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KEYS: encrypted: sanitize all key material
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CommitLineData
7e70cb49
MZ
1/*
2 * Copyright (C) 2010 IBM Corporation
4e561d38
RS
3 * Copyright (C) 2010 Politecnico di Torino, Italy
4 * TORSEC group -- http://security.polito.it
7e70cb49 5 *
4e561d38 6 * Authors:
7e70cb49 7 * Mimi Zohar <zohar@us.ibm.com>
4e561d38 8 * Roberto Sassu <roberto.sassu@polito.it>
7e70cb49
MZ
9 *
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation, version 2 of the License.
13 *
d410fa4e 14 * See Documentation/security/keys-trusted-encrypted.txt
7e70cb49
MZ
15 */
16
17#include <linux/uaccess.h>
18#include <linux/module.h>
19#include <linux/init.h>
20#include <linux/slab.h>
21#include <linux/parser.h>
22#include <linux/string.h>
93ae86e7 23#include <linux/err.h>
7e70cb49
MZ
24#include <keys/user-type.h>
25#include <keys/trusted-type.h>
26#include <keys/encrypted-type.h>
27#include <linux/key-type.h>
28#include <linux/random.h>
29#include <linux/rcupdate.h>
30#include <linux/scatterlist.h>
79a73d18 31#include <linux/ctype.h>
456bee98 32#include <crypto/aes.h>
0f534e4a 33#include <crypto/algapi.h>
7e70cb49
MZ
34#include <crypto/hash.h>
35#include <crypto/sha.h>
c3917fd9 36#include <crypto/skcipher.h>
7e70cb49 37
b9703449 38#include "encrypted.h"
79a73d18 39#include "ecryptfs_format.h"
7e70cb49 40
3b1826ce
MZ
41static const char KEY_TRUSTED_PREFIX[] = "trusted:";
42static const char KEY_USER_PREFIX[] = "user:";
7e70cb49
MZ
43static const char hash_alg[] = "sha256";
44static const char hmac_alg[] = "hmac(sha256)";
45static const char blkcipher_alg[] = "cbc(aes)";
4e561d38 46static const char key_format_default[] = "default";
79a73d18 47static const char key_format_ecryptfs[] = "ecryptfs";
7e70cb49
MZ
48static unsigned int ivsize;
49static int blksize;
50
3b1826ce
MZ
51#define KEY_TRUSTED_PREFIX_LEN (sizeof (KEY_TRUSTED_PREFIX) - 1)
52#define KEY_USER_PREFIX_LEN (sizeof (KEY_USER_PREFIX) - 1)
79a73d18 53#define KEY_ECRYPTFS_DESC_LEN 16
3b1826ce
MZ
54#define HASH_SIZE SHA256_DIGEST_SIZE
55#define MAX_DATA_SIZE 4096
56#define MIN_DATA_SIZE 20
57
64d107d3 58static struct crypto_shash *hash_tfm;
7e70cb49
MZ
59
60enum {
61 Opt_err = -1, Opt_new, Opt_load, Opt_update
62};
63
4e561d38 64enum {
79a73d18 65 Opt_error = -1, Opt_default, Opt_ecryptfs
4e561d38
RS
66};
67
68static const match_table_t key_format_tokens = {
69 {Opt_default, "default"},
79a73d18 70 {Opt_ecryptfs, "ecryptfs"},
4e561d38
RS
71 {Opt_error, NULL}
72};
73
7e70cb49
MZ
74static const match_table_t key_tokens = {
75 {Opt_new, "new"},
76 {Opt_load, "load"},
77 {Opt_update, "update"},
78 {Opt_err, NULL}
79};
80
81static int aes_get_sizes(void)
82{
c3917fd9 83 struct crypto_skcipher *tfm;
7e70cb49 84
c3917fd9 85 tfm = crypto_alloc_skcipher(blkcipher_alg, 0, CRYPTO_ALG_ASYNC);
7e70cb49
MZ
86 if (IS_ERR(tfm)) {
87 pr_err("encrypted_key: failed to alloc_cipher (%ld)\n",
88 PTR_ERR(tfm));
89 return PTR_ERR(tfm);
90 }
c3917fd9
HX
91 ivsize = crypto_skcipher_ivsize(tfm);
92 blksize = crypto_skcipher_blocksize(tfm);
93 crypto_free_skcipher(tfm);
7e70cb49
MZ
94 return 0;
95}
96
79a73d18
RS
97/*
98 * valid_ecryptfs_desc - verify the description of a new/loaded encrypted key
99 *
100 * The description of a encrypted key with format 'ecryptfs' must contain
101 * exactly 16 hexadecimal characters.
102 *
103 */
104static int valid_ecryptfs_desc(const char *ecryptfs_desc)
105{
106 int i;
107
108 if (strlen(ecryptfs_desc) != KEY_ECRYPTFS_DESC_LEN) {
109 pr_err("encrypted_key: key description must be %d hexadecimal "
110 "characters long\n", KEY_ECRYPTFS_DESC_LEN);
111 return -EINVAL;
112 }
113
114 for (i = 0; i < KEY_ECRYPTFS_DESC_LEN; i++) {
115 if (!isxdigit(ecryptfs_desc[i])) {
116 pr_err("encrypted_key: key description must contain "
117 "only hexadecimal characters\n");
118 return -EINVAL;
119 }
120 }
121
122 return 0;
123}
124
7e70cb49
MZ
125/*
126 * valid_master_desc - verify the 'key-type:desc' of a new/updated master-key
127 *
08fa2aa5 128 * key-type:= "trusted:" | "user:"
7e70cb49
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129 * desc:= master-key description
130 *
131 * Verify that 'key-type' is valid and that 'desc' exists. On key update,
132 * only the master key description is permitted to change, not the key-type.
