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Linus Torvalds1da177e2005-04-16 15:20:36 -07001#ifndef _RAID5_H
2#define _RAID5_H
3
Linus Torvalds1da177e2005-04-16 15:20:36 -07004#include <linux/raid/xor.h>
Dan Williamsad283ea2009-08-29 19:09:26 -07005#include <linux/dmaengine.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -07006
7/*
8 *
NeilBrownc4c16632011-07-26 11:34:20 +10009 * Each stripe contains one buffer per device. Each buffer can be in
Linus Torvalds1da177e2005-04-16 15:20:36 -070010 * one of a number of states stored in "flags". Changes between
NeilBrownc4c16632011-07-26 11:34:20 +100011 * these states happen *almost* exclusively under the protection of the
12 * STRIPE_ACTIVE flag. Some very specific changes can happen in bi_end_io, and
13 * these are not protected by STRIPE_ACTIVE.
Linus Torvalds1da177e2005-04-16 15:20:36 -070014 *
15 * The flag bits that are used to represent these states are:
16 * R5_UPTODATE and R5_LOCKED
17 *
18 * State Empty == !UPTODATE, !LOCK
19 * We have no data, and there is no active request
20 * State Want == !UPTODATE, LOCK
21 * A read request is being submitted for this block
22 * State Dirty == UPTODATE, LOCK
23 * Some new data is in this buffer, and it is being written out
24 * State Clean == UPTODATE, !LOCK
25 * We have valid data which is the same as on disc
26 *
27 * The possible state transitions are:
28 *
29 * Empty -> Want - on read or write to get old data for parity calc
NeilBrownede7ee82011-12-23 10:17:52 +110030 * Empty -> Dirty - on compute_parity to satisfy write/sync request.
Linus Torvalds1da177e2005-04-16 15:20:36 -070031 * Empty -> Clean - on compute_block when computing a block for failed drive
32 * Want -> Empty - on failed read
33 * Want -> Clean - on successful completion of read request
34 * Dirty -> Clean - on successful completion of write request
35 * Dirty -> Clean - on failed write
36 * Clean -> Dirty - on compute_parity to satisfy write/sync (RECONSTRUCT or RMW)
37 *
38 * The Want->Empty, Want->Clean, Dirty->Clean, transitions
39 * all happen in b_end_io at interrupt time.
40 * Each sets the Uptodate bit before releasing the Lock bit.
41 * This leaves one multi-stage transition:
42 * Want->Dirty->Clean
43 * This is safe because thinking that a Clean buffer is actually dirty
44 * will at worst delay some action, and the stripe will be scheduled
45 * for attention after the transition is complete.
46 *
47 * There is one possibility that is not covered by these states. That
48 * is if one drive has failed and there is a spare being rebuilt. We
49 * can't distinguish between a clean block that has been generated
50 * from parity calculations, and a clean block that has been
51 * successfully written to the spare ( or to parity when resyncing).
Michael Opdenackeraa5e5dc2013-09-18 06:00:43 +020052 * To distinguish these states we have a stripe bit STRIPE_INSYNC that
Linus Torvalds1da177e2005-04-16 15:20:36 -070053 * is set whenever a write is scheduled to the spare, or to the parity
54 * disc if there is no spare. A sync request clears this bit, and
55 * when we find it set with no buffers locked, we know the sync is
56 * complete.
57 *
58 * Buffers for the md device that arrive via make_request are attached
59 * to the appropriate stripe in one of two lists linked on b_reqnext.
60 * One list (bh_read) for read requests, one (bh_write) for write.
61 * There should never be more than one buffer on the two lists
62 * together, but we are not guaranteed of that so we allow for more.
63 *
64 * If a buffer is on the read list when the associated cache buffer is
65 * Uptodate, the data is copied into the read buffer and it's b_end_io
66 * routine is called. This may happen in the end_request routine only
67 * if the buffer has just successfully been read. end_request should
68 * remove the buffers from the list and then set the Uptodate bit on
69 * the buffer. Other threads may do this only if they first check
70 * that the Uptodate bit is set. Once they have checked that they may
71 * take buffers off the read queue.
72 *
73 * When a buffer on the write list is committed for write it is copied
74 * into the cache buffer, which is then marked dirty, and moved onto a
75 * third list, the written list (bh_written). Once both the parity
76 * block and the cached buffer are successfully written, any buffer on
77 * a written list can be returned with b_end_io.
78 *
NeilBrownc4c16632011-07-26 11:34:20 +100079 * The write list and read list both act as fifos. The read list,
80 * write list and written list are protected by the device_lock.
81 * The device_lock is only for list manipulations and will only be
82 * held for a very short time. It can be claimed from interrupts.
Linus Torvalds1da177e2005-04-16 15:20:36 -070083 *
84 *
85 * Stripes in the stripe cache can be on one of two lists (or on
86 * neither). The "inactive_list" contains stripes which are not
87 * currently being used for any request. They can freely be reused
88 * for another stripe. The "handle_list" contains stripes that need
89 * to be handled in some way. Both of these are fifo queues. Each
90 * stripe is also (potentially) linked to a hash bucket in the hash
91 * table so that it can be found by sector number. Stripes that are
92 * not hashed must be on the inactive_list, and will normally be at
93 * the front. All stripes start life this way.
94 *
95 * The inactive_list, handle_list and hash bucket lists are all protected by the
96 * device_lock.
Linus Torvalds1da177e2005-04-16 15:20:36 -070097 * - stripes have a reference counter. If count==0, they are on a list.
98 * - If a stripe might need handling, STRIPE_HANDLE is set.
