2574*4882a593Smuzhiyun rs->ti->error = "Unable to assemble array: Invalid superblocks";
2575*4882a593Smuzhiyun if (super_validate(rs, freshest))
2576*4882a593Smuzhiyun return -EINVAL;
2577*4882a593Smuzhiyun
2578*4882a593Smuzhiyun if (validate_raid_redundancy(rs)) {
2579*4882a593Smuzhiyun rs->ti->error = "Insufficient redundancy to activate array";
2580*4882a593Smuzhiyun return -EINVAL;
2581*4882a593Smuzhiyun }
2582*4882a593Smuzhiyun
2583*4882a593Smuzhiyun rdev_for_each(rdev, mddev)
2584*4882a593Smuzhiyun if (!test_bit(Journal, &rdev->flags) &&
2585*4882a593Smuzhiyun rdev != freshest &&
2586*4882a593Smuzhiyun super_validate(rs, rdev))
2587*4882a593Smuzhiyun return -EINVAL;
2588*4882a593Smuzhiyun return 0;
2589*4882a593Smuzhiyun }
2590*4882a593Smuzhiyun
2591*4882a593Smuzhiyun /*
2592*4882a593Smuzhiyun * Adjust data_offset and new_data_offset on all disk members of @rs
2593*4882a593Smuzhiyun * for out of place reshaping if requested by contructor
2594*4882a593Smuzhiyun *
2595*4882a593Smuzhiyun * We need free space at the beginning of each raid disk for forward
2596*4882a593Smuzhiyun * and at the end for backward reshapes which userspace has to provide
2597*4882a593Smuzhiyun * via remapping/reordering of space.
2598*4882a593Smuzhiyun */
rs_adjust_data_offsets(struct raid_set * rs)2599*4882a593Smuzhiyun static int rs_adjust_data_offsets(struct raid_set *rs)
2600*4882a593Smuzhiyun {
2601*4882a593Smuzhiyun sector_t data_offset = 0, new_data_offset = 0;
2602*4882a593Smuzhiyun struct md_rdev *rdev;
2603*4882a593Smuzhiyun
2604*4882a593Smuzhiyun /* Constructor did not request data offset change */
2605*4882a593Smuzhiyun if (!test_bit(__CTR_FLAG_DATA_OFFSET, &rs->ctr_flags)) {
2606*4882a593Smuzhiyun if (!rs_is_reshapable(rs))
2607*4882a593Smuzhiyun goto out;
2608*4882a593Smuzhiyun
2609*4882a593Smuzhiyun return 0;
2610*4882a593Smuzhiyun }
2611*4882a593Smuzhiyun
2612*4882a593Smuzhiyun /* HM FIXME: get In_Sync raid_dev? */
2613*4882a593Smuzhiyun rdev = &rs->dev[0].rdev;
2614*4882a593Smuzhiyun
2615*4882a593Smuzhiyun if (rs->delta_disks < 0) {
2616*4882a593Smuzhiyun /*
2617*4882a593Smuzhiyun * Removing disks (reshaping backwards):
2618*4882a593Smuzhiyun *
2619*4882a593Smuzhiyun * - before reshape: data is at offset 0 and free space
2620*4882a593Smuzhiyun * is at end of each component LV
2621*4882a593Smuzhiyun *
2622*4882a593Smuzhiyun * - after reshape: data is at offset rs->data_offset != 0 on each component LV
2623*4882a593Smuzhiyun */
2624*4882a593Smuzhiyun data_offset = 0;
2625*4882a593Smuzhiyun new_data_offset = rs->data_offset;
2626*4882a593Smuzhiyun
2627*4882a593Smuzhiyun } else if (rs->delta_disks > 0) {
2628*4882a593Smuzhiyun /*
2629*4882a593Smuzhiyun * Adding disks (reshaping forwards):
2630*4882a593Smuzhiyun *
2631*4882a593Smuzhiyun * - before reshape: data is at offset rs->data_offset != 0 and
2632*4882a593Smuzhiyun * free space is at begin of each component LV
2633*4882a593Smuzhiyun *
2634*4882a593Smuzhiyun * - after reshape: data is at offset 0 on each component LV
2635*4882a593Smuzhiyun */
2636*4882a593Smuzhiyun data_offset = rs->data_offset;
2637*4882a593Smuzhiyun new_data_offset = 0;
2638*4882a593Smuzhiyun
2639*4882a593Smuzhiyun } else {
2640*4882a593Smuzhiyun /*
2641*4882a593Smuzhiyun * User space passes in 0 for data offset after having removed reshape space
2642*4882a593Smuzhiyun *
2643*4882a593Smuzhiyun * - or - (data offset != 0)
2644*4882a593Smuzhiyun *
2645*4882a593Smuzhiyun * Changing RAID layout or chunk size -> toggle offsets
2646*4882a593Smuzhiyun *
2647*4882a593Smuzhiyun * - before reshape: data is at offset rs->data_offset 0 and
2648*4882a593Smuzhiyun * free space is at end of each component LV
2649*4882a593Smuzhiyun * -or-
2650*4882a593Smuzhiyun * data is at offset rs->data_offset != 0 and
2651*4882a593Smuzhiyun * free space is at begin of each component LV
2652*4882a593Smuzhiyun *
2653*4882a593Smuzhiyun * - after reshape: data is at offset 0 if it was at offset != 0
2654*4882a593Smuzhiyun * or at offset != 0 if it was at offset 0
2655*4882a593Smuzhiyun * on each component LV
2656*4882a593Smuzhiyun *
2657*4882a593Smuzhiyun */
2658*4882a593Smuzhiyun data_offset = rs->data_offset ? rdev->data_offset : 0;
2659*4882a593Smuzhiyun new_data_offset = data_offset ? 0 : rs->data_offset;
2660*4882a593Smuzhiyun set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags);
2661*4882a593Smuzhiyun }
2662*4882a593Smuzhiyun
2663*4882a593Smuzhiyun /*
2664*4882a593Smuzhiyun * Make sure we got a minimum amount of free sectors per device
2665*4882a593Smuzhiyun */
2666*4882a593Smuzhiyun if (rs->data_offset &&
2667*4882a593Smuzhiyun to_sector(i_size_read(rdev->bdev->bd_inode)) - rs->md.dev_sectors < MIN_FREE_RESHAPE_SPACE) {
2668*4882a593Smuzhiyun rs->ti->error = data_offset ? "No space for forward reshape" :
2669*4882a593Smuzhiyun "No space for backward reshape";
2670*4882a593Smuzhiyun return -ENOSPC;
2671*4882a593Smuzhiyun }
2672*4882a593Smuzhiyun out:
2673*4882a593Smuzhiyun /*
2674*4882a593Smuzhiyun * Raise recovery_cp in case data_offset != 0 to
2675*4882a593Smuzhiyun * avoid false recovery positives in the constructor.
2676*4882a593Smuzhiyun */
2677*4882a593Smuzhiyun if (rs->md.recovery_cp < rs->md.dev_sectors)
2678*4882a593Smuzhiyun rs->md.recovery_cp += rs->dev[0].rdev.data_offset;
2679*4882a593Smuzhiyun
2680*4882a593Smuzhiyun /* Adjust data offsets on all rdevs but on any raid4/5/6 journal device */
2681*4882a593Smuzhiyun rdev_for_each(rdev, &rs->md) {
2682*4882a593Smuzhiyun if (!test_bit(Journal, &rdev->flags)) {
2683*4882a593Smuzhiyun rdev->data_offset = data_offset;
2684*4882a593Smuzhiyun rdev->new_data_offset = new_data_offset;
2685*4882a593Smuzhiyun }
2686*4882a593Smuzhiyun }
2687*4882a593Smuzhiyun
2688*4882a593Smuzhiyun return 0;
2689*4882a593Smuzhiyun }
2690*4882a593Smuzhiyun
2691*4882a593Smuzhiyun /* Userpace reordered disks -> adjust raid_disk indexes in @rs */
__reorder_raid_disk_indexes(struct raid_set * rs)2692*4882a593Smuzhiyun static void __reorder_raid_disk_indexes(struct raid_set *rs)
2693*4882a593Smuzhiyun {
2694*4882a593Smuzhiyun int i = 0;
2695*4882a593Smuzhiyun struct md_rdev *rdev;
2696*4882a593Smuzhiyun
2697*4882a593Smuzhiyun rdev_for_each(rdev, &rs->md) {
2698*4882a593Smuzhiyun if (!test_bit(Journal, &rdev->flags)) {
2699*4882a593Smuzhiyun rdev->raid_disk = i++;
2700*4882a593Smuzhiyun rdev->saved_raid_disk = rdev->new_raid_disk = -1;
2701*4882a593Smuzhiyun }
2702*4882a593Smuzhiyun }
2703*4882a593Smuzhiyun }
2704*4882a593Smuzhiyun
2705*4882a593Smuzhiyun /*
2706*4882a593Smuzhiyun * Setup @rs for takeover by a different raid level
2707*4882a593Smuzhiyun */
rs_setup_takeover(struct raid_set * rs)2708*4882a593Smuzhiyun static int rs_setup_takeover(struct raid_set *rs)
2709*4882a593Smuzhiyun {
2710*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
2711*4882a593Smuzhiyun struct md_rdev *rdev;
2712*4882a593Smuzhiyun unsigned int d = mddev->raid_disks = rs->raid_disks;
2713*4882a593Smuzhiyun sector_t new_data_offset = rs->dev[0].rdev.data_offset ? 0 : rs->data_offset;
2714*4882a593Smuzhiyun
2715*4882a593Smuzhiyun if (rt_is_raid10(rs->raid_type)) {
2716*4882a593Smuzhiyun if (rs_is_raid0(rs)) {
2717*4882a593Smuzhiyun /* Userpace reordered disks -> adjust raid_disk indexes */
2718*4882a593Smuzhiyun __reorder_raid_disk_indexes(rs);
2719*4882a593Smuzhiyun
2720*4882a593Smuzhiyun /* raid0 -> raid10_far layout */
2721*4882a593Smuzhiyun mddev->layout = raid10_format_to_md_layout(rs, ALGORITHM_RAID10_FAR,
2722*4882a593Smuzhiyun rs->raid10_copies);
2723*4882a593Smuzhiyun } else if (rs_is_raid1(rs))
2724*4882a593Smuzhiyun /* raid1 -> raid10_near layout */
2725*4882a593Smuzhiyun mddev->layout = raid10_format_to_md_layout(rs, ALGORITHM_RAID10_NEAR,
2726*4882a593Smuzhiyun rs->raid_disks);
2727*4882a593Smuzhiyun else
2728*4882a593Smuzhiyun return -EINVAL;
2729*4882a593Smuzhiyun
2730*4882a593Smuzhiyun }
2731*4882a593Smuzhiyun
2732*4882a593Smuzhiyun clear_bit(MD_ARRAY_FIRST_USE, &mddev->flags);
2733*4882a593Smuzhiyun mddev->recovery_cp = MaxSector;
2734*4882a593Smuzhiyun
2735*4882a593Smuzhiyun while (d--) {
2736*4882a593Smuzhiyun rdev = &rs->dev[d].rdev;
2737*4882a593Smuzhiyun
2738*4882a593Smuzhiyun if (test_bit(d, (void *) rs->rebuild_disks)) {
2739*4882a593Smuzhiyun clear_bit(In_sync, &rdev->flags);
2740*4882a593Smuzhiyun clear_bit(Faulty, &rdev->flags);
2741*4882a593Smuzhiyun mddev->recovery_cp = rdev->recovery_offset = 0;
2742*4882a593Smuzhiyun /* Bitmap has to be created when we do an "up" takeover */
2743*4882a593Smuzhiyun set_bit(MD_ARRAY_FIRST_USE, &mddev->flags);
2744*4882a593Smuzhiyun }
2745*4882a593Smuzhiyun
2746*4882a593Smuzhiyun rdev->new_data_offset = new_data_offset;
2747*4882a593Smuzhiyun }
2748*4882a593Smuzhiyun
2749*4882a593Smuzhiyun return 0;
2750*4882a593Smuzhiyun }
2751*4882a593Smuzhiyun
2752*4882a593Smuzhiyun /* Prepare @rs for reshape */
rs_prepare_reshape(struct raid_set * rs)2753*4882a593Smuzhiyun static int rs_prepare_reshape(struct raid_set *rs)
2754*4882a593Smuzhiyun {
2755*4882a593Smuzhiyun bool reshape;
2756*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
2757*4882a593Smuzhiyun
2758*4882a593Smuzhiyun if (rs_is_raid10(rs)) {
2759*4882a593Smuzhiyun if (rs->raid_disks != mddev->raid_disks &&
2760*4882a593Smuzhiyun __is_raid10_near(mddev->layout) &&
2761*4882a593Smuzhiyun rs->raid10_copies &&
2762*4882a593Smuzhiyun rs->raid10_copies != __raid10_near_copies(mddev->layout)) {
2763*4882a593Smuzhiyun /*
2764*4882a593Smuzhiyun * raid disk have to be multiple of data copies to allow this conversion,
2765*4882a593Smuzhiyun *
2766*4882a593Smuzhiyun * This is actually not a reshape it is a
2767*4882a593Smuzhiyun * rebuild of any additional mirrors per group
2768*4882a593Smuzhiyun */
2769*4882a593Smuzhiyun if (rs->raid_disks % rs->raid10_copies) {
2770*4882a593Smuzhiyun rs->ti->error = "Can't reshape raid10 mirror groups";
2771*4882a593Smuzhiyun return -EINVAL;
2772*4882a593Smuzhiyun }
2773*4882a593Smuzhiyun
2774*4882a593Smuzhiyun /* Userpace reordered disks to add/remove mirrors -> adjust raid_disk indexes */
2775*4882a593Smuzhiyun __reorder_raid_disk_indexes(rs);
2776*4882a593Smuzhiyun mddev->layout = raid10_format_to_md_layout(rs, ALGORITHM_RAID10_NEAR,
2777*4882a593Smuzhiyun rs->raid10_copies);
2778*4882a593Smuzhiyun mddev->new_layout = mddev->layout;
2779*4882a593Smuzhiyun reshape = false;
2780*4882a593Smuzhiyun } else
2781*4882a593Smuzhiyun reshape = true;
2782*4882a593Smuzhiyun
2783*4882a593Smuzhiyun } else if (rs_is_raid456(rs))
2784*4882a593Smuzhiyun reshape = true;
2785*4882a593Smuzhiyun
2786*4882a593Smuzhiyun else if (rs_is_raid1(rs)) {
2787*4882a593Smuzhiyun if (rs->delta_disks) {
2788*4882a593Smuzhiyun /* Process raid1 via delta_disks */
2789*4882a593Smuzhiyun mddev->degraded = rs->delta_disks < 0 ? -rs->delta_disks : rs->delta_disks;
2790*4882a593Smuzhiyun reshape = true;
2791*4882a593Smuzhiyun } else {
2792*4882a593Smuzhiyun /* Process raid1 without delta_disks */
2793*4882a593Smuzhiyun mddev->raid_disks = rs->raid_disks;
2794*4882a593Smuzhiyun reshape = false;
2795*4882a593Smuzhiyun }
2796*4882a593Smuzhiyun } else {
2797*4882a593Smuzhiyun rs->ti->error = "Called with bogus raid type";
2798*4882a593Smuzhiyun return -EINVAL;
2799*4882a593Smuzhiyun }
2800*4882a593Smuzhiyun
2801*4882a593Smuzhiyun if (reshape) {
2802*4882a593Smuzhiyun set_bit(RT_FLAG_RESHAPE_RS, &rs->runtime_flags);
2803*4882a593Smuzhiyun set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags);
2804*4882a593Smuzhiyun } else if (mddev->raid_disks < rs->raid_disks)
2805*4882a593Smuzhiyun /* Create new superblocks and bitmaps, if any new disks */
2806*4882a593Smuzhiyun set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags);
2807*4882a593Smuzhiyun
2808*4882a593Smuzhiyun return 0;
2809*4882a593Smuzhiyun }
2810*4882a593Smuzhiyun
2811*4882a593Smuzhiyun /* Get reshape sectors from data_offsets or raid set */
_get_reshape_sectors(struct raid_set * rs)2812*4882a593Smuzhiyun static sector_t _get_reshape_sectors(struct raid_set *rs)
2813*4882a593Smuzhiyun {
2814*4882a593Smuzhiyun struct md_rdev *rdev;
2815*4882a593Smuzhiyun sector_t reshape_sectors = 0;
2816*4882a593Smuzhiyun
2817*4882a593Smuzhiyun rdev_for_each(rdev, &rs->md)
2818*4882a593Smuzhiyun if (!test_bit(Journal, &rdev->flags)) {
2819*4882a593Smuzhiyun reshape_sectors = (rdev->data_offset > rdev->new_data_offset) ?
