blob: 11633fca27d304cf8b60d2e6e74022a7b8fa3500 [file] [log] [blame]
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +02001/*
2 * bio-integrity.c - bio data integrity extensions
3 *
Martin K. Petersen7878cba2009-06-26 15:37:49 +02004 * Copyright (C) 2007, 2008, 2009 Oracle Corporation
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +02005 * Written by: Martin K. Petersen <martin.petersen@oracle.com>
6 *
7 * This program is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU General Public License version
9 * 2 as published by the Free Software Foundation.
10 *
11 * This program is distributed in the hope that it will be useful, but
12 * WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; see the file COPYING. If not, write to
18 * the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139,
19 * USA.
20 *
21 */
22
23#include <linux/blkdev.h>
24#include <linux/mempool.h>
Paul Gortmakerafeacc82011-05-26 16:00:52 -040025#include <linux/export.h>
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +020026#include <linux/bio.h>
27#include <linux/workqueue.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090028#include <linux/slab.h>
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +020029
Kent Overstreet9f060e22012-10-12 15:29:33 -070030#define BIP_INLINE_VECS 4
Martin K. Petersen7878cba2009-06-26 15:37:49 +020031
Kent Overstreet9f060e22012-10-12 15:29:33 -070032static struct kmem_cache *bip_slab;
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +020033static struct workqueue_struct *kintegrityd_wq;
34
Dan Williams5a48fc12015-10-21 13:20:23 -040035void blk_flush_integrity(void)
36{
37 flush_workqueue(kintegrityd_wq);
38}
39
Martin K. Petersen7878cba2009-06-26 15:37:49 +020040/**
Kent Overstreet1e2a410f2012-09-06 15:34:56 -070041 * bio_integrity_alloc - Allocate integrity payload and attach it to bio
Martin K. Petersen7878cba2009-06-26 15:37:49 +020042 * @bio: bio to attach integrity metadata to
43 * @gfp_mask: Memory allocation mask
44 * @nr_vecs: Number of integrity metadata scatter-gather elements
Martin K. Petersen7878cba2009-06-26 15:37:49 +020045 *
46 * Description: This function prepares a bio for attaching integrity
47 * metadata. nr_vecs specifies the maximum number of pages containing
48 * integrity metadata that can be attached.
49 */
Kent Overstreet1e2a410f2012-09-06 15:34:56 -070050struct bio_integrity_payload *bio_integrity_alloc(struct bio *bio,
51 gfp_t gfp_mask,
52 unsigned int nr_vecs)
Martin K. Petersen7878cba2009-06-26 15:37:49 +020053{
54 struct bio_integrity_payload *bip;
Kent Overstreet1e2a410f2012-09-06 15:34:56 -070055 struct bio_set *bs = bio->bi_pool;
Kent Overstreet9f060e22012-10-12 15:29:33 -070056 unsigned inline_vecs;
Kent Overstreet1e2a410f2012-09-06 15:34:56 -070057
Mike Snitzerbb8bd382015-07-01 12:57:40 -040058 if (!bs || !bs->bio_integrity_pool) {
Kent Overstreet9f060e22012-10-12 15:29:33 -070059 bip = kmalloc(sizeof(struct bio_integrity_payload) +
60 sizeof(struct bio_vec) * nr_vecs, gfp_mask);
61 inline_vecs = nr_vecs;
62 } else {
Martin K. Petersen7878cba2009-06-26 15:37:49 +020063 bip = mempool_alloc(bs->bio_integrity_pool, gfp_mask);
Kent Overstreet9f060e22012-10-12 15:29:33 -070064 inline_vecs = BIP_INLINE_VECS;
Martin K. Petersen7878cba2009-06-26 15:37:49 +020065 }
66
