blob: 7e0a3fab9cd4bc00cd5703acb664942de69328c6 [file] [log] [blame]
Nitin Gupta306b0c92009-09-22 10:26:53 +05301/*
2 * Compressed RAM based swap device
3 *
4 * Copyright (C) 2008, 2009 Nitin Gupta
5 *
6 * This code is released using a dual license strategy: BSD/GPL
7 * You can choose the licence that better fits your requirements.
8 *
9 * Released under the terms of 3-clause BSD License
10 * Released under the terms of GNU General Public License Version 2.0
11 *
12 * Project home: http://compcache.googlecode.com
13 */
14
15#define KMSG_COMPONENT "ramzswap"
16#define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
17
18#include <linux/module.h>
19#include <linux/kernel.h>
20#include <linux/bitops.h>
21#include <linux/blkdev.h>
22#include <linux/buffer_head.h>
23#include <linux/device.h>
24#include <linux/genhd.h>
25#include <linux/highmem.h>
26#include <linux/lzo.h>
Nitin Gupta306b0c92009-09-22 10:26:53 +053027#include <linux/string.h>
28#include <linux/swap.h>
29#include <linux/swapops.h>
30#include <linux/vmalloc.h>
Nitin Gupta306b0c92009-09-22 10:26:53 +053031
32#include "ramzswap_drv.h"
33
34/* Globals */
35static int ramzswap_major;
36static struct ramzswap *devices;
37
38/*
39 * Pages that compress to larger than this size are
40 * forwarded to backing swap, if present or stored
41 * uncompressed in memory otherwise.
42 */
43static unsigned int max_zpage_size;
44
45/* Module params (documentation at end) */
46static unsigned int num_devices;
47
48static int rzs_test_flag(struct ramzswap *rzs, u32 index,
49 enum rzs_pageflags flag)
50{
51 return rzs->table[index].flags & BIT(flag);
52}
53
54static void rzs_set_flag(struct ramzswap *rzs, u32 index,
55 enum rzs_pageflags flag)
56{
57 rzs->table[index].flags |= BIT(flag);
58}
59
60static void rzs_clear_flag(struct ramzswap *rzs, u32 index,
61 enum rzs_pageflags flag)
62{
63 rzs->table[index].flags &= ~BIT(flag);
64}
65
66static int page_zero_filled(void *ptr)
67{
68 unsigned int pos;
69 unsigned long *page;
70
71 page = (unsigned long *)ptr;
72
73 for (pos = 0; pos != PAGE_SIZE / sizeof(*page); pos++) {
74 if (page[pos])
75 return 0;
76 }
77
78 return 1;
79}
80
81/*
82 * memlimit cannot be greater than backing disk size.
83 */
84static void ramzswap_set_memlimit(struct ramzswap *rzs, size_t totalram_bytes)
85{
86 int memlimit_valid = 1;
87
88 if (!rzs->memlimit) {
89 pr_info("Memory limit not set.\n");
90 memlimit_valid = 0;
91 }
92
93 if (rzs->memlimit > rzs->disksize) {
94 pr_info("Memory limit cannot be greater than "
95 "disksize: limit=%zu, disksize=%zu\n",
96 rzs->memlimit, rzs->disksize);
97 memlimit_valid = 0;
98 }
99
100 if (!memlimit_valid) {
101 size_t mempart, disksize;
102 pr_info("Using default: smaller of (%u%% of RAM) and "
103 "(backing disk size).\n",
104 default_memlimit_perc_ram);
105 mempart = default_memlimit_perc_ram * (totalram_bytes / 100);
106 disksize = rzs->disksize;
107 rzs->memlimit = mempart > disksize ? disksize : mempart;
108 }
109
110 if (rzs->memlimit > totalram_bytes / 2) {
111 pr_info(
112 "Its not advisable setting limit more than half of "
113 "size of memory since we expect a 2:1 compression ratio. "
114 "Limit represents amount of *compressed* data we can keep "
115 "in memory!\n"
116 "\tMemory Size: %zu kB\n"
117 "\tLimit you selected: %zu kB\n"
118 "Continuing anyway ...\n",
119 totalram_bytes >> 10, rzs->memlimit >> 10
120 );
121 }
122
123 rzs->memlimit &= PAGE_MASK;
124 BUG_ON(!rzs->memlimit);
125}
126
127static void ramzswap_set_disksize(struct ramzswap *rzs, size_t totalram_bytes)
128{
129 if (!rzs->disksize) {
130 pr_info(
131 "disk size not provided. You can use disksize_kb module "
132 "param to specify size.\nUsing default: (%u%% of RAM).\n",
133 default_disksize_perc_ram
134 );
135 rzs->disksize = default_disksize_perc_ram *
136 (totalram_bytes / 100);
137 }
138
139 if (rzs->disksize > 2 * (totalram_bytes)) {
140 pr_info(
141 "There is little point creating a ramzswap of greater than "
142 "twice the size of memory since we expect a 2:1 compression "
143 "ratio. Note that ramzswap uses about 0.1%% of the size of "
144 "the swap device when not in use so a huge ramzswap is "
145 "wasteful.\n"
146 "\tMemory Size: %zu kB\n"
147 "\tSize you selected: %zu kB\n"
148 "Continuing anyway ...\n",
149 totalram_bytes >> 10, rzs->disksize
150 );
151 }
152
153 rzs->disksize &= PAGE_MASK;
154}
155
156/*
157 * Swap header (1st page of swap device) contains information
158 * to indentify it as a swap partition. Prepare such a header
159 * for ramzswap device (ramzswap0) so that swapon can identify
160 * it as swap partition. In case backing swap device is provided,
161 * copy its swap header.
162 */
163static int setup_swap_header(struct ramzswap *rzs, union swap_header *s)
164{
165 int ret = 0;
166 struct page *page;
167 struct address_space *mapping;
168 union swap_header *backing_swap_header;
169
170 /*
171 * There is no backing swap device. Create a swap header
172 * that is acceptable by swapon.
173 */
174 if (!rzs->backing_swap) {
175 s->info.version = 1;
176 s->info.last_page = (rzs->disksize >> PAGE_SHIFT) - 1;
177 s->info.nr_badpages = 0;
178 memcpy(s->magic.magic, "SWAPSPACE2", 10);
179 return 0;
180 }
181
182 /*
183 * We have a backing swap device. Copy its swap header
184 * to ramzswap device header. If this header contains
185 * invalid information (backing device not a swap
186 * partition, etc.), swapon will fail for ramzswap
187 * which is correct behavior - we don't want to swap
188 * over filesystem partition!
