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Linus Torvalds1da177e2005-04-16 15:20:36 -07001#
Dan Williams685784a2007-07-09 11:56:42 -07002# Generic algorithms support
3#
4config XOR_BLOCKS
5 tristate
6
7#
Dan Williams9bc89cd2007-01-02 11:10:44 -07008# async_tx api: hardware offloaded memory transfer/transform support
9#
10source "crypto/async_tx/Kconfig"
11
12#
Linus Torvalds1da177e2005-04-16 15:20:36 -070013# Cryptographic API Configuration
14#
Jan Engelhardt2e290f42007-05-18 15:11:01 +100015menuconfig CRYPTO
Sebastian Siewiorc3715cb92008-03-30 16:36:09 +080016 tristate "Cryptographic API"
Linus Torvalds1da177e2005-04-16 15:20:36 -070017 help
18 This option provides the core Cryptographic API.
19
Herbert Xucce9e062006-08-21 21:08:13 +100020if CRYPTO
21
Sebastian Siewior584fffc2008-04-05 21:04:48 +080022comment "Crypto core or helper"
23
Neil Hormanccb778e2008-08-05 14:13:08 +080024config CRYPTO_FIPS
25 bool "FIPS 200 compliance"
Chuck Ebberte84c5482010-09-03 19:17:49 +080026 depends on CRYPTO_ANSI_CPRNG && !CRYPTO_MANAGER_DISABLE_TESTS
Neil Hormanccb778e2008-08-05 14:13:08 +080027 help
28 This options enables the fips boot option which is
29 required if you want to system to operate in a FIPS 200
30 certification. You should say no unless you know what
Chuck Ebberte84c5482010-09-03 19:17:49 +080031 this is.
Neil Hormanccb778e2008-08-05 14:13:08 +080032
Herbert Xucce9e062006-08-21 21:08:13 +100033config CRYPTO_ALGAPI
34 tristate
Herbert Xu6a0fcbb2008-12-10 23:29:44 +110035 select CRYPTO_ALGAPI2
Herbert Xucce9e062006-08-21 21:08:13 +100036 help
37 This option provides the API for cryptographic algorithms.
38
Herbert Xu6a0fcbb2008-12-10 23:29:44 +110039config CRYPTO_ALGAPI2
40 tristate
41
Herbert Xu1ae97822007-08-30 15:36:14 +080042config CRYPTO_AEAD
43 tristate
Herbert Xu6a0fcbb2008-12-10 23:29:44 +110044 select CRYPTO_AEAD2
Herbert Xu1ae97822007-08-30 15:36:14 +080045 select CRYPTO_ALGAPI
46
Herbert Xu6a0fcbb2008-12-10 23:29:44 +110047config CRYPTO_AEAD2
48 tristate
49 select CRYPTO_ALGAPI2
50
Herbert Xu5cde0af2006-08-22 00:07:53 +100051config CRYPTO_BLKCIPHER
52 tristate
Herbert Xu6a0fcbb2008-12-10 23:29:44 +110053 select CRYPTO_BLKCIPHER2
Herbert Xu5cde0af2006-08-22 00:07:53 +100054 select CRYPTO_ALGAPI
Herbert Xu6a0fcbb2008-12-10 23:29:44 +110055
56config CRYPTO_BLKCIPHER2
57 tristate
58 select CRYPTO_ALGAPI2
59 select CRYPTO_RNG2
Huang Ying0a2e8212009-02-19 14:44:02 +080060 select CRYPTO_WORKQUEUE
Herbert Xu5cde0af2006-08-22 00:07:53 +100061
Herbert Xu055bcee2006-08-19 22:24:23 +100062config CRYPTO_HASH
63 tristate
Herbert Xu6a0fcbb2008-12-10 23:29:44 +110064 select CRYPTO_HASH2
Herbert Xu055bcee2006-08-19 22:24:23 +100065 select CRYPTO_ALGAPI
66
Herbert Xu6a0fcbb2008-12-10 23:29:44 +110067config CRYPTO_HASH2
68 tristate
69 select CRYPTO_ALGAPI2
70
Neil Horman17f0f4a2008-08-14 22:15:52 +100071config CRYPTO_RNG
72 tristate
Herbert Xu6a0fcbb2008-12-10 23:29:44 +110073 select CRYPTO_RNG2
Neil Horman17f0f4a2008-08-14 22:15:52 +100074 select CRYPTO_ALGAPI
75
Herbert Xu6a0fcbb2008-12-10 23:29:44 +110076config CRYPTO_RNG2
77 tristate
78 select CRYPTO_ALGAPI2
79
Geert Uytterhoevena1d2f092009-03-04 15:05:33 +080080config CRYPTO_PCOMP
81 tristate
Herbert Xubc94e592010-06-03 20:33:06 +100082 select CRYPTO_PCOMP2
83 select CRYPTO_ALGAPI
84
85config CRYPTO_PCOMP2
86 tristate
Geert Uytterhoevena1d2f092009-03-04 15:05:33 +080087 select CRYPTO_ALGAPI2
88
Herbert Xu2b8c19d2006-09-21 11:31:44 +100089config CRYPTO_MANAGER
90 tristate "Cryptographic algorithm manager"
Herbert Xu6a0fcbb2008-12-10 23:29:44 +110091 select CRYPTO_MANAGER2
Herbert Xu2b8c19d2006-09-21 11:31:44 +100092 help
93 Create default cryptographic template instantiations such as
94 cbc(aes).
95
Herbert Xu6a0fcbb2008-12-10 23:29:44 +110096config CRYPTO_MANAGER2
97 def_tristate CRYPTO_MANAGER || (CRYPTO_MANAGER!=n && CRYPTO_ALGAPI=y)
98 select CRYPTO_AEAD2
99 select CRYPTO_HASH2
100 select CRYPTO_BLKCIPHER2
Herbert Xubc94e592010-06-03 20:33:06 +1000101 select CRYPTO_PCOMP2
Herbert Xu6a0fcbb2008-12-10 23:29:44 +1100102
Steffen Klasserta38f7902011-09-27 07:23:50 +0200103config CRYPTO_USER
104 tristate "Userspace cryptographic algorithm configuration"
Herbert Xu5db017a2011-11-01 12:12:43 +1100105 depends on NET
Steffen Klasserta38f7902011-09-27 07:23:50 +0200106 select CRYPTO_MANAGER
107 help
Valdis.Kletnieks@vt.edud19978f2011-11-09 01:29:20 -0500108 Userspace configuration for cryptographic instantiations such as
Steffen Klasserta38f7902011-09-27 07:23:50 +0200109 cbc(aes).
110
Herbert Xu326a6342010-08-06 09:40:28 +0800111config CRYPTO_MANAGER_DISABLE_TESTS
112 bool "Disable run-time self tests"
Herbert Xu00ca28a2010-08-06 10:34:00 +0800113 default y
114 depends on CRYPTO_MANAGER2
Alexander Shishkin0b767f92010-06-03 20:53:43 +1000115 help
Herbert Xu326a6342010-08-06 09:40:28 +0800116 Disable run-time self tests that normally take place at
117 algorithm registration.
Alexander Shishkin0b767f92010-06-03 20:53:43 +1000118
Rik Snelc494e072006-11-29 18:59:44 +1100119config CRYPTO_GF128MUL
Jussi Kivilinna08c70fc2011-12-13 12:53:22 +0200120 tristate "GF(2^128) multiplication functions"
Rik Snelc494e072006-11-29 18:59:44 +1100121 help
122 Efficient table driven implementation of multiplications in the
123 field GF(2^128). This is needed by some cypher modes. This
124 option will be selected automatically if you select such a
125 cipher mode. Only select this option by hand if you expect to load
126 an external module that requires these functions.
127
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800128config CRYPTO_NULL
129 tristate "Null algorithms"
130 select CRYPTO_ALGAPI
131 select CRYPTO_BLKCIPHER
Herbert Xud35d2452008-11-08 08:09:56 +0800132 select CRYPTO_HASH
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800133 help
134 These are 'Null' algorithms, used by IPsec, which do nothing.
135
Steffen Klassert5068c7a2010-01-07 15:57:19 +1100136config CRYPTO_PCRYPT
Kees Cook3b4afaf2012-10-02 11:16:49 -0700137 tristate "Parallel crypto engine"
138 depends on SMP
Steffen Klassert5068c7a2010-01-07 15:57:19 +1100139 select PADATA
140 select CRYPTO_MANAGER
141 select CRYPTO_AEAD
142 help
143 This converts an arbitrary crypto algorithm into a parallel
144 algorithm that executes in kernel threads.