133 * The key-type remains constant.
134 *
135 * On success returns 0, otherwise -EINVAL.
136 */
137static int valid_master_desc(const char *new_desc, const char *orig_desc)
138{
794b4bc2
EB
139 int prefix_len;
140
141 if (!strncmp(new_desc, KEY_TRUSTED_PREFIX, KEY_TRUSTED_PREFIX_LEN))
142 prefix_len = KEY_TRUSTED_PREFIX_LEN;
143 else if (!strncmp(new_desc, KEY_USER_PREFIX, KEY_USER_PREFIX_LEN))
144 prefix_len = KEY_USER_PREFIX_LEN;
145 else
146 return -EINVAL;
147
148 if (!new_desc[prefix_len])
149 return -EINVAL;
150
151 if (orig_desc && strncmp(new_desc, orig_desc, prefix_len))
152 return -EINVAL;
153
7e70cb49 154 return 0;
7e70cb49
MZ
155}
156
157/*
158 * datablob_parse - parse the keyctl data
159 *
160 * datablob format:
4e561d38
RS
161 * new [<format>] <master-key name> <decrypted data length>
162 * load [<format>] <master-key name> <decrypted data length>
163 * <encrypted iv + data>
7e70cb49
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164 * update <new-master-key name>
165 *
166 * Tokenizes a copy of the keyctl data, returning a pointer to each token,
167 * which is null terminated.
168 *
169 * On success returns 0, otherwise -EINVAL.
170 */
4e561d38
RS
171static int datablob_parse(char *datablob, const char **format,
172 char **master_desc, char **decrypted_datalen,
173 char **hex_encoded_iv)
7e70cb49
MZ
174{
175 substring_t args[MAX_OPT_ARGS];
176 int ret = -EINVAL;
177 int key_cmd;
4e561d38
RS
178 int key_format;
179 char *p, *keyword;
7e70cb49 180
7103dff0
RS
181 keyword = strsep(&datablob, " \t");
182 if (!keyword) {
183 pr_info("encrypted_key: insufficient parameters specified\n");
7e70cb49 184 return ret;
7103dff0
RS
185 }
186 key_cmd = match_token(keyword, key_tokens, args);
7e70cb49 187
79a73d18 188 /* Get optional format: default | ecryptfs */
4e561d38
RS
189 p = strsep(&datablob, " \t");
190 if (!p) {
191 pr_err("encrypted_key: insufficient parameters specified\n");
192 return ret;
193 }
194
195 key_format = match_token(p, key_format_tokens, args);
196 switch (key_format) {
79a73d18 197 case Opt_ecryptfs:
4e561d38
RS
198 case Opt_default:
199 *format = p;
200 *master_desc = strsep(&datablob, " \t");
201 break;
202 case Opt_error:
203 *master_desc = p;
204 break;
205 }
206
7103dff0
RS
207 if (!*master_desc) {
208 pr_info("encrypted_key: master key parameter is missing\n");
7e70cb49 209 goto out;
7103dff0 210 }
7e70cb49 211
7103dff0
RS
212 if (valid_master_desc(*master_desc, NULL) < 0) {
213 pr_info("encrypted_key: master key parameter \'%s\' "
214 "is invalid\n", *master_desc);
7e70cb49 215 goto out;
7103dff0 216 }
7e70cb49
MZ
217
218 if (decrypted_datalen) {
219 *decrypted_datalen = strsep(&datablob, " \t");
7103dff0
RS
220 if (!*decrypted_datalen) {
221 pr_info("encrypted_key: keylen parameter is missing\n");
7e70cb49 222 goto out;
7103dff0 223 }
7e70cb49
MZ
224 }
225
226 switch (key_cmd) {
227 case Opt_new:
7103dff0
RS
228 if (!decrypted_datalen) {
229 pr_info("encrypted_key: keyword \'%s\' not allowed "
230 "when called from .update method\n", keyword);
7e70cb49 231 break;
7103dff0 232 }
7e70cb49
MZ
233 ret = 0;
234 break;
235 case Opt_load:
7103dff0
RS
236 if (!decrypted_datalen) {
237 pr_info("encrypted_key: keyword \'%s\' not allowed "
238 "when called from .update method\n", keyword);
7e70cb49 239 break;
7103dff0 240 }
7e70cb49 241 *hex_encoded_iv = strsep(&datablob, " \t");
7103dff0
RS
242 if (!*hex_encoded_iv) {
243 pr_info("encrypted_key: hex blob is missing\n");
7e70cb49 244 break;
7103dff0 245 }
7e70cb49
MZ
246 ret = 0;
247 break;
248 case Opt_update:
7103dff0
RS
249 if (decrypted_datalen) {
250 pr_info("encrypted_key: keyword \'%s\' not allowed "
251 "when called from .instantiate method\n",
252 keyword);
7e70cb49 253 break;
7103dff0 254 }
7e70cb49
MZ
255 ret = 0;
256 break;
257 case Opt_err:
7103dff0
RS
258 pr_info("encrypted_key: keyword \'%s\' not recognized\n",
259 keyword);
7e70cb49
MZ
260 break;
261 }
262out:
263 return ret;
264}
265
266/*
267 * datablob_format - format as an ascii string, before copying to userspace
268 */
269static char *datablob_format(struct encrypted_key_payload *epayload,
270 size_t asciiblob_len)
271{
272 char *ascii_buf, *bufp;
273 u8 *iv = epayload->iv;
274 int len;
275 int i;
276
277 ascii_buf = kmalloc(asciiblob_len + 1, GFP_KERNEL);
278 if (!ascii_buf)
279 goto out;
280
281 ascii_buf[asciiblob_len] = '\0';
282
283 /* copy datablob master_desc and datalen strings */
4e561d38
RS
284 len = sprintf(ascii_buf, "%s %s %s ", epayload->format,
285 epayload->master_desc, epayload->datalen);
7e70cb49
MZ
286
287 /* convert the hex encoded iv, encrypted-data and HMAC to ascii */
288 bufp = &ascii_buf[len];
289 for (i = 0; i < (asciiblob_len - len) / 2; i++)
02473119 290 bufp = hex_byte_pack(bufp, iv[i]);
7e70cb49
MZ
291out:
292 return ascii_buf;
293}
294
7e70cb49
MZ
295/*
296 * request_user_key - request the user key
297 *
298 * Use a user provided key to encrypt/decrypt an encrypted-key.