189 */
190
191 /* Read the backing swap header (code from sys_swapon) */
192 mapping = rzs->swap_file->f_mapping;
193 if (!mapping->a_ops->readpage) {
194 ret = -EINVAL;
195 goto out;
196 }
197
198 page = read_mapping_page(mapping, 0, rzs->swap_file);
199 if (IS_ERR(page)) {
200 ret = PTR_ERR(page);
201 goto out;
202 }
203
204 backing_swap_header = kmap(page);
205 memcpy(s, backing_swap_header, sizeof(*s));
206 if (s->info.nr_badpages) {
207 pr_info("Cannot use backing swap with bad pages (%u)\n",
208 s->info.nr_badpages);
209 ret = -EINVAL;
210 }
211 /*
212 * ramzswap disksize equals number of usable pages in backing
213 * swap. Set last_page in swap header to match this disksize
214 * ('last_page' means 0-based index of last usable swap page).
215 */
216 s->info.last_page = (rzs->disksize >> PAGE_SHIFT) - 1;
217 kunmap(page);
218
219out:
220 return ret;
221}
222
Nitin Gupta306b0c92009-09-22 10:26:53 +0530223void ramzswap_ioctl_get_stats(struct ramzswap *rzs,
224 struct ramzswap_ioctl_stats *s)
225{
226 strncpy(s->backing_swap_name, rzs->backing_swap_name,
227 MAX_SWAP_NAME_LEN - 1);
228 s->backing_swap_name[MAX_SWAP_NAME_LEN - 1] = '\0';
229
230 s->disksize = rzs->disksize;
231 s->memlimit = rzs->memlimit;
232
233#if defined(CONFIG_RAMZSWAP_STATS)
234 {
235 struct ramzswap_stats *rs = &rzs->stats;
236 size_t succ_writes, mem_used;
237 unsigned int good_compress_perc = 0, no_compress_perc = 0;
238
239 mem_used = xv_get_total_size_bytes(rzs->mem_pool)
240 + (rs->pages_expand << PAGE_SHIFT);
Nitin Gupta6a907722010-01-28 21:13:37 +0530241 succ_writes = rzs_stat64_read(rzs, &rs->num_writes) -
242 rzs_stat64_read(rzs, &rs->failed_writes);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530243
244 if (succ_writes && rs->pages_stored) {
245 good_compress_perc = rs->good_compress * 100
246 / rs->pages_stored;
247 no_compress_perc = rs->pages_expand * 100
248 / rs->pages_stored;
249 }
250
Nitin Gupta6a907722010-01-28 21:13:37 +0530251 s->num_reads = rzs_stat64_read(rzs, &rs->num_reads);
252 s->num_writes = rzs_stat64_read(rzs, &rs->num_writes);
253 s->failed_reads = rzs_stat64_read(rzs, &rs->failed_reads);
254 s->failed_writes = rzs_stat64_read(rzs, &rs->failed_writes);
255 s->invalid_io = rzs_stat64_read(rzs, &rs->invalid_io);
256 s->notify_free = rzs_stat64_read(rzs, &rs->notify_free);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530257 s->pages_zero = rs->pages_zero;
258
259 s->good_compress_pct = good_compress_perc;
260 s->pages_expand_pct = no_compress_perc;
261
262 s->pages_stored = rs->pages_stored;
263 s->pages_used = mem_used >> PAGE_SHIFT;
264 s->orig_data_size = rs->pages_stored << PAGE_SHIFT;
265 s->compr_data_size = rs->compr_size;
266 s->mem_used_total = mem_used;
267
Nitin Gupta6a907722010-01-28 21:13:37 +0530268 s->bdev_num_reads = rzs_stat64_read(rzs, &rs->bdev_num_reads);
269 s->bdev_num_writes = rzs_stat64_read(rzs, &rs->bdev_num_writes);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530270 }
271#endif /* CONFIG_RAMZSWAP_STATS */
272}
273
274static int add_backing_swap_extent(struct ramzswap *rzs,
275 pgoff_t phy_pagenum,
276 pgoff_t num_pages)
277{
278 unsigned int idx;
279 struct list_head *head;
280 struct page *curr_page, *new_page;
281 unsigned int extents_per_page = PAGE_SIZE /
282 sizeof(struct ramzswap_backing_extent);
283
284 idx = rzs->num_extents % extents_per_page;
285 if (!idx) {
286 new_page = alloc_page(__GFP_ZERO);
287 if (!new_page)
288 return -ENOMEM;
289
290 if (rzs->num_extents) {
291 curr_page = virt_to_page(rzs->curr_extent);
292 head = &curr_page->lru;
293 } else {
294 head = &rzs->backing_swap_extent_list;
295 }
296
297 list_add(&new_page->lru, head);
298 rzs->curr_extent = page_address(new_page);
299 }
300
301 rzs->curr_extent->phy_pagenum = phy_pagenum;
302 rzs->curr_extent->num_pages = num_pages;
303
304 pr_debug("add_extent: idx=%u, phy_pgnum=%lu, num_pgs=%lu, "
305 "pg_last=%lu, curr_ext=%p\n", idx, phy_pagenum, num_pages,
306 phy_pagenum + num_pages - 1, rzs->curr_extent);
307
308 if (idx != extents_per_page - 1)
309 rzs->curr_extent++;
310
311 return 0;
312}
313
314static int setup_backing_swap_extents(struct ramzswap *rzs,
315 struct inode *inode, unsigned long *num_pages)
316{
317 int ret = 0;
318 unsigned blkbits;
319 unsigned blocks_per_page;
320 pgoff_t contig_pages = 0, total_pages = 0;
321 pgoff_t pagenum = 0, prev_pagenum = 0;
322 sector_t probe_block = 0;
323 sector_t last_block;
324
325 blkbits = inode->i_blkbits;
326 blocks_per_page = PAGE_SIZE >> blkbits;
327
328 last_block = i_size_read(inode) >> blkbits;
329 while (probe_block + blocks_per_page <= last_block) {
330 unsigned block_in_page;
331 sector_t first_block;
332
333 first_block = bmap(inode, probe_block);
334 if (first_block == 0)
335 goto bad_bmap;
336
337 /* It must be PAGE_SIZE aligned on-disk */
338 if (first_block & (blocks_per_page - 1)) {
339 probe_block++;
340 goto probe_next;
341 }
342
343 /* All blocks within this page must be contiguous on disk */
344 for (block_in_page = 1; block_in_page < blocks_per_page;
345 block_in_page++) {
346 sector_t block;
347
348 block = bmap(inode, probe_block + block_in_page);
349 if (block == 0)
350 goto bad_bmap;
351 if (block != first_block + block_in_page) {
352 /* Discontiguity */
353 probe_block++;
354 goto probe_next;
355 }
356 }
357
358 /*
359 * We found a PAGE_SIZE length, PAGE_SIZE aligned
360 * run of blocks.
361 */
362 pagenum = first_block >> (PAGE_SHIFT - blkbits);
363
364 if (total_pages && (pagenum != prev_pagenum + 1)) {
365 ret = add_backing_swap_extent(rzs, prev_pagenum -
366 (contig_pages - 1), contig_pages);
367 if (ret < 0)
368 goto out;
369 rzs->num_extents++;
370 contig_pages = 0;
371 }
372 total_pages++;
373 contig_pages++;
374 prev_pagenum = pagenum;
375 probe_block += blocks_per_page;
376
377probe_next:
378 continue;
379 }
380
381 if (contig_pages) {
382 pr_debug("adding last extent: pagenum=%lu, "
383 "contig_pages=%lu\n", pagenum, contig_pages);
384 ret = add_backing_swap_extent(rzs,
385 prev_pagenum - (contig_pages - 1), contig_pages);
386 if (ret < 0)
387 goto out;
388 rzs->num_extents++;
389 }
390 if (!rzs->num_extents) {
391 pr_err("No swap extents found!\n");
392 ret = -EINVAL;
393 }
394
395 if (!ret) {
396 *num_pages = total_pages;
397 pr_info("Found %lu extents containing %luk\n",
398 rzs->num_extents, *num_pages << (PAGE_SHIFT - 10));
399 }
400 goto out;
401
402bad_bmap:
403 pr_err("Backing swapfile has holes\n");
404 ret = -EINVAL;
405out:
406 while (ret && !list_empty(&rzs->backing_swap_extent_list)) {
407 struct page *page;
408 struct list_head *entry = rzs->backing_swap_extent_list.next;
409 page = list_entry(entry, struct page, lru);
410 list_del(entry);
411 __free_page(page);
412 }
413 return ret;
414}
415
416static void map_backing_swap_extents(struct ramzswap *rzs)
417{
418 struct ramzswap_backing_extent *se;
419 struct page *table_page, *se_page;
420 unsigned long num_pages, num_table_pages, entry;
421 unsigned long se_idx, span;
422 unsigned entries_per_page = PAGE_SIZE / sizeof(*rzs->table);
423 unsigned extents_per_page = PAGE_SIZE / sizeof(*se);
424
425 /* True for block device */
426 if (!rzs->num_extents)
427 return;
428
429 se_page = list_entry(rzs->backing_swap_extent_list.next,
430 struct page, lru);
431 se = page_address(se_page);
432 span = se->num_pages;
433 num_pages = rzs->disksize >> PAGE_SHIFT;
434 num_table_pages = DIV_ROUND_UP(num_pages * sizeof(*rzs->table),
435 PAGE_SIZE);
436
437 entry = 0;
438 se_idx = 0;
439 while (num_table_pages--) {
440 table_page = vmalloc_to_page(&rzs->table[entry]);
441 while (span <= entry) {
442 se_idx++;
443 if (se_idx == rzs->num_extents)
444 BUG();
445
446 if (!(se_idx % extents_per_page)) {
447 se_page = list_entry(se_page->lru.next,
448 struct page, lru);
449 se = page_address(se_page);
450 } else
451 se++;
452
453 span += se->num_pages;
454 }
455 table_page->mapping = (struct address_space *)se;
456 table_page->private = se->num_pages - (span - entry);
457 pr_debug("map_table: entry=%lu, span=%lu, map=%p, priv=%lu\n",
458 entry, span, table_page->mapping, table_page->private);
459 entry += entries_per_page;
460 }
461}
462
463/*
464 * Check if value of backing_swap module param is sane.
465 * Claim this device and set ramzswap size equal to
466 * size of this block device.
467 */
468static int setup_backing_swap(struct ramzswap *rzs)
469{
470 int ret = 0;
471 size_t disksize;
472 unsigned long num_pages = 0;
473 struct inode *inode;
474 struct file *swap_file;
475 struct address_space *mapping;
476 struct block_device *bdev = NULL;
477
478 if (!rzs->backing_swap_name[0]) {
479 pr_debug("backing_swap param not given\n");
480 goto out;
481 }
482
483 pr_info("Using backing swap device: %s\n", rzs->backing_swap_name);
484
485 swap_file = filp_open(rzs->backing_swap_name,
486 O_RDWR | O_LARGEFILE, 0);
487 if (IS_ERR(swap_file)) {
488 pr_err("Error opening backing device: %s\n",
489 rzs->backing_swap_name);
490 ret = -EINVAL;
491 goto out;
492 }
493
494 mapping = swap_file->f_mapping;
495 inode = mapping->host;
496
497 if (S_ISBLK(inode->i_mode)) {
498 bdev = I_BDEV(inode);
499 ret = bd_claim(bdev, setup_backing_swap);
500 if (ret < 0) {
501 bdev = NULL;
502 goto bad_param;
503 }
504 disksize = i_size_read(inode);
505 } else if (S_ISREG(inode->i_mode)) {
506 bdev = inode->i_sb->s_bdev;
507 if (IS_SWAPFILE(inode)) {
508 ret = -EBUSY;
509 goto bad_param;
510 }
511 ret = setup_backing_swap_extents(rzs, inode, &num_pages);
512 if (ret < 0)
513 goto bad_param;
514 disksize = num_pages << PAGE_SHIFT;
515 } else {
516 goto bad_param;
517 }
518
519 rzs->swap_file = swap_file;
520 rzs->backing_swap = bdev;
521 rzs->disksize = disksize;
522 BUG_ON(!rzs->disksize);
523
524 return 0;
525
526bad_param:
527 if (bdev)
528 bd_release(bdev);
529 filp_close(swap_file, NULL);
530
531out:
532 rzs->backing_swap = NULL;
533 return ret;
534}
535
536/*
537 * Map logical page number 'pagenum' to physical page number
538 * on backing swap device. For block device, this is a nop.
539 */
540u32 map_backing_swap_page(struct ramzswap *rzs, u32 pagenum)
541{
542 u32 skip_pages, entries_per_page;
543 size_t delta, se_offset, skipped;
544 struct page *table_page, *se_page;
545 struct ramzswap_backing_extent *se;
546
547 if (!rzs->num_extents)
548 return pagenum;
549
550 entries_per_page = PAGE_SIZE / sizeof(*rzs->table);
551
552 table_page = vmalloc_to_page(&rzs->table[pagenum]);
553 se = (struct ramzswap_backing_extent *)table_page->mapping;
554 se_page = virt_to_page(se);
555
556 skip_pages = pagenum - (pagenum / entries_per_page * entries_per_page);
557 se_offset = table_page->private + skip_pages;
558
559 if (se_offset < se->num_pages)
560 return se->phy_pagenum + se_offset;
561
562 skipped = se->num_pages - table_page->private;
563 do {
564 struct ramzswap_backing_extent *se_base;
565 u32 se_entries_per_page = PAGE_SIZE / sizeof(*se);
566
567 /* Get next swap extent */
568 se_base = (struct ramzswap_backing_extent *)
569 page_address(se_page);
570 if (se - se_base == se_entries_per_page - 1) {
571 se_page = list_entry(se_page->lru.next,
572 struct page, lru);
573 se = page_address(se_page);
574 } else {
575 se++;
576 }
577
578 skipped += se->num_pages;
579 } while (skipped < skip_pages);
580
581 delta = skipped - skip_pages;
582 se_offset = se->num_pages - delta;
583
584 return se->phy_pagenum + se_offset;
585}
586
587static void ramzswap_free_page(struct ramzswap *rzs, size_t index)
588{
589 u32 clen;
590 void *obj;
591
592 struct page *page = rzs->table[index].page;
593 u32 offset = rzs->table[index].offset;
594
595 if (unlikely(!page)) {
Nitin Gupta2e882282010-01-28 21:13:41 +0530596 /*
597 * No memory is allocated for zero filled pages.
598 * Simply clear zero page flag.
599 */
Nitin Gupta306b0c92009-09-22 10:26:53 +0530600 if (rzs_test_flag(rzs, index, RZS_ZERO)) {
601 rzs_clear_flag(rzs, index, RZS_ZERO);
Nitin Gupta6a907722010-01-28 21:13:37 +0530602 rzs_stat_dec(&rzs->stats.pages_zero);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530603 }
604 return;
605 }
606
607 if (unlikely(rzs_test_flag(rzs, index, RZS_UNCOMPRESSED))) {
608 clen = PAGE_SIZE;
609 __free_page(page);
610 rzs_clear_flag(rzs, index, RZS_UNCOMPRESSED);
Nitin Gupta6a907722010-01-28 21:13:37 +0530611 rzs_stat_dec(&rzs->stats.pages_expand);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530612 goto out;
613 }
614
615 obj = kmap_atomic(page, KM_USER0) + offset;
616 clen = xv_get_object_size(obj) - sizeof(struct zobj_header);
617 kunmap_atomic(obj, KM_USER0);
618
619 xv_free(rzs->mem_pool, page, offset);
620 if (clen <= PAGE_SIZE / 2)
Nitin Gupta6a907722010-01-28 21:13:37 +0530621 rzs_stat_dec(&rzs->stats.good_compress);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530622
623out:
624 rzs->stats.compr_size -= clen;
Nitin Gupta6a907722010-01-28 21:13:37 +0530625 rzs_stat_dec(&rzs->stats.pages_stored);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530626
627 rzs->table[index].page = NULL;
628 rzs->table[index].offset = 0;
629}
630
631static int handle_zero_page(struct bio *bio)
632{
633 void *user_mem;
634 struct page *page = bio->bi_io_vec[0].bv_page;
635
636 user_mem = kmap_atomic(page, KM_USER0);
637 memset(user_mem, 0, PAGE_SIZE);
638 kunmap_atomic(user_mem, KM_USER0);
639
Nitin Gupta30fb8a72009-12-12 11:44:46 +0530640 flush_dcache_page(page);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530641
642 set_bit(BIO_UPTODATE, &bio->bi_flags);
643 bio_endio(bio, 0);
644 return 0;
645}
646
647static int handle_uncompressed_page(struct ramzswap *rzs, struct bio *bio)
648{
649 u32 index;
650 struct page *page;
651 unsigned char *user_mem, *cmem;
652
653 page = bio->bi_io_vec[0].bv_page;
654 index = bio->bi_sector >> SECTORS_PER_PAGE_SHIFT;
655
656 user_mem = kmap_atomic(page, KM_USER0);
657 cmem = kmap_atomic(rzs->table[index].page, KM_USER1) +
658 rzs->table[index].offset;
659
660 memcpy(user_mem, cmem, PAGE_SIZE);
661 kunmap_atomic(user_mem, KM_USER0);
662 kunmap_atomic(cmem, KM_USER1);
663
Nitin Gupta30fb8a72009-12-12 11:44:46 +0530664 flush_dcache_page(page);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530665
666 set_bit(BIO_UPTODATE, &bio->bi_flags);
667 bio_endio(bio, 0);
668 return 0;
669}
670
671
672/*
673 * Called when request page is not present in ramzswap.
674 * Its either in backing swap device (if present) or
675 * this is an attempt to read before any previous write
676 * to this location - this happens due to readahead when
677 * swap device is read from user-space (e.g. during swapon)
678 */
679static int handle_ramzswap_fault(struct ramzswap *rzs, struct bio *bio)
680{
681 /*
682 * Always forward such requests to backing swap
683 * device (if present)
684 */
685 if (rzs->backing_swap) {
686 u32 pagenum;
Nitin Gupta6a907722010-01-28 21:13:37 +0530687 rzs_stat64_dec(rzs, &rzs->stats.num_reads);
688 rzs_stat64_inc(rzs, &rzs->stats.bdev_num_reads);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530689 bio->bi_bdev = rzs->backing_swap;
690
691 /*
692 * In case backing swap is a file, find the right offset within
693 * the file corresponding to logical position 'index'. For block
694 * device, this is a nop.
695 */
696 pagenum = bio->bi_sector >> SECTORS_PER_PAGE_SHIFT;
697 bio->bi_sector = map_backing_swap_page(rzs, pagenum)
698 << SECTORS_PER_PAGE_SHIFT;
699 return 1;
700 }
701
702 /*
703 * Its unlikely event in case backing dev is
704 * not present
705 */
706 pr_debug("Read before write on swap device: "
707 "sector=%lu, size=%u, offset=%u\n",
708 (ulong)(bio->bi_sector), bio->bi_size,
709 bio->bi_io_vec[0].bv_offset);
710
711 /* Do nothing. Just return success */
712 set_bit(BIO_UPTODATE, &bio->bi_flags);
713 bio_endio(bio, 0);
714 return 0;
715}
716
717static int ramzswap_read(struct ramzswap *rzs, struct bio *bio)
718{
719 int ret;
720 u32 index;
721 size_t clen;
722 struct page *page;
723 struct zobj_header *zheader;
724 unsigned char *user_mem, *cmem;
725
Nitin Gupta6a907722010-01-28 21:13:37 +0530726 rzs_stat64_inc(rzs, &rzs->stats.num_reads);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530727
728 page = bio->bi_io_vec[0].bv_page;
729 index = bio->bi_sector >> SECTORS_PER_PAGE_SHIFT;
730
731 if (rzs_test_flag(rzs, index, RZS_ZERO))
732 return handle_zero_page(bio);
733
734 /* Requested page is not present in compressed area */
735 if (!rzs->table[index].page)
736 return handle_ramzswap_fault(rzs, bio);
737
C ypef4ffb72010-01-06 13:42:00 +0100738 /* Page is stored uncompressed since it's incompressible */
Nitin Gupta306b0c92009-09-22 10:26:53 +0530739 if (unlikely(rzs_test_flag(rzs, index, RZS_UNCOMPRESSED)))
740 return handle_uncompressed_page(rzs, bio);
741
742 user_mem = kmap_atomic(page, KM_USER0);
743 clen = PAGE_SIZE;
744
745 cmem = kmap_atomic(rzs->table[index].page, KM_USER1) +
746 rzs->table[index].offset;
747
748 ret = lzo1x_decompress_safe(
749 cmem + sizeof(*zheader),
750 xv_get_object_size(cmem) - sizeof(*zheader),
751 user_mem, &clen);
752
753 kunmap_atomic(user_mem, KM_USER0);
754 kunmap_atomic(cmem, KM_USER1);
755
756 /* should NEVER happen */
757 if (unlikely(ret != LZO_E_OK)) {
758 pr_err("Decompression failed! err=%d, page=%u\n",
759 ret, index);
Nitin Gupta6a907722010-01-28 21:13:37 +0530760 rzs_stat64_inc(rzs, &rzs->stats.failed_reads);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530761 goto out;
762 }
763
Nitin Gupta30fb8a72009-12-12 11:44:46 +0530764 flush_dcache_page(page);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530765
766 set_bit(BIO_UPTODATE, &bio->bi_flags);
767 bio_endio(bio, 0);
768 return 0;
769
770out:
771 bio_io_error(bio);
772 return 0;
773}
774
775static int ramzswap_write(struct ramzswap *rzs, struct bio *bio)
776{
777 int ret, fwd_write_request = 0;
778 u32 offset, index;
779 size_t clen;
780 struct zobj_header *zheader;
781 struct page *page, *page_store;
782 unsigned char *user_mem, *cmem, *src;
783
Nitin Gupta6a907722010-01-28 21:13:37 +0530784 rzs_stat64_inc(rzs, &rzs->stats.num_writes);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530785
786 page = bio->bi_io_vec[0].bv_page;
787 index = bio->bi_sector >> SECTORS_PER_PAGE_SHIFT;
788
789 src = rzs->compress_buffer;
790
791 /*
792 * System swaps to same sector again when the stored page
793 * is no longer referenced by any process. So, its now safe
794 * to free the memory that was allocated for this page.
795 */
Nitin Gupta2e882282010-01-28 21:13:41 +0530796 if (rzs->table[index].page || rzs_test_flag(rzs, index, RZS_ZERO))
Nitin Gupta306b0c92009-09-22 10:26:53 +0530797 ramzswap_free_page(rzs, index);
798
Nitin Gupta306b0c92009-09-22 10:26:53 +0530799 mutex_lock(&rzs->lock);
800
801 user_mem = kmap_atomic(page, KM_USER0);
802 if (page_zero_filled(user_mem)) {
803 kunmap_atomic(user_mem, KM_USER0);
804 mutex_unlock(&rzs->lock);
Nitin Gupta6a907722010-01-28 21:13:37 +0530805 rzs_stat_inc(&rzs->stats.pages_zero);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530806 rzs_set_flag(rzs, index, RZS_ZERO);
807
808 set_bit(BIO_UPTODATE, &bio->bi_flags);
809 bio_endio(bio, 0);
810 return 0;
811 }
812
813 if (rzs->backing_swap &&
814 (rzs->stats.compr_size > rzs->memlimit - PAGE_SIZE)) {
815 kunmap_atomic(user_mem, KM_USER0);
816 mutex_unlock(&rzs->lock);
817 fwd_write_request = 1;
818 goto out;
819 }
820
821 ret = lzo1x_1_compress(user_mem, PAGE_SIZE, src, &clen,
822 rzs->compress_workmem);
823
824 kunmap_atomic(user_mem, KM_USER0);
825
826 if (unlikely(ret != LZO_E_OK)) {
827 mutex_unlock(&rzs->lock);
828 pr_err("Compression failed! err=%d\n", ret);
Nitin Gupta6a907722010-01-28 21:13:37 +0530829 rzs_stat64_inc(rzs, &rzs->stats.failed_writes);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530830 goto out;
831 }
832
833 /*
834 * Page is incompressible. Forward it to backing swap
835 * if present. Otherwise, store it as-is (uncompressed)
836 * since we do not want to return too many swap write
837 * errors which has side effect of hanging the system.
838 */
839 if (unlikely(clen > max_zpage_size)) {
840 if (rzs->backing_swap) {
841 mutex_unlock(&rzs->lock);
842 fwd_write_request = 1;
843 goto out;
844 }
845
846 clen = PAGE_SIZE;
847 page_store = alloc_page(GFP_NOIO | __GFP_HIGHMEM);
848 if (unlikely(!page_store)) {
849 mutex_unlock(&rzs->lock);
850 pr_info("Error allocating memory for incompressible "
851 "page: %u\n", index);
Nitin Gupta6a907722010-01-28 21:13:37 +0530852 rzs_stat64_inc(rzs, &rzs->stats.failed_writes);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530853 goto out;
854 }
855
856 offset = 0;
857 rzs_set_flag(rzs, index, RZS_UNCOMPRESSED);
Nitin Gupta6a907722010-01-28 21:13:37 +0530858 rzs_stat_inc(&rzs->stats.pages_expand);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530859 rzs->table[index].page = page_store;
860 src = kmap_atomic(page, KM_USER0);
861 goto memstore;
862 }
863
864 if (xv_malloc(rzs->mem_pool, clen + sizeof(*zheader),
865 &rzs->table[index].page, &offset,
866 GFP_NOIO | __GFP_HIGHMEM)) {
867 mutex_unlock(&rzs->lock);
868 pr_info("Error allocating memory for compressed "
869 "page: %u, size=%zu\n", index, clen);
Nitin Gupta6a907722010-01-28 21:13:37 +0530870 rzs_stat64_inc(rzs, &rzs->stats.failed_writes);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530871 if (rzs->backing_swap)
872 fwd_write_request = 1;
873 goto out;
874 }
875
876memstore:
877 rzs->table[index].offset = offset;
878
879 cmem = kmap_atomic(rzs->table[index].page, KM_USER1) +
880 rzs->table[index].offset;
881
882#if 0
883 /* Back-reference needed for memory defragmentation */
884 if (!rzs_test_flag(rzs, index, RZS_UNCOMPRESSED)) {
885 zheader = (struct zobj_header *)cmem;
886 zheader->table_idx = index;
887 cmem += sizeof(*zheader);
888 }
889#endif
890
891 memcpy(cmem, src, clen);
892
893 kunmap_atomic(cmem, KM_USER1);
894 if (unlikely(rzs_test_flag(rzs, index, RZS_UNCOMPRESSED)))
895 kunmap_atomic(src, KM_USER0);
896
897 /* Update stats */
898 rzs->stats.compr_size += clen;
Nitin Gupta6a907722010-01-28 21:13:37 +0530899 rzs_stat_inc(&rzs->stats.pages_stored);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530900 if (clen <= PAGE_SIZE / 2)
Nitin Gupta6a907722010-01-28 21:13:37 +0530901 rzs_stat_inc(&rzs->stats.good_compress);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530902
903 mutex_unlock(&rzs->lock);
904
905 set_bit(BIO_UPTODATE, &bio->bi_flags);
906 bio_endio(bio, 0);
907 return 0;
908
909out:
910 if (fwd_write_request) {
Nitin Gupta6a907722010-01-28 21:13:37 +0530911 rzs_stat64_inc(rzs, &rzs->stats.bdev_num_writes);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530912 bio->bi_bdev = rzs->backing_swap;
913#if 0
914 /*
915 * TODO: We currently have linear mapping of ramzswap and
916 * backing swap sectors. This is not desired since we want
917 * to optimize writes to backing swap to minimize disk seeks
918 * or have effective wear leveling (for SSDs). Also, a
919 * non-linear mapping is required to implement compressed
920 * on-disk swapping.