145
Huang Ying25c38d32009-02-19 14:33:40 +0800146config CRYPTO_WORKQUEUE
147 tristate
148
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800149config CRYPTO_CRYPTD
150 tristate "Software async crypto daemon"
Herbert Xudb131ef2006-09-21 11:44:08 +1000151 select CRYPTO_BLKCIPHER
Loc Hob8a28252008-05-14 21:23:00 +0800152 select CRYPTO_HASH
Herbert Xu43518402006-10-16 21:28:58 +1000153 select CRYPTO_MANAGER
Huang Ying254eff72009-02-19 14:42:19 +0800154 select CRYPTO_WORKQUEUE
Herbert Xudb131ef2006-09-21 11:44:08 +1000155 help
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800156 This is a generic software asynchronous crypto daemon that
157 converts an arbitrary synchronous software crypto algorithm
158 into an asynchronous algorithm that executes in a kernel thread.
159
160config CRYPTO_AUTHENC
161 tristate "Authenc support"
162 select CRYPTO_AEAD
163 select CRYPTO_BLKCIPHER
164 select CRYPTO_MANAGER
165 select CRYPTO_HASH
166 help
167 Authenc: Combined mode wrapper for IPsec.
168 This is required for IPSec.
169
170config CRYPTO_TEST
171 tristate "Testing module"
172 depends on m
Herbert Xuda7f0332008-07-31 17:08:25 +0800173 select CRYPTO_MANAGER
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800174 help
175 Quick & dirty crypto test module.
176
Jussi Kivilinnaffaf9152012-06-18 14:06:58 +0300177config CRYPTO_ABLK_HELPER_X86
178 tristate
179 depends on X86
180 select CRYPTO_CRYPTD
181
Jussi Kivilinna596d8752012-06-18 14:07:19 +0300182config CRYPTO_GLUE_HELPER_X86
183 tristate
184 depends on X86
185 select CRYPTO_ALGAPI
186
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800187comment "Authenticated Encryption with Associated Data"
188
189config CRYPTO_CCM
190 tristate "CCM support"
191 select CRYPTO_CTR
192 select CRYPTO_AEAD
193 help
194 Support for Counter with CBC MAC. Required for IPsec.
195
196config CRYPTO_GCM
197 tristate "GCM/GMAC support"
198 select CRYPTO_CTR
199 select CRYPTO_AEAD
Huang Ying9382d972009-08-06 15:34:26 +1000200 select CRYPTO_GHASH
Jussi Kivilinna9489667d2013-04-07 16:43:41 +0300201 select CRYPTO_NULL
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800202 help
203 Support for Galois/Counter Mode (GCM) and Galois Message
204 Authentication Code (GMAC). Required for IPSec.
205
206config CRYPTO_SEQIV
207 tristate "Sequence Number IV Generator"
208 select CRYPTO_AEAD
209 select CRYPTO_BLKCIPHER
Herbert Xua0f000e2008-08-14 22:21:31 +1000210 select CRYPTO_RNG
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800211 help
212 This IV generator generates an IV based on a sequence number by
213 xoring it with a salt. This algorithm is mainly useful for CTR
214
215comment "Block modes"
Herbert Xudb131ef2006-09-21 11:44:08 +1000216
217config CRYPTO_CBC
218 tristate "CBC support"
219 select CRYPTO_BLKCIPHER
Herbert Xu43518402006-10-16 21:28:58 +1000220 select CRYPTO_MANAGER
Herbert Xudb131ef2006-09-21 11:44:08 +1000221 help
222 CBC: Cipher Block Chaining mode
223 This block cipher algorithm is required for IPSec.
224
Joy Latten23e353c2007-10-23 08:50:32 +0800225config CRYPTO_CTR
226 tristate "CTR support"
227 select CRYPTO_BLKCIPHER
Herbert Xu0a270322007-11-30 21:38:37 +1100228 select CRYPTO_SEQIV
Joy Latten23e353c2007-10-23 08:50:32 +0800229 select CRYPTO_MANAGER
Joy Latten23e353c2007-10-23 08:50:32 +0800230 help
231 CTR: Counter mode
232 This block cipher algorithm is required for IPSec.
233
Kevin Coffman76cb9522008-03-24 21:26:16 +0800234config CRYPTO_CTS
235 tristate "CTS support"
236 select CRYPTO_BLKCIPHER
237 help
238 CTS: Cipher Text Stealing
239 This is the Cipher Text Stealing mode as described by
240 Section 8 of rfc2040 and referenced by rfc3962.
241 (rfc3962 includes errata information in its Appendix A)
242 This mode is required for Kerberos gss mechanism support
243 for AES encryption.
244
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800245config CRYPTO_ECB
246 tristate "ECB support"
Herbert Xu653ebd92007-11-27 19:48:27 +0800247 select CRYPTO_BLKCIPHER
Herbert Xu124b53d2007-04-16 20:49:20 +1000248 select CRYPTO_MANAGER
249 help
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800250 ECB: Electronic CodeBook mode
251 This is the simplest block cipher algorithm. It simply encrypts
252 the input block by block.
Herbert Xu124b53d2007-04-16 20:49:20 +1000253
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800254config CRYPTO_LRW
Jussi Kivilinna2470a2b2011-12-13 12:52:51 +0200255 tristate "LRW support"
David Howells90831632006-12-16 12:13:14 +1100256 select CRYPTO_BLKCIPHER
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800257 select CRYPTO_MANAGER
258 select CRYPTO_GF128MUL
David Howells90831632006-12-16 12:13:14 +1100259 help
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800260 LRW: Liskov Rivest Wagner, a tweakable, non malleable, non movable
261 narrow block cipher mode for dm-crypt. Use it with cipher
262 specification string aes-lrw-benbi, the key must be 256, 320 or 384.
263 The first 128, 192 or 256 bits in the key are used for AES and the
264 rest is used to tie each cipher block to its logical position.
David Howells90831632006-12-16 12:13:14 +1100265
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800266config CRYPTO_PCBC
267 tristate "PCBC support"
268 select CRYPTO_BLKCIPHER
269 select CRYPTO_MANAGER
270 help
271 PCBC: Propagating Cipher Block Chaining mode
272 This block cipher algorithm is required for RxRPC.
273
274config CRYPTO_XTS
Jussi Kivilinna5bcf8e62011-12-13 12:52:56 +0200275 tristate "XTS support"
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800276 select CRYPTO_BLKCIPHER
277 select CRYPTO_MANAGER
278 select CRYPTO_GF128MUL
279 help
280 XTS: IEEE1619/D16 narrow block cipher use with aes-xts-plain,
281 key size 256, 384 or 512 bits. This implementation currently
282 can't handle a sectorsize which is not a multiple of 16 bytes.
283
284comment "Hash modes"
285
Jussi Kivilinna93b5e862013-04-08 10:48:44 +0300286config CRYPTO_CMAC
287 tristate "CMAC support"
288 select CRYPTO_HASH
289 select CRYPTO_MANAGER
290 help
291 Cipher-based Message Authentication Code (CMAC) specified by
292 The National Institute of Standards and Technology (NIST).
293
294 https://tools.ietf.org/html/rfc4493
295 http://csrc.nist.gov/publications/nistpubs/800-38B/SP_800-38B.pdf
296
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800297config CRYPTO_HMAC
298 tristate "HMAC support"
299 select CRYPTO_HASH
300 select CRYPTO_MANAGER
301 help
302 HMAC: Keyed-Hashing for Message Authentication (RFC2104).
303 This is required for IPSec.
304
305config CRYPTO_XCBC
306 tristate "XCBC support"
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800307 select CRYPTO_HASH
308 select CRYPTO_MANAGER
309 help
310 XCBC: Keyed-Hashing with encryption algorithm
311 http://www.ietf.org/rfc/rfc3566.txt
312 http://csrc.nist.gov/encryption/modes/proposedmodes/
313 xcbc-mac/xcbc-mac-spec.pdf
314
Shane Wangf1939f72009-09-02 20:05:22 +1000315config CRYPTO_VMAC
316 tristate "VMAC support"
Shane Wangf1939f72009-09-02 20:05:22 +1000317 select CRYPTO_HASH
318 select CRYPTO_MANAGER
319 help
320 VMAC is a message authentication algorithm designed for
321 very high speed on 64-bit architectures.
