dm crypt: adjust io processing functions
[linux-block.git] / drivers / md / dm-crypt.c
CommitLineData
1da177e4
LT
1/*
2 * Copyright (C) 2003 Christophe Saout <christophe@saout.de>
3 * Copyright (C) 2004 Clemens Fruhwirth <clemens@endorphin.org>
4e4eef64 4 * Copyright (C) 2006-2007 Red Hat, Inc. All rights reserved.
1da177e4
LT
5 *
6 * This file is released under the GPL.
7 */
8
d1806f6a 9#include <linux/err.h>
1da177e4
LT
10#include <linux/module.h>
11#include <linux/init.h>
12#include <linux/kernel.h>
13#include <linux/bio.h>
14#include <linux/blkdev.h>
15#include <linux/mempool.h>
16#include <linux/slab.h>
17#include <linux/crypto.h>
18#include <linux/workqueue.h>
3fcfab16 19#include <linux/backing-dev.h>
1da177e4 20#include <asm/atomic.h>
378f058c 21#include <linux/scatterlist.h>
1da177e4 22#include <asm/page.h>
48527fa7 23#include <asm/unaligned.h>
1da177e4
LT
24
25#include "dm.h"
26
72d94861 27#define DM_MSG_PREFIX "crypt"
e48d4bbf 28#define MESG_STR(x) x, sizeof(x)
1da177e4 29
1da177e4
LT
30/*
31 * context holding the current state of a multi-part conversion
32 */
33struct convert_context {
34 struct bio *bio_in;
35 struct bio *bio_out;
36 unsigned int offset_in;
37 unsigned int offset_out;
38 unsigned int idx_in;
39 unsigned int idx_out;
40 sector_t sector;
1da177e4
LT
41};
42
53017030
MB
43/*
44 * per bio private data
45 */
46struct dm_crypt_io {
47 struct dm_target *target;
48 struct bio *base_bio;
49 struct work_struct work;
50
51 struct convert_context ctx;
52
53 atomic_t pending;
54 int error;
55};
56
1da177e4
LT
57struct crypt_config;
58
59struct crypt_iv_operations {
60 int (*ctr)(struct crypt_config *cc, struct dm_target *ti,
d469f841 61 const char *opts);
1da177e4
LT
62 void (*dtr)(struct crypt_config *cc);
63 const char *(*status)(struct crypt_config *cc);
64 int (*generator)(struct crypt_config *cc, u8 *iv, sector_t sector);
65};
66
67/*
68 * Crypt: maps a linear range of a block device
69 * and encrypts / decrypts at the same time.
70 */
e48d4bbf 71enum flags { DM_CRYPT_SUSPENDED, DM_CRYPT_KEY_VALID };
1da177e4
LT
72struct crypt_config {
73 struct dm_dev *dev;
74 sector_t start;
75
76 /*
77 * pool for per bio private data and
78 * for encryption buffer pages
79 */
80 mempool_t *io_pool;
81 mempool_t *page_pool;
6a24c718 82 struct bio_set *bs;
1da177e4 83
cabf08e4
MB
84 struct workqueue_struct *io_queue;
85 struct workqueue_struct *crypt_queue;
1da177e4
LT
86 /*
87 * crypto related data
88 */
89 struct crypt_iv_operations *iv_gen_ops;
90 char *iv_mode;
79066ad3
HX
91 union {
92 struct crypto_cipher *essiv_tfm;
93 int benbi_shift;
94 } iv_gen_private;
1da177e4
LT
95 sector_t iv_offset;
96 unsigned int iv_size;
97
d1806f6a
HX
98 char cipher[CRYPTO_MAX_ALG_NAME];
99 char chainmode[CRYPTO_MAX_ALG_NAME];
100 struct crypto_blkcipher *tfm;
e48d4bbf 101 unsigned long flags;
1da177e4
LT
102 unsigned int key_size;
103 u8 key[0];
104};
105
6a24c718 106#define MIN_IOS 16
1da177e4
LT
107#define MIN_POOL_PAGES 32
108#define MIN_BIO_PAGES 8
109
e18b890b 110static struct kmem_cache *_crypt_io_pool;
1da177e4 111
028867ac 112static void clone_init(struct dm_crypt_io *, struct bio *);
027581f3 113
1da177e4
LT
114/*
115 * Different IV generation algorithms:
116 *
3c164bd8 117 * plain: the initial vector is the 32-bit little-endian version of the sector
3a4fa0a2 118 * number, padded with zeros if necessary.
1da177e4 119 *
3c164bd8
RS
120 * essiv: "encrypted sector|salt initial vector", the sector number is
121 * encrypted with the bulk cipher using a salt as key. The salt
122 * should be derived from the bulk cipher's key via hashing.
1da177e4 123 *
48527fa7
RS
124 * benbi: the 64-bit "big-endian 'narrow block'-count", starting at 1
125 * (needed for LRW-32-AES and possible other narrow block modes)
126 *
46b47730
LN
127 * null: the initial vector is always zero. Provides compatibility with
128 * obsolete loop_fish2 devices. Do not use for new devices.
129 *
1da177e4
LT
130 * plumb: unimplemented, see:
131 * http://article.gmane.org/gmane.linux.kernel.device-mapper.dm-crypt/454
132 */
133
134static int crypt_iv_plain_gen(struct crypt_config *cc, u8 *iv, sector_t sector)
135{
136 memset(iv, 0, cc->iv_size);
137 *(u32 *)iv = cpu_to_le32(sector & 0xffffffff);
138
139 return 0;
140}
141
142static int crypt_iv_essiv_ctr(struct crypt_config *cc, struct dm_target *ti,
d469f841 143 const char *opts)
1da177e4 144{
d1806f6a 145 struct crypto_cipher *essiv_tfm;
35058687
HX
146 struct crypto_hash *hash_tfm;
147 struct hash_desc desc;
1da177e4
LT
148 struct scatterlist sg;
149 unsigned int saltsize;
150 u8 *salt;
d1806f6a 151 int err;
1da177e4
LT
152
153 if (opts == NULL) {
72d94861 154 ti->error = "Digest algorithm missing for ESSIV mode";
1da177e4
LT
155 return -EINVAL;
156 }
157
158 /* Hash the cipher key with the given hash algorithm */
35058687
HX
159 hash_tfm = crypto_alloc_hash(opts, 0, CRYPTO_ALG_ASYNC);
160 if (IS_ERR(hash_tfm)) {
72d94861 161 ti->error = "Error initializing ESSIV hash";
35058687 162 return PTR_ERR(hash_tfm);
1da177e4
LT
163 }
164
35058687 165 saltsize = crypto_hash_digestsize(hash_tfm);
1da177e4
LT
166 salt = kmalloc(saltsize, GFP_KERNEL);
167 if (salt == NULL) {
72d94861 168 ti->error = "Error kmallocing salt storage in ESSIV";
35058687 169 crypto_free_hash(hash_tfm);
1da177e4
LT
170 return -ENOMEM;
171 }
172
68e3f5dd 173 sg_init_one(&sg, cc->key, cc->key_size);
35058687
HX
174 desc.tfm = hash_tfm;
175 desc.flags = CRYPTO_TFM_REQ_MAY_SLEEP;
176 err = crypto_hash_digest(&desc, &sg, cc->key_size, salt);
177 crypto_free_hash(hash_tfm);
178
179 if (err) {
180 ti->error = "Error calculating hash in ESSIV";
815f9e32 181 kfree(salt);
35058687
HX
182 return err;
183 }
1da177e4
LT
184
185 /* Setup the essiv_tfm with the given salt */
d1806f6a
HX
186 essiv_tfm = crypto_alloc_cipher(cc->cipher, 0, CRYPTO_ALG_ASYNC);
187 if (IS_ERR(essiv_tfm)) {
72d94861 188 ti->error = "Error allocating crypto tfm for ESSIV";
1da177e4 189 kfree(salt);
d1806f6a 190 return PTR_ERR(essiv_tfm);
1da177e4 191 }
d1806f6a
HX
192 if (crypto_cipher_blocksize(essiv_tfm) !=
193 crypto_blkcipher_ivsize(cc->tfm)) {
72d94861 194 ti->error = "Block size of ESSIV cipher does "
d469f841 195 "not match IV size of block cipher";
d1806f6a 196 crypto_free_cipher(essiv_tfm);
1da177e4
LT
197 kfree(salt);
198 return -EINVAL;
199 }
d1806f6a
HX
200 err = crypto_cipher_setkey(essiv_tfm, salt, saltsize);
201 if (err) {
72d94861 202 ti->error = "Failed to set key for ESSIV cipher";
d1806f6a 203 crypto_free_cipher(essiv_tfm);
1da177e4 204 kfree(salt);
d1806f6a 205 return err;
1da177e4
LT
206 }
207 kfree(salt);
208
79066ad3 209 cc->iv_gen_private.essiv_tfm = essiv_tfm;
1da177e4
LT
210 return 0;
211}
212
213static void crypt_iv_essiv_dtr(struct crypt_config *cc)
214{
79066ad3
HX
215 crypto_free_cipher(cc->iv_gen_private.essiv_tfm);
216 cc->iv_gen_private.essiv_tfm = NULL;
1da177e4
LT
217}
218
219static int crypt_iv_essiv_gen(struct crypt_config *cc, u8 *iv, sector_t sector)
220{
1da177e4
LT
221 memset(iv, 0, cc->iv_size);
222 *(u64 *)iv = cpu_to_le64(sector);
79066ad3 223 crypto_cipher_encrypt_one(cc->iv_gen_private.essiv_tfm, iv, iv);
1da177e4
LT
224 return 0;
225}
226
48527fa7
RS
227static int crypt_iv_benbi_ctr(struct crypt_config *cc, struct dm_target *ti,
228 const char *opts)
229{
230 unsigned int bs = crypto_blkcipher_blocksize(cc->tfm);
f0d1b0b3 231 int log = ilog2(bs);
48527fa7
RS
232
233 /* we need to calculate how far we must shift the sector count
234 * to get the cipher block count, we use this shift in _gen */
235
236 if (1 << log != bs) {
237 ti->error = "cypher blocksize is not a power of 2";
238 return -EINVAL;
239 }
240
241 if (log > 9) {
242 ti->error = "cypher blocksize is > 512";
243 return -EINVAL;
244 }
245
79066ad3 246 cc->iv_gen_private.benbi_shift = 9 - log;
48527fa7
RS
247
248 return 0;
249}
250
251static void crypt_iv_benbi_dtr(struct crypt_config *cc)
252{
48527fa7
RS
253}
254
255static int crypt_iv_benbi_gen(struct crypt_config *cc, u8 *iv, sector_t sector)
256{
79066ad3
HX
257 __be64 val;
258
48527fa7 259 memset(iv, 0, cc->iv_size - sizeof(u64)); /* rest is cleared below */
79066ad3
HX
260
261 val = cpu_to_be64(((u64)sector << cc->iv_gen_private.benbi_shift) + 1);
262 put_unaligned(val, (__be64 *)(iv + cc->iv_size - sizeof(u64)));
48527fa7 263
1da177e4
LT
264 return 0;
265}
266
46b47730
LN
267static int crypt_iv_null_gen(struct crypt_config *cc, u8 *iv, sector_t sector)
268{
269 memset(iv, 0, cc->iv_size);
270
271 return 0;
272}
273
1da177e4
LT
274static struct crypt_iv_operations crypt_iv_plain_ops = {
275 .generator = crypt_iv_plain_gen
276};
277
278static struct crypt_iv_operations crypt_iv_essiv_ops = {
279 .ctr = crypt_iv_essiv_ctr,
280 .dtr = crypt_iv_essiv_dtr,
281 .generator = crypt_iv_essiv_gen
282};
283
48527fa7
RS
284static struct crypt_iv_operations crypt_iv_benbi_ops = {
285 .ctr = crypt_iv_benbi_ctr,
286 .dtr = crypt_iv_benbi_dtr,
287 .generator = crypt_iv_benbi_gen
288};
1da177e4 289
46b47730
LN
290static struct crypt_iv_operations crypt_iv_null_ops = {
291 .generator = crypt_iv_null_gen
292};
293
858119e1 294static int
1da177e4
LT
295crypt_convert_scatterlist(struct crypt_config *cc, struct scatterlist *out,
296 struct scatterlist *in, unsigned int length,
297 int write, sector_t sector)
298{
45789328 299 u8 iv[cc->iv_size] __attribute__ ((aligned(__alignof__(u64))));
d1806f6a
HX
300 struct blkcipher_desc desc = {
301 .tfm = cc->tfm,
302 .info = iv,
303 .flags = CRYPTO_TFM_REQ_MAY_SLEEP,
304 };
1da177e4
LT
305 int r;
306
307 if (cc->iv_gen_ops) {
308 r = cc->iv_gen_ops->generator(cc, iv, sector);
309 if (r < 0)
310 return r;
311
312 if (write)
d1806f6a 313 r = crypto_blkcipher_encrypt_iv(&desc, out, in, length);
1da177e4 314 else
d1806f6a 315 r = crypto_blkcipher_decrypt_iv(&desc, out, in, length);
1da177e4
LT
316 } else {
317 if (write)
d1806f6a 318 r = crypto_blkcipher_encrypt(&desc, out, in, length);
1da177e4 319 else
d1806f6a 320 r = crypto_blkcipher_decrypt(&desc, out, in, length);
1da177e4
LT
321 }
322
323 return r;
324}
325
d469f841
MB
326static void crypt_convert_init(struct crypt_config *cc,
327 struct convert_context *ctx,
328 struct bio *bio_out, struct bio *bio_in,
fcd369da 329 sector_t sector)
1da177e4
LT
330{
331 ctx->bio_in = bio_in;
332 ctx->bio_out = bio_out;
333 ctx->offset_in = 0;
334 ctx->offset_out = 0;
335 ctx->idx_in = bio_in ? bio_in->bi_idx : 0;
336 ctx->idx_out = bio_out ? bio_out->bi_idx : 0;
337 ctx->sector = sector + cc->iv_offset;
1da177e4
LT
338}
339
340/*
341 * Encrypt / decrypt data from one bio to another one (can be the same one)
342 */
343static int crypt_convert(struct crypt_config *cc,
d469f841 344 struct convert_context *ctx)
1da177e4
LT
345{
346 int r = 0;
347
348 while(ctx->idx_in < ctx->bio_in->bi_vcnt &&
349 ctx->idx_out < ctx->bio_out->bi_vcnt) {
350 struct bio_vec *bv_in = bio_iovec_idx(ctx->bio_in, ctx->idx_in);
351 struct bio_vec *bv_out = bio_iovec_idx(ctx->bio_out, ctx->idx_out);
45711f1a
JA
352 struct scatterlist sg_in, sg_out;
353
354 sg_init_table(&sg_in, 1);
642f1490 355 sg_set_page(&sg_in, bv_in->bv_page, 1 << SECTOR_SHIFT, bv_in->bv_offset + ctx->offset_in);
45711f1a
JA
356
357 sg_init_table(&sg_out, 1);
642f1490 358 sg_set_page(&sg_out, bv_out->bv_page, 1 << SECTOR_SHIFT, bv_out->bv_offset + ctx->offset_out);
1da177e4
LT
359
360 ctx->offset_in += sg_in.length;
361 if (ctx->offset_in >= bv_in->bv_len) {
362 ctx->offset_in = 0;
363 ctx->idx_in++;
364 }
365
366 ctx->offset_out += sg_out.length;
367 if (ctx->offset_out >= bv_out->bv_len) {
368 ctx->offset_out = 0;
369 ctx->idx_out++;
370 }
371
372 r = crypt_convert_scatterlist(cc, &sg_out, &sg_in, sg_in.length,
fcd369da 373 bio_data_dir(ctx->bio_in) == WRITE, ctx->sector);
1da177e4
LT
374 if (r < 0)
375 break;
376
377 ctx->sector++;
378 }
379
380 return r;
381}
382
d469f841
MB
383static void dm_crypt_bio_destructor(struct bio *bio)
384{
028867ac 385 struct dm_crypt_io *io = bio->bi_private;
6a24c718
MB
386 struct crypt_config *cc = io->target->private;
387
388 bio_free(bio, cc->bs);
d469f841 389}
6a24c718 390
1da177e4
LT
391/*
392 * Generate a new unfragmented bio with the given size
393 * This should never violate the device limitations
394 * May return a smaller bio when running out of pages
395 */
028867ac 396static struct bio *crypt_alloc_buffer(struct dm_crypt_io *io, unsigned size)
1da177e4 397{
027581f3 398 struct crypt_config *cc = io->target->private;
8b004457 399 struct bio *clone;
1da177e4 400 unsigned int nr_iovecs = (size + PAGE_SIZE - 1) >> PAGE_SHIFT;
b4e3ca1a 401 gfp_t gfp_mask = GFP_NOIO | __GFP_HIGHMEM;
91e10625
MB
402 unsigned i, len;
403 struct page *page;
1da177e4 404
2f9941b6 405 clone = bio_alloc_bioset(GFP_NOIO, nr_iovecs, cc->bs);
8b004457 406 if (!clone)
1da177e4 407 return NULL;
1da177e4 408
027581f3 409 clone_init(io, clone);
6a24c718 410
f97380bc 411 for (i = 0; i < nr_iovecs; i++) {
91e10625
MB
412 page = mempool_alloc(cc->page_pool, gfp_mask);
413 if (!page)
1da177e4
LT
414 break;
415
416 /*
417 * if additional pages cannot be allocated without waiting,
418 * return a partially allocated bio, the caller will then try
419 * to allocate additional bios while submitting this partial bio
420 */
f97380bc 421 if (i == (MIN_BIO_PAGES - 1))
1da177e4
LT
422 gfp_mask = (gfp_mask | __GFP_NOWARN) & ~__GFP_WAIT;
423
91e10625
MB
424 len = (size > PAGE_SIZE) ? PAGE_SIZE : size;
425
426 if (!bio_add_page(clone, page, len, 0)) {
427 mempool_free(page, cc->page_pool);
428 break;
429 }
1da177e4 430
91e10625 431 size -= len;
1da177e4
LT
432 }
433
8b004457
MB
434 if (!clone->bi_size) {
435 bio_put(clone);
1da177e4
LT
436 return NULL;
437 }
438
8b004457 439 return clone;
1da177e4
LT
440}
441
644bd2f0 442static void crypt_free_buffer_pages(struct crypt_config *cc, struct bio *clone)
1da177e4 443{
644bd2f0 444 unsigned int i;
1da177e4
LT
445 struct bio_vec *bv;
446
644bd2f0 447 for (i = 0; i < clone->bi_vcnt; i++) {
8b004457 448 bv = bio_iovec_idx(clone, i);
1da177e4
LT
449 BUG_ON(!bv->bv_page);
450 mempool_free(bv->bv_page, cc->page_pool);
451 bv->bv_page = NULL;
452 }
453}
454
455/*
456 * One of the bios was finished. Check for completion of
457 * the whole request and correctly clean up the buffer.
458 */
5742fd77 459static void crypt_dec_pending(struct dm_crypt_io *io)
1da177e4 460{
5742fd77 461 struct crypt_config *cc = io->target->private;
1da177e4
LT
462
463 if (!atomic_dec_and_test(&io->pending))
464 return;
465
6712ecf8 466 bio_endio(io->base_bio, io->error);
1da177e4
LT
467 mempool_free(io, cc->io_pool);
468}
469
470/*
cabf08e4 471 * kcryptd/kcryptd_io:
1da177e4
LT
472 *
473 * Needed because it would be very unwise to do decryption in an
23541d2d 474 * interrupt context.
cabf08e4
MB
475 *
476 * kcryptd performs the actual encryption or decryption.
477 *
478 * kcryptd_io performs the IO submission.
479 *
480 * They must be separated as otherwise the final stages could be
481 * starved by new requests which can block in the first stages due
482 * to memory allocation.
1da177e4 483 */
4e4eef64
MB
484static void kcryptd_io(struct work_struct *work);
485static void kcryptd_crypt(struct work_struct *work);
1da177e4 486
028867ac 487static void kcryptd_queue_io(struct dm_crypt_io *io)
1da177e4 488{
9934a8be
MB
489 struct crypt_config *cc = io->target->private;
490
4e4eef64 491 INIT_WORK(&io->work, kcryptd_io);
cabf08e4
MB
492 queue_work(cc->io_queue, &io->work);
493}
494
495static void kcryptd_queue_crypt(struct dm_crypt_io *io)
496{
497 struct crypt_config *cc = io->target->private;
498
4e4eef64 499 INIT_WORK(&io->work, kcryptd_crypt);
cabf08e4 500 queue_work(cc->crypt_queue, &io->work);
8b004457
MB
501}
502
6712ecf8 503static void crypt_endio(struct bio *clone, int error)
8b004457 504{
028867ac 505 struct dm_crypt_io *io = clone->bi_private;
8b004457 506 struct crypt_config *cc = io->target->private;
ee7a491e 507 unsigned rw = bio_data_dir(clone);
8b004457 508
adfe4770
MB
509 if (unlikely(!bio_flagged(clone, BIO_UPTODATE) && !error))
510 error = -EIO;
511
8b004457 512 /*
6712ecf8 513 * free the processed pages
8b004457 514 */
ee7a491e 515 if (rw == WRITE)
644bd2f0 516 crypt_free_buffer_pages(cc, clone);
8b004457
MB
517
518 bio_put(clone);
8b004457 519
ee7a491e
MB
520 if (rw == READ && !error) {
521 kcryptd_queue_crypt(io);
522 return;
523 }
5742fd77
MB
524
525 if (unlikely(error))
526 io->error = error;
527
528 crypt_dec_pending(io);
8b004457
MB
529}
530
028867ac 531static void clone_init(struct dm_crypt_io *io, struct bio *clone)
8b004457
MB
532{
533 struct crypt_config *cc = io->target->private;
534
535 clone->bi_private = io;
536 clone->bi_end_io = crypt_endio;
537 clone->bi_bdev = cc->dev->bdev;
538 clone->bi_rw = io->base_bio->bi_rw;
027581f3 539 clone->bi_destructor = dm_crypt_bio_destructor;
8b004457
MB
540}
541
4e4eef64 542static void kcryptd_io_read(struct dm_crypt_io *io)
8b004457
MB
543{
544 struct crypt_config *cc = io->target->private;
545 struct bio *base_bio = io->base_bio;
546 struct bio *clone;
93e605c2
MB
547 sector_t sector = base_bio->bi_sector - io->target->begin;
548
549 atomic_inc(&io->pending);
8b004457
MB
550
551 /*
552 * The block layer might modify the bvec array, so always
553 * copy the required bvecs because we need the original
554 * one in order to decrypt the whole bio data *afterwards*.
555 */
6a24c718 556 clone = bio_alloc_bioset(GFP_NOIO, bio_segments(base_bio), cc->bs);
93e605c2 557 if (unlikely(!clone)) {
5742fd77
MB
558 io->error = -ENOMEM;
559 crypt_dec_pending(io);
23541d2d 560 return;
93e605c2 561 }
8b004457
MB
562
563 clone_init(io, clone);
564 clone->bi_idx = 0;
565 clone->bi_vcnt = bio_segments(base_bio);
566 clone->bi_size = base_bio->bi_size;
93e605c2 567 clone->bi_sector = cc->start + sector;
8b004457
MB
568 memcpy(clone->bi_io_vec, bio_iovec(base_bio),
569 sizeof(struct bio_vec) * clone->bi_vcnt);
8b004457 570
93e605c2 571 generic_make_request(clone);
8b004457
MB
572}
573
4e4eef64
MB
574static void kcryptd_io_write(struct dm_crypt_io *io)
575{
576}
577
578static void kcryptd_crypt_write_io_submit(struct dm_crypt_io *io, int error)
579{
580}
581
582static void kcryptd_crypt_write_convert(struct dm_crypt_io *io)
8b004457
MB
583{
584 struct crypt_config *cc = io->target->private;
585 struct bio *base_bio = io->base_bio;
586 struct bio *clone;
93e605c2
MB
587 unsigned remaining = base_bio->bi_size;
588 sector_t sector = base_bio->bi_sector - io->target->begin;
8b004457 589
93e605c2 590 atomic_inc(&io->pending);
8b004457 591
fcd369da 592 crypt_convert_init(cc, &io->ctx, NULL, base_bio, sector);
8b004457 593
93e605c2
MB
594 /*
595 * The allocated buffers can be smaller than the whole bio,
596 * so repeat the whole process until all the data can be handled.
597 */
598 while (remaining) {
f97380bc 599 clone = crypt_alloc_buffer(io, remaining);
23541d2d 600 if (unlikely(!clone)) {
5742fd77
MB
601 io->error = -ENOMEM;
602 crypt_dec_pending(io);
23541d2d
MB
603 return;
604 }
93e605c2 605
53017030
MB
606 io->ctx.bio_out = clone;
607 io->ctx.idx_out = 0;
93e605c2 608
53017030 609 if (unlikely(crypt_convert(cc, &io->ctx) < 0)) {
644bd2f0 610 crypt_free_buffer_pages(cc, clone);
93e605c2 611 bio_put(clone);
5742fd77
MB
612 io->error = -EIO;
613 crypt_dec_pending(io);
23541d2d 614 return;
93e605c2
MB
615 }
616
f97380bc 617 /* crypt_convert should have filled the clone bio */
53017030 618 BUG_ON(io->ctx.idx_out < clone->bi_vcnt);
f97380bc 619
93e605c2 620 clone->bi_sector = cc->start + sector;
93e605c2
MB
621 remaining -= clone->bi_size;
622 sector += bio_sectors(clone);
623
2f9941b6
OK
624 /* Grab another reference to the io struct
625 * before we kick off the request */
23541d2d
MB
626 if (remaining)
627 atomic_inc(&io->pending);
628
93e605c2
MB
629 generic_make_request(clone);
630
98221eb7
OK
631 /* Do not reference clone after this - it
632 * may be gone already. */
633
93e605c2
MB
634 /* out of memory -> run queues */
635 if (remaining)
98221eb7 636 congestion_wait(WRITE, HZ/100);
93e605c2 637 }
8b004457
MB
638}
639
4e4eef64 640static void kcryptd_crypt_read_done(struct dm_crypt_io *io, int error)
5742fd77
MB
641{
642 if (unlikely(error < 0))
643 io->error = -EIO;
644
645 crypt_dec_pending(io);
646}
647
4e4eef64 648static void kcryptd_crypt_read_convert(struct dm_crypt_io *io)
8b004457
MB
649{
650 struct crypt_config *cc = io->target->private;
5742fd77 651 int r = 0;
1da177e4 652
53017030 653 crypt_convert_init(cc, &io->ctx, io->base_bio, io->base_bio,
fcd369da 654 io->base_bio->bi_sector - io->target->begin);
1da177e4 655
5742fd77
MB
656 r = crypt_convert(cc, &io->ctx);
657
4e4eef64 658 kcryptd_crypt_read_done(io, r);
1da177e4
LT
659}
660
4e4eef64 661static void kcryptd_io(struct work_struct *work)
1da177e4 662{
028867ac 663 struct dm_crypt_io *io = container_of(work, struct dm_crypt_io, work);
8b004457 664
cabf08e4 665 if (bio_data_dir(io->base_bio) == READ)
4e4eef64
MB
666 kcryptd_io_read(io);
667 else
668 kcryptd_io_write(io);
cabf08e4
MB
669}
670
4e4eef64 671static void kcryptd_crypt(struct work_struct *work)
cabf08e4
MB
672{
673 struct dm_crypt_io *io = container_of(work, struct dm_crypt_io, work);
674
675 if (bio_data_dir(io->base_bio) == READ)
4e4eef64 676 kcryptd_crypt_read_convert(io);
23541d2d 677 else
4e4eef64 678 kcryptd_crypt_write_convert(io);
1da177e4
LT
679}
680
681/*
682 * Decode key from its hex representation
683 */
684static int crypt_decode_key(u8 *key, char *hex, unsigned int size)
685{
686 char buffer[3];
687 char *endp;
688 unsigned int i;
689
690 buffer[2] = '\0';
691
8b004457 692 for (i = 0; i < size; i++) {
1da177e4
LT
693 buffer[0] = *hex++;
694 buffer[1] = *hex++;
695
696 key[i] = (u8)simple_strtoul(buffer, &endp, 16);
697
698 if (endp != &buffer[2])
699 return -EINVAL;
700 }
701
702 if (*hex != '\0')
703 return -EINVAL;
704
705 return 0;
706}
707
708/*
709 * Encode key into its hex representation
710 */
711static void crypt_encode_key(char *hex, u8 *key, unsigned int size)
712{
713 unsigned int i;
714
8b004457 715 for (i = 0; i < size; i++) {
1da177e4
LT
716 sprintf(hex, "%02x", *key);
717 hex += 2;
718 key++;
719 }
720}
721
e48d4bbf
MB
722static int crypt_set_key(struct crypt_config *cc, char *key)
723{
724 unsigned key_size = strlen(key) >> 1;
725
726 if (cc->key_size && cc->key_size != key_size)
727 return -EINVAL;
728
729 cc->key_size = key_size; /* initial settings */
730
731 if ((!key_size && strcmp(key, "-")) ||
d469f841 732 (key_size && crypt_decode_key(cc->key, key, key_size) < 0))
e48d4bbf
MB
733 return -EINVAL;
734
735 set_bit(DM_CRYPT_KEY_VALID, &cc->flags);
736
737 return 0;
738}
739
740static int crypt_wipe_key(struct crypt_config *cc)
741{
742 clear_bit(DM_CRYPT_KEY_VALID, &cc->flags);
743 memset(&cc->key, 0, cc->key_size * sizeof(u8));
744 return 0;
745}
746
1da177e4
LT
747/*
748 * Construct an encryption mapping:
749 * <cipher> <key> <iv_offset> <dev_path> <start>
750 */
751static int crypt_ctr(struct dm_target *ti, unsigned int argc, char **argv)
752{
753 struct crypt_config *cc;
d1806f6a 754 struct crypto_blkcipher *tfm;
1da177e4
LT
755 char *tmp;
756 char *cipher;
757 char *chainmode;
758 char *ivmode;
759 char *ivopts;
1da177e4 760 unsigned int key_size;
4ee218cd 761 unsigned long long tmpll;
1da177e4
LT
762
763 if (argc != 5) {
72d94861 764 ti->error = "Not enough arguments";
1da177e4
LT
765 return -EINVAL;
766 }
767
768 tmp = argv[0];
769 cipher = strsep(&tmp, "-");
770 chainmode = strsep(&tmp, "-");
771 ivopts = strsep(&tmp, "-");
772 ivmode = strsep(&ivopts, ":");
773
774 if (tmp)
72d94861 775 DMWARN("Unexpected additional cipher options");
1da177e4
LT
776
777 key_size = strlen(argv[1]) >> 1;
778
e48d4bbf 779 cc = kzalloc(sizeof(*cc) + key_size * sizeof(u8), GFP_KERNEL);
1da177e4
LT
780 if (cc == NULL) {
781 ti->error =
72d94861 782 "Cannot allocate transparent encryption context";
1da177e4
LT
783 return -ENOMEM;
784 }
785
e48d4bbf 786 if (crypt_set_key(cc, argv[1])) {
72d94861 787 ti->error = "Error decoding key";
636d5786 788 goto bad_cipher;
1da177e4
LT
789 }
790
791 /* Compatiblity mode for old dm-crypt cipher strings */
792 if (!chainmode || (strcmp(chainmode, "plain") == 0 && !ivmode)) {
793 chainmode = "cbc";
794 ivmode = "plain";
795 }
796
d1806f6a
HX
797 if (strcmp(chainmode, "ecb") && !ivmode) {
798 ti->error = "This chaining mode requires an IV mechanism";
636d5786 799 goto bad_cipher;
1da177e4
LT
800 }
801
d469f841
MB
802 if (snprintf(cc->cipher, CRYPTO_MAX_ALG_NAME, "%s(%s)",
803 chainmode, cipher) >= CRYPTO_MAX_ALG_NAME) {
d1806f6a 804 ti->error = "Chain mode + cipher name is too long";
636d5786 805 goto bad_cipher;
1da177e4
LT
806 }
807
d1806f6a
HX
808 tfm = crypto_alloc_blkcipher(cc->cipher, 0, CRYPTO_ALG_ASYNC);
809 if (IS_ERR(tfm)) {
72d94861 810 ti->error = "Error allocating crypto tfm";
636d5786 811 goto bad_cipher;
1da177e4 812 }
1da177e4 813
d1806f6a
HX
814 strcpy(cc->cipher, cipher);
815 strcpy(cc->chainmode, chainmode);
1da177e4
LT
816 cc->tfm = tfm;
817
818 /*
48527fa7 819 * Choose ivmode. Valid modes: "plain", "essiv:<esshash>", "benbi".
1da177e4
LT
820 * See comments at iv code
821 */
822
823 if (ivmode == NULL)
824 cc->iv_gen_ops = NULL;
825 else if (strcmp(ivmode, "plain") == 0)
826 cc->iv_gen_ops = &crypt_iv_plain_ops;
827 else if (strcmp(ivmode, "essiv") == 0)
828 cc->iv_gen_ops = &crypt_iv_essiv_ops;
48527fa7
RS
829 else if (strcmp(ivmode, "benbi") == 0)
830 cc->iv_gen_ops = &crypt_iv_benbi_ops;
46b47730
LN
831 else if (strcmp(ivmode, "null") == 0)
832 cc->iv_gen_ops = &crypt_iv_null_ops;
1da177e4 833 else {
72d94861 834 ti->error = "Invalid IV mode";
636d5786 835 goto bad_ivmode;
1da177e4
LT
836 }
837
838 if (cc->iv_gen_ops && cc->iv_gen_ops->ctr &&
839 cc->iv_gen_ops->ctr(cc, ti, ivopts) < 0)
636d5786 840 goto bad_ivmode;
1da177e4 841
d1806f6a
HX
842 cc->iv_size = crypto_blkcipher_ivsize(tfm);
843 if (cc->iv_size)
1da177e4 844 /* at least a 64 bit sector number should fit in our buffer */
d1806f6a 845 cc->iv_size = max(cc->iv_size,
d469f841 846 (unsigned int)(sizeof(u64) / sizeof(u8)));
1da177e4 847 else {
1da177e4 848 if (cc->iv_gen_ops) {
72d94861 849 DMWARN("Selected cipher does not support IVs");
1da177e4
LT
850 if (cc->iv_gen_ops->dtr)
851 cc->iv_gen_ops->dtr(cc);
852 cc->iv_gen_ops = NULL;
853 }
854 }
855
93d2341c 856 cc->io_pool = mempool_create_slab_pool(MIN_IOS, _crypt_io_pool);
1da177e4 857 if (!cc->io_pool) {
72d94861 858 ti->error = "Cannot allocate crypt io mempool";
636d5786 859 goto bad_slab_pool;
1da177e4
LT
860 }
861
a19b27ce 862 cc->page_pool = mempool_create_page_pool(MIN_POOL_PAGES, 0);
1da177e4 863 if (!cc->page_pool) {
72d94861 864 ti->error = "Cannot allocate page mempool";
636d5786 865 goto bad_page_pool;
1da177e4
LT
866 }
867
5972511b 868 cc->bs = bioset_create(MIN_IOS, MIN_IOS);
6a24c718
MB
869 if (!cc->bs) {
870 ti->error = "Cannot allocate crypt bioset";
871 goto bad_bs;
872 }
873
d1806f6a 874 if (crypto_blkcipher_setkey(tfm, cc->key, key_size) < 0) {
72d94861 875 ti->error = "Error setting key";
636d5786 876 goto bad_device;
1da177e4
LT
877 }
878
4ee218cd 879 if (sscanf(argv[2], "%llu", &tmpll) != 1) {
72d94861 880 ti->error = "Invalid iv_offset sector";
636d5786 881 goto bad_device;
1da177e4 882 }
4ee218cd 883 cc->iv_offset = tmpll;
1da177e4 884
4ee218cd 885 if (sscanf(argv[4], "%llu", &tmpll) != 1) {
72d94861 886 ti->error = "Invalid device sector";
636d5786 887 goto bad_device;
1da177e4 888 }
4ee218cd 889 cc->start = tmpll;
1da177e4
LT
890
891 if (dm_get_device(ti, argv[3], cc->start, ti->len,
d469f841 892 dm_table_get_mode(ti->table), &cc->dev)) {
72d94861 893 ti->error = "Device lookup failed";
636d5786 894 goto bad_device;
1da177e4
LT
895 }
896
897 if (ivmode && cc->iv_gen_ops) {
898 if (ivopts)
899 *(ivopts - 1) = ':';
900 cc->iv_mode = kmalloc(strlen(ivmode) + 1, GFP_KERNEL);
901 if (!cc->iv_mode) {
72d94861 902 ti->error = "Error kmallocing iv_mode string";
636d5786 903 goto bad_ivmode_string;
1da177e4
LT
904 }
905 strcpy(cc->iv_mode, ivmode);
906 } else
907 cc->iv_mode = NULL;
908
cabf08e4
MB
909 cc->io_queue = create_singlethread_workqueue("kcryptd_io");
910 if (!cc->io_queue) {
911 ti->error = "Couldn't create kcryptd io queue";
912 goto bad_io_queue;
913 }
914
915 cc->crypt_queue = create_singlethread_workqueue("kcryptd");
916 if (!cc->crypt_queue) {
9934a8be 917 ti->error = "Couldn't create kcryptd queue";
cabf08e4 918 goto bad_crypt_queue;
9934a8be
MB
919 }
920
1da177e4
LT
921 ti->private = cc;
922 return 0;
923
cabf08e4
MB
924bad_crypt_queue:
925 destroy_workqueue(cc->io_queue);
926bad_io_queue:
9934a8be 927 kfree(cc->iv_mode);
636d5786 928bad_ivmode_string:
55b42c5a 929 dm_put_device(ti, cc->dev);
636d5786 930bad_device:
6a24c718
MB
931 bioset_free(cc->bs);
932bad_bs:
1da177e4 933 mempool_destroy(cc->page_pool);
636d5786 934bad_page_pool:
1da177e4 935 mempool_destroy(cc->io_pool);
636d5786 936bad_slab_pool:
1da177e4
LT
937 if (cc->iv_gen_ops && cc->iv_gen_ops->dtr)
938 cc->iv_gen_ops->dtr(cc);
636d5786 939bad_ivmode:
d1806f6a 940 crypto_free_blkcipher(tfm);
636d5786 941bad_cipher:
9d3520a3
SR
942 /* Must zero key material before freeing */
943 memset(cc, 0, sizeof(*cc) + cc->key_size * sizeof(u8));
1da177e4
LT
944 kfree(cc);
945 return -EINVAL;
946}
947
948static void crypt_dtr(struct dm_target *ti)
949{
950 struct crypt_config *cc = (struct crypt_config *) ti->private;
951
cabf08e4
MB
952 destroy_workqueue(cc->io_queue);
953 destroy_workqueue(cc->crypt_queue);
80b16c19 954
6a24c718 955 bioset_free(cc->bs);
1da177e4
LT
956 mempool_destroy(cc->page_pool);
957 mempool_destroy(cc->io_pool);
958
990a8baf 959 kfree(cc->iv_mode);
1da177e4
LT
960 if (cc->iv_gen_ops && cc->iv_gen_ops->dtr)
961 cc->iv_gen_ops->dtr(cc);
d1806f6a 962 crypto_free_blkcipher(cc->tfm);
1da177e4 963 dm_put_device(ti, cc->dev);
9d3520a3
SR
964
965 /* Must zero key material before freeing */
966 memset(cc, 0, sizeof(*cc) + cc->key_size * sizeof(u8));
1da177e4
LT
967 kfree(cc);
968}
969
1da177e4
LT
970static int crypt_map(struct dm_target *ti, struct bio *bio,
971 union map_info *map_context)
972{
8b004457 973 struct crypt_config *cc = ti->private;
028867ac 974 struct dm_crypt_io *io;
1da177e4 975
e48d4bbf 976 io = mempool_alloc(cc->io_pool, GFP_NOIO);
1da177e4 977 io->target = ti;
8b004457 978 io->base_bio = bio;
cabf08e4 979 io->error = 0;
93e605c2 980 atomic_set(&io->pending, 0);
cabf08e4
MB
981
982 if (bio_data_dir(io->base_bio) == READ)
983 kcryptd_queue_io(io);
984 else
985 kcryptd_queue_crypt(io);
1da177e4 986
d2a7ad29 987 return DM_MAPIO_SUBMITTED;
1da177e4
LT
988}
989
990static int crypt_status(struct dm_target *ti, status_type_t type,
991 char *result, unsigned int maxlen)
992{
993 struct crypt_config *cc = (struct crypt_config *) ti->private;
1da177e4
LT
994 unsigned int sz = 0;
995
996 switch (type) {
997 case STATUSTYPE_INFO:
998 result[0] = '\0';
999 break;
1000
1001 case STATUSTYPE_TABLE:
1da177e4 1002 if (cc->iv_mode)
37af6560
CS
1003 DMEMIT("%s-%s-%s ", cc->cipher, cc->chainmode,
1004 cc->iv_mode);
1da177e4 1005 else
37af6560 1006 DMEMIT("%s-%s ", cc->cipher, cc->chainmode);
1da177e4
LT
1007
1008 if (cc->key_size > 0) {
1009 if ((maxlen - sz) < ((cc->key_size << 1) + 1))
1010 return -ENOMEM;
1011
1012 crypt_encode_key(result + sz, cc->key, cc->key_size);
1013 sz += cc->key_size << 1;
1014 } else {
1015 if (sz >= maxlen)
1016 return -ENOMEM;
1017 result[sz++] = '-';
1018 }
1019
4ee218cd
AM
1020 DMEMIT(" %llu %s %llu", (unsigned long long)cc->iv_offset,
1021 cc->dev->name, (unsigned long long)cc->start);
1da177e4
LT
1022 break;
1023 }
1024 return 0;
1025}
1026
e48d4bbf
MB
1027static void crypt_postsuspend(struct dm_target *ti)
1028{
1029 struct crypt_config *cc = ti->private;
1030
1031 set_bit(DM_CRYPT_SUSPENDED, &cc->flags);
1032}
1033
1034static int crypt_preresume(struct dm_target *ti)
1035{
1036 struct crypt_config *cc = ti->private;
1037
1038 if (!test_bit(DM_CRYPT_KEY_VALID, &cc->flags)) {
1039 DMERR("aborting resume - crypt key is not set.");
1040 return -EAGAIN;
1041 }
1042
1043 return 0;
1044}
1045
1046static void crypt_resume(struct dm_target *ti)
1047{
1048 struct crypt_config *cc = ti->private;
1049
1050 clear_bit(DM_CRYPT_SUSPENDED, &cc->flags);
1051}
1052
1053/* Message interface
1054 * key set <key>
1055 * key wipe
1056 */
1057static int crypt_message(struct dm_target *ti, unsigned argc, char **argv)
1058{
1059 struct crypt_config *cc = ti->private;
1060
1061 if (argc < 2)
1062 goto error;
1063
1064 if (!strnicmp(argv[0], MESG_STR("key"))) {
1065 if (!test_bit(DM_CRYPT_SUSPENDED, &cc->flags)) {
1066 DMWARN("not suspended during key manipulation.");
1067 return -EINVAL;
1068 }
1069 if (argc == 3 && !strnicmp(argv[1], MESG_STR("set")))
1070 return crypt_set_key(cc, argv[2]);
1071 if (argc == 2 && !strnicmp(argv[1], MESG_STR("wipe")))
1072 return crypt_wipe_key(cc);
1073 }
1074
1075error:
1076 DMWARN("unrecognised message received.");
1077 return -EINVAL;
1078}
1079
1da177e4
LT
1080static struct target_type crypt_target = {
1081 .name = "crypt",
46b47730 1082 .version= {1, 5, 0},
1da177e4
LT
1083 .module = THIS_MODULE,
1084 .ctr = crypt_ctr,
1085 .dtr = crypt_dtr,
1086 .map = crypt_map,
1087 .status = crypt_status,
e48d4bbf
MB
1088 .postsuspend = crypt_postsuspend,
1089 .preresume = crypt_preresume,
1090 .resume = crypt_resume,
1091 .message = crypt_message,
1da177e4
LT
1092};
1093
1094static int __init dm_crypt_init(void)
1095{
1096 int r;
1097
028867ac 1098 _crypt_io_pool = KMEM_CACHE(dm_crypt_io, 0);
1da177e4
LT
1099 if (!_crypt_io_pool)
1100 return -ENOMEM;
1101
1da177e4
LT
1102 r = dm_register_target(&crypt_target);
1103 if (r < 0) {
72d94861 1104 DMERR("register failed %d", r);
9934a8be 1105 kmem_cache_destroy(_crypt_io_pool);
1da177e4
LT
1106 }
1107
1da177e4
LT
1108 return r;
1109}
1110
1111static void __exit dm_crypt_exit(void)
1112{
1113 int r = dm_unregister_target(&crypt_target);
1114
1115 if (r < 0)
72d94861 1116 DMERR("unregister failed %d", r);
1da177e4 1117
1da177e4
LT
1118 kmem_cache_destroy(_crypt_io_pool);
1119}
1120
1121module_init(dm_crypt_init);
1122module_exit(dm_crypt_exit);
1123
1124MODULE_AUTHOR("Christophe Saout <christophe@saout.de>");
1125MODULE_DESCRIPTION(DM_NAME " target for transparent encryption / decryption");
1126MODULE_LICENSE("GPL");