299 */
146aa8b1 300static struct key *request_user_key(const char *master_desc, const u8 **master_key,
3b1826ce 301 size_t *master_keylen)
7e70cb49 302{
146aa8b1 303 const struct user_key_payload *upayload;
7e70cb49
MZ
304 struct key *ukey;
305
306 ukey = request_key(&key_type_user, master_desc, NULL);
307 if (IS_ERR(ukey))
308 goto error;
309
310 down_read(&ukey->sem);
0837e49a 311 upayload = user_key_payload_locked(ukey);
7e70cb49
MZ
312 *master_key = upayload->data;
313 *master_keylen = upayload->datalen;
314error:
315 return ukey;
316}
317
64d107d3 318static int calc_hash(struct crypto_shash *tfm, u8 *digest,
3b1826ce 319 const u8 *buf, unsigned int buflen)
7e70cb49 320{
64d107d3
EB
321 SHASH_DESC_ON_STACK(desc, tfm);
322 int err;
7e70cb49 323
64d107d3
EB
324 desc->tfm = tfm;
325 desc->flags = 0;
7e70cb49 326
64d107d3
EB
327 err = crypto_shash_digest(desc, buf, buflen, digest);
328 shash_desc_zero(desc);
329 return err;
7e70cb49
MZ
330}
331
64d107d3
EB
332static int calc_hmac(u8 *digest, const u8 *key, unsigned int keylen,
333 const u8 *buf, unsigned int buflen)
7e70cb49 334{
64d107d3
EB
335 struct crypto_shash *tfm;
336 int err;
7e70cb49 337
64d107d3
EB
338 tfm = crypto_alloc_shash(hmac_alg, 0, CRYPTO_ALG_ASYNC);
339 if (IS_ERR(tfm)) {
340 pr_err("encrypted_key: can't alloc %s transform: %ld\n",
341 hmac_alg, PTR_ERR(tfm));
342 return PTR_ERR(tfm);
7e70cb49
MZ
343 }
344
64d107d3
EB
345 err = crypto_shash_setkey(tfm, key, keylen);
346 if (!err)
347 err = calc_hash(tfm, digest, buf, buflen);
348 crypto_free_shash(tfm);
349 return err;
7e70cb49
MZ
350}
351
352enum derived_key_type { ENC_KEY, AUTH_KEY };
353
354/* Derive authentication/encryption key from trusted key */
355static int get_derived_key(u8 *derived_key, enum derived_key_type key_type,
3b1826ce 356 const u8 *master_key, size_t master_keylen)
7e70cb49
MZ
357{
358 u8 *derived_buf;
359 unsigned int derived_buf_len;
360 int ret;
361
362 derived_buf_len = strlen("AUTH_KEY") + 1 + master_keylen;
363 if (derived_buf_len < HASH_SIZE)
364 derived_buf_len = HASH_SIZE;
365
366 derived_buf = kzalloc(derived_buf_len, GFP_KERNEL);
41f1c53e 367 if (!derived_buf)
7e70cb49 368 return -ENOMEM;
41f1c53e 369
7e70cb49
MZ
370 if (key_type)
371 strcpy(derived_buf, "AUTH_KEY");
372 else
373 strcpy(derived_buf, "ENC_KEY");
374
375 memcpy(derived_buf + strlen(derived_buf) + 1, master_key,
376 master_keylen);
64d107d3 377 ret = calc_hash(hash_tfm, derived_key, derived_buf, derived_buf_len);
a9dd74b2 378 kzfree(derived_buf);
7e70cb49
MZ
379 return ret;
380}
381
c3917fd9
HX
382static struct skcipher_request *init_skcipher_req(const u8 *key,
383 unsigned int key_len)
7e70cb49 384{
c3917fd9
HX
385 struct skcipher_request *req;
386 struct crypto_skcipher *tfm;
7e70cb49
MZ
387 int ret;
388
c3917fd9
HX
389 tfm = crypto_alloc_skcipher(blkcipher_alg, 0, CRYPTO_ALG_ASYNC);
390 if (IS_ERR(tfm)) {
7e70cb49 391 pr_err("encrypted_key: failed to load %s transform (%ld)\n",
c3917fd9
HX
392 blkcipher_alg, PTR_ERR(tfm));
393 return ERR_CAST(tfm);
7e70cb49 394 }
7e70cb49 395
c3917fd9 396 ret = crypto_skcipher_setkey(tfm, key, key_len);
7e70cb49
MZ
397 if (ret < 0) {
398 pr_err("encrypted_key: failed to setkey (%d)\n", ret);
c3917fd9
HX
399 crypto_free_skcipher(tfm);
400 return ERR_PTR(ret);
7e70cb49 401 }
c3917fd9
HX
402
403 req = skcipher_request_alloc(tfm, GFP_KERNEL);
404 if (!req) {
405 pr_err("encrypted_key: failed to allocate request for %s\n",
406 blkcipher_alg);
407 crypto_free_skcipher(tfm);
408 return ERR_PTR(-ENOMEM);
409 }
410
411 skcipher_request_set_callback(req, 0, NULL, NULL);
412 return req;
7e70cb49
MZ
413}
414
415static struct key *request_master_key(struct encrypted_key_payload *epayload,
146aa8b1 416 const u8 **master_key, size_t *master_keylen)
7e70cb49 417{
57cb17e7 418 struct key *mkey = ERR_PTR(-EINVAL);
7e70cb49
MZ
419
420 if (!strncmp(epayload->master_desc, KEY_TRUSTED_PREFIX,
421 KEY_TRUSTED_PREFIX_LEN)) {
422 mkey = request_trusted_key(epayload->master_desc +
423 KEY_TRUSTED_PREFIX_LEN,
424 master_key, master_keylen);
425 } else if (!strncmp(epayload->master_desc, KEY_USER_PREFIX,
426 KEY_USER_PREFIX_LEN)) {
427 mkey = request_user_key(epayload->master_desc +
428 KEY_USER_PREFIX_LEN,
429 master_key, master_keylen);
430 } else
431 goto out;
432
f91c2c5c 433 if (IS_ERR(mkey)) {
f4a0d5ab 434 int ret = PTR_ERR(mkey);
982e617a
MZ
435
436 if (ret == -ENOTSUPP)
437 pr_info("encrypted_key: key %s not supported",
438 epayload->master_desc);
439 else
440 pr_info("encrypted_key: key %s not found",
441 epayload->master_desc);
f91c2c5c
RS
442 goto out;
443 }
444
445 dump_master_key(*master_key, *master_keylen);
7e70cb49
MZ
446out:
447 return mkey;
448}
449
450/* Before returning data to userspace, encrypt decrypted data. */
451static int derived_key_encrypt(struct encrypted_key_payload *epayload,
452 const u8 *derived_key,
3b1826ce 453 unsigned int derived_keylen)
7e70cb49
MZ
454{
455 struct scatterlist sg_in[2];
456 struct scatterlist sg_out[1];
c3917fd9
HX
457 struct crypto_skcipher *tfm;
458 struct skcipher_request *req;
7e70cb49 459 unsigned int encrypted_datalen;
456bee98 460 u8 iv[AES_BLOCK_SIZE];
7e70cb49
MZ
461 int ret;
462
463 encrypted_datalen = roundup(epayload->decrypted_datalen, blksize);
7e70cb49 464
c3917fd9
HX
465 req = init_skcipher_req(derived_key, derived_keylen);
466 ret = PTR_ERR(req);
467 if (IS_ERR(req))
7e70cb49
MZ
468 goto out;
469 dump_decrypted_data(epayload);
470
7e70cb49
MZ
471 sg_init_table(sg_in, 2);
472 sg_set_buf(&sg_in[0], epayload->decrypted_data,
473 epayload->decrypted_datalen);
e9ff56ac 474 sg_set_page(&sg_in[1], ZERO_PAGE(0), AES_BLOCK_SIZE, 0);
7e70cb49
MZ
475
476 sg_init_table(sg_out, 1);
477 sg_set_buf(sg_out, epayload->encrypted_data, encrypted_datalen);
478
456bee98
HX
479 memcpy(iv, epayload->iv, sizeof(iv));
480 skcipher_request_set_crypt(req, sg_in, sg_out, encrypted_datalen, iv);
c3917fd9
HX
481 ret = crypto_skcipher_encrypt(req);
482 tfm = crypto_skcipher_reqtfm(req);
483 skcipher_request_free(req);
484 crypto_free_skcipher(tfm);
7e70cb49
MZ
485 if (ret < 0)
486 pr_err("encrypted_key: failed to encrypt (%d)\n", ret);
487 else
488 dump_encrypted_data(epayload, encrypted_datalen);
489out:
490 return ret;
491}
492
493static int datablob_hmac_append(struct encrypted_key_payload *epayload,
3b1826ce 494 const u8 *master_key, size_t master_keylen)
7e70cb49
MZ
495{
496 u8 derived_key[HASH_SIZE];
497 u8 *digest;
498 int ret;
499
500 ret = get_derived_key(derived_key, AUTH_KEY, master_key, master_keylen);
501 if (ret < 0)
502 goto out;
503
4e561d38 504 digest = epayload->format + epayload->datablob_len;
7e70cb49 505 ret = calc_hmac(digest, derived_key, sizeof derived_key,
4e561d38 506 epayload->format, epayload->datablob_len);
7e70cb49
MZ
507 if (!ret)
508 dump_hmac(NULL, digest, HASH_SIZE);
509out:
a9dd74b2 510 memzero_explicit(derived_key, sizeof(derived_key));
7e70cb49
MZ
511 return ret;
512}
513
514/* verify HMAC before decrypting encrypted key */
515static int datablob_hmac_verify(struct encrypted_key_payload *epayload,
4e561d38
RS
516 const u8 *format, const u8 *master_key,
517 size_t master_keylen)
7e70cb49
MZ
518{
519 u8 derived_key[HASH_SIZE];
520 u8 digest[HASH_SIZE];
521 int ret;
4e561d38
RS
522 char *p;
523 unsigned short len;
7e70cb49
MZ
524
525 ret = get_derived_key(derived_key, AUTH_KEY, master_key, master_keylen);
526 if (ret < 0)
527 goto out;
528
4e561d38
RS
529 len = epayload->datablob_len;
530 if (!format) {
531 p = epayload->master_desc;
532 len -= strlen(epayload->format) + 1;
