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Stephan Mueller541af942014-05-31 15:44:17 +02001/*
2 * DRBG: Deterministic Random Bits Generator
3 * Based on NIST Recommended DRBG from NIST SP800-90A with the following
4 * properties:
5 * * CTR DRBG with DF with AES-128, AES-192, AES-256 cores
6 * * Hash DRBG with DF with SHA-1, SHA-256, SHA-384, SHA-512 cores
7 * * HMAC DRBG with DF with SHA-1, SHA-256, SHA-384, SHA-512 cores
8 * * with and without prediction resistance
9 *
10 * Copyright Stephan Mueller <smueller@chronox.de>, 2014
11 *
12 * Redistribution and use in source and binary forms, with or without
13 * modification, are permitted provided that the following conditions
14 * are met:
15 * 1. Redistributions of source code must retain the above copyright
16 * notice, and the entire permission notice in its entirety,
17 * including the disclaimer of warranties.
18 * 2. Redistributions in binary form must reproduce the above copyright
19 * notice, this list of conditions and the following disclaimer in the
20 * documentation and/or other materials provided with the distribution.
21 * 3. The name of the author may not be used to endorse or promote
22 * products derived from this software without specific prior
23 * written permission.
24 *
25 * ALTERNATIVELY, this product may be distributed under the terms of
26 * the GNU General Public License, in which case the provisions of the GPL are
27 * required INSTEAD OF the above restrictions. (This clause is
28 * necessary due to a potential bad interaction between the GPL and
29 * the restrictions contained in a BSD-style copyright.)
30 *
31 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED
32 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
33 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE, ALL OF
34 * WHICH ARE HEREBY DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE
35 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
36 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT
37 * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
38 * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
39 * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
40 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE
41 * USE OF THIS SOFTWARE, EVEN IF NOT ADVISED OF THE POSSIBILITY OF SUCH
42 * DAMAGE.
43 *
44 * DRBG Usage
45 * ==========
46 * The SP 800-90A DRBG allows the user to specify a personalization string
47 * for initialization as well as an additional information string for each
48 * random number request. The following code fragments show how a caller
49 * uses the kernel crypto API to use the full functionality of the DRBG.
50 *
51 * Usage without any additional data
52 * ---------------------------------
53 * struct crypto_rng *drng;
54 * int err;
55 * char data[DATALEN];
56 *
57 * drng = crypto_alloc_rng(drng_name, 0, 0);
58 * err = crypto_rng_get_bytes(drng, &data, DATALEN);
59 * crypto_free_rng(drng);
60 *
61 *
62 * Usage with personalization string during initialization
63 * -------------------------------------------------------
64 * struct crypto_rng *drng;
65 * int err;
66 * char data[DATALEN];
67 * struct drbg_string pers;
68 * char personalization[11] = "some-string";
69 *
70 * drbg_string_fill(&pers, personalization, strlen(personalization));
71 * drng = crypto_alloc_rng(drng_name, 0, 0);
72 * // The reset completely re-initializes the DRBG with the provided
73 * // personalization string
74 * err = crypto_rng_reset(drng, &personalization, strlen(personalization));
75 * err = crypto_rng_get_bytes(drng, &data, DATALEN);
76 * crypto_free_rng(drng);
77 *
78 *
79 * Usage with additional information string during random number request
80 * ---------------------------------------------------------------------
81 * struct crypto_rng *drng;
82 * int err;
83 * char data[DATALEN];
84 * char addtl_string[11] = "some-string";
85 * string drbg_string addtl;
86 *
87 * drbg_string_fill(&addtl, addtl_string, strlen(addtl_string));
88 * drng = crypto_alloc_rng(drng_name, 0, 0);
89 * // The following call is a wrapper to crypto_rng_get_bytes() and returns
90 * // the same error codes.
91 * err = crypto_drbg_get_bytes_addtl(drng, &data, DATALEN, &addtl);
92 * crypto_free_rng(drng);
93 *
94 *
95 * Usage with personalization and additional information strings
96 * -------------------------------------------------------------
97 * Just mix both scenarios above.
98 */
99
100#include <crypto/drbg.h>
Stephan Mueller57225e62015-06-09 21:55:38 +0800101#include <linux/kernel.h>
Stephan Mueller541af942014-05-31 15:44:17 +0200102
Stephan Mueller541af942014-05-31 15:44:17 +0200103/***************************************************************
104 * Backend cipher definitions available to DRBG
105 ***************************************************************/
106
107/*
108 * The order of the DRBG definitions here matter: every DRBG is registered
109 * as stdrng. Each DRBG receives an increasing cra_priority values the later
110 * they are defined in this array (see drbg_fill_array).
111 *
112 * HMAC DRBGs are favored over Hash DRBGs over CTR DRBGs, and
113 * the SHA256 / AES 256 over other ciphers. Thus, the favored
114 * DRBGs are the latest entries in this array.
115 */
116static const struct drbg_core drbg_cores[] = {
117#ifdef CONFIG_CRYPTO_DRBG_CTR
118 {
119 .flags = DRBG_CTR | DRBG_STRENGTH128,
120 .statelen = 32, /* 256 bits as defined in 10.2.1 */
Stephan Mueller541af942014-05-31 15:44:17 +0200121 .blocklen_bytes = 16,
122 .cra_name = "ctr_aes128",
Stephan Mueller04bcbfc2015-03-01 20:39:17 +0100123 .backend_cra_name = "aes",
Stephan Mueller541af942014-05-31 15:44:17 +0200124 }, {
125 .flags = DRBG_CTR | DRBG_STRENGTH192,
126 .statelen = 40, /* 320 bits as defined in 10.2.1 */
Stephan Mueller541af942014-05-31 15:44:17 +0200127 .blocklen_bytes = 16,
128 .cra_name = "ctr_aes192",
Stephan Mueller04bcbfc2015-03-01 20:39:17 +0100129 .backend_cra_name = "aes",
Stephan Mueller541af942014-05-31 15:44:17 +0200130 }, {
131 .flags = DRBG_CTR | DRBG_STRENGTH256,
132 .statelen = 48, /* 384 bits as defined in 10.2.1 */
Stephan Mueller541af942014-05-31 15:44:17 +0200133 .blocklen_bytes = 16,
134 .cra_name = "ctr_aes256",
Stephan Mueller04bcbfc2015-03-01 20:39:17 +0100135 .backend_cra_name = "aes",
Stephan Mueller541af942014-05-31 15:44:17 +0200136 },
137#endif /* CONFIG_CRYPTO_DRBG_CTR */
138#ifdef CONFIG_CRYPTO_DRBG_HASH
139 {
140 .flags = DRBG_HASH | DRBG_STRENGTH128,
141 .statelen = 55, /* 440 bits */
Stephan Mueller541af942014-05-31 15:44:17 +0200142 .blocklen_bytes = 20,
143 .cra_name = "sha1",
144 .backend_cra_name = "sha1",
145 }, {
146 .flags = DRBG_HASH | DRBG_STRENGTH256,
147 .statelen = 111, /* 888 bits */
Stephan Mueller541af942014-05-31 15:44:17 +0200148 .blocklen_bytes = 48,
149 .cra_name = "sha384",
150 .backend_cra_name = "sha384",
151 }, {
152 .flags = DRBG_HASH | DRBG_STRENGTH256,
153 .statelen = 111, /* 888 bits */
Stephan Mueller541af942014-05-31 15:44:17 +0200154 .blocklen_bytes = 64,
155 .cra_name = "sha512",
156 .backend_cra_name = "sha512",
157 }, {
158 .flags = DRBG_HASH | DRBG_STRENGTH256,
159 .statelen = 55, /* 440 bits */
Stephan Mueller541af942014-05-31 15:44:17 +0200160 .blocklen_bytes = 32,
161 .cra_name = "sha256",
162 .backend_cra_name = "sha256",
163 },
164#endif /* CONFIG_CRYPTO_DRBG_HASH */
165#ifdef CONFIG_CRYPTO_DRBG_HMAC
166 {
Stephan Mueller5b635e22014-07-06 02:26:37 +0200167 .flags = DRBG_HMAC | DRBG_STRENGTH128,
Stephan Mueller541af942014-05-31 15:44:17 +0200168 .statelen = 20, /* block length of cipher */
Stephan Mueller541af942014-05-31 15:44:17 +0200169 .blocklen_bytes = 20,
170 .cra_name = "hmac_sha1",
171 .backend_cra_name = "hmac(sha1)",
172 }, {
173 .flags = DRBG_HMAC | DRBG_STRENGTH256,
174 .statelen = 48, /* block length of cipher */
Stephan Mueller541af942014-05-31 15:44:17 +0200175 .blocklen_bytes = 48,
176 .cra_name = "hmac_sha384",
177 .backend_cra_name = "hmac(sha384)",
178 }, {
179 .flags = DRBG_HMAC | DRBG_STRENGTH256,
180 .statelen = 64, /* block length of cipher */
Stephan Mueller541af942014-05-31 15:44:17 +0200181 .blocklen_bytes = 64,
182 .cra_name = "hmac_sha512",
183 .backend_cra_name = "hmac(sha512)",
184 }, {
185 .flags = DRBG_HMAC | DRBG_STRENGTH256,
186 .statelen = 32, /* block length of cipher */
Stephan Mueller541af942014-05-31 15:44:17 +0200187 .blocklen_bytes = 32,
188 .cra_name = "hmac_sha256",
189 .backend_cra_name = "hmac(sha256)",
190 },
191#endif /* CONFIG_CRYPTO_DRBG_HMAC */
192};
193
Stephan Mueller57225e62015-06-09 21:55:38 +0800194static int drbg_uninstantiate(struct drbg_state *drbg);
195
Stephan Mueller541af942014-05-31 15:44:17 +0200196/******************************************************************
197 * Generic helper functions
198 ******************************************************************/
199
200/*
201 * Return strength of DRBG according to SP800-90A section 8.4
202 *
203 * @flags DRBG flags reference
204 *
205 * Return: normalized strength in *bytes* value or 32 as default
206 * to counter programming errors
207 */
208static inline unsigned short drbg_sec_strength(drbg_flag_t flags)
209{
210 switch (flags & DRBG_STRENGTH_MASK) {
211 case DRBG_STRENGTH128:
212 return 16;
213 case DRBG_STRENGTH192:
214 return 24;
215 case DRBG_STRENGTH256:
216 return 32;
217 default:
218 return 32;
219 }
220}
221
222/*
Stephan Muellerdb07cd22019-05-08 16:19:24 +0200223 * FIPS 140-2 continuous self test for the noise source
224 * The test is performed on the noise source input data. Thus, the function
225 * implicitly knows the size of the buffer to be equal to the security
226 * strength.
227 *
228 * Note, this function disregards the nonce trailing the entropy data during
229 * initial seeding.
230 *
231 * drbg->drbg_mutex must have been taken.
232 *
233 * @drbg DRBG handle
234 * @entropy buffer of seed data to be checked
235 *
236 * return:
237 * 0 on success
238 * -EAGAIN on when the CTRNG is not yet primed
239 * < 0 on error
240 */
241static int drbg_fips_continuous_test(struct drbg_state *drbg,
242 const unsigned char *entropy)
243{
244 unsigned short entropylen = drbg_sec_strength(drbg->core->flags);
245 int ret = 0;
246
247 if (!IS_ENABLED(CONFIG_CRYPTO_FIPS))
248 return 0;
249
250 /* skip test if we test the overall system */
251 if (list_empty(&drbg->test_data.list))
252 return 0;
253 /* only perform test in FIPS mode */
254 if (!fips_enabled)
255 return 0;
256
257 if (!drbg->fips_primed) {
258 /* Priming of FIPS test */
259 memcpy(drbg->prev, entropy, entropylen);
260 drbg->fips_primed = true;
261 /* priming: another round is needed */
262 return -EAGAIN;
263 }
264 ret = memcmp(drbg->prev, entropy, entropylen);
265 if (!ret)
266 panic("DRBG continuous self test failed\n");
267 memcpy(drbg->prev, entropy, entropylen);
268
269 /* the test shall pass when the two values are not equal */
270 return 0;
271}
272
273/*
Stephan Mueller541af942014-05-31 15:44:17 +0200274 * Convert an integer into a byte representation of this integer.
275 * The byte representation is big-endian
276 *
Stephan Mueller541af942014-05-31 15:44:17 +0200277 * @val value to be converted
Stephan Mueller72f3e002014-08-17 17:37:34 +0200278 * @buf buffer holding the converted integer -- caller must ensure that
279 * buffer size is at least 32 bit
Stephan Mueller541af942014-05-31 15:44:17 +0200280 */
281#if (defined(CONFIG_CRYPTO_DRBG_HASH) || defined(CONFIG_CRYPTO_DRBG_CTR))
Stephan Mueller72f3e002014-08-17 17:37:34 +0200282static inline void drbg_cpu_to_be32(__u32 val, unsigned char *buf)
Stephan Mueller541af942014-05-31 15:44:17 +0200283{
Stephan Mueller72f3e002014-08-17 17:37:34 +0200284 struct s {
Stephan Mueller7c8ae032014-08-26 09:32:24 +0200285 __be32 conv;
Stephan Mueller72f3e002014-08-17 17:37:34 +0200286 };
287 struct s *conversion = (struct s *) buf;
Stephan Mueller541af942014-05-31 15:44:17 +0200288
Stephan Mueller72f3e002014-08-17 17:37:34 +0200289 conversion->conv = cpu_to_be32(val);
Stephan Mueller541af942014-05-31 15:44:17 +0200290}
Stephan Mueller541af942014-05-31 15:44:17 +0200291#endif /* defined(CONFIG_CRYPTO_DRBG_HASH) || defined(CONFIG_CRYPTO_DRBG_CTR) */
292
293/******************************************************************
294 * CTR DRBG callback functions
295 ******************************************************************/
296
297#ifdef CONFIG_CRYPTO_DRBG_CTR
Stephan Muellere25e47e2014-07-06 02:23:03 +0200298#define CRYPTO_DRBG_CTR_STRING "CTR "
Stephan Mueller0653a7c2014-11-25 09:28:43 +0100299MODULE_ALIAS_CRYPTO("drbg_pr_ctr_aes256");
300MODULE_ALIAS_CRYPTO("drbg_nopr_ctr_aes256");
301MODULE_ALIAS_CRYPTO("drbg_pr_ctr_aes192");
302MODULE_ALIAS_CRYPTO("drbg_nopr_ctr_aes192");
303MODULE_ALIAS_CRYPTO("drbg_pr_ctr_aes128");
304MODULE_ALIAS_CRYPTO("drbg_nopr_ctr_aes128");
Stephan Mueller62b62b62014-11-04 03:08:09 +0100305
Stephan Muellered494d42016-05-31 13:11:57 +0200306static void drbg_kcapi_symsetkey(struct drbg_state *drbg,
307 const unsigned char *key);
308static int drbg_kcapi_sym(struct drbg_state *drbg, unsigned char *outval,
309 const struct drbg_string *in);
Stephan Mueller541af942014-05-31 15:44:17 +0200310static int drbg_init_sym_kernel(struct drbg_state *drbg);
311static int drbg_fini_sym_kernel(struct drbg_state *drbg);
Stephan Muellera07203f2016-06-14 07:35:37 +0200312static int drbg_kcapi_sym_ctr(struct drbg_state *drbg,
313 u8 *inbuf, u32 inbuflen,
314 u8 *outbuf, u32 outlen);
Stephan Müller43490e82018-07-20 19:42:01 +0200315#define DRBG_OUTSCRATCHLEN 256
Stephan Mueller541af942014-05-31 15:44:17 +0200316
317/* BCC function for CTR DRBG as defined in 10.4.3 */
318static int drbg_ctr_bcc(struct drbg_state *drbg,
319 unsigned char *out, const unsigned char *key,
Stephan Mueller8c987162014-06-28 21:58:24 +0200320 struct list_head *in)
Stephan Mueller541af942014-05-31 15:44:17 +0200321{
Stephan Mueller8c987162014-06-28 21:58:24 +0200322 int ret = 0;
323 struct drbg_string *curr = NULL;
Stephan Mueller541af942014-05-31 15:44:17 +0200324 struct drbg_string data;
Stephan Mueller8c987162014-06-28 21:58:24 +0200325 short cnt = 0;
Stephan Mueller541af942014-05-31 15:44:17 +0200326
327 drbg_string_fill(&data, out, drbg_blocklen(drbg));
328
Stephan Mueller541af942014-05-31 15:44:17 +0200329 /* 10.4.3 step 2 / 4 */
Stephan Muellered494d42016-05-31 13:11:57 +0200330 drbg_kcapi_symsetkey(drbg, key);
Stephan Mueller8c987162014-06-28 21:58:24 +0200331 list_for_each_entry(curr, in, list) {
332 const unsigned char *pos = curr->buf;
333 size_t len = curr->len;
Stephan Mueller541af942014-05-31 15:44:17 +0200334 /* 10.4.3 step 4.1 */
Stephan Mueller8c987162014-06-28 21:58:24 +0200335 while (len) {
336 /* 10.4.3 step 4.2 */
337 if (drbg_blocklen(drbg) == cnt) {
338 cnt = 0;
Stephan Muellered494d42016-05-31 13:11:57 +0200339 ret = drbg_kcapi_sym(drbg, out, &data);
Stephan Mueller8c987162014-06-28 21:58:24 +0200340 if (ret)
341 return ret;
Stephan Mueller541af942014-05-31 15:44:17 +0200342 }
Stephan Mueller8c987162014-06-28 21:58:24 +0200343 out[cnt] ^= *pos;
344 pos++;
345 cnt++;
346 len--;
Stephan Mueller541af942014-05-31 15:44:17 +0200347 }
Stephan Mueller541af942014-05-31 15:44:17 +0200348 }
Stephan Mueller8c987162014-06-28 21:58:24 +0200349 /* 10.4.3 step 4.2 for last block */
350 if (cnt)
Stephan Muellered494d42016-05-31 13:11:57 +0200351 ret = drbg_kcapi_sym(drbg, out, &data);
Stephan Mueller8c987162014-06-28 21:58:24 +0200352
353 return ret;
Stephan Mueller541af942014-05-31 15:44:17 +0200354}
355
356/*
357 * scratchpad usage: drbg_ctr_update is interlinked with drbg_ctr_df
358 * (and drbg_ctr_bcc, but this function does not need any temporary buffers),
359 * the scratchpad is used as follows:
360 * drbg_ctr_update:
361 * temp
362 * start: drbg->scratchpad
363 * length: drbg_statelen(drbg) + drbg_blocklen(drbg)
364 * note: the cipher writing into this variable works
365 * blocklen-wise. Now, when the statelen is not a multiple
366 * of blocklen, the generateion loop below "spills over"
367 * by at most blocklen. Thus, we need to give sufficient
368 * memory.
369 * df_data
370 * start: drbg->scratchpad +
371 * drbg_statelen(drbg) + drbg_blocklen(drbg)
372 * length: drbg_statelen(drbg)
373 *
374 * drbg_ctr_df:
375 * pad
376 * start: df_data + drbg_statelen(drbg)
377 * length: drbg_blocklen(drbg)
378 * iv
379 * start: pad + drbg_blocklen(drbg)
380 * length: drbg_blocklen(drbg)
381 * temp
382 * start: iv + drbg_blocklen(drbg)
Stephan Mueller8fecaad2014-07-01 17:08:48 +0200383 * length: drbg_satelen(drbg) + drbg_blocklen(drbg)
384 * note: temp is the buffer that the BCC function operates
385 * on. BCC operates blockwise. drbg_statelen(drbg)
386 * is sufficient when the DRBG state length is a multiple
387 * of the block size. For AES192 (and maybe other ciphers)
388 * this is not correct and the length for temp is
389 * insufficient (yes, that also means for such ciphers,
390 * the final output of all BCC rounds are truncated).
391 * Therefore, add drbg_blocklen(drbg) to cover all
392 * possibilities.
Stephan Mueller541af942014-05-31 15:44:17 +0200393 */
394
395/* Derivation Function for CTR DRBG as defined in 10.4.2 */
396static int drbg_ctr_df(struct drbg_state *drbg,
397 unsigned char *df_data, size_t bytes_to_return,
Stephan Mueller8c987162014-06-28 21:58:24 +0200398 struct list_head *seedlist)
Stephan Mueller541af942014-05-31 15:44:17 +0200399{
400 int ret = -EFAULT;
401 unsigned char L_N[8];
402 /* S3 is input */
403 struct drbg_string S1, S2, S4, cipherin;
Stephan Mueller8c987162014-06-28 21:58:24 +0200404 LIST_HEAD(bcc_list);
Stephan Mueller541af942014-05-31 15:44:17 +0200405 unsigned char *pad = df_data + drbg_statelen(drbg);
406 unsigned char *iv = pad + drbg_blocklen(drbg);
407 unsigned char *temp = iv + drbg_blocklen(drbg);
408 size_t padlen = 0;
409 unsigned int templen = 0;
410 /* 10.4.2 step 7 */
411 unsigned int i = 0;
412 /* 10.4.2 step 8 */
413 const unsigned char *K = (unsigned char *)
414 "\x00\x01\x02\x03\x04\x05\x06\x07"
415 "\x08\x09\x0a\x0b\x0c\x0d\x0e\x0f"
416 "\x10\x11\x12\x13\x14\x15\x16\x17"
417 "\x18\x19\x1a\x1b\x1c\x1d\x1e\x1f";
418 unsigned char *X;
419 size_t generated_len = 0;
420 size_t inputlen = 0;
Stephan Mueller8c987162014-06-28 21:58:24 +0200421 struct drbg_string *seed = NULL;
Stephan Mueller541af942014-05-31 15:44:17 +0200422
423 memset(pad, 0, drbg_blocklen(drbg));
424 memset(iv, 0, drbg_blocklen(drbg));
Stephan Mueller541af942014-05-31 15:44:17 +0200425
426 /* 10.4.2 step 1 is implicit as we work byte-wise */
427
428 /* 10.4.2 step 2 */
429 if ((512/8) < bytes_to_return)
430 return -EINVAL;
431
432 /* 10.4.2 step 2 -- calculate the entire length of all input data */
Stephan Mueller8c987162014-06-28 21:58:24 +0200433 list_for_each_entry(seed, seedlist, list)
434 inputlen += seed->len;
Stephan Mueller72f3e002014-08-17 17:37:34 +0200435 drbg_cpu_to_be32(inputlen, &L_N[0]);
Stephan Mueller541af942014-05-31 15:44:17 +0200436
437 /* 10.4.2 step 3 */
Stephan Mueller72f3e002014-08-17 17:37:34 +0200438 drbg_cpu_to_be32(bytes_to_return, &L_N[4]);
Stephan Mueller541af942014-05-31 15:44:17 +0200439
440 /* 10.4.2 step 5: length is L_N, input_string, one byte, padding */
441 padlen = (inputlen + sizeof(L_N) + 1) % (drbg_blocklen(drbg));
442 /* wrap the padlen appropriately */
443 if (padlen)
444 padlen = drbg_blocklen(drbg) - padlen;
445 /*
446 * pad / padlen contains the 0x80 byte and the following zero bytes.
447 * As the calculated padlen value only covers the number of zero
448 * bytes, this value has to be incremented by one for the 0x80 byte.
449 */
450 padlen++;
451 pad[0] = 0x80;
452
453 /* 10.4.2 step 4 -- first fill the linked list and then order it */
454 drbg_string_fill(&S1, iv, drbg_blocklen(drbg));
Stephan Mueller8c987162014-06-28 21:58:24 +0200455 list_add_tail(&S1.list, &bcc_list);
Stephan Mueller541af942014-05-31 15:44:17 +0200456 drbg_string_fill(&S2, L_N, sizeof(L_N));
Stephan Mueller8c987162014-06-28 21:58:24 +0200457 list_add_tail(&S2.list, &bcc_list);
458 list_splice_tail(seedlist, &bcc_list);
Stephan Mueller541af942014-05-31 15:44:17 +0200459 drbg_string_fill(&S4, pad, padlen);
Stephan Mueller8c987162014-06-28 21:58:24 +0200460 list_add_tail(&S4.list, &bcc_list);
Stephan Mueller541af942014-05-31 15:44:17 +0200461
462 /* 10.4.2 step 9 */
463 while (templen < (drbg_keylen(drbg) + (drbg_blocklen(drbg)))) {
464 /*
465 * 10.4.2 step 9.1 - the padding is implicit as the buffer
466 * holds zeros after allocation -- even the increment of i
467 * is irrelevant as the increment remains within length of i
468 */
Stephan Mueller72f3e002014-08-17 17:37:34 +0200469 drbg_cpu_to_be32(i, iv);
Stephan Mueller541af942014-05-31 15:44:17 +0200470 /* 10.4.2 step 9.2 -- BCC and concatenation with temp */
Stephan Mueller8c987162014-06-28 21:58:24 +0200471 ret = drbg_ctr_bcc(drbg, temp + templen, K, &bcc_list);
Stephan Mueller541af942014-05-31 15:44:17 +0200472 if (ret)
473 goto out;
474 /* 10.4.2 step 9.3 */
475 i++;
476 templen += drbg_blocklen(drbg);
477 }
478
479 /* 10.4.2 step 11 */
480 X = temp + (drbg_keylen(drbg));
481 drbg_string_fill(&cipherin, X, drbg_blocklen(drbg));
482
483 /* 10.4.2 step 12: overwriting of outval is implemented in next step */
484
485 /* 10.4.2 step 13 */
Stephan Muellered494d42016-05-31 13:11:57 +0200486 drbg_kcapi_symsetkey(drbg, temp);
Stephan Mueller541af942014-05-31 15:44:17 +0200487 while (generated_len < bytes_to_return) {
488 short blocklen = 0;
489 /*
490 * 10.4.2 step 13.1: the truncation of the key length is
491 * implicit as the key is only drbg_blocklen in size based on
492 * the implementation of the cipher function callback
493 */
Stephan Muellered494d42016-05-31 13:11:57 +0200494 ret = drbg_kcapi_sym(drbg, X, &cipherin);
Stephan Mueller541af942014-05-31 15:44:17 +0200495 if (ret)
496 goto out;
497 blocklen = (drbg_blocklen(drbg) <
498 (bytes_to_return - generated_len)) ?
499 drbg_blocklen(drbg) :
500 (bytes_to_return - generated_len);
501 /* 10.4.2 step 13.2 and 14 */
502 memcpy(df_data + generated_len, X, blocklen);
503 generated_len += blocklen;
504 }
505
506 ret = 0;
507
508out:
Herbert Xu1471f092015-01-05 10:44:09 +1100509 memset(iv, 0, drbg_blocklen(drbg));
Stephan Mueller8e0498d2015-04-17 14:54:08 +0200510 memset(temp, 0, drbg_statelen(drbg) + drbg_blocklen(drbg));
Herbert Xu1471f092015-01-05 10:44:09 +1100511 memset(pad, 0, drbg_blocklen(drbg));
Stephan Mueller541af942014-05-31 15:44:17 +0200512 return ret;
513}
514
Stephan Mueller72e7c252014-07-06 02:24:35 +0200515/*
516 * update function of CTR DRBG as defined in 10.2.1.2
517 *
518 * The reseed variable has an enhanced meaning compared to the update
519 * functions of the other DRBGs as follows:
520 * 0 => initial seed from initialization
521 * 1 => reseed via drbg_seed
522 * 2 => first invocation from drbg_ctr_update when addtl is present. In
523 * this case, the df_data scratchpad is not deleted so that it is
524 * available for another calls to prevent calling the DF function
525 * again.
526 * 3 => second invocation from drbg_ctr_update. When the update function
527 * was called with addtl, the df_data memory already contains the
528 * DFed addtl information and we do not need to call DF again.
529 */
Stephan Mueller8c987162014-06-28 21:58:24 +0200530static int drbg_ctr_update(struct drbg_state *drbg, struct list_head *seed,
531 int reseed)
Stephan Mueller541af942014-05-31 15:44:17 +0200532{
533 int ret = -EFAULT;
534 /* 10.2.1.2 step 1 */
535 unsigned char *temp = drbg->scratchpad;
536 unsigned char *df_data = drbg->scratchpad + drbg_statelen(drbg) +
537 drbg_blocklen(drbg);
Stephan Mueller541af942014-05-31 15:44:17 +0200538
Stephan Mueller72e7c252014-07-06 02:24:35 +0200539 if (3 > reseed)
540 memset(df_data, 0, drbg_statelen(drbg));
Stephan Mueller541af942014-05-31 15:44:17 +0200541
Stephan Mueller35591282016-06-14 07:34:13 +0200542 if (!reseed) {
543 /*
544 * The DRBG uses the CTR mode of the underlying AES cipher. The
545 * CTR mode increments the counter value after the AES operation
546 * but SP800-90A requires that the counter is incremented before
547 * the AES operation. Hence, we increment it at the time we set
548 * it by one.
549 */
550 crypto_inc(drbg->V, drbg_blocklen(drbg));
551
552 ret = crypto_skcipher_setkey(drbg->ctr_handle, drbg->C,
553 drbg_keylen(drbg));
554 if (ret)
555 goto out;
556 }
557
Stephan Mueller541af942014-05-31 15:44:17 +0200558 /* 10.2.1.3.2 step 2 and 10.2.1.4.2 step 2 */
Stephan Mueller8c987162014-06-28 21:58:24 +0200559 if (seed) {
560 ret = drbg_ctr_df(drbg, df_data, drbg_statelen(drbg), seed);
Stephan Mueller541af942014-05-31 15:44:17 +0200561 if (ret)
562 goto out;
563 }
564
Stephan Muellera07203f2016-06-14 07:35:37 +0200565 ret = drbg_kcapi_sym_ctr(drbg, df_data, drbg_statelen(drbg),
566 temp, drbg_statelen(drbg));
Stephan Mueller35591282016-06-14 07:34:13 +0200567 if (ret)
568 return ret;
Stephan Mueller541af942014-05-31 15:44:17 +0200569
Stephan Mueller541af942014-05-31 15:44:17 +0200570 /* 10.2.1.2 step 5 */
Stephan Mueller103eb3f2016-06-14 07:36:06 +0200571 ret = crypto_skcipher_setkey(drbg->ctr_handle, temp,
Stephan Mueller35591282016-06-14 07:34:13 +0200572 drbg_keylen(drbg));
573 if (ret)
574 goto out;
Stephan Mueller541af942014-05-31 15:44:17 +0200575 /* 10.2.1.2 step 6 */
576 memcpy(drbg->V, temp + drbg_keylen(drbg), drbg_blocklen(drbg));
Stephan Mueller35591282016-06-14 07:34:13 +0200577 /* See above: increment counter by one to compensate timing of CTR op */
578 crypto_inc(drbg->V, drbg_blocklen(drbg));
Stephan Mueller541af942014-05-31 15:44:17 +0200579 ret = 0;
580
581out:
Herbert Xu1471f092015-01-05 10:44:09 +1100582 memset(temp, 0, drbg_statelen(drbg) + drbg_blocklen(drbg));
Stephan Mueller72e7c252014-07-06 02:24:35 +0200583 if (2 != reseed)
Herbert Xu1471f092015-01-05 10:44:09 +1100584 memset(df_data, 0, drbg_statelen(drbg));
Stephan Mueller541af942014-05-31 15:44:17 +0200585 return ret;
586}
587
588/*
589 * scratchpad use: drbg_ctr_update is called independently from
590 * drbg_ctr_extract_bytes. Therefore, the scratchpad is reused
591 */
592/* Generate function of CTR DRBG as defined in 10.2.1.5.2 */
593static int drbg_ctr_generate(struct drbg_state *drbg,
594 unsigned char *buf, unsigned int buflen,
Stephan Mueller27e4de22014-07-06 02:25:36 +0200595 struct list_head *addtl)
Stephan Mueller541af942014-05-31 15:44:17 +0200596{
Stephan Mueller35591282016-06-14 07:34:13 +0200597 int ret;
598 int len = min_t(int, buflen, INT_MAX);
Stephan Mueller541af942014-05-31 15:44:17 +0200599
Stephan Mueller541af942014-05-31 15:44:17 +0200600 /* 10.2.1.5.2 step 2 */
Stephan Mueller27e4de22014-07-06 02:25:36 +0200601 if (addtl && !list_empty(addtl)) {
602 ret = drbg_ctr_update(drbg, addtl, 2);
Stephan Mueller541af942014-05-31 15:44:17 +0200603 if (ret)
604 return 0;
605 }
606
607 /* 10.2.1.5.2 step 4.1 */
Stephan Müller43490e82018-07-20 19:42:01 +0200608 ret = drbg_kcapi_sym_ctr(drbg, NULL, 0, buf, len);
Stephan Mueller35591282016-06-14 07:34:13 +0200609 if (ret)
610 return ret;
Stephan Mueller541af942014-05-31 15:44:17 +0200611
Stephan Mueller72e7c252014-07-06 02:24:35 +0200612 /* 10.2.1.5.2 step 6 */
613 ret = drbg_ctr_update(drbg, NULL, 3);
Stephan Mueller541af942014-05-31 15:44:17 +0200614 if (ret)
615 len = ret;
616
Stephan Mueller541af942014-05-31 15:44:17 +0200617 return len;
618}
619
Julia Lawalle4bc02a2015-12-07 21:36:57 +0100620static const struct drbg_state_ops drbg_ctr_ops = {
Stephan Mueller541af942014-05-31 15:44:17 +0200621 .update = drbg_ctr_update,
622 .generate = drbg_ctr_generate,
623 .crypto_init = drbg_init_sym_kernel,
624 .crypto_fini = drbg_fini_sym_kernel,
625};
626#endif /* CONFIG_CRYPTO_DRBG_CTR */
627
628/******************************************************************
629 * HMAC DRBG callback functions
630 ******************************************************************/
631
632#if defined(CONFIG_CRYPTO_DRBG_HASH) || defined(CONFIG_CRYPTO_DRBG_HMAC)
Stephan Mueller4218ebe2016-03-28 16:47:55 +0200633static int drbg_kcapi_hash(struct drbg_state *drbg, unsigned char *outval,
634 const struct list_head *in);
635static void drbg_kcapi_hmacsetkey(struct drbg_state *drbg,
636 const unsigned char *key);
Stephan Mueller541af942014-05-31 15:44:17 +0200637static int drbg_init_hash_kernel(struct drbg_state *drbg);
638static int drbg_fini_hash_kernel(struct drbg_state *drbg);
639#endif /* (CONFIG_CRYPTO_DRBG_HASH || CONFIG_CRYPTO_DRBG_HMAC) */
640
641#ifdef CONFIG_CRYPTO_DRBG_HMAC
Stephan Muellere25e47e2014-07-06 02:23:03 +0200642#define CRYPTO_DRBG_HMAC_STRING "HMAC "
Stephan Mueller0653a7c2014-11-25 09:28:43 +0100643MODULE_ALIAS_CRYPTO("drbg_pr_hmac_sha512");
644MODULE_ALIAS_CRYPTO("drbg_nopr_hmac_sha512");
645MODULE_ALIAS_CRYPTO("drbg_pr_hmac_sha384");
646MODULE_ALIAS_CRYPTO("drbg_nopr_hmac_sha384");
647MODULE_ALIAS_CRYPTO("drbg_pr_hmac_sha256");
648MODULE_ALIAS_CRYPTO("drbg_nopr_hmac_sha256");
649MODULE_ALIAS_CRYPTO("drbg_pr_hmac_sha1");
650MODULE_ALIAS_CRYPTO("drbg_nopr_hmac_sha1");
Stephan Mueller62b62b62014-11-04 03:08:09 +0100651
Stephan Mueller541af942014-05-31 15:44:17 +0200652/* update function of HMAC DRBG as defined in 10.1.2.2 */
Stephan Mueller8c987162014-06-28 21:58:24 +0200653static int drbg_hmac_update(struct drbg_state *drbg, struct list_head *seed,
654 int reseed)
Stephan Mueller541af942014-05-31 15:44:17 +0200655{
656 int ret = -EFAULT;
657 int i = 0;
Stephan Mueller8c987162014-06-28 21:58:24 +0200658 struct drbg_string seed1, seed2, vdata;
659 LIST_HEAD(seedlist);
660 LIST_HEAD(vdatalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200661
Stephan Mueller4218ebe2016-03-28 16:47:55 +0200662 if (!reseed) {
Stephan Muellerf072f0e2014-08-17 17:38:58 +0200663 /* 10.1.2.3 step 2 -- memset(0) of C is implicit with kzalloc */
Stephan Mueller541af942014-05-31 15:44:17 +0200664 memset(drbg->V, 1, drbg_statelen(drbg));
Stephan Mueller4218ebe2016-03-28 16:47:55 +0200665 drbg_kcapi_hmacsetkey(drbg, drbg->C);
666 }
Stephan Mueller541af942014-05-31 15:44:17 +0200667
668 drbg_string_fill(&seed1, drbg->V, drbg_statelen(drbg));
Stephan Mueller8c987162014-06-28 21:58:24 +0200669 list_add_tail(&seed1.list, &seedlist);
Stephan Mueller541af942014-05-31 15:44:17 +0200670 /* buffer of seed2 will be filled in for loop below with one byte */
671 drbg_string_fill(&seed2, NULL, 1);
Stephan Mueller8c987162014-06-28 21:58:24 +0200672 list_add_tail(&seed2.list, &seedlist);
Stephan Mueller541af942014-05-31 15:44:17 +0200673 /* input data of seed is allowed to be NULL at this point */
Stephan Mueller8c987162014-06-28 21:58:24 +0200674 if (seed)
675 list_splice_tail(seed, &seedlist);
Stephan Mueller541af942014-05-31 15:44:17 +0200676
Stephan Mueller8c987162014-06-28 21:58:24 +0200677 drbg_string_fill(&vdata, drbg->V, drbg_statelen(drbg));
678 list_add_tail(&vdata.list, &vdatalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200679 for (i = 2; 0 < i; i--) {
680 /* first round uses 0x0, second 0x1 */
681 unsigned char prefix = DRBG_PREFIX0;
682 if (1 == i)
683 prefix = DRBG_PREFIX1;
684 /* 10.1.2.2 step 1 and 4 -- concatenation and HMAC for key */
685 seed2.buf = &prefix;
Stephan Mueller4218ebe2016-03-28 16:47:55 +0200686 ret = drbg_kcapi_hash(drbg, drbg->C, &seedlist);
Stephan Mueller541af942014-05-31 15:44:17 +0200687 if (ret)
688 return ret;
Stephan Mueller4218ebe2016-03-28 16:47:55 +0200689 drbg_kcapi_hmacsetkey(drbg, drbg->C);
Stephan Mueller541af942014-05-31 15:44:17 +0200690
691 /* 10.1.2.2 step 2 and 5 -- HMAC for V */
Stephan Mueller4218ebe2016-03-28 16:47:55 +0200692 ret = drbg_kcapi_hash(drbg, drbg->V, &vdatalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200693 if (ret)
694 return ret;
695
696 /* 10.1.2.2 step 3 */
Stephan Mueller8c987162014-06-28 21:58:24 +0200697 if (!seed)
Stephan Mueller541af942014-05-31 15:44:17 +0200698 return ret;
699 }
700
701 return 0;
702}
703
704/* generate function of HMAC DRBG as defined in 10.1.2.5 */
705static int drbg_hmac_generate(struct drbg_state *drbg,
706 unsigned char *buf,
707 unsigned int buflen,
Stephan Mueller27e4de22014-07-06 02:25:36 +0200708 struct list_head *addtl)
Stephan Mueller541af942014-05-31 15:44:17 +0200709{
710 int len = 0;
711 int ret = 0;
712 struct drbg_string data;
Stephan Mueller8c987162014-06-28 21:58:24 +0200713 LIST_HEAD(datalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200714
715 /* 10.1.2.5 step 2 */
Stephan Mueller27e4de22014-07-06 02:25:36 +0200716 if (addtl && !list_empty(addtl)) {
717 ret = drbg_hmac_update(drbg, addtl, 1);
Stephan Mueller541af942014-05-31 15:44:17 +0200718 if (ret)
719 return ret;
720 }
721
722 drbg_string_fill(&data, drbg->V, drbg_statelen(drbg));
Stephan Mueller8c987162014-06-28 21:58:24 +0200723 list_add_tail(&data.list, &datalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200724 while (len < buflen) {
725 unsigned int outlen = 0;
726 /* 10.1.2.5 step 4.1 */
Stephan Mueller4218ebe2016-03-28 16:47:55 +0200727 ret = drbg_kcapi_hash(drbg, drbg->V, &datalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200728 if (ret)
729 return ret;
730 outlen = (drbg_blocklen(drbg) < (buflen - len)) ?
731 drbg_blocklen(drbg) : (buflen - len);
Stephan Mueller541af942014-05-31 15:44:17 +0200732
733 /* 10.1.2.5 step 4.2 */
734 memcpy(buf + len, drbg->V, outlen);
735 len += outlen;
736 }
737
738 /* 10.1.2.5 step 6 */
Stephan Mueller27e4de22014-07-06 02:25:36 +0200739 if (addtl && !list_empty(addtl))
740 ret = drbg_hmac_update(drbg, addtl, 1);
741 else
Stephan Mueller8c987162014-06-28 21:58:24 +0200742 ret = drbg_hmac_update(drbg, NULL, 1);
Stephan Mueller541af942014-05-31 15:44:17 +0200743 if (ret)
744 return ret;
745
746 return len;
747}
748
Julia Lawalle4bc02a2015-12-07 21:36:57 +0100749static const struct drbg_state_ops drbg_hmac_ops = {
Stephan Mueller541af942014-05-31 15:44:17 +0200750 .update = drbg_hmac_update,
751 .generate = drbg_hmac_generate,
752 .crypto_init = drbg_init_hash_kernel,
753 .crypto_fini = drbg_fini_hash_kernel,
Stephan Mueller541af942014-05-31 15:44:17 +0200754};
755#endif /* CONFIG_CRYPTO_DRBG_HMAC */
756
757/******************************************************************
758 * Hash DRBG callback functions
759 ******************************************************************/
760
761#ifdef CONFIG_CRYPTO_DRBG_HASH
Stephan Muellere25e47e2014-07-06 02:23:03 +0200762#define CRYPTO_DRBG_HASH_STRING "HASH "
Stephan Mueller0653a7c2014-11-25 09:28:43 +0100763MODULE_ALIAS_CRYPTO("drbg_pr_sha512");
764MODULE_ALIAS_CRYPTO("drbg_nopr_sha512");
765MODULE_ALIAS_CRYPTO("drbg_pr_sha384");
766MODULE_ALIAS_CRYPTO("drbg_nopr_sha384");
767MODULE_ALIAS_CRYPTO("drbg_pr_sha256");
768MODULE_ALIAS_CRYPTO("drbg_nopr_sha256");
769MODULE_ALIAS_CRYPTO("drbg_pr_sha1");
770MODULE_ALIAS_CRYPTO("drbg_nopr_sha1");
Stephan Mueller62b62b62014-11-04 03:08:09 +0100771
Stephan Mueller541af942014-05-31 15:44:17 +0200772/*
Stephan Mueller41a84982014-10-14 21:50:13 +0200773 * Increment buffer
774 *
775 * @dst buffer to increment
776 * @add value to add
777 */
778static inline void drbg_add_buf(unsigned char *dst, size_t dstlen,
779 const unsigned char *add, size_t addlen)
780{
781 /* implied: dstlen > addlen */
782 unsigned char *dstptr;
783 const unsigned char *addptr;
784 unsigned int remainder = 0;
785 size_t len = addlen;
786
787 dstptr = dst + (dstlen-1);
788 addptr = add + (addlen-1);
789 while (len) {
790 remainder += *dstptr + *addptr;
791 *dstptr = remainder & 0xff;
792 remainder >>= 8;
793 len--; dstptr--; addptr--;
794 }
795 len = dstlen - addlen;
796 while (len && remainder > 0) {
797 remainder = *dstptr + 1;
798 *dstptr = remainder & 0xff;
799 remainder >>= 8;
800 len--; dstptr--;
801 }
802}
803
804/*
Stephan Mueller541af942014-05-31 15:44:17 +0200805 * scratchpad usage: as drbg_hash_update and drbg_hash_df are used
806 * interlinked, the scratchpad is used as follows:
807 * drbg_hash_update
808 * start: drbg->scratchpad
809 * length: drbg_statelen(drbg)
810 * drbg_hash_df:
811 * start: drbg->scratchpad + drbg_statelen(drbg)
812 * length: drbg_blocklen(drbg)
813 *
814 * drbg_hash_process_addtl uses the scratchpad, but fully completes
815 * before either of the functions mentioned before are invoked. Therefore,
816 * drbg_hash_process_addtl does not need to be specifically considered.
817 */
818
819/* Derivation Function for Hash DRBG as defined in 10.4.1 */
820static int drbg_hash_df(struct drbg_state *drbg,
821 unsigned char *outval, size_t outlen,
Stephan Mueller8c987162014-06-28 21:58:24 +0200822 struct list_head *entropylist)
Stephan Mueller541af942014-05-31 15:44:17 +0200823{
824 int ret = 0;
825 size_t len = 0;
826 unsigned char input[5];
827 unsigned char *tmp = drbg->scratchpad + drbg_statelen(drbg);
Stephan Mueller8c987162014-06-28 21:58:24 +0200828 struct drbg_string data;
Stephan Mueller541af942014-05-31 15:44:17 +0200829
Stephan Mueller541af942014-05-31 15:44:17 +0200830 /* 10.4.1 step 3 */
831 input[0] = 1;
Stephan Mueller72f3e002014-08-17 17:37:34 +0200832 drbg_cpu_to_be32((outlen * 8), &input[1]);
Stephan Mueller541af942014-05-31 15:44:17 +0200833
834 /* 10.4.1 step 4.1 -- concatenation of data for input into hash */
Stephan Mueller8c987162014-06-28 21:58:24 +0200835 drbg_string_fill(&data, input, 5);
836 list_add(&data.list, entropylist);
Stephan Mueller541af942014-05-31 15:44:17 +0200837
838 /* 10.4.1 step 4 */
839 while (len < outlen) {
840 short blocklen = 0;
841 /* 10.4.1 step 4.1 */
Stephan Mueller4218ebe2016-03-28 16:47:55 +0200842 ret = drbg_kcapi_hash(drbg, tmp, entropylist);
Stephan Mueller541af942014-05-31 15:44:17 +0200843 if (ret)
844 goto out;
845 /* 10.4.1 step 4.2 */
846 input[0]++;
847 blocklen = (drbg_blocklen(drbg) < (outlen - len)) ?
848 drbg_blocklen(drbg) : (outlen - len);
849 memcpy(outval + len, tmp, blocklen);
850 len += blocklen;
851 }
852
853out:
Herbert Xu1471f092015-01-05 10:44:09 +1100854 memset(tmp, 0, drbg_blocklen(drbg));
Stephan Mueller541af942014-05-31 15:44:17 +0200855 return ret;
856}
857
858/* update function for Hash DRBG as defined in 10.1.1.2 / 10.1.1.3 */
Stephan Mueller8c987162014-06-28 21:58:24 +0200859static int drbg_hash_update(struct drbg_state *drbg, struct list_head *seed,
Stephan Mueller541af942014-05-31 15:44:17 +0200860 int reseed)
861{
862 int ret = 0;
863 struct drbg_string data1, data2;
Stephan Mueller8c987162014-06-28 21:58:24 +0200864 LIST_HEAD(datalist);
865 LIST_HEAD(datalist2);
Stephan Mueller541af942014-05-31 15:44:17 +0200866 unsigned char *V = drbg->scratchpad;
867 unsigned char prefix = DRBG_PREFIX1;
868
Stephan Mueller541af942014-05-31 15:44:17 +0200869 if (!seed)
870 return -EINVAL;
871
872 if (reseed) {
873 /* 10.1.1.3 step 1 */
874 memcpy(V, drbg->V, drbg_statelen(drbg));
875 drbg_string_fill(&data1, &prefix, 1);
Stephan Mueller8c987162014-06-28 21:58:24 +0200876 list_add_tail(&data1.list, &datalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200877 drbg_string_fill(&data2, V, drbg_statelen(drbg));
Stephan Mueller8c987162014-06-28 21:58:24 +0200878 list_add_tail(&data2.list, &datalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200879 }
Stephan Mueller8c987162014-06-28 21:58:24 +0200880 list_splice_tail(seed, &datalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200881
882 /* 10.1.1.2 / 10.1.1.3 step 2 and 3 */
Stephan Mueller8c987162014-06-28 21:58:24 +0200883 ret = drbg_hash_df(drbg, drbg->V, drbg_statelen(drbg), &datalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200884 if (ret)
885 goto out;
886
887 /* 10.1.1.2 / 10.1.1.3 step 4 */
888 prefix = DRBG_PREFIX0;
889 drbg_string_fill(&data1, &prefix, 1);
Stephan Mueller8c987162014-06-28 21:58:24 +0200890 list_add_tail(&data1.list, &datalist2);
Stephan Mueller541af942014-05-31 15:44:17 +0200891 drbg_string_fill(&data2, drbg->V, drbg_statelen(drbg));
Stephan Mueller8c987162014-06-28 21:58:24 +0200892 list_add_tail(&data2.list, &datalist2);
Stephan Mueller541af942014-05-31 15:44:17 +0200893 /* 10.1.1.2 / 10.1.1.3 step 4 */
Stephan Mueller8c987162014-06-28 21:58:24 +0200894 ret = drbg_hash_df(drbg, drbg->C, drbg_statelen(drbg), &datalist2);
Stephan Mueller541af942014-05-31 15:44:17 +0200895
896out:
Herbert Xu1471f092015-01-05 10:44:09 +1100897 memset(drbg->scratchpad, 0, drbg_statelen(drbg));
Stephan Mueller541af942014-05-31 15:44:17 +0200898 return ret;
899}
900
901/* processing of additional information string for Hash DRBG */
902static int drbg_hash_process_addtl(struct drbg_state *drbg,
Stephan Mueller27e4de22014-07-06 02:25:36 +0200903 struct list_head *addtl)
Stephan Mueller541af942014-05-31 15:44:17 +0200904{
905 int ret = 0;
906 struct drbg_string data1, data2;
Stephan Mueller8c987162014-06-28 21:58:24 +0200907 LIST_HEAD(datalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200908 unsigned char prefix = DRBG_PREFIX2;
909
Stephan Mueller541af942014-05-31 15:44:17 +0200910 /* 10.1.1.4 step 2 */
Stephan Mueller27e4de22014-07-06 02:25:36 +0200911 if (!addtl || list_empty(addtl))
Stephan Mueller541af942014-05-31 15:44:17 +0200912 return 0;
913
914 /* 10.1.1.4 step 2a */
915 drbg_string_fill(&data1, &prefix, 1);
916 drbg_string_fill(&data2, drbg->V, drbg_statelen(drbg));
Stephan Mueller8c987162014-06-28 21:58:24 +0200917 list_add_tail(&data1.list, &datalist);
918 list_add_tail(&data2.list, &datalist);
Stephan Mueller27e4de22014-07-06 02:25:36 +0200919 list_splice_tail(addtl, &datalist);
Stephan Mueller4218ebe2016-03-28 16:47:55 +0200920 ret = drbg_kcapi_hash(drbg, drbg->scratchpad, &datalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200921 if (ret)
922 goto out;
923
924 /* 10.1.1.4 step 2b */
925 drbg_add_buf(drbg->V, drbg_statelen(drbg),
926 drbg->scratchpad, drbg_blocklen(drbg));
927
928out:
Herbert Xu1471f092015-01-05 10:44:09 +1100929 memset(drbg->scratchpad, 0, drbg_blocklen(drbg));
Stephan Mueller541af942014-05-31 15:44:17 +0200930 return ret;
931}
932
933/* Hashgen defined in 10.1.1.4 */
934static int drbg_hash_hashgen(struct drbg_state *drbg,
935 unsigned char *buf,
936 unsigned int buflen)
937{
938 int len = 0;
939 int ret = 0;
940 unsigned char *src = drbg->scratchpad;
941 unsigned char *dst = drbg->scratchpad + drbg_statelen(drbg);
942 struct drbg_string data;
Stephan Mueller8c987162014-06-28 21:58:24 +0200943 LIST_HEAD(datalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200944
Stephan Mueller541af942014-05-31 15:44:17 +0200945 /* 10.1.1.4 step hashgen 2 */
946 memcpy(src, drbg->V, drbg_statelen(drbg));
947
948 drbg_string_fill(&data, src, drbg_statelen(drbg));
Stephan Mueller8c987162014-06-28 21:58:24 +0200949 list_add_tail(&data.list, &datalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200950 while (len < buflen) {
951 unsigned int outlen = 0;
952 /* 10.1.1.4 step hashgen 4.1 */
Stephan Mueller4218ebe2016-03-28 16:47:55 +0200953 ret = drbg_kcapi_hash(drbg, dst, &datalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200954 if (ret) {
955 len = ret;
956 goto out;
957 }
958 outlen = (drbg_blocklen(drbg) < (buflen - len)) ?
959 drbg_blocklen(drbg) : (buflen - len);
Stephan Mueller541af942014-05-31 15:44:17 +0200960 /* 10.1.1.4 step hashgen 4.2 */
961 memcpy(buf + len, dst, outlen);
962 len += outlen;
963 /* 10.1.1.4 hashgen step 4.3 */
964 if (len < buflen)
Stephan Mueller41a84982014-10-14 21:50:13 +0200965 crypto_inc(src, drbg_statelen(drbg));
Stephan Mueller541af942014-05-31 15:44:17 +0200966 }
967
968out:
Herbert Xu1471f092015-01-05 10:44:09 +1100969 memset(drbg->scratchpad, 0,
Stephan Mueller541af942014-05-31 15:44:17 +0200970 (drbg_statelen(drbg) + drbg_blocklen(drbg)));
971 return len;
972}
973
974/* generate function for Hash DRBG as defined in 10.1.1.4 */
975static int drbg_hash_generate(struct drbg_state *drbg,
976 unsigned char *buf, unsigned int buflen,
Stephan Mueller27e4de22014-07-06 02:25:36 +0200977 struct list_head *addtl)
Stephan Mueller541af942014-05-31 15:44:17 +0200978{
979 int len = 0;
980 int ret = 0;
Stephan Mueller72f3e002014-08-17 17:37:34 +0200981 union {
982 unsigned char req[8];
Stephan Mueller7c8ae032014-08-26 09:32:24 +0200983 __be64 req_int;
Stephan Mueller72f3e002014-08-17 17:37:34 +0200984 } u;
Stephan Mueller541af942014-05-31 15:44:17 +0200985 unsigned char prefix = DRBG_PREFIX3;
986 struct drbg_string data1, data2;
Stephan Mueller8c987162014-06-28 21:58:24 +0200987 LIST_HEAD(datalist);
Stephan Mueller541af942014-05-31 15:44:17 +0200988
989 /* 10.1.1.4 step 2 */
990 ret = drbg_hash_process_addtl(drbg, addtl);
991 if (ret)
992 return ret;
993 /* 10.1.1.4 step 3 */
994 len = drbg_hash_hashgen(drbg, buf, buflen);
995
996 /* this is the value H as documented in 10.1.1.4 */
Stephan Mueller541af942014-05-31 15:44:17 +0200997 /* 10.1.1.4 step 4 */
998 drbg_string_fill(&data1, &prefix, 1);
Stephan Mueller8c987162014-06-28 21:58:24 +0200999 list_add_tail(&data1.list, &datalist);
Stephan Mueller541af942014-05-31 15:44:17 +02001000 drbg_string_fill(&data2, drbg->V, drbg_statelen(drbg));
Stephan Mueller8c987162014-06-28 21:58:24 +02001001 list_add_tail(&data2.list, &datalist);
Stephan Mueller4218ebe2016-03-28 16:47:55 +02001002 ret = drbg_kcapi_hash(drbg, drbg->scratchpad, &datalist);
Stephan Mueller541af942014-05-31 15:44:17 +02001003 if (ret) {
1004 len = ret;
1005 goto out;
1006 }
1007
1008 /* 10.1.1.4 step 5 */
1009 drbg_add_buf(drbg->V, drbg_statelen(drbg),
1010 drbg->scratchpad, drbg_blocklen(drbg));
1011 drbg_add_buf(drbg->V, drbg_statelen(drbg),
1012 drbg->C, drbg_statelen(drbg));
Stephan Mueller72f3e002014-08-17 17:37:34 +02001013 u.req_int = cpu_to_be64(drbg->reseed_ctr);
1014 drbg_add_buf(drbg->V, drbg_statelen(drbg), u.req, 8);
Stephan Mueller541af942014-05-31 15:44:17 +02001015
1016out:
Herbert Xu1471f092015-01-05 10:44:09 +11001017 memset(drbg->scratchpad, 0, drbg_blocklen(drbg));
Stephan Mueller541af942014-05-31 15:44:17 +02001018 return len;
1019}
1020
1021/*
1022 * scratchpad usage: as update and generate are used isolated, both
1023 * can use the scratchpad
1024 */
Julia Lawalle4bc02a2015-12-07 21:36:57 +01001025static const struct drbg_state_ops drbg_hash_ops = {
Stephan Mueller541af942014-05-31 15:44:17 +02001026 .update = drbg_hash_update,
1027 .generate = drbg_hash_generate,
1028 .crypto_init = drbg_init_hash_kernel,
1029 .crypto_fini = drbg_fini_hash_kernel,
1030};
1031#endif /* CONFIG_CRYPTO_DRBG_HASH */
1032
1033/******************************************************************
1034 * Functions common for DRBG implementations
1035 ******************************************************************/
1036
Stephan Mueller3d6a5f72015-05-25 15:09:14 +02001037static inline int __drbg_seed(struct drbg_state *drbg, struct list_head *seed,
1038 int reseed)
1039{
1040 int ret = drbg->d_ops->update(drbg, seed, reseed);
1041
1042 if (ret)
1043 return ret;
1044
1045 drbg->seeded = true;
1046 /* 10.1.1.2 / 10.1.1.3 step 5 */
1047 drbg->reseed_ctr = 1;
1048
1049 return ret;
1050}
1051
Stephan Muellerdb07cd22019-05-08 16:19:24 +02001052static inline int drbg_get_random_bytes(struct drbg_state *drbg,
1053 unsigned char *entropy,
1054 unsigned int entropylen)
1055{
1056 int ret;
1057
1058 do {
1059 get_random_bytes(entropy, entropylen);
1060 ret = drbg_fips_continuous_test(drbg, entropy);
1061 if (ret && ret != -EAGAIN)
1062 return ret;
1063 } while (ret);
1064
1065 return 0;
1066}
1067
Stephan Mueller4c787992015-05-25 15:09:36 +02001068static void drbg_async_seed(struct work_struct *work)
1069{
1070 struct drbg_string data;
1071 LIST_HEAD(seedlist);
1072 struct drbg_state *drbg = container_of(work, struct drbg_state,
1073 seed_work);
Stephan Mueller57225e62015-06-09 21:55:38 +08001074 unsigned int entropylen = drbg_sec_strength(drbg->core->flags);
1075 unsigned char entropy[32];
Stephan Muellerdb07cd22019-05-08 16:19:24 +02001076 int ret;
Stephan Mueller4c787992015-05-25 15:09:36 +02001077
Stephan Mueller57225e62015-06-09 21:55:38 +08001078 BUG_ON(!entropylen);
1079 BUG_ON(entropylen > sizeof(entropy));
Stephan Mueller4c787992015-05-25 15:09:36 +02001080
Stephan Mueller57225e62015-06-09 21:55:38 +08001081 drbg_string_fill(&data, entropy, entropylen);
Stephan Mueller4c787992015-05-25 15:09:36 +02001082 list_add_tail(&data.list, &seedlist);
Stephan Mueller57225e62015-06-09 21:55:38 +08001083
Stephan Mueller4c787992015-05-25 15:09:36 +02001084 mutex_lock(&drbg->drbg_mutex);
Stephan Mueller57225e62015-06-09 21:55:38 +08001085
Stephan Muellerdb07cd22019-05-08 16:19:24 +02001086 ret = drbg_get_random_bytes(drbg, entropy, entropylen);
1087 if (ret)
1088 goto unlock;
1089
Stephan Mueller57225e62015-06-09 21:55:38 +08001090 /* Set seeded to false so that if __drbg_seed fails the
1091 * next generate call will trigger a reseed.
1092 */
1093 drbg->seeded = false;
1094
1095 __drbg_seed(drbg, &seedlist, true);
1096
Stephan Mueller42ea5072015-06-10 03:33:37 +02001097 if (drbg->seeded)
1098 drbg->reseed_threshold = drbg_max_requests(drbg);
1099
Stephan Muellerdb07cd22019-05-08 16:19:24 +02001100unlock:
Stephan Mueller4c787992015-05-25 15:09:36 +02001101 mutex_unlock(&drbg->drbg_mutex);
Stephan Mueller57225e62015-06-09 21:55:38 +08001102
1103 memzero_explicit(entropy, entropylen);
Stephan Mueller4c787992015-05-25 15:09:36 +02001104}
1105
Stephan Mueller541af942014-05-31 15:44:17 +02001106/*
1107 * Seeding or reseeding of the DRBG
1108 *
1109 * @drbg: DRBG state struct
1110 * @pers: personalization / additional information buffer
1111 * @reseed: 0 for initial seed process, 1 for reseeding
1112 *
1113 * return:
1114 * 0 on success
1115 * error value otherwise
1116 */
1117static int drbg_seed(struct drbg_state *drbg, struct drbg_string *pers,
1118 bool reseed)
1119{
Stephan Mueller57225e62015-06-09 21:55:38 +08001120 int ret;
1121 unsigned char entropy[((32 + 16) * 2)];
1122 unsigned int entropylen = drbg_sec_strength(drbg->core->flags);
Stephan Mueller541af942014-05-31 15:44:17 +02001123 struct drbg_string data1;
Stephan Mueller8c987162014-06-28 21:58:24 +02001124 LIST_HEAD(seedlist);
Stephan Mueller541af942014-05-31 15:44:17 +02001125
1126 /* 9.1 / 9.2 / 9.3.1 step 3 */
1127 if (pers && pers->len > (drbg_max_addtl(drbg))) {
Stephan Muellera9089572014-07-06 02:24:03 +02001128 pr_devel("DRBG: personalization string too long %zu\n",
Stephan Mueller541af942014-05-31 15:44:17 +02001129 pers->len);
1130 return -EINVAL;
1131 }
1132
Herbert Xu8fded592015-04-21 10:46:41 +08001133 if (list_empty(&drbg->test_data.list)) {
1134 drbg_string_fill(&data1, drbg->test_data.buf,
1135 drbg->test_data.len);
Stephan Mueller541af942014-05-31 15:44:17 +02001136 pr_devel("DRBG: using test entropy\n");
1137 } else {
Stephan Mueller57225e62015-06-09 21:55:38 +08001138 /*
1139 * Gather entropy equal to the security strength of the DRBG.
1140 * With a derivation function, a nonce is required in addition
1141 * to the entropy. A nonce must be at least 1/2 of the security
1142 * strength of the DRBG in size. Thus, entropy + nonce is 3/2
1143 * of the strength. The consideration of a nonce is only
1144 * applicable during initial seeding.
1145 */
1146 BUG_ON(!entropylen);
1147 if (!reseed)
1148 entropylen = ((entropylen + 1) / 2) * 3;
1149 BUG_ON((entropylen * 2) > sizeof(entropy));
Stephan Muellerb8ec5ba2015-05-25 15:09:59 +02001150
Stephan Mueller57225e62015-06-09 21:55:38 +08001151 /* Get seed from in-kernel /dev/urandom */
Stephan Muellerdb07cd22019-05-08 16:19:24 +02001152 ret = drbg_get_random_bytes(drbg, entropy, entropylen);
1153 if (ret)
1154 goto out;
Stephan Mueller57225e62015-06-09 21:55:38 +08001155
1156 if (!drbg->jent) {
1157 drbg_string_fill(&data1, entropy, entropylen);
1158 pr_devel("DRBG: (re)seeding with %u bytes of entropy\n",
1159 entropylen);
Stephan Muellerb8ec5ba2015-05-25 15:09:59 +02001160 } else {
Stephan Mueller57225e62015-06-09 21:55:38 +08001161 /* Get seed from Jitter RNG */
1162 ret = crypto_rng_get_bytes(drbg->jent,
1163 entropy + entropylen,
1164 entropylen);
1165 if (ret) {
1166 pr_devel("DRBG: jent failed with %d\n", ret);
Stephan Müller97f26502020-04-17 21:34:03 +02001167
1168 /*
1169 * Do not treat the transient failure of the
1170 * Jitter RNG as an error that needs to be
1171 * reported. The combined number of the
1172 * maximum reseed threshold times the maximum
1173 * number of Jitter RNG transient errors is
1174 * less than the reseed threshold required by
1175 * SP800-90A allowing us to treat the
1176 * transient errors as such.
1177 *
1178 * However, we mandate that at least the first
1179 * seeding operation must succeed with the
1180 * Jitter RNG.
1181 */
1182 if (!reseed || ret != -EAGAIN)
1183 goto out;
Stephan Mueller57225e62015-06-09 21:55:38 +08001184 }
1185
1186 drbg_string_fill(&data1, entropy, entropylen * 2);
1187 pr_devel("DRBG: (re)seeding with %u bytes of entropy\n",
1188 entropylen * 2);
Stephan Muellerb8ec5ba2015-05-25 15:09:59 +02001189 }
Stephan Mueller541af942014-05-31 15:44:17 +02001190 }
Stephan Mueller8c987162014-06-28 21:58:24 +02001191 list_add_tail(&data1.list, &seedlist);
Stephan Mueller541af942014-05-31 15:44:17 +02001192
1193 /*
1194 * concatenation of entropy with personalization str / addtl input)
1195 * the variable pers is directly handed in by the caller, so check its
1196 * contents whether it is appropriate
1197 */
Stephan Mueller8c987162014-06-28 21:58:24 +02001198 if (pers && pers->buf && 0 < pers->len) {
1199 list_add_tail(&pers->list, &seedlist);
Stephan Mueller541af942014-05-31 15:44:17 +02001200 pr_devel("DRBG: using personalization string\n");
1201 }
1202
Stephan Muellere6c02442014-08-17 17:39:31 +02001203 if (!reseed) {
1204 memset(drbg->V, 0, drbg_statelen(drbg));
1205 memset(drbg->C, 0, drbg_statelen(drbg));
1206 }
1207
Stephan Mueller3d6a5f72015-05-25 15:09:14 +02001208 ret = __drbg_seed(drbg, &seedlist, reseed);
1209
Stephan Muellerdb07cd22019-05-08 16:19:24 +02001210out:
Stephan Mueller57225e62015-06-09 21:55:38 +08001211 memzero_explicit(entropy, entropylen * 2);
Stephan Mueller541af942014-05-31 15:44:17 +02001212
Stephan Mueller541af942014-05-31 15:44:17 +02001213 return ret;
1214}
1215
1216/* Free all substructures in a DRBG state without the DRBG state structure */
1217static inline void drbg_dealloc_state(struct drbg_state *drbg)
1218{
1219 if (!drbg)
1220 return;
Stephan Muellerbd6227a2017-09-14 17:10:28 +02001221 kzfree(drbg->Vbuf);
Stephan Muellereea0d3e2018-04-12 08:40:55 +02001222 drbg->Vbuf = NULL;
Stephan Muellerbd6227a2017-09-14 17:10:28 +02001223 drbg->V = NULL;
1224 kzfree(drbg->Cbuf);
Stephan Muellereea0d3e2018-04-12 08:40:55 +02001225 drbg->Cbuf = NULL;
Stephan Muellerbd6227a2017-09-14 17:10:28 +02001226 drbg->C = NULL;
Stephan Mueller3cfc3b92016-06-14 07:35:13 +02001227 kzfree(drbg->scratchpadbuf);
1228 drbg->scratchpadbuf = NULL;
Stephan Mueller541af942014-05-31 15:44:17 +02001229 drbg->reseed_ctr = 0;
Herbert Xu2a57e422015-04-20 11:29:15 +08001230 drbg->d_ops = NULL;
1231 drbg->core = NULL;
Stephan Muellerdb07cd22019-05-08 16:19:24 +02001232 if (IS_ENABLED(CONFIG_CRYPTO_FIPS)) {
1233 kzfree(drbg->prev);
1234 drbg->prev = NULL;
1235 drbg->fips_primed = false;
1236 }
Stephan Mueller541af942014-05-31 15:44:17 +02001237}
1238
1239/*
1240 * Allocate all sub-structures for a DRBG state.
1241 * The DRBG state structure must already be allocated.
1242 */
1243static inline int drbg_alloc_state(struct drbg_state *drbg)
1244{
1245 int ret = -ENOMEM;
1246 unsigned int sb_size = 0;
1247
Herbert Xu2a57e422015-04-20 11:29:15 +08001248 switch (drbg->core->flags & DRBG_TYPE_MASK) {
1249#ifdef CONFIG_CRYPTO_DRBG_HMAC
1250 case DRBG_HMAC:
1251 drbg->d_ops = &drbg_hmac_ops;
1252 break;
1253#endif /* CONFIG_CRYPTO_DRBG_HMAC */
1254#ifdef CONFIG_CRYPTO_DRBG_HASH
1255 case DRBG_HASH:
1256 drbg->d_ops = &drbg_hash_ops;
1257 break;
1258#endif /* CONFIG_CRYPTO_DRBG_HASH */
1259#ifdef CONFIG_CRYPTO_DRBG_CTR
1260 case DRBG_CTR:
1261 drbg->d_ops = &drbg_ctr_ops;
1262 break;
1263#endif /* CONFIG_CRYPTO_DRBG_CTR */
1264 default:
1265 ret = -EOPNOTSUPP;
1266 goto err;
1267 }
1268
Stephan Mueller3cfc3b92016-06-14 07:35:13 +02001269 ret = drbg->d_ops->crypto_init(drbg);
1270 if (ret < 0)
Stephan Mueller541af942014-05-31 15:44:17 +02001271 goto err;
Stephan Mueller3cfc3b92016-06-14 07:35:13 +02001272
1273 drbg->Vbuf = kmalloc(drbg_statelen(drbg) + ret, GFP_KERNEL);
Wei Yongjun1a45d7e2016-08-20 15:06:51 +00001274 if (!drbg->Vbuf) {
1275 ret = -ENOMEM;
Stephan Mueller3cfc3b92016-06-14 07:35:13 +02001276 goto fini;
Wei Yongjun1a45d7e2016-08-20 15:06:51 +00001277 }
Stephan Mueller3cfc3b92016-06-14 07:35:13 +02001278 drbg->V = PTR_ALIGN(drbg->Vbuf, ret + 1);
1279 drbg->Cbuf = kmalloc(drbg_statelen(drbg) + ret, GFP_KERNEL);
Wei Yongjun1a45d7e2016-08-20 15:06:51 +00001280 if (!drbg->Cbuf) {
1281 ret = -ENOMEM;
Stephan Mueller3cfc3b92016-06-14 07:35:13 +02001282 goto fini;
Wei Yongjun1a45d7e2016-08-20 15:06:51 +00001283 }
Stephan Mueller3cfc3b92016-06-14 07:35:13 +02001284 drbg->C = PTR_ALIGN(drbg->Cbuf, ret + 1);
Stephan Mueller541af942014-05-31 15:44:17 +02001285 /* scratchpad is only generated for CTR and Hash */
1286 if (drbg->core->flags & DRBG_HMAC)
1287 sb_size = 0;
1288 else if (drbg->core->flags & DRBG_CTR)
1289 sb_size = drbg_statelen(drbg) + drbg_blocklen(drbg) + /* temp */
1290 drbg_statelen(drbg) + /* df_data */
1291 drbg_blocklen(drbg) + /* pad */
1292 drbg_blocklen(drbg) + /* iv */
Stephan Mueller8fecaad2014-07-01 17:08:48 +02001293 drbg_statelen(drbg) + drbg_blocklen(drbg); /* temp */
Stephan Mueller541af942014-05-31 15:44:17 +02001294 else
1295 sb_size = drbg_statelen(drbg) + drbg_blocklen(drbg);
1296
1297 if (0 < sb_size) {
Stephan Mueller3cfc3b92016-06-14 07:35:13 +02001298 drbg->scratchpadbuf = kzalloc(sb_size + ret, GFP_KERNEL);
Wei Yongjun1a45d7e2016-08-20 15:06:51 +00001299 if (!drbg->scratchpadbuf) {
1300 ret = -ENOMEM;
Stephan Mueller3cfc3b92016-06-14 07:35:13 +02001301 goto fini;
Wei Yongjun1a45d7e2016-08-20 15:06:51 +00001302 }
Stephan Mueller3cfc3b92016-06-14 07:35:13 +02001303 drbg->scratchpad = PTR_ALIGN(drbg->scratchpadbuf, ret + 1);
Stephan Mueller541af942014-05-31 15:44:17 +02001304 }
Stephan Mueller3d6a5f72015-05-25 15:09:14 +02001305
Stephan Muellerdb07cd22019-05-08 16:19:24 +02001306 if (IS_ENABLED(CONFIG_CRYPTO_FIPS)) {
1307 drbg->prev = kzalloc(drbg_sec_strength(drbg->core->flags),
1308 GFP_KERNEL);
1309 if (!drbg->prev)
1310 goto fini;
1311 drbg->fips_primed = false;
1312 }
1313
Stephan Mueller541af942014-05-31 15:44:17 +02001314 return 0;
1315
Stephan Mueller3cfc3b92016-06-14 07:35:13 +02001316fini:
1317 drbg->d_ops->crypto_fini(drbg);
Stephan Mueller541af942014-05-31 15:44:17 +02001318err:
1319 drbg_dealloc_state(drbg);
1320 return ret;
1321}
1322
Stephan Mueller541af942014-05-31 15:44:17 +02001323/*************************************************************************
1324 * DRBG interface functions
1325 *************************************************************************/
1326
1327/*
1328 * DRBG generate function as required by SP800-90A - this function
1329 * generates random numbers
1330 *
1331 * @drbg DRBG state handle
1332 * @buf Buffer where to store the random numbers -- the buffer must already
1333 * be pre-allocated by caller
1334 * @buflen Length of output buffer - this value defines the number of random
1335 * bytes pulled from DRBG
1336 * @addtl Additional input that is mixed into state, may be NULL -- note
1337 * the entropy is pulled by the DRBG internally unconditionally
1338 * as defined in SP800-90A. The additional input is mixed into
1339 * the state in addition to the pulled entropy.
1340 *
Stephan Muellercde001e2015-03-06 08:26:31 +01001341 * return: 0 when all bytes are generated; < 0 in case of an error
Stephan Mueller541af942014-05-31 15:44:17 +02001342 */
1343static int drbg_generate(struct drbg_state *drbg,
1344 unsigned char *buf, unsigned int buflen,
1345 struct drbg_string *addtl)
1346{
1347 int len = 0;
Stephan Mueller27e4de22014-07-06 02:25:36 +02001348 LIST_HEAD(addtllist);
Stephan Mueller541af942014-05-31 15:44:17 +02001349
Herbert Xu2a57e422015-04-20 11:29:15 +08001350 if (!drbg->core) {
1351 pr_devel("DRBG: not yet seeded\n");
1352 return -EINVAL;
1353 }
Stephan Mueller541af942014-05-31 15:44:17 +02001354 if (0 == buflen || !buf) {
1355 pr_devel("DRBG: no output buffer provided\n");
1356 return -EINVAL;
1357 }
1358 if (addtl && NULL == addtl->buf && 0 < addtl->len) {
1359 pr_devel("DRBG: wrong format of additional information\n");
1360 return -EINVAL;
1361 }
1362
Stephan Mueller541af942014-05-31 15:44:17 +02001363 /* 9.3.1 step 2 */
1364 len = -EINVAL;
Stephan Mueller76899a42015-04-18 19:36:17 +02001365 if (buflen > (drbg_max_request_bytes(drbg))) {
Stephan Mueller541af942014-05-31 15:44:17 +02001366 pr_devel("DRBG: requested random numbers too large %u\n",
1367 buflen);
1368 goto err;
1369 }
1370
1371 /* 9.3.1 step 3 is implicit with the chosen DRBG */
1372
1373 /* 9.3.1 step 4 */
Stephan Mueller76899a42015-04-18 19:36:17 +02001374 if (addtl && addtl->len > (drbg_max_addtl(drbg))) {
Stephan Mueller541af942014-05-31 15:44:17 +02001375 pr_devel("DRBG: additional information string too long %zu\n",
1376 addtl->len);
1377 goto err;
1378 }
1379 /* 9.3.1 step 5 is implicit with the chosen DRBG */
1380
1381 /*
1382 * 9.3.1 step 6 and 9 supplemented by 9.3.2 step c is implemented
1383 * here. The spec is a bit convoluted here, we make it simpler.
1384 */
Stephan Mueller42ea5072015-06-10 03:33:37 +02001385 if (drbg->reseed_threshold < drbg->reseed_ctr)
Stephan Mueller76899a42015-04-18 19:36:17 +02001386 drbg->seeded = false;
Stephan Mueller541af942014-05-31 15:44:17 +02001387
Stephan Mueller76899a42015-04-18 19:36:17 +02001388 if (drbg->pr || !drbg->seeded) {
Stephan Mueller541af942014-05-31 15:44:17 +02001389 pr_devel("DRBG: reseeding before generation (prediction "
1390 "resistance: %s, state %s)\n",
1391 drbg->pr ? "true" : "false",
1392 drbg->seeded ? "seeded" : "unseeded");
1393 /* 9.3.1 steps 7.1 through 7.3 */
Stephan Mueller76899a42015-04-18 19:36:17 +02001394 len = drbg_seed(drbg, addtl, true);
Stephan Mueller541af942014-05-31 15:44:17 +02001395 if (len)
1396 goto err;
1397 /* 9.3.1 step 7.4 */
1398 addtl = NULL;
1399 }
Stephan Mueller27e4de22014-07-06 02:25:36 +02001400
Stephan Mueller27e4de22014-07-06 02:25:36 +02001401 if (addtl && 0 < addtl->len)
1402 list_add_tail(&addtl->list, &addtllist);
Stephan Mueller541af942014-05-31 15:44:17 +02001403 /* 9.3.1 step 8 and 10 */
Stephan Mueller76899a42015-04-18 19:36:17 +02001404 len = drbg->d_ops->generate(drbg, buf, buflen, &addtllist);
Stephan Mueller541af942014-05-31 15:44:17 +02001405
1406 /* 10.1.1.4 step 6, 10.1.2.5 step 7, 10.2.1.5.2 step 7 */
Stephan Mueller76899a42015-04-18 19:36:17 +02001407 drbg->reseed_ctr++;
Stephan Mueller541af942014-05-31 15:44:17 +02001408 if (0 >= len)
1409 goto err;
1410
1411 /*
1412 * Section 11.3.3 requires to re-perform self tests after some
1413 * generated random numbers. The chosen value after which self
1414 * test is performed is arbitrary, but it should be reasonable.
1415 * However, we do not perform the self tests because of the following
1416 * reasons: it is mathematically impossible that the initial self tests
1417 * were successfully and the following are not. If the initial would
1418 * pass and the following would not, the kernel integrity is violated.
1419 * In this case, the entire kernel operation is questionable and it
1420 * is unlikely that the integrity violation only affects the
1421 * correct operation of the DRBG.
1422 *
1423 * Albeit the following code is commented out, it is provided in
1424 * case somebody has a need to implement the test of 11.3.3.
1425 */
1426#if 0
Stephan Mueller76899a42015-04-18 19:36:17 +02001427 if (drbg->reseed_ctr && !(drbg->reseed_ctr % 4096)) {
Stephan Mueller541af942014-05-31 15:44:17 +02001428 int err = 0;
1429 pr_devel("DRBG: start to perform self test\n");
1430 if (drbg->core->flags & DRBG_HMAC)
1431 err = alg_test("drbg_pr_hmac_sha256",
1432 "drbg_pr_hmac_sha256", 0, 0);
1433 else if (drbg->core->flags & DRBG_CTR)
1434 err = alg_test("drbg_pr_ctr_aes128",
1435 "drbg_pr_ctr_aes128", 0, 0);
1436 else
1437 err = alg_test("drbg_pr_sha256",
1438 "drbg_pr_sha256", 0, 0);
1439 if (err) {
1440 pr_err("DRBG: periodical self test failed\n");
1441 /*
1442 * uninstantiate implies that from now on, only errors
1443 * are returned when reusing this DRBG cipher handle
1444 */
1445 drbg_uninstantiate(drbg);
Stephan Mueller541af942014-05-31 15:44:17 +02001446 return 0;
1447 } else {
1448 pr_devel("DRBG: self test successful\n");
1449 }
1450 }
1451#endif
1452
Stephan Muellercde001e2015-03-06 08:26:31 +01001453 /*
1454 * All operations were successful, return 0 as mandated by
1455 * the kernel crypto API interface.
1456 */
1457 len = 0;
Stephan Mueller541af942014-05-31 15:44:17 +02001458err:
Stephan Mueller541af942014-05-31 15:44:17 +02001459 return len;
1460}
1461
1462/*
1463 * Wrapper around drbg_generate which can pull arbitrary long strings
1464 * from the DRBG without hitting the maximum request limitation.
1465 *
1466 * Parameters: see drbg_generate
1467 * Return codes: see drbg_generate -- if one drbg_generate request fails,
1468 * the entire drbg_generate_long request fails
1469 */
1470static int drbg_generate_long(struct drbg_state *drbg,
1471 unsigned char *buf, unsigned int buflen,
1472 struct drbg_string *addtl)
1473{
Stephan Mueller082eb102015-04-18 19:35:45 +02001474 unsigned int len = 0;
Stephan Mueller541af942014-05-31 15:44:17 +02001475 unsigned int slice = 0;
1476 do {
Stephan Mueller082eb102015-04-18 19:35:45 +02001477 int err = 0;
Stephan Mueller541af942014-05-31 15:44:17 +02001478 unsigned int chunk = 0;
1479 slice = ((buflen - len) / drbg_max_request_bytes(drbg));
1480 chunk = slice ? drbg_max_request_bytes(drbg) : (buflen - len);
Stephan Mueller76899a42015-04-18 19:36:17 +02001481 mutex_lock(&drbg->drbg_mutex);
Stephan Mueller082eb102015-04-18 19:35:45 +02001482 err = drbg_generate(drbg, buf + len, chunk, addtl);
Stephan Mueller76899a42015-04-18 19:36:17 +02001483 mutex_unlock(&drbg->drbg_mutex);
Stephan Mueller082eb102015-04-18 19:35:45 +02001484 if (0 > err)
1485 return err;
1486 len += chunk;
Stephan Muellerce5481d2014-07-31 21:47:33 +02001487 } while (slice > 0 && (len < buflen));
Stephan Mueller082eb102015-04-18 19:35:45 +02001488 return 0;
Stephan Mueller541af942014-05-31 15:44:17 +02001489}
1490
Stephan Mueller57225e62015-06-09 21:55:38 +08001491static void drbg_schedule_async_seed(struct random_ready_callback *rdy)
1492{
1493 struct drbg_state *drbg = container_of(rdy, struct drbg_state,
1494 random_ready);
1495
1496 schedule_work(&drbg->seed_work);
1497}
1498
1499static int drbg_prepare_hrng(struct drbg_state *drbg)
1500{
1501 int err;
1502
1503 /* We do not need an HRNG in test mode. */
1504 if (list_empty(&drbg->test_data.list))
1505 return 0;
1506
Stephan Müller97f26502020-04-17 21:34:03 +02001507 drbg->jent = crypto_alloc_rng("jitterentropy_rng", 0, 0);
1508
Stephan Mueller57225e62015-06-09 21:55:38 +08001509 INIT_WORK(&drbg->seed_work, drbg_async_seed);
1510
1511 drbg->random_ready.owner = THIS_MODULE;
1512 drbg->random_ready.func = drbg_schedule_async_seed;
1513
1514 err = add_random_ready_callback(&drbg->random_ready);
1515
1516 switch (err) {
1517 case 0:
1518 break;
1519
1520 case -EALREADY:
1521 err = 0;
1522 /* fall through */
1523
1524 default:
1525 drbg->random_ready.func = NULL;
1526 return err;
1527 }
1528
Stephan Mueller42ea5072015-06-10 03:33:37 +02001529 /*
1530 * Require frequent reseeds until the seed source is fully
1531 * initialized.
1532 */
1533 drbg->reseed_threshold = 50;
1534
Stephan Mueller57225e62015-06-09 21:55:38 +08001535 return err;
1536}
1537
Stephan Mueller541af942014-05-31 15:44:17 +02001538/*
1539 * DRBG instantiation function as required by SP800-90A - this function
1540 * sets up the DRBG handle, performs the initial seeding and all sanity
1541 * checks required by SP800-90A
1542 *
1543 * @drbg memory of state -- if NULL, new memory is allocated
1544 * @pers Personalization string that is mixed into state, may be NULL -- note
1545 * the entropy is pulled by the DRBG internally unconditionally
1546 * as defined in SP800-90A. The additional input is mixed into
1547 * the state in addition to the pulled entropy.
1548 * @coreref reference to core
1549 * @pr prediction resistance enabled
1550 *
1551 * return
1552 * 0 on success
1553 * error value otherwise
1554 */
1555static int drbg_instantiate(struct drbg_state *drbg, struct drbg_string *pers,
1556 int coreref, bool pr)
1557{
Herbert Xu2a57e422015-04-20 11:29:15 +08001558 int ret;
1559 bool reseed = true;
Stephan Mueller541af942014-05-31 15:44:17 +02001560
1561 pr_devel("DRBG: Initializing DRBG core %d with prediction resistance "
1562 "%s\n", coreref, pr ? "enabled" : "disabled");
Stephan Mueller76899a42015-04-18 19:36:17 +02001563 mutex_lock(&drbg->drbg_mutex);
Stephan Mueller541af942014-05-31 15:44:17 +02001564
1565 /* 9.1 step 1 is implicit with the selected DRBG type */
1566
1567 /*
1568 * 9.1 step 2 is implicit as caller can select prediction resistance
1569 * and the flag is copied into drbg->flags --
1570 * all DRBG types support prediction resistance
1571 */
1572
1573 /* 9.1 step 4 is implicit in drbg_sec_strength */
1574
Herbert Xu2a57e422015-04-20 11:29:15 +08001575 if (!drbg->core) {
1576 drbg->core = &drbg_cores[coreref];
1577 drbg->pr = pr;
1578 drbg->seeded = false;
Stephan Mueller42ea5072015-06-10 03:33:37 +02001579 drbg->reseed_threshold = drbg_max_requests(drbg);
Stephan Mueller541af942014-05-31 15:44:17 +02001580
Herbert Xu2a57e422015-04-20 11:29:15 +08001581 ret = drbg_alloc_state(drbg);
1582 if (ret)
1583 goto unlock;
1584
Stephan Mueller57225e62015-06-09 21:55:38 +08001585 ret = drbg_prepare_hrng(drbg);
1586 if (ret)
1587 goto free_everything;
1588
1589 if (IS_ERR(drbg->jent)) {
1590 ret = PTR_ERR(drbg->jent);
1591 drbg->jent = NULL;
1592 if (fips_enabled || ret != -ENOENT)
1593 goto free_everything;
1594 pr_info("DRBG: Continuing without Jitter RNG\n");
1595 }
1596
Herbert Xu2a57e422015-04-20 11:29:15 +08001597 reseed = false;
1598 }
1599
1600 ret = drbg_seed(drbg, pers, reseed);
1601
Stephan Mueller57225e62015-06-09 21:55:38 +08001602 if (ret && !reseed)
1603 goto free_everything;
Stephan Mueller541af942014-05-31 15:44:17 +02001604
Stephan Mueller76899a42015-04-18 19:36:17 +02001605 mutex_unlock(&drbg->drbg_mutex);
Herbert Xu2a57e422015-04-20 11:29:15 +08001606 return ret;
Stephan Mueller541af942014-05-31 15:44:17 +02001607
Stephan Mueller76899a42015-04-18 19:36:17 +02001608unlock:
1609 mutex_unlock(&drbg->drbg_mutex);
Stephan Mueller541af942014-05-31 15:44:17 +02001610 return ret;
Stephan Mueller57225e62015-06-09 21:55:38 +08001611
1612free_everything:
1613 mutex_unlock(&drbg->drbg_mutex);
1614 drbg_uninstantiate(drbg);
1615 return ret;
Stephan Mueller541af942014-05-31 15:44:17 +02001616}
1617
1618/*
1619 * DRBG uninstantiate function as required by SP800-90A - this function
1620 * frees all buffers and the DRBG handle
1621 *
1622 * @drbg DRBG state handle
1623 *
1624 * return
1625 * 0 on success
1626 */
1627static int drbg_uninstantiate(struct drbg_state *drbg)
1628{
Stephan Mueller57225e62015-06-09 21:55:38 +08001629 if (drbg->random_ready.func) {
1630 del_random_ready_callback(&drbg->random_ready);
1631 cancel_work_sync(&drbg->seed_work);
1632 crypto_free_rng(drbg->jent);
1633 drbg->jent = NULL;
1634 }
1635
Herbert Xu2a57e422015-04-20 11:29:15 +08001636 if (drbg->d_ops)
1637 drbg->d_ops->crypto_fini(drbg);
Stephan Mueller541af942014-05-31 15:44:17 +02001638 drbg_dealloc_state(drbg);
1639 /* no scrubbing of test_data -- this shall survive an uninstantiate */
Stephan Mueller541af942014-05-31 15:44:17 +02001640 return 0;
1641}
1642
1643/*
1644 * Helper function for setting the test data in the DRBG
1645 *
1646 * @drbg DRBG state handle
Herbert Xu8fded592015-04-21 10:46:41 +08001647 * @data test data
1648 * @len test data length
Stephan Mueller541af942014-05-31 15:44:17 +02001649 */
Herbert Xu8fded592015-04-21 10:46:41 +08001650static void drbg_kcapi_set_entropy(struct crypto_rng *tfm,
1651 const u8 *data, unsigned int len)
Stephan Mueller541af942014-05-31 15:44:17 +02001652{
Herbert Xu8fded592015-04-21 10:46:41 +08001653 struct drbg_state *drbg = crypto_rng_ctx(tfm);
1654
1655 mutex_lock(&drbg->drbg_mutex);
1656 drbg_string_fill(&drbg->test_data, data, len);
Stephan Mueller76899a42015-04-18 19:36:17 +02001657 mutex_unlock(&drbg->drbg_mutex);
Stephan Mueller541af942014-05-31 15:44:17 +02001658}
1659
1660/***************************************************************
1661 * Kernel crypto API cipher invocations requested by DRBG
1662 ***************************************************************/
1663
1664#if defined(CONFIG_CRYPTO_DRBG_HASH) || defined(CONFIG_CRYPTO_DRBG_HMAC)
1665struct sdesc {
1666 struct shash_desc shash;
1667 char ctx[];
1668};
1669
1670static int drbg_init_hash_kernel(struct drbg_state *drbg)
1671{
1672 struct sdesc *sdesc;
1673 struct crypto_shash *tfm;
1674
1675 tfm = crypto_alloc_shash(drbg->core->backend_cra_name, 0, 0);
1676 if (IS_ERR(tfm)) {
Sergey Senozhatsky593dfbd2015-06-10 22:27:48 +09001677 pr_info("DRBG: could not allocate digest TFM handle: %s\n",
1678 drbg->core->backend_cra_name);
Stephan Mueller541af942014-05-31 15:44:17 +02001679 return PTR_ERR(tfm);
1680 }
1681 BUG_ON(drbg_blocklen(drbg) != crypto_shash_digestsize(tfm));
1682 sdesc = kzalloc(sizeof(struct shash_desc) + crypto_shash_descsize(tfm),
1683 GFP_KERNEL);
1684 if (!sdesc) {
1685 crypto_free_shash(tfm);
1686 return -ENOMEM;
1687 }
1688
1689 sdesc->shash.tfm = tfm;
Stephan Mueller541af942014-05-31 15:44:17 +02001690 drbg->priv_data = sdesc;
Stephan Mueller3cfc3b92016-06-14 07:35:13 +02001691
1692 return crypto_shash_alignmask(tfm);
Stephan Mueller541af942014-05-31 15:44:17 +02001693}
1694
1695static int drbg_fini_hash_kernel(struct drbg_state *drbg)
1696{
1697 struct sdesc *sdesc = (struct sdesc *)drbg->priv_data;
1698 if (sdesc) {
1699 crypto_free_shash(sdesc->shash.tfm);
1700 kzfree(sdesc);
1701 }
1702 drbg->priv_data = NULL;
1703 return 0;
1704}
1705
Stephan Mueller4218ebe2016-03-28 16:47:55 +02001706static void drbg_kcapi_hmacsetkey(struct drbg_state *drbg,
1707 const unsigned char *key)
1708{
1709 struct sdesc *sdesc = (struct sdesc *)drbg->priv_data;
1710
1711 crypto_shash_setkey(sdesc->shash.tfm, key, drbg_statelen(drbg));
1712}
1713
1714static int drbg_kcapi_hash(struct drbg_state *drbg, unsigned char *outval,
1715 const struct list_head *in)
Stephan Mueller541af942014-05-31 15:44:17 +02001716{
1717 struct sdesc *sdesc = (struct sdesc *)drbg->priv_data;
Stephan Mueller8c987162014-06-28 21:58:24 +02001718 struct drbg_string *input = NULL;
Stephan Mueller541af942014-05-31 15:44:17 +02001719
Stephan Mueller541af942014-05-31 15:44:17 +02001720 crypto_shash_init(&sdesc->shash);
Stephan Mueller8c987162014-06-28 21:58:24 +02001721 list_for_each_entry(input, in, list)
1722 crypto_shash_update(&sdesc->shash, input->buf, input->len);
Stephan Mueller541af942014-05-31 15:44:17 +02001723 return crypto_shash_final(&sdesc->shash, outval);
1724}
1725#endif /* (CONFIG_CRYPTO_DRBG_HASH || CONFIG_CRYPTO_DRBG_HMAC) */
1726
1727#ifdef CONFIG_CRYPTO_DRBG_CTR
Stephan Mueller35591282016-06-14 07:34:13 +02001728static int drbg_fini_sym_kernel(struct drbg_state *drbg)
1729{
1730 struct crypto_cipher *tfm =
1731 (struct crypto_cipher *)drbg->priv_data;
1732 if (tfm)
1733 crypto_free_cipher(tfm);
1734 drbg->priv_data = NULL;
1735
1736 if (drbg->ctr_handle)
1737 crypto_free_skcipher(drbg->ctr_handle);
1738 drbg->ctr_handle = NULL;
1739
1740 if (drbg->ctr_req)
Wu Fengguang88f1d312016-06-15 19:13:25 +08001741 skcipher_request_free(drbg->ctr_req);
Stephan Mueller35591282016-06-14 07:34:13 +02001742 drbg->ctr_req = NULL;
1743
Stephan Mueller51029812016-11-29 09:45:04 +01001744 kfree(drbg->outscratchpadbuf);
1745 drbg->outscratchpadbuf = NULL;
1746
Stephan Mueller35591282016-06-14 07:34:13 +02001747 return 0;
1748}
1749
Stephan Mueller541af942014-05-31 15:44:17 +02001750static int drbg_init_sym_kernel(struct drbg_state *drbg)
1751{
Stephan Mueller04bcbfc2015-03-01 20:39:17 +01001752 struct crypto_cipher *tfm;
Stephan Mueller35591282016-06-14 07:34:13 +02001753 struct crypto_skcipher *sk_tfm;
1754 struct skcipher_request *req;
1755 unsigned int alignmask;
1756 char ctr_name[CRYPTO_MAX_ALG_NAME];
Stephan Mueller541af942014-05-31 15:44:17 +02001757
Stephan Mueller04bcbfc2015-03-01 20:39:17 +01001758 tfm = crypto_alloc_cipher(drbg->core->backend_cra_name, 0, 0);
Stephan Mueller541af942014-05-31 15:44:17 +02001759 if (IS_ERR(tfm)) {
Sergey Senozhatsky593dfbd2015-06-10 22:27:48 +09001760 pr_info("DRBG: could not allocate cipher TFM handle: %s\n",
1761 drbg->core->backend_cra_name);
Stephan Mueller541af942014-05-31 15:44:17 +02001762 return PTR_ERR(tfm);
1763 }
Stephan Mueller04bcbfc2015-03-01 20:39:17 +01001764 BUG_ON(drbg_blocklen(drbg) != crypto_cipher_blocksize(tfm));
Stephan Mueller541af942014-05-31 15:44:17 +02001765 drbg->priv_data = tfm;
Stephan Mueller541af942014-05-31 15:44:17 +02001766
Stephan Mueller35591282016-06-14 07:34:13 +02001767 if (snprintf(ctr_name, CRYPTO_MAX_ALG_NAME, "ctr(%s)",
1768 drbg->core->backend_cra_name) >= CRYPTO_MAX_ALG_NAME) {
1769 drbg_fini_sym_kernel(drbg);
1770 return -EINVAL;
1771 }
1772 sk_tfm = crypto_alloc_skcipher(ctr_name, 0, 0);
1773 if (IS_ERR(sk_tfm)) {
1774 pr_info("DRBG: could not allocate CTR cipher TFM handle: %s\n",
1775 ctr_name);
1776 drbg_fini_sym_kernel(drbg);
1777 return PTR_ERR(sk_tfm);
1778 }
1779 drbg->ctr_handle = sk_tfm;
Gilad Ben-Yossef85a2dea2017-10-18 08:00:41 +01001780 crypto_init_wait(&drbg->ctr_wait);
Stephan Mueller35591282016-06-14 07:34:13 +02001781
1782 req = skcipher_request_alloc(sk_tfm, GFP_KERNEL);
1783 if (!req) {
1784 pr_info("DRBG: could not allocate request queue\n");
1785 drbg_fini_sym_kernel(drbg);
Dan Carpenter01ac9452016-06-17 12:16:19 +03001786 return -ENOMEM;
Stephan Mueller35591282016-06-14 07:34:13 +02001787 }
1788 drbg->ctr_req = req;
Gilad Ben-Yossef85a2dea2017-10-18 08:00:41 +01001789 skcipher_request_set_callback(req, CRYPTO_TFM_REQ_MAY_BACKLOG |
1790 CRYPTO_TFM_REQ_MAY_SLEEP,
1791 crypto_req_done, &drbg->ctr_wait);
Stephan Mueller35591282016-06-14 07:34:13 +02001792
1793 alignmask = crypto_skcipher_alignmask(sk_tfm);
Stephan Mueller51029812016-11-29 09:45:04 +01001794 drbg->outscratchpadbuf = kmalloc(DRBG_OUTSCRATCHLEN + alignmask,
1795 GFP_KERNEL);
1796 if (!drbg->outscratchpadbuf) {
1797 drbg_fini_sym_kernel(drbg);
1798 return -ENOMEM;
1799 }
1800 drbg->outscratchpad = (u8 *)PTR_ALIGN(drbg->outscratchpadbuf,
1801 alignmask + 1);
1802
Stephan Muellercf862cb2018-07-10 17:56:33 +02001803 sg_init_table(&drbg->sg_in, 1);
Stephan Müller43490e82018-07-20 19:42:01 +02001804 sg_init_one(&drbg->sg_out, drbg->outscratchpad, DRBG_OUTSCRATCHLEN);
Stephan Muellercf862cb2018-07-10 17:56:33 +02001805
Stephan Mueller3cfc3b92016-06-14 07:35:13 +02001806 return alignmask;
Stephan Mueller541af942014-05-31 15:44:17 +02001807}
1808
Stephan Muellered494d42016-05-31 13:11:57 +02001809static void drbg_kcapi_symsetkey(struct drbg_state *drbg,
1810 const unsigned char *key)
Stephan Mueller541af942014-05-31 15:44:17 +02001811{
Stephan Mueller04bcbfc2015-03-01 20:39:17 +01001812 struct crypto_cipher *tfm =
1813 (struct crypto_cipher *)drbg->priv_data;
Stephan Mueller541af942014-05-31 15:44:17 +02001814
Stephan Mueller04bcbfc2015-03-01 20:39:17 +01001815 crypto_cipher_setkey(tfm, key, (drbg_keylen(drbg)));
Stephan Muellered494d42016-05-31 13:11:57 +02001816}
1817
1818static int drbg_kcapi_sym(struct drbg_state *drbg, unsigned char *outval,
1819 const struct drbg_string *in)
1820{
1821 struct crypto_cipher *tfm =
1822 (struct crypto_cipher *)drbg->priv_data;
1823
Stephan Mueller541af942014-05-31 15:44:17 +02001824 /* there is only component in *in */
Stephan Mueller04bcbfc2015-03-01 20:39:17 +01001825 BUG_ON(in->len < drbg_blocklen(drbg));
1826 crypto_cipher_encrypt_one(tfm, outval, in->buf);
1827 return 0;
Stephan Mueller541af942014-05-31 15:44:17 +02001828}
Stephan Mueller35591282016-06-14 07:34:13 +02001829
Stephan Muellera07203f2016-06-14 07:35:37 +02001830static int drbg_kcapi_sym_ctr(struct drbg_state *drbg,
1831 u8 *inbuf, u32 inlen,
1832 u8 *outbuf, u32 outlen)
Stephan Mueller35591282016-06-14 07:34:13 +02001833{
Stephan Muellercf862cb2018-07-10 17:56:33 +02001834 struct scatterlist *sg_in = &drbg->sg_in, *sg_out = &drbg->sg_out;
Stephan Müller43490e82018-07-20 19:42:01 +02001835 u32 scratchpad_use = min_t(u32, outlen, DRBG_OUTSCRATCHLEN);
Stephan Mueller51029812016-11-29 09:45:04 +01001836 int ret;
Stephan Mueller35591282016-06-14 07:34:13 +02001837
Stephan Müller43490e82018-07-20 19:42:01 +02001838 if (inbuf) {
1839 /* Use caller-provided input buffer */
1840 sg_set_buf(sg_in, inbuf, inlen);
1841 } else {
1842 /* Use scratchpad for in-place operation */
1843 inlen = scratchpad_use;
1844 memset(drbg->outscratchpad, 0, scratchpad_use);
1845 sg_set_buf(sg_in, drbg->outscratchpad, scratchpad_use);
1846 }
Stephan Mueller35591282016-06-14 07:34:13 +02001847
1848 while (outlen) {
Stephan Mueller51029812016-11-29 09:45:04 +01001849 u32 cryptlen = min3(inlen, outlen, (u32)DRBG_OUTSCRATCHLEN);
Stephan Mueller35591282016-06-14 07:34:13 +02001850
Stephan Mueller51029812016-11-29 09:45:04 +01001851 /* Output buffer may not be valid for SGL, use scratchpad */
Stephan Muellercf862cb2018-07-10 17:56:33 +02001852 skcipher_request_set_crypt(drbg->ctr_req, sg_in, sg_out,
Stephan Mueller35591282016-06-14 07:34:13 +02001853 cryptlen, drbg->V);
Gilad Ben-Yossef85a2dea2017-10-18 08:00:41 +01001854 ret = crypto_wait_req(crypto_skcipher_encrypt(drbg->ctr_req),
1855 &drbg->ctr_wait);
1856 if (ret)
Stephan Mueller51029812016-11-29 09:45:04 +01001857 goto out;
Gilad Ben-Yossef85a2dea2017-10-18 08:00:41 +01001858
1859 crypto_init_wait(&drbg->ctr_wait);
Stephan Mueller35591282016-06-14 07:34:13 +02001860
Stephan Mueller51029812016-11-29 09:45:04 +01001861 memcpy(outbuf, drbg->outscratchpad, cryptlen);
Stephan Müller43490e82018-07-20 19:42:01 +02001862 memzero_explicit(drbg->outscratchpad, cryptlen);
Stephan Mueller51029812016-11-29 09:45:04 +01001863
Stephan Mueller35591282016-06-14 07:34:13 +02001864 outlen -= cryptlen;
Stephan Mueller8ff4c192016-11-18 12:27:56 +01001865 outbuf += cryptlen;
Stephan Mueller35591282016-06-14 07:34:13 +02001866 }
Stephan Mueller51029812016-11-29 09:45:04 +01001867 ret = 0;
Stephan Mueller35591282016-06-14 07:34:13 +02001868
Stephan Mueller51029812016-11-29 09:45:04 +01001869out:
Stephan Mueller51029812016-11-29 09:45:04 +01001870 return ret;
Stephan Mueller35591282016-06-14 07:34:13 +02001871}
Stephan Mueller541af942014-05-31 15:44:17 +02001872#endif /* CONFIG_CRYPTO_DRBG_CTR */
1873
1874/***************************************************************
1875 * Kernel crypto API interface to register DRBG
1876 ***************************************************************/
1877
1878/*
1879 * Look up the DRBG flags by given kernel crypto API cra_name
1880 * The code uses the drbg_cores definition to do this
1881 *
1882 * @cra_name kernel crypto API cra_name
1883 * @coreref reference to integer which is filled with the pointer to
1884 * the applicable core
1885 * @pr reference for setting prediction resistance
1886 *
1887 * return: flags
1888 */
1889static inline void drbg_convert_tfm_core(const char *cra_driver_name,
1890 int *coreref, bool *pr)
1891{
1892 int i = 0;
1893 size_t start = 0;
1894 int len = 0;
1895
1896 *pr = true;
1897 /* disassemble the names */
1898 if (!memcmp(cra_driver_name, "drbg_nopr_", 10)) {
1899 start = 10;
1900 *pr = false;
1901 } else if (!memcmp(cra_driver_name, "drbg_pr_", 8)) {
1902 start = 8;
1903 } else {
1904 return;
1905 }
1906
1907 /* remove the first part */
1908 len = strlen(cra_driver_name) - start;
1909 for (i = 0; ARRAY_SIZE(drbg_cores) > i; i++) {
1910 if (!memcmp(cra_driver_name + start, drbg_cores[i].cra_name,
1911 len)) {
1912 *coreref = i;
1913 return;
1914 }
1915 }
1916}
1917
1918static int drbg_kcapi_init(struct crypto_tfm *tfm)
1919{
1920 struct drbg_state *drbg = crypto_tfm_ctx(tfm);
Stephan Mueller541af942014-05-31 15:44:17 +02001921
Stephan Mueller76899a42015-04-18 19:36:17 +02001922 mutex_init(&drbg->drbg_mutex);
Herbert Xu2a57e422015-04-20 11:29:15 +08001923
1924 return 0;
Stephan Mueller541af942014-05-31 15:44:17 +02001925}
1926
1927static void drbg_kcapi_cleanup(struct crypto_tfm *tfm)
1928{
1929 drbg_uninstantiate(crypto_tfm_ctx(tfm));
1930}
1931
1932/*
1933 * Generate random numbers invoked by the kernel crypto API:
1934 * The API of the kernel crypto API is extended as follows:
1935 *
Herbert Xu8fded592015-04-21 10:46:41 +08001936 * src is additional input supplied to the RNG.
