Merge tag 'pm-6.16-rc5' of git://git.kernel.org/pub/scm/linux/kernel/git/rafael/linux-pm
[linux-block.git] / fs / crypto / crypto.c
CommitLineData
09c434b8 1// SPDX-License-Identifier: GPL-2.0-only
0b81d077
JK
2/*
3 * This contains encryption functions for per-file encryption.
4 *
5 * Copyright (C) 2015, Google, Inc.
6 * Copyright (C) 2015, Motorola Mobility
7 *
8 * Written by Michael Halcrow, 2014.
9 *
10 * Filename encryption additions
11 * Uday Savagaonkar, 2014
12 * Encryption policy handling additions
13 * Ildar Muslukhov, 2014
14 * Add fscrypt_pullback_bio_page()
15 * Jaegeuk Kim, 2015.
16 *
17 * This has not yet undergone a rigorous security audit.
18 *
19 * The usage of AES-XTS should conform to recommendations in NIST
20 * Special Publication 800-38E and IEEE P1619/D16.
21 */
22
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23#include <linux/pagemap.h>
24#include <linux/mempool.h>
25#include <linux/module.h>
26#include <linux/scatterlist.h>
27#include <linux/ratelimit.h>
a575784c 28#include <crypto/skcipher.h>
cc4e0df0 29#include "fscrypt_private.h"
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30
31static unsigned int num_prealloc_crypto_pages = 32;
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JK
32
33module_param(num_prealloc_crypto_pages, uint, 0444);
34MODULE_PARM_DESC(num_prealloc_crypto_pages,
35 "Number of crypto pages to preallocate");
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36
37static mempool_t *fscrypt_bounce_page_pool = NULL;
38
0cb8dae4 39static struct workqueue_struct *fscrypt_read_workqueue;
0b81d077
JK
40static DEFINE_MUTEX(fscrypt_init_mutex);
41
3e7807d5 42struct kmem_cache *fscrypt_inode_info_cachep;
0b81d077 43
0cb8dae4
EB
44void fscrypt_enqueue_decrypt_work(struct work_struct *work)
45{
46 queue_work(fscrypt_read_workqueue, work);
47}
48EXPORT_SYMBOL(fscrypt_enqueue_decrypt_work);
49
d2d0727b
EB
50struct page *fscrypt_alloc_bounce_page(gfp_t gfp_flags)
51{
40e13e18
EB
52 if (WARN_ON_ONCE(!fscrypt_bounce_page_pool)) {
53 /*
54 * Oops, the filesystem called a function that uses the bounce
55 * page pool, but it didn't set needs_bounce_pages.
56 */
57 return NULL;
58 }
d2d0727b
EB
59 return mempool_alloc(fscrypt_bounce_page_pool, gfp_flags);
60}
61
62/**
63 * fscrypt_free_bounce_page() - free a ciphertext bounce page
d2fe9754 64 * @bounce_page: the bounce page to free, or NULL
d2d0727b 65 *
53bc1d85
EB
66 * Free a bounce page that was allocated by fscrypt_encrypt_pagecache_blocks(),
67 * or by fscrypt_alloc_bounce_page() directly.
d2d0727b
EB
68 */
69void fscrypt_free_bounce_page(struct page *bounce_page)
70{
71 if (!bounce_page)
72 return;
73 set_page_private(bounce_page, (unsigned long)NULL);
74 ClearPagePrivate(bounce_page);
75 mempool_free(bounce_page, fscrypt_bounce_page_pool);
76}
77EXPORT_SYMBOL(fscrypt_free_bounce_page);
78
c6c89783 79/*
5b118884
EB
80 * Generate the IV for the given data unit index within the given file.
81 * For filenames encryption, index == 0.
c6c89783
EB
82 *
83 * Keep this in sync with fscrypt_limit_io_blocks(). fscrypt_limit_io_blocks()
84 * needs to know about any IV generation methods where the low bits of IV don't
5b118884 85 * simply contain the data unit index (e.g., IV_INO_LBLK_32).