Kent Overstreet9f060e22012-10-12 15:29:33 -070067 if (unlikely(!bip))
Keith Busch06c1e392015-12-03 09:32:21 -070068 return ERR_PTR(-ENOMEM);
Kent Overstreet9f060e22012-10-12 15:29:33 -070069
Martin K. Petersen7878cba2009-06-26 15:37:49 +020070 memset(bip, 0, sizeof(*bip));
71
Kent Overstreet9f060e22012-10-12 15:29:33 -070072 if (nr_vecs > inline_vecs) {
Christoph Hellwiged996a52016-07-19 11:28:42 +020073 unsigned long idx = 0;
74
Kent Overstreet9f060e22012-10-12 15:29:33 -070075 bip->bip_vec = bvec_alloc(gfp_mask, nr_vecs, &idx,
76 bs->bvec_integrity_pool);
77 if (!bip->bip_vec)
78 goto err;
Gu Zhengcbcd10542014-07-01 10:36:47 -060079 bip->bip_max_vcnt = bvec_nr_vecs(idx);
Christoph Hellwiged996a52016-07-19 11:28:42 +020080 bip->bip_slab = idx;
Kent Overstreet9f060e22012-10-12 15:29:33 -070081 } else {
82 bip->bip_vec = bip->bip_inline_vecs;
Gu Zhengcbcd10542014-07-01 10:36:47 -060083 bip->bip_max_vcnt = inline_vecs;
Kent Overstreet9f060e22012-10-12 15:29:33 -070084 }
85
Martin K. Petersen7878cba2009-06-26 15:37:49 +020086 bip->bip_bio = bio;
87 bio->bi_integrity = bip;
Martin K. Petersen180b2f92014-09-26 19:19:56 -040088 bio->bi_rw |= REQ_INTEGRITY;
Martin K. Petersen7878cba2009-06-26 15:37:49 +020089
90 return bip;
Kent Overstreet9f060e22012-10-12 15:29:33 -070091err:
92 mempool_free(bip, bs->bio_integrity_pool);
Keith Busch06c1e392015-12-03 09:32:21 -070093 return ERR_PTR(-ENOMEM);
Martin K. Petersen7878cba2009-06-26 15:37:49 +020094}
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +020095EXPORT_SYMBOL(bio_integrity_alloc);
96
97/**
98 * bio_integrity_free - Free bio integrity payload
99 * @bio: bio containing bip to be freed
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200100 *
101 * Description: Used to free the integrity portion of a bio. Usually
102 * called from bio_free().
103 */
Kent Overstreet1e2a410f2012-09-06 15:34:56 -0700104void bio_integrity_free(struct bio *bio)
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200105{
Martin K. Petersen180b2f92014-09-26 19:19:56 -0400106 struct bio_integrity_payload *bip = bio_integrity(bio);
Kent Overstreet1e2a410f2012-09-06 15:34:56 -0700107 struct bio_set *bs = bio->bi_pool;
108
Martin K. Petersenb1f0138852014-09-26 19:20:04 -0400109 if (bip->bip_flags & BIP_BLOCK_INTEGRITY)
Martin K. Petersen5f9378f2014-09-26 19:19:58 -0400110 kfree(page_address(bip->bip_vec->bv_page) +
111 bip->bip_vec->bv_offset);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200112
Mike Snitzerbb8bd382015-07-01 12:57:40 -0400113 if (bs && bs->bio_integrity_pool) {
Christoph Hellwiged996a52016-07-19 11:28:42 +0200114 bvec_free(bs->bvec_integrity_pool, bip->bip_vec, bip->bip_slab);
Kent Overstreet9f060e22012-10-12 15:29:33 -0700115
Martin K. Petersen7878cba2009-06-26 15:37:49 +0200116 mempool_free(bip, bs->bio_integrity_pool);
Kent Overstreet9f060e22012-10-12 15:29:33 -0700117 } else {
118 kfree(bip);
119 }
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200120
121 bio->bi_integrity = NULL;
122}
123EXPORT_SYMBOL(bio_integrity_free);
124
125/**
126 * bio_integrity_add_page - Attach integrity metadata
127 * @bio: bio to update
128 * @page: page containing integrity metadata
129 * @len: number of bytes of integrity metadata in page
130 * @offset: start offset within page
131 *
132 * Description: Attach a page containing integrity metadata to bio.
133 */
134int bio_integrity_add_page(struct bio *bio, struct page *page,
135 unsigned int len, unsigned int offset)
136{
Martin K. Petersen180b2f92014-09-26 19:19:56 -0400137 struct bio_integrity_payload *bip = bio_integrity(bio);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200138 struct bio_vec *iv;
139
Gu Zhengcbcd10542014-07-01 10:36:47 -0600140 if (bip->bip_vcnt >= bip->bip_max_vcnt) {
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200141 printk(KERN_ERR "%s: bip_vec full\n", __func__);
142 return 0;
143 }
144
Kent Overstreetd57a5f72013-11-23 17:20:16 -0800145 iv = bip->bip_vec + bip->bip_vcnt;
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200146
Sagi Grimberg87a816d2015-09-08 09:33:35 -0600147 if (bip->bip_vcnt &&
148 bvec_gap_to_prev(bdev_get_queue(bio->bi_bdev),
149 &bip->bip_vec[bip->bip_vcnt - 1], offset))
150 return 0;
151
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200152 iv->bv_page = page;
153 iv->bv_len = len;
154 iv->bv_offset = offset;
155 bip->bip_vcnt++;
156
157 return len;
158}
159EXPORT_SYMBOL(bio_integrity_add_page);
160
161/**
162 * bio_integrity_enabled - Check whether integrity can be passed
163 * @bio: bio to check
164 *
165 * Description: Determines whether bio_integrity_prep() can be called
166 * on this bio or not. bio data direction and target device must be
167 * set prior to calling. The functions honors the write_generate and
168 * read_verify flags in sysfs.
169 */
Martin K. Petersene7258c12014-09-26 19:19:55 -0400170bool bio_integrity_enabled(struct bio *bio)
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200171{
Martin K. Petersene7258c12014-09-26 19:19:55 -0400172 struct blk_integrity *bi = bdev_get_integrity(bio->bi_bdev);
173
Martin K. Petersene69f18f2014-04-08 22:59:31 -0400174 if (!bio_is_rw(bio))
Martin K. Petersene7258c12014-09-26 19:19:55 -0400175 return false;
Martin K. Petersene69f18f2014-04-08 22:59:31 -0400176
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200177 /* Already protected? */
178 if (bio_integrity(bio))
Martin K. Petersene7258c12014-09-26 19:19:55 -0400179 return false;
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200180
Martin K. Petersene7258c12014-09-26 19:19:55 -0400181 if (bi == NULL)
182 return false;
183
Martin K. Petersen0f8087e2015-10-21 13:19:33 -0400184 if (bio_data_dir(bio) == READ && bi->profile->verify_fn != NULL &&
Martin K. Petersen8288f492014-09-26 19:20:02 -0400185 (bi->flags & BLK_INTEGRITY_VERIFY))
Martin K. Petersene7258c12014-09-26 19:19:55 -0400186 return true;
187
Martin K. Petersen0f8087e2015-10-21 13:19:33 -0400188 if (bio_data_dir(bio) == WRITE && bi->profile->generate_fn != NULL &&
Martin K. Petersen8288f492014-09-26 19:20:02 -0400189 (bi->flags & BLK_INTEGRITY_GENERATE))
Martin K. Petersene7258c12014-09-26 19:19:55 -0400190 return true;
191
192 return false;
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200193}
194EXPORT_SYMBOL(bio_integrity_enabled);
195
196/**
Martin K. Petersen3be91c42014-09-26 19:19:59 -0400197 * bio_integrity_intervals - Return number of integrity intervals for a bio
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200198 * @bi: blk_integrity profile for device
Martin K. Petersen3be91c42014-09-26 19:19:59 -0400199 * @sectors: Size of the bio in 512-byte sectors
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200200 *
201 * Description: The block layer calculates everything in 512 byte
Martin K. Petersen3be91c42014-09-26 19:19:59 -0400202 * sectors but integrity metadata is done in terms of the data integrity
203 * interval size of the storage device. Convert the block layer sectors
204 * to the appropriate number of integrity intervals.
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200205 */
Martin K. Petersen3be91c42014-09-26 19:19:59 -0400206static inline unsigned int bio_integrity_intervals(struct blk_integrity *bi,
207 unsigned int sectors)
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200208{
Martin K. Petersena48f0412015-10-21 13:19:38 -0400209 return sectors >> (bi->interval_exp - 9);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200210}
211
Kent Overstreetd57a5f72013-11-23 17:20:16 -0800212static inline unsigned int bio_integrity_bytes(struct blk_integrity *bi,
213 unsigned int sectors)
214{
Martin K. Petersen3be91c42014-09-26 19:19:59 -0400215 return bio_integrity_intervals(bi, sectors) * bi->tuple_size;
Kent Overstreetd57a5f72013-11-23 17:20:16 -0800216}
217
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200218/**
Martin K. Petersen18593082014-09-26 19:20:01 -0400219 * bio_integrity_process - Process integrity metadata for a bio
Gu Zhengbf36f9c2014-02-21 18:10:59 +0800220 * @bio: bio to generate/verify integrity metadata for
Martin K. Petersen18593082014-09-26 19:20:01 -0400221 * @proc_fn: Pointer to the relevant processing function
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200222 */
Martin K. Petersen18593082014-09-26 19:20:01 -0400223static int bio_integrity_process(struct bio *bio,
224 integrity_processing_fn *proc_fn)
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200225{
226 struct blk_integrity *bi = bdev_get_integrity(bio->bi_bdev);
Martin K. Petersen18593082014-09-26 19:20:01 -0400227 struct blk_integrity_iter iter;
Darrick J. Wong594416a2014-11-25 17:40:25 -0800228 struct bvec_iter bviter;
229 struct bio_vec bv;
Martin K. Petersen5f9378f2014-09-26 19:19:58 -0400230 struct bio_integrity_payload *bip = bio_integrity(bio);
Darrick J. Wong594416a2014-11-25 17:40:25 -0800231 unsigned int ret = 0;
Martin K. Petersen5f9378f2014-09-26 19:19:58 -0400232 void *prot_buf = page_address(bip->bip_vec->bv_page) +
233 bip->bip_vec->bv_offset;
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200234
Martin K. Petersen18593082014-09-26 19:20:01 -0400235 iter.disk_name = bio->bi_bdev->bd_disk->disk_name;
Martin K. Petersena48f0412015-10-21 13:19:38 -0400236 iter.interval = 1 << bi->interval_exp;
Martin K. Petersen18593082014-09-26 19:20:01 -0400237 iter.seed = bip_get_seed(bip);
238 iter.prot_buf = prot_buf;
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200239
Darrick J. Wong594416a2014-11-25 17:40:25 -0800240 bio_for_each_segment(bv, bio, bviter) {
241 void *kaddr = kmap_atomic(bv.bv_page);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200242
Darrick J. Wong594416a2014-11-25 17:40:25 -0800243 iter.data_buf = kaddr + bv.bv_offset;
244 iter.data_size = bv.bv_len;
Martin K. Petersen18593082014-09-26 19:20:01 -0400245
246 ret = proc_fn(&iter);
247 if (ret) {
248 kunmap_atomic(kaddr);
249 return ret;
Gu Zhengbf36f9c2014-02-21 18:10:59 +0800250 }
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200251
Cong Wange8e3c3d2011-11-25 23:14:27 +0800252 kunmap_atomic(kaddr);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200253 }
Gu Zhengbf36f9c2014-02-21 18:10:59 +0800254 return ret;
255}
256
257/**
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200258 * bio_integrity_prep - Prepare bio for integrity I/O
259 * @bio: bio to prepare
260 *
261 * Description: Allocates a buffer for integrity metadata, maps the
262 * pages and attaches them to a bio. The bio must have data
263 * direction, target device and start sector set priot to calling. In
264 * the WRITE case, integrity metadata will be generated using the
265 * block device's integrity function. In the READ case, the buffer
266 * will be prepared for DMA and a suitable end_io handler set up.
267 */
268int bio_integrity_prep(struct bio *bio)
269{
270 struct bio_integrity_payload *bip;
271 struct blk_integrity *bi;
272 struct request_queue *q;
273 void *buf;
274 unsigned long start, end;
275 unsigned int len, nr_pages;
276 unsigned int bytes, offset, i;
Martin K. Petersen3be91c42014-09-26 19:19:59 -0400277 unsigned int intervals;
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200278
279 bi = bdev_get_integrity(bio->bi_bdev);
280 q = bdev_get_queue(bio->bi_bdev);
281 BUG_ON(bi == NULL);
282 BUG_ON(bio_integrity(bio));
283
Martin K. Petersen3be91c42014-09-26 19:19:59 -0400284 intervals = bio_integrity_intervals(bi, bio_sectors(bio));
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200285
286 /* Allocate kernel buffer for protection data */
Martin K. Petersen3be91c42014-09-26 19:19:59 -0400287 len = intervals * bi->tuple_size;
David Rientjes72f46502010-08-23 13:35:09 +0200288 buf = kmalloc(len, GFP_NOIO | q->bounce_gfp);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200289 if (unlikely(buf == NULL)) {
290 printk(KERN_ERR "could not allocate integrity buffer\n");
Andrew Morton220eb7f2010-08-23 13:36:20 +0200291 return -ENOMEM;
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200292 }
293
294 end = (((unsigned long) buf) + len + PAGE_SIZE - 1) >> PAGE_SHIFT;
295 start = ((unsigned long) buf) >> PAGE_SHIFT;
296 nr_pages = end - start;
297
298 /* Allocate bio integrity payload and integrity vectors */
299 bip = bio_integrity_alloc(bio, GFP_NOIO, nr_pages);
Dan Carpenter7b6c0f82015-12-09 13:21:23 +0300300 if (IS_ERR(bip)) {
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200301 printk(KERN_ERR "could not allocate data integrity bioset\n");
302 kfree(buf);
Dan Carpenter7b6c0f82015-12-09 13:21:23 +0300303 return PTR_ERR(bip);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200304 }
305
Martin K. Petersenb1f0138852014-09-26 19:20:04 -0400306 bip->bip_flags |= BIP_BLOCK_INTEGRITY;
Kent Overstreetd57a5f72013-11-23 17:20:16 -0800307 bip->bip_iter.bi_size = len;
Martin K. Petersen18593082014-09-26 19:20:01 -0400308 bip_set_seed(bip, bio->bi_iter.bi_sector);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200309
Martin K. Petersenaae7df52014-09-26 19:20:05 -0400310 if (bi->flags & BLK_INTEGRITY_IP_CHECKSUM)
311 bip->bip_flags |= BIP_IP_CHECKSUM;
312
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200313 /* Map it */
314 offset = offset_in_page(buf);
315 for (i = 0 ; i < nr_pages ; i++) {
316 int ret;
317 bytes = PAGE_SIZE - offset;
318
319 if (len <= 0)
320 break;
321
322 if (bytes > len)
323 bytes = len;
324
325 ret = bio_integrity_add_page(bio, virt_to_page(buf),
326 bytes, offset);
327
328 if (ret == 0)
329 return 0;
330
331 if (ret < bytes)
332 break;
333
334 buf += bytes;
335 len -= bytes;
336 offset = 0;
337 }
338
339 /* Install custom I/O completion handler if read verify is enabled */
340 if (bio_data_dir(bio) == READ) {
341 bip->bip_end_io = bio->bi_end_io;
342 bio->bi_end_io = bio_integrity_endio;
343 }
344
345 /* Auto-generate integrity metadata if this is a write */
346 if (bio_data_dir(bio) == WRITE)
Martin K. Petersen0f8087e2015-10-21 13:19:33 -0400347 bio_integrity_process(bio, bi->profile->generate_fn);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200348
349 return 0;
350}
351EXPORT_SYMBOL(bio_integrity_prep);
352
353/**
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200354 * bio_integrity_verify_fn - Integrity I/O completion worker
355 * @work: Work struct stored in bio to be verified
356 *
357 * Description: This workqueue function is called to complete a READ
358 * request. The function verifies the transferred integrity metadata
359 * and then calls the original bio end_io function.
360 */
361static void bio_integrity_verify_fn(struct work_struct *work)
362{
Jens Axboeb9846792008-06-17 19:05:48 +0200363 struct bio_integrity_payload *bip =
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200364 container_of(work, struct bio_integrity_payload, bip_work);
365 struct bio *bio = bip->bip_bio;
Martin K. Petersen18593082014-09-26 19:20:01 -0400366 struct blk_integrity *bi = bdev_get_integrity(bio->bi_bdev);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200367
Martin K. Petersen0f8087e2015-10-21 13:19:33 -0400368 bio->bi_error = bio_integrity_process(bio, bi->profile->verify_fn);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200369
370 /* Restore original bio completion handler */
371 bio->bi_end_io = bip->bip_end_io;
Christoph Hellwig4246a0b2015-07-20 15:29:37 +0200372 bio_endio(bio);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200373}
374
375/**
376 * bio_integrity_endio - Integrity I/O completion function
377 * @bio: Protected bio
378 * @error: Pointer to errno
379 *
380 * Description: Completion for integrity I/O
381 *
382 * Normally I/O completion is done in interrupt context. However,
383 * verifying I/O integrity is a time-consuming task which must be run
384 * in process context. This function postpones completion
385 * accordingly.
386 */
Christoph Hellwig4246a0b2015-07-20 15:29:37 +0200387void bio_integrity_endio(struct bio *bio)
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200388{
Martin K. Petersen180b2f92014-09-26 19:19:56 -0400389 struct bio_integrity_payload *bip = bio_integrity(bio);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200390
391 BUG_ON(bip->bip_bio != bio);
392
Martin K. Petersen7b24fc42009-01-04 02:43:38 -0500393 /* In case of an I/O error there is no point in verifying the
394 * integrity metadata. Restore original bio end_io handler
395 * and run it.
396 */
Christoph Hellwig4246a0b2015-07-20 15:29:37 +0200397 if (bio->bi_error) {
Martin K. Petersen7b24fc42009-01-04 02:43:38 -0500398 bio->bi_end_io = bip->bip_end_io;
Christoph Hellwig4246a0b2015-07-20 15:29:37 +0200399 bio_endio(bio);
Martin K. Petersen7b24fc42009-01-04 02:43:38 -0500400
401 return;
402 }
403
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200404 INIT_WORK(&bip->bip_work, bio_integrity_verify_fn);
405 queue_work(kintegrityd_wq, &bip->bip_work);
406}
407EXPORT_SYMBOL(bio_integrity_endio);
408
409/**
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200410 * bio_integrity_advance - Advance integrity vector
411 * @bio: bio whose integrity vector to update
412 * @bytes_done: number of data bytes that have been completed
413 *
414 * Description: This function calculates how many integrity bytes the
415 * number of completed data bytes correspond to and advances the
416 * integrity vector accordingly.
417 */
418void bio_integrity_advance(struct bio *bio, unsigned int bytes_done)
419{
Martin K. Petersen180b2f92014-09-26 19:19:56 -0400420 struct bio_integrity_payload *bip = bio_integrity(bio);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200421 struct blk_integrity *bi = bdev_get_integrity(bio->bi_bdev);
Kent Overstreetd57a5f72013-11-23 17:20:16 -0800422 unsigned bytes = bio_integrity_bytes(bi, bytes_done >> 9);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200423
Kent Overstreetd57a5f72013-11-23 17:20:16 -0800424 bvec_iter_advance(bip->bip_vec, &bip->bip_iter, bytes);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200425}
426EXPORT_SYMBOL(bio_integrity_advance);
427
428/**
429 * bio_integrity_trim - Trim integrity vector
430 * @bio: bio whose integrity vector to update
431 * @offset: offset to first data sector
432 * @sectors: number of data sectors
433 *
434 * Description: Used to trim the integrity vector in a cloned bio.
435 * The ivec will be advanced corresponding to 'offset' data sectors
436 * and the length will be truncated corresponding to 'len' data
437 * sectors.
438 */
Jens Axboeb9846792008-06-17 19:05:48 +0200439void bio_integrity_trim(struct bio *bio, unsigned int offset,
440 unsigned int sectors)
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200441{
Martin K. Petersen180b2f92014-09-26 19:19:56 -0400442 struct bio_integrity_payload *bip = bio_integrity(bio);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200443 struct blk_integrity *bi = bdev_get_integrity(bio->bi_bdev);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200444
Kent Overstreetd57a5f72013-11-23 17:20:16 -0800445 bio_integrity_advance(bio, offset << 9);
446 bip->bip_iter.bi_size = bio_integrity_bytes(bi, sectors);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200447}
448EXPORT_SYMBOL(bio_integrity_trim);
449
450/**
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200451 * bio_integrity_clone - Callback for cloning bios with integrity metadata
452 * @bio: New bio
453 * @bio_src: Original bio
un'ichi Nomura87092692009-03-09 10:40:52 +0100454 * @gfp_mask: Memory allocation mask
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200455 *
456 * Description: Called to allocate a bip when cloning a bio
457 */
Martin K. Petersen7878cba2009-06-26 15:37:49 +0200458int bio_integrity_clone(struct bio *bio, struct bio *bio_src,
Kent Overstreet1e2a410f2012-09-06 15:34:56 -0700459 gfp_t gfp_mask)
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200460{
Martin K. Petersen180b2f92014-09-26 19:19:56 -0400461 struct bio_integrity_payload *bip_src = bio_integrity(bio_src);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200462 struct bio_integrity_payload *bip;
463
464 BUG_ON(bip_src == NULL);
465
Kent Overstreet1e2a410f2012-09-06 15:34:56 -0700466 bip = bio_integrity_alloc(bio, gfp_mask, bip_src->bip_vcnt);
Dan Carpenter7b6c0f82015-12-09 13:21:23 +0300467 if (IS_ERR(bip))
468 return PTR_ERR(bip);
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200469
470 memcpy(bip->bip_vec, bip_src->bip_vec,
471 bip_src->bip_vcnt * sizeof(struct bio_vec));
472
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200473 bip->bip_vcnt = bip_src->bip_vcnt;
Kent Overstreetd57a5f72013-11-23 17:20:16 -0800474 bip->bip_iter = bip_src->bip_iter;
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200475
476 return 0;
477}
478EXPORT_SYMBOL(bio_integrity_clone);
479
Martin K. Petersen7878cba2009-06-26 15:37:49 +0200480int bioset_integrity_create(struct bio_set *bs, int pool_size)
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200481{
Martin K. Petersena91a2782011-03-17 11:11:05 +0100482 if (bs->bio_integrity_pool)
483 return 0;
484
Kent Overstreet9f060e22012-10-12 15:29:33 -0700485 bs->bio_integrity_pool = mempool_create_slab_pool(pool_size, bip_slab);
Martin K. Petersen7878cba2009-06-26 15:37:49 +0200486 if (!bs->bio_integrity_pool)
487 return -1;
Martin K. Petersen6d2a78e2009-03-10 08:27:39 +0100488
Fabian Fredericka6c39cb4f2014-04-22 15:09:05 -0600489 bs->bvec_integrity_pool = biovec_create_pool(pool_size);
Gu Zhengbc5c8f02013-09-11 14:23:21 -0700490 if (!bs->bvec_integrity_pool) {
491 mempool_destroy(bs->bio_integrity_pool);
492 return -1;
493 }
494
Martin K. Petersen7ba1ba12008-06-30 20:04:41 +0200495 return 0;
496}
Martin K. Petersen7878cba2009-06-26 15:37:49 +0200497EXPORT_SYMBOL(bioset_integrity_create);
498
499void bioset_integrity_free(struct bio_set *bs)
500{
501 if (bs->bio_integrity_pool)
502 mempool_destroy(bs->bio_integrity_pool);
Kent Overstreet9f060e22012-10-12 15:29:33 -0700503
504 if (bs->bvec_integrity_pool)
Bjorn Helgaasadbe6992013-05-29 16:29:55 -0600505 mempool_destroy(bs->bvec_integrity_pool);
Martin K. Petersen7878cba2009-06-26 15:37:49 +0200506}
507EXPORT_SYMBOL(bioset_integrity_free);
508
509void __init bio_integrity_init(void)
510{
Tejun Heoa6e8dc42011-01-03 15:01:48 +0100511 /*
512 * kintegrityd won't block much but may burn a lot of CPU cycles.
513 * Make it highpri CPU intensive wq with max concurrency of 1.
514 */
515 kintegrityd_wq = alloc_workqueue("kintegrityd", WQ_MEM_RECLAIM |
516 WQ_HIGHPRI | WQ_CPU_INTENSIVE, 1);
Martin K. Petersen7878cba2009-06-26 15:37:49 +0200517 if (!kintegrityd_wq)
518 panic("Failed to create kintegrityd\n");
519
Kent Overstreet9f060e22012-10-12 15:29:33 -0700520 bip_slab = kmem_cache_create("bio_integrity_payload",
521 sizeof(struct bio_integrity_payload) +
522 sizeof(struct bio_vec) * BIP_INLINE_VECS,
523 0, SLAB_HWCACHE_ALIGN|SLAB_PANIC, NULL);
Martin K. Petersen7878cba2009-06-26 15:37:49 +0200524}