1937 * slen is the length of src.
1938 * dst is the output buffer where random data is to be stored.
1939 * dlen is the length of dst.
Stephan Mueller541af942014-05-31 15:44:17 +02001940 */
Herbert Xu8fded592015-04-21 10:46:41 +08001941static int drbg_kcapi_random(struct crypto_rng *tfm,
1942 const u8 *src, unsigned int slen,
1943 u8 *dst, unsigned int dlen)
Stephan Mueller541af942014-05-31 15:44:17 +02001944{
1945 struct drbg_state *drbg = crypto_rng_ctx(tfm);
Herbert Xu8fded592015-04-21 10:46:41 +08001946 struct drbg_string *addtl = NULL;
1947 struct drbg_string string;
1948
1949 if (slen) {
Stephan Mueller8c987162014-06-28 21:58:24 +02001950 /* linked list variable is now local to allow modification */
Herbert Xu8fded592015-04-21 10:46:41 +08001951 drbg_string_fill(&string, src, slen);
1952 addtl = &string;
Stephan Mueller541af942014-05-31 15:44:17 +02001953 }
Herbert Xu8fded592015-04-21 10:46:41 +08001954
1955 return drbg_generate_long(drbg, dst, dlen, addtl);
Stephan Mueller541af942014-05-31 15:44:17 +02001956}
1957
1958/*
Herbert Xu2a57e422015-04-20 11:29:15 +08001959 * Seed the DRBG invoked by the kernel crypto API
Stephan Mueller541af942014-05-31 15:44:17 +02001960 */
Herbert Xu8fded592015-04-21 10:46:41 +08001961static int drbg_kcapi_seed(struct crypto_rng *tfm,
1962 const u8 *seed, unsigned int slen)
Stephan Mueller541af942014-05-31 15:44:17 +02001963{
1964 struct drbg_state *drbg = crypto_rng_ctx(tfm);
1965 struct crypto_tfm *tfm_base = crypto_rng_tfm(tfm);
1966 bool pr = false;
Herbert Xu8fded592015-04-21 10:46:41 +08001967 struct drbg_string string;
1968 struct drbg_string *seed_string = NULL;
Stephan Mueller541af942014-05-31 15:44:17 +02001969 int coreref = 0;
1970
Stephan Mueller541af942014-05-31 15:44:17 +02001971 drbg_convert_tfm_core(crypto_tfm_alg_driver_name(tfm_base), &coreref,
1972 &pr);
1973 if (0 < slen) {
Herbert Xu8fded592015-04-21 10:46:41 +08001974 drbg_string_fill(&string, seed, slen);
1975 seed_string = &string;
Stephan Mueller541af942014-05-31 15:44:17 +02001976 }
Herbert Xu8fded592015-04-21 10:46:41 +08001977
1978 return drbg_instantiate(drbg, seed_string, coreref, pr);
Stephan Mueller541af942014-05-31 15:44:17 +02001979}
1980
1981/***************************************************************
1982 * Kernel module: code to load the module
1983 ***************************************************************/
1984
1985/*
1986 * Tests as defined in 11.3.2 in addition to the cipher tests: testing
1987 * of the error handling.
1988 *
1989 * Note: testing of failing seed source as defined in 11.3.2 is not applicable
1990 * as seed source of get_random_bytes does not fail.
1991 *
1992 * Note 2: There is no sensible way of testing the reseed counter
1993 * enforcement, so skip it.
1994 */
1995static inline int __init drbg_healthcheck_sanity(void)
1996{
Stephan Mueller541af942014-05-31 15:44:17 +02001997 int len = 0;
1998#define OUTBUFLEN 16
1999 unsigned char buf[OUTBUFLEN];
2000 struct drbg_state *drbg = NULL;
2001 int ret = -EFAULT;
2002 int rc = -EFAULT;
2003 bool pr = false;
2004 int coreref = 0;
2005 struct drbg_string addtl;
2006 size_t max_addtllen, max_request_bytes;
2007
2008 /* only perform test in FIPS mode */
2009 if (!fips_enabled)
2010 return 0;
2011
2012#ifdef CONFIG_CRYPTO_DRBG_CTR
2013 drbg_convert_tfm_core("drbg_nopr_ctr_aes128", &coreref, &pr);
Stephan Muellere25e47e2014-07-06 02:23:03 +02002014#elif defined CONFIG_CRYPTO_DRBG_HASH
Stephan Mueller541af942014-05-31 15:44:17 +02002015 drbg_convert_tfm_core("drbg_nopr_sha256", &coreref, &pr);
2016#else
2017 drbg_convert_tfm_core("drbg_nopr_hmac_sha256", &coreref, &pr);
2018#endif
2019
2020 drbg = kzalloc(sizeof(struct drbg_state), GFP_KERNEL);
2021 if (!drbg)
2022 return -ENOMEM;
2023
Herbert Xue11a7542015-04-20 11:26:48 +08002024 mutex_init(&drbg->drbg_mutex);
Stephan Muellerd89a6712016-08-09 21:02:36 +02002025 drbg->core = &drbg_cores[coreref];
2026 drbg->reseed_threshold = drbg_max_requests(drbg);
Herbert Xue11a7542015-04-20 11:26:48 +08002027
Stephan Mueller541af942014-05-31 15:44:17 +02002028 /*
2029 * if the following tests fail, it is likely that there is a buffer
2030 * overflow as buf is much smaller than the requested or provided
2031 * string lengths -- in case the error handling does not succeed
2032 * we may get an OOPS. And we want to get an OOPS as this is a
2033 * grave bug.
2034 */
2035
Stephan Mueller541af942014-05-31 15:44:17 +02002036 max_addtllen = drbg_max_addtl(drbg);
2037 max_request_bytes = drbg_max_request_bytes(drbg);
2038 drbg_string_fill(&addtl, buf, max_addtllen + 1);
2039 /* overflow addtllen with additonal info string */
2040 len = drbg_generate(drbg, buf, OUTBUFLEN, &addtl);
2041 BUG_ON(0 < len);
2042 /* overflow max_bits */
2043 len = drbg_generate(drbg, buf, (max_request_bytes + 1), NULL);
2044 BUG_ON(0 < len);
Stephan Mueller541af942014-05-31 15:44:17 +02002045
2046 /* overflow max addtllen with personalization string */
Stephan Muellerd89a6712016-08-09 21:02:36 +02002047 ret = drbg_seed(drbg, &addtl, false);
Stephan Mueller541af942014-05-31 15:44:17 +02002048 BUG_ON(0 == ret);
Stephan Mueller541af942014-05-31 15:44:17 +02002049 /* all tests passed */
2050 rc = 0;
2051
2052 pr_devel("DRBG: Sanity tests for failure code paths successfully "
2053 "completed\n");
2054
Stephan Muellerd89a6712016-08-09 21:02:36 +02002055 kfree(drbg);
Stephan Mueller541af942014-05-31 15:44:17 +02002056 return rc;
Stephan Mueller541af942014-05-31 15:44:17 +02002057}
2058
Herbert Xu8fded592015-04-21 10:46:41 +08002059static struct rng_alg drbg_algs[22];
Stephan Mueller541af942014-05-31 15:44:17 +02002060
2061/*
2062 * Fill the array drbg_algs used to register the different DRBGs
2063 * with the kernel crypto API. To fill the array, the information
2064 * from drbg_cores[] is used.
2065 */
Herbert Xu8fded592015-04-21 10:46:41 +08002066static inline void __init drbg_fill_array(struct rng_alg *alg,
Stephan Mueller541af942014-05-31 15:44:17 +02002067 const struct drbg_core *core, int pr)
2068{
2069 int pos = 0;
Herbert Xu51ee14222015-06-03 14:49:28 +08002070 static int priority = 200;
Stephan Mueller541af942014-05-31 15:44:17 +02002071
Herbert Xu8fded592015-04-21 10:46:41 +08002072 memcpy(alg->base.cra_name, "stdrng", 6);
Stephan Mueller541af942014-05-31 15:44:17 +02002073 if (pr) {
Herbert Xu8fded592015-04-21 10:46:41 +08002074 memcpy(alg->base.cra_driver_name, "drbg_pr_", 8);
Stephan Mueller541af942014-05-31 15:44:17 +02002075 pos = 8;
2076 } else {
Herbert Xu8fded592015-04-21 10:46:41 +08002077 memcpy(alg->base.cra_driver_name, "drbg_nopr_", 10);
Stephan Mueller541af942014-05-31 15:44:17 +02002078 pos = 10;
2079 }
Herbert Xu8fded592015-04-21 10:46:41 +08002080 memcpy(alg->base.cra_driver_name + pos, core->cra_name,
Stephan Mueller541af942014-05-31 15:44:17 +02002081 strlen(core->cra_name));
2082
Herbert Xu8fded592015-04-21 10:46:41 +08002083 alg->base.cra_priority = priority;
Stephan Mueller541af942014-05-31 15:44:17 +02002084 priority++;
2085 /*
2086 * If FIPS mode enabled, the selected DRBG shall have the
2087 * highest cra_priority over other stdrng instances to ensure
2088 * it is selected.
2089 */
2090 if (fips_enabled)
Herbert Xu8fded592015-04-21 10:46:41 +08002091 alg->base.cra_priority += 200;
Stephan Mueller541af942014-05-31 15:44:17 +02002092
Herbert Xu8fded592015-04-21 10:46:41 +08002093 alg->base.cra_ctxsize = sizeof(struct drbg_state);
2094 alg->base.cra_module = THIS_MODULE;
2095 alg->base.cra_init = drbg_kcapi_init;
2096 alg->base.cra_exit = drbg_kcapi_cleanup;
2097 alg->generate = drbg_kcapi_random;
2098 alg->seed = drbg_kcapi_seed;
2099 alg->set_ent = drbg_kcapi_set_entropy;
2100 alg->seedsize = 0;
Stephan Mueller541af942014-05-31 15:44:17 +02002101}
2102
2103static int __init drbg_init(void)
2104{
2105 unsigned int i = 0; /* pointer to drbg_algs */
2106 unsigned int j = 0; /* pointer to drbg_cores */
Wei Yongjun1a45d7e2016-08-20 15:06:51 +00002107 int ret;
Stephan Mueller541af942014-05-31 15:44:17 +02002108
2109 ret = drbg_healthcheck_sanity();
2110 if (ret)
2111 return ret;
2112
2113 if (ARRAY_SIZE(drbg_cores) * 2 > ARRAY_SIZE(drbg_algs)) {
2114 pr_info("DRBG: Cannot register all DRBG types"
Stephan Muellera9089572014-07-06 02:24:03 +02002115 "(slots needed: %zu, slots available: %zu)\n",
Stephan Mueller541af942014-05-31 15:44:17 +02002116 ARRAY_SIZE(drbg_cores) * 2, ARRAY_SIZE(drbg_algs));
Wei Yongjun1a45d7e2016-08-20 15:06:51 +00002117 return -EFAULT;
Stephan Mueller541af942014-05-31 15:44:17 +02002118 }
2119
2120 /*
2121 * each DRBG definition can be used with PR and without PR, thus
2122 * we instantiate each DRBG in drbg_cores[] twice.
2123 *
2124 * As the order of placing them into the drbg_algs array matters
2125 * (the later DRBGs receive a higher cra_priority) we register the
2126 * prediction resistance DRBGs first as the should not be too
2127 * interesting.
2128 */
2129 for (j = 0; ARRAY_SIZE(drbg_cores) > j; j++, i++)
2130 drbg_fill_array(&drbg_algs[i], &drbg_cores[j], 1);
2131 for (j = 0; ARRAY_SIZE(drbg_cores) > j; j++, i++)
2132 drbg_fill_array(&drbg_algs[i], &drbg_cores[j], 0);
Herbert Xu8fded592015-04-21 10:46:41 +08002133 return crypto_register_rngs(drbg_algs, (ARRAY_SIZE(drbg_cores) * 2));
Stephan Mueller541af942014-05-31 15:44:17 +02002134}
2135
Fengguang Wu96956ae2014-07-10 16:52:04 +08002136static void __exit drbg_exit(void)
Stephan Mueller541af942014-05-31 15:44:17 +02002137{
Herbert Xu8fded592015-04-21 10:46:41 +08002138 crypto_unregister_rngs(drbg_algs, (ARRAY_SIZE(drbg_cores) * 2));
Stephan Mueller541af942014-05-31 15:44:17 +02002139}
2140
Eric Biggersc4741b22019-04-11 21:57:42 -07002141subsys_initcall(drbg_init);
Stephan Mueller541af942014-05-31 15:44:17 +02002142module_exit(drbg_exit);
Stephan Muellere25e47e2014-07-06 02:23:03 +02002143#ifndef CRYPTO_DRBG_HASH_STRING
2144#define CRYPTO_DRBG_HASH_STRING ""
2145#endif
2146#ifndef CRYPTO_DRBG_HMAC_STRING
2147#define CRYPTO_DRBG_HMAC_STRING ""
2148#endif
2149#ifndef CRYPTO_DRBG_CTR_STRING
2150#define CRYPTO_DRBG_CTR_STRING ""
2151#endif
Stephan Mueller541af942014-05-31 15:44:17 +02002152MODULE_LICENSE("GPL");
2153MODULE_AUTHOR("Stephan Mueller <smueller@chronox.de>");
Stephan Muellere25e47e2014-07-06 02:23:03 +02002154MODULE_DESCRIPTION("NIST SP800-90A Deterministic Random Bit Generator (DRBG) "
2155 "using following cores: "
2156 CRYPTO_DRBG_HASH_STRING
2157 CRYPTO_DRBG_HMAC_STRING
2158 CRYPTO_DRBG_CTR_STRING);
Herbert Xu51ee14222015-06-03 14:49:28 +08002159MODULE_ALIAS_CRYPTO("stdrng");