2820*4882a593Smuzhiyun rdev->data_offset - rdev->new_data_offset :
2821*4882a593Smuzhiyun rdev->new_data_offset - rdev->data_offset;
2822*4882a593Smuzhiyun break;
2823*4882a593Smuzhiyun }
2824*4882a593Smuzhiyun
2825*4882a593Smuzhiyun return max(reshape_sectors, (sector_t) rs->data_offset);
2826*4882a593Smuzhiyun }
2827*4882a593Smuzhiyun
2828*4882a593Smuzhiyun /*
2829*4882a593Smuzhiyun * Reshape:
2830*4882a593Smuzhiyun * - change raid layout
2831*4882a593Smuzhiyun * - change chunk size
2832*4882a593Smuzhiyun * - add disks
2833*4882a593Smuzhiyun * - remove disks
2834*4882a593Smuzhiyun */
rs_setup_reshape(struct raid_set * rs)2835*4882a593Smuzhiyun static int rs_setup_reshape(struct raid_set *rs)
2836*4882a593Smuzhiyun {
2837*4882a593Smuzhiyun int r = 0;
2838*4882a593Smuzhiyun unsigned int cur_raid_devs, d;
2839*4882a593Smuzhiyun sector_t reshape_sectors = _get_reshape_sectors(rs);
2840*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
2841*4882a593Smuzhiyun struct md_rdev *rdev;
2842*4882a593Smuzhiyun
2843*4882a593Smuzhiyun mddev->delta_disks = rs->delta_disks;
2844*4882a593Smuzhiyun cur_raid_devs = mddev->raid_disks;
2845*4882a593Smuzhiyun
2846*4882a593Smuzhiyun /* Ignore impossible layout change whilst adding/removing disks */
2847*4882a593Smuzhiyun if (mddev->delta_disks &&
2848*4882a593Smuzhiyun mddev->layout != mddev->new_layout) {
2849*4882a593Smuzhiyun DMINFO("Ignoring invalid layout change with delta_disks=%d", rs->delta_disks);
2850*4882a593Smuzhiyun mddev->new_layout = mddev->layout;
2851*4882a593Smuzhiyun }
2852*4882a593Smuzhiyun
2853*4882a593Smuzhiyun /*
2854*4882a593Smuzhiyun * Adjust array size:
2855*4882a593Smuzhiyun *
2856*4882a593Smuzhiyun * - in case of adding disk(s), array size has
2857*4882a593Smuzhiyun * to grow after the disk adding reshape,
2858*4882a593Smuzhiyun * which'll hapen in the event handler;
2859*4882a593Smuzhiyun * reshape will happen forward, so space has to
2860*4882a593Smuzhiyun * be available at the beginning of each disk
2861*4882a593Smuzhiyun *
2862*4882a593Smuzhiyun * - in case of removing disk(s), array size
2863*4882a593Smuzhiyun * has to shrink before starting the reshape,
2864*4882a593Smuzhiyun * which'll happen here;
2865*4882a593Smuzhiyun * reshape will happen backward, so space has to
2866*4882a593Smuzhiyun * be available at the end of each disk
2867*4882a593Smuzhiyun *
2868*4882a593Smuzhiyun * - data_offset and new_data_offset are
2869*4882a593Smuzhiyun * adjusted for aforementioned out of place
2870*4882a593Smuzhiyun * reshaping based on userspace passing in
2871*4882a593Smuzhiyun * the "data_offset <sectors>" key/value
2872*4882a593Smuzhiyun * pair via the constructor
2873*4882a593Smuzhiyun */
2874*4882a593Smuzhiyun
2875*4882a593Smuzhiyun /* Add disk(s) */
2876*4882a593Smuzhiyun if (rs->delta_disks > 0) {
2877*4882a593Smuzhiyun /* Prepare disks for check in raid4/5/6/10 {check|start}_reshape */
2878*4882a593Smuzhiyun for (d = cur_raid_devs; d < rs->raid_disks; d++) {
2879*4882a593Smuzhiyun rdev = &rs->dev[d].rdev;
2880*4882a593Smuzhiyun clear_bit(In_sync, &rdev->flags);
2881*4882a593Smuzhiyun
2882*4882a593Smuzhiyun /*
2883*4882a593Smuzhiyun * save_raid_disk needs to be -1, or recovery_offset will be set to 0
2884*4882a593Smuzhiyun * by md, which'll store that erroneously in the superblock on reshape
2885*4882a593Smuzhiyun */
2886*4882a593Smuzhiyun rdev->saved_raid_disk = -1;
2887*4882a593Smuzhiyun rdev->raid_disk = d;
2888*4882a593Smuzhiyun
2889*4882a593Smuzhiyun rdev->sectors = mddev->dev_sectors;
2890*4882a593Smuzhiyun rdev->recovery_offset = rs_is_raid1(rs) ? 0 : MaxSector;
2891*4882a593Smuzhiyun }
2892*4882a593Smuzhiyun
2893*4882a593Smuzhiyun mddev->reshape_backwards = 0; /* adding disk(s) -> forward reshape */
2894*4882a593Smuzhiyun
2895*4882a593Smuzhiyun /* Remove disk(s) */
2896*4882a593Smuzhiyun } else if (rs->delta_disks < 0) {
2897*4882a593Smuzhiyun r = rs_set_dev_and_array_sectors(rs, rs->ti->len, true);
2898*4882a593Smuzhiyun mddev->reshape_backwards = 1; /* removing disk(s) -> backward reshape */
2899*4882a593Smuzhiyun
2900*4882a593Smuzhiyun /* Change layout and/or chunk size */
2901*4882a593Smuzhiyun } else {
2902*4882a593Smuzhiyun /*
2903*4882a593Smuzhiyun * Reshape layout (e.g. raid5_ls -> raid5_n) and/or chunk size:
2904*4882a593Smuzhiyun *
2905*4882a593Smuzhiyun * keeping number of disks and do layout change ->
2906*4882a593Smuzhiyun *
2907*4882a593Smuzhiyun * toggle reshape_backward depending on data_offset:
2908*4882a593Smuzhiyun *
2909*4882a593Smuzhiyun * - free space upfront -> reshape forward
2910*4882a593Smuzhiyun *
2911*4882a593Smuzhiyun * - free space at the end -> reshape backward
2912*4882a593Smuzhiyun *
2913*4882a593Smuzhiyun *
2914*4882a593Smuzhiyun * This utilizes free reshape space avoiding the need
2915*4882a593Smuzhiyun * for userspace to move (parts of) LV segments in
2916*4882a593Smuzhiyun * case of layout/chunksize change (for disk
2917*4882a593Smuzhiyun * adding/removing reshape space has to be at
2918*4882a593Smuzhiyun * the proper address (see above with delta_disks):
2919*4882a593Smuzhiyun *
2920*4882a593Smuzhiyun * add disk(s) -> begin
2921*4882a593Smuzhiyun * remove disk(s)-> end
2922*4882a593Smuzhiyun */
2923*4882a593Smuzhiyun mddev->reshape_backwards = rs->dev[0].rdev.data_offset ? 0 : 1;
2924*4882a593Smuzhiyun }
2925*4882a593Smuzhiyun
2926*4882a593Smuzhiyun /*
2927*4882a593Smuzhiyun * Adjust device size for forward reshape
2928*4882a593Smuzhiyun * because md_finish_reshape() reduces it.
2929*4882a593Smuzhiyun */
2930*4882a593Smuzhiyun if (!mddev->reshape_backwards)
2931*4882a593Smuzhiyun rdev_for_each(rdev, &rs->md)
2932*4882a593Smuzhiyun if (!test_bit(Journal, &rdev->flags))
2933*4882a593Smuzhiyun rdev->sectors += reshape_sectors;
2934*4882a593Smuzhiyun
2935*4882a593Smuzhiyun return r;
2936*4882a593Smuzhiyun }
2937*4882a593Smuzhiyun
2938*4882a593Smuzhiyun /*
2939*4882a593Smuzhiyun * If the md resync thread has updated superblock with max reshape position
2940*4882a593Smuzhiyun * at the end of a reshape but not (yet) reset the layout configuration
2941*4882a593Smuzhiyun * changes -> reset the latter.
2942*4882a593Smuzhiyun */
rs_reset_inconclusive_reshape(struct raid_set * rs)2943*4882a593Smuzhiyun static void rs_reset_inconclusive_reshape(struct raid_set *rs)
2944*4882a593Smuzhiyun {
2945*4882a593Smuzhiyun if (!rs_is_reshaping(rs) && rs_is_layout_change(rs, true)) {
2946*4882a593Smuzhiyun rs_set_cur(rs);
2947*4882a593Smuzhiyun rs->md.delta_disks = 0;
2948*4882a593Smuzhiyun rs->md.reshape_backwards = 0;
2949*4882a593Smuzhiyun }
2950*4882a593Smuzhiyun }
2951*4882a593Smuzhiyun
2952*4882a593Smuzhiyun /*
2953*4882a593Smuzhiyun * Enable/disable discard support on RAID set depending on
2954*4882a593Smuzhiyun * RAID level and discard properties of underlying RAID members.
2955*4882a593Smuzhiyun */
configure_discard_support(struct raid_set * rs)2956*4882a593Smuzhiyun static void configure_discard_support(struct raid_set *rs)
2957*4882a593Smuzhiyun {
2958*4882a593Smuzhiyun int i;
2959*4882a593Smuzhiyun bool raid456;
2960*4882a593Smuzhiyun struct dm_target *ti = rs->ti;
2961*4882a593Smuzhiyun
2962*4882a593Smuzhiyun /*
2963*4882a593Smuzhiyun * XXX: RAID level 4,5,6 require zeroing for safety.