c6c89783 86 */
5b118884 87void fscrypt_generate_iv(union fscrypt_iv *iv, u64 index,
3e7807d5 88 const struct fscrypt_inode_info *ci)
8094c3ce 89{
b103fb76
EB
90 u8 flags = fscrypt_policy_flags(&ci->ci_policy);
91
8094c3ce 92 memset(iv, 0, ci->ci_mode->ivsize);
8094c3ce 93
b103fb76 94 if (flags & FSCRYPT_POLICY_FLAG_IV_INO_LBLK_64) {
5b118884 95 WARN_ON_ONCE(index > U32_MAX);
e3b1078b 96 WARN_ON_ONCE(ci->ci_inode->i_ino > U32_MAX);
5b118884 97 index |= (u64)ci->ci_inode->i_ino << 32;
e3b1078b 98 } else if (flags & FSCRYPT_POLICY_FLAG_IV_INO_LBLK_32) {
5b118884
EB
99 WARN_ON_ONCE(index > U32_MAX);
100 index = (u32)(ci->ci_hashed_ino + index);
b103fb76 101 } else if (flags & FSCRYPT_POLICY_FLAG_DIRECT_KEY) {
1d6217a4 102 memcpy(iv->nonce, ci->ci_nonce, FSCRYPT_FILE_NONCE_SIZE);
b103fb76 103 }
5b118884 104 iv->index = cpu_to_le64(index);
8094c3ce
EB
105}
106
5b118884 107/* Encrypt or decrypt a single "data unit" of file contents. */
3e7807d5 108int fscrypt_crypt_data_unit(const struct fscrypt_inode_info *ci,
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109 fscrypt_direction_t rw, u64 index,
110 struct page *src_page, struct page *dest_page,
111 unsigned int len, unsigned int offs,
112 gfp_t gfp_flags)
0b81d077 113{
8094c3ce 114 union fscrypt_iv iv;
d407574e 115 struct skcipher_request *req = NULL;
d0082e1a 116 DECLARE_CRYPTO_WAIT(wait);
0b81d077 117 struct scatterlist dst, src;
5fee3609 118 struct crypto_skcipher *tfm = ci->ci_enc_key.tfm;
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119 int res = 0;
120
eeacfdc6
EB
121 if (WARN_ON_ONCE(len <= 0))
122 return -EINVAL;
63cec138 123 if (WARN_ON_ONCE(len % FSCRYPT_CONTENTS_ALIGNMENT != 0))
eeacfdc6 124 return -EINVAL;
1400451f 125
5b118884 126 fscrypt_generate_iv(&iv, index, ci);
b7e7cf7a 127
b32e4482 128 req = skcipher_request_alloc(tfm, gfp_flags);
c90fd775 129 if (!req)
0b81d077 130 return -ENOMEM;
0b81d077 131
d407574e 132 skcipher_request_set_callback(
0b81d077 133 req, CRYPTO_TFM_REQ_MAY_BACKLOG | CRYPTO_TFM_REQ_MAY_SLEEP,
d0082e1a 134 crypto_req_done, &wait);
0b81d077 135
0b81d077 136 sg_init_table(&dst, 1);
1400451f 137 sg_set_page(&dst, dest_page, len, offs);
0b81d077 138 sg_init_table(&src, 1);
1400451f 139 sg_set_page(&src, src_page, len, offs);
b7e7cf7a 140 skcipher_request_set_crypt(req, &src, &dst, len, &iv);
0b81d077 141 if (rw == FS_DECRYPT)
d0082e1a 142 res = crypto_wait_req(crypto_skcipher_decrypt(req), &wait);
0b81d077 143 else
d0082e1a 144 res = crypto_wait_req(crypto_skcipher_encrypt(req), &wait);
d407574e 145 skcipher_request_free(req);
0b81d077 146 if (res) {
5b118884
EB
147 fscrypt_err(ci->ci_inode,
148 "%scryption failed for data unit %llu: %d",
149 (rw == FS_DECRYPT ? "De" : "En"), index, res);
0b81d077
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150 return res;
151 }
152 return 0;
153}
154
0b81d077 155/**
59b59a94
MWO
156 * fscrypt_encrypt_pagecache_blocks() - Encrypt data from a pagecache folio
157 * @folio: the locked pagecache folio containing the data to encrypt
5b118884
EB
158 * @len: size of the data to encrypt, in bytes
159 * @offs: offset within @page of the data to encrypt, in bytes
160 * @gfp_flags: memory allocation flags; see details below
53bc1d85 161 *
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EB
162 * This allocates a new bounce page and encrypts the given data into it. The
163 * length and offset of the data must be aligned to the file's crypto data unit
164 * size. Alignment to the filesystem block size fulfills this requirement, as
165 * the filesystem block size is always a multiple of the data unit size.
166 *
167 * In the bounce page, the ciphertext data will be located at the same offset at
168 * which the plaintext data was located in the source page. Any other parts of
169 * the bounce page will be left uninitialized.