533 } else
534 p = epayload->format;
535
536 ret = calc_hmac(digest, derived_key, sizeof derived_key, p, len);
7e70cb49
MZ
537 if (ret < 0)
538 goto out;
0f534e4a
EB
539 ret = crypto_memneq(digest, epayload->format + epayload->datablob_len,
540 sizeof(digest));
7e70cb49
MZ
541 if (ret) {
542 ret = -EINVAL;
543 dump_hmac("datablob",
4e561d38 544 epayload->format + epayload->datablob_len,
7e70cb49
MZ
545 HASH_SIZE);
546 dump_hmac("calc", digest, HASH_SIZE);
547 }
548out:
a9dd74b2 549 memzero_explicit(derived_key, sizeof(derived_key));
7e70cb49
MZ
550 return ret;
551}
552
553static int derived_key_decrypt(struct encrypted_key_payload *epayload,
554 const u8 *derived_key,
3b1826ce 555 unsigned int derived_keylen)
7e70cb49
MZ
556{
557 struct scatterlist sg_in[1];
558 struct scatterlist sg_out[2];
c3917fd9
HX
559 struct crypto_skcipher *tfm;
560 struct skcipher_request *req;
7e70cb49 561 unsigned int encrypted_datalen;
456bee98 562 u8 iv[AES_BLOCK_SIZE];
e9ff56ac 563 u8 *pad;
7e70cb49
MZ
564 int ret;
565
e9ff56ac
EB
566 /* Throwaway buffer to hold the unused zero padding at the end */
567 pad = kmalloc(AES_BLOCK_SIZE, GFP_KERNEL);
568 if (!pad)
569 return -ENOMEM;
570
7e70cb49 571 encrypted_datalen = roundup(epayload->decrypted_datalen, blksize);
c3917fd9
HX
572 req = init_skcipher_req(derived_key, derived_keylen);
573 ret = PTR_ERR(req);
574 if (IS_ERR(req))
7e70cb49
MZ
575 goto out;
576 dump_encrypted_data(epayload, encrypted_datalen);
577
7e70cb49
MZ
578 sg_init_table(sg_in, 1);
579 sg_init_table(sg_out, 2);
580 sg_set_buf(sg_in, epayload->encrypted_data, encrypted_datalen);
581 sg_set_buf(&sg_out[0], epayload->decrypted_data,
3b1826ce 582 epayload->decrypted_datalen);
e9ff56ac 583 sg_set_buf(&sg_out[1], pad, AES_BLOCK_SIZE);
7e70cb49 584
456bee98
HX
585 memcpy(iv, epayload->iv, sizeof(iv));
586 skcipher_request_set_crypt(req, sg_in, sg_out, encrypted_datalen, iv);
c3917fd9
HX
587 ret = crypto_skcipher_decrypt(req);
588 tfm = crypto_skcipher_reqtfm(req);
589 skcipher_request_free(req);
590 crypto_free_skcipher(tfm);
7e70cb49
MZ
591 if (ret < 0)
592 goto out;
593 dump_decrypted_data(epayload);
594out:
e9ff56ac 595 kfree(pad);
7e70cb49
MZ
596 return ret;
597}
598
599/* Allocate memory for decrypted key and datablob. */
600static struct encrypted_key_payload *encrypted_key_alloc(struct key *key,
4e561d38 601 const char *format,
7e70cb49
MZ
602 const char *master_desc,
603 const char *datalen)
604{
605 struct encrypted_key_payload *epayload = NULL;
606 unsigned short datablob_len;
607 unsigned short decrypted_datalen;
4e561d38 608 unsigned short payload_datalen;
7e70cb49 609 unsigned int encrypted_datalen;
4e561d38 610 unsigned int format_len;
7e70cb49
MZ
611 long dlen;
612 int ret;
613
29707b20 614 ret = kstrtol(datalen, 10, &dlen);
7e70cb49
MZ
615 if (ret < 0 || dlen < MIN_DATA_SIZE || dlen > MAX_DATA_SIZE)
616 return ERR_PTR(-EINVAL);
617
4e561d38 618 format_len = (!format) ? strlen(key_format_default) : strlen(format);
7e70cb49 619 decrypted_datalen = dlen;
4e561d38 620 payload_datalen = decrypted_datalen;
79a73d18
RS
621 if (format && !strcmp(format, key_format_ecryptfs)) {
622 if (dlen != ECRYPTFS_MAX_KEY_BYTES) {
623 pr_err("encrypted_key: keylen for the ecryptfs format "
624 "must be equal to %d bytes\n",
625 ECRYPTFS_MAX_KEY_BYTES);
626 return ERR_PTR(-EINVAL);
627 }
628 decrypted_datalen = ECRYPTFS_MAX_KEY_BYTES;
629 payload_datalen = sizeof(struct ecryptfs_auth_tok);
630 }
631
7e70cb49
MZ
632 encrypted_datalen = roundup(decrypted_datalen, blksize);
633
4e561d38
RS
634 datablob_len = format_len + 1 + strlen(master_desc) + 1
635 + strlen(datalen) + 1 + ivsize + 1 + encrypted_datalen;
7e70cb49 636
4e561d38 637 ret = key_payload_reserve(key, payload_datalen + datablob_len
7e70cb49
MZ
638 + HASH_SIZE + 1);
639 if (ret < 0)
640 return ERR_PTR(ret);
641
4e561d38 642 epayload = kzalloc(sizeof(*epayload) + payload_datalen +
7e70cb49
MZ
643 datablob_len + HASH_SIZE + 1, GFP_KERNEL);
644 if (!epayload)
645 return ERR_PTR(-ENOMEM);
646
4e561d38 647 epayload->payload_datalen = payload_datalen;
7e70cb49
MZ
648 epayload->decrypted_datalen = decrypted_datalen;
649 epayload->datablob_len = datablob_len;
650 return epayload;
651}
652
653static int encrypted_key_decrypt(struct encrypted_key_payload *epayload,
4e561d38 654 const char *format, const char *hex_encoded_iv)
7e70cb49
MZ
655{
656 struct key *mkey;
657 u8 derived_key[HASH_SIZE];
146aa8b1 658 const u8 *master_key;
7e70cb49 659 u8 *hmac;
1f35065a 660 const char *hex_encoded_data;
7e70cb49 661 unsigned int encrypted_datalen;
3b1826ce 662 size_t master_keylen;
1f35065a 663 size_t asciilen;
7e70cb49
MZ
664 int ret;
665
666 encrypted_datalen = roundup(epayload->decrypted_datalen, blksize);
1f35065a
MZ
667 asciilen = (ivsize + 1 + encrypted_datalen + HASH_SIZE) * 2;
668 if (strlen(hex_encoded_iv) != asciilen)
669 return -EINVAL;
670
671 hex_encoded_data = hex_encoded_iv + (2 * ivsize) + 2;
2b3ff631
MZ
672 ret = hex2bin(epayload->iv, hex_encoded_iv, ivsize);
673 if (ret < 0)
674 return -EINVAL;
675 ret = hex2bin(epayload->encrypted_data, hex_encoded_data,
676 encrypted_datalen);
677 if (ret < 0)
678 return -EINVAL;
7e70cb49 679
4e561d38 680 hmac = epayload->format + epayload->datablob_len;
2b3ff631
MZ
681 ret = hex2bin(hmac, hex_encoded_data + (encrypted_datalen * 2),
682 HASH_SIZE);
683 if (ret < 0)
684 return -EINVAL;
7e70cb49
MZ
685
686 mkey = request_master_key(epayload, &master_key, &master_keylen);
687 if (IS_ERR(mkey))
688 return PTR_ERR(mkey);
689
4e561d38 690 ret = datablob_hmac_verify(epayload, format, master_key, master_keylen);
7e70cb49
MZ
691 if (ret < 0) {
692 pr_err("encrypted_key: bad hmac (%d)\n", ret);
693 goto out;
694 }
695
696 ret = get_derived_key(derived_key, ENC_KEY, master_key, master_keylen);
697 if (ret < 0)
698 goto out;
699
700 ret = derived_key_decrypt(epayload, derived_key, sizeof derived_key);
701 if (ret < 0)
702 pr_err("encrypted_key: failed to decrypt key (%d)\n", ret);
703out:
704 up_read(&mkey->sem);
705 key_put(mkey);
a9dd74b2 706 memzero_explicit(derived_key, sizeof(derived_key));
7e70cb49
MZ
707 return ret;
708}
709
710static void __ekey_init(struct encrypted_key_payload *epayload,
4e561d38
RS
711 const char *format, const char *master_desc,
712 const char *datalen)
7e70cb49 713{
4e561d38
RS
714 unsigned int format_len;
715
716 format_len = (!format) ? strlen(key_format_default) : strlen(format);
717 epayload->format = epayload->payload_data + epayload->payload_datalen;
718 epayload->master_desc = epayload->format + format_len + 1;
7e70cb49
MZ
719 epayload->datalen = epayload->master_desc + strlen(master_desc) + 1;
720 epayload->iv = epayload->datalen + strlen(datalen) + 1;
721 epayload->encrypted_data = epayload->iv + ivsize + 1;
4e561d38 722 epayload->decrypted_data = epayload->payload_data;
7e70cb49 723
4e561d38
RS
724 if (!format)
725 memcpy(epayload->format, key_format_default, format_len);
79a73d18
RS
726 else {
727 if (!strcmp(format, key_format_ecryptfs))
728 epayload->decrypted_data =
729 ecryptfs_get_auth_tok_key((struct ecryptfs_auth_tok *)epayload->payload_data);
730
4e561d38 731 memcpy(epayload->format, format, format_len);
79a73d18
RS
732 }
733
7e70cb49
MZ
734 memcpy(epayload->master_desc, master_desc, strlen(master_desc));
735 memcpy(epayload->datalen, datalen, strlen(datalen));
736}
737
738/*
739 * encrypted_init - initialize an encrypted key
740 *
741 * For a new key, use a random number for both the iv and data
742 * itself. For an old key, decrypt the hex encoded data.
743 */
744static int encrypted_init(struct encrypted_key_payload *epayload,
79a73d18
RS
745 const char *key_desc, const char *format,
746 const char *master_desc, const char *datalen,
747 const char *hex_encoded_iv)
7e70cb49
MZ
748{
749 int ret = 0;
750
79a73d18
RS
751 if (format && !strcmp(format, key_format_ecryptfs)) {
752 ret = valid_ecryptfs_desc(key_desc);
753 if (ret < 0)
754 return ret;
755
756 ecryptfs_fill_auth_tok((struct ecryptfs_auth_tok *)epayload->payload_data,
757 key_desc);
758 }
759
4e561d38 760 __ekey_init(epayload, format, master_desc, datalen);
1f35065a 761 if (!hex_encoded_iv) {
7e70cb49
MZ
762 get_random_bytes(epayload->iv, ivsize);
763
764 get_random_bytes(epayload->decrypted_data,
765 epayload->decrypted_datalen);
766 } else
4e561d38 767 ret = encrypted_key_decrypt(epayload, format, hex_encoded_iv);
7e70cb49
MZ
768 return ret;
769}
770
771/*
772 * encrypted_instantiate - instantiate an encrypted key
773 *
774 * Decrypt an existing encrypted datablob or create a new encrypted key
775 * based on a kernel random number.
776 *
777 * On success, return 0. Otherwise return errno.
778 */
cf7f601c
DH
779static int encrypted_instantiate(struct key *key,
780 struct key_preparsed_payload *prep)
7e70cb49
MZ
781{
782 struct encrypted_key_payload *epayload = NULL;
783 char *datablob = NULL;
4e561d38 784 const char *format = NULL;
7e70cb49
MZ
785 char *master_desc = NULL;
786 char *decrypted_datalen = NULL;
787 char *hex_encoded_iv = NULL;
cf7f601c 788 size_t datalen = prep->datalen;
7e70cb49
MZ
789 int ret;
790
cf7f601c 791 if (datalen <= 0 || datalen > 32767 || !prep->data)
7e70cb49
MZ
792 return -EINVAL;
793
794 datablob = kmalloc(datalen + 1, GFP_KERNEL);
795 if (!datablob)
796 return -ENOMEM;
797 datablob[datalen] = 0;
cf7f601c 798 memcpy(datablob, prep->data, datalen);
4e561d38
RS
799 ret = datablob_parse(datablob, &format, &master_desc,
800 &decrypted_datalen, &hex_encoded_iv);
7e70cb49
MZ
801 if (ret < 0)
802 goto out;
803
4e561d38
RS
804 epayload = encrypted_key_alloc(key, format, master_desc,
805 decrypted_datalen);
7e70cb49
MZ
806 if (IS_ERR(epayload)) {
807 ret = PTR_ERR(epayload);
808 goto out;
809 }
79a73d18
RS
810 ret = encrypted_init(epayload, key->description, format, master_desc,
811 decrypted_datalen, hex_encoded_iv);
7e70cb49 812 if (ret < 0) {
a9dd74b2 813 kzfree(epayload);
7e70cb49
MZ
814 goto out;
815 }
816
b64cc5fb 817 rcu_assign_keypointer(key, epayload);
7e70cb49 818out:
a9dd74b2 819 kzfree(datablob);
7e70cb49
MZ
820 return ret;
821}
822
823static void encrypted_rcu_free(struct rcu_head *rcu)
824{
825 struct encrypted_key_payload *epayload;
826
827 epayload = container_of(rcu, struct encrypted_key_payload, rcu);
a9dd74b2 828 kzfree(epayload);
7e70cb49
MZ
829}
830
831/*
832 * encrypted_update - update the master key description
833 *
834 * Change the master key description for an existing encrypted key.
835 * The next read will return an encrypted datablob using the new
836 * master key description.
837 *
838 * On success, return 0. Otherwise return errno.
839 */
cf7f601c 840static int encrypted_update(struct key *key, struct key_preparsed_payload *prep)
7e70cb49 841{
146aa8b1 842 struct encrypted_key_payload *epayload = key->payload.data[0];
7e70cb49
MZ
843 struct encrypted_key_payload *new_epayload;
844 char *buf;
845 char *new_master_desc = NULL;
4e561d38 846 const char *format = NULL;
cf7f601c 847 size_t datalen = prep->datalen;
7e70cb49
MZ
848 int ret = 0;
849
096fe9ea
DH
850 if (test_bit(KEY_FLAG_NEGATIVE, &key->flags))
851 return -ENOKEY;
cf7f601c 852 if (datalen <= 0 || datalen > 32767 || !prep->data)
7e70cb49
MZ
853 return -EINVAL;
854
855 buf = kmalloc(datalen + 1, GFP_KERNEL);
856 if (!buf)
857 return -ENOMEM;
858
859 buf[datalen] = 0;
cf7f601c 860 memcpy(buf, prep->data, datalen);
4e561d38 861 ret = datablob_parse(buf, &format, &new_master_desc, NULL, NULL);
7e70cb49
MZ
862 if (ret < 0)
863 goto out;
864
865 ret = valid_master_desc(new_master_desc, epayload->master_desc);
866 if (ret < 0)
867 goto out;
868
4e561d38
RS
869 new_epayload = encrypted_key_alloc(key, epayload->format,
870 new_master_desc, epayload->datalen);
7e70cb49
MZ
871 if (IS_ERR(new_epayload)) {
872 ret = PTR_ERR(new_epayload);
873 goto out;
874 }
875
4e561d38
RS
876 __ekey_init(new_epayload, epayload->format, new_master_desc,
877 epayload->datalen);
7e70cb49
MZ
878
879 memcpy(new_epayload->iv, epayload->iv, ivsize);
4e561d38
RS
880 memcpy(new_epayload->payload_data, epayload->payload_data,
881 epayload->payload_datalen);
7e70cb49 882
ee0b31a2 883 rcu_assign_keypointer(key, new_epayload);
7e70cb49
MZ
884 call_rcu(&epayload->rcu, encrypted_rcu_free);
885out:
a9dd74b2 886 kzfree(buf);
7e70cb49
MZ
887 return ret;
888}
889
890/*
891 * encrypted_read - format and copy the encrypted data to userspace
892 *
893 * The resulting datablob format is:
894 * <master-key name> <decrypted data length> <encrypted iv> <encrypted data>
895 *
896 * On success, return to userspace the encrypted key datablob size.
897 */
898static long encrypted_read(const struct key *key, char __user *buffer,
899 size_t buflen)
900{
901 struct encrypted_key_payload *epayload;
902 struct key *mkey;
146aa8b1 903 const u8 *master_key;
3b1826ce 904 size_t master_keylen;
7e70cb49
MZ
905 char derived_key[HASH_SIZE];
906 char *ascii_buf;
907 size_t asciiblob_len;
908 int ret;
909
0837e49a 910 epayload = dereference_key_locked(key);
7e70cb49
MZ
911
912 /* returns the hex encoded iv, encrypted-data, and hmac as ascii */
913 asciiblob_len = epayload->datablob_len + ivsize + 1
914 + roundup(epayload->decrypted_datalen, blksize)
915 + (HASH_SIZE * 2);
916
917 if (!buffer || buflen < asciiblob_len)
918 return asciiblob_len;
919
920 mkey = request_master_key(epayload, &master_key, &master_keylen);
921 if (IS_ERR(mkey))
922 return PTR_ERR(mkey);
923
924 ret = get_derived_key(derived_key, ENC_KEY, master_key, master_keylen);
925 if (ret < 0)
926 goto out;
927
928 ret = derived_key_encrypt(epayload, derived_key, sizeof derived_key);
929 if (ret < 0)
930 goto out;
931
932 ret = datablob_hmac_append(epayload, master_key, master_keylen);
933 if (ret < 0)
934 goto out;
935
936 ascii_buf = datablob_format(epayload, asciiblob_len);
937 if (!ascii_buf) {
938 ret = -ENOMEM;
939 goto out;
940 }
941
942 up_read(&mkey->sem);
943 key_put(mkey);
a9dd74b2 944 memzero_explicit(derived_key, sizeof(derived_key));
7e70cb49
MZ
945
946 if (copy_to_user(buffer, ascii_buf, asciiblob_len) != 0)
947 ret = -EFAULT;
a9dd74b2 948 kzfree(ascii_buf);
7e70cb49
MZ
949
950 return asciiblob_len;
951out:
952 up_read(&mkey->sem);
953 key_put(mkey);
a9dd74b2 954 memzero_explicit(derived_key, sizeof(derived_key));
7e70cb49
MZ
955 return ret;
956}
957
958/*
a9dd74b2 959 * encrypted_destroy - clear and free the key's payload
7e70cb49
MZ
960 */
961static void encrypted_destroy(struct key *key)
962{
a9dd74b2 963 kzfree(key->payload.data[0]);
7e70cb49
MZ
964}
965
966struct key_type key_type_encrypted = {
967 .name = "encrypted",
968 .instantiate = encrypted_instantiate,
969 .update = encrypted_update,
7e70cb49
MZ
970 .destroy = encrypted_destroy,
971 .describe = user_describe,
972 .read = encrypted_read,
973};
974EXPORT_SYMBOL_GPL(key_type_encrypted);
975
64d107d3 976static int __init init_encrypted(void)
7e70cb49
MZ
977{
978 int ret;
979
64d107d3
EB
980 hash_tfm = crypto_alloc_shash(hash_alg, 0, CRYPTO_ALG_ASYNC);
981 if (IS_ERR(hash_tfm)) {
982 pr_err("encrypted_key: can't allocate %s transform: %ld\n",
983 hash_alg, PTR_ERR(hash_tfm));
984 return PTR_ERR(hash_tfm);
7e70cb49
MZ
985 }
986
b26bdde5
TI
987 ret = aes_get_sizes();
988 if (ret < 0)
989 goto out;
7e70cb49
MZ
990 ret = register_key_type(&key_type_encrypted);
991 if (ret < 0)
992 goto out;
b26bdde5 993 return 0;
7e70cb49 994out:
64d107d3 995 crypto_free_shash(hash_tfm);
7e70cb49 996 return ret;
b9703449 997
7e70cb49
MZ
998}
999
1000static void __exit cleanup_encrypted(void)
1001{
64d107d3 1002 crypto_free_shash(hash_tfm);
7e70cb49
MZ
1003 unregister_key_type(&key_type_encrypted);
1004}
1005
1006late_initcall(init_encrypted);
1007module_exit(cleanup_encrypted);
1008
1009MODULE_LICENSE("GPL");