921 */
922 bio->bi_sector = get_backing_swap_page()
923 << SECTORS_PER_PAGE_SHIFT;
924#endif
925 /*
926 * In case backing swap is a file, find the right offset within
927 * the file corresponding to logical position 'index'. For block
928 * device, this is a nop.
929 */
930 bio->bi_sector = map_backing_swap_page(rzs, index)
931 << SECTORS_PER_PAGE_SHIFT;
932 return 1;
933 }
934
935 bio_io_error(bio);
936 return 0;
937}
938
939
940/*
941 * Check if request is within bounds and page aligned.
942 */
943static inline int valid_swap_request(struct ramzswap *rzs, struct bio *bio)
944{
945 if (unlikely(
946 (bio->bi_sector >= (rzs->disksize >> SECTOR_SHIFT)) ||
947 (bio->bi_sector & (SECTORS_PER_PAGE - 1)) ||
948 (bio->bi_vcnt != 1) ||
949 (bio->bi_size != PAGE_SIZE) ||
950 (bio->bi_io_vec[0].bv_offset != 0))) {
951
952 return 0;
953 }
954
955 /* swap request is valid */
956 return 1;
957}
958
959/*
960 * Handler function for all ramzswap I/O requests.
961 */
962static int ramzswap_make_request(struct request_queue *queue, struct bio *bio)
963{
964 int ret = 0;
965 struct ramzswap *rzs = queue->queuedata;
966
967 if (unlikely(!rzs->init_done)) {
968 bio_io_error(bio);
969 return 0;
970 }
971
972 if (!valid_swap_request(rzs, bio)) {
Nitin Gupta6a907722010-01-28 21:13:37 +0530973 rzs_stat64_inc(rzs, &rzs->stats.invalid_io);
Nitin Gupta306b0c92009-09-22 10:26:53 +0530974 bio_io_error(bio);
975 return 0;
976 }
977
978 switch (bio_data_dir(bio)) {
979 case READ:
980 ret = ramzswap_read(rzs, bio);
981 break;
982
983 case WRITE:
984 ret = ramzswap_write(rzs, bio);
985 break;
986 }
987
988 return ret;
989}
990
991static void reset_device(struct ramzswap *rzs)
992{
993 int is_backing_blkdev = 0;
994 size_t index, num_pages;
995 unsigned entries_per_page;
996 unsigned long num_table_pages, entry = 0;
997
Nitin Gupta7eef7532010-01-28 21:13:38 +0530998 /* Do not accept any new I/O request */
999 rzs->init_done = 0;
1000
Nitin Gupta306b0c92009-09-22 10:26:53 +05301001 if (rzs->backing_swap && !rzs->num_extents)
1002 is_backing_blkdev = 1;
1003
1004 num_pages = rzs->disksize >> PAGE_SHIFT;
1005
1006 /* Free various per-device buffers */
1007 kfree(rzs->compress_workmem);
1008 free_pages((unsigned long)rzs->compress_buffer, 1);
1009
1010 rzs->compress_workmem = NULL;
1011 rzs->compress_buffer = NULL;
1012
1013 /* Free all pages that are still in this ramzswap device */
1014 for (index = 0; index < num_pages; index++) {
1015 struct page *page;
1016 u16 offset;
1017
1018 page = rzs->table[index].page;
1019 offset = rzs->table[index].offset;
1020
1021 if (!page)
1022 continue;
1023
1024 if (unlikely(rzs_test_flag(rzs, index, RZS_UNCOMPRESSED)))
1025 __free_page(page);
1026 else
1027 xv_free(rzs->mem_pool, page, offset);
1028 }
1029
1030 entries_per_page = PAGE_SIZE / sizeof(*rzs->table);
1031 num_table_pages = DIV_ROUND_UP(num_pages * sizeof(*rzs->table),
1032 PAGE_SIZE);
1033 /*
1034 * Set page->mapping to NULL for every table page.
1035 * Otherwise, we will hit bad_page() during free.
1036 */
1037 while (rzs->num_extents && num_table_pages--) {
1038 struct page *page;
1039 page = vmalloc_to_page(&rzs->table[entry]);
1040 page->mapping = NULL;
1041 entry += entries_per_page;
1042 }
1043 vfree(rzs->table);
1044 rzs->table = NULL;
1045
1046 xv_destroy_pool(rzs->mem_pool);
1047 rzs->mem_pool = NULL;
1048
1049 /* Free all swap extent pages */
1050 while (!list_empty(&rzs->backing_swap_extent_list)) {
1051 struct page *page;
1052 struct list_head *entry;
1053 entry = rzs->backing_swap_extent_list.next;
1054 page = list_entry(entry, struct page, lru);
1055 list_del(entry);
1056 __free_page(page);
1057 }
1058 INIT_LIST_HEAD(&rzs->backing_swap_extent_list);
1059 rzs->num_extents = 0;
1060
1061 /* Close backing swap device, if present */
1062 if (rzs->backing_swap) {
1063 if (is_backing_blkdev)
1064 bd_release(rzs->backing_swap);
1065 filp_close(rzs->swap_file, NULL);
1066 rzs->backing_swap = NULL;
1067 }
1068
1069 /* Reset stats */
1070 memset(&rzs->stats, 0, sizeof(rzs->stats));
1071
1072 rzs->disksize = 0;
1073 rzs->memlimit = 0;
Nitin Gupta306b0c92009-09-22 10:26:53 +05301074}
1075
1076static int ramzswap_ioctl_init_device(struct ramzswap *rzs)
1077{
1078 int ret;
1079 size_t num_pages;
1080 struct page *page;
1081 union swap_header *swap_header;
1082
1083 if (rzs->init_done) {
1084 pr_info("Device already initialized!\n");
1085 return -EBUSY;
1086 }
1087
1088 ret = setup_backing_swap(rzs);
1089 if (ret)
1090 goto fail;
1091
1092 if (rzs->backing_swap)
1093 ramzswap_set_memlimit(rzs, totalram_pages << PAGE_SHIFT);
1094 else
1095 ramzswap_set_disksize(rzs, totalram_pages << PAGE_SHIFT);
1096
1097 rzs->compress_workmem = kzalloc(LZO1X_MEM_COMPRESS, GFP_KERNEL);
1098 if (!rzs->compress_workmem) {
1099 pr_err("Error allocating compressor working memory!\n");
1100 ret = -ENOMEM;
1101 goto fail;
1102 }
1103
1104 rzs->compress_buffer = (void *)__get_free_pages(__GFP_ZERO, 1);
1105 if (!rzs->compress_buffer) {
1106 pr_err("Error allocating compressor buffer space\n");
1107 ret = -ENOMEM;
1108 goto fail;
1109 }
1110
1111 num_pages = rzs->disksize >> PAGE_SHIFT;
1112 rzs->table = vmalloc(num_pages * sizeof(*rzs->table));
1113 if (!rzs->table) {
1114 pr_err("Error allocating ramzswap address table\n");
1115 /* To prevent accessing table entries during cleanup */
1116 rzs->disksize = 0;
1117 ret = -ENOMEM;
1118 goto fail;
1119 }
1120 memset(rzs->table, 0, num_pages * sizeof(*rzs->table));
1121
1122 map_backing_swap_extents(rzs);
1123
1124 page = alloc_page(__GFP_ZERO);
1125 if (!page) {
1126 pr_err("Error allocating swap header page\n");
1127 ret = -ENOMEM;
1128 goto fail;
1129 }
1130 rzs->table[0].page = page;
1131 rzs_set_flag(rzs, 0, RZS_UNCOMPRESSED);
1132
1133 swap_header = kmap(page);
1134 ret = setup_swap_header(rzs, swap_header);
1135 kunmap(page);
1136 if (ret) {
1137 pr_err("Error setting swap header\n");
1138 goto fail;
1139 }
1140
1141 set_capacity(rzs->disk, rzs->disksize >> SECTOR_SHIFT);
1142
1143 /*
1144 * We have ident mapping of sectors for ramzswap and
1145 * and the backing swap device. So, this queue flag
1146 * should be according to backing dev.
1147 */
1148 if (!rzs->backing_swap ||
1149 blk_queue_nonrot(rzs->backing_swap->bd_disk->queue))
1150 queue_flag_set_unlocked(QUEUE_FLAG_NONROT, rzs->disk->queue);
1151
1152 rzs->mem_pool = xv_create_pool();
1153 if (!rzs->mem_pool) {
1154 pr_err("Error creating memory pool\n");
1155 ret = -ENOMEM;
1156 goto fail;
1157 }
1158
1159 /*
1160 * Pages that compress to size greater than this are forwarded
1161 * to physical swap disk (if backing dev is provided)
1162 * TODO: make this configurable
1163 */
1164 if (rzs->backing_swap)
1165 max_zpage_size = max_zpage_size_bdev;
1166 else
1167 max_zpage_size = max_zpage_size_nobdev;
1168 pr_debug("Max compressed page size: %u bytes\n", max_zpage_size);
1169
1170 rzs->init_done = 1;
1171
1172 pr_debug("Initialization done!\n");
1173 return 0;
1174
1175fail:
1176 reset_device(rzs);
1177
1178 pr_err("Initialization failed: err=%d\n", ret);
1179 return ret;
1180}
1181
1182static int ramzswap_ioctl_reset_device(struct ramzswap *rzs)
1183{
1184 if (rzs->init_done)
1185 reset_device(rzs);
1186
1187 return 0;
1188}
1189
1190static int ramzswap_ioctl(struct block_device *bdev, fmode_t mode,
1191 unsigned int cmd, unsigned long arg)
1192{
1193 int ret = 0;
1194 size_t disksize_kb, memlimit_kb;
1195
1196 struct ramzswap *rzs = bdev->bd_disk->private_data;
1197
1198 switch (cmd) {
1199 case RZSIO_SET_DISKSIZE_KB:
1200 if (rzs->init_done) {
1201 ret = -EBUSY;
1202 goto out;
1203 }
1204 if (copy_from_user(&disksize_kb, (void *)arg,
1205 _IOC_SIZE(cmd))) {
1206 ret = -EFAULT;
1207 goto out;
1208 }
1209 rzs->disksize = disksize_kb << 10;
1210 pr_info("Disk size set to %zu kB\n", disksize_kb);
1211 break;
1212
1213 case RZSIO_SET_MEMLIMIT_KB:
1214 if (rzs->init_done) {
1215 /* TODO: allow changing memlimit */
1216 ret = -EBUSY;
1217 goto out;
1218 }
1219 if (copy_from_user(&memlimit_kb, (void *)arg,
1220 _IOC_SIZE(cmd))) {
1221 ret = -EFAULT;
1222 goto out;
1223 }
1224 rzs->memlimit = memlimit_kb << 10;
1225 pr_info("Memory limit set to %zu kB\n", memlimit_kb);
1226 break;
1227
1228 case RZSIO_SET_BACKING_SWAP:
1229 if (rzs->init_done) {
1230 ret = -EBUSY;
1231 goto out;
1232 }
1233
1234 if (copy_from_user(&rzs->backing_swap_name, (void *)arg,
1235 _IOC_SIZE(cmd))) {
1236 ret = -EFAULT;
1237 goto out;
1238 }
1239 rzs->backing_swap_name[MAX_SWAP_NAME_LEN - 1] = '\0';
1240 pr_info("Backing swap set to %s\n", rzs->backing_swap_name);
1241 break;
1242
1243 case RZSIO_GET_STATS:
1244 {
1245 struct ramzswap_ioctl_stats *stats;
1246 if (!rzs->init_done) {
1247 ret = -ENOTTY;
1248 goto out;
1249 }
1250 stats = kzalloc(sizeof(*stats), GFP_KERNEL);
1251 if (!stats) {
1252 ret = -ENOMEM;
1253 goto out;
1254 }
1255 ramzswap_ioctl_get_stats(rzs, stats);
1256 if (copy_to_user((void *)arg, stats, sizeof(*stats))) {
1257 kfree(stats);
1258 ret = -EFAULT;
1259 goto out;
1260 }
1261 kfree(stats);
1262 break;
1263 }
1264 case RZSIO_INIT:
1265 ret = ramzswap_ioctl_init_device(rzs);
1266 break;
1267
1268 case RZSIO_RESET:
1269 /* Do not reset an active device! */
1270 if (bdev->bd_holders) {
1271 ret = -EBUSY;
1272 goto out;
1273 }
Nitin Gupta7eef7532010-01-28 21:13:38 +05301274
1275 /* Make sure all pending I/O is finished */
1276 if (bdev)
1277 fsync_bdev(bdev);
1278
Nitin Gupta306b0c92009-09-22 10:26:53 +05301279 ret = ramzswap_ioctl_reset_device(rzs);
1280 break;
1281
1282 default:
1283 pr_info("Invalid ioctl %u\n", cmd);
1284 ret = -ENOTTY;
1285 }
1286
1287out:
1288 return ret;
1289}
1290
1291static struct block_device_operations ramzswap_devops = {
1292 .ioctl = ramzswap_ioctl,
1293 .owner = THIS_MODULE,
1294};
1295
Minchan Kim3bf040c2010-01-11 16:15:53 +09001296static int create_device(struct ramzswap *rzs, int device_id)
Nitin Gupta306b0c92009-09-22 10:26:53 +05301297{
Nitin Guptade1a21a2010-01-28 21:13:40 +05301298 int ret = 0;
1299
Nitin Gupta306b0c92009-09-22 10:26:53 +05301300 mutex_init(&rzs->lock);
Nitin Gupta6a907722010-01-28 21:13:37 +05301301 spin_lock_init(&rzs->stat64_lock);
Nitin Gupta306b0c92009-09-22 10:26:53 +05301302 INIT_LIST_HEAD(&rzs->backing_swap_extent_list);
1303
1304 rzs->queue = blk_alloc_queue(GFP_KERNEL);
1305 if (!rzs->queue) {
1306 pr_err("Error allocating disk queue for device %d\n",
1307 device_id);
Nitin Guptade1a21a2010-01-28 21:13:40 +05301308 ret = -ENOMEM;
1309 goto out;
Nitin Gupta306b0c92009-09-22 10:26:53 +05301310 }
1311
1312 blk_queue_make_request(rzs->queue, ramzswap_make_request);
1313 rzs->queue->queuedata = rzs;
1314
1315 /* gendisk structure */
1316 rzs->disk = alloc_disk(1);
1317 if (!rzs->disk) {
1318 blk_cleanup_queue(rzs->queue);
1319 pr_warning("Error allocating disk structure for device %d\n",
1320 device_id);
Nitin Guptade1a21a2010-01-28 21:13:40 +05301321 ret = -ENOMEM;
1322 goto out;
Nitin Gupta306b0c92009-09-22 10:26:53 +05301323 }
1324
1325 rzs->disk->major = ramzswap_major;
1326 rzs->disk->first_minor = device_id;
1327 rzs->disk->fops = &ramzswap_devops;
1328 rzs->disk->queue = rzs->queue;
1329 rzs->disk->private_data = rzs;
1330 snprintf(rzs->disk->disk_name, 16, "ramzswap%d", device_id);
1331
1332 /*
1333 * Actual capacity set using RZSIO_SET_DISKSIZE_KB ioctl
1334 * or set equal to backing swap device (if provided)
1335 */
1336 set_capacity(rzs->disk, 0);
Nitin Gupta5d83d5a2010-01-28 21:13:39 +05301337
1338 blk_queue_physical_block_size(rzs->disk->queue, PAGE_SIZE);
1339 blk_queue_logical_block_size(rzs->disk->queue, PAGE_SIZE);
1340
Nitin Gupta306b0c92009-09-22 10:26:53 +05301341 add_disk(rzs->disk);
1342
1343 rzs->init_done = 0;
Nitin Guptade1a21a2010-01-28 21:13:40 +05301344
1345out:
1346 return ret;
Nitin Gupta306b0c92009-09-22 10:26:53 +05301347}
1348
1349static void destroy_device(struct ramzswap *rzs)
1350{
1351 if (rzs->disk) {
1352 del_gendisk(rzs->disk);
1353 put_disk(rzs->disk);
1354 }
1355
1356 if (rzs->queue)
1357 blk_cleanup_queue(rzs->queue);
1358}
1359
1360static int __init ramzswap_init(void)
1361{
Nitin Guptade1a21a2010-01-28 21:13:40 +05301362 int ret, dev_id;
Nitin Gupta306b0c92009-09-22 10:26:53 +05301363
1364 if (num_devices > max_num_devices) {
1365 pr_warning("Invalid value for num_devices: %u\n",
1366 num_devices);
Nitin Guptade1a21a2010-01-28 21:13:40 +05301367 ret = -EINVAL;
1368 goto out;
Nitin Gupta306b0c92009-09-22 10:26:53 +05301369 }
1370
1371 ramzswap_major = register_blkdev(0, "ramzswap");
1372 if (ramzswap_major <= 0) {
1373 pr_warning("Unable to get major number\n");
Nitin Guptade1a21a2010-01-28 21:13:40 +05301374 ret = -EBUSY;
1375 goto out;
Nitin Gupta306b0c92009-09-22 10:26:53 +05301376 }
1377
1378 if (!num_devices) {
1379 pr_info("num_devices not specified. Using default: 1\n");
1380 num_devices = 1;
1381 }
1382
1383 /* Allocate the device array and initialize each one */
1384 pr_info("Creating %u devices ...\n", num_devices);
1385 devices = kzalloc(num_devices * sizeof(struct ramzswap), GFP_KERNEL);
Nitin Guptade1a21a2010-01-28 21:13:40 +05301386 if (!devices) {
1387 ret = -ENOMEM;
1388 goto unregister;
1389 }
Nitin Gupta306b0c92009-09-22 10:26:53 +05301390
Nitin Guptade1a21a2010-01-28 21:13:40 +05301391 for (dev_id = 0; dev_id < num_devices; dev_id++) {
1392 ret = create_device(&devices[dev_id], dev_id);
1393 if (ret)
Minchan Kim3bf040c2010-01-11 16:15:53 +09001394 goto free_devices;
Nitin Guptade1a21a2010-01-28 21:13:40 +05301395 }
1396
Nitin Gupta306b0c92009-09-22 10:26:53 +05301397 return 0;
Nitin Guptade1a21a2010-01-28 21:13:40 +05301398
Minchan Kim3bf040c2010-01-11 16:15:53 +09001399free_devices:
Nitin Guptade1a21a2010-01-28 21:13:40 +05301400 while (dev_id)
1401 destroy_device(&devices[--dev_id]);
1402unregister:
Nitin Gupta306b0c92009-09-22 10:26:53 +05301403 unregister_blkdev(ramzswap_major, "ramzswap");
Nitin Guptade1a21a2010-01-28 21:13:40 +05301404out:
Nitin Gupta306b0c92009-09-22 10:26:53 +05301405 return ret;
1406}
1407
1408static void __exit ramzswap_exit(void)
1409{
1410 int i;
1411 struct ramzswap *rzs;
1412
1413 for (i = 0; i < num_devices; i++) {
1414 rzs = &devices[i];
1415
1416 destroy_device(rzs);
1417 if (rzs->init_done)
1418 reset_device(rzs);
1419 }
1420
1421 unregister_blkdev(ramzswap_major, "ramzswap");
1422
1423 kfree(devices);
1424 pr_debug("Cleanup done!\n");
1425}
1426
1427module_param(num_devices, uint, 0);
1428MODULE_PARM_DESC(num_devices, "Number of ramzswap devices");
1429
1430module_init(ramzswap_init);
1431module_exit(ramzswap_exit);
1432
1433MODULE_LICENSE("Dual BSD/GPL");
1434MODULE_AUTHOR("Nitin Gupta <ngupta@vflare.org>");
1435MODULE_DESCRIPTION("Compressed RAM Based Swap Device");