0b81d077 170 *
53bc1d85 171 * This is for use by the filesystem's ->writepages() method.
0b81d077 172 *
2d8f7f11
EB
173 * The bounce page allocation is mempool-backed, so it will always succeed when
174 * @gfp_flags includes __GFP_DIRECT_RECLAIM, e.g. when it's GFP_NOFS. However,
175 * only the first page of each bio can be allocated this way. To prevent
176 * deadlocks, for any additional pages a mask like GFP_NOWAIT must be used.
177 *
53bc1d85 178 * Return: the new encrypted bounce page on success; an ERR_PTR() on failure
0b81d077 179 */
59b59a94
MWO
180struct page *fscrypt_encrypt_pagecache_blocks(struct folio *folio,
181 size_t len, size_t offs, gfp_t gfp_flags)
0b81d077 182{
59b59a94 183 const struct inode *inode = folio->mapping->host;
3e7807d5 184 const struct fscrypt_inode_info *ci = inode->i_crypt_info;
5b118884
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185 const unsigned int du_bits = ci->ci_data_unit_bits;
186 const unsigned int du_size = 1U << du_bits;
03569f2f 187 struct page *ciphertext_page;
59b59a94 188 u64 index = ((u64)folio->index << (PAGE_SHIFT - du_bits)) +
5b118884 189 (offs >> du_bits);
53bc1d85 190 unsigned int i;
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JK
191 int err;
192
59b59a94
MWO
193 VM_BUG_ON_FOLIO(folio_test_large(folio), folio);
194 if (WARN_ON_ONCE(!folio_test_locked(folio)))
eeacfdc6 195 return ERR_PTR(-EINVAL);
bd7b8290 196
5b118884 197 if (WARN_ON_ONCE(len <= 0 || !IS_ALIGNED(len | offs, du_size)))
53bc1d85
EB
198 return ERR_PTR(-EINVAL);
199
d2d0727b
EB
200 ciphertext_page = fscrypt_alloc_bounce_page(gfp_flags);
201 if (!ciphertext_page)
202 return ERR_PTR(-ENOMEM);
0b81d077 203
5b118884
EB
204 for (i = offs; i < offs + len; i += du_size, index++) {
205 err = fscrypt_crypt_data_unit(ci, FS_ENCRYPT, index,
59b59a94 206 &folio->page, ciphertext_page,
5b118884 207 du_size, i, gfp_flags);
53bc1d85
EB
208 if (err) {
209 fscrypt_free_bounce_page(ciphertext_page);
210 return ERR_PTR(err);
211 }
0b81d077 212 }
9e532772 213 SetPagePrivate(ciphertext_page);
59b59a94 214 set_page_private(ciphertext_page, (unsigned long)folio);
0b81d077
JK
215 return ciphertext_page;
216}
53bc1d85 217EXPORT_SYMBOL(fscrypt_encrypt_pagecache_blocks);
0b81d077 218
03569f2f
EB
219/**
220 * fscrypt_encrypt_block_inplace() - Encrypt a filesystem block in-place
221 * @inode: The inode to which this block belongs
222 * @page: The page containing the block to encrypt
63cec138
EB
223 * @len: Size of block to encrypt. This must be a multiple of
224 * FSCRYPT_CONTENTS_ALIGNMENT.
03569f2f
EB
225 * @offs: Byte offset within @page at which the block to encrypt begins
226 * @lblk_num: Filesystem logical block number of the block, i.e. the 0-based
227 * number of the block within the file
228 * @gfp_flags: Memory allocation flags
229 *
230 * Encrypt a possibly-compressed filesystem block that is located in an
231 * arbitrary page, not necessarily in the original pagecache page. The @inode
232 * and @lblk_num must be specified, as they can't be determined from @page.
233 *
5b118884
EB
234 * This is not compatible with fscrypt_operations::supports_subblock_data_units.
235 *
03569f2f
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236 * Return: 0 on success; -errno on failure
237 */
238int fscrypt_encrypt_block_inplace(const struct inode *inode, struct page *page,
239 unsigned int len, unsigned int offs,
240 u64 lblk_num, gfp_t gfp_flags)
241{
5b118884
EB
242 if (WARN_ON_ONCE(inode->i_sb->s_cop->supports_subblock_data_units))
243 return -EOPNOTSUPP;
244 return fscrypt_crypt_data_unit(inode->i_crypt_info, FS_ENCRYPT,
245 lblk_num, page, page, len, offs,
246 gfp_flags);
03569f2f
EB
247}
248EXPORT_SYMBOL(fscrypt_encrypt_block_inplace);
249
0b81d077 250/**
5b118884
EB
251 * fscrypt_decrypt_pagecache_blocks() - Decrypt data from a pagecache folio
252 * @folio: the pagecache folio containing the data to decrypt
253 * @len: size of the data to decrypt, in bytes
254 * @offs: offset within @folio of the data to decrypt, in bytes
0b81d077 255 *
5b118884
EB
256 * Decrypt data that has just been read from an encrypted file. The data must
257 * be located in a pagecache folio that is still locked and not yet uptodate.
258 * The length and offset of the data must be aligned to the file's crypto data
259 * unit size. Alignment to the filesystem block size fulfills this requirement,
260 * as the filesystem block size is always a multiple of the data unit size.
0b81d077 261 *
aa8bc1ac 262 * Return: 0 on success; -errno on failure
0b81d077 263 */
51e4e315
EB
264int fscrypt_decrypt_pagecache_blocks(struct folio *folio, size_t len,
265 size_t offs)
0b81d077 266{
51e4e315 267 const struct inode *inode = folio->mapping->host;
3e7807d5 268 const struct fscrypt_inode_info *ci = inode->i_crypt_info;
5b118884
EB
269 const unsigned int du_bits = ci->ci_data_unit_bits;
270 const unsigned int du_size = 1U << du_bits;
271 u64 index = ((u64)folio->index << (PAGE_SHIFT - du_bits)) +
272 (offs >> du_bits);
51e4e315 273 size_t i;
aa8bc1ac
EB
274 int err;
275
51e4e315 276 if (WARN_ON_ONCE(!folio_test_locked(folio)))
eeacfdc6 277 return -EINVAL;
bd7b8290 278
5b118884 279 if (WARN_ON_ONCE(len <= 0 || !IS_ALIGNED(len | offs, du_size)))
aa8bc1ac
EB
280 return -EINVAL;
281
5b118884 282 for (i = offs; i < offs + len; i += du_size, index++) {
51e4e315
EB
283 struct page *page = folio_page(folio, i >> PAGE_SHIFT);
284
5b118884
EB
285 err = fscrypt_crypt_data_unit(ci, FS_DECRYPT, index, page,
286 page, du_size, i & ~PAGE_MASK,
287 GFP_NOFS);
aa8bc1ac
EB
288 if (err)
289 return err;
290 }
291 return 0;
0b81d077 292}
aa8bc1ac 293EXPORT_SYMBOL(fscrypt_decrypt_pagecache_blocks);
0b81d077 294
41adbcb7
EB
295/**
296 * fscrypt_decrypt_block_inplace() - Decrypt a filesystem block in-place
297 * @inode: The inode to which this block belongs
298 * @page: The page containing the block to decrypt
63cec138
EB
299 * @len: Size of block to decrypt. This must be a multiple of
300 * FSCRYPT_CONTENTS_ALIGNMENT.
41adbcb7
EB
301 * @offs: Byte offset within @page at which the block to decrypt begins
302 * @lblk_num: Filesystem logical block number of the block, i.e. the 0-based
303 * number of the block within the file
304 *
305 * Decrypt a possibly-compressed filesystem block that is located in an
306 * arbitrary page, not necessarily in the original pagecache page. The @inode
307 * and @lblk_num must be specified, as they can't be determined from @page.
308 *
5b118884
EB
309 * This is not compatible with fscrypt_operations::supports_subblock_data_units.
310 *
41adbcb7
EB
311 * Return: 0 on success; -errno on failure
312 */
313int fscrypt_decrypt_block_inplace(const struct inode *inode, struct page *page,
314 unsigned int len, unsigned int offs,
315 u64 lblk_num)
316{
5b118884
EB
317 if (WARN_ON_ONCE(inode->i_sb->s_cop->supports_subblock_data_units))
318 return -EOPNOTSUPP;
319 return fscrypt_crypt_data_unit(inode->i_crypt_info, FS_DECRYPT,
320 lblk_num, page, page, len, offs,
321 GFP_NOFS);
41adbcb7
EB
322}
323EXPORT_SYMBOL(fscrypt_decrypt_block_inplace);
324
0b81d077
JK
325/**
326 * fscrypt_initialize() - allocate major buffers for fs encryption.
83e57e47 327 * @sb: the filesystem superblock
0b81d077
JK
328 *
329 * We only call this when we start accessing encrypted files, since it
330 * results in memory getting allocated that wouldn't otherwise be used.
331 *
1565bdad 332 * Return: 0 on success; -errno on failure
0b81d077 333 */
83e57e47 334int fscrypt_initialize(struct super_block *sb)
0b81d077 335{
1565bdad 336 int err = 0;
83e57e47
EB
337 mempool_t *pool;
338
339 /* pairs with smp_store_release() below */
340 if (likely(smp_load_acquire(&fscrypt_bounce_page_pool)))
341 return 0;
0b81d077 342
a0b3bc85 343 /* No need to allocate a bounce page pool if this FS won't use it. */
40e13e18 344 if (!sb->s_cop->needs_bounce_pages)
0b81d077
JK
345 return 0;
346
347 mutex_lock(&fscrypt_init_mutex);
348 if (fscrypt_bounce_page_pool)
1565bdad 349 goto out_unlock;
0b81d077 350
1565bdad 351 err = -ENOMEM;
83e57e47
EB
352 pool = mempool_create_page_pool(num_prealloc_crypto_pages, 0);
353 if (!pool)
1565bdad 354 goto out_unlock;
83e57e47
EB
355 /* pairs with smp_load_acquire() above */
356 smp_store_release(&fscrypt_bounce_page_pool, pool);
1565bdad
EB
357 err = 0;
358out_unlock:
0b81d077 359 mutex_unlock(&fscrypt_init_mutex);
1565bdad 360 return err;
0b81d077 361}
0b81d077 362
886da8b3 363void fscrypt_msg(const struct inode *inode, const char *level,
544d08fd
EB
364 const char *fmt, ...)
365{
366 static DEFINE_RATELIMIT_STATE(rs, DEFAULT_RATELIMIT_INTERVAL,
367 DEFAULT_RATELIMIT_BURST);
368 struct va_format vaf;
369 va_list args;
370
371 if (!__ratelimit(&rs))
372 return;
373
374 va_start(args, fmt);
375 vaf.fmt = fmt;
376 vaf.va = &args;
ae9ff8ad 377 if (inode && inode->i_ino)
886da8b3
EB
378 printk("%sfscrypt (%s, inode %lu): %pV\n",
379 level, inode->i_sb->s_id, inode->i_ino, &vaf);
ae9ff8ad
EB
380 else if (inode)
381 printk("%sfscrypt (%s): %pV\n", level, inode->i_sb->s_id, &vaf);
544d08fd
EB
382 else
383 printk("%sfscrypt: %pV\n", level, &vaf);
384 va_end(args);
385}
386
0b81d077
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387/**
388 * fscrypt_init() - Set up for fs encryption.
d2fe9754
EB
389 *
390 * Return: 0 on success; -errno on failure
0b81d077
JK
391 */
392static int __init fscrypt_init(void)
393{
22d94f49
EB
394 int err = -ENOMEM;
395
36dd26e0
EB
396 /*
397 * Use an unbound workqueue to allow bios to be decrypted in parallel
398 * even when they happen to complete on the same CPU. This sacrifices
399 * locality, but it's worthwhile since decryption is CPU-intensive.
400 *
401 * Also use a high-priority workqueue to prioritize decryption work,
402 * which blocks reads from completing, over regular application tasks.
403 */
0b81d077 404 fscrypt_read_workqueue = alloc_workqueue("fscrypt_read_queue",
36dd26e0
EB
405 WQ_UNBOUND | WQ_HIGHPRI,
406 num_online_cpus());
0b81d077
JK
407 if (!fscrypt_read_workqueue)
408 goto fail;
409
3e7807d5
JB
410 fscrypt_inode_info_cachep = KMEM_CACHE(fscrypt_inode_info,
411 SLAB_RECLAIM_ACCOUNT);
412 if (!fscrypt_inode_info_cachep)
1565bdad 413 goto fail_free_queue;
0b81d077 414
22d94f49
EB
415 err = fscrypt_init_keyring();
416 if (err)
3e7807d5 417 goto fail_free_inode_info;
22d94f49 418
0b81d077
JK
419 return 0;
420
3e7807d5
JB
421fail_free_inode_info:
422 kmem_cache_destroy(fscrypt_inode_info_cachep);
0b81d077
JK
423fail_free_queue:
424 destroy_workqueue(fscrypt_read_workqueue);
425fail:
22d94f49 426 return err;
0b81d077 427}
75798f85 428late_initcall(fscrypt_init)