2964*4882a593Smuzhiyun */
2965*4882a593Smuzhiyun raid456 = rs_is_raid456(rs);
2966*4882a593Smuzhiyun
2967*4882a593Smuzhiyun for (i = 0; i < rs->raid_disks; i++) {
2968*4882a593Smuzhiyun struct request_queue *q;
2969*4882a593Smuzhiyun
2970*4882a593Smuzhiyun if (!rs->dev[i].rdev.bdev)
2971*4882a593Smuzhiyun continue;
2972*4882a593Smuzhiyun
2973*4882a593Smuzhiyun q = bdev_get_queue(rs->dev[i].rdev.bdev);
2974*4882a593Smuzhiyun if (!q || !blk_queue_discard(q))
2975*4882a593Smuzhiyun return;
2976*4882a593Smuzhiyun
2977*4882a593Smuzhiyun if (raid456) {
2978*4882a593Smuzhiyun if (!devices_handle_discard_safely) {
2979*4882a593Smuzhiyun DMERR("raid456 discard support disabled due to discard_zeroes_data uncertainty.");
2980*4882a593Smuzhiyun DMERR("Set dm-raid.devices_handle_discard_safely=Y to override.");
2981*4882a593Smuzhiyun return;
2982*4882a593Smuzhiyun }
2983*4882a593Smuzhiyun }
2984*4882a593Smuzhiyun }
2985*4882a593Smuzhiyun
2986*4882a593Smuzhiyun ti->num_discard_bios = 1;
2987*4882a593Smuzhiyun }
2988*4882a593Smuzhiyun
2989*4882a593Smuzhiyun /*
2990*4882a593Smuzhiyun * Construct a RAID0/1/10/4/5/6 mapping:
2991*4882a593Smuzhiyun * Args:
2992*4882a593Smuzhiyun * <raid_type> <#raid_params> <raid_params>{0,} \
2993*4882a593Smuzhiyun * <#raid_devs> [<meta_dev1> <dev1>]{1,}
2994*4882a593Smuzhiyun *
2995*4882a593Smuzhiyun * <raid_params> varies by <raid_type>. See 'parse_raid_params' for
2996*4882a593Smuzhiyun * details on possible <raid_params>.
2997*4882a593Smuzhiyun *
2998*4882a593Smuzhiyun * Userspace is free to initialize the metadata devices, hence the superblocks to
2999*4882a593Smuzhiyun * enforce recreation based on the passed in table parameters.
3000*4882a593Smuzhiyun *
3001*4882a593Smuzhiyun */
raid_ctr(struct dm_target * ti,unsigned int argc,char ** argv)3002*4882a593Smuzhiyun static int raid_ctr(struct dm_target *ti, unsigned int argc, char **argv)
3003*4882a593Smuzhiyun {
3004*4882a593Smuzhiyun int r;
3005*4882a593Smuzhiyun bool resize = false;
3006*4882a593Smuzhiyun struct raid_type *rt;
3007*4882a593Smuzhiyun unsigned int num_raid_params, num_raid_devs;
3008*4882a593Smuzhiyun sector_t sb_array_sectors, rdev_sectors, reshape_sectors;
3009*4882a593Smuzhiyun struct raid_set *rs = NULL;
3010*4882a593Smuzhiyun const char *arg;
3011*4882a593Smuzhiyun struct rs_layout rs_layout;
3012*4882a593Smuzhiyun struct dm_arg_set as = { argc, argv }, as_nrd;
3013*4882a593Smuzhiyun struct dm_arg _args[] = {
3014*4882a593Smuzhiyun { 0, as.argc, "Cannot understand number of raid parameters" },
3015*4882a593Smuzhiyun { 1, 254, "Cannot understand number of raid devices parameters" }
3016*4882a593Smuzhiyun };
3017*4882a593Smuzhiyun
3018*4882a593Smuzhiyun arg = dm_shift_arg(&as);
3019*4882a593Smuzhiyun if (!arg) {
3020*4882a593Smuzhiyun ti->error = "No arguments";
3021*4882a593Smuzhiyun return -EINVAL;
3022*4882a593Smuzhiyun }
3023*4882a593Smuzhiyun
3024*4882a593Smuzhiyun rt = get_raid_type(arg);
3025*4882a593Smuzhiyun if (!rt) {
3026*4882a593Smuzhiyun ti->error = "Unrecognised raid_type";
3027*4882a593Smuzhiyun return -EINVAL;
3028*4882a593Smuzhiyun }
3029*4882a593Smuzhiyun
3030*4882a593Smuzhiyun /* Must have <#raid_params> */
3031*4882a593Smuzhiyun if (dm_read_arg_group(_args, &as, &num_raid_params, &ti->error))
3032*4882a593Smuzhiyun return -EINVAL;
3033*4882a593Smuzhiyun
3034*4882a593Smuzhiyun /* number of raid device tupples <meta_dev data_dev> */
3035*4882a593Smuzhiyun as_nrd = as;
3036*4882a593Smuzhiyun dm_consume_args(&as_nrd, num_raid_params);
3037*4882a593Smuzhiyun _args[1].max = (as_nrd.argc - 1) / 2;
3038*4882a593Smuzhiyun if (dm_read_arg(_args + 1, &as_nrd, &num_raid_devs, &ti->error))
3039*4882a593Smuzhiyun return -EINVAL;
3040*4882a593Smuzhiyun
3041*4882a593Smuzhiyun if (!__within_range(num_raid_devs, 1, MAX_RAID_DEVICES)) {
3042*4882a593Smuzhiyun ti->error = "Invalid number of supplied raid devices";
3043*4882a593Smuzhiyun return -EINVAL;
3044*4882a593Smuzhiyun }
3045*4882a593Smuzhiyun
3046*4882a593Smuzhiyun rs = raid_set_alloc(ti, rt, num_raid_devs);
3047*4882a593Smuzhiyun if (IS_ERR(rs))
3048*4882a593Smuzhiyun return PTR_ERR(rs);
3049*4882a593Smuzhiyun
3050*4882a593Smuzhiyun r = parse_raid_params(rs, &as, num_raid_params);
3051*4882a593Smuzhiyun if (r)
3052*4882a593Smuzhiyun goto bad;
3053*4882a593Smuzhiyun
3054*4882a593Smuzhiyun r = parse_dev_params(rs, &as);
3055*4882a593Smuzhiyun if (r)
3056*4882a593Smuzhiyun goto bad;
3057*4882a593Smuzhiyun
3058*4882a593Smuzhiyun rs->md.sync_super = super_sync;
3059*4882a593Smuzhiyun
3060*4882a593Smuzhiyun /*
3061*4882a593Smuzhiyun * Calculate ctr requested array and device sizes to allow
3062*4882a593Smuzhiyun * for superblock analysis needing device sizes defined.
3063*4882a593Smuzhiyun *
3064*4882a593Smuzhiyun * Any existing superblock will overwrite the array and device sizes
3065*4882a593Smuzhiyun */
3066*4882a593Smuzhiyun r = rs_set_dev_and_array_sectors(rs, rs->ti->len, false);
3067*4882a593Smuzhiyun if (r)
3068*4882a593Smuzhiyun goto bad;
3069*4882a593Smuzhiyun
3070*4882a593Smuzhiyun /* Memorize just calculated, potentially larger sizes to grow the raid set in preresume */
3071*4882a593Smuzhiyun rs->array_sectors = rs->md.array_sectors;
3072*4882a593Smuzhiyun rs->dev_sectors = rs->md.dev_sectors;
3073*4882a593Smuzhiyun
3074*4882a593Smuzhiyun /*
3075*4882a593Smuzhiyun * Backup any new raid set level, layout, ...
3076*4882a593Smuzhiyun * requested to be able to compare to superblock
3077*4882a593Smuzhiyun * members for conversion decisions.
3078*4882a593Smuzhiyun */
3079*4882a593Smuzhiyun rs_config_backup(rs, &rs_layout);
3080*4882a593Smuzhiyun
3081*4882a593Smuzhiyun r = analyse_superblocks(ti, rs);
3082*4882a593Smuzhiyun if (r)
3083*4882a593Smuzhiyun goto bad;
3084*4882a593Smuzhiyun
3085*4882a593Smuzhiyun /* All in-core metadata now as of current superblocks after calling analyse_superblocks() */
3086*4882a593Smuzhiyun sb_array_sectors = rs->md.array_sectors;
3087*4882a593Smuzhiyun rdev_sectors = __rdev_sectors(rs);
3088*4882a593Smuzhiyun if (!rdev_sectors) {
3089*4882a593Smuzhiyun ti->error = "Invalid rdev size";
3090*4882a593Smuzhiyun r = -EINVAL;
3091*4882a593Smuzhiyun goto bad;
3092*4882a593Smuzhiyun }
3093*4882a593Smuzhiyun
3094*4882a593Smuzhiyun
3095*4882a593Smuzhiyun reshape_sectors = _get_reshape_sectors(rs);
3096*4882a593Smuzhiyun if (rs->dev_sectors != rdev_sectors) {
3097*4882a593Smuzhiyun resize = (rs->dev_sectors != rdev_sectors - reshape_sectors);
3098*4882a593Smuzhiyun if (rs->dev_sectors > rdev_sectors - reshape_sectors)
3099*4882a593Smuzhiyun set_bit(RT_FLAG_RS_GROW, &rs->runtime_flags);
3100*4882a593Smuzhiyun }
3101*4882a593Smuzhiyun
3102*4882a593Smuzhiyun INIT_WORK(&rs->md.event_work, do_table_event);
3103*4882a593Smuzhiyun ti->private = rs;
3104*4882a593Smuzhiyun ti->num_flush_bios = 1;
3105*4882a593Smuzhiyun
3106*4882a593Smuzhiyun /* Restore any requested new layout for conversion decision */
3107*4882a593Smuzhiyun rs_config_restore(rs, &rs_layout);
3108*4882a593Smuzhiyun
3109*4882a593Smuzhiyun /*
3110*4882a593Smuzhiyun * Now that we have any superblock metadata available,
3111*4882a593Smuzhiyun * check for new, recovering, reshaping, to be taken over,
3112*4882a593Smuzhiyun * to be reshaped or an existing, unchanged raid set to
3113*4882a593Smuzhiyun * run in sequence.
3114*4882a593Smuzhiyun */
3115*4882a593Smuzhiyun if (test_bit(MD_ARRAY_FIRST_USE, &rs->md.flags)) {
3116*4882a593Smuzhiyun /* A new raid6 set has to be recovered to ensure proper parity and Q-Syndrome */
3117*4882a593Smuzhiyun if (rs_is_raid6(rs) &&
3118*4882a593Smuzhiyun test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags)) {
3119*4882a593Smuzhiyun ti->error = "'nosync' not allowed for new raid6 set";
3120*4882a593Smuzhiyun r = -EINVAL;
3121*4882a593Smuzhiyun goto bad;
3122*4882a593Smuzhiyun }
3123*4882a593Smuzhiyun rs_setup_recovery(rs, 0);
3124*4882a593Smuzhiyun set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags);
3125*4882a593Smuzhiyun rs_set_new(rs);
3126*4882a593Smuzhiyun } else if (rs_is_recovering(rs)) {
3127*4882a593Smuzhiyun /* A recovering raid set may be resized */
3128*4882a593Smuzhiyun goto size_check;
3129*4882a593Smuzhiyun } else if (rs_is_reshaping(rs)) {
3130*4882a593Smuzhiyun /* Have to reject size change request during reshape */
3131*4882a593Smuzhiyun if (resize) {
3132*4882a593Smuzhiyun ti->error = "Can't resize a reshaping raid set";
3133*4882a593Smuzhiyun r = -EPERM;
3134*4882a593Smuzhiyun goto bad;
3135*4882a593Smuzhiyun }
3136*4882a593Smuzhiyun /* skip setup rs */
3137*4882a593Smuzhiyun } else if (rs_takeover_requested(rs)) {
3138*4882a593Smuzhiyun if (rs_is_reshaping(rs)) {
3139*4882a593Smuzhiyun ti->error = "Can't takeover a reshaping raid set";
3140*4882a593Smuzhiyun r = -EPERM;
3141*4882a593Smuzhiyun goto bad;
3142*4882a593Smuzhiyun }
3143*4882a593Smuzhiyun
3144*4882a593Smuzhiyun /* We can't takeover a journaled raid4/5/6 */
3145*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags)) {
3146*4882a593Smuzhiyun ti->error = "Can't takeover a journaled raid4/5/6 set";
3147*4882a593Smuzhiyun r = -EPERM;
3148*4882a593Smuzhiyun goto bad;
3149*4882a593Smuzhiyun }
3150*4882a593Smuzhiyun
3151*4882a593Smuzhiyun /*
3152*4882a593Smuzhiyun * If a takeover is needed, userspace sets any additional
3153*4882a593Smuzhiyun * devices to rebuild and we can check for a valid request here.
3154*4882a593Smuzhiyun *
3155*4882a593Smuzhiyun * If acceptible, set the level to the new requested
3156*4882a593Smuzhiyun * one, prohibit requesting recovery, allow the raid
3157*4882a593Smuzhiyun * set to run and store superblocks during resume.
3158*4882a593Smuzhiyun */
3159*4882a593Smuzhiyun r = rs_check_takeover(rs);
3160*4882a593Smuzhiyun if (r)
3161*4882a593Smuzhiyun goto bad;
3162*4882a593Smuzhiyun
3163*4882a593Smuzhiyun r = rs_setup_takeover(rs);
3164*4882a593Smuzhiyun if (r)
3165*4882a593Smuzhiyun goto bad;
3166*4882a593Smuzhiyun
3167*4882a593Smuzhiyun set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags);
3168*4882a593Smuzhiyun /* Takeover ain't recovery, so disable recovery */
3169*4882a593Smuzhiyun rs_setup_recovery(rs, MaxSector);
3170*4882a593Smuzhiyun rs_set_new(rs);
3171*4882a593Smuzhiyun } else if (rs_reshape_requested(rs)) {
3172*4882a593Smuzhiyun /* Only request grow on raid set size extensions, not on reshapes. */
3173*4882a593Smuzhiyun clear_bit(RT_FLAG_RS_GROW, &rs->runtime_flags);
3174*4882a593Smuzhiyun
3175*4882a593Smuzhiyun /*
3176*4882a593Smuzhiyun * No need to check for 'ongoing' takeover here, because takeover
3177*4882a593Smuzhiyun * is an instant operation as oposed to an ongoing reshape.
3178*4882a593Smuzhiyun */
3179*4882a593Smuzhiyun
3180*4882a593Smuzhiyun /* We can't reshape a journaled raid4/5/6 */
3181*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags)) {
3182*4882a593Smuzhiyun ti->error = "Can't reshape a journaled raid4/5/6 set";
3183*4882a593Smuzhiyun r = -EPERM;
3184*4882a593Smuzhiyun goto bad;
3185*4882a593Smuzhiyun }
3186*4882a593Smuzhiyun
3187*4882a593Smuzhiyun /* Out-of-place space has to be available to allow for a reshape unless raid1! */
3188*4882a593Smuzhiyun if (reshape_sectors || rs_is_raid1(rs)) {
3189*4882a593Smuzhiyun /*
3190*4882a593Smuzhiyun * We can only prepare for a reshape here, because the
3191*4882a593Smuzhiyun * raid set needs to run to provide the repective reshape
3192*4882a593Smuzhiyun * check functions via its MD personality instance.
3193*4882a593Smuzhiyun *
3194*4882a593Smuzhiyun * So do the reshape check after md_run() succeeded.
3195*4882a593Smuzhiyun */
3196*4882a593Smuzhiyun r = rs_prepare_reshape(rs);
3197*4882a593Smuzhiyun if (r)
3198*4882a593Smuzhiyun goto bad;
3199*4882a593Smuzhiyun
3200*4882a593Smuzhiyun /* Reshaping ain't recovery, so disable recovery */
3201*4882a593Smuzhiyun rs_setup_recovery(rs, MaxSector);
3202*4882a593Smuzhiyun }
3203*4882a593Smuzhiyun rs_set_cur(rs);
3204*4882a593Smuzhiyun } else {
3205*4882a593Smuzhiyun size_check:
3206*4882a593Smuzhiyun /* May not set recovery when a device rebuild is requested */
3207*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags)) {
3208*4882a593Smuzhiyun clear_bit(RT_FLAG_RS_GROW, &rs->runtime_flags);
3209*4882a593Smuzhiyun set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags);
3210*4882a593Smuzhiyun rs_setup_recovery(rs, MaxSector);
3211*4882a593Smuzhiyun } else if (test_bit(RT_FLAG_RS_GROW, &rs->runtime_flags)) {
3212*4882a593Smuzhiyun /*
3213*4882a593Smuzhiyun * Set raid set to current size, i.e. size as of
3214*4882a593Smuzhiyun * superblocks to grow to larger size in preresume.
3215*4882a593Smuzhiyun */
3216*4882a593Smuzhiyun r = rs_set_dev_and_array_sectors(rs, sb_array_sectors, false);
3217*4882a593Smuzhiyun if (r)
3218*4882a593Smuzhiyun goto bad;
3219*4882a593Smuzhiyun
3220*4882a593Smuzhiyun rs_setup_recovery(rs, rs->md.recovery_cp < rs->md.dev_sectors ? rs->md.recovery_cp : rs->md.dev_sectors);
3221*4882a593Smuzhiyun } else {
3222*4882a593Smuzhiyun /* This is no size change or it is shrinking, update size and record in superblocks */
3223*4882a593Smuzhiyun r = rs_set_dev_and_array_sectors(rs, rs->ti->len, false);
3224*4882a593Smuzhiyun if (r)
3225*4882a593Smuzhiyun goto bad;
3226*4882a593Smuzhiyun
3227*4882a593Smuzhiyun if (sb_array_sectors > rs->array_sectors)
3228*4882a593Smuzhiyun set_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags);
3229*4882a593Smuzhiyun }
3230*4882a593Smuzhiyun rs_set_cur(rs);
3231*4882a593Smuzhiyun }
3232*4882a593Smuzhiyun
3233*4882a593Smuzhiyun /* If constructor requested it, change data and new_data offsets */
3234*4882a593Smuzhiyun r = rs_adjust_data_offsets(rs);
3235*4882a593Smuzhiyun if (r)
3236*4882a593Smuzhiyun goto bad;
3237*4882a593Smuzhiyun
3238*4882a593Smuzhiyun /* Catch any inconclusive reshape superblock content. */
3239*4882a593Smuzhiyun rs_reset_inconclusive_reshape(rs);
3240*4882a593Smuzhiyun
3241*4882a593Smuzhiyun /* Start raid set read-only and assumed clean to change in raid_resume() */
3242*4882a593Smuzhiyun rs->md.ro = 1;
3243*4882a593Smuzhiyun rs->md.in_sync = 1;
3244*4882a593Smuzhiyun
3245*4882a593Smuzhiyun /* Keep array frozen until resume. */
3246*4882a593Smuzhiyun set_bit(MD_RECOVERY_FROZEN, &rs->md.recovery);
3247*4882a593Smuzhiyun
3248*4882a593Smuzhiyun /* Has to be held on running the array */
3249*4882a593Smuzhiyun mddev_lock_nointr(&rs->md);
3250*4882a593Smuzhiyun r = md_run(&rs->md);
3251*4882a593Smuzhiyun rs->md.in_sync = 0; /* Assume already marked dirty */
3252*4882a593Smuzhiyun if (r) {
3253*4882a593Smuzhiyun ti->error = "Failed to run raid array";
3254*4882a593Smuzhiyun mddev_unlock(&rs->md);
3255*4882a593Smuzhiyun goto bad;
3256*4882a593Smuzhiyun }
3257*4882a593Smuzhiyun
3258*4882a593Smuzhiyun r = md_start(&rs->md);
3259*4882a593Smuzhiyun if (r) {
3260*4882a593Smuzhiyun ti->error = "Failed to start raid array";
3261*4882a593Smuzhiyun mddev_unlock(&rs->md);
3262*4882a593Smuzhiyun goto bad_md_start;
3263*4882a593Smuzhiyun }
3264*4882a593Smuzhiyun
3265*4882a593Smuzhiyun /* If raid4/5/6 journal mode explicitly requested (only possible with journal dev) -> set it */
3266*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_JOURNAL_MODE, &rs->ctr_flags)) {
3267*4882a593Smuzhiyun r = r5c_journal_mode_set(&rs->md, rs->journal_dev.mode);
3268*4882a593Smuzhiyun if (r) {
3269*4882a593Smuzhiyun ti->error = "Failed to set raid4/5/6 journal mode";
3270*4882a593Smuzhiyun mddev_unlock(&rs->md);
3271*4882a593Smuzhiyun goto bad_journal_mode_set;
3272*4882a593Smuzhiyun }
3273*4882a593Smuzhiyun }
3274*4882a593Smuzhiyun
3275*4882a593Smuzhiyun mddev_suspend(&rs->md);
3276*4882a593Smuzhiyun set_bit(RT_FLAG_RS_SUSPENDED, &rs->runtime_flags);
3277*4882a593Smuzhiyun
3278*4882a593Smuzhiyun /* Try to adjust the raid4/5/6 stripe cache size to the stripe size */
3279*4882a593Smuzhiyun if (rs_is_raid456(rs)) {
3280*4882a593Smuzhiyun r = rs_set_raid456_stripe_cache(rs);
3281*4882a593Smuzhiyun if (r)
3282*4882a593Smuzhiyun goto bad_stripe_cache;
3283*4882a593Smuzhiyun }
3284*4882a593Smuzhiyun
3285*4882a593Smuzhiyun /* Now do an early reshape check */
3286*4882a593Smuzhiyun if (test_bit(RT_FLAG_RESHAPE_RS, &rs->runtime_flags)) {
3287*4882a593Smuzhiyun r = rs_check_reshape(rs);
3288*4882a593Smuzhiyun if (r)
3289*4882a593Smuzhiyun goto bad_check_reshape;
3290*4882a593Smuzhiyun
3291*4882a593Smuzhiyun /* Restore new, ctr requested layout to perform check */
3292*4882a593Smuzhiyun rs_config_restore(rs, &rs_layout);
3293*4882a593Smuzhiyun
3294*4882a593Smuzhiyun if (rs->md.pers->start_reshape) {
3295*4882a593Smuzhiyun r = rs->md.pers->check_reshape(&rs->md);
3296*4882a593Smuzhiyun if (r) {
3297*4882a593Smuzhiyun ti->error = "Reshape check failed";
3298*4882a593Smuzhiyun goto bad_check_reshape;
3299*4882a593Smuzhiyun }
3300*4882a593Smuzhiyun }
3301*4882a593Smuzhiyun }
3302*4882a593Smuzhiyun
3303*4882a593Smuzhiyun /* Disable/enable discard support on raid set. */
3304*4882a593Smuzhiyun configure_discard_support(rs);
3305*4882a593Smuzhiyun
3306*4882a593Smuzhiyun mddev_unlock(&rs->md);
3307*4882a593Smuzhiyun return 0;
3308*4882a593Smuzhiyun
3309*4882a593Smuzhiyun bad_md_start:
3310*4882a593Smuzhiyun bad_journal_mode_set:
3311*4882a593Smuzhiyun bad_stripe_cache:
3312*4882a593Smuzhiyun bad_check_reshape:
3313*4882a593Smuzhiyun md_stop(&rs->md);
3314*4882a593Smuzhiyun bad:
3315*4882a593Smuzhiyun raid_set_free(rs);
3316*4882a593Smuzhiyun
3317*4882a593Smuzhiyun return r;
3318*4882a593Smuzhiyun }
3319*4882a593Smuzhiyun
raid_dtr(struct dm_target * ti)3320*4882a593Smuzhiyun static void raid_dtr(struct dm_target *ti)
3321*4882a593Smuzhiyun {
3322*4882a593Smuzhiyun struct raid_set *rs = ti->private;
3323*4882a593Smuzhiyun
3324*4882a593Smuzhiyun md_stop(&rs->md);
3325*4882a593Smuzhiyun raid_set_free(rs);
3326*4882a593Smuzhiyun }
3327*4882a593Smuzhiyun
raid_map(struct dm_target * ti,struct bio * bio)3328*4882a593Smuzhiyun static int raid_map(struct dm_target *ti, struct bio *bio)
3329*4882a593Smuzhiyun {
3330*4882a593Smuzhiyun struct raid_set *rs = ti->private;
3331*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
3332*4882a593Smuzhiyun
3333*4882a593Smuzhiyun /*
3334*4882a593Smuzhiyun * If we're reshaping to add disk(s)), ti->len and
3335*4882a593Smuzhiyun * mddev->array_sectors will differ during the process
3336*4882a593Smuzhiyun * (ti->len > mddev->array_sectors), so we have to requeue
3337*4882a593Smuzhiyun * bios with addresses > mddev->array_sectors here or
3338*4882a593Smuzhiyun * there will occur accesses past EOD of the component
3339*4882a593Smuzhiyun * data images thus erroring the raid set.
3340*4882a593Smuzhiyun */
3341*4882a593Smuzhiyun if (unlikely(bio_end_sector(bio) > mddev->array_sectors))
3342*4882a593Smuzhiyun return DM_MAPIO_REQUEUE;
3343*4882a593Smuzhiyun
3344*4882a593Smuzhiyun md_handle_request(mddev, bio);
3345*4882a593Smuzhiyun
3346*4882a593Smuzhiyun return DM_MAPIO_SUBMITTED;
3347*4882a593Smuzhiyun }
3348*4882a593Smuzhiyun
3349*4882a593Smuzhiyun /* Return sync state string for @state */
3350*4882a593Smuzhiyun enum sync_state { st_frozen, st_reshape, st_resync, st_check, st_repair, st_recover, st_idle };
sync_str(enum sync_state state)3351*4882a593Smuzhiyun static const char *sync_str(enum sync_state state)
3352*4882a593Smuzhiyun {
3353*4882a593Smuzhiyun /* Has to be in above sync_state order! */
3354*4882a593Smuzhiyun static const char *sync_strs[] = {
3355*4882a593Smuzhiyun "frozen",
3356*4882a593Smuzhiyun "reshape",
3357*4882a593Smuzhiyun "resync",
3358*4882a593Smuzhiyun "check",
3359*4882a593Smuzhiyun "repair",
3360*4882a593Smuzhiyun "recover",
3361*4882a593Smuzhiyun "idle"
3362*4882a593Smuzhiyun };
3363*4882a593Smuzhiyun
3364*4882a593Smuzhiyun return __within_range(state, 0, ARRAY_SIZE(sync_strs) - 1) ? sync_strs[state] : "undef";
3365*4882a593Smuzhiyun };
3366*4882a593Smuzhiyun
3367*4882a593Smuzhiyun /* Return enum sync_state for @mddev derived from @recovery flags */
decipher_sync_action(struct mddev * mddev,unsigned long recovery)3368*4882a593Smuzhiyun static enum sync_state decipher_sync_action(struct mddev *mddev, unsigned long recovery)
3369*4882a593Smuzhiyun {
3370*4882a593Smuzhiyun if (test_bit(MD_RECOVERY_FROZEN, &recovery))
3371*4882a593Smuzhiyun return st_frozen;
3372*4882a593Smuzhiyun
3373*4882a593Smuzhiyun /* The MD sync thread can be done with io or be interrupted but still be running */
3374*4882a593Smuzhiyun if (!test_bit(MD_RECOVERY_DONE, &recovery) &&
3375*4882a593Smuzhiyun (test_bit(MD_RECOVERY_RUNNING, &recovery) ||
3376*4882a593Smuzhiyun (!mddev->ro && test_bit(MD_RECOVERY_NEEDED, &recovery)))) {
3377*4882a593Smuzhiyun if (test_bit(MD_RECOVERY_RESHAPE, &recovery))
3378*4882a593Smuzhiyun return st_reshape;
3379*4882a593Smuzhiyun
3380*4882a593Smuzhiyun if (test_bit(MD_RECOVERY_SYNC, &recovery)) {
3381*4882a593Smuzhiyun if (!test_bit(MD_RECOVERY_REQUESTED, &recovery))
3382*4882a593Smuzhiyun return st_resync;
3383*4882a593Smuzhiyun if (test_bit(MD_RECOVERY_CHECK, &recovery))
3384*4882a593Smuzhiyun return st_check;
3385*4882a593Smuzhiyun return st_repair;
3386*4882a593Smuzhiyun }
3387*4882a593Smuzhiyun
3388*4882a593Smuzhiyun if (test_bit(MD_RECOVERY_RECOVER, &recovery))
3389*4882a593Smuzhiyun return st_recover;
3390*4882a593Smuzhiyun
3391*4882a593Smuzhiyun if (mddev->reshape_position != MaxSector)
3392*4882a593Smuzhiyun return st_reshape;
3393*4882a593Smuzhiyun }
3394*4882a593Smuzhiyun
3395*4882a593Smuzhiyun return st_idle;
3396*4882a593Smuzhiyun }
3397*4882a593Smuzhiyun
3398*4882a593Smuzhiyun /*
3399*4882a593Smuzhiyun * Return status string for @rdev
3400*4882a593Smuzhiyun *
3401*4882a593Smuzhiyun * Status characters:
3402*4882a593Smuzhiyun *
3403*4882a593Smuzhiyun * 'D' = Dead/Failed raid set component or raid4/5/6 journal device
3404*4882a593Smuzhiyun * 'a' = Alive but not in-sync raid set component _or_ alive raid4/5/6 'write_back' journal device
3405*4882a593Smuzhiyun * 'A' = Alive and in-sync raid set component _or_ alive raid4/5/6 'write_through' journal device
3406*4882a593Smuzhiyun * '-' = Non-existing device (i.e. uspace passed '- -' into the ctr)
3407*4882a593Smuzhiyun */
__raid_dev_status(struct raid_set * rs,struct md_rdev * rdev)3408*4882a593Smuzhiyun static const char *__raid_dev_status(struct raid_set *rs, struct md_rdev *rdev)
3409*4882a593Smuzhiyun {
3410*4882a593Smuzhiyun if (!rdev->bdev)
3411*4882a593Smuzhiyun return "-";
3412*4882a593Smuzhiyun else if (test_bit(Faulty, &rdev->flags))
3413*4882a593Smuzhiyun return "D";
3414*4882a593Smuzhiyun else if (test_bit(Journal, &rdev->flags))
3415*4882a593Smuzhiyun return (rs->journal_dev.mode == R5C_JOURNAL_MODE_WRITE_THROUGH) ? "A" : "a";
3416*4882a593Smuzhiyun else if (test_bit(RT_FLAG_RS_RESYNCING, &rs->runtime_flags) ||
3417*4882a593Smuzhiyun (!test_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags) &&
3418*4882a593Smuzhiyun !test_bit(In_sync, &rdev->flags)))
3419*4882a593Smuzhiyun return "a";
3420*4882a593Smuzhiyun else
3421*4882a593Smuzhiyun return "A";
3422*4882a593Smuzhiyun }
3423*4882a593Smuzhiyun
3424*4882a593Smuzhiyun /* Helper to return resync/reshape progress for @rs and runtime flags for raid set in sync / resynching */
rs_get_progress(struct raid_set * rs,unsigned long recovery,enum sync_state state,sector_t resync_max_sectors)3425*4882a593Smuzhiyun static sector_t rs_get_progress(struct raid_set *rs, unsigned long recovery,
3426*4882a593Smuzhiyun enum sync_state state, sector_t resync_max_sectors)
3427*4882a593Smuzhiyun {
3428*4882a593Smuzhiyun sector_t r;
3429*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
3430*4882a593Smuzhiyun
3431*4882a593Smuzhiyun clear_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags);
3432*4882a593Smuzhiyun clear_bit(RT_FLAG_RS_RESYNCING, &rs->runtime_flags);
3433*4882a593Smuzhiyun
3434*4882a593Smuzhiyun if (rs_is_raid0(rs)) {
3435*4882a593Smuzhiyun r = resync_max_sectors;
3436*4882a593Smuzhiyun set_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags);
3437*4882a593Smuzhiyun
3438*4882a593Smuzhiyun } else {
3439*4882a593Smuzhiyun if (state == st_idle && !test_bit(MD_RECOVERY_INTR, &recovery))
3440*4882a593Smuzhiyun r = mddev->recovery_cp;
3441*4882a593Smuzhiyun else
3442*4882a593Smuzhiyun r = mddev->curr_resync_completed;
3443*4882a593Smuzhiyun
3444*4882a593Smuzhiyun if (state == st_idle && r >= resync_max_sectors) {
3445*4882a593Smuzhiyun /*
3446*4882a593Smuzhiyun * Sync complete.
3447*4882a593Smuzhiyun */
3448*4882a593Smuzhiyun /* In case we have finished recovering, the array is in sync. */
3449*4882a593Smuzhiyun if (test_bit(MD_RECOVERY_RECOVER, &recovery))
3450*4882a593Smuzhiyun set_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags);
3451*4882a593Smuzhiyun
3452*4882a593Smuzhiyun } else if (state == st_recover)
3453*4882a593Smuzhiyun /*
3454*4882a593Smuzhiyun * In case we are recovering, the array is not in sync
3455*4882a593Smuzhiyun * and health chars should show the recovering legs.
3456*4882a593Smuzhiyun *
3457*4882a593Smuzhiyun * Already retrieved recovery offset from curr_resync_completed above.
3458*4882a593Smuzhiyun */
3459*4882a593Smuzhiyun ;
3460*4882a593Smuzhiyun
3461*4882a593Smuzhiyun else if (state == st_resync || state == st_reshape)
3462*4882a593Smuzhiyun /*
3463*4882a593Smuzhiyun * If "resync/reshape" is occurring, the raid set
3464*4882a593Smuzhiyun * is or may be out of sync hence the health
3465*4882a593Smuzhiyun * characters shall be 'a'.
3466*4882a593Smuzhiyun */
3467*4882a593Smuzhiyun set_bit(RT_FLAG_RS_RESYNCING, &rs->runtime_flags);
3468*4882a593Smuzhiyun
3469*4882a593Smuzhiyun else if (state == st_check || state == st_repair)
3470*4882a593Smuzhiyun /*
3471*4882a593Smuzhiyun * If "check" or "repair" is occurring, the raid set has
3472*4882a593Smuzhiyun * undergone an initial sync and the health characters
3473*4882a593Smuzhiyun * should not be 'a' anymore.
3474*4882a593Smuzhiyun */
3475*4882a593Smuzhiyun set_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags);
3476*4882a593Smuzhiyun
3477*4882a593Smuzhiyun else if (test_bit(MD_RECOVERY_NEEDED, &recovery))
3478*4882a593Smuzhiyun /*
3479*4882a593Smuzhiyun * We are idle and recovery is needed, prevent 'A' chars race
3480*4882a593Smuzhiyun * caused by components still set to in-sync by constructor.
3481*4882a593Smuzhiyun */
3482*4882a593Smuzhiyun set_bit(RT_FLAG_RS_RESYNCING, &rs->runtime_flags);
3483*4882a593Smuzhiyun
3484*4882a593Smuzhiyun else {
3485*4882a593Smuzhiyun /*
3486*4882a593Smuzhiyun * We are idle and the raid set may be doing an initial
3487*4882a593Smuzhiyun * sync, or it may be rebuilding individual components.
3488*4882a593Smuzhiyun * If all the devices are In_sync, then it is the raid set
3489*4882a593Smuzhiyun * that is being initialized.
3490*4882a593Smuzhiyun */
3491*4882a593Smuzhiyun struct md_rdev *rdev;
3492*4882a593Smuzhiyun
3493*4882a593Smuzhiyun set_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags);
3494*4882a593Smuzhiyun rdev_for_each(rdev, mddev)
3495*4882a593Smuzhiyun if (!test_bit(Journal, &rdev->flags) &&
3496*4882a593Smuzhiyun !test_bit(In_sync, &rdev->flags)) {
3497*4882a593Smuzhiyun clear_bit(RT_FLAG_RS_IN_SYNC, &rs->runtime_flags);
3498*4882a593Smuzhiyun break;
3499*4882a593Smuzhiyun }
3500*4882a593Smuzhiyun }
3501*4882a593Smuzhiyun }
3502*4882a593Smuzhiyun
3503*4882a593Smuzhiyun return min(r, resync_max_sectors);
3504*4882a593Smuzhiyun }
3505*4882a593Smuzhiyun
3506*4882a593Smuzhiyun /* Helper to return @dev name or "-" if !@dev */
__get_dev_name(struct dm_dev * dev)3507*4882a593Smuzhiyun static const char *__get_dev_name(struct dm_dev *dev)
3508*4882a593Smuzhiyun {
3509*4882a593Smuzhiyun return dev ? dev->name : "-";
3510*4882a593Smuzhiyun }
3511*4882a593Smuzhiyun
raid_status(struct dm_target * ti,status_type_t type,unsigned int status_flags,char * result,unsigned int maxlen)3512*4882a593Smuzhiyun static void raid_status(struct dm_target *ti, status_type_t type,
3513*4882a593Smuzhiyun unsigned int status_flags, char *result, unsigned int maxlen)
3514*4882a593Smuzhiyun {
3515*4882a593Smuzhiyun struct raid_set *rs = ti->private;
3516*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
3517*4882a593Smuzhiyun struct r5conf *conf = rs_is_raid456(rs) ? mddev->private : NULL;
3518*4882a593Smuzhiyun int i, max_nr_stripes = conf ? conf->max_nr_stripes : 0;
3519*4882a593Smuzhiyun unsigned long recovery;
3520*4882a593Smuzhiyun unsigned int raid_param_cnt = 1; /* at least 1 for chunksize */
3521*4882a593Smuzhiyun unsigned int sz = 0;
3522*4882a593Smuzhiyun unsigned int rebuild_writemostly_count = 0;
3523*4882a593Smuzhiyun sector_t progress, resync_max_sectors, resync_mismatches;
3524*4882a593Smuzhiyun enum sync_state state;
3525*4882a593Smuzhiyun struct raid_type *rt;
3526*4882a593Smuzhiyun
3527*4882a593Smuzhiyun switch (type) {
3528*4882a593Smuzhiyun case STATUSTYPE_INFO:
3529*4882a593Smuzhiyun /* *Should* always succeed */
3530*4882a593Smuzhiyun rt = get_raid_type_by_ll(mddev->new_level, mddev->new_layout);
3531*4882a593Smuzhiyun if (!rt)
3532*4882a593Smuzhiyun return;
3533*4882a593Smuzhiyun
3534*4882a593Smuzhiyun DMEMIT("%s %d ", rt->name, mddev->raid_disks);
3535*4882a593Smuzhiyun
3536*4882a593Smuzhiyun /* Access most recent mddev properties for status output */
3537*4882a593Smuzhiyun smp_rmb();
3538*4882a593Smuzhiyun /* Get sensible max sectors even if raid set not yet started */
3539*4882a593Smuzhiyun resync_max_sectors = test_bit(RT_FLAG_RS_PRERESUMED, &rs->runtime_flags) ?
3540*4882a593Smuzhiyun mddev->resync_max_sectors : mddev->dev_sectors;
3541*4882a593Smuzhiyun recovery = rs->md.recovery;
3542*4882a593Smuzhiyun state = decipher_sync_action(mddev, recovery);
3543*4882a593Smuzhiyun progress = rs_get_progress(rs, recovery, state, resync_max_sectors);
3544*4882a593Smuzhiyun resync_mismatches = (mddev->last_sync_action && !strcasecmp(mddev->last_sync_action, "check")) ?
3545*4882a593Smuzhiyun atomic64_read(&mddev->resync_mismatches) : 0;
3546*4882a593Smuzhiyun
3547*4882a593Smuzhiyun /* HM FIXME: do we want another state char for raid0? It shows 'D'/'A'/'-' now */
3548*4882a593Smuzhiyun for (i = 0; i < rs->raid_disks; i++)
3549*4882a593Smuzhiyun DMEMIT(__raid_dev_status(rs, &rs->dev[i].rdev));
3550*4882a593Smuzhiyun
3551*4882a593Smuzhiyun /*
3552*4882a593Smuzhiyun * In-sync/Reshape ratio:
3553*4882a593Smuzhiyun * The in-sync ratio shows the progress of:
3554*4882a593Smuzhiyun * - Initializing the raid set
3555*4882a593Smuzhiyun * - Rebuilding a subset of devices of the raid set
3556*4882a593Smuzhiyun * The user can distinguish between the two by referring
3557*4882a593Smuzhiyun * to the status characters.
3558*4882a593Smuzhiyun *
3559*4882a593Smuzhiyun * The reshape ratio shows the progress of
3560*4882a593Smuzhiyun * changing the raid layout or the number of
3561*4882a593Smuzhiyun * disks of a raid set
3562*4882a593Smuzhiyun */
3563*4882a593Smuzhiyun DMEMIT(" %llu/%llu", (unsigned long long) progress,
3564*4882a593Smuzhiyun (unsigned long long) resync_max_sectors);
3565*4882a593Smuzhiyun
3566*4882a593Smuzhiyun /*
3567*4882a593Smuzhiyun * v1.5.0+:
3568*4882a593Smuzhiyun *
3569*4882a593Smuzhiyun * Sync action:
3570*4882a593Smuzhiyun * See Documentation/admin-guide/device-mapper/dm-raid.rst for
3571*4882a593Smuzhiyun * information on each of these states.
3572*4882a593Smuzhiyun */
3573*4882a593Smuzhiyun DMEMIT(" %s", sync_str(state));
3574*4882a593Smuzhiyun
3575*4882a593Smuzhiyun /*
3576*4882a593Smuzhiyun * v1.5.0+:
3577*4882a593Smuzhiyun *
3578*4882a593Smuzhiyun * resync_mismatches/mismatch_cnt
3579*4882a593Smuzhiyun * This field shows the number of discrepancies found when
3580*4882a593Smuzhiyun * performing a "check" of the raid set.
3581*4882a593Smuzhiyun */
3582*4882a593Smuzhiyun DMEMIT(" %llu", (unsigned long long) resync_mismatches);
3583*4882a593Smuzhiyun
3584*4882a593Smuzhiyun /*
3585*4882a593Smuzhiyun * v1.9.0+:
3586*4882a593Smuzhiyun *
3587*4882a593Smuzhiyun * data_offset (needed for out of space reshaping)
3588*4882a593Smuzhiyun * This field shows the data offset into the data
3589*4882a593Smuzhiyun * image LV where the first stripes data starts.
3590*4882a593Smuzhiyun *
3591*4882a593Smuzhiyun * We keep data_offset equal on all raid disks of the set,
3592*4882a593Smuzhiyun * so retrieving it from the first raid disk is sufficient.
3593*4882a593Smuzhiyun */
3594*4882a593Smuzhiyun DMEMIT(" %llu", (unsigned long long) rs->dev[0].rdev.data_offset);
3595*4882a593Smuzhiyun
3596*4882a593Smuzhiyun /*
3597*4882a593Smuzhiyun * v1.10.0+:
3598*4882a593Smuzhiyun */
3599*4882a593Smuzhiyun DMEMIT(" %s", test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags) ?
3600*4882a593Smuzhiyun __raid_dev_status(rs, &rs->journal_dev.rdev) : "-");
3601*4882a593Smuzhiyun break;
3602*4882a593Smuzhiyun
3603*4882a593Smuzhiyun case STATUSTYPE_TABLE:
3604*4882a593Smuzhiyun /* Report the table line string you would use to construct this raid set */
3605*4882a593Smuzhiyun
3606*4882a593Smuzhiyun /*
3607*4882a593Smuzhiyun * Count any rebuild or writemostly argument pairs and subtract the
3608*4882a593Smuzhiyun * hweight count being added below of any rebuild and writemostly ctr flags.
3609*4882a593Smuzhiyun */
3610*4882a593Smuzhiyun for (i = 0; i < rs->raid_disks; i++) {
3611*4882a593Smuzhiyun rebuild_writemostly_count += (test_bit(i, (void *) rs->rebuild_disks) ? 2 : 0) +
3612*4882a593Smuzhiyun (test_bit(WriteMostly, &rs->dev[i].rdev.flags) ? 2 : 0);
3613*4882a593Smuzhiyun }
3614*4882a593Smuzhiyun rebuild_writemostly_count -= (test_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags) ? 2 : 0) +
3615*4882a593Smuzhiyun (test_bit(__CTR_FLAG_WRITE_MOSTLY, &rs->ctr_flags) ? 2 : 0);
3616*4882a593Smuzhiyun /* Calculate raid parameter count based on ^ rebuild/writemostly argument counts and ctr flags set. */
3617*4882a593Smuzhiyun raid_param_cnt += rebuild_writemostly_count +
3618*4882a593Smuzhiyun hweight32(rs->ctr_flags & CTR_FLAG_OPTIONS_NO_ARGS) +
3619*4882a593Smuzhiyun hweight32(rs->ctr_flags & CTR_FLAG_OPTIONS_ONE_ARG) * 2;
3620*4882a593Smuzhiyun /* Emit table line */
3621*4882a593Smuzhiyun /* This has to be in the documented order for userspace! */
3622*4882a593Smuzhiyun DMEMIT("%s %u %u", rs->raid_type->name, raid_param_cnt, mddev->new_chunk_sectors);
3623*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_SYNC, &rs->ctr_flags))
3624*4882a593Smuzhiyun DMEMIT(" %s", dm_raid_arg_name_by_flag(CTR_FLAG_SYNC));
3625*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_NOSYNC, &rs->ctr_flags))
3626*4882a593Smuzhiyun DMEMIT(" %s", dm_raid_arg_name_by_flag(CTR_FLAG_NOSYNC));
3627*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_REBUILD, &rs->ctr_flags))
3628*4882a593Smuzhiyun for (i = 0; i < rs->raid_disks; i++)
3629*4882a593Smuzhiyun if (test_bit(i, (void *) rs->rebuild_disks))
3630*4882a593Smuzhiyun DMEMIT(" %s %u", dm_raid_arg_name_by_flag(CTR_FLAG_REBUILD), i);
3631*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_DAEMON_SLEEP, &rs->ctr_flags))
3632*4882a593Smuzhiyun DMEMIT(" %s %lu", dm_raid_arg_name_by_flag(CTR_FLAG_DAEMON_SLEEP),
3633*4882a593Smuzhiyun mddev->bitmap_info.daemon_sleep);
3634*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_MIN_RECOVERY_RATE, &rs->ctr_flags))
3635*4882a593Smuzhiyun DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_MIN_RECOVERY_RATE),
3636*4882a593Smuzhiyun mddev->sync_speed_min);
3637*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_MAX_RECOVERY_RATE, &rs->ctr_flags))
3638*4882a593Smuzhiyun DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_MAX_RECOVERY_RATE),
3639*4882a593Smuzhiyun mddev->sync_speed_max);
3640*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_WRITE_MOSTLY, &rs->ctr_flags))
3641*4882a593Smuzhiyun for (i = 0; i < rs->raid_disks; i++)
3642*4882a593Smuzhiyun if (test_bit(WriteMostly, &rs->dev[i].rdev.flags))
3643*4882a593Smuzhiyun DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_WRITE_MOSTLY),
3644*4882a593Smuzhiyun rs->dev[i].rdev.raid_disk);
3645*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_MAX_WRITE_BEHIND, &rs->ctr_flags))
3646*4882a593Smuzhiyun DMEMIT(" %s %lu", dm_raid_arg_name_by_flag(CTR_FLAG_MAX_WRITE_BEHIND),
3647*4882a593Smuzhiyun mddev->bitmap_info.max_write_behind);
3648*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_STRIPE_CACHE, &rs->ctr_flags))
3649*4882a593Smuzhiyun DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_STRIPE_CACHE),
3650*4882a593Smuzhiyun max_nr_stripes);
3651*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_REGION_SIZE, &rs->ctr_flags))
3652*4882a593Smuzhiyun DMEMIT(" %s %llu", dm_raid_arg_name_by_flag(CTR_FLAG_REGION_SIZE),
3653*4882a593Smuzhiyun (unsigned long long) to_sector(mddev->bitmap_info.chunksize));
3654*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_RAID10_COPIES, &rs->ctr_flags))
3655*4882a593Smuzhiyun DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_COPIES),
3656*4882a593Smuzhiyun raid10_md_layout_to_copies(mddev->layout));
3657*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_RAID10_FORMAT, &rs->ctr_flags))
3658*4882a593Smuzhiyun DMEMIT(" %s %s", dm_raid_arg_name_by_flag(CTR_FLAG_RAID10_FORMAT),
3659*4882a593Smuzhiyun raid10_md_layout_to_format(mddev->layout));
3660*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_DELTA_DISKS, &rs->ctr_flags))
3661*4882a593Smuzhiyun DMEMIT(" %s %d", dm_raid_arg_name_by_flag(CTR_FLAG_DELTA_DISKS),
3662*4882a593Smuzhiyun max(rs->delta_disks, mddev->delta_disks));
3663*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_DATA_OFFSET, &rs->ctr_flags))
3664*4882a593Smuzhiyun DMEMIT(" %s %llu", dm_raid_arg_name_by_flag(CTR_FLAG_DATA_OFFSET),
3665*4882a593Smuzhiyun (unsigned long long) rs->data_offset);
3666*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_JOURNAL_DEV, &rs->ctr_flags))
3667*4882a593Smuzhiyun DMEMIT(" %s %s", dm_raid_arg_name_by_flag(CTR_FLAG_JOURNAL_DEV),
3668*4882a593Smuzhiyun __get_dev_name(rs->journal_dev.dev));
3669*4882a593Smuzhiyun if (test_bit(__CTR_FLAG_JOURNAL_MODE, &rs->ctr_flags))
3670*4882a593Smuzhiyun DMEMIT(" %s %s", dm_raid_arg_name_by_flag(CTR_FLAG_JOURNAL_MODE),
3671*4882a593Smuzhiyun md_journal_mode_to_dm_raid(rs->journal_dev.mode));
3672*4882a593Smuzhiyun DMEMIT(" %d", rs->raid_disks);
3673*4882a593Smuzhiyun for (i = 0; i < rs->raid_disks; i++)
3674*4882a593Smuzhiyun DMEMIT(" %s %s", __get_dev_name(rs->dev[i].meta_dev),
3675*4882a593Smuzhiyun __get_dev_name(rs->dev[i].data_dev));
3676*4882a593Smuzhiyun }
3677*4882a593Smuzhiyun }
3678*4882a593Smuzhiyun
raid_message(struct dm_target * ti,unsigned int argc,char ** argv,char * result,unsigned maxlen)3679*4882a593Smuzhiyun static int raid_message(struct dm_target *ti, unsigned int argc, char **argv,
3680*4882a593Smuzhiyun char *result, unsigned maxlen)
3681*4882a593Smuzhiyun {
3682*4882a593Smuzhiyun struct raid_set *rs = ti->private;
3683*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
3684*4882a593Smuzhiyun
3685*4882a593Smuzhiyun if (!mddev->pers || !mddev->pers->sync_request)
3686*4882a593Smuzhiyun return -EINVAL;
3687*4882a593Smuzhiyun
3688*4882a593Smuzhiyun if (!strcasecmp(argv[0], "frozen"))
3689*4882a593Smuzhiyun set_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
3690*4882a593Smuzhiyun else
3691*4882a593Smuzhiyun clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
3692*4882a593Smuzhiyun
3693*4882a593Smuzhiyun if (!strcasecmp(argv[0], "idle") || !strcasecmp(argv[0], "frozen")) {
3694*4882a593Smuzhiyun if (mddev->sync_thread) {
3695*4882a593Smuzhiyun set_bit(MD_RECOVERY_INTR, &mddev->recovery);
3696*4882a593Smuzhiyun md_reap_sync_thread(mddev);
3697*4882a593Smuzhiyun }
3698*4882a593Smuzhiyun } else if (decipher_sync_action(mddev, mddev->recovery) != st_idle)
3699*4882a593Smuzhiyun return -EBUSY;
3700*4882a593Smuzhiyun else if (!strcasecmp(argv[0], "resync"))
3701*4882a593Smuzhiyun ; /* MD_RECOVERY_NEEDED set below */
3702*4882a593Smuzhiyun else if (!strcasecmp(argv[0], "recover"))
3703*4882a593Smuzhiyun set_bit(MD_RECOVERY_RECOVER, &mddev->recovery);
3704*4882a593Smuzhiyun else {
3705*4882a593Smuzhiyun if (!strcasecmp(argv[0], "check")) {
3706*4882a593Smuzhiyun set_bit(MD_RECOVERY_CHECK, &mddev->recovery);
3707*4882a593Smuzhiyun set_bit(MD_RECOVERY_REQUESTED, &mddev->recovery);
3708*4882a593Smuzhiyun set_bit(MD_RECOVERY_SYNC, &mddev->recovery);
3709*4882a593Smuzhiyun } else if (!strcasecmp(argv[0], "repair")) {
3710*4882a593Smuzhiyun set_bit(MD_RECOVERY_REQUESTED, &mddev->recovery);
3711*4882a593Smuzhiyun set_bit(MD_RECOVERY_SYNC, &mddev->recovery);
3712*4882a593Smuzhiyun } else
3713*4882a593Smuzhiyun return -EINVAL;
3714*4882a593Smuzhiyun }
3715*4882a593Smuzhiyun if (mddev->ro == 2) {
3716*4882a593Smuzhiyun /* A write to sync_action is enough to justify
3717*4882a593Smuzhiyun * canceling read-auto mode
3718*4882a593Smuzhiyun */
3719*4882a593Smuzhiyun mddev->ro = 0;
3720*4882a593Smuzhiyun if (!mddev->suspended && mddev->sync_thread)
3721*4882a593Smuzhiyun md_wakeup_thread(mddev->sync_thread);
3722*4882a593Smuzhiyun }
3723*4882a593Smuzhiyun set_bit(MD_RECOVERY_NEEDED, &mddev->recovery);
3724*4882a593Smuzhiyun if (!mddev->suspended && mddev->thread)
3725*4882a593Smuzhiyun md_wakeup_thread(mddev->thread);
3726*4882a593Smuzhiyun
3727*4882a593Smuzhiyun return 0;
3728*4882a593Smuzhiyun }
3729*4882a593Smuzhiyun
raid_iterate_devices(struct dm_target * ti,iterate_devices_callout_fn fn,void * data)3730*4882a593Smuzhiyun static int raid_iterate_devices(struct dm_target *ti,
3731*4882a593Smuzhiyun iterate_devices_callout_fn fn, void *data)
3732*4882a593Smuzhiyun {
3733*4882a593Smuzhiyun struct raid_set *rs = ti->private;
3734*4882a593Smuzhiyun unsigned int i;
3735*4882a593Smuzhiyun int r = 0;
3736*4882a593Smuzhiyun
3737*4882a593Smuzhiyun for (i = 0; !r && i < rs->raid_disks; i++) {
3738*4882a593Smuzhiyun if (rs->dev[i].data_dev) {
3739*4882a593Smuzhiyun r = fn(ti, rs->dev[i].data_dev,
3740*4882a593Smuzhiyun 0, /* No offset on data devs */
3741*4882a593Smuzhiyun rs->md.dev_sectors, data);
3742*4882a593Smuzhiyun }
3743*4882a593Smuzhiyun }
3744*4882a593Smuzhiyun
3745*4882a593Smuzhiyun return r;
3746*4882a593Smuzhiyun }
3747*4882a593Smuzhiyun
raid_io_hints(struct dm_target * ti,struct queue_limits * limits)3748*4882a593Smuzhiyun static void raid_io_hints(struct dm_target *ti, struct queue_limits *limits)
3749*4882a593Smuzhiyun {
3750*4882a593Smuzhiyun struct raid_set *rs = ti->private;
3751*4882a593Smuzhiyun unsigned int chunk_size_bytes = to_bytes(rs->md.chunk_sectors);
3752*4882a593Smuzhiyun
3753*4882a593Smuzhiyun blk_limits_io_min(limits, chunk_size_bytes);
3754*4882a593Smuzhiyun blk_limits_io_opt(limits, chunk_size_bytes * mddev_data_stripes(rs));
3755*4882a593Smuzhiyun
3756*4882a593Smuzhiyun /*
3757*4882a593Smuzhiyun * RAID0 and RAID10 personalities require bio splitting,
3758*4882a593Smuzhiyun * RAID1/4/5/6 don't and process large discard bios properly.
3759*4882a593Smuzhiyun */
3760*4882a593Smuzhiyun if (rs_is_raid0(rs) || rs_is_raid10(rs)) {
3761*4882a593Smuzhiyun limits->discard_granularity = chunk_size_bytes;
3762*4882a593Smuzhiyun limits->max_discard_sectors = rs->md.chunk_sectors;
3763*4882a593Smuzhiyun }
3764*4882a593Smuzhiyun }
3765*4882a593Smuzhiyun
raid_postsuspend(struct dm_target * ti)3766*4882a593Smuzhiyun static void raid_postsuspend(struct dm_target *ti)
3767*4882a593Smuzhiyun {
3768*4882a593Smuzhiyun struct raid_set *rs = ti->private;
3769*4882a593Smuzhiyun
3770*4882a593Smuzhiyun if (!test_and_set_bit(RT_FLAG_RS_SUSPENDED, &rs->runtime_flags)) {
3771*4882a593Smuzhiyun /* Writes have to be stopped before suspending to avoid deadlocks. */
3772*4882a593Smuzhiyun if (!test_bit(MD_RECOVERY_FROZEN, &rs->md.recovery))
3773*4882a593Smuzhiyun md_stop_writes(&rs->md);
3774*4882a593Smuzhiyun
3775*4882a593Smuzhiyun mddev_lock_nointr(&rs->md);
3776*4882a593Smuzhiyun mddev_suspend(&rs->md);
3777*4882a593Smuzhiyun mddev_unlock(&rs->md);
3778*4882a593Smuzhiyun }
3779*4882a593Smuzhiyun }
3780*4882a593Smuzhiyun
attempt_restore_of_faulty_devices(struct raid_set * rs)3781*4882a593Smuzhiyun static void attempt_restore_of_faulty_devices(struct raid_set *rs)
3782*4882a593Smuzhiyun {
3783*4882a593Smuzhiyun int i;
3784*4882a593Smuzhiyun uint64_t cleared_failed_devices[DISKS_ARRAY_ELEMS];
3785*4882a593Smuzhiyun unsigned long flags;
3786*4882a593Smuzhiyun bool cleared = false;
3787*4882a593Smuzhiyun struct dm_raid_superblock *sb;
3788*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
3789*4882a593Smuzhiyun struct md_rdev *r;
3790*4882a593Smuzhiyun
3791*4882a593Smuzhiyun /* RAID personalities have to provide hot add/remove methods or we need to bail out. */
3792*4882a593Smuzhiyun if (!mddev->pers || !mddev->pers->hot_add_disk || !mddev->pers->hot_remove_disk)
3793*4882a593Smuzhiyun return;
3794*4882a593Smuzhiyun
3795*4882a593Smuzhiyun memset(cleared_failed_devices, 0, sizeof(cleared_failed_devices));
3796*4882a593Smuzhiyun
3797*4882a593Smuzhiyun for (i = 0; i < rs->raid_disks; i++) {
3798*4882a593Smuzhiyun r = &rs->dev[i].rdev;
3799*4882a593Smuzhiyun /* HM FIXME: enhance journal device recovery processing */
3800*4882a593Smuzhiyun if (test_bit(Journal, &r->flags))
3801*4882a593Smuzhiyun continue;
3802*4882a593Smuzhiyun
3803*4882a593Smuzhiyun if (test_bit(Faulty, &r->flags) &&
3804*4882a593Smuzhiyun r->meta_bdev && !read_disk_sb(r, r->sb_size, true)) {
3805*4882a593Smuzhiyun DMINFO("Faulty %s device #%d has readable super block."
3806*4882a593Smuzhiyun " Attempting to revive it.",
3807*4882a593Smuzhiyun rs->raid_type->name, i);
3808*4882a593Smuzhiyun
3809*4882a593Smuzhiyun /*
3810*4882a593Smuzhiyun * Faulty bit may be set, but sometimes the array can
3811*4882a593Smuzhiyun * be suspended before the personalities can respond
3812*4882a593Smuzhiyun * by removing the device from the array (i.e. calling
3813*4882a593Smuzhiyun * 'hot_remove_disk'). If they haven't yet removed
3814*4882a593Smuzhiyun * the failed device, its 'raid_disk' number will be
3815*4882a593Smuzhiyun * '>= 0' - meaning we must call this function
3816*4882a593Smuzhiyun * ourselves.
3817*4882a593Smuzhiyun */
3818*4882a593Smuzhiyun flags = r->flags;
3819*4882a593Smuzhiyun clear_bit(In_sync, &r->flags); /* Mandatory for hot remove. */
3820*4882a593Smuzhiyun if (r->raid_disk >= 0) {
3821*4882a593Smuzhiyun if (mddev->pers->hot_remove_disk(mddev, r)) {
3822*4882a593Smuzhiyun /* Failed to revive this device, try next */
3823*4882a593Smuzhiyun r->flags = flags;
3824*4882a593Smuzhiyun continue;
3825*4882a593Smuzhiyun }
3826*4882a593Smuzhiyun } else
3827*4882a593Smuzhiyun r->raid_disk = r->saved_raid_disk = i;
3828*4882a593Smuzhiyun
3829*4882a593Smuzhiyun clear_bit(Faulty, &r->flags);
3830*4882a593Smuzhiyun clear_bit(WriteErrorSeen, &r->flags);
3831*4882a593Smuzhiyun
3832*4882a593Smuzhiyun if (mddev->pers->hot_add_disk(mddev, r)) {
3833*4882a593Smuzhiyun /* Failed to revive this device, try next */
3834*4882a593Smuzhiyun r->raid_disk = r->saved_raid_disk = -1;
3835*4882a593Smuzhiyun r->flags = flags;
3836*4882a593Smuzhiyun } else {
3837*4882a593Smuzhiyun clear_bit(In_sync, &r->flags);
3838*4882a593Smuzhiyun r->recovery_offset = 0;
3839*4882a593Smuzhiyun set_bit(i, (void *) cleared_failed_devices);
3840*4882a593Smuzhiyun cleared = true;
3841*4882a593Smuzhiyun }
3842*4882a593Smuzhiyun }
3843*4882a593Smuzhiyun }
3844*4882a593Smuzhiyun
3845*4882a593Smuzhiyun /* If any failed devices could be cleared, update all sbs failed_devices bits */
3846*4882a593Smuzhiyun if (cleared) {
3847*4882a593Smuzhiyun uint64_t failed_devices[DISKS_ARRAY_ELEMS];
3848*4882a593Smuzhiyun
3849*4882a593Smuzhiyun rdev_for_each(r, &rs->md) {
3850*4882a593Smuzhiyun if (test_bit(Journal, &r->flags))
3851*4882a593Smuzhiyun continue;
3852*4882a593Smuzhiyun
3853*4882a593Smuzhiyun sb = page_address(r->sb_page);
3854*4882a593Smuzhiyun sb_retrieve_failed_devices(sb, failed_devices);
3855*4882a593Smuzhiyun
3856*4882a593Smuzhiyun for (i = 0; i < DISKS_ARRAY_ELEMS; i++)
3857*4882a593Smuzhiyun failed_devices[i] &= ~cleared_failed_devices[i];
3858*4882a593Smuzhiyun
3859*4882a593Smuzhiyun sb_update_failed_devices(sb, failed_devices);
3860*4882a593Smuzhiyun }
3861*4882a593Smuzhiyun }
3862*4882a593Smuzhiyun }
3863*4882a593Smuzhiyun
__load_dirty_region_bitmap(struct raid_set * rs)3864*4882a593Smuzhiyun static int __load_dirty_region_bitmap(struct raid_set *rs)
3865*4882a593Smuzhiyun {
3866*4882a593Smuzhiyun int r = 0;
3867*4882a593Smuzhiyun
3868*4882a593Smuzhiyun /* Try loading the bitmap unless "raid0", which does not have one */
3869*4882a593Smuzhiyun if (!rs_is_raid0(rs) &&
3870*4882a593Smuzhiyun !test_and_set_bit(RT_FLAG_RS_BITMAP_LOADED, &rs->runtime_flags)) {
3871*4882a593Smuzhiyun r = md_bitmap_load(&rs->md);
3872*4882a593Smuzhiyun if (r)
3873*4882a593Smuzhiyun DMERR("Failed to load bitmap");
3874*4882a593Smuzhiyun }
3875*4882a593Smuzhiyun
3876*4882a593Smuzhiyun return r;
3877*4882a593Smuzhiyun }
3878*4882a593Smuzhiyun
3879*4882a593Smuzhiyun /* Enforce updating all superblocks */
rs_update_sbs(struct raid_set * rs)3880*4882a593Smuzhiyun static void rs_update_sbs(struct raid_set *rs)
3881*4882a593Smuzhiyun {
3882*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
3883*4882a593Smuzhiyun int ro = mddev->ro;
3884*4882a593Smuzhiyun
3885*4882a593Smuzhiyun set_bit(MD_SB_CHANGE_DEVS, &mddev->sb_flags);
3886*4882a593Smuzhiyun mddev->ro = 0;
3887*4882a593Smuzhiyun md_update_sb(mddev, 1);
3888*4882a593Smuzhiyun mddev->ro = ro;
3889*4882a593Smuzhiyun }
3890*4882a593Smuzhiyun
3891*4882a593Smuzhiyun /*
3892*4882a593Smuzhiyun * Reshape changes raid algorithm of @rs to new one within personality
3893*4882a593Smuzhiyun * (e.g. raid6_zr -> raid6_nc), changes stripe size, adds/removes
3894*4882a593Smuzhiyun * disks from a raid set thus growing/shrinking it or resizes the set
3895*4882a593Smuzhiyun *
3896*4882a593Smuzhiyun * Call mddev_lock_nointr() before!
3897*4882a593Smuzhiyun */
rs_start_reshape(struct raid_set * rs)3898*4882a593Smuzhiyun static int rs_start_reshape(struct raid_set *rs)
3899*4882a593Smuzhiyun {
3900*4882a593Smuzhiyun int r;
3901*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
3902*4882a593Smuzhiyun struct md_personality *pers = mddev->pers;
3903*4882a593Smuzhiyun
3904*4882a593Smuzhiyun /* Don't allow the sync thread to work until the table gets reloaded. */
3905*4882a593Smuzhiyun set_bit(MD_RECOVERY_WAIT, &mddev->recovery);
3906*4882a593Smuzhiyun
3907*4882a593Smuzhiyun r = rs_setup_reshape(rs);
3908*4882a593Smuzhiyun if (r)
3909*4882a593Smuzhiyun return r;
3910*4882a593Smuzhiyun
3911*4882a593Smuzhiyun /*
3912*4882a593Smuzhiyun * Check any reshape constraints enforced by the personalility
3913*4882a593Smuzhiyun *
3914*4882a593Smuzhiyun * May as well already kick the reshape off so that * pers->start_reshape() becomes optional.
3915*4882a593Smuzhiyun */
3916*4882a593Smuzhiyun r = pers->check_reshape(mddev);
3917*4882a593Smuzhiyun if (r) {
3918*4882a593Smuzhiyun rs->ti->error = "pers->check_reshape() failed";
3919*4882a593Smuzhiyun return r;
3920*4882a593Smuzhiyun }
3921*4882a593Smuzhiyun
3922*4882a593Smuzhiyun /*
3923*4882a593Smuzhiyun * Personality may not provide start reshape method in which
3924*4882a593Smuzhiyun * case check_reshape above has already covered everything
3925*4882a593Smuzhiyun */
3926*4882a593Smuzhiyun if (pers->start_reshape) {
3927*4882a593Smuzhiyun r = pers->start_reshape(mddev);
3928*4882a593Smuzhiyun if (r) {
3929*4882a593Smuzhiyun rs->ti->error = "pers->start_reshape() failed";
3930*4882a593Smuzhiyun return r;
3931*4882a593Smuzhiyun }
3932*4882a593Smuzhiyun }
3933*4882a593Smuzhiyun
3934*4882a593Smuzhiyun /*
3935*4882a593Smuzhiyun * Now reshape got set up, update superblocks to
3936*4882a593Smuzhiyun * reflect the fact so that a table reload will
3937*4882a593Smuzhiyun * access proper superblock content in the ctr.
3938*4882a593Smuzhiyun */
3939*4882a593Smuzhiyun rs_update_sbs(rs);
3940*4882a593Smuzhiyun
3941*4882a593Smuzhiyun return 0;
3942*4882a593Smuzhiyun }
3943*4882a593Smuzhiyun
raid_preresume(struct dm_target * ti)3944*4882a593Smuzhiyun static int raid_preresume(struct dm_target *ti)
3945*4882a593Smuzhiyun {
3946*4882a593Smuzhiyun int r;
3947*4882a593Smuzhiyun struct raid_set *rs = ti->private;
3948*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
3949*4882a593Smuzhiyun
3950*4882a593Smuzhiyun /* This is a resume after a suspend of the set -> it's already started. */
3951*4882a593Smuzhiyun if (test_and_set_bit(RT_FLAG_RS_PRERESUMED, &rs->runtime_flags))
3952*4882a593Smuzhiyun return 0;
3953*4882a593Smuzhiyun
3954*4882a593Smuzhiyun /*
3955*4882a593Smuzhiyun * The superblocks need to be updated on disk if the
3956*4882a593Smuzhiyun * array is new or new devices got added (thus zeroed
3957*4882a593Smuzhiyun * out by userspace) or __load_dirty_region_bitmap
3958*4882a593Smuzhiyun * will overwrite them in core with old data or fail.
3959*4882a593Smuzhiyun */
3960*4882a593Smuzhiyun if (test_bit(RT_FLAG_UPDATE_SBS, &rs->runtime_flags))
3961*4882a593Smuzhiyun rs_update_sbs(rs);
3962*4882a593Smuzhiyun
3963*4882a593Smuzhiyun /* Load the bitmap from disk unless raid0 */
3964*4882a593Smuzhiyun r = __load_dirty_region_bitmap(rs);
3965*4882a593Smuzhiyun if (r)
3966*4882a593Smuzhiyun return r;
3967*4882a593Smuzhiyun
3968*4882a593Smuzhiyun /* We are extending the raid set size, adjust mddev/md_rdev sizes and set capacity. */
3969*4882a593Smuzhiyun if (test_bit(RT_FLAG_RS_GROW, &rs->runtime_flags)) {
3970*4882a593Smuzhiyun mddev->array_sectors = rs->array_sectors;
3971*4882a593Smuzhiyun mddev->dev_sectors = rs->dev_sectors;
3972*4882a593Smuzhiyun rs_set_rdev_sectors(rs);
3973*4882a593Smuzhiyun rs_set_capacity(rs);
3974*4882a593Smuzhiyun }
3975*4882a593Smuzhiyun
3976*4882a593Smuzhiyun /* Resize bitmap to adjust to changed region size (aka MD bitmap chunksize) or grown device size */
3977*4882a593Smuzhiyun if (test_bit(RT_FLAG_RS_BITMAP_LOADED, &rs->runtime_flags) && mddev->bitmap &&
3978*4882a593Smuzhiyun (test_bit(RT_FLAG_RS_GROW, &rs->runtime_flags) ||
3979*4882a593Smuzhiyun (rs->requested_bitmap_chunk_sectors &&
3980*4882a593Smuzhiyun mddev->bitmap_info.chunksize != to_bytes(rs->requested_bitmap_chunk_sectors)))) {
3981*4882a593Smuzhiyun int chunksize = to_bytes(rs->requested_bitmap_chunk_sectors) ?: mddev->bitmap_info.chunksize;
3982*4882a593Smuzhiyun
3983*4882a593Smuzhiyun r = md_bitmap_resize(mddev->bitmap, mddev->dev_sectors, chunksize, 0);
3984*4882a593Smuzhiyun if (r)
3985*4882a593Smuzhiyun DMERR("Failed to resize bitmap");
3986*4882a593Smuzhiyun }
3987*4882a593Smuzhiyun
3988*4882a593Smuzhiyun /* Check for any resize/reshape on @rs and adjust/initiate */
3989*4882a593Smuzhiyun /* Be prepared for mddev_resume() in raid_resume() */
3990*4882a593Smuzhiyun set_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
3991*4882a593Smuzhiyun if (mddev->recovery_cp && mddev->recovery_cp < MaxSector) {
3992*4882a593Smuzhiyun set_bit(MD_RECOVERY_REQUESTED, &mddev->recovery);
3993*4882a593Smuzhiyun mddev->resync_min = mddev->recovery_cp;
3994*4882a593Smuzhiyun if (test_bit(RT_FLAG_RS_GROW, &rs->runtime_flags))
3995*4882a593Smuzhiyun mddev->resync_max_sectors = mddev->dev_sectors;
3996*4882a593Smuzhiyun }
3997*4882a593Smuzhiyun
3998*4882a593Smuzhiyun /* Check for any reshape request unless new raid set */
3999*4882a593Smuzhiyun if (test_bit(RT_FLAG_RESHAPE_RS, &rs->runtime_flags)) {
4000*4882a593Smuzhiyun /* Initiate a reshape. */
4001*4882a593Smuzhiyun rs_set_rdev_sectors(rs);
4002*4882a593Smuzhiyun mddev_lock_nointr(mddev);
4003*4882a593Smuzhiyun r = rs_start_reshape(rs);
4004*4882a593Smuzhiyun mddev_unlock(mddev);
4005*4882a593Smuzhiyun if (r)
4006*4882a593Smuzhiyun DMWARN("Failed to check/start reshape, continuing without change");
4007*4882a593Smuzhiyun r = 0;
4008*4882a593Smuzhiyun }
4009*4882a593Smuzhiyun
4010*4882a593Smuzhiyun return r;
4011*4882a593Smuzhiyun }
4012*4882a593Smuzhiyun
raid_resume(struct dm_target * ti)4013*4882a593Smuzhiyun static void raid_resume(struct dm_target *ti)
4014*4882a593Smuzhiyun {
4015*4882a593Smuzhiyun struct raid_set *rs = ti->private;
4016*4882a593Smuzhiyun struct mddev *mddev = &rs->md;
4017*4882a593Smuzhiyun
4018*4882a593Smuzhiyun if (test_and_set_bit(RT_FLAG_RS_RESUMED, &rs->runtime_flags)) {
4019*4882a593Smuzhiyun /*
4020*4882a593Smuzhiyun * A secondary resume while the device is active.
4021*4882a593Smuzhiyun * Take this opportunity to check whether any failed
4022*4882a593Smuzhiyun * devices are reachable again.
4023*4882a593Smuzhiyun */
4024*4882a593Smuzhiyun attempt_restore_of_faulty_devices(rs);
4025*4882a593Smuzhiyun }
4026*4882a593Smuzhiyun
4027*4882a593Smuzhiyun if (test_and_clear_bit(RT_FLAG_RS_SUSPENDED, &rs->runtime_flags)) {
4028*4882a593Smuzhiyun /* Only reduce raid set size before running a disk removing reshape. */
4029*4882a593Smuzhiyun if (mddev->delta_disks < 0)
4030*4882a593Smuzhiyun rs_set_capacity(rs);
4031*4882a593Smuzhiyun
4032*4882a593Smuzhiyun mddev_lock_nointr(mddev);
4033*4882a593Smuzhiyun clear_bit(MD_RECOVERY_FROZEN, &mddev->recovery);
4034*4882a593Smuzhiyun mddev->ro = 0;
4035*4882a593Smuzhiyun mddev->in_sync = 0;
4036*4882a593Smuzhiyun mddev_resume(mddev);
4037*4882a593Smuzhiyun mddev_unlock(mddev);
4038*4882a593Smuzhiyun }
4039*4882a593Smuzhiyun }
4040*4882a593Smuzhiyun
4041*4882a593Smuzhiyun static struct target_type raid_target = {
4042*4882a593Smuzhiyun .name = "raid",
4043*4882a593Smuzhiyun .version = {1, 15, 1},
4044*4882a593Smuzhiyun .module = THIS_MODULE,
4045*4882a593Smuzhiyun .ctr = raid_ctr,
4046*4882a593Smuzhiyun .dtr = raid_dtr,
4047*4882a593Smuzhiyun .map = raid_map,
4048*4882a593Smuzhiyun .status = raid_status,
4049*4882a593Smuzhiyun .message = raid_message,
4050*4882a593Smuzhiyun .iterate_devices = raid_iterate_devices,
4051*4882a593Smuzhiyun .io_hints = raid_io_hints,
4052*4882a593Smuzhiyun .postsuspend = raid_postsuspend,
4053*4882a593Smuzhiyun .preresume = raid_preresume,
4054*4882a593Smuzhiyun .resume = raid_resume,
4055*4882a593Smuzhiyun };
4056*4882a593Smuzhiyun
dm_raid_init(void)4057*4882a593Smuzhiyun static int __init dm_raid_init(void)
4058*4882a593Smuzhiyun {
4059*4882a593Smuzhiyun DMINFO("Loading target version %u.%u.%u",
4060*4882a593Smuzhiyun raid_target.version[0],
4061*4882a593Smuzhiyun raid_target.version[1],
4062*4882a593Smuzhiyun raid_target.version[2]);
4063*4882a593Smuzhiyun return dm_register_target(&raid_target);
4064*4882a593Smuzhiyun }
4065*4882a593Smuzhiyun
dm_raid_exit(void)4066*4882a593Smuzhiyun static void __exit dm_raid_exit(void)
4067*4882a593Smuzhiyun {
4068*4882a593Smuzhiyun dm_unregister_target(&raid_target);
4069*4882a593Smuzhiyun }
4070*4882a593Smuzhiyun
4071*4882a593Smuzhiyun module_init(dm_raid_init);
4072*4882a593Smuzhiyun module_exit(dm_raid_exit);
4073*4882a593Smuzhiyun
4074*4882a593Smuzhiyun module_param(devices_handle_discard_safely, bool, 0644);
4075*4882a593Smuzhiyun MODULE_PARM_DESC(devices_handle_discard_safely,
4076*4882a593Smuzhiyun "Set to Y if all devices in each array reliably return zeroes on reads from discarded regions");
4077*4882a593Smuzhiyun
4078*4882a593Smuzhiyun MODULE_DESCRIPTION(DM_NAME " raid0/1/10/4/5/6 target");
4079*4882a593Smuzhiyun MODULE_ALIAS("dm-raid0");
4080*4882a593Smuzhiyun MODULE_ALIAS("dm-raid1");
4081*4882a593Smuzhiyun MODULE_ALIAS("dm-raid10");
4082*4882a593Smuzhiyun MODULE_ALIAS("dm-raid4");
4083*4882a593Smuzhiyun MODULE_ALIAS("dm-raid5");
4084*4882a593Smuzhiyun MODULE_ALIAS("dm-raid6");
4085*4882a593Smuzhiyun MODULE_AUTHOR("Neil Brown <dm-devel@redhat.com>");
4086*4882a593Smuzhiyun MODULE_AUTHOR("Heinz Mauelshagen <dm-devel@redhat.com>");
4087*4882a593Smuzhiyun MODULE_LICENSE("GPL");
4088