322
323 See also:
324 <http://fastcrypto.org/vmac>
325
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800326comment "Digest"
327
328config CRYPTO_CRC32C
329 tristate "CRC32c CRC algorithm"
Herbert Xu5773a3e2008-07-08 20:54:28 +0800330 select CRYPTO_HASH
Darrick J. Wong6a0962b2012-03-23 15:02:25 -0700331 select CRC32
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800332 help
333 Castagnoli, et al Cyclic Redundancy-Check Algorithm. Used
334 by iSCSI for header and data digests and by others.
Herbert Xu69c35ef2008-11-07 15:11:47 +0800335 See Castagnoli93. Module will be crc32c.
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800336
Austin Zhang8cb51ba2008-08-07 09:57:03 +0800337config CRYPTO_CRC32C_INTEL
338 tristate "CRC32c INTEL hardware acceleration"
339 depends on X86
340 select CRYPTO_HASH
341 help
342 In Intel processor with SSE4.2 supported, the processor will
343 support CRC32C implementation using hardware accelerated CRC32
344 instruction. This option will create 'crc32c-intel' module,
345 which will enable any routine to use the CRC32 instruction to
346 gain performance compared with software implementation.
347 Module will be crc32c-intel.
348
David S. Miller442a7c42012-08-22 20:47:36 -0700349config CRYPTO_CRC32C_SPARC64
350 tristate "CRC32c CRC algorithm (SPARC64)"
351 depends on SPARC64
352 select CRYPTO_HASH
353 select CRC32
354 help
355 CRC32c CRC algorithm implemented using sparc64 crypto instructions,
356 when available.
357
Alexander Boyko78c37d12013-01-10 18:54:59 +0400358config CRYPTO_CRC32
359 tristate "CRC32 CRC algorithm"
360 select CRYPTO_HASH
361 select CRC32
362 help
363 CRC-32-IEEE 802.3 cyclic redundancy-check algorithm.
364 Shash crypto api wrappers to crc32_le function.
365
366config CRYPTO_CRC32_PCLMUL
367 tristate "CRC32 PCLMULQDQ hardware acceleration"
368 depends on X86
369 select CRYPTO_HASH
370 select CRC32
371 help
372 From Intel Westmere and AMD Bulldozer processor with SSE4.2
373 and PCLMULQDQ supported, the processor will support
374 CRC32 PCLMULQDQ implementation using hardware accelerated PCLMULQDQ
375 instruction. This option will create 'crc32-plcmul' module,
376 which will enable any routine to use the CRC-32-IEEE 802.3 checksum
377 and gain better performance as compared with the table implementation.
378
Tim Chen2d31e512013-05-01 12:52:48 -0700379config CRYPTO_CRCT10DIF
380 tristate "CRCT10DIF algorithm"
381 select CRYPTO_HASH
382 help
383 CRC T10 Data Integrity Field computation is being cast as
384 a crypto transform. This allows for faster crc t10 diff
385 transforms to be used if they are available.
386
Tim Chen0b95a7f82013-05-01 12:52:50 -0700387config CRYPTO_CRCT10DIF_PCLMUL
388 tristate "CRCT10DIF PCLMULQDQ hardware acceleration"
389 depends on X86 && 64BIT && CRC_T10DIF
390 select CRYPTO_HASH
391 help
392 For x86_64 processors with SSE4.2 and PCLMULQDQ supported,
393 CRC T10 DIF PCLMULQDQ computation can be hardware
394 accelerated PCLMULQDQ instruction. This option will create
395 'crct10dif-plcmul' module, which is faster when computing the
396 crct10dif checksum as compared with the generic table implementation.
397
Huang Ying2cdc6892009-08-06 15:32:38 +1000398config CRYPTO_GHASH
399 tristate "GHASH digest algorithm"
Huang Ying2cdc6892009-08-06 15:32:38 +1000400 select CRYPTO_GF128MUL
401 help
402 GHASH is message digest algorithm for GCM (Galois/Counter Mode).
403
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800404config CRYPTO_MD4
405 tristate "MD4 digest algorithm"
Adrian-Ken Rueegsegger808a1762008-12-03 19:55:27 +0800406 select CRYPTO_HASH
Linus Torvalds1da177e2005-04-16 15:20:36 -0700407 help
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800408 MD4 message digest algorithm (RFC1320).
Linus Torvalds1da177e2005-04-16 15:20:36 -0700409
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800410config CRYPTO_MD5
411 tristate "MD5 digest algorithm"
Adrian-Ken Rueegsegger14b75ba2008-12-03 19:57:12 +0800412 select CRYPTO_HASH
Linus Torvalds1da177e2005-04-16 15:20:36 -0700413 help
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800414 MD5 message digest algorithm (RFC1321).
Linus Torvalds1da177e2005-04-16 15:20:36 -0700415
David S. Millerfa4dfed2012-08-19 21:51:26 -0700416config CRYPTO_MD5_SPARC64
417 tristate "MD5 digest algorithm (SPARC64)"
418 depends on SPARC64
419 select CRYPTO_MD5
420 select CRYPTO_HASH
421 help
422 MD5 message digest algorithm (RFC1321) implemented
423 using sparc64 crypto instructions, when available.
424
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800425config CRYPTO_MICHAEL_MIC
426 tristate "Michael MIC keyed digest algorithm"
Adrian-Ken Rueegsegger19e2bf12008-12-07 19:35:38 +0800427 select CRYPTO_HASH
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800428 help
429 Michael MIC is used for message integrity protection in TKIP
430 (IEEE 802.11i). This algorithm is required for TKIP, but it
431 should not be used for other purposes because of the weakness
432 of the algorithm.
433
Adrian-Ken Rueegsegger82798f92008-05-07 22:17:37 +0800434config CRYPTO_RMD128
Adrian Bunkb6d44342008-07-16 19:28:00 +0800435 tristate "RIPEMD-128 digest algorithm"
Herbert Xu7c4468b2008-11-08 09:10:40 +0800436 select CRYPTO_HASH
Adrian Bunkb6d44342008-07-16 19:28:00 +0800437 help
438 RIPEMD-128 (ISO/IEC 10118-3:2004).
Adrian-Ken Rueegsegger82798f92008-05-07 22:17:37 +0800439
Adrian Bunkb6d44342008-07-16 19:28:00 +0800440 RIPEMD-128 is a 128-bit cryptographic hash function. It should only
Michael Witten35ed4b32011-07-09 04:02:31 +0000441 be used as a secure replacement for RIPEMD. For other use cases,
Adrian Bunkb6d44342008-07-16 19:28:00 +0800442 RIPEMD-160 should be used.
Adrian-Ken Rueegsegger82798f92008-05-07 22:17:37 +0800443
Adrian Bunkb6d44342008-07-16 19:28:00 +0800444 Developed by Hans Dobbertin, Antoon Bosselaers and Bart Preneel.
Justin P. Mattock6d8de742010-09-12 10:42:47 +0800445 See <http://homes.esat.kuleuven.be/~bosselae/ripemd160.html>
Adrian-Ken Rueegsegger82798f92008-05-07 22:17:37 +0800446
447config CRYPTO_RMD160
Adrian Bunkb6d44342008-07-16 19:28:00 +0800448 tristate "RIPEMD-160 digest algorithm"
Herbert Xue5835fb2008-11-08 09:18:51 +0800449 select CRYPTO_HASH
Adrian Bunkb6d44342008-07-16 19:28:00 +0800450 help
451 RIPEMD-160 (ISO/IEC 10118-3:2004).
Adrian-Ken Rueegsegger82798f92008-05-07 22:17:37 +0800452
Adrian Bunkb6d44342008-07-16 19:28:00 +0800453 RIPEMD-160 is a 160-bit cryptographic hash function. It is intended
454 to be used as a secure replacement for the 128-bit hash functions
455 MD4, MD5 and it's predecessor RIPEMD
456 (not to be confused with RIPEMD-128).
Adrian-Ken Rueegsegger82798f92008-05-07 22:17:37 +0800457
Adrian Bunkb6d44342008-07-16 19:28:00 +0800458 It's speed is comparable to SHA1 and there are no known attacks
459 against RIPEMD-160.
Adrian-Ken Rueegsegger534fe2c2008-05-09 21:30:27 +0800460
Adrian Bunkb6d44342008-07-16 19:28:00 +0800461 Developed by Hans Dobbertin, Antoon Bosselaers and Bart Preneel.
Justin P. Mattock6d8de742010-09-12 10:42:47 +0800462 See <http://homes.esat.kuleuven.be/~bosselae/ripemd160.html>
Adrian-Ken Rueegsegger534fe2c2008-05-09 21:30:27 +0800463
464config CRYPTO_RMD256
Adrian Bunkb6d44342008-07-16 19:28:00 +0800465 tristate "RIPEMD-256 digest algorithm"
Herbert Xud8a5e2e2008-11-08 09:58:10 +0800466 select CRYPTO_HASH
Adrian Bunkb6d44342008-07-16 19:28:00 +0800467 help
468 RIPEMD-256 is an optional extension of RIPEMD-128 with a
469 256 bit hash. It is intended for applications that require
470 longer hash-results, without needing a larger security level
471 (than RIPEMD-128).
Adrian-Ken Rueegsegger534fe2c2008-05-09 21:30:27 +0800472
Adrian Bunkb6d44342008-07-16 19:28:00 +0800473 Developed by Hans Dobbertin, Antoon Bosselaers and Bart Preneel.
Justin P. Mattock6d8de742010-09-12 10:42:47 +0800474 See <http://homes.esat.kuleuven.be/~bosselae/ripemd160.html>
Adrian-Ken Rueegsegger534fe2c2008-05-09 21:30:27 +0800475
476config CRYPTO_RMD320
Adrian Bunkb6d44342008-07-16 19:28:00 +0800477 tristate "RIPEMD-320 digest algorithm"
Herbert Xu3b8efb42008-11-08 10:11:09 +0800478 select CRYPTO_HASH
Adrian Bunkb6d44342008-07-16 19:28:00 +0800479 help
480 RIPEMD-320 is an optional extension of RIPEMD-160 with a
481 320 bit hash. It is intended for applications that require
482 longer hash-results, without needing a larger security level
483 (than RIPEMD-160).
Adrian-Ken Rueegsegger534fe2c2008-05-09 21:30:27 +0800484
Adrian Bunkb6d44342008-07-16 19:28:00 +0800485 Developed by Hans Dobbertin, Antoon Bosselaers and Bart Preneel.
Justin P. Mattock6d8de742010-09-12 10:42:47 +0800486 See <http://homes.esat.kuleuven.be/~bosselae/ripemd160.html>
Adrian-Ken Rueegsegger82798f92008-05-07 22:17:37 +0800487
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800488config CRYPTO_SHA1
489 tristate "SHA1 digest algorithm"
Adrian-Ken Rueegsegger54ccb362008-12-02 21:08:20 +0800490 select CRYPTO_HASH
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800491 help
492 SHA-1 secure hash standard (FIPS 180-1/DFIPS 180-2).
493
Mathias Krause66be8952011-08-04 20:19:25 +0200494config CRYPTO_SHA1_SSSE3
495 tristate "SHA1 digest algorithm (SSSE3/AVX)"
496 depends on X86 && 64BIT
497 select CRYPTO_SHA1
498 select CRYPTO_HASH
499 help
500 SHA-1 secure hash standard (FIPS 180-1/DFIPS 180-2) implemented
501 using Supplemental SSE3 (SSSE3) instructions or Advanced Vector
502 Extensions (AVX), when available.
503
Tim Chen8275d1a2013-03-26 13:59:17 -0700504config CRYPTO_SHA256_SSSE3
505 tristate "SHA256 digest algorithm (SSSE3/AVX/AVX2)"
506 depends on X86 && 64BIT
507 select CRYPTO_SHA256
508 select CRYPTO_HASH
509 help
510 SHA-256 secure hash standard (DFIPS 180-2) implemented
511 using Supplemental SSE3 (SSSE3) instructions, or Advanced Vector
512 Extensions version 1 (AVX1), or Advanced Vector Extensions
513 version 2 (AVX2) instructions, when available.
514
Tim Chen87de4572013-03-26 14:00:02 -0700515config CRYPTO_SHA512_SSSE3
516 tristate "SHA512 digest algorithm (SSSE3/AVX/AVX2)"
517 depends on X86 && 64BIT
518 select CRYPTO_SHA512
519 select CRYPTO_HASH
520 help
521 SHA-512 secure hash standard (DFIPS 180-2) implemented
522 using Supplemental SSE3 (SSSE3) instructions, or Advanced Vector
523 Extensions version 1 (AVX1), or Advanced Vector Extensions
524 version 2 (AVX2) instructions, when available.
525
David S. Miller4ff28d42012-08-19 15:41:53 -0700526config CRYPTO_SHA1_SPARC64
527 tristate "SHA1 digest algorithm (SPARC64)"
528 depends on SPARC64
529 select CRYPTO_SHA1
530 select CRYPTO_HASH
531 help
532 SHA-1 secure hash standard (FIPS 180-1/DFIPS 180-2) implemented
533 using sparc64 crypto instructions, when available.
534
David McCulloughf0be44f2012-09-07 04:17:02 +0800535config CRYPTO_SHA1_ARM
536 tristate "SHA1 digest algorithm (ARM-asm)"
537 depends on ARM
538 select CRYPTO_SHA1
539 select CRYPTO_HASH
540 help
541 SHA-1 secure hash standard (FIPS 180-1/DFIPS 180-2) implemented
542 using optimized ARM assembler.
543
Michael Ellerman323a6bf2012-09-13 23:00:49 +0000544config CRYPTO_SHA1_PPC
545 tristate "SHA1 digest algorithm (powerpc)"
546 depends on PPC
547 help
548 This is the powerpc hardware accelerated implementation of the
549 SHA-1 secure hash standard (FIPS 180-1/DFIPS 180-2).
550
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800551config CRYPTO_SHA256
552 tristate "SHA224 and SHA256 digest algorithm"
Adrian-Ken Rueegsegger50e109b52008-12-03 19:57:49 +0800553 select CRYPTO_HASH
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800554 help
555 SHA256 secure hash standard (DFIPS 180-2).
556
557 This version of SHA implements a 256 bit hash with 128 bits of
558 security against collision attacks.
559
Adrian Bunkb6d44342008-07-16 19:28:00 +0800560 This code also includes SHA-224, a 224 bit hash with 112 bits
561 of security against collision attacks.
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800562
David S. Miller86c93b22012-08-19 17:11:37 -0700563config CRYPTO_SHA256_SPARC64
564 tristate "SHA224 and SHA256 digest algorithm (SPARC64)"
565 depends on SPARC64
566 select CRYPTO_SHA256
567 select CRYPTO_HASH
568 help
569 SHA-256 secure hash standard (DFIPS 180-2) implemented
570 using sparc64 crypto instructions, when available.
571
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800572config CRYPTO_SHA512
573 tristate "SHA384 and SHA512 digest algorithms"
Adrian-Ken Rueegseggerbd9d20d2008-12-17 16:49:02 +1100574 select CRYPTO_HASH
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800575 help
576 SHA512 secure hash standard (DFIPS 180-2).
577
578 This version of SHA implements a 512 bit hash with 256 bits of
579 security against collision attacks.
580
581 This code also includes SHA-384, a 384 bit hash with 192 bits
582 of security against collision attacks.
583
David S. Miller775e0c62012-08-19 17:37:56 -0700584config CRYPTO_SHA512_SPARC64
585 tristate "SHA384 and SHA512 digest algorithm (SPARC64)"
586 depends on SPARC64
587 select CRYPTO_SHA512
588 select CRYPTO_HASH
589 help
590 SHA-512 secure hash standard (DFIPS 180-2) implemented
591 using sparc64 crypto instructions, when available.
592
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800593config CRYPTO_TGR192
594 tristate "Tiger digest algorithms"
Adrian-Ken Rueegseggerf63fbd32008-12-03 19:58:32 +0800595 select CRYPTO_HASH
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800596 help
597 Tiger hash algorithm 192, 160 and 128-bit hashes
598
599 Tiger is a hash function optimized for 64-bit processors while
600 still having decent performance on 32-bit processors.
601 Tiger was developed by Ross Anderson and Eli Biham.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700602
603 See also:
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800604 <http://www.cs.technion.ac.il/~biham/Reports/Tiger/>.
605
606config CRYPTO_WP512
607 tristate "Whirlpool digest algorithms"
Adrian-Ken Rueegsegger49465102008-12-07 19:34:37 +0800608 select CRYPTO_HASH
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800609 help
610 Whirlpool hash algorithm 512, 384 and 256-bit hashes
611
612 Whirlpool-512 is part of the NESSIE cryptographic primitives.
613 Whirlpool will be part of the ISO/IEC 10118-3:2003(E) standard
614
615 See also:
Justin P. Mattock6d8de742010-09-12 10:42:47 +0800616 <http://www.larc.usp.br/~pbarreto/WhirlpoolPage.html>
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800617
Huang Ying0e1227d2009-10-19 11:53:06 +0900618config CRYPTO_GHASH_CLMUL_NI_INTEL
619 tristate "GHASH digest algorithm (CLMUL-NI accelerated)"
Richard Weinberger8af00862011-06-08 20:56:29 +0800620 depends on X86 && 64BIT
Huang Ying0e1227d2009-10-19 11:53:06 +0900621 select CRYPTO_CRYPTD
622 help
623 GHASH is message digest algorithm for GCM (Galois/Counter Mode).
624 The implementation is accelerated by CLMUL-NI of Intel.
625
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800626comment "Ciphers"
Linus Torvalds1da177e2005-04-16 15:20:36 -0700627
628config CRYPTO_AES
629 tristate "AES cipher algorithms"
Herbert Xucce9e062006-08-21 21:08:13 +1000630 select CRYPTO_ALGAPI
Linus Torvalds1da177e2005-04-16 15:20:36 -0700631 help
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800632 AES cipher algorithms (FIPS-197). AES uses the Rijndael
Linus Torvalds1da177e2005-04-16 15:20:36 -0700633 algorithm.
634
635 Rijndael appears to be consistently a very good performer in
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800636 both hardware and software across a wide range of computing
637 environments regardless of its use in feedback or non-feedback
638 modes. Its key setup time is excellent, and its key agility is
639 good. Rijndael's very low memory requirements make it very well
640 suited for restricted-space environments, in which it also
641 demonstrates excellent performance. Rijndael's operations are
642 among the easiest to defend against power and timing attacks.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700643
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800644 The AES specifies three key sizes: 128, 192 and 256 bits
Linus Torvalds1da177e2005-04-16 15:20:36 -0700645
646 See <http://csrc.nist.gov/CryptoToolkit/aes/> for more information.
647
648config CRYPTO_AES_586
649 tristate "AES cipher algorithms (i586)"
Herbert Xucce9e062006-08-21 21:08:13 +1000650 depends on (X86 || UML_X86) && !64BIT
651 select CRYPTO_ALGAPI
Sebastian Siewior5157dea2007-11-10 19:07:16 +0800652 select CRYPTO_AES
Linus Torvalds1da177e2005-04-16 15:20:36 -0700653 help
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800654 AES cipher algorithms (FIPS-197). AES uses the Rijndael
Linus Torvalds1da177e2005-04-16 15:20:36 -0700655 algorithm.
656
657 Rijndael appears to be consistently a very good performer in
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800658 both hardware and software across a wide range of computing
659 environments regardless of its use in feedback or non-feedback
660 modes. Its key setup time is excellent, and its key agility is
661 good. Rijndael's very low memory requirements make it very well
662 suited for restricted-space environments, in which it also
663 demonstrates excellent performance. Rijndael's operations are
664 among the easiest to defend against power and timing attacks.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700665
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800666 The AES specifies three key sizes: 128, 192 and 256 bits
Linus Torvalds1da177e2005-04-16 15:20:36 -0700667
668 See <http://csrc.nist.gov/encryption/aes/> for more information.
669
Andreas Steinmetza2a892a2005-07-06 13:55:00 -0700670config CRYPTO_AES_X86_64
671 tristate "AES cipher algorithms (x86_64)"
Herbert Xucce9e062006-08-21 21:08:13 +1000672 depends on (X86 || UML_X86) && 64BIT
673 select CRYPTO_ALGAPI
Sebastian Siewior81190b32007-11-08 21:25:04 +0800674 select CRYPTO_AES
Andreas Steinmetza2a892a2005-07-06 13:55:00 -0700675 help
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800676 AES cipher algorithms (FIPS-197). AES uses the Rijndael
Andreas Steinmetza2a892a2005-07-06 13:55:00 -0700677 algorithm.
678
679 Rijndael appears to be consistently a very good performer in
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800680 both hardware and software across a wide range of computing
681 environments regardless of its use in feedback or non-feedback
682 modes. Its key setup time is excellent, and its key agility is
683 good. Rijndael's very low memory requirements make it very well
684 suited for restricted-space environments, in which it also
685 demonstrates excellent performance. Rijndael's operations are
686 among the easiest to defend against power and timing attacks.
Andreas Steinmetza2a892a2005-07-06 13:55:00 -0700687
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800688 The AES specifies three key sizes: 128, 192 and 256 bits
Andreas Steinmetza2a892a2005-07-06 13:55:00 -0700689
690 See <http://csrc.nist.gov/encryption/aes/> for more information.
691
Huang Ying54b6a1b2009-01-18 16:28:34 +1100692config CRYPTO_AES_NI_INTEL
693 tristate "AES cipher algorithms (AES-NI)"
Richard Weinberger8af00862011-06-08 20:56:29 +0800694 depends on X86
Mathias Krause0d258ef2010-11-27 16:34:46 +0800695 select CRYPTO_AES_X86_64 if 64BIT
696 select CRYPTO_AES_586 if !64BIT
Huang Ying54b6a1b2009-01-18 16:28:34 +1100697 select CRYPTO_CRYPTD
Jussi Kivilinnaa9629d72012-06-18 14:07:08 +0300698 select CRYPTO_ABLK_HELPER_X86
Huang Ying54b6a1b2009-01-18 16:28:34 +1100699 select CRYPTO_ALGAPI
Jussi Kivilinna7643a112013-04-10 18:39:20 +0300700 select CRYPTO_GLUE_HELPER_X86 if 64BIT
Jussi Kivilinna023af602012-07-22 18:18:37 +0300701 select CRYPTO_LRW
702 select CRYPTO_XTS
Huang Ying54b6a1b2009-01-18 16:28:34 +1100703 help
704 Use Intel AES-NI instructions for AES algorithm.
705
706 AES cipher algorithms (FIPS-197). AES uses the Rijndael
707 algorithm.
708
709 Rijndael appears to be consistently a very good performer in
710 both hardware and software across a wide range of computing
711 environments regardless of its use in feedback or non-feedback
712 modes. Its key setup time is excellent, and its key agility is
713 good. Rijndael's very low memory requirements make it very well
714 suited for restricted-space environments, in which it also
715 demonstrates excellent performance. Rijndael's operations are
716 among the easiest to defend against power and timing attacks.
717
718 The AES specifies three key sizes: 128, 192 and 256 bits
719
720 See <http://csrc.nist.gov/encryption/aes/> for more information.
721
Mathias Krause0d258ef2010-11-27 16:34:46 +0800722 In addition to AES cipher algorithm support, the acceleration
723 for some popular block cipher mode is supported too, including
724 ECB, CBC, LRW, PCBC, XTS. The 64 bit version has additional
725 acceleration for CTR.
Huang Ying2cf4ac82009-03-29 15:41:20 +0800726
David S. Miller9bf4852d2012-08-21 03:58:13 -0700727config CRYPTO_AES_SPARC64
728 tristate "AES cipher algorithms (SPARC64)"
729 depends on SPARC64
730 select CRYPTO_CRYPTD
731 select CRYPTO_ALGAPI
732 help
733 Use SPARC64 crypto opcodes for AES algorithm.
734
735 AES cipher algorithms (FIPS-197). AES uses the Rijndael
736 algorithm.
737
738 Rijndael appears to be consistently a very good performer in
739 both hardware and software across a wide range of computing
740 environments regardless of its use in feedback or non-feedback
741 modes. Its key setup time is excellent, and its key agility is
742 good. Rijndael's very low memory requirements make it very well
743 suited for restricted-space environments, in which it also
744 demonstrates excellent performance. Rijndael's operations are
745 among the easiest to defend against power and timing attacks.
746
747 The AES specifies three key sizes: 128, 192 and 256 bits
748
749 See <http://csrc.nist.gov/encryption/aes/> for more information.
750
751 In addition to AES cipher algorithm support, the acceleration
752 for some popular block cipher mode is supported too, including
753 ECB and CBC.
754
David McCulloughf0be44f2012-09-07 04:17:02 +0800755config CRYPTO_AES_ARM
756 tristate "AES cipher algorithms (ARM-asm)"
757 depends on ARM
758 select CRYPTO_ALGAPI
759 select CRYPTO_AES
760 help
761 Use optimized AES assembler routines for ARM platforms.
762
763 AES cipher algorithms (FIPS-197). AES uses the Rijndael
764 algorithm.
765
766 Rijndael appears to be consistently a very good performer in
767 both hardware and software across a wide range of computing
768 environments regardless of its use in feedback or non-feedback
769 modes. Its key setup time is excellent, and its key agility is
770 good. Rijndael's very low memory requirements make it very well
771 suited for restricted-space environments, in which it also
772 demonstrates excellent performance. Rijndael's operations are
773 among the easiest to defend against power and timing attacks.
774
775 The AES specifies three key sizes: 128, 192 and 256 bits
776
777 See <http://csrc.nist.gov/encryption/aes/> for more information.
778
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800779config CRYPTO_ANUBIS
780 tristate "Anubis cipher algorithm"
781 select CRYPTO_ALGAPI
782 help
783 Anubis cipher algorithm.
784
785 Anubis is a variable key length cipher which can use keys from
786 128 bits to 320 bits in length. It was evaluated as a entrant
787 in the NESSIE competition.
788
789 See also:
Justin P. Mattock6d8de742010-09-12 10:42:47 +0800790 <https://www.cosic.esat.kuleuven.be/nessie/reports/>
791 <http://www.larc.usp.br/~pbarreto/AnubisPage.html>
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800792
793config CRYPTO_ARC4
794 tristate "ARC4 cipher algorithm"
Sebastian Andrzej Siewiorb9b0f082012-06-26 18:13:46 +0200795 select CRYPTO_BLKCIPHER
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800796 help
797 ARC4 cipher algorithm.
798
799 ARC4 is a stream cipher using keys ranging from 8 bits to 2048
800 bits in length. This algorithm is required for driver-based
801 WEP, but it should not be for other purposes because of the
802 weakness of the algorithm.
803
804config CRYPTO_BLOWFISH
805 tristate "Blowfish cipher algorithm"
806 select CRYPTO_ALGAPI
Jussi Kivilinna52ba8672011-09-02 01:45:07 +0300807 select CRYPTO_BLOWFISH_COMMON
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800808 help
809 Blowfish cipher algorithm, by Bruce Schneier.
810
811 This is a variable key length cipher which can use keys from 32
812 bits to 448 bits in length. It's fast, simple and specifically
813 designed for use on "large microprocessors".
814
815 See also:
816 <http://www.schneier.com/blowfish.html>
817
Jussi Kivilinna52ba8672011-09-02 01:45:07 +0300818config CRYPTO_BLOWFISH_COMMON
819 tristate
820 help
821 Common parts of the Blowfish cipher algorithm shared by the
822 generic c and the assembler implementations.
823
824 See also:
825 <http://www.schneier.com/blowfish.html>
826
Jussi Kivilinna64b94ce2011-09-02 01:45:22 +0300827config CRYPTO_BLOWFISH_X86_64
828 tristate "Blowfish cipher algorithm (x86_64)"
Al Virof21a7c12012-04-08 20:31:22 -0400829 depends on X86 && 64BIT
Jussi Kivilinna64b94ce2011-09-02 01:45:22 +0300830 select CRYPTO_ALGAPI
831 select CRYPTO_BLOWFISH_COMMON
832 help
833 Blowfish cipher algorithm (x86_64), by Bruce Schneier.
834
835 This is a variable key length cipher which can use keys from 32
836 bits to 448 bits in length. It's fast, simple and specifically
837 designed for use on "large microprocessors".
838
839 See also:
840 <http://www.schneier.com/blowfish.html>
841
Jussi Kivilinna60488012013-04-13 13:46:45 +0300842config CRYPTO_BLOWFISH_AVX2_X86_64
843 tristate "Blowfish cipher algorithm (x86_64/AVX2)"
844 depends on X86 && 64BIT
845 select CRYPTO_ALGAPI
846 select CRYPTO_CRYPTD
847 select CRYPTO_ABLK_HELPER_X86
848 select CRYPTO_BLOWFISH_COMMON
849 select CRYPTO_BLOWFISH_X86_64
850 help
851 Blowfish cipher algorithm (x86_64/AVX2), by Bruce Schneier.
852
853 This is a variable key length cipher which can use keys from 32
854 bits to 448 bits in length. It's fast, simple and specifically
855 designed for use on "large microprocessors".
856
857 See also:
858 <http://www.schneier.com/blowfish.html>
859
Sebastian Siewior584fffc2008-04-05 21:04:48 +0800860config CRYPTO_CAMELLIA
861 tristate "Camellia cipher algorithms"
862 depends on CRYPTO
863 select CRYPTO_ALGAPI
864 help
865 Camellia cipher algorithms module.
866
867 Camellia is a symmetric key block cipher developed jointly
868 at NTT and Mitsubishi Electric Corporation.
869
870 The Camellia specifies three key sizes: 128, 192 and 256 bits.
871
872 See also:
873 <https://info.isl.ntt.co.jp/crypt/eng/camellia/index_s.html>
874
Jussi Kivilinna0b95ec52012-03-05 20:26:47 +0200875config CRYPTO_CAMELLIA_X86_64
876 tristate "Camellia cipher algorithm (x86_64)"
Al Virof21a7c12012-04-08 20:31:22 -0400877 depends on X86 && 64BIT
Jussi Kivilinna0b95ec52012-03-05 20:26:47 +0200878 depends on CRYPTO
879 select CRYPTO_ALGAPI
Jussi Kivilinna964263a2012-06-18 14:07:29 +0300880 select CRYPTO_GLUE_HELPER_X86
Jussi Kivilinna0b95ec52012-03-05 20:26:47 +0200881 select CRYPTO_LRW
882 select CRYPTO_XTS
883 help
884 Camellia cipher algorithm module (x86_64).
885
886 Camellia is a symmetric key block cipher developed jointly
887 at NTT and Mitsubishi Electric Corporation.
888
889 The Camellia specifies three key sizes: 128, 192 and 256 bits.
890
891 See also:
892 <https://info.isl.ntt.co.jp/crypt/eng/camellia/index_s.html>
893
Jussi Kivilinnad9b1d2e2012-10-26 14:49:01 +0300894config CRYPTO_CAMELLIA_AESNI_AVX_X86_64
895 tristate "Camellia cipher algorithm (x86_64/AES-NI/AVX)"
896 depends on X86 && 64BIT
897 depends on CRYPTO
898 select CRYPTO_ALGAPI
899 select CRYPTO_CRYPTD
900 select CRYPTO_ABLK_HELPER_X86
901 select CRYPTO_GLUE_HELPER_X86
902 select CRYPTO_CAMELLIA_X86_64
903 select CRYPTO_LRW
904 select CRYPTO_XTS
905 help
906 Camellia cipher algorithm module (x86_64/AES-NI/AVX).
907
908 Camellia is a symmetric key block cipher developed jointly
909 at NTT and Mitsubishi Electric Corporation.
910
911 The Camellia specifies three key sizes: 128, 192 and 256 bits.
912
913 See also:
914 <https://info.isl.ntt.co.jp/crypt/eng/camellia/index_s.html>
915
Jussi Kivilinnaf3f935a2013-04-13 13:47:00 +0300916config CRYPTO_CAMELLIA_AESNI_AVX2_X86_64
917 tristate "Camellia cipher algorithm (x86_64/AES-NI/AVX2)"
918 depends on X86 && 64BIT
919 depends on CRYPTO
920 select CRYPTO_ALGAPI
921 select CRYPTO_CRYPTD
922 select CRYPTO_ABLK_HELPER_X86
923 select CRYPTO_GLUE_HELPER_X86
924 select CRYPTO_CAMELLIA_X86_64
925 select CRYPTO_CAMELLIA_AESNI_AVX_X86_64
926 select CRYPTO_LRW
927 select CRYPTO_XTS
928 help
929 Camellia cipher algorithm module (x86_64/AES-NI/AVX2).
930
931 Camellia is a symmetric key block cipher developed jointly
932 at NTT and Mitsubishi Electric Corporation.
933
934 The Camellia specifies three key sizes: 128, 192 and 256 bits.
935
936 See also:
937 <https://info.isl.ntt.co.jp/crypt/eng/camellia/index_s.html>
938
David S. Miller81658ad2012-08-28 12:05:54 -0700939config CRYPTO_CAMELLIA_SPARC64
940 tristate "Camellia cipher algorithm (SPARC64)"
941 depends on SPARC64
942 depends on CRYPTO
943 select CRYPTO_ALGAPI
944 help
945 Camellia cipher algorithm module (SPARC64).
946
947 Camellia is a symmetric key block cipher developed jointly
948 at NTT and Mitsubishi Electric Corporation.
949
950 The Camellia specifies three key sizes: 128, 192 and 256 bits.
951
952 See also:
953 <https://info.isl.ntt.co.jp/crypt/eng/camellia/index_s.html>
954
Jussi Kivilinna044ab522012-11-13 11:43:14 +0200955config CRYPTO_CAST_COMMON
956 tristate
957 help
958 Common parts of the CAST cipher algorithms shared by the
959 generic c and the assembler implementations.
960
Linus Torvalds1da177e2005-04-16 15:20:36 -0700961config CRYPTO_CAST5
962 tristate "CAST5 (CAST-128) cipher algorithm"
Herbert Xucce9e062006-08-21 21:08:13 +1000963 select CRYPTO_ALGAPI
Jussi Kivilinna044ab522012-11-13 11:43:14 +0200964 select CRYPTO_CAST_COMMON
Linus Torvalds1da177e2005-04-16 15:20:36 -0700965 help
966 The CAST5 encryption algorithm (synonymous with CAST-128) is
967 described in RFC2144.
968
Johannes Goetzfried4d6d6a22012-07-11 19:37:37 +0200969config CRYPTO_CAST5_AVX_X86_64
970 tristate "CAST5 (CAST-128) cipher algorithm (x86_64/AVX)"
971 depends on X86 && 64BIT
972 select CRYPTO_ALGAPI
973 select CRYPTO_CRYPTD
974 select CRYPTO_ABLK_HELPER_X86
Jussi Kivilinna044ab522012-11-13 11:43:14 +0200975 select CRYPTO_CAST_COMMON
Johannes Goetzfried4d6d6a22012-07-11 19:37:37 +0200976 select CRYPTO_CAST5
977 help
978 The CAST5 encryption algorithm (synonymous with CAST-128) is
979 described in RFC2144.
980
981 This module provides the Cast5 cipher algorithm that processes
982 sixteen blocks parallel using the AVX instruction set.
983
Linus Torvalds1da177e2005-04-16 15:20:36 -0700984config CRYPTO_CAST6
985 tristate "CAST6 (CAST-256) cipher algorithm"
Herbert Xucce9e062006-08-21 21:08:13 +1000986 select CRYPTO_ALGAPI
Jussi Kivilinna044ab522012-11-13 11:43:14 +0200987 select CRYPTO_CAST_COMMON
Linus Torvalds1da177e2005-04-16 15:20:36 -0700988 help
989 The CAST6 encryption algorithm (synonymous with CAST-256) is
990 described in RFC2612.
991
Johannes Goetzfried4ea12772012-07-11 19:38:57 +0200992config CRYPTO_CAST6_AVX_X86_64
993 tristate "CAST6 (CAST-256) cipher algorithm (x86_64/AVX)"
994 depends on X86 && 64BIT
995 select CRYPTO_ALGAPI
996 select CRYPTO_CRYPTD
997 select CRYPTO_ABLK_HELPER_X86
998 select CRYPTO_GLUE_HELPER_X86
Jussi Kivilinna044ab522012-11-13 11:43:14 +0200999 select CRYPTO_CAST_COMMON
Johannes Goetzfried4ea12772012-07-11 19:38:57 +02001000 select CRYPTO_CAST6
1001 select CRYPTO_LRW
1002 select CRYPTO_XTS
1003 help
1004 The CAST6 encryption algorithm (synonymous with CAST-256) is
1005 described in RFC2612.
1006
1007 This module provides the Cast6 cipher algorithm that processes
1008 eight blocks parallel using the AVX instruction set.
1009
Sebastian Siewior584fffc2008-04-05 21:04:48 +08001010config CRYPTO_DES
1011 tristate "DES and Triple DES EDE cipher algorithms"
Herbert Xucce9e062006-08-21 21:08:13 +10001012 select CRYPTO_ALGAPI
Linus Torvalds1da177e2005-04-16 15:20:36 -07001013 help
Sebastian Siewior584fffc2008-04-05 21:04:48 +08001014 DES cipher algorithm (FIPS 46-2), and Triple DES EDE (FIPS 46-3).
Linus Torvalds1da177e2005-04-16 15:20:36 -07001015
David S. Millerc5aac2d2012-08-25 22:37:23 -07001016config CRYPTO_DES_SPARC64
1017 tristate "DES and Triple DES EDE cipher algorithms (SPARC64)"
Dave Jones97da37b2012-10-02 17:13:20 -04001018 depends on SPARC64
David S. Millerc5aac2d2012-08-25 22:37:23 -07001019 select CRYPTO_ALGAPI
1020 select CRYPTO_DES
1021 help
1022 DES cipher algorithm (FIPS 46-2), and Triple DES EDE (FIPS 46-3),
1023 optimized using SPARC64 crypto opcodes.
1024
Sebastian Siewior584fffc2008-04-05 21:04:48 +08001025config CRYPTO_FCRYPT
1026 tristate "FCrypt cipher algorithm"
Herbert Xucce9e062006-08-21 21:08:13 +10001027 select CRYPTO_ALGAPI
Sebastian Siewior584fffc2008-04-05 21:04:48 +08001028 select CRYPTO_BLKCIPHER
Linus Torvalds1da177e2005-04-16 15:20:36 -07001029 help
Sebastian Siewior584fffc2008-04-05 21:04:48 +08001030 FCrypt algorithm used by RxRPC.
Linus Torvalds1da177e2005-04-16 15:20:36 -07001031
1032config CRYPTO_KHAZAD
1033 tristate "Khazad cipher algorithm"
Herbert Xucce9e062006-08-21 21:08:13 +10001034 select CRYPTO_ALGAPI
Linus Torvalds1da177e2005-04-16 15:20:36 -07001035 help
1036 Khazad cipher algorithm.
1037
1038 Khazad was a finalist in the initial NESSIE competition. It is
1039 an algorithm optimized for 64-bit processors with good performance
1040 on 32-bit processors. Khazad uses an 128 bit key size.
1041
1042 See also:
Justin P. Mattock6d8de742010-09-12 10:42:47 +08001043 <http://www.larc.usp.br/~pbarreto/KhazadPage.html>
Linus Torvalds1da177e2005-04-16 15:20:36 -07001044
Tan Swee Heng2407d602007-11-23 19:45:00 +08001045config CRYPTO_SALSA20
Kees Cook3b4afaf2012-10-02 11:16:49 -07001046 tristate "Salsa20 stream cipher algorithm"
Tan Swee Heng2407d602007-11-23 19:45:00 +08001047 select CRYPTO_BLKCIPHER
1048 help
1049 Salsa20 stream cipher algorithm.
1050
1051 Salsa20 is a stream cipher submitted to eSTREAM, the ECRYPT
1052 Stream Cipher Project. See <http://www.ecrypt.eu.org/stream/>
1053
1054 The Salsa20 stream cipher algorithm is designed by Daniel J.
1055 Bernstein <djb@cr.yp.to>. See <http://cr.yp.to/snuffle.html>
Linus Torvalds1da177e2005-04-16 15:20:36 -07001056
Tan Swee Heng974e4b72007-12-10 15:52:56 +08001057config CRYPTO_SALSA20_586
Kees Cook3b4afaf2012-10-02 11:16:49 -07001058 tristate "Salsa20 stream cipher algorithm (i586)"
Tan Swee Heng974e4b72007-12-10 15:52:56 +08001059 depends on (X86 || UML_X86) && !64BIT
Tan Swee Heng974e4b72007-12-10 15:52:56 +08001060 select CRYPTO_BLKCIPHER
Tan Swee Heng974e4b72007-12-10 15:52:56 +08001061 help
1062 Salsa20 stream cipher algorithm.
1063
1064 Salsa20 is a stream cipher submitted to eSTREAM, the ECRYPT
1065 Stream Cipher Project. See <http://www.ecrypt.eu.org/stream/>
1066
1067 The Salsa20 stream cipher algorithm is designed by Daniel J.
1068 Bernstein <djb@cr.yp.to>. See <http://cr.yp.to/snuffle.html>
1069
Tan Swee Heng9a7dafb2007-12-18 00:04:40 +08001070config CRYPTO_SALSA20_X86_64
Kees Cook3b4afaf2012-10-02 11:16:49 -07001071 tristate "Salsa20 stream cipher algorithm (x86_64)"
Tan Swee Heng9a7dafb2007-12-18 00:04:40 +08001072 depends on (X86 || UML_X86) && 64BIT
Tan Swee Heng9a7dafb2007-12-18 00:04:40 +08001073 select CRYPTO_BLKCIPHER
Tan Swee Heng9a7dafb2007-12-18 00:04:40 +08001074 help
1075 Salsa20 stream cipher algorithm.
1076
1077 Salsa20 is a stream cipher submitted to eSTREAM, the ECRYPT
1078 Stream Cipher Project. See <http://www.ecrypt.eu.org/stream/>
1079
1080 The Salsa20 stream cipher algorithm is designed by Daniel J.
1081 Bernstein <djb@cr.yp.to>. See <http://cr.yp.to/snuffle.html>
1082
Sebastian Siewior584fffc2008-04-05 21:04:48 +08001083config CRYPTO_SEED
1084 tristate "SEED cipher algorithm"
1085 select CRYPTO_ALGAPI
1086 help
1087 SEED cipher algorithm (RFC4269).
1088
1089 SEED is a 128-bit symmetric key block cipher that has been
1090 developed by KISA (Korea Information Security Agency) as a
1091 national standard encryption algorithm of the Republic of Korea.
1092 It is a 16 round block cipher with the key size of 128 bit.
1093
1094 See also:
1095 <http://www.kisa.or.kr/kisa/seed/jsp/seed_eng.jsp>
1096
1097config CRYPTO_SERPENT
1098 tristate "Serpent cipher algorithm"
1099 select CRYPTO_ALGAPI
1100 help
1101 Serpent cipher algorithm, by Anderson, Biham & Knudsen.
1102
1103 Keys are allowed to be from 0 to 256 bits in length, in steps
1104 of 8 bits. Also includes the 'Tnepres' algorithm, a reversed
1105 variant of Serpent for compatibility with old kerneli.org code.
1106
1107 See also:
1108 <http://www.cl.cam.ac.uk/~rja14/serpent.html>
1109
Jussi Kivilinna937c30d2011-11-09 16:26:25 +02001110config CRYPTO_SERPENT_SSE2_X86_64
1111 tristate "Serpent cipher algorithm (x86_64/SSE2)"
1112 depends on X86 && 64BIT
1113 select CRYPTO_ALGAPI
Jussi Kivilinna341975b2011-11-24 08:37:41 +02001114 select CRYPTO_CRYPTD
Jussi Kivilinnaffaf9152012-06-18 14:06:58 +03001115 select CRYPTO_ABLK_HELPER_X86
Jussi Kivilinna596d8752012-06-18 14:07:19 +03001116 select CRYPTO_GLUE_HELPER_X86
Jussi Kivilinna937c30d2011-11-09 16:26:25 +02001117 select CRYPTO_SERPENT
Jussi Kivilinnafeaf0cf2011-12-13 12:53:12 +02001118 select CRYPTO_LRW
1119 select CRYPTO_XTS
Jussi Kivilinna937c30d2011-11-09 16:26:25 +02001120 help
1121 Serpent cipher algorithm, by Anderson, Biham & Knudsen.
1122
1123 Keys are allowed to be from 0 to 256 bits in length, in steps
1124 of 8 bits.
1125
1126 This module provides Serpent cipher algorithm that processes eigth
1127 blocks parallel using SSE2 instruction set.
1128
1129 See also:
1130 <http://www.cl.cam.ac.uk/~rja14/serpent.html>
1131
Jussi Kivilinna251496d2011-11-09 16:26:31 +02001132config CRYPTO_SERPENT_SSE2_586
1133 tristate "Serpent cipher algorithm (i586/SSE2)"
1134 depends on X86 && !64BIT
1135 select CRYPTO_ALGAPI
Jussi Kivilinna341975b2011-11-24 08:37:41 +02001136 select CRYPTO_CRYPTD
Jussi Kivilinnaffaf9152012-06-18 14:06:58 +03001137 select CRYPTO_ABLK_HELPER_X86
Jussi Kivilinna596d8752012-06-18 14:07:19 +03001138 select CRYPTO_GLUE_HELPER_X86
Jussi Kivilinna251496d2011-11-09 16:26:31 +02001139 select CRYPTO_SERPENT
Jussi Kivilinnafeaf0cf2011-12-13 12:53:12 +02001140 select CRYPTO_LRW
1141 select CRYPTO_XTS
Jussi Kivilinna251496d2011-11-09 16:26:31 +02001142 help
1143 Serpent cipher algorithm, by Anderson, Biham & Knudsen.
1144
1145 Keys are allowed to be from 0 to 256 bits in length, in steps
1146 of 8 bits.
1147
1148 This module provides Serpent cipher algorithm that processes four
1149 blocks parallel using SSE2 instruction set.
1150
1151 See also:
1152 <http://www.cl.cam.ac.uk/~rja14/serpent.html>
1153
Johannes Goetzfried7efe4072012-06-12 16:47:43 +08001154config CRYPTO_SERPENT_AVX_X86_64
1155 tristate "Serpent cipher algorithm (x86_64/AVX)"
1156 depends on X86 && 64BIT
1157 select CRYPTO_ALGAPI
1158 select CRYPTO_CRYPTD
Jussi Kivilinnaffaf9152012-06-18 14:06:58 +03001159 select CRYPTO_ABLK_HELPER_X86
Jussi Kivilinna1d0debb2012-06-18 14:07:24 +03001160 select CRYPTO_GLUE_HELPER_X86
Johannes Goetzfried7efe4072012-06-12 16:47:43 +08001161 select CRYPTO_SERPENT
1162 select CRYPTO_LRW
1163 select CRYPTO_XTS
1164 help
1165 Serpent cipher algorithm, by Anderson, Biham & Knudsen.
1166
1167 Keys are allowed to be from 0 to 256 bits in length, in steps
1168 of 8 bits.
1169
1170 This module provides the Serpent cipher algorithm that processes
1171 eight blocks parallel using the AVX instruction set.
1172
1173 See also:
1174 <http://www.cl.cam.ac.uk/~rja14/serpent.html>
1175
Jussi Kivilinna56d76c92013-04-13 13:46:55 +03001176config CRYPTO_SERPENT_AVX2_X86_64
1177 tristate "Serpent cipher algorithm (x86_64/AVX2)"
1178 depends on X86 && 64BIT
1179 select CRYPTO_ALGