dm raid: fix address sanitizer warning in raid_resume
[linux-2.6-block.git] / drivers / md / dm-writecache.c
CommitLineData
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1// SPDX-License-Identifier: GPL-2.0
2/*
3 * Copyright (C) 2018 Red Hat. All rights reserved.
4 *
5 * This file is released under the GPL.
6 */
7
8#include <linux/device-mapper.h>
9#include <linux/module.h>
10#include <linux/init.h>
11#include <linux/vmalloc.h>
12#include <linux/kthread.h>
13#include <linux/dm-io.h>
14#include <linux/dm-kcopyd.h>
15#include <linux/dax.h>
16#include <linux/pfn_t.h>
17#include <linux/libnvdimm.h>
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18#include <linux/delay.h>
19#include "dm-io-tracker.h"
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20
21#define DM_MSG_PREFIX "writecache"
22
23#define HIGH_WATERMARK 50
24#define LOW_WATERMARK 45
ca7dc242 25#define MAX_WRITEBACK_JOBS min(0x10000000 / PAGE_SIZE, totalram_pages() / 16)
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26#define ENDIO_LATENCY 16
27#define WRITEBACK_LATENCY 64
28#define AUTOCOMMIT_BLOCKS_SSD 65536
29#define AUTOCOMMIT_BLOCKS_PMEM 64
30#define AUTOCOMMIT_MSEC 1000
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31#define MAX_AGE_DIV 16
32#define MAX_AGE_UNSPECIFIED -1UL
5c0de3d7 33#define PAUSE_WRITEBACK (HZ * 3)
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34
35#define BITMAP_GRANULARITY 65536
36#if BITMAP_GRANULARITY < PAGE_SIZE
37#undef BITMAP_GRANULARITY
38#define BITMAP_GRANULARITY PAGE_SIZE
39#endif
40
5d2a228b 41#if IS_ENABLED(CONFIG_ARCH_HAS_PMEM_API) && IS_ENABLED(CONFIG_FS_DAX)
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42#define DM_WRITECACHE_HAS_PMEM
43#endif
44
45#ifdef DM_WRITECACHE_HAS_PMEM
46#define pmem_assign(dest, src) \
47do { \
48 typeof(dest) uniq = (src); \
49 memcpy_flushcache(&(dest), &uniq, sizeof(dest)); \
50} while (0)
51#else
52#define pmem_assign(dest, src) ((dest) = (src))
53#endif
54
ec6347bb 55#if IS_ENABLED(CONFIG_ARCH_HAS_COPY_MC) && defined(DM_WRITECACHE_HAS_PMEM)
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56#define DM_WRITECACHE_HANDLE_HARDWARE_ERRORS
57#endif
58
59#define MEMORY_SUPERBLOCK_MAGIC 0x23489321
60#define MEMORY_SUPERBLOCK_VERSION 1
61
62struct wc_memory_entry {
63 __le64 original_sector;
64 __le64 seq_count;
65};
66
67struct wc_memory_superblock {
68 union {
69 struct {
70 __le32 magic;
71 __le32 version;
72 __le32 block_size;
73 __le32 pad;
74 __le64 n_blocks;
75 __le64 seq_count;
76 };
77 __le64 padding[8];
78 };
c40819f2 79 struct wc_memory_entry entries[];
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80};
81
82struct wc_entry {
83 struct rb_node rb_node;
84 struct list_head lru;
85 unsigned short wc_list_contiguous;
86 bool write_in_progress
87#if BITS_PER_LONG == 64
88 :1
89#endif
90 ;
91 unsigned long index
92#if BITS_PER_LONG == 64
93 :47
94#endif
95 ;
3923d485 96 unsigned long age;
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97#ifdef DM_WRITECACHE_HANDLE_HARDWARE_ERRORS
98 uint64_t original_sector;
99 uint64_t seq_count;
100#endif
101};
102
103#ifdef DM_WRITECACHE_HAS_PMEM
104#define WC_MODE_PMEM(wc) ((wc)->pmem_mode)
105#define WC_MODE_FUA(wc) ((wc)->writeback_fua)
106#else
107#define WC_MODE_PMEM(wc) false
108#define WC_MODE_FUA(wc) false
109#endif
110#define WC_MODE_SORT_FREELIST(wc) (!WC_MODE_PMEM(wc))
111
112struct dm_writecache {
113 struct mutex lock;
114 struct list_head lru;
115 union {
116 struct list_head freelist;
117 struct {
118 struct rb_root freetree;
119 struct wc_entry *current_free;
120 };
121 };
122 struct rb_root tree;
123
124 size_t freelist_size;
125 size_t writeback_size;
126 size_t freelist_high_watermark;
127 size_t freelist_low_watermark;
3923d485 128 unsigned long max_age;
5c0de3d7 129 unsigned long pause;
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130
131 unsigned uncommitted_blocks;
132 unsigned autocommit_blocks;
133 unsigned max_writeback_jobs;
134
135 int error;
136
137 unsigned long autocommit_jiffies;
138 struct timer_list autocommit_timer;
139 struct wait_queue_head freelist_wait;
140
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141 struct timer_list max_age_timer;
142
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143 atomic_t bio_in_progress[2];
144 struct wait_queue_head bio_in_progress_wait[2];
145
146 struct dm_target *ti;
147 struct dm_dev *dev;
148 struct dm_dev *ssd_dev;
d284f824 149 sector_t start_sector;
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150 void *memory_map;
151 uint64_t memory_map_size;
152 size_t metadata_sectors;
153 size_t n_blocks;
154 uint64_t seq_count;
4134455f 155 sector_t data_device_sectors;
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156 void *block_start;
157 struct wc_entry *entries;
158 unsigned block_size;
159 unsigned char block_size_bits;
160
161 bool pmem_mode:1;
162 bool writeback_fua:1;
163
164 bool overwrote_committed:1;
165 bool memory_vmapped:1;
166
054bee16 167 bool start_sector_set:1;
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168 bool high_wm_percent_set:1;
169 bool low_wm_percent_set:1;
170 bool max_writeback_jobs_set:1;
171 bool autocommit_blocks_set:1;
172 bool autocommit_time_set:1;
054bee16 173 bool max_age_set:1;
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174 bool writeback_fua_set:1;
175 bool flush_on_suspend:1;
93de44eb 176 bool cleaner:1;
054bee16 177 bool cleaner_set:1;
611c3e16 178 bool metadata_only:1;
5c0de3d7 179 bool pause_set:1;
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180
181 unsigned high_wm_percent_value;
182 unsigned low_wm_percent_value;
183 unsigned autocommit_time_value;
184 unsigned max_age_value;
5c0de3d7 185 unsigned pause_value;
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186
187 unsigned writeback_all;
188 struct workqueue_struct *writeback_wq;
189 struct work_struct writeback_work;
190 struct work_struct flush_work;
191
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192 struct dm_io_tracker iot;
193
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194 struct dm_io_client *dm_io;
195
196 raw_spinlock_t endio_list_lock;
197 struct list_head endio_list;
198 struct task_struct *endio_thread;
199
200 struct task_struct *flush_thread;
201 struct bio_list flush_list;
202
203 struct dm_kcopyd_client *dm_kcopyd;
204 unsigned long *dirty_bitmap;
205 unsigned dirty_bitmap_size;
206
207 struct bio_set bio_set;
208 mempool_t copy_pool;
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209
210 struct {
211 unsigned long long reads;
212 unsigned long long read_hits;
213 unsigned long long writes;
214 unsigned long long write_hits_uncommitted;
215 unsigned long long write_hits_committed;
216 unsigned long long writes_around;
217 unsigned long long writes_allocate;
218 unsigned long long writes_blocked_on_freelist;
219 unsigned long long flushes;
220 unsigned long long discards;
221 } stats;
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222};
223
224#define WB_LIST_INLINE 16
225
226struct writeback_struct {
227 struct list_head endio_entry;
228 struct dm_writecache *wc;
229 struct wc_entry **wc_list;
230 unsigned wc_list_n;
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231 struct wc_entry *wc_list_inline[WB_LIST_INLINE];
232 struct bio bio;
233};
234
235struct copy_struct {
236 struct list_head endio_entry;
237 struct dm_writecache *wc;
238 struct wc_entry *e;
239 unsigned n_entries;
240 int error;
241};
242
243DECLARE_DM_KCOPYD_THROTTLE_WITH_MODULE_PARM(dm_writecache_throttle,
244 "A percentage of time allocated for data copying");
245
246static void wc_lock(struct dm_writecache *wc)
247{
248 mutex_lock(&wc->lock);
249}
250
251static void wc_unlock(struct dm_writecache *wc)
252{
253 mutex_unlock(&wc->lock);
254}
255
256#ifdef DM_WRITECACHE_HAS_PMEM
257static int persistent_memory_claim(struct dm_writecache *wc)
258{
259 int r;
260 loff_t s;
261 long p, da;
262 pfn_t pfn;
263 int id;
264 struct page **pages;
f9e040ef 265 sector_t offset;
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266
267 wc->memory_vmapped = false;
268
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269 s = wc->memory_map_size;
270 p = s >> PAGE_SHIFT;
271 if (!p) {
272 r = -EINVAL;
273 goto err1;
274 }
275 if (p != s >> PAGE_SHIFT) {
276 r = -EOVERFLOW;
277 goto err1;
278 }
279
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280 offset = get_start_sect(wc->ssd_dev->bdev);
281 if (offset & (PAGE_SIZE / 512 - 1)) {
282 r = -EINVAL;
283 goto err1;
284 }
285 offset >>= PAGE_SHIFT - 9;
286
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287 id = dax_read_lock();
288
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289 da = dax_direct_access(wc->ssd_dev->dax_dev, offset, p, DAX_ACCESS,
290 &wc->memory_map, &pfn);
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291 if (da < 0) {
292 wc->memory_map = NULL;
293 r = da;
294 goto err2;
295 }
296 if (!pfn_t_has_page(pfn)) {
297 wc->memory_map = NULL;
298 r = -EOPNOTSUPP;
299 goto err2;
300 }
301 if (da != p) {
302 long i;
303 wc->memory_map = NULL;
50a7d3ba 304 pages = kvmalloc_array(p, sizeof(struct page *), GFP_KERNEL);
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305 if (!pages) {
306 r = -ENOMEM;
307 goto err2;
308 }
309 i = 0;
310 do {
311 long daa;
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312 daa = dax_direct_access(wc->ssd_dev->dax_dev, offset + i,
313 p - i, DAX_ACCESS, NULL, &pfn);
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314 if (daa <= 0) {
315 r = daa ? daa : -EINVAL;
316 goto err3;
317 }
318 if (!pfn_t_has_page(pfn)) {
319 r = -EOPNOTSUPP;
320 goto err3;
321 }
322 while (daa-- && i < p) {
323 pages[i++] = pfn_t_to_page(pfn);
324 pfn.val++;
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325 if (!(i & 15))
326 cond_resched();
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327 }
328 } while (i < p);
329 wc->memory_map = vmap(pages, p, VM_MAP, PAGE_KERNEL);
330 if (!wc->memory_map) {
331 r = -ENOMEM;
332 goto err3;
333 }
334 kvfree(pages);
335 wc->memory_vmapped = true;
336 }
337
338 dax_read_unlock(id);
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339
340 wc->memory_map += (size_t)wc->start_sector << SECTOR_SHIFT;
341 wc->memory_map_size -= (size_t)wc->start_sector << SECTOR_SHIFT;
342
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343 return 0;
344err3:
345 kvfree(pages);
346err2:
347 dax_read_unlock(id);
348err1:
349 return r;
350}
351#else
352static int persistent_memory_claim(struct dm_writecache *wc)
353{
857c4c0a 354 return -EOPNOTSUPP;
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355}
356#endif
357
358static void persistent_memory_release(struct dm_writecache *wc)
359{
360 if (wc->memory_vmapped)
d284f824 361 vunmap(wc->memory_map - ((size_t)wc->start_sector << SECTOR_SHIFT));
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362}
363
364static struct page *persistent_memory_page(void *addr)
365{
366 if (is_vmalloc_addr(addr))
367 return vmalloc_to_page(addr);
368 else
369 return virt_to_page(addr);
370}
371
372static unsigned persistent_memory_page_offset(void *addr)
373{
374 return (unsigned long)addr & (PAGE_SIZE - 1);
375}
376
377static void persistent_memory_flush_cache(void *ptr, size_t size)
378{
379 if (is_vmalloc_addr(ptr))
380 flush_kernel_vmap_range(ptr, size);
381}
382
383static void persistent_memory_invalidate_cache(void *ptr, size_t size)
384{
385 if (is_vmalloc_addr(ptr))
386 invalidate_kernel_vmap_range(ptr, size);
387}
388
389static struct wc_memory_superblock *sb(struct dm_writecache *wc)
390{
391 return wc->memory_map;
392}
393
394static struct wc_memory_entry *memory_entry(struct dm_writecache *wc, struct wc_entry *e)
395{
da4ad3a2 396 return &sb(wc)->entries[e->index];
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397}
398
399static void *memory_data(struct dm_writecache *wc, struct wc_entry *e)
400{
401 return (char *)wc->block_start + (e->index << wc->block_size_bits);
402}
403
404static sector_t cache_sector(struct dm_writecache *wc, struct wc_entry *e)
405{
d284f824 406 return wc->start_sector + wc->metadata_sectors +
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407 ((sector_t)e->index << (wc->block_size_bits - SECTOR_SHIFT));
408}
409
410static uint64_t read_original_sector(struct dm_writecache *wc, struct wc_entry *e)
411{
412#ifdef DM_WRITECACHE_HANDLE_HARDWARE_ERRORS
413 return e->original_sector;
414#else
415 return le64_to_cpu(memory_entry(wc, e)->original_sector);
416#endif
417}
418
419static uint64_t read_seq_count(struct dm_writecache *wc, struct wc_entry *e)
420{
421#ifdef DM_WRITECACHE_HANDLE_HARDWARE_ERRORS
422 return e->seq_count;
423#else
424 return le64_to_cpu(memory_entry(wc, e)->seq_count);
425#endif
426}
427
428static void clear_seq_count(struct dm_writecache *wc, struct wc_entry *e)
429{
430#ifdef DM_WRITECACHE_HANDLE_HARDWARE_ERRORS
431 e->seq_count = -1;
432#endif
433 pmem_assign(memory_entry(wc, e)->seq_count, cpu_to_le64(-1));
434}
435
436static void write_original_sector_seq_count(struct dm_writecache *wc, struct wc_entry *e,
437 uint64_t original_sector, uint64_t seq_count)
438{
439 struct wc_memory_entry me;
440#ifdef DM_WRITECACHE_HANDLE_HARDWARE_ERRORS
441 e->original_sector = original_sector;
442 e->seq_count = seq_count;
443#endif
444 me.original_sector = cpu_to_le64(original_sector);
445 me.seq_count = cpu_to_le64(seq_count);
446 pmem_assign(*memory_entry(wc, e), me);
447}
448
449#define writecache_error(wc, err, msg, arg...) \
450do { \
451 if (!cmpxchg(&(wc)->error, 0, err)) \
452 DMERR(msg, ##arg); \
453 wake_up(&(wc)->freelist_wait); \
454} while (0)
455
456#define writecache_has_error(wc) (unlikely(READ_ONCE((wc)->error)))
457
458static void writecache_flush_all_metadata(struct dm_writecache *wc)
459{
460 if (!WC_MODE_PMEM(wc))
461 memset(wc->dirty_bitmap, -1, wc->dirty_bitmap_size);
462}
463
464static void writecache_flush_region(struct dm_writecache *wc, void *ptr, size_t size)
465{
466 if (!WC_MODE_PMEM(wc))
467 __set_bit(((char *)ptr - (char *)wc->memory_map) / BITMAP_GRANULARITY,
468 wc->dirty_bitmap);
469}
470
471static void writecache_disk_flush(struct dm_writecache *wc, struct dm_dev *dev);
472
473struct io_notify {
474 struct dm_writecache *wc;
475 struct completion c;
476 atomic_t count;
477};
478
479static void writecache_notify_io(unsigned long error, void *context)
480{
481 struct io_notify *endio = context;
482
483 if (unlikely(error != 0))
484 writecache_error(endio->wc, -EIO, "error writing metadata");
485 BUG_ON(atomic_read(&endio->count) <= 0);
486 if (atomic_dec_and_test(&endio->count))
487 complete(&endio->c);
488}
489
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490static void writecache_wait_for_ios(struct dm_writecache *wc, int direction)
491{
492 wait_event(wc->bio_in_progress_wait[direction],
493 !atomic_read(&wc->bio_in_progress[direction]));
494}
495
496static void ssd_commit_flushed(struct dm_writecache *wc, bool wait_for_ios)
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497{
498 struct dm_io_region region;
499 struct dm_io_request req;
500 struct io_notify endio = {
501 wc,
502 COMPLETION_INITIALIZER_ONSTACK(endio.c),
503 ATOMIC_INIT(1),
504 };
1e1132ea 505 unsigned bitmap_bits = wc->dirty_bitmap_size * 8;
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506 unsigned i = 0;
507
508 while (1) {
509 unsigned j;
510 i = find_next_bit(wc->dirty_bitmap, bitmap_bits, i);
511 if (unlikely(i == bitmap_bits))
512 break;
513 j = find_next_zero_bit(wc->dirty_bitmap, bitmap_bits, i);
514
515 region.bdev = wc->ssd_dev->bdev;
516 region.sector = (sector_t)i * (BITMAP_GRANULARITY >> SECTOR_SHIFT);
517 region.count = (sector_t)(j - i) * (BITMAP_GRANULARITY >> SECTOR_SHIFT);
518
519 if (unlikely(region.sector >= wc->metadata_sectors))
520 break;
521 if (unlikely(region.sector + region.count > wc->metadata_sectors))
522 region.count = wc->metadata_sectors - region.sector;
523
d284f824 524 region.sector += wc->start_sector;
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MP
525 atomic_inc(&endio.count);
526 req.bi_op = REQ_OP_WRITE;
527 req.bi_op_flags = REQ_SYNC;
528 req.mem.type = DM_IO_VMA;
529 req.mem.ptr.vma = (char *)wc->memory_map + (size_t)i * BITMAP_GRANULARITY;
530 req.client = wc->dm_io;
531 req.notify.fn = writecache_notify_io;
532 req.notify.context = &endio;
533
534 /* writing via async dm-io (implied by notify.fn above) won't return an error */
535 (void) dm_io(&req, 1, &region, NULL);
536 i = j;
537 }
538
539 writecache_notify_io(0, &endio);
540 wait_for_completion_io(&endio.c);
541
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542 if (wait_for_ios)
543 writecache_wait_for_ios(wc, WRITE);
544
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545 writecache_disk_flush(wc, wc->ssd_dev);
546
547 memset(wc->dirty_bitmap, 0, wc->dirty_bitmap_size);
548}
549
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550static void ssd_commit_superblock(struct dm_writecache *wc)
551{
552 int r;
553 struct dm_io_region region;
554 struct dm_io_request req;
555
556 region.bdev = wc->ssd_dev->bdev;
557 region.sector = 0;
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558 region.count = max(4096U, wc->block_size) >> SECTOR_SHIFT;
559
560 if (unlikely(region.sector + region.count > wc->metadata_sectors))
561 region.count = wc->metadata_sectors - region.sector;
562
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MP
563 region.sector += wc->start_sector;
564
565 req.bi_op = REQ_OP_WRITE;
566 req.bi_op_flags = REQ_SYNC | REQ_FUA;
567 req.mem.type = DM_IO_VMA;
568 req.mem.ptr.vma = (char *)wc->memory_map;
569 req.client = wc->dm_io;
570 req.notify.fn = NULL;
571 req.notify.context = NULL;
572
573 r = dm_io(&req, 1, &region, NULL);
574 if (unlikely(r))
575 writecache_error(wc, r, "error writing superblock");
576}
577
aa950920 578static void writecache_commit_flushed(struct dm_writecache *wc, bool wait_for_ios)
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579{
580 if (WC_MODE_PMEM(wc))
3e79f082 581 pmem_wmb();
48debafe 582 else
aa950920 583 ssd_commit_flushed(wc, wait_for_ios);
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MP
584}
585
586static void writecache_disk_flush(struct dm_writecache *wc, struct dm_dev *dev)
587{
588 int r;
589 struct dm_io_region region;
590 struct dm_io_request req;
591
592 region.bdev = dev->bdev;
593 region.sector = 0;
594 region.count = 0;
595 req.bi_op = REQ_OP_WRITE;
596 req.bi_op_flags = REQ_PREFLUSH;
597 req.mem.type = DM_IO_KMEM;
598 req.mem.ptr.addr = NULL;
599 req.client = wc->dm_io;
600 req.notify.fn = NULL;
601
602 r = dm_io(&req, 1, &region, NULL);
603 if (unlikely(r))
604 writecache_error(wc, r, "error flushing metadata: %d", r);
605}
606
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607#define WFE_RETURN_FOLLOWING 1
608#define WFE_LOWEST_SEQ 2
609
610static struct wc_entry *writecache_find_entry(struct dm_writecache *wc,
611 uint64_t block, int flags)
612{
613 struct wc_entry *e;
614 struct rb_node *node = wc->tree.rb_node;
615
616 if (unlikely(!node))
617 return NULL;
618
619 while (1) {
620 e = container_of(node, struct wc_entry, rb_node);
621 if (read_original_sector(wc, e) == block)
622 break;
f8011d33 623
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MP
624 node = (read_original_sector(wc, e) >= block ?
625 e->rb_node.rb_left : e->rb_node.rb_right);
626 if (unlikely(!node)) {
f8011d33 627 if (!(flags & WFE_RETURN_FOLLOWING))
48debafe 628 return NULL;
48debafe 629 if (read_original_sector(wc, e) >= block) {
f8011d33 630 return e;
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MP
631 } else {
632 node = rb_next(&e->rb_node);
f8011d33 633 if (unlikely(!node))
48debafe 634 return NULL;
48debafe 635 e = container_of(node, struct wc_entry, rb_node);
f8011d33 636 return e;
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MP
637 }
638 }
639 }
640
641 while (1) {
642 struct wc_entry *e2;
643 if (flags & WFE_LOWEST_SEQ)
644 node = rb_prev(&e->rb_node);
645 else
646 node = rb_next(&e->rb_node);
84420b1e 647 if (unlikely(!node))
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648 return e;
649 e2 = container_of(node, struct wc_entry, rb_node);
650 if (read_original_sector(wc, e2) != block)
651 return e;
652 e = e2;
653 }
654}
655
656static void writecache_insert_entry(struct dm_writecache *wc, struct wc_entry *ins)
657{
658 struct wc_entry *e;
659 struct rb_node **node = &wc->tree.rb_node, *parent = NULL;
660
661 while (*node) {
662 e = container_of(*node, struct wc_entry, rb_node);
663 parent = &e->rb_node;
664 if (read_original_sector(wc, e) > read_original_sector(wc, ins))
665 node = &parent->rb_left;
666 else
667 node = &parent->rb_right;
668 }
669 rb_link_node(&ins->rb_node, parent, node);
670 rb_insert_color(&ins->rb_node, &wc->tree);
671 list_add(&ins->lru, &wc->lru);
3923d485 672 ins->age = jiffies;
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MP
673}
674
675static void writecache_unlink(struct dm_writecache *wc, struct wc_entry *e)
676{
677 list_del(&e->lru);
678 rb_erase(&e->rb_node, &wc->tree);
679}
680
681static void writecache_add_to_freelist(struct dm_writecache *wc, struct wc_entry *e)
682{
683 if (WC_MODE_SORT_FREELIST(wc)) {
684 struct rb_node **node = &wc->freetree.rb_node, *parent = NULL;
685 if (unlikely(!*node))
686 wc->current_free = e;
687 while (*node) {
688 parent = *node;
689 if (&e->rb_node < *node)
690 node = &parent->rb_left;
691 else
692 node = &parent->rb_right;
693 }
694 rb_link_node(&e->rb_node, parent, node);
695 rb_insert_color(&e->rb_node, &wc->freetree);
696 } else {
697 list_add_tail(&e->lru, &wc->freelist);
698 }
699 wc->freelist_size++;
700}
701
41c526c5
MP
702static inline void writecache_verify_watermark(struct dm_writecache *wc)
703{
704 if (unlikely(wc->freelist_size + wc->writeback_size <= wc->freelist_high_watermark))
705 queue_work(wc->writeback_wq, &wc->writeback_work);
706}
707
3923d485
MP
708static void writecache_max_age_timer(struct timer_list *t)
709{
710 struct dm_writecache *wc = from_timer(wc, t, max_age_timer);
711
712 if (!dm_suspended(wc->ti) && !writecache_has_error(wc)) {
713 queue_work(wc->writeback_wq, &wc->writeback_work);
714 mod_timer(&wc->max_age_timer, jiffies + wc->max_age / MAX_AGE_DIV);
715 }
716}
717
dcd19507 718static struct wc_entry *writecache_pop_from_freelist(struct dm_writecache *wc, sector_t expected_sector)
48debafe
MP
719{
720 struct wc_entry *e;
721
722 if (WC_MODE_SORT_FREELIST(wc)) {
723 struct rb_node *next;
724 if (unlikely(!wc->current_free))
725 return NULL;
726 e = wc->current_free;
dcd19507
MP
727 if (expected_sector != (sector_t)-1 && unlikely(cache_sector(wc, e) != expected_sector))
728 return NULL;
48debafe
MP
729 next = rb_next(&e->rb_node);
730 rb_erase(&e->rb_node, &wc->freetree);
731 if (unlikely(!next))
732 next = rb_first(&wc->freetree);
733 wc->current_free = next ? container_of(next, struct wc_entry, rb_node) : NULL;
734 } else {
735 if (unlikely(list_empty(&wc->freelist)))
736 return NULL;
737 e = container_of(wc->freelist.next, struct wc_entry, lru);
dcd19507
MP
738 if (expected_sector != (sector_t)-1 && unlikely(cache_sector(wc, e) != expected_sector))
739 return NULL;
48debafe
MP
740 list_del(&e->lru);
741 }
742 wc->freelist_size--;
41c526c5
MP
743
744 writecache_verify_watermark(wc);
48debafe
MP
745
746 return e;
747}
748
749static void writecache_free_entry(struct dm_writecache *wc, struct wc_entry *e)
750{
751 writecache_unlink(wc, e);
752 writecache_add_to_freelist(wc, e);
753 clear_seq_count(wc, e);
754 writecache_flush_region(wc, memory_entry(wc, e), sizeof(struct wc_memory_entry));
755 if (unlikely(waitqueue_active(&wc->freelist_wait)))
756 wake_up(&wc->freelist_wait);
757}
758
759static void writecache_wait_on_freelist(struct dm_writecache *wc)
760{
761 DEFINE_WAIT(wait);
762
763 prepare_to_wait(&wc->freelist_wait, &wait, TASK_UNINTERRUPTIBLE);
764 wc_unlock(wc);
765 io_schedule();
766 finish_wait(&wc->freelist_wait, &wait);
767 wc_lock(wc);
768}
769
770static void writecache_poison_lists(struct dm_writecache *wc)
771{
772 /*
773 * Catch incorrect access to these values while the device is suspended.
774 */
775 memset(&wc->tree, -1, sizeof wc->tree);
776 wc->lru.next = LIST_POISON1;
777 wc->lru.prev = LIST_POISON2;
778 wc->freelist.next = LIST_POISON1;
779 wc->freelist.prev = LIST_POISON2;
780}
781
782static void writecache_flush_entry(struct dm_writecache *wc, struct wc_entry *e)
783{
784 writecache_flush_region(wc, memory_entry(wc, e), sizeof(struct wc_memory_entry));
785 if (WC_MODE_PMEM(wc))
786 writecache_flush_region(wc, memory_data(wc, e), wc->block_size);
787}
788
789static bool writecache_entry_is_committed(struct dm_writecache *wc, struct wc_entry *e)
790{
791 return read_seq_count(wc, e) < wc->seq_count;
792}
793
794static void writecache_flush(struct dm_writecache *wc)
795{
796 struct wc_entry *e, *e2;
797 bool need_flush_after_free;
798
799 wc->uncommitted_blocks = 0;
800 del_timer(&wc->autocommit_timer);
801
802 if (list_empty(&wc->lru))
803 return;
804
805 e = container_of(wc->lru.next, struct wc_entry, lru);
806 if (writecache_entry_is_committed(wc, e)) {
807 if (wc->overwrote_committed) {
808 writecache_wait_for_ios(wc, WRITE);
809 writecache_disk_flush(wc, wc->ssd_dev);
810 wc->overwrote_committed = false;
811 }
812 return;
813 }
814 while (1) {
815 writecache_flush_entry(wc, e);
816 if (unlikely(e->lru.next == &wc->lru))
817 break;
818 e2 = container_of(e->lru.next, struct wc_entry, lru);
819 if (writecache_entry_is_committed(wc, e2))
820 break;
821 e = e2;
822 cond_resched();
823 }
aa950920 824 writecache_commit_flushed(wc, true);
48debafe
MP
825
826 wc->seq_count++;
827 pmem_assign(sb(wc)->seq_count, cpu_to_le64(wc->seq_count));
dc8a01ae
MP
828 if (WC_MODE_PMEM(wc))
829 writecache_commit_flushed(wc, false);
830 else
831 ssd_commit_superblock(wc);
48debafe
MP
832
833 wc->overwrote_committed = false;
834
835 need_flush_after_free = false;
836 while (1) {
837 /* Free another committed entry with lower seq-count */
838 struct rb_node *rb_node = rb_prev(&e->rb_node);
839
840 if (rb_node) {
841 e2 = container_of(rb_node, struct wc_entry, rb_node);
842 if (read_original_sector(wc, e2) == read_original_sector(wc, e) &&
843 likely(!e2->write_in_progress)) {
844 writecache_free_entry(wc, e2);
845 need_flush_after_free = true;
846 }
847 }
848 if (unlikely(e->lru.prev == &wc->lru))
849 break;
850 e = container_of(e->lru.prev, struct wc_entry, lru);
851 cond_resched();
852 }
853
854 if (need_flush_after_free)
aa950920 855 writecache_commit_flushed(wc, false);
48debafe
MP
856}
857
858static void writecache_flush_work(struct work_struct *work)
859{
860 struct dm_writecache *wc = container_of(work, struct dm_writecache, flush_work);
861
862 wc_lock(wc);
863 writecache_flush(wc);
864 wc_unlock(wc);
865}
866
867static void writecache_autocommit_timer(struct timer_list *t)
868{
869 struct dm_writecache *wc = from_timer(wc, t, autocommit_timer);
870 if (!writecache_has_error(wc))
871 queue_work(wc->writeback_wq, &wc->flush_work);
872}
873
874static void writecache_schedule_autocommit(struct dm_writecache *wc)
875{
876 if (!timer_pending(&wc->autocommit_timer))
877 mod_timer(&wc->autocommit_timer, jiffies + wc->autocommit_jiffies);
878}
879
880static void writecache_discard(struct dm_writecache *wc, sector_t start, sector_t end)
881{
882 struct wc_entry *e;
883 bool discarded_something = false;
884
885 e = writecache_find_entry(wc, start, WFE_RETURN_FOLLOWING | WFE_LOWEST_SEQ);
886 if (unlikely(!e))
887 return;
888
889 while (read_original_sector(wc, e) < end) {
890 struct rb_node *node = rb_next(&e->rb_node);
891
892 if (likely(!e->write_in_progress)) {
893 if (!discarded_something) {
a143e172
HY
894 if (!WC_MODE_PMEM(wc)) {
895 writecache_wait_for_ios(wc, READ);
896 writecache_wait_for_ios(wc, WRITE);
897 }
48debafe
MP
898 discarded_something = true;
899 }
39495b12
HY
900 if (!writecache_entry_is_committed(wc, e))
901 wc->uncommitted_blocks--;
48debafe
MP
902 writecache_free_entry(wc, e);
903 }
904
84420b1e 905 if (unlikely(!node))
48debafe
MP
906 break;
907
908 e = container_of(node, struct wc_entry, rb_node);
909 }
910
911 if (discarded_something)
aa950920 912 writecache_commit_flushed(wc, false);
48debafe
MP
913}
914
915static bool writecache_wait_for_writeback(struct dm_writecache *wc)
916{
917 if (wc->writeback_size) {
918 writecache_wait_on_freelist(wc);
919 return true;
920 }
921 return false;
922}
923
924static void writecache_suspend(struct dm_target *ti)
925{
926 struct dm_writecache *wc = ti->private;
927 bool flush_on_suspend;
928
929 del_timer_sync(&wc->autocommit_timer);
3923d485 930 del_timer_sync(&wc->max_age_timer);
48debafe
MP
931
932 wc_lock(wc);
933 writecache_flush(wc);
934 flush_on_suspend = wc->flush_on_suspend;
935 if (flush_on_suspend) {
936 wc->flush_on_suspend = false;
937 wc->writeback_all++;
938 queue_work(wc->writeback_wq, &wc->writeback_work);
939 }
940 wc_unlock(wc);
941
adc0daad 942 drain_workqueue(wc->writeback_wq);
48debafe
MP
943
944 wc_lock(wc);
945 if (flush_on_suspend)
946 wc->writeback_all--;
947 while (writecache_wait_for_writeback(wc));
948
949 if (WC_MODE_PMEM(wc))
950 persistent_memory_flush_cache(wc->memory_map, wc->memory_map_size);
951
952 writecache_poison_lists(wc);
953
954 wc_unlock(wc);
955}
956
957static int writecache_alloc_entries(struct dm_writecache *wc)
958{
959 size_t b;
960
961 if (wc->entries)
962 return 0;
50a7d3ba 963 wc->entries = vmalloc(array_size(sizeof(struct wc_entry), wc->n_blocks));
48debafe
MP
964 if (!wc->entries)
965 return -ENOMEM;
966 for (b = 0; b < wc->n_blocks; b++) {
967 struct wc_entry *e = &wc->entries[b];
968 e->index = b;
969 e->write_in_progress = false;
1edaa447 970 cond_resched();
48debafe
MP
971 }
972
973 return 0;
974}
975
31b22120
MP
976static int writecache_read_metadata(struct dm_writecache *wc, sector_t n_sectors)
977{
978 struct dm_io_region region;
979 struct dm_io_request req;
980
981 region.bdev = wc->ssd_dev->bdev;
982 region.sector = wc->start_sector;
983 region.count = n_sectors;
984 req.bi_op = REQ_OP_READ;
985 req.bi_op_flags = REQ_SYNC;
986 req.mem.type = DM_IO_VMA;
987 req.mem.ptr.vma = (char *)wc->memory_map;
988 req.client = wc->dm_io;
989 req.notify.fn = NULL;
990
991 return dm_io(&req, 1, &region, NULL);
992}
993
48debafe
MP
994static void writecache_resume(struct dm_target *ti)
995{
996 struct dm_writecache *wc = ti->private;
997 size_t b;
998 bool need_flush = false;
999 __le64 sb_seq_count;
1000 int r;
1001
1002 wc_lock(wc);
1003
d9928ac5 1004 wc->data_device_sectors = bdev_nr_sectors(wc->dev->bdev);
4134455f 1005
31b22120 1006 if (WC_MODE_PMEM(wc)) {
48debafe 1007 persistent_memory_invalidate_cache(wc->memory_map, wc->memory_map_size);
31b22120
MP
1008 } else {
1009 r = writecache_read_metadata(wc, wc->metadata_sectors);
1010 if (r) {
1011 size_t sb_entries_offset;
1012 writecache_error(wc, r, "unable to read metadata: %d", r);
1013 sb_entries_offset = offsetof(struct wc_memory_superblock, entries);
1014 memset((char *)wc->memory_map + sb_entries_offset, -1,
1015 (wc->metadata_sectors << SECTOR_SHIFT) - sb_entries_offset);
1016 }
1017 }
48debafe
MP
1018
1019 wc->tree = RB_ROOT;
1020 INIT_LIST_HEAD(&wc->lru);
1021 if (WC_MODE_SORT_FREELIST(wc)) {
1022 wc->freetree = RB_ROOT;
1023 wc->current_free = NULL;
1024 } else {
1025 INIT_LIST_HEAD(&wc->freelist);
1026 }
1027 wc->freelist_size = 0;
1028
ec6347bb
DW
1029 r = copy_mc_to_kernel(&sb_seq_count, &sb(wc)->seq_count,
1030 sizeof(uint64_t));
48debafe
MP
1031 if (r) {
1032 writecache_error(wc, r, "hardware memory error when reading superblock: %d", r);
1033 sb_seq_count = cpu_to_le64(0);
1034 }
1035 wc->seq_count = le64_to_cpu(sb_seq_count);
1036
1037#ifdef DM_WRITECACHE_HANDLE_HARDWARE_ERRORS
1038 for (b = 0; b < wc->n_blocks; b++) {
1039 struct wc_entry *e = &wc->entries[b];
1040 struct wc_memory_entry wme;
1041 if (writecache_has_error(wc)) {
1042 e->original_sector = -1;
1043 e->seq_count = -1;
1044 continue;
1045 }
ec6347bb
DW
1046 r = copy_mc_to_kernel(&wme, memory_entry(wc, e),
1047 sizeof(struct wc_memory_entry));
48debafe
MP
1048 if (r) {
1049 writecache_error(wc, r, "hardware memory error when reading metadata entry %lu: %d",
1050 (unsigned long)b, r);
1051 e->original_sector = -1;
1052 e->seq_count = -1;
1053 } else {
1054 e->original_sector = le64_to_cpu(wme.original_sector);
1055 e->seq_count = le64_to_cpu(wme.seq_count);
1056 }
1edaa447 1057 cond_resched();
48debafe
MP
1058 }
1059#endif
1060 for (b = 0; b < wc->n_blocks; b++) {
1061 struct wc_entry *e = &wc->entries[b];
1062 if (!writecache_entry_is_committed(wc, e)) {
1063 if (read_seq_count(wc, e) != -1) {
1064erase_this:
1065 clear_seq_count(wc, e);
1066 need_flush = true;
1067 }
1068 writecache_add_to_freelist(wc, e);
1069 } else {
1070 struct wc_entry *old;
1071
1072 old = writecache_find_entry(wc, read_original_sector(wc, e), 0);
1073 if (!old) {
1074 writecache_insert_entry(wc, e);
1075 } else {
1076 if (read_seq_count(wc, old) == read_seq_count(wc, e)) {
1077 writecache_error(wc, -EINVAL,
1078 "two identical entries, position %llu, sector %llu, sequence %llu",
1079 (unsigned long long)b, (unsigned long long)read_original_sector(wc, e),
1080 (unsigned long long)read_seq_count(wc, e));
1081 }
1082 if (read_seq_count(wc, old) > read_seq_count(wc, e)) {
1083 goto erase_this;
1084 } else {
1085 writecache_free_entry(wc, old);
1086 writecache_insert_entry(wc, e);
1087 need_flush = true;
1088 }
1089 }
1090 }
1091 cond_resched();
1092 }
1093
1094 if (need_flush) {
1095 writecache_flush_all_metadata(wc);
aa950920 1096 writecache_commit_flushed(wc, false);
48debafe
MP
1097 }
1098
41c526c5
MP
1099 writecache_verify_watermark(wc);
1100
3923d485
MP
1101 if (wc->max_age != MAX_AGE_UNSPECIFIED)
1102 mod_timer(&wc->max_age_timer, jiffies + wc->max_age / MAX_AGE_DIV);
1103
48debafe
MP
1104 wc_unlock(wc);
1105}
1106
1107static int process_flush_mesg(unsigned argc, char **argv, struct dm_writecache *wc)
1108{
1109 if (argc != 1)
1110 return -EINVAL;
1111
1112 wc_lock(wc);
1113 if (dm_suspended(wc->ti)) {
1114 wc_unlock(wc);
1115 return -EBUSY;
1116 }
1117 if (writecache_has_error(wc)) {
1118 wc_unlock(wc);
1119 return -EIO;
1120 }
1121
1122 writecache_flush(wc);
1123 wc->writeback_all++;
1124 queue_work(wc->writeback_wq, &wc->writeback_work);
1125 wc_unlock(wc);
1126
1127 flush_workqueue(wc->writeback_wq);
1128
1129 wc_lock(wc);
1130 wc->writeback_all--;
1131 if (writecache_has_error(wc)) {
1132 wc_unlock(wc);
1133 return -EIO;
1134 }
1135 wc_unlock(wc);
1136
1137 return 0;
1138}
1139
1140static int process_flush_on_suspend_mesg(unsigned argc, char **argv, struct dm_writecache *wc)
1141{
1142 if (argc != 1)
1143 return -EINVAL;
1144
1145 wc_lock(wc);
1146 wc->flush_on_suspend = true;
1147 wc_unlock(wc);
1148
1149 return 0;
1150}
1151
93de44eb
MP
1152static void activate_cleaner(struct dm_writecache *wc)
1153{
1154 wc->flush_on_suspend = true;
1155 wc->cleaner = true;
1156 wc->freelist_high_watermark = wc->n_blocks;
1157 wc->freelist_low_watermark = wc->n_blocks;
1158}
1159
1160static int process_cleaner_mesg(unsigned argc, char **argv, struct dm_writecache *wc)
1161{
1162 if (argc != 1)
1163 return -EINVAL;
1164
1165 wc_lock(wc);
1166 activate_cleaner(wc);
1167 if (!dm_suspended(wc->ti))
1168 writecache_verify_watermark(wc);
1169 wc_unlock(wc);
1170
1171 return 0;
1172}
1173
e3a35d03
MP
1174static int process_clear_stats_mesg(unsigned argc, char **argv, struct dm_writecache *wc)
1175{
1176 if (argc != 1)
1177 return -EINVAL;
1178
1179 wc_lock(wc);
1180 memset(&wc->stats, 0, sizeof wc->stats);
1181 wc_unlock(wc);
1182
1183 return 0;
1184}
1185
48debafe
MP
1186static int writecache_message(struct dm_target *ti, unsigned argc, char **argv,
1187 char *result, unsigned maxlen)
1188{
1189 int r = -EINVAL;
1190 struct dm_writecache *wc = ti->private;
1191
1192 if (!strcasecmp(argv[0], "flush"))
1193 r = process_flush_mesg(argc, argv, wc);
1194 else if (!strcasecmp(argv[0], "flush_on_suspend"))
1195 r = process_flush_on_suspend_mesg(argc, argv, wc);
93de44eb
MP
1196 else if (!strcasecmp(argv[0], "cleaner"))
1197 r = process_cleaner_mesg(argc, argv, wc);
e3a35d03
MP
1198 else if (!strcasecmp(argv[0], "clear_stats"))
1199 r = process_clear_stats_mesg(argc, argv, wc);
48debafe
MP
1200 else
1201 DMERR("unrecognised message received: %s", argv[0]);
1202
1203 return r;
1204}
1205
48338daa
MP
1206static void memcpy_flushcache_optimized(void *dest, void *source, size_t size)
1207{
1208 /*
1209 * clflushopt performs better with block size 1024, 2048, 4096
1210 * non-temporal stores perform better with block size 512
1211 *
1212 * block size 512 1024 2048 4096
1213 * movnti 496 MB/s 642 MB/s 725 MB/s 744 MB/s
1214 * clflushopt 373 MB/s 688 MB/s 1.1 GB/s 1.2 GB/s
1215 *
1216 * We see that movnti performs better for 512-byte blocks, and
1217 * clflushopt performs better for 1024-byte and larger blocks. So, we
1218 * prefer clflushopt for sizes >= 768.
1219 *
1220 * NOTE: this happens to be the case now (with dm-writecache's single
1221 * threaded model) but re-evaluate this once memcpy_flushcache() is
1222 * enabled to use movdir64b which might invalidate this performance
1223 * advantage seen with cache-allocating-writes plus flushing.
1224 */
1225#ifdef CONFIG_X86
1226 if (static_cpu_has(X86_FEATURE_CLFLUSHOPT) &&
1227 likely(boot_cpu_data.x86_clflush_size == 64) &&
1228 likely(size >= 768)) {
1229 do {
1230 memcpy((void *)dest, (void *)source, 64);
1231 clflushopt((void *)dest);
1232 dest += 64;
1233 source += 64;
1234 size -= 64;
1235 } while (size >= 64);
1236 return;
1237 }
1238#endif
1239 memcpy_flushcache(dest, source, size);
1240}
1241
48debafe
MP
1242static void bio_copy_block(struct dm_writecache *wc, struct bio *bio, void *data)
1243{
1244 void *buf;
48debafe
MP
1245 unsigned size;
1246 int rw = bio_data_dir(bio);
1247 unsigned remaining_size = wc->block_size;
1248
1249 do {
1250 struct bio_vec bv = bio_iter_iovec(bio, bio->bi_iter);
18a6234c 1251 buf = bvec_kmap_local(&bv);
48debafe
MP
1252 size = bv.bv_len;
1253 if (unlikely(size > remaining_size))
1254 size = remaining_size;
1255
1256 if (rw == READ) {
1257 int r;
ec6347bb 1258 r = copy_mc_to_kernel(buf, data, size);
48debafe
MP
1259 flush_dcache_page(bio_page(bio));
1260 if (unlikely(r)) {
1261 writecache_error(wc, r, "hardware memory error when reading data: %d", r);
1262 bio->bi_status = BLK_STS_IOERR;
1263 }
1264 } else {
1265 flush_dcache_page(bio_page(bio));
48338daa 1266 memcpy_flushcache_optimized(data, buf, size);
48debafe
MP
1267 }
1268
18a6234c 1269 kunmap_local(buf);
48debafe
MP
1270
1271 data = (char *)data + size;
1272 remaining_size -= size;
1273 bio_advance(bio, size);
1274 } while (unlikely(remaining_size));
1275}
1276
1277static int writecache_flush_thread(void *data)
1278{
1279 struct dm_writecache *wc = data;
1280
1281 while (1) {
1282 struct bio *bio;
1283
1284 wc_lock(wc);
1285 bio = bio_list_pop(&wc->flush_list);
1286 if (!bio) {
1287 set_current_state(TASK_INTERRUPTIBLE);
1288 wc_unlock(wc);
1289
1290 if (unlikely(kthread_should_stop())) {
1291 set_current_state(TASK_RUNNING);
1292 break;
1293 }
1294
1295 schedule();
1296 continue;
1297 }
1298
1299 if (bio_op(bio) == REQ_OP_DISCARD) {
1300 writecache_discard(wc, bio->bi_iter.bi_sector,
1301 bio_end_sector(bio));
1302 wc_unlock(wc);
1303 bio_set_dev(bio, wc->dev->bdev);
ed00aabd 1304 submit_bio_noacct(bio);
48debafe
MP
1305 } else {
1306 writecache_flush(wc);
1307 wc_unlock(wc);
1308 if (writecache_has_error(wc))
1309 bio->bi_status = BLK_STS_IOERR;
1310 bio_endio(bio);
1311 }
1312 }
1313
1314 return 0;
1315}
1316
1317static void writecache_offload_bio(struct dm_writecache *wc, struct bio *bio)
1318{
1319 if (bio_list_empty(&wc->flush_list))
1320 wake_up_process(wc->flush_thread);
1321 bio_list_add(&wc->flush_list, bio);
1322}
1323
cdd4d783
MS
1324enum wc_map_op {
1325 WC_MAP_SUBMIT,
1326 WC_MAP_REMAP,
1327 WC_MAP_REMAP_ORIGIN,
1328 WC_MAP_RETURN,
1329 WC_MAP_ERROR,
1330};
1331
9bc0c92e
MP
1332static void writecache_map_remap_origin(struct dm_writecache *wc, struct bio *bio,
1333 struct wc_entry *e)
4d020b3a
MS
1334{
1335 if (e) {
1336 sector_t next_boundary =
1337 read_original_sector(wc, e) - bio->bi_iter.bi_sector;
1338 if (next_boundary < bio->bi_iter.bi_size >> SECTOR_SHIFT)
1339 dm_accept_partial_bio(bio, next_boundary);
1340 }
4d020b3a
MS
1341}
1342
cdd4d783 1343static enum wc_map_op writecache_map_read(struct dm_writecache *wc, struct bio *bio)
48debafe 1344{
cdd4d783 1345 enum wc_map_op map_op;
48debafe 1346 struct wc_entry *e;
cdd4d783
MS
1347
1348read_next_block:
e3a35d03 1349 wc->stats.reads++;
cdd4d783
MS
1350 e = writecache_find_entry(wc, bio->bi_iter.bi_sector, WFE_RETURN_FOLLOWING);
1351 if (e && read_original_sector(wc, e) == bio->bi_iter.bi_sector) {
e3a35d03 1352 wc->stats.read_hits++;
cdd4d783
MS
1353 if (WC_MODE_PMEM(wc)) {
1354 bio_copy_block(wc, bio, memory_data(wc, e));
1355 if (bio->bi_iter.bi_size)
1356 goto read_next_block;
1357 map_op = WC_MAP_SUBMIT;
1358 } else {
1359 dm_accept_partial_bio(bio, wc->block_size >> SECTOR_SHIFT);
1360 bio_set_dev(bio, wc->ssd_dev->bdev);
1361 bio->bi_iter.bi_sector = cache_sector(wc, e);
1362 if (!writecache_entry_is_committed(wc, e))
1363 writecache_wait_for_ios(wc, WRITE);
1364 map_op = WC_MAP_REMAP;
1365 }
1366 } else {
9bc0c92e 1367 writecache_map_remap_origin(wc, bio, e);
2c6e755b 1368 wc->stats.reads += (bio->bi_iter.bi_size - wc->block_size) >> wc->block_size_bits;
9bc0c92e 1369 map_op = WC_MAP_REMAP_ORIGIN;
cdd4d783
MS
1370 }
1371
1372 return map_op;
1373}
1374
9bc0c92e
MP
1375static void writecache_bio_copy_ssd(struct dm_writecache *wc, struct bio *bio,
1376 struct wc_entry *e, bool search_used)
cdd4d783
MS
1377{
1378 unsigned bio_size = wc->block_size;
1379 sector_t start_cache_sec = cache_sector(wc, e);
1380 sector_t current_cache_sec = start_cache_sec + (bio_size >> SECTOR_SHIFT);
1381
1382 while (bio_size < bio->bi_iter.bi_size) {
1383 if (!search_used) {
1384 struct wc_entry *f = writecache_pop_from_freelist(wc, current_cache_sec);
1385 if (!f)
1386 break;
1387 write_original_sector_seq_count(wc, f, bio->bi_iter.bi_sector +
1388 (bio_size >> SECTOR_SHIFT), wc->seq_count);
1389 writecache_insert_entry(wc, f);
1390 wc->uncommitted_blocks++;
1391 } else {
1392 struct wc_entry *f;
1393 struct rb_node *next = rb_next(&e->rb_node);
1394 if (!next)
1395 break;
1396 f = container_of(next, struct wc_entry, rb_node);
1397 if (f != e + 1)
1398 break;
1399 if (read_original_sector(wc, f) !=
1400 read_original_sector(wc, e) + (wc->block_size >> SECTOR_SHIFT))
1401 break;
1402 if (unlikely(f->write_in_progress))
1403 break;
1404 if (writecache_entry_is_committed(wc, f))
1405 wc->overwrote_committed = true;
1406 e = f;
1407 }
1408 bio_size += wc->block_size;
1409 current_cache_sec += wc->block_size >> SECTOR_SHIFT;
1410 }
1411
1412 bio_set_dev(bio, wc->ssd_dev->bdev);
1413 bio->bi_iter.bi_sector = start_cache_sec;
1414 dm_accept_partial_bio(bio, bio_size >> SECTOR_SHIFT);
1415
b2676e14
MP
1416 wc->stats.writes += bio->bi_iter.bi_size >> wc->block_size_bits;
1417 wc->stats.writes_allocate += (bio->bi_iter.bi_size - wc->block_size) >> wc->block_size_bits;
1418
cdd4d783
MS
1419 if (unlikely(wc->uncommitted_blocks >= wc->autocommit_blocks)) {
1420 wc->uncommitted_blocks = 0;
1421 queue_work(wc->writeback_wq, &wc->flush_work);
1422 } else {
1423 writecache_schedule_autocommit(wc);
1424 }
cdd4d783
MS
1425}
1426
1427static enum wc_map_op writecache_map_write(struct dm_writecache *wc, struct bio *bio)
1428{
1429 struct wc_entry *e;
1430
1431 do {
1432 bool found_entry = false;
1433 bool search_used = false;
b2676e14
MP
1434 if (writecache_has_error(wc)) {
1435 wc->stats.writes += bio->bi_iter.bi_size >> wc->block_size_bits;
cdd4d783 1436 return WC_MAP_ERROR;
b2676e14 1437 }
cdd4d783
MS
1438 e = writecache_find_entry(wc, bio->bi_iter.bi_sector, 0);
1439 if (e) {
1440 if (!writecache_entry_is_committed(wc, e)) {
e3a35d03 1441 wc->stats.write_hits_uncommitted++;
cdd4d783
MS
1442 search_used = true;
1443 goto bio_copy;
1444 }
e3a35d03 1445 wc->stats.write_hits_committed++;
cdd4d783
MS
1446 if (!WC_MODE_PMEM(wc) && !e->write_in_progress) {
1447 wc->overwrote_committed = true;
1448 search_used = true;
1449 goto bio_copy;
1450 }
1451 found_entry = true;
1452 } else {
1453 if (unlikely(wc->cleaner) ||
1454 (wc->metadata_only && !(bio->bi_opf & REQ_META)))
1455 goto direct_write;
1456 }
1457 e = writecache_pop_from_freelist(wc, (sector_t)-1);
1458 if (unlikely(!e)) {
1459 if (!WC_MODE_PMEM(wc) && !found_entry) {
1460direct_write:
1461 e = writecache_find_entry(wc, bio->bi_iter.bi_sector, WFE_RETURN_FOLLOWING);
9bc0c92e 1462 writecache_map_remap_origin(wc, bio, e);
b2676e14
MP
1463 wc->stats.writes_around += bio->bi_iter.bi_size >> wc->block_size_bits;
1464 wc->stats.writes += bio->bi_iter.bi_size >> wc->block_size_bits;
9bc0c92e 1465 return WC_MAP_REMAP_ORIGIN;
cdd4d783 1466 }
e3a35d03 1467 wc->stats.writes_blocked_on_freelist++;
cdd4d783
MS
1468 writecache_wait_on_freelist(wc);
1469 continue;
1470 }
1471 write_original_sector_seq_count(wc, e, bio->bi_iter.bi_sector, wc->seq_count);
1472 writecache_insert_entry(wc, e);
1473 wc->uncommitted_blocks++;
e3a35d03 1474 wc->stats.writes_allocate++;
cdd4d783 1475bio_copy:
9bc0c92e 1476 if (WC_MODE_PMEM(wc)) {
cdd4d783 1477 bio_copy_block(wc, bio, memory_data(wc, e));
b2676e14 1478 wc->stats.writes++;
9bc0c92e
MP
1479 } else {
1480 writecache_bio_copy_ssd(wc, bio, e, search_used);
1481 return WC_MAP_REMAP;
1482 }
cdd4d783
MS
1483 } while (bio->bi_iter.bi_size);
1484
1485 if (unlikely(bio->bi_opf & REQ_FUA || wc->uncommitted_blocks >= wc->autocommit_blocks))
1486 writecache_flush(wc);
1487 else
1488 writecache_schedule_autocommit(wc);
1489
1490 return WC_MAP_SUBMIT;
1491}
1492
15cb6f39
MS
1493static enum wc_map_op writecache_map_flush(struct dm_writecache *wc, struct bio *bio)
1494{
1495 if (writecache_has_error(wc))
1496 return WC_MAP_ERROR;
1497
1498 if (WC_MODE_PMEM(wc)) {
e3a35d03 1499 wc->stats.flushes++;
15cb6f39
MS
1500 writecache_flush(wc);
1501 if (writecache_has_error(wc))
1502 return WC_MAP_ERROR;
1503 else if (unlikely(wc->cleaner) || unlikely(wc->metadata_only))
1504 return WC_MAP_REMAP_ORIGIN;
1505 return WC_MAP_SUBMIT;
1506 }
1507 /* SSD: */
1508 if (dm_bio_get_target_bio_nr(bio))
1509 return WC_MAP_REMAP_ORIGIN;
e3a35d03 1510 wc->stats.flushes++;
15cb6f39
MS
1511 writecache_offload_bio(wc, bio);
1512 return WC_MAP_RETURN;
1513}
1514
1515static enum wc_map_op writecache_map_discard(struct dm_writecache *wc, struct bio *bio)
1516{
2ee73ef6 1517 wc->stats.discards += bio->bi_iter.bi_size >> wc->block_size_bits;
e3a35d03 1518
15cb6f39
MS
1519 if (writecache_has_error(wc))
1520 return WC_MAP_ERROR;
1521
1522 if (WC_MODE_PMEM(wc)) {
1523 writecache_discard(wc, bio->bi_iter.bi_sector, bio_end_sector(bio));
1524 return WC_MAP_REMAP_ORIGIN;
1525 }
1526 /* SSD: */
1527 writecache_offload_bio(wc, bio);
1528 return WC_MAP_RETURN;
1529}
1530
cdd4d783
MS
1531static int writecache_map(struct dm_target *ti, struct bio *bio)
1532{
48debafe 1533 struct dm_writecache *wc = ti->private;
15cb6f39 1534 enum wc_map_op map_op;
48debafe
MP
1535
1536 bio->bi_private = NULL;
1537
1538 wc_lock(wc);
1539
1540 if (unlikely(bio->bi_opf & REQ_PREFLUSH)) {
15cb6f39
MS
1541 map_op = writecache_map_flush(wc, bio);
1542 goto done;
48debafe
MP
1543 }
1544
1545 bio->bi_iter.bi_sector = dm_target_offset(ti, bio->bi_iter.bi_sector);
1546
1547 if (unlikely((((unsigned)bio->bi_iter.bi_sector | bio_sectors(bio)) &
1548 (wc->block_size / 512 - 1)) != 0)) {
1549 DMERR("I/O is not aligned, sector %llu, size %u, block size %u",
1550 (unsigned long long)bio->bi_iter.bi_sector,
1551 bio->bi_iter.bi_size, wc->block_size);
15cb6f39
MS
1552 map_op = WC_MAP_ERROR;
1553 goto done;
48debafe
MP
1554 }
1555
1556 if (unlikely(bio_op(bio) == REQ_OP_DISCARD)) {
15cb6f39
MS
1557 map_op = writecache_map_discard(wc, bio);
1558 goto done;
48debafe
MP
1559 }
1560
cdd4d783
MS
1561 if (bio_data_dir(bio) == READ)
1562 map_op = writecache_map_read(wc, bio);
1563 else
1564 map_op = writecache_map_write(wc, bio);
15cb6f39 1565done:
cdd4d783
MS
1566 switch (map_op) {
1567 case WC_MAP_REMAP_ORIGIN:
cdd4d783
MS
1568 if (likely(wc->pause != 0)) {
1569 if (bio_op(bio) == REQ_OP_WRITE) {
1570 dm_iot_io_begin(&wc->iot, 1);
1571 bio->bi_private = (void *)2;
1572 }
5c0de3d7 1573 }
cdd4d783
MS
1574 bio_set_dev(bio, wc->dev->bdev);
1575 wc_unlock(wc);
1576 return DM_MAPIO_REMAPPED;
48debafe 1577
cdd4d783 1578 case WC_MAP_REMAP:
cdd4d783
MS
1579 /* make sure that writecache_end_io decrements bio_in_progress: */
1580 bio->bi_private = (void *)1;
1581 atomic_inc(&wc->bio_in_progress[bio_data_dir(bio)]);
1582 wc_unlock(wc);
1583 return DM_MAPIO_REMAPPED;
48debafe 1584
cdd4d783 1585 case WC_MAP_SUBMIT:
cdd4d783
MS
1586 wc_unlock(wc);
1587 bio_endio(bio);
1588 return DM_MAPIO_SUBMITTED;
48debafe 1589
cdd4d783 1590 case WC_MAP_RETURN:
cdd4d783
MS
1591 wc_unlock(wc);
1592 return DM_MAPIO_SUBMITTED;
48debafe 1593
cdd4d783 1594 case WC_MAP_ERROR:
cdd4d783
MS
1595 wc_unlock(wc);
1596 bio_io_error(bio);
1597 return DM_MAPIO_SUBMITTED;
df699cc1
MP
1598
1599 default:
1600 BUG();
1601 return -1;
cdd4d783 1602 }
48debafe
MP
1603}
1604
1605static int writecache_end_io(struct dm_target *ti, struct bio *bio, blk_status_t *status)
1606{
1607 struct dm_writecache *wc = ti->private;
1608
95b88f4d 1609 if (bio->bi_private == (void *)1) {
48debafe
MP
1610 int dir = bio_data_dir(bio);
1611 if (atomic_dec_and_test(&wc->bio_in_progress[dir]))
1612 if (unlikely(waitqueue_active(&wc->bio_in_progress_wait[dir])))
1613 wake_up(&wc->bio_in_progress_wait[dir]);
95b88f4d
MP
1614 } else if (bio->bi_private == (void *)2) {
1615 dm_iot_io_end(&wc->iot, 1);
48debafe
MP
1616 }
1617 return 0;
1618}
1619
1620static int writecache_iterate_devices(struct dm_target *ti,
1621 iterate_devices_callout_fn fn, void *data)
1622{
1623 struct dm_writecache *wc = ti->private;
1624
1625 return fn(ti, wc->dev, 0, ti->len, data);
1626}
1627
1628static void writecache_io_hints(struct dm_target *ti, struct queue_limits *limits)
1629{
1630 struct dm_writecache *wc = ti->private;
1631
1632 if (limits->logical_block_size < wc->block_size)
1633 limits->logical_block_size = wc->block_size;
1634
1635 if (limits->physical_block_size < wc->block_size)
1636 limits->physical_block_size = wc->block_size;
1637
1638 if (limits->io_min < wc->block_size)
1639 limits->io_min = wc->block_size;
1640}
1641
1642
1643static void writecache_writeback_endio(struct bio *bio)
1644{
1645 struct writeback_struct *wb = container_of(bio, struct writeback_struct, bio);
1646 struct dm_writecache *wc = wb->wc;
1647 unsigned long flags;
1648
1649 raw_spin_lock_irqsave(&wc->endio_list_lock, flags);
1650 if (unlikely(list_empty(&wc->endio_list)))
1651 wake_up_process(wc->endio_thread);
1652 list_add_tail(&wb->endio_entry, &wc->endio_list);
1653 raw_spin_unlock_irqrestore(&wc->endio_list_lock, flags);
1654}
1655
1656static void writecache_copy_endio(int read_err, unsigned long write_err, void *ptr)
1657{
1658 struct copy_struct *c = ptr;
1659 struct dm_writecache *wc = c->wc;
1660
1661 c->error = likely(!(read_err | write_err)) ? 0 : -EIO;
1662
1663 raw_spin_lock_irq(&wc->endio_list_lock);
1664 if (unlikely(list_empty(&wc->endio_list)))
1665 wake_up_process(wc->endio_thread);
1666 list_add_tail(&c->endio_entry, &wc->endio_list);
1667 raw_spin_unlock_irq(&wc->endio_list_lock);
1668}
1669
1670static void __writecache_endio_pmem(struct dm_writecache *wc, struct list_head *list)
1671{
1672 unsigned i;
1673 struct writeback_struct *wb;
1674 struct wc_entry *e;
1675 unsigned long n_walked = 0;
1676
1677 do {
1678 wb = list_entry(list->next, struct writeback_struct, endio_entry);
1679 list_del(&wb->endio_entry);
1680
1681 if (unlikely(wb->bio.bi_status != BLK_STS_OK))
1682 writecache_error(wc, blk_status_to_errno(wb->bio.bi_status),
1683 "write error %d", wb->bio.bi_status);
1684 i = 0;
1685 do {
1686 e = wb->wc_list[i];
1687 BUG_ON(!e->write_in_progress);
1688 e->write_in_progress = false;
1689 INIT_LIST_HEAD(&e->lru);
1690 if (!writecache_has_error(wc))
1691 writecache_free_entry(wc, e);
1692 BUG_ON(!wc->writeback_size);
1693 wc->writeback_size--;
1694 n_walked++;
1695 if (unlikely(n_walked >= ENDIO_LATENCY)) {
aa950920 1696 writecache_commit_flushed(wc, false);
48debafe
MP
1697 wc_unlock(wc);
1698 wc_lock(wc);
1699 n_walked = 0;
1700 }
1701 } while (++i < wb->wc_list_n);
1702
1703 if (wb->wc_list != wb->wc_list_inline)
1704 kfree(wb->wc_list);
1705 bio_put(&wb->bio);
1706 } while (!list_empty(list));
1707}
1708
1709static void __writecache_endio_ssd(struct dm_writecache *wc, struct list_head *list)
1710{
1711 struct copy_struct *c;
1712 struct wc_entry *e;
1713
1714 do {
1715 c = list_entry(list->next, struct copy_struct, endio_entry);
1716 list_del(&c->endio_entry);
1717
1718 if (unlikely(c->error))
1719 writecache_error(wc, c->error, "copy error");
1720
1721 e = c->e;
1722 do {
1723 BUG_ON(!e->write_in_progress);
1724 e->write_in_progress = false;
1725 INIT_LIST_HEAD(&e->lru);
1726 if (!writecache_has_error(wc))
1727 writecache_free_entry(wc, e);
1728
1729 BUG_ON(!wc->writeback_size);
1730 wc->writeback_size--;
1731 e++;
1732 } while (--c->n_entries);
1733 mempool_free(c, &wc->copy_pool);
1734 } while (!list_empty(list));
1735}
1736
1737static int writecache_endio_thread(void *data)
1738{
1739 struct dm_writecache *wc = data;
1740
1741 while (1) {
1742 struct list_head list;
1743
1744 raw_spin_lock_irq(&wc->endio_list_lock);
1745 if (!list_empty(&wc->endio_list))
1746 goto pop_from_list;
1747 set_current_state(TASK_INTERRUPTIBLE);
1748 raw_spin_unlock_irq(&wc->endio_list_lock);
1749
1750 if (unlikely(kthread_should_stop())) {
1751 set_current_state(TASK_RUNNING);
1752 break;
1753 }
1754
1755 schedule();
1756
1757 continue;
1758
1759pop_from_list:
1760 list = wc->endio_list;
1761 list.next->prev = list.prev->next = &list;
1762 INIT_LIST_HEAD(&wc->endio_list);
1763 raw_spin_unlock_irq(&wc->endio_list_lock);
1764
1765 if (!WC_MODE_FUA(wc))
1766 writecache_disk_flush(wc, wc->dev);
1767
1768 wc_lock(wc);
1769
1770 if (WC_MODE_PMEM(wc)) {
1771 __writecache_endio_pmem(wc, &list);
1772 } else {
1773 __writecache_endio_ssd(wc, &list);
1774 writecache_wait_for_ios(wc, READ);
1775 }
1776
aa950920 1777 writecache_commit_flushed(wc, false);
48debafe
MP
1778
1779 wc_unlock(wc);
1780 }
1781
1782 return 0;
1783}
1784
620cbe40 1785static bool wc_add_block(struct writeback_struct *wb, struct wc_entry *e)
48debafe
MP
1786{
1787 struct dm_writecache *wc = wb->wc;
1788 unsigned block_size = wc->block_size;
1789 void *address = memory_data(wc, e);
1790
1791 persistent_memory_flush_cache(address, block_size);
4134455f
MP
1792
1793 if (unlikely(bio_end_sector(&wb->bio) >= wc->data_device_sectors))
1794 return true;
1795
48debafe
MP
1796 return bio_add_page(&wb->bio, persistent_memory_page(address),
1797 block_size, persistent_memory_page_offset(address)) != 0;
1798}
1799
1800struct writeback_list {
1801 struct list_head list;
1802 size_t size;
1803};
1804
1805static void __writeback_throttle(struct dm_writecache *wc, struct writeback_list *wbl)
1806{
1807 if (unlikely(wc->max_writeback_jobs)) {
1808 if (READ_ONCE(wc->writeback_size) - wbl->size >= wc->max_writeback_jobs) {
1809 wc_lock(wc);
1810 while (wc->writeback_size - wbl->size >= wc->max_writeback_jobs)
1811 writecache_wait_on_freelist(wc);
1812 wc_unlock(wc);
1813 }
1814 }
1815 cond_resched();
1816}
1817
1818static void __writecache_writeback_pmem(struct dm_writecache *wc, struct writeback_list *wbl)
1819{
1820 struct wc_entry *e, *f;
1821 struct bio *bio;
1822 struct writeback_struct *wb;
1823 unsigned max_pages;
1824
1825 while (wbl->size) {
1826 wbl->size--;
1827 e = container_of(wbl->list.prev, struct wc_entry, lru);
1828 list_del(&e->lru);
1829
1830 max_pages = e->wc_list_contiguous;
1831
609be106
CH
1832 bio = bio_alloc_bioset(wc->dev->bdev, max_pages, REQ_OP_WRITE,
1833 GFP_NOIO, &wc->bio_set);
48debafe
MP
1834 wb = container_of(bio, struct writeback_struct, bio);
1835 wb->wc = wc;
09f2d656 1836 bio->bi_end_io = writecache_writeback_endio;
09f2d656 1837 bio->bi_iter.bi_sector = read_original_sector(wc, e);
48debafe 1838 if (max_pages <= WB_LIST_INLINE ||
50a7d3ba
KC
1839 unlikely(!(wb->wc_list = kmalloc_array(max_pages, sizeof(struct wc_entry *),
1840 GFP_NOIO | __GFP_NORETRY |
1841 __GFP_NOMEMALLOC | __GFP_NOWARN)))) {
48debafe
MP
1842 wb->wc_list = wb->wc_list_inline;
1843 max_pages = WB_LIST_INLINE;
1844 }
1845
620cbe40 1846 BUG_ON(!wc_add_block(wb, e));
48debafe
MP
1847
1848 wb->wc_list[0] = e;
1849 wb->wc_list_n = 1;
1850
1851 while (wbl->size && wb->wc_list_n < max_pages) {
1852 f = container_of(wbl->list.prev, struct wc_entry, lru);
1853 if (read_original_sector(wc, f) !=
1854 read_original_sector(wc, e) + (wc->block_size >> SECTOR_SHIFT))
1855 break;
620cbe40 1856 if (!wc_add_block(wb, f))
48debafe
MP
1857 break;
1858 wbl->size--;
1859 list_del(&f->lru);
1860 wb->wc_list[wb->wc_list_n++] = f;
1861 e = f;
1862 }
609be106
CH
1863 if (WC_MODE_FUA(wc))
1864 bio->bi_opf |= REQ_FUA;
48debafe
MP
1865 if (writecache_has_error(wc)) {
1866 bio->bi_status = BLK_STS_IOERR;
09f2d656 1867 bio_endio(bio);
4134455f
MP
1868 } else if (unlikely(!bio_sectors(bio))) {
1869 bio->bi_status = BLK_STS_OK;
1870 bio_endio(bio);
48debafe 1871 } else {
09f2d656 1872 submit_bio(bio);
48debafe
MP
1873 }
1874
1875 __writeback_throttle(wc, wbl);
1876 }
1877}
1878
1879static void __writecache_writeback_ssd(struct dm_writecache *wc, struct writeback_list *wbl)
1880{
1881 struct wc_entry *e, *f;
1882 struct dm_io_region from, to;
1883 struct copy_struct *c;
1884
1885 while (wbl->size) {
1886 unsigned n_sectors;
1887
1888 wbl->size--;
1889 e = container_of(wbl->list.prev, struct wc_entry, lru);
1890 list_del(&e->lru);
1891
1892 n_sectors = e->wc_list_contiguous << (wc->block_size_bits - SECTOR_SHIFT);
1893
1894 from.bdev = wc->ssd_dev->bdev;
1895 from.sector = cache_sector(wc, e);
1896 from.count = n_sectors;
1897 to.bdev = wc->dev->bdev;
1898 to.sector = read_original_sector(wc, e);
1899 to.count = n_sectors;
1900
1901 c = mempool_alloc(&wc->copy_pool, GFP_NOIO);
1902 c->wc = wc;
1903 c->e = e;
1904 c->n_entries = e->wc_list_contiguous;
1905
1906 while ((n_sectors -= wc->block_size >> SECTOR_SHIFT)) {
1907 wbl->size--;
1908 f = container_of(wbl->list.prev, struct wc_entry, lru);
1909 BUG_ON(f != e + 1);
1910 list_del(&f->lru);
1911 e = f;
1912 }
1913
4134455f
MP
1914 if (unlikely(to.sector + to.count > wc->data_device_sectors)) {
1915 if (to.sector >= wc->data_device_sectors) {
1916 writecache_copy_endio(0, 0, c);
1917 continue;
1918 }
1919 from.count = to.count = wc->data_device_sectors - to.sector;
1920 }
1921
48debafe
MP
1922 dm_kcopyd_copy(wc->dm_kcopyd, &from, 1, &to, 0, writecache_copy_endio, c);
1923
1924 __writeback_throttle(wc, wbl);
1925 }
1926}
1927
1928static void writecache_writeback(struct work_struct *work)
1929{
1930 struct dm_writecache *wc = container_of(work, struct dm_writecache, writeback_work);
1931 struct blk_plug plug;
3f649ab7 1932 struct wc_entry *f, *g, *e = NULL;
48debafe
MP
1933 struct rb_node *node, *next_node;
1934 struct list_head skipped;
1935 struct writeback_list wbl;
1936 unsigned long n_walked;
1937
293128b1
MP
1938 if (!WC_MODE_PMEM(wc)) {
1939 /* Wait for any active kcopyd work on behalf of ssd writeback */
1940 dm_kcopyd_client_flush(wc->dm_kcopyd);
1941 }
1942
5c0de3d7
MP
1943 if (likely(wc->pause != 0)) {
1944 while (1) {
1945 unsigned long idle;
1946 if (unlikely(wc->cleaner) || unlikely(wc->writeback_all) ||
1947 unlikely(dm_suspended(wc->ti)))
1948 break;
1949 idle = dm_iot_idle_time(&wc->iot);
1950 if (idle >= wc->pause)
1951 break;
1952 idle = wc->pause - idle;
1953 if (idle > HZ)
1954 idle = HZ;
1955 schedule_timeout_idle(idle);
95b88f4d
MP
1956 }
1957 }
1958
48debafe
MP
1959 wc_lock(wc);
1960restart:
1961 if (writecache_has_error(wc)) {
1962 wc_unlock(wc);
1963 return;
1964 }
1965
1966 if (unlikely(wc->writeback_all)) {
1967 if (writecache_wait_for_writeback(wc))
1968 goto restart;
1969 }
1970
1971 if (wc->overwrote_committed) {
1972 writecache_wait_for_ios(wc, WRITE);
1973 }
1974
1975 n_walked = 0;
1976 INIT_LIST_HEAD(&skipped);
1977 INIT_LIST_HEAD(&wbl.list);
1978 wbl.size = 0;
1979 while (!list_empty(&wc->lru) &&
1980 (wc->writeback_all ||
3923d485
MP
1981 wc->freelist_size + wc->writeback_size <= wc->freelist_low_watermark ||
1982 (jiffies - container_of(wc->lru.prev, struct wc_entry, lru)->age >=
1983 wc->max_age - wc->max_age / MAX_AGE_DIV))) {
48debafe
MP
1984
1985 n_walked++;
1986 if (unlikely(n_walked > WRITEBACK_LATENCY) &&
af4f6cab
MP
1987 likely(!wc->writeback_all)) {
1988 if (likely(!dm_suspended(wc->ti)))
1989 queue_work(wc->writeback_wq, &wc->writeback_work);
48debafe
MP
1990 break;
1991 }
1992
5229b489
HY
1993 if (unlikely(wc->writeback_all)) {
1994 if (unlikely(!e)) {
1995 writecache_flush(wc);
1996 e = container_of(rb_first(&wc->tree), struct wc_entry, rb_node);
1997 } else
1998 e = g;
1999 } else
2000 e = container_of(wc->lru.prev, struct wc_entry, lru);
48debafe
MP
2001 BUG_ON(e->write_in_progress);
2002 if (unlikely(!writecache_entry_is_committed(wc, e))) {
2003 writecache_flush(wc);
2004 }
2005 node = rb_prev(&e->rb_node);
2006 if (node) {
2007 f = container_of(node, struct wc_entry, rb_node);
2008 if (unlikely(read_original_sector(wc, f) ==
2009 read_original_sector(wc, e))) {
2010 BUG_ON(!f->write_in_progress);
8c77f1cb 2011 list_move(&e->lru, &skipped);
48debafe
MP
2012 cond_resched();
2013 continue;
2014 }
2015 }
2016 wc->writeback_size++;
8c77f1cb 2017 list_move(&e->lru, &wbl.list);
48debafe
MP
2018 wbl.size++;
2019 e->write_in_progress = true;
2020 e->wc_list_contiguous = 1;
2021
2022 f = e;
2023
2024 while (1) {
2025 next_node = rb_next(&f->rb_node);
2026 if (unlikely(!next_node))
2027 break;
2028 g = container_of(next_node, struct wc_entry, rb_node);
62421b38
HY
2029 if (unlikely(read_original_sector(wc, g) ==
2030 read_original_sector(wc, f))) {
48debafe
MP
2031 f = g;
2032 continue;
2033 }
2034 if (read_original_sector(wc, g) !=
2035 read_original_sector(wc, f) + (wc->block_size >> SECTOR_SHIFT))
2036 break;
2037 if (unlikely(g->write_in_progress))
2038 break;
2039 if (unlikely(!writecache_entry_is_committed(wc, g)))
2040 break;
2041
2042 if (!WC_MODE_PMEM(wc)) {
2043 if (g != f + 1)
2044 break;
2045 }
2046
2047 n_walked++;
2048 //if (unlikely(n_walked > WRITEBACK_LATENCY) && likely(!wc->writeback_all))
2049 // break;
2050
2051 wc->writeback_size++;
8c77f1cb 2052 list_move(&g->lru, &wbl.list);
48debafe
MP
2053 wbl.size++;
2054 g->write_in_progress = true;
a8affc03 2055 g->wc_list_contiguous = BIO_MAX_VECS;
48debafe
MP
2056 f = g;
2057 e->wc_list_contiguous++;
a8affc03 2058 if (unlikely(e->wc_list_contiguous == BIO_MAX_VECS)) {
5229b489
HY
2059 if (unlikely(wc->writeback_all)) {
2060 next_node = rb_next(&f->rb_node);
2061 if (likely(next_node))
2062 g = container_of(next_node, struct wc_entry, rb_node);
2063 }
48debafe 2064 break;
5229b489 2065 }
48debafe
MP
2066 }
2067 cond_resched();
2068 }
2069
2070 if (!list_empty(&skipped)) {
2071 list_splice_tail(&skipped, &wc->lru);
2072 /*
2073 * If we didn't do any progress, we must wait until some
2074 * writeback finishes to avoid burning CPU in a loop
2075 */
2076 if (unlikely(!wbl.size))
2077 writecache_wait_for_writeback(wc);
2078 }
2079
2080 wc_unlock(wc);
2081
2082 blk_start_plug(&plug);
2083
2084 if (WC_MODE_PMEM(wc))
2085 __writecache_writeback_pmem(wc, &wbl);
2086 else
2087 __writecache_writeback_ssd(wc, &wbl);
2088
2089 blk_finish_plug(&plug);
2090
2091 if (unlikely(wc->writeback_all)) {
2092 wc_lock(wc);
2093 while (writecache_wait_for_writeback(wc));
2094 wc_unlock(wc);
2095 }
2096}
2097
2098static int calculate_memory_size(uint64_t device_size, unsigned block_size,
2099 size_t *n_blocks_p, size_t *n_metadata_blocks_p)
2100{
2101 uint64_t n_blocks, offset;
2102 struct wc_entry e;
2103
2104 n_blocks = device_size;
2105 do_div(n_blocks, block_size + sizeof(struct wc_memory_entry));
2106
2107 while (1) {
2108 if (!n_blocks)
2109 return -ENOSPC;
2110 /* Verify the following entries[n_blocks] won't overflow */
2111 if (n_blocks >= ((size_t)-sizeof(struct wc_memory_superblock) /
2112 sizeof(struct wc_memory_entry)))
2113 return -EFBIG;
2114 offset = offsetof(struct wc_memory_superblock, entries[n_blocks]);
2115 offset = (offset + block_size - 1) & ~(uint64_t)(block_size - 1);
2116 if (offset + n_blocks * block_size <= device_size)
2117 break;
2118 n_blocks--;
2119 }
2120
2121 /* check if the bit field overflows */
2122 e.index = n_blocks;
2123 if (e.index != n_blocks)
2124 return -EFBIG;
2125
2126 if (n_blocks_p)
2127 *n_blocks_p = n_blocks;
2128 if (n_metadata_blocks_p)
2129 *n_metadata_blocks_p = offset >> __ffs(block_size);
2130 return 0;
2131}
2132
2133static int init_memory(struct dm_writecache *wc)
2134{
2135 size_t b;
2136 int r;
2137
2138 r = calculate_memory_size(wc->memory_map_size, wc->block_size, &wc->n_blocks, NULL);
2139 if (r)
2140 return r;
2141
2142 r = writecache_alloc_entries(wc);
2143 if (r)
2144 return r;
2145
2146 for (b = 0; b < ARRAY_SIZE(sb(wc)->padding); b++)
2147 pmem_assign(sb(wc)->padding[b], cpu_to_le64(0));
2148 pmem_assign(sb(wc)->version, cpu_to_le32(MEMORY_SUPERBLOCK_VERSION));
2149 pmem_assign(sb(wc)->block_size, cpu_to_le32(wc->block_size));
2150 pmem_assign(sb(wc)->n_blocks, cpu_to_le64(wc->n_blocks));
2151 pmem_assign(sb(wc)->seq_count, cpu_to_le64(0));
2152
1edaa447 2153 for (b = 0; b < wc->n_blocks; b++) {
48debafe 2154 write_original_sector_seq_count(wc, &wc->entries[b], -1, -1);
1edaa447
MP
2155 cond_resched();
2156 }
48debafe
MP
2157
2158 writecache_flush_all_metadata(wc);
aa950920 2159 writecache_commit_flushed(wc, false);
48debafe
MP
2160 pmem_assign(sb(wc)->magic, cpu_to_le32(MEMORY_SUPERBLOCK_MAGIC));
2161 writecache_flush_region(wc, &sb(wc)->magic, sizeof sb(wc)->magic);
aa950920 2162 writecache_commit_flushed(wc, false);
48debafe
MP
2163
2164 return 0;
2165}
2166
2167static void writecache_dtr(struct dm_target *ti)
2168{
2169 struct dm_writecache *wc = ti->private;
2170
2171 if (!wc)
2172 return;
2173
2174 if (wc->endio_thread)
2175 kthread_stop(wc->endio_thread);
2176
2177 if (wc->flush_thread)
2178 kthread_stop(wc->flush_thread);
2179
2180 bioset_exit(&wc->bio_set);
2181
2182 mempool_exit(&wc->copy_pool);
2183
2184 if (wc->writeback_wq)
2185 destroy_workqueue(wc->writeback_wq);
2186
2187 if (wc->dev)
2188 dm_put_device(ti, wc->dev);
2189
2190 if (wc->ssd_dev)
2191 dm_put_device(ti, wc->ssd_dev);
2192
21ec672e 2193 vfree(wc->entries);
48debafe
MP
2194
2195 if (wc->memory_map) {
2196 if (WC_MODE_PMEM(wc))
2197 persistent_memory_release(wc);
2198 else
2199 vfree(wc->memory_map);
2200 }
2201
2202 if (wc->dm_kcopyd)
2203 dm_kcopyd_client_destroy(wc->dm_kcopyd);
2204
2205 if (wc->dm_io)
2206 dm_io_client_destroy(wc->dm_io);
2207
21ec672e 2208 vfree(wc->dirty_bitmap);
48debafe
MP
2209
2210 kfree(wc);
2211}
2212
2213static int writecache_ctr(struct dm_target *ti, unsigned argc, char **argv)
2214{
2215 struct dm_writecache *wc;
2216 struct dm_arg_set as;
2217 const char *string;
2218 unsigned opt_params;
2219 size_t offset, data_size;
2220 int i, r;
2221 char dummy;
2222 int high_wm_percent = HIGH_WATERMARK;
2223 int low_wm_percent = LOW_WATERMARK;
2224 uint64_t x;
2225 struct wc_memory_superblock s;
2226
2227 static struct dm_arg _args[] = {
5c0de3d7 2228 {0, 18, "Invalid number of feature args"},
48debafe
MP
2229 };
2230
2231 as.argc = argc;
2232 as.argv = argv;
2233
2234 wc = kzalloc(sizeof(struct dm_writecache), GFP_KERNEL);
2235 if (!wc) {
2236 ti->error = "Cannot allocate writecache structure";
2237 r = -ENOMEM;
2238 goto bad;
2239 }
2240 ti->private = wc;
2241 wc->ti = ti;
2242
2243 mutex_init(&wc->lock);
3923d485 2244 wc->max_age = MAX_AGE_UNSPECIFIED;
48debafe
MP
2245 writecache_poison_lists(wc);
2246 init_waitqueue_head(&wc->freelist_wait);
2247 timer_setup(&wc->autocommit_timer, writecache_autocommit_timer, 0);
3923d485 2248 timer_setup(&wc->max_age_timer, writecache_max_age_timer, 0);
48debafe
MP
2249
2250 for (i = 0; i < 2; i++) {
2251 atomic_set(&wc->bio_in_progress[i], 0);
2252 init_waitqueue_head(&wc->bio_in_progress_wait[i]);
2253 }
2254
2255 wc->dm_io = dm_io_client_create();
2256 if (IS_ERR(wc->dm_io)) {
2257 r = PTR_ERR(wc->dm_io);
2258 ti->error = "Unable to allocate dm-io client";
2259 wc->dm_io = NULL;
2260 goto bad;
2261 }
2262
f87e033b 2263 wc->writeback_wq = alloc_workqueue("writecache-writeback", WQ_MEM_RECLAIM, 1);
48debafe
MP
2264 if (!wc->writeback_wq) {
2265 r = -ENOMEM;
2266 ti->error = "Could not allocate writeback workqueue";
2267 goto bad;
2268 }
2269 INIT_WORK(&wc->writeback_work, writecache_writeback);
2270 INIT_WORK(&wc->flush_work, writecache_flush_work);
2271
95b88f4d
MP
2272 dm_iot_init(&wc->iot);
2273
48debafe
MP
2274 raw_spin_lock_init(&wc->endio_list_lock);
2275 INIT_LIST_HEAD(&wc->endio_list);
f635237a 2276 wc->endio_thread = kthread_run(writecache_endio_thread, wc, "writecache_endio");
48debafe
MP
2277 if (IS_ERR(wc->endio_thread)) {
2278 r = PTR_ERR(wc->endio_thread);
2279 wc->endio_thread = NULL;
2280 ti->error = "Couldn't spawn endio thread";
2281 goto bad;
2282 }
48debafe
MP
2283
2284 /*
2285 * Parse the mode (pmem or ssd)
2286 */
2287 string = dm_shift_arg(&as);
2288 if (!string)
2289 goto bad_arguments;
2290
2291 if (!strcasecmp(string, "s")) {
2292 wc->pmem_mode = false;
2293 } else if (!strcasecmp(string, "p")) {
2294#ifdef DM_WRITECACHE_HAS_PMEM
2295 wc->pmem_mode = true;
2296 wc->writeback_fua = true;
2297#else
2298 /*
2299 * If the architecture doesn't support persistent memory or
2300 * the kernel doesn't support any DAX drivers, this driver can
2301 * only be used in SSD-only mode.
2302 */
2303 r = -EOPNOTSUPP;
2304 ti->error = "Persistent memory or DAX not supported on this system";
2305 goto bad;
2306#endif
2307 } else {
2308 goto bad_arguments;
2309 }
2310
2311 if (WC_MODE_PMEM(wc)) {
2312 r = bioset_init(&wc->bio_set, BIO_POOL_SIZE,
2313 offsetof(struct writeback_struct, bio),
2314 BIOSET_NEED_BVECS);
2315 if (r) {
2316 ti->error = "Could not allocate bio set";
2317 goto bad;
2318 }
2319 } else {
5c0de3d7 2320 wc->pause = PAUSE_WRITEBACK;
48debafe
MP
2321 r = mempool_init_kmalloc_pool(&wc->copy_pool, 1, sizeof(struct copy_struct));
2322 if (r) {
2323 ti->error = "Could not allocate mempool";
2324 goto bad;
2325 }
2326 }
2327
2328 /*
2329 * Parse the origin data device
2330 */
2331 string = dm_shift_arg(&as);
2332 if (!string)
2333 goto bad_arguments;
2334 r = dm_get_device(ti, string, dm_table_get_mode(ti->table), &wc->dev);
2335 if (r) {
2336 ti->error = "Origin data device lookup failed";
2337 goto bad;
2338 }
2339
2340 /*
2341 * Parse cache data device (be it pmem or ssd)
2342 */
2343 string = dm_shift_arg(&as);
2344 if (!string)
2345 goto bad_arguments;
2346
2347 r = dm_get_device(ti, string, dm_table_get_mode(ti->table), &wc->ssd_dev);
2348 if (r) {
2349 ti->error = "Cache data device lookup failed";
2350 goto bad;
2351 }
6dcbb52c 2352 wc->memory_map_size = bdev_nr_bytes(wc->ssd_dev->bdev);
48debafe 2353
48debafe
MP
2354 /*
2355 * Parse the cache block size
2356 */
2357 string = dm_shift_arg(&as);
2358 if (!string)
2359 goto bad_arguments;
2360 if (sscanf(string, "%u%c", &wc->block_size, &dummy) != 1 ||
2361 wc->block_size < 512 || wc->block_size > PAGE_SIZE ||
2362 (wc->block_size & (wc->block_size - 1))) {
2363 r = -EINVAL;
2364 ti->error = "Invalid block size";
2365 goto bad;
2366 }
31b22120
MP
2367 if (wc->block_size < bdev_logical_block_size(wc->dev->bdev) ||
2368 wc->block_size < bdev_logical_block_size(wc->ssd_dev->bdev)) {
2369 r = -EINVAL;
2370 ti->error = "Block size is smaller than device logical block size";
2371 goto bad;
2372 }
48debafe
MP
2373 wc->block_size_bits = __ffs(wc->block_size);
2374
2375 wc->max_writeback_jobs = MAX_WRITEBACK_JOBS;
2376 wc->autocommit_blocks = !WC_MODE_PMEM(wc) ? AUTOCOMMIT_BLOCKS_SSD : AUTOCOMMIT_BLOCKS_PMEM;
2377 wc->autocommit_jiffies = msecs_to_jiffies(AUTOCOMMIT_MSEC);
2378
2379 /*
2380 * Parse optional arguments
2381 */
2382 r = dm_read_arg_group(_args, &as, &opt_params, &ti->error);
2383 if (r)
2384 goto bad;
2385
2386 while (opt_params) {
2387 string = dm_shift_arg(&as), opt_params--;
d284f824
MP
2388 if (!strcasecmp(string, "start_sector") && opt_params >= 1) {
2389 unsigned long long start_sector;
2390 string = dm_shift_arg(&as), opt_params--;
2391 if (sscanf(string, "%llu%c", &start_sector, &dummy) != 1)
2392 goto invalid_optional;
2393 wc->start_sector = start_sector;
054bee16 2394 wc->start_sector_set = true;
d284f824
MP
2395 if (wc->start_sector != start_sector ||
2396 wc->start_sector >= wc->memory_map_size >> SECTOR_SHIFT)
2397 goto invalid_optional;
2398 } else if (!strcasecmp(string, "high_watermark") && opt_params >= 1) {
48debafe
MP
2399 string = dm_shift_arg(&as), opt_params--;
2400 if (sscanf(string, "%d%c", &high_wm_percent, &dummy) != 1)
2401 goto invalid_optional;
2402 if (high_wm_percent < 0 || high_wm_percent > 100)
2403 goto invalid_optional;
054bee16 2404 wc->high_wm_percent_value = high_wm_percent;
48debafe
MP
2405 wc->high_wm_percent_set = true;
2406 } else if (!strcasecmp(string, "low_watermark") && opt_params >= 1) {
2407 string = dm_shift_arg(&as), opt_params--;
2408 if (sscanf(string, "%d%c", &low_wm_percent, &dummy) != 1)
2409 goto invalid_optional;
2410 if (low_wm_percent < 0 || low_wm_percent > 100)
2411 goto invalid_optional;
054bee16 2412 wc->low_wm_percent_value = low_wm_percent;
48debafe
MP
2413 wc->low_wm_percent_set = true;
2414 } else if (!strcasecmp(string, "writeback_jobs") && opt_params >= 1) {
2415 string = dm_shift_arg(&as), opt_params--;
2416 if (sscanf(string, "%u%c", &wc->max_writeback_jobs, &dummy) != 1)
2417 goto invalid_optional;
2418 wc->max_writeback_jobs_set = true;
2419 } else if (!strcasecmp(string, "autocommit_blocks") && opt_params >= 1) {
2420 string = dm_shift_arg(&as), opt_params--;
2421 if (sscanf(string, "%u%c", &wc->autocommit_blocks, &dummy) != 1)
2422 goto invalid_optional;
2423 wc->autocommit_blocks_set = true;
2424 } else if (!strcasecmp(string, "autocommit_time") && opt_params >= 1) {
2425 unsigned autocommit_msecs;
2426 string = dm_shift_arg(&as), opt_params--;
2427 if (sscanf(string, "%u%c", &autocommit_msecs, &dummy) != 1)
2428 goto invalid_optional;
2429 if (autocommit_msecs > 3600000)
2430 goto invalid_optional;
2431 wc->autocommit_jiffies = msecs_to_jiffies(autocommit_msecs);
054bee16 2432 wc->autocommit_time_value = autocommit_msecs;
48debafe 2433 wc->autocommit_time_set = true;
3923d485
MP
2434 } else if (!strcasecmp(string, "max_age") && opt_params >= 1) {
2435 unsigned max_age_msecs;
2436 string = dm_shift_arg(&as), opt_params--;
2437 if (sscanf(string, "%u%c", &max_age_msecs, &dummy) != 1)
2438 goto invalid_optional;
2439 if (max_age_msecs > 86400000)
2440 goto invalid_optional;
2441 wc->max_age = msecs_to_jiffies(max_age_msecs);
054bee16
MP
2442 wc->max_age_set = true;
2443 wc->max_age_value = max_age_msecs;
93de44eb 2444 } else if (!strcasecmp(string, "cleaner")) {
054bee16 2445 wc->cleaner_set = true;
93de44eb 2446 wc->cleaner = true;
48debafe
MP
2447 } else if (!strcasecmp(string, "fua")) {
2448 if (WC_MODE_PMEM(wc)) {
2449 wc->writeback_fua = true;
2450 wc->writeback_fua_set = true;
2451 } else goto invalid_optional;
2452 } else if (!strcasecmp(string, "nofua")) {
2453 if (WC_MODE_PMEM(wc)) {
2454 wc->writeback_fua = false;
2455 wc->writeback_fua_set = true;
2456 } else goto invalid_optional;
611c3e16
MP
2457 } else if (!strcasecmp(string, "metadata_only")) {
2458 wc->metadata_only = true;
5c0de3d7
MP
2459 } else if (!strcasecmp(string, "pause_writeback") && opt_params >= 1) {
2460 unsigned pause_msecs;
2461 if (WC_MODE_PMEM(wc))
2462 goto invalid_optional;
2463 string = dm_shift_arg(&as), opt_params--;
2464 if (sscanf(string, "%u%c", &pause_msecs, &dummy) != 1)
2465 goto invalid_optional;
2466 if (pause_msecs > 60000)
2467 goto invalid_optional;
2468 wc->pause = msecs_to_jiffies(pause_msecs);
2469 wc->pause_set = true;
2470 wc->pause_value = pause_msecs;
48debafe
MP
2471 } else {
2472invalid_optional:
2473 r = -EINVAL;
2474 ti->error = "Invalid optional argument";
2475 goto bad;
2476 }
2477 }
2478
2479 if (high_wm_percent < low_wm_percent) {
2480 r = -EINVAL;
2481 ti->error = "High watermark must be greater than or equal to low watermark";
2482 goto bad;
2483 }
2484
d284f824 2485 if (WC_MODE_PMEM(wc)) {
a4662458
MS
2486 if (!dax_synchronous(wc->ssd_dev->dax_dev)) {
2487 r = -EOPNOTSUPP;
2488 ti->error = "Asynchronous persistent memory not supported as pmem cache";
2489 goto bad;
2490 }
2491
d284f824
MP
2492 r = persistent_memory_claim(wc);
2493 if (r) {
2494 ti->error = "Unable to map persistent memory for cache";
2495 goto bad;
2496 }
2497 } else {
48debafe
MP
2498 size_t n_blocks, n_metadata_blocks;
2499 uint64_t n_bitmap_bits;
2500
d284f824
MP
2501 wc->memory_map_size -= (uint64_t)wc->start_sector << SECTOR_SHIFT;
2502
48debafe 2503 bio_list_init(&wc->flush_list);
f635237a 2504 wc->flush_thread = kthread_run(writecache_flush_thread, wc, "dm_writecache_flush");
48debafe
MP
2505 if (IS_ERR(wc->flush_thread)) {
2506 r = PTR_ERR(wc->flush_thread);
2507 wc->flush_thread = NULL;
e8ea141a 2508 ti->error = "Couldn't spawn flush thread";
48debafe
MP
2509 goto bad;
2510 }
48debafe
MP
2511
2512 r = calculate_memory_size(wc->memory_map_size, wc->block_size,
2513 &n_blocks, &n_metadata_blocks);
2514 if (r) {
2515 ti->error = "Invalid device size";
2516 goto bad;
2517 }
2518
2519 n_bitmap_bits = (((uint64_t)n_metadata_blocks << wc->block_size_bits) +
2520 BITMAP_GRANULARITY - 1) / BITMAP_GRANULARITY;
2521 /* this is limitation of test_bit functions */
2522 if (n_bitmap_bits > 1U << 31) {
2523 r = -EFBIG;
2524 ti->error = "Invalid device size";
2525 goto bad;
2526 }
2527
2528 wc->memory_map = vmalloc(n_metadata_blocks << wc->block_size_bits);
2529 if (!wc->memory_map) {
2530 r = -ENOMEM;
2531 ti->error = "Unable to allocate memory for metadata";
2532 goto bad;
2533 }
2534
2535 wc->dm_kcopyd = dm_kcopyd_client_create(&dm_kcopyd_throttle);
2536 if (IS_ERR(wc->dm_kcopyd)) {
2537 r = PTR_ERR(wc->dm_kcopyd);
2538 ti->error = "Unable to allocate dm-kcopyd client";
2539 wc->dm_kcopyd = NULL;
2540 goto bad;
2541 }
2542
2543 wc->metadata_sectors = n_metadata_blocks << (wc->block_size_bits - SECTOR_SHIFT);
2544 wc->dirty_bitmap_size = (n_bitmap_bits + BITS_PER_LONG - 1) /
2545 BITS_PER_LONG * sizeof(unsigned long);
2546 wc->dirty_bitmap = vzalloc(wc->dirty_bitmap_size);
2547 if (!wc->dirty_bitmap) {
2548 r = -ENOMEM;
2549 ti->error = "Unable to allocate dirty bitmap";
2550 goto bad;
2551 }
2552
31b22120 2553 r = writecache_read_metadata(wc, wc->block_size >> SECTOR_SHIFT);
48debafe 2554 if (r) {
31b22120 2555 ti->error = "Unable to read first block of metadata";
48debafe
MP
2556 goto bad;
2557 }
2558 }
2559
ec6347bb 2560 r = copy_mc_to_kernel(&s, sb(wc), sizeof(struct wc_memory_superblock));
48debafe
MP
2561 if (r) {
2562 ti->error = "Hardware memory error when reading superblock";
2563 goto bad;
2564 }
2565 if (!le32_to_cpu(s.magic) && !le32_to_cpu(s.version)) {
2566 r = init_memory(wc);
2567 if (r) {
2568 ti->error = "Unable to initialize device";
2569 goto bad;
2570 }
ec6347bb
DW
2571 r = copy_mc_to_kernel(&s, sb(wc),
2572 sizeof(struct wc_memory_superblock));
48debafe
MP
2573 if (r) {
2574 ti->error = "Hardware memory error when reading superblock";
2575 goto bad;
2576 }
2577 }
2578
2579 if (le32_to_cpu(s.magic) != MEMORY_SUPERBLOCK_MAGIC) {
2580 ti->error = "Invalid magic in the superblock";
2581 r = -EINVAL;
2582 goto bad;
2583 }
2584
2585 if (le32_to_cpu(s.version) != MEMORY_SUPERBLOCK_VERSION) {
2586 ti->error = "Invalid version in the superblock";
2587 r = -EINVAL;
2588 goto bad;
2589 }
2590
2591 if (le32_to_cpu(s.block_size) != wc->block_size) {
2592 ti->error = "Block size does not match superblock";
2593 r = -EINVAL;
2594 goto bad;
2595 }
2596
2597 wc->n_blocks = le64_to_cpu(s.n_blocks);
2598
2599 offset = wc->n_blocks * sizeof(struct wc_memory_entry);
2600 if (offset / sizeof(struct wc_memory_entry) != le64_to_cpu(sb(wc)->n_blocks)) {
2601overflow:
2602 ti->error = "Overflow in size calculation";
2603 r = -EINVAL;
2604 goto bad;
2605 }
2606 offset += sizeof(struct wc_memory_superblock);
2607 if (offset < sizeof(struct wc_memory_superblock))
2608 goto overflow;
2609 offset = (offset + wc->block_size - 1) & ~(size_t)(wc->block_size - 1);
2610 data_size = wc->n_blocks * (size_t)wc->block_size;
2611 if (!offset || (data_size / wc->block_size != wc->n_blocks) ||
2612 (offset + data_size < offset))
2613 goto overflow;
2614 if (offset + data_size > wc->memory_map_size) {
2615 ti->error = "Memory area is too small";
2616 r = -EINVAL;
2617 goto bad;
2618 }
2619
2620 wc->metadata_sectors = offset >> SECTOR_SHIFT;
2621 wc->block_start = (char *)sb(wc) + offset;
2622
2623 x = (uint64_t)wc->n_blocks * (100 - high_wm_percent);
2624 x += 50;
2625 do_div(x, 100);
2626 wc->freelist_high_watermark = x;
2627 x = (uint64_t)wc->n_blocks * (100 - low_wm_percent);
2628 x += 50;
2629 do_div(x, 100);
2630 wc->freelist_low_watermark = x;
2631
93de44eb
MP
2632 if (wc->cleaner)
2633 activate_cleaner(wc);
2634
48debafe
MP
2635 r = writecache_alloc_entries(wc);
2636 if (r) {
2637 ti->error = "Cannot allocate memory";
2638 goto bad;
2639 }
2640
ee55b92a 2641 ti->num_flush_bios = WC_MODE_PMEM(wc) ? 1 : 2;
48debafe
MP
2642 ti->flush_supported = true;
2643 ti->num_discard_bios = 1;
2644
2645 if (WC_MODE_PMEM(wc))
2646 persistent_memory_flush_cache(wc->memory_map, wc->memory_map_size);
2647
2648 return 0;
2649
2650bad_arguments:
2651 r = -EINVAL;
2652 ti->error = "Bad arguments";
2653bad:
2654 writecache_dtr(ti);
2655 return r;
2656}
2657
2658static void writecache_status(struct dm_target *ti, status_type_t type,
2659 unsigned status_flags, char *result, unsigned maxlen)
2660{
2661 struct dm_writecache *wc = ti->private;
2662 unsigned extra_args;
2663 unsigned sz = 0;
48debafe
MP
2664
2665 switch (type) {
2666 case STATUSTYPE_INFO:
e3a35d03
MP
2667 DMEMIT("%ld %llu %llu %llu %llu %llu %llu %llu %llu %llu %llu %llu %llu %llu",
2668 writecache_has_error(wc),
48debafe 2669 (unsigned long long)wc->n_blocks, (unsigned long long)wc->freelist_size,
e3a35d03
MP
2670 (unsigned long long)wc->writeback_size,
2671 wc->stats.reads,
2672 wc->stats.read_hits,
2673 wc->stats.writes,
2674 wc->stats.write_hits_uncommitted,
2675 wc->stats.write_hits_committed,
2676 wc->stats.writes_around,
2677 wc->stats.writes_allocate,
2678 wc->stats.writes_blocked_on_freelist,
2679 wc->stats.flushes,
2680 wc->stats.discards);
48debafe
MP
2681 break;
2682 case STATUSTYPE_TABLE:
2683 DMEMIT("%c %s %s %u ", WC_MODE_PMEM(wc) ? 'p' : 's',
2684 wc->dev->name, wc->ssd_dev->name, wc->block_size);
2685 extra_args = 0;
054bee16 2686 if (wc->start_sector_set)
9ff07e7d 2687 extra_args += 2;
054bee16 2688 if (wc->high_wm_percent_set)
48debafe 2689 extra_args += 2;
054bee16 2690 if (wc->low_wm_percent_set)
48debafe
MP
2691 extra_args += 2;
2692 if (wc->max_writeback_jobs_set)
2693 extra_args += 2;
2694 if (wc->autocommit_blocks_set)
2695 extra_args += 2;
2696 if (wc->autocommit_time_set)
2697 extra_args += 2;
054bee16 2698 if (wc->max_age_set)
e5d41cbc 2699 extra_args += 2;
054bee16 2700 if (wc->cleaner_set)
93de44eb 2701 extra_args++;
48debafe
MP
2702 if (wc->writeback_fua_set)
2703 extra_args++;
611c3e16
MP
2704 if (wc->metadata_only)
2705 extra_args++;
5c0de3d7
MP
2706 if (wc->pause_set)
2707 extra_args += 2;
48debafe
MP
2708
2709 DMEMIT("%u", extra_args);
054bee16 2710 if (wc->start_sector_set)
9ff07e7d 2711 DMEMIT(" start_sector %llu", (unsigned long long)wc->start_sector);
054bee16
MP
2712 if (wc->high_wm_percent_set)
2713 DMEMIT(" high_watermark %u", wc->high_wm_percent_value);
2714 if (wc->low_wm_percent_set)
2715 DMEMIT(" low_watermark %u", wc->low_wm_percent_value);
48debafe
MP
2716 if (wc->max_writeback_jobs_set)
2717 DMEMIT(" writeback_jobs %u", wc->max_writeback_jobs);
2718 if (wc->autocommit_blocks_set)
2719 DMEMIT(" autocommit_blocks %u", wc->autocommit_blocks);
2720 if (wc->autocommit_time_set)
054bee16
MP
2721 DMEMIT(" autocommit_time %u", wc->autocommit_time_value);
2722 if (wc->max_age_set)
2723 DMEMIT(" max_age %u", wc->max_age_value);
2724 if (wc->cleaner_set)
93de44eb 2725 DMEMIT(" cleaner");
48debafe
MP
2726 if (wc->writeback_fua_set)
2727 DMEMIT(" %sfua", wc->writeback_fua ? "" : "no");
611c3e16
MP
2728 if (wc->metadata_only)
2729 DMEMIT(" metadata_only");
5c0de3d7
MP
2730 if (wc->pause_set)
2731 DMEMIT(" pause_writeback %u", wc->pause_value);
48debafe 2732 break;
8ec45662
TS
2733 case STATUSTYPE_IMA:
2734 *result = '\0';
2735 break;
48debafe
MP
2736 }
2737}
2738
2739static struct target_type writecache_target = {
2740 .name = "writecache",
e3a35d03 2741 .version = {1, 6, 0},
48debafe
MP
2742 .module = THIS_MODULE,
2743 .ctr = writecache_ctr,
2744 .dtr = writecache_dtr,
2745 .status = writecache_status,
2746 .postsuspend = writecache_suspend,
2747 .resume = writecache_resume,
2748 .message = writecache_message,
2749 .map = writecache_map,
2750 .end_io = writecache_end_io,
2751 .iterate_devices = writecache_iterate_devices,
2752 .io_hints = writecache_io_hints,
2753};
2754
2755static int __init dm_writecache_init(void)
2756{
2757 int r;
2758
2759 r = dm_register_target(&writecache_target);
2760 if (r < 0) {
2761 DMERR("register failed %d", r);
2762 return r;
2763 }
2764
2765 return 0;
2766}
2767
2768static void __exit dm_writecache_exit(void)
2769{
2770 dm_unregister_target(&writecache_target);
2771}
2772
2773module_init(dm_writecache_init);
2774module_exit(dm_writecache_exit);
2775
2776MODULE_DESCRIPTION(DM_NAME " writecache target");
2777MODULE_AUTHOR("Mikulas Patocka <dm-devel@redhat.com>");
2778MODULE_LICENSE("GPL");