99 * - When refcount reaches zero, then if STRIPE_HANDLE it is put on
100 * handle_list else inactive_list
101 *
102 * This, combined with the fact that STRIPE_HANDLE is only ever
103 * cleared while a stripe has a non-zero count means that if the
104 * refcount is 0 and STRIPE_HANDLE is set, then it is on the
105 * handle_list and if recount is 0 and STRIPE_HANDLE is not set, then
106 * the stripe is on inactive_list.
107 *
108 * The possible transitions are:
109 * activate an unhashed/inactive stripe (get_active_stripe())
110 * lockdev check-hash unlink-stripe cnt++ clean-stripe hash-stripe unlockdev
111 * activate a hashed, possibly active stripe (get_active_stripe())
112 * lockdev check-hash if(!cnt++)unlink-stripe unlockdev
113 * attach a request to an active stripe (add_stripe_bh())
114 * lockdev attach-buffer unlockdev
115 * handle a stripe (handle_stripe())
NeilBrownc4c16632011-07-26 11:34:20 +1000116 * setSTRIPE_ACTIVE, clrSTRIPE_HANDLE ...
Dan Williams91c00922007-01-02 13:52:30 -0700117 * (lockdev check-buffers unlockdev) ..
118 * change-state ..
NeilBrownc4c16632011-07-26 11:34:20 +1000119 * record io/ops needed clearSTRIPE_ACTIVE schedule io/ops
Linus Torvalds1da177e2005-04-16 15:20:36 -0700120 * release an active stripe (release_stripe())
121 * lockdev if (!--cnt) { if STRIPE_HANDLE, add to handle_list else add to inactive-list } unlockdev
122 *
123 * The refcount counts each thread that have activated the stripe,
124 * plus raid5d if it is handling it, plus one for each active request
Dan Williams91c00922007-01-02 13:52:30 -0700125 * on a cached buffer, and plus one if the stripe is undergoing stripe
126 * operations.
127 *
NeilBrownc4c16632011-07-26 11:34:20 +1000128 * The stripe operations are:
Dan Williams91c00922007-01-02 13:52:30 -0700129 * -copying data between the stripe cache and user application buffers
130 * -computing blocks to save a disk access, or to recover a missing block
131 * -updating the parity on a write operation (reconstruct write and
132 * read-modify-write)
133 * -checking parity correctness
134 * -running i/o to disk
135 * These operations are carried out by raid5_run_ops which uses the async_tx
136 * api to (optionally) offload operations to dedicated hardware engines.
137 * When requesting an operation handle_stripe sets the pending bit for the
138 * operation and increments the count. raid5_run_ops is then run whenever
139 * the count is non-zero.
140 * There are some critical dependencies between the operations that prevent some
141 * from being requested while another is in flight.
142 * 1/ Parity check operations destroy the in cache version of the parity block,
143 * so we prevent parity dependent operations like writes and compute_blocks
144 * from starting while a check is in progress. Some dma engines can perform
145 * the check without damaging the parity block, in these cases the parity
146 * block is re-marked up to date (assuming the check was successful) and is
147 * not re-read from disk.
148 * 2/ When a write operation is requested we immediately lock the affected
149 * blocks, and mark them as not up to date. This causes new read requests
150 * to be held off, as well as parity checks and compute block operations.
151 * 3/ Once a compute block operation has been requested handle_stripe treats
152 * that block as if it is up to date. raid5_run_ops guaruntees that any
153 * operation that is dependent on the compute block result is initiated after
154 * the compute block completes.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700155 */
156
Dan Williamsecc65c92008-06-28 08:31:57 +1000157/*
NeilBrownf72ffdd2014-09-30 14:23:59 +1000158 * Operations state - intermediate states that are visible outside of
NeilBrownc4c16632011-07-26 11:34:20 +1000159 * STRIPE_ACTIVE.
Dan Williamsecc65c92008-06-28 08:31:57 +1000160 * In general _idle indicates nothing is running, _run indicates a data
161 * processing operation is active, and _result means the data processing result
162 * is stable and can be acted upon. For simple operations like biofill and
163 * compute that only have an _idle and _run state they are indicated with
164 * sh->state flags (STRIPE_BIOFILL_RUN and STRIPE_COMPUTE_RUN)
165 */
166/**
167 * enum check_states - handles syncing / repairing a stripe
168 * @check_state_idle - check operations are quiesced
169 * @check_state_run - check operation is running
170 * @check_state_result - set outside lock when check result is valid
171 * @check_state_compute_run - check failed and we are repairing
172 * @check_state_compute_result - set outside lock when compute result is valid
173 */
174enum check_states {
175 check_state_idle = 0,
Dan Williamsac6b53b2009-07-14 13:40:19 -0700176 check_state_run, /* xor parity check */
177 check_state_run_q, /* q-parity check */
178 check_state_run_pq, /* pq dual parity check */
Dan Williamsecc65c92008-06-28 08:31:57 +1000179 check_state_check_result,
180 check_state_compute_run, /* parity repair */
181 check_state_compute_result,
182};
183
184/**
185 * enum reconstruct_states - handles writing or expanding a stripe
186 */
187enum reconstruct_states {
188 reconstruct_state_idle = 0,
Dan Williamsd8ee0722008-06-28 08:32:06 +1000189 reconstruct_state_prexor_drain_run, /* prexor-write */
Dan Williamsecc65c92008-06-28 08:31:57 +1000190 reconstruct_state_drain_run, /* write */
191 reconstruct_state_run, /* expand */
Dan Williamsd8ee0722008-06-28 08:32:06 +1000192 reconstruct_state_prexor_drain_result,
Dan Williamsecc65c92008-06-28 08:31:57 +1000193 reconstruct_state_drain_result,
194 reconstruct_state_result,
195};
196
Linus Torvalds1da177e2005-04-16 15:20:36 -0700197struct stripe_head {
NeilBrownfccddba2006-01-06 00:20:33 -0800198 struct hlist_node hash;
NeilBrownd0dabf72009-03-31 14:39:38 +1100199 struct list_head lru; /* inactive_list or handle_list */
Shaohua Li773ca822013-08-27 17:50:39 +0800200 struct llist_node release_list;
NeilBrownd1688a62011-10-11 16:49:52 +1100201 struct r5conf *raid_conf;
NeilBrown86b42c72009-03-31 15:19:03 +1100202 short generation; /* increments with every
203 * reshape */
NeilBrownd0dabf72009-03-31 14:39:38 +1100204 sector_t sector; /* sector of this row */
205 short pd_idx; /* parity disk index */
206 short qd_idx; /* 'Q' disk index for raid6 */
NeilBrown67cc2b82009-03-31 14:39:38 +1100207 short ddf_layout;/* use DDF ordering to calculate Q */
Shaohua Li566c09c2013-11-14 15:16:17 +1100208 short hash_lock_index;
NeilBrownd0dabf72009-03-31 14:39:38 +1100209 unsigned long state; /* state flags */
210 atomic_t count; /* nr of active thread/requests */
NeilBrown72626682005-09-09 16:23:54 -0700211 int bm_seq; /* sequence number for bitmap flushes */
NeilBrownd0dabf72009-03-31 14:39:38 +1100212 int disks; /* disks in stripe */
shli@kernel.org7a87f432014-12-15 12:57:03 +1100213 int overwrite_disks; /* total overwrite disks in stripe,
214 * this is only checked when stripe
215 * has STRIPE_BATCH_READY
216 */
Dan Williamsecc65c92008-06-28 08:31:57 +1000217 enum check_states check_state;
Dan Williams600aa102008-06-28 08:32:05 +1000218 enum reconstruct_states reconstruct_state;
Shaohua Lib17459c2012-07-19 16:01:31 +1000219 spinlock_t stripe_lock;
Shaohua Li851c30c2013-08-28 14:30:16 +0800220 int cpu;
Shaohua Libfc90cb2013-08-29 15:40:32 +0800221 struct r5worker_group *group;
shli@kernel.org59fc6302014-12-15 12:57:03 +1100222
223 struct stripe_head *batch_head; /* protected by stripe lock */
224 spinlock_t batch_lock; /* only header's lock is useful */
225 struct list_head batch_list; /* protected by head's batch lock*/
Shaohua Lif6bed0e2015-08-13 14:31:59 -0700226
227 struct r5l_io_unit *log_io;
228 struct list_head log_list;
Dan Williams417b8d42009-10-16 16:25:22 +1100229 /**
230 * struct stripe_operations
Dan Williams91c00922007-01-02 13:52:30 -0700231 * @target - STRIPE_OP_COMPUTE_BLK target
Dan Williams417b8d42009-10-16 16:25:22 +1100232 * @target2 - 2nd compute target in the raid6 case
233 * @zero_sum_result - P and Q verification flags
234 * @request - async service request flags for raid_run_ops
Dan Williams91c00922007-01-02 13:52:30 -0700235 */
236 struct stripe_operations {
Dan Williamsac6b53b2009-07-14 13:40:19 -0700237 int target, target2;
Dan Williamsad283ea2009-08-29 19:09:26 -0700238 enum sum_check_flags zero_sum_result;
Dan Williams91c00922007-01-02 13:52:30 -0700239 } ops;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700240 struct r5dev {
NeilBrown671488c2011-12-23 10:17:52 +1100241 /* rreq and rvec are used for the replacement device when
242 * writing data to both devices.
243 */
244 struct bio req, rreq;
245 struct bio_vec vec, rvec;
Shaohua Lid592a992014-05-21 17:57:44 +0800246 struct page *page, *orig_page;
Dan Williams91c00922007-01-02 13:52:30 -0700247 struct bio *toread, *read, *towrite, *written;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700248 sector_t sector; /* sector of this page */
249 unsigned long flags;
Shaohua Lif6bed0e2015-08-13 14:31:59 -0700250 u32 log_checksum;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700251 } dev[1]; /* allocated with extra space depending of RAID geometry */
252};
Dan Williamsa4456852007-07-09 11:56:43 -0700253
254/* stripe_head_state - collects and tracks the dynamic state of a stripe_head
NeilBrownc4c16632011-07-26 11:34:20 +1000255 * for handle_stripe.
Dan Williamsa4456852007-07-09 11:56:43 -0700256 */
257struct stripe_head_state {
NeilBrown9a3e1102011-12-23 10:17:53 +1100258 /* 'syncing' means that we need to read all devices, either
259 * to check/correct parity, or to reconstruct a missing device.
260 * 'replacing' means we are replacing one or more drives and
261 * the source is valid at this point so we don't need to
262 * read all devices, just the replacement targets.
263 */
264 int syncing, expanding, expanded, replacing;
Dan Williamsa4456852007-07-09 11:56:43 -0700265 int locked, uptodate, to_read, to_write, failed, written;
Dan Williamsb5e98d62007-01-02 13:52:31 -0700266 int to_fill, compute, req_compute, non_overwrite;
Song Liu1e6d6902016-11-17 15:24:39 -0800267 int injournal, just_cached;
NeilBrownf2b3b442011-07-26 11:35:19 +1000268 int failed_num[2];
NeilBrownf2b3b442011-07-26 11:35:19 +1000269 int p_failed, q_failed;
NeilBrownc5709ef2011-07-26 11:35:20 +1000270 int dec_preread_active;
271 unsigned long ops_request;
272
NeilBrown34a6f802015-08-14 12:07:57 +1000273 struct bio_list return_bi;
NeilBrown3cb03002011-10-11 16:45:26 +1100274 struct md_rdev *blocked_rdev;
NeilBrownbc2607f2011-07-28 11:39:22 +1000275 int handle_bad_blocks;
Shaohua Li6e74a9c2015-10-08 21:54:08 -0700276 int log_failed;
Dan Williamsa4456852007-07-09 11:56:43 -0700277};
278
NeilBrown671488c2011-12-23 10:17:52 +1100279/* Flags for struct r5dev.flags */
280enum r5dev_flags {
281 R5_UPTODATE, /* page contains current data */
282 R5_LOCKED, /* IO has been submitted on "req" */
NeilBrown977df362011-12-23 10:17:53 +1100283 R5_DOUBLE_LOCKED,/* Cannot clear R5_LOCKED until 2 writes complete */
NeilBrown671488c2011-12-23 10:17:52 +1100284 R5_OVERWRITE, /* towrite covers whole page */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700285/* and some that are internal to handle_stripe */
NeilBrown671488c2011-12-23 10:17:52 +1100286 R5_Insync, /* rdev && rdev->in_sync at start */
287 R5_Wantread, /* want to schedule a read */
288 R5_Wantwrite,
289 R5_Overlap, /* There is a pending overlapping request
290 * on this block */
majianpeng3f9e7c12012-07-31 10:04:21 +1000291 R5_ReadNoMerge, /* prevent bio from merging in block-layer */
NeilBrown671488c2011-12-23 10:17:52 +1100292 R5_ReadError, /* seen a read error here recently */
293 R5_ReWrite, /* have tried to over-write the readerror */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700294
NeilBrown671488c2011-12-23 10:17:52 +1100295 R5_Expanded, /* This block now has post-expand data */
296 R5_Wantcompute, /* compute_block in progress treat as
297 * uptodate
298 */
299 R5_Wantfill, /* dev->toread contains a bio that needs
300 * filling
301 */
302 R5_Wantdrain, /* dev->towrite needs to be drained */
303 R5_WantFUA, /* Write should be FUA */
Shaohua Libc0934f2012-05-22 13:55:05 +1000304 R5_SyncIO, /* The IO is sync */
NeilBrown671488c2011-12-23 10:17:52 +1100305 R5_WriteError, /* got a write error - need to record it */
306 R5_MadeGood, /* A bad block has been fixed by writing to it */
307 R5_ReadRepl, /* Will/did read from replacement rather than orig */
308 R5_MadeGoodRepl,/* A bad block on the replacement device has been
309 * fixed by writing to it */
NeilBrown9a3e1102011-12-23 10:17:53 +1100310 R5_NeedReplace, /* This device has a replacement which is not
311 * up-to-date at this stripe. */
312 R5_WantReplace, /* We need to update the replacement, we have read
313 * data in, and now is a good time to write it out.
314 */
Shaohua Li620125f2012-10-11 13:49:05 +1100315 R5_Discard, /* Discard the stripe */
Shaohua Lid592a992014-05-21 17:57:44 +0800316 R5_SkipCopy, /* Don't copy data from bio to stripe cache */
Song Liu2ded3702016-11-17 15:24:38 -0800317 R5_InJournal, /* data being written is in the journal device.
318 * if R5_InJournal is set for parity pd_idx, all the
319 * data and parity being written are in the journal
320 * device
321 */
NeilBrown671488c2011-12-23 10:17:52 +1100322};
Linus Torvalds1da177e2005-04-16 15:20:36 -0700323
324/*
325 * Stripe state
326 */
NeilBrown83206d62011-07-26 11:19:49 +1000327enum {
NeilBrownc4c16632011-07-26 11:34:20 +1000328 STRIPE_ACTIVE,
NeilBrown83206d62011-07-26 11:19:49 +1000329 STRIPE_HANDLE,
330 STRIPE_SYNC_REQUESTED,
331 STRIPE_SYNCING,
332 STRIPE_INSYNC,
NeilBrownf94c0b62013-07-22 12:57:21 +1000333 STRIPE_REPLACED,
NeilBrown83206d62011-07-26 11:19:49 +1000334 STRIPE_PREREAD_ACTIVE,
335 STRIPE_DELAYED,
336 STRIPE_DEGRADED,
337 STRIPE_BIT_DELAY,
338 STRIPE_EXPANDING,
339 STRIPE_EXPAND_SOURCE,
340 STRIPE_EXPAND_READY,
341 STRIPE_IO_STARTED, /* do not count towards 'bypass_count' */
342 STRIPE_FULL_WRITE, /* all blocks are set to be overwritten */
343 STRIPE_BIOFILL_RUN,
344 STRIPE_COMPUTE_RUN,
345 STRIPE_OPS_REQ_PENDING,
Shaohua Li8811b592012-08-02 08:33:00 +1000346 STRIPE_ON_UNPLUG_LIST,
NeilBrownf8dfcff2013-03-12 12:18:06 +1100347 STRIPE_DISCARD,
Shaohua Li773ca822013-08-27 17:50:39 +0800348 STRIPE_ON_RELEASE_LIST,
shli@kernel.orgda41ba62014-12-15 12:57:03 +1100349 STRIPE_BATCH_READY,
shli@kernel.org72ac7332014-12-15 12:57:03 +1100350 STRIPE_BATCH_ERR,
NeilBrownd0852df52015-05-27 08:43:45 +1000351 STRIPE_BITMAP_PENDING, /* Being added to bitmap, don't add
352 * to batch yet.
353 */
Song Liu2ded3702016-11-17 15:24:38 -0800354 STRIPE_LOG_TRAPPED, /* trapped into log (see raid5-cache.c)
355 * this bit is used in two scenarios:
356 *
357 * 1. write-out phase
358 * set in first entry of r5l_write_stripe
359 * clear in second entry of r5l_write_stripe
360 * used to bypass logic in handle_stripe
361 *
362 * 2. caching phase
363 * set in r5c_try_caching_write()
364 * clear when journal write is done
365 * used to initiate r5c_cache_data()
366 * also used to bypass logic in handle_stripe
367 */
368 STRIPE_R5C_CACHING, /* the stripe is in caching phase
369 * see more detail in the raid5-cache.c
370 */
Song Liu1e6d6902016-11-17 15:24:39 -0800371 STRIPE_R5C_PARTIAL_STRIPE, /* in r5c cache (to-be/being handled or
372 * in conf->r5c_partial_stripe_list)
373 */
374 STRIPE_R5C_FULL_STRIPE, /* in r5c cache (to-be/being handled or
375 * in conf->r5c_full_stripe_list)
376 */
NeilBrown83206d62011-07-26 11:19:49 +1000377};
Dan Williams417b8d42009-10-16 16:25:22 +1100378
NeilBrown1b956f72015-05-21 12:40:26 +1000379#define STRIPE_EXPAND_SYNC_FLAGS \
shli@kernel.orgdabc4ec2014-12-15 12:57:04 +1100380 ((1 << STRIPE_EXPAND_SOURCE) |\
381 (1 << STRIPE_EXPAND_READY) |\
382 (1 << STRIPE_EXPANDING) |\
383 (1 << STRIPE_SYNC_REQUESTED))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700384/*
Dan Williamsecc65c92008-06-28 08:31:57 +1000385 * Operation request flags
Dan Williams91c00922007-01-02 13:52:30 -0700386 */
NeilBrownede7ee82011-12-23 10:17:52 +1100387enum {
388 STRIPE_OP_BIOFILL,
389 STRIPE_OP_COMPUTE_BLK,
390 STRIPE_OP_PREXOR,
391 STRIPE_OP_BIODRAIN,
392 STRIPE_OP_RECONSTRUCT,
393 STRIPE_OP_CHECK,
394};
Markus Stockhausen584acdd2014-12-15 12:57:05 +1100395
396/*
397 * RAID parity calculation preferences
398 */
399enum {
400 PARITY_DISABLE_RMW = 0,
401 PARITY_ENABLE_RMW,
Markus Stockhausend06f1912014-12-15 12:57:05 +1100402 PARITY_PREFER_RMW,
Markus Stockhausen584acdd2014-12-15 12:57:05 +1100403};
404
405/*
406 * Pages requested from set_syndrome_sources()
407 */
408enum {
409 SYNDROME_SRC_ALL,
410 SYNDROME_SRC_WANT_DRAIN,
411 SYNDROME_SRC_WRITTEN,
412};
Dan Williams91c00922007-01-02 13:52:30 -0700413/*
Linus Torvalds1da177e2005-04-16 15:20:36 -0700414 * Plugging:
415 *
416 * To improve write throughput, we need to delay the handling of some
417 * stripes until there has been a chance that several write requests
418 * for the one stripe have all been collected.
419 * In particular, any write request that would require pre-reading
420 * is put on a "delayed" queue until there are no stripes currently
421 * in a pre-read phase. Further, if the "delayed" queue is empty when
422 * a stripe is put on it then we "plug" the queue and do not process it
423 * until an unplug call is made. (the unplug_io_fn() is called).
424 *
425 * When preread is initiated on a stripe, we set PREREAD_ACTIVE and add
426 * it to the count of prereading stripes.
427 * When write is initiated, or the stripe refcnt == 0 (just in case) we
428 * clear the PREREAD_ACTIVE flag and decrement the count
NeilBrownb5c124a2006-10-03 01:15:45 -0700429 * Whenever the 'handle' queue is empty and the device is not plugged, we
430 * move any strips from delayed to handle and clear the DELAYED flag and set
431 * PREREAD_ACTIVE.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700432 * In stripe_handle, if we find pre-reading is necessary, we do it if
433 * PREREAD_ACTIVE is set, else we set DELAYED which will send it to the delayed queue.
NeilBrownc4c16632011-07-26 11:34:20 +1000434 * HANDLE gets cleared if stripe_handle leaves nothing locked.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700435 */
Christoph Hellwigef740c32009-03-31 14:27:03 +1100436
Linus Torvalds1da177e2005-04-16 15:20:36 -0700437struct disk_info {
NeilBrown671488c2011-12-23 10:17:52 +1100438 struct md_rdev *rdev, *replacement;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700439};
440
Song Liu937621c2016-11-17 15:24:37 -0800441/*
442 * Stripe cache
443 */
444
445#define NR_STRIPES 256
446#define STRIPE_SIZE PAGE_SIZE
447#define STRIPE_SHIFT (PAGE_SHIFT - 9)
448#define STRIPE_SECTORS (STRIPE_SIZE>>9)
449#define IO_THRESHOLD 1
450#define BYPASS_THRESHOLD 1
451#define NR_HASH (PAGE_SIZE / sizeof(struct hlist_head))
452#define HASH_MASK (NR_HASH - 1)
453#define MAX_STRIPE_BATCH 8
454
455/* bio's attached to a stripe+device for I/O are linked together in bi_sector
456 * order without overlap. There may be several bio's per stripe+device, and
457 * a bio could span several devices.
458 * When walking this list for a particular stripe+device, we must never proceed
459 * beyond a bio that extends past this device, as the next bio might no longer
460 * be valid.
461 * This function is used to determine the 'next' bio in the list, given the
462 * sector of the current stripe+device
463 */
464static inline struct bio *r5_next_bio(struct bio *bio, sector_t sector)
465{
466 int sectors = bio_sectors(bio);
467
468 if (bio->bi_iter.bi_sector + sectors < sector + STRIPE_SECTORS)
469 return bio->bi_next;
470 else
471 return NULL;
472}
473
474/*
475 * We maintain a biased count of active stripes in the bottom 16 bits of
476 * bi_phys_segments, and a count of processed stripes in the upper 16 bits
477 */
478static inline int raid5_bi_processed_stripes(struct bio *bio)
479{
480 atomic_t *segments = (atomic_t *)&bio->bi_phys_segments;
481
482 return (atomic_read(segments) >> 16) & 0xffff;
483}
484
485static inline int raid5_dec_bi_active_stripes(struct bio *bio)
486{
487 atomic_t *segments = (atomic_t *)&bio->bi_phys_segments;
488
489 return atomic_sub_return(1, segments) & 0xffff;
490}
491
492static inline void raid5_inc_bi_active_stripes(struct bio *bio)
493{
494 atomic_t *segments = (atomic_t *)&bio->bi_phys_segments;
495
496 atomic_inc(segments);
497}
498
499static inline void raid5_set_bi_processed_stripes(struct bio *bio,
500 unsigned int cnt)
501{
502 atomic_t *segments = (atomic_t *)&bio->bi_phys_segments;
503 int old, new;
504
505 do {
506 old = atomic_read(segments);
507 new = (old & 0xffff) | (cnt << 16);
508 } while (atomic_cmpxchg(segments, old, new) != old);
509}
510
511static inline void raid5_set_bi_stripes(struct bio *bio, unsigned int cnt)
512{
513 atomic_t *segments = (atomic_t *)&bio->bi_phys_segments;
514
515 atomic_set(segments, cnt);
516}
517
Shaohua Li566c09c2013-11-14 15:16:17 +1100518/* NOTE NR_STRIPE_HASH_LOCKS must remain below 64.
519 * This is because we sometimes take all the spinlocks
520 * and creating that much locking depth can cause
521 * problems.
522 */
523#define NR_STRIPE_HASH_LOCKS 8
524#define STRIPE_HASH_LOCKS_MASK (NR_STRIPE_HASH_LOCKS - 1)
525
Shaohua Li851c30c2013-08-28 14:30:16 +0800526struct r5worker {
527 struct work_struct work;
528 struct r5worker_group *group;
Shaohua Li566c09c2013-11-14 15:16:17 +1100529 struct list_head temp_inactive_list[NR_STRIPE_HASH_LOCKS];
Shaohua Libfc90cb2013-08-29 15:40:32 +0800530 bool working;
Shaohua Li851c30c2013-08-28 14:30:16 +0800531};
532
533struct r5worker_group {
534 struct list_head handle_list;
535 struct r5conf *conf;
536 struct r5worker *workers;
Shaohua Libfc90cb2013-08-29 15:40:32 +0800537 int stripes_cnt;
Shaohua Li851c30c2013-08-28 14:30:16 +0800538};
539
NeilBrownd1688a62011-10-11 16:49:52 +1100540struct r5conf {
NeilBrownfccddba2006-01-06 00:20:33 -0800541 struct hlist_head *stripe_hashtbl;
Shaohua Li566c09c2013-11-14 15:16:17 +1100542 /* only protect corresponding hash list and inactive_list */
543 spinlock_t hash_locks[NR_STRIPE_HASH_LOCKS];
NeilBrownfd01b882011-10-11 16:47:53 +1100544 struct mddev *mddev;
Andre Noll09c9e5f2009-06-18 08:45:55 +1000545 int chunk_sectors;
Markus Stockhausen584acdd2014-12-15 12:57:05 +1100546 int level, algorithm, rmw_level;
NeilBrown16a53ec2006-06-26 00:27:38 -0700547 int max_degraded;
NeilBrown02c2de82006-10-03 01:15:47 -0700548 int raid_disks;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700549 int max_nr_stripes;
NeilBrownedbe83a2015-02-26 12:47:56 +1100550 int min_nr_stripes;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700551
NeilBrownfef9c612009-03-31 15:16:46 +1100552 /* reshape_progress is the leading edge of a 'reshape'
553 * It has value MaxSector when no reshape is happening
554 * If delta_disks < 0, it is the last sector we started work on,
555 * else is it the next sector to work on.
556 */
557 sector_t reshape_progress;
558 /* reshape_safe is the trailing edge of a reshape. We know that
559 * before (or after) this address, all reshape has completed.
560 */
561 sector_t reshape_safe;
NeilBrown7ecaa1e2006-03-27 01:18:08 -0800562 int previous_raid_disks;
Andre Noll09c9e5f2009-06-18 08:45:55 +1000563 int prev_chunk_sectors;
564 int prev_algo;
NeilBrown86b42c72009-03-31 15:19:03 +1100565 short generation; /* increments with every reshape */
NeilBrownc46501b2013-08-27 15:52:13 +1000566 seqcount_t gen_lock; /* lock against generation changes */
NeilBrownc8f517c2009-03-31 15:28:40 +1100567 unsigned long reshape_checkpoint; /* Time we last updated
568 * metadata */
NeilBrownb5254dd2012-05-21 09:27:01 +1000569 long long min_offset_diff; /* minimum difference between
570 * data_offset and
571 * new_data_offset across all
572 * devices. May be negative,
573 * but is closest to zero.
574 */
NeilBrown7ecaa1e2006-03-27 01:18:08 -0800575
Linus Torvalds1da177e2005-04-16 15:20:36 -0700576 struct list_head handle_list; /* stripes needing handling */
Dan Williams8b3e6cd2008-04-28 02:15:53 -0700577 struct list_head hold_list; /* preread ready stripes */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700578 struct list_head delayed_list; /* stripes that have plugged requests */
NeilBrown72626682005-09-09 16:23:54 -0700579 struct list_head bitmap_list; /* stripes delaying awaiting bitmap update */
Raz Ben-Jehuda(caro)46031f92006-12-10 02:20:47 -0800580 struct bio *retry_read_aligned; /* currently retrying aligned bios */
581 struct bio *retry_read_aligned_list; /* aligned bios retry list */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700582 atomic_t preread_active_stripes; /* stripes with scheduled io */
Raz Ben-Jehuda(caro)46031f92006-12-10 02:20:47 -0800583 atomic_t active_aligned_reads;
Dan Williams8b3e6cd2008-04-28 02:15:53 -0700584 atomic_t pending_full_writes; /* full write backlog */
585 int bypass_count; /* bypassed prereads */
586 int bypass_threshold; /* preread nice */
Shaohua Lid592a992014-05-21 17:57:44 +0800587 int skip_copy; /* Don't copy data from bio to stripe cache */
Dan Williams8b3e6cd2008-04-28 02:15:53 -0700588 struct list_head *last_hold; /* detect hold_list promotions */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700589
NeilBrownc3cce6c2015-08-14 12:47:33 +1000590 /* bios to have bi_end_io called after metadata is synced */
591 struct bio_list return_bi;
592
NeilBrownf6705572006-03-27 01:18:11 -0800593 atomic_t reshape_stripes; /* stripes with pending writes for reshape */
NeilBrownad01c9e2006-03-27 01:18:07 -0800594 /* unfortunately we need two cache names as we temporarily have
595 * two caches.
596 */
597 int active_name;
NeilBrownf4be6b42010-06-01 19:37:25 +1000598 char cache_name[2][32];
NeilBrown2d5b5692015-07-06 12:49:23 +1000599 struct kmem_cache *slab_cache; /* for allocating stripes */
600 struct mutex cache_size_mutex; /* Protect changes to cache size */
NeilBrown72626682005-09-09 16:23:54 -0700601
602 int seq_flush, seq_write;
603 int quiesce;
604
605 int fullsync; /* set to 1 if a full sync is needed,
606 * (fresh device added).
607 * Cleared when a sync completes.
608 */
NeilBrown7f0da592011-07-28 11:39:22 +1000609 int recovery_disabled;
Dan Williams36d1c642009-07-14 11:48:22 -0700610 /* per cpu variables */
611 struct raid5_percpu {
612 struct page *spare_page; /* Used when checking P/Q in raid6 */
shli@kernel.org46d5b782014-12-15 12:57:02 +1100613 struct flex_array *scribble; /* space for constructing buffer
Dan Williamsd6f38f32009-07-14 11:50:52 -0700614 * lists and performing address
615 * conversions
616 */
Tejun Heoa29d8b82010-02-02 14:39:15 +0900617 } __percpu *percpu;
Shaohua Li27a353c2016-02-24 17:38:28 -0800618 int scribble_disks;
619 int scribble_sectors;
Sebastian Andrzej Siewior29c6d1b2016-08-18 14:57:24 +0200620 struct hlist_node node;
NeilBrownca65b732006-01-06 00:20:17 -0800621
Linus Torvalds1da177e2005-04-16 15:20:36 -0700622 /*
623 * Free stripes pool
624 */
625 atomic_t active_stripes;
Shaohua Li566c09c2013-11-14 15:16:17 +1100626 struct list_head inactive_list[NR_STRIPE_HASH_LOCKS];
Song Liu1e6d6902016-11-17 15:24:39 -0800627
628 atomic_t r5c_cached_full_stripes;
629 struct list_head r5c_full_stripe_list;
630 atomic_t r5c_cached_partial_stripes;
631 struct list_head r5c_partial_stripe_list;
632
Shaohua Li4bda5562013-11-14 15:16:17 +1100633 atomic_t empty_inactive_list_nr;
Shaohua Li773ca822013-08-27 17:50:39 +0800634 struct llist_head released_stripes;
Yuanhan Liub1b46482015-05-08 18:19:06 +1000635 wait_queue_head_t wait_for_quiescent;
Shaohua Li6ab2a4b2016-02-25 16:24:42 -0800636 wait_queue_head_t wait_for_stripe;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700637 wait_queue_head_t wait_for_overlap;
NeilBrown54233992015-02-26 12:21:04 +1100638 unsigned long cache_state;
639#define R5_INACTIVE_BLOCKED 1 /* release of inactive stripes blocked,
640 * waiting for 25% to be free
641 */
NeilBrownedbe83a2015-02-26 12:47:56 +1100642#define R5_ALLOC_MORE 2 /* It might help to allocate another
643 * stripe.
644 */
645#define R5_DID_ALLOC 4 /* A stripe was allocated, don't allocate
646 * more until at least one has been
647 * released. This avoids flooding
648 * the cache.
649 */
650 struct shrinker shrinker;
NeilBrownad01c9e2006-03-27 01:18:07 -0800651 int pool_size; /* number of disks in stripeheads in pool */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700652 spinlock_t device_lock;
NeilBrownb55e6bf2006-03-27 01:18:06 -0800653 struct disk_info *disks;
NeilBrown91adb562009-03-31 14:39:39 +1100654
655 /* When taking over an array from a different personality, we store
656 * the new thread here until we fully activate the array.
657 */
NeilBrown2b8bf342011-10-11 16:48:23 +1100658 struct md_thread *thread;
Shaohua Li566c09c2013-11-14 15:16:17 +1100659 struct list_head temp_inactive_list[NR_STRIPE_HASH_LOCKS];
Shaohua Li851c30c2013-08-28 14:30:16 +0800660 struct r5worker_group *worker_groups;
661 int group_cnt;
662 int worker_cnt_per_group;
Shaohua Lif6bed0e2015-08-13 14:31:59 -0700663 struct r5l_log *log;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700664};
665
NeilBrown54233992015-02-26 12:21:04 +1100666
Linus Torvalds1da177e2005-04-16 15:20:36 -0700667/*
668 * Our supported algorithms
669 */
NeilBrown99c0fb52009-03-31 14:39:38 +1100670#define ALGORITHM_LEFT_ASYMMETRIC 0 /* Rotating Parity N with Data Restart */
671#define ALGORITHM_RIGHT_ASYMMETRIC 1 /* Rotating Parity 0 with Data Restart */
672#define ALGORITHM_LEFT_SYMMETRIC 2 /* Rotating Parity N with Data Continuation */
673#define ALGORITHM_RIGHT_SYMMETRIC 3 /* Rotating Parity 0 with Data Continuation */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700674
NeilBrown99c0fb52009-03-31 14:39:38 +1100675/* Define non-rotating (raid4) algorithms. These allow
676 * conversion of raid4 to raid5.
677 */
678#define ALGORITHM_PARITY_0 4 /* P or P,Q are initial devices */
679#define ALGORITHM_PARITY_N 5 /* P or P,Q are final devices. */
680
681/* DDF RAID6 layouts differ from md/raid6 layouts in two ways.
682 * Firstly, the exact positioning of the parity block is slightly
683 * different between the 'LEFT_*' modes of md and the "_N_*" modes
684 * of DDF.
685 * Secondly, or order of datablocks over which the Q syndrome is computed
686 * is different.
687 * Consequently we have different layouts for DDF/raid6 than md/raid6.
688 * These layouts are from the DDFv1.2 spec.
689 * Interestingly DDFv1.2-Errata-A does not specify N_CONTINUE but
690 * leaves RLQ=3 as 'Vendor Specific'
691 */
692
693#define ALGORITHM_ROTATING_ZERO_RESTART 8 /* DDF PRL=6 RLQ=1 */
694#define ALGORITHM_ROTATING_N_RESTART 9 /* DDF PRL=6 RLQ=2 */
695#define ALGORITHM_ROTATING_N_CONTINUE 10 /*DDF PRL=6 RLQ=3 */
696
NeilBrown99c0fb52009-03-31 14:39:38 +1100697/* For every RAID5 algorithm we define a RAID6 algorithm
698 * with exactly the same layout for data and parity, and
699 * with the Q block always on the last device (N-1).
700 * This allows trivial conversion from RAID5 to RAID6
701 */
702#define ALGORITHM_LEFT_ASYMMETRIC_6 16
703#define ALGORITHM_RIGHT_ASYMMETRIC_6 17
704#define ALGORITHM_LEFT_SYMMETRIC_6 18
705#define ALGORITHM_RIGHT_SYMMETRIC_6 19
706#define ALGORITHM_PARITY_0_6 20
707#define ALGORITHM_PARITY_N_6 ALGORITHM_PARITY_N
708
709static inline int algorithm_valid_raid5(int layout)
710{
711 return (layout >= 0) &&
712 (layout <= 5);
713}
714static inline int algorithm_valid_raid6(int layout)
715{
716 return (layout >= 0 && layout <= 5)
717 ||
NeilBrowne4424fe2009-10-16 16:27:34 +1100718 (layout >= 8 && layout <= 10)
NeilBrown99c0fb52009-03-31 14:39:38 +1100719 ||
720 (layout >= 16 && layout <= 20);
721}
722
723static inline int algorithm_is_DDF(int layout)
724{
725 return layout >= 8 && layout <= 10;
726}
NeilBrown11d8a6e2010-07-26 11:57:07 +1000727
NeilBrownd1688a62011-10-11 16:49:52 +1100728extern void md_raid5_kick_device(struct r5conf *conf);
NeilBrownfd01b882011-10-11 16:47:53 +1100729extern int raid5_set_cache_size(struct mddev *mddev, int size);
Shaohua Li6d036f72015-08-13 14:31:57 -0700730extern sector_t raid5_compute_blocknr(struct stripe_head *sh, int i, int previous);
731extern void raid5_release_stripe(struct stripe_head *sh);
732extern sector_t raid5_compute_sector(struct r5conf *conf, sector_t r_sector,
733 int previous, int *dd_idx,
734 struct stripe_head *sh);
735extern struct stripe_head *
736raid5_get_active_stripe(struct r5conf *conf, sector_t sector,
737 int previous, int noblock, int noquiesce);
Shaohua Lif6bed0e2015-08-13 14:31:59 -0700738extern int r5l_init_log(struct r5conf *conf, struct md_rdev *rdev);
739extern void r5l_exit_log(struct r5l_log *log);
740extern int r5l_write_stripe(struct r5l_log *log, struct stripe_head *head_sh);
741extern void r5l_write_stripe_run(struct r5l_log *log);
Shaohua Li0576b1c2015-08-13 14:32:00 -0700742extern void r5l_flush_stripe_to_raid(struct r5l_log *log);
743extern void r5l_stripe_write_finished(struct stripe_head *sh);
Shaohua Li828cbe92015-09-02 13:49:49 -0700744extern int r5l_handle_flush_request(struct r5l_log *log, struct bio *bio);
Shaohua Lie6c033f2015-10-04 09:20:12 -0700745extern void r5l_quiesce(struct r5l_log *log, int state);
Shaohua Li6e74a9c2015-10-08 21:54:08 -0700746extern bool r5l_log_disk_error(struct r5conf *conf);
Song Liu2ded3702016-11-17 15:24:38 -0800747extern bool r5c_is_writeback(struct r5l_log *log);
748extern int
749r5c_try_caching_write(struct r5conf *conf, struct stripe_head *sh,
750 struct stripe_head_state *s, int disks);
751extern void
752r5c_finish_stripe_write_out(struct r5conf *conf, struct stripe_head *sh,
753 struct stripe_head_state *s);
Song Liu1e6d6902016-11-17 15:24:39 -0800754extern void r5c_release_extra_page(struct stripe_head *sh);
755extern void r5c_handle_cached_data_endio(struct r5conf *conf,
756 struct stripe_head *sh, int disks, struct bio_list *return_bi);
757extern int r5c_cache_data(struct r5l_log *log, struct stripe_head *sh,
758 struct stripe_head_state *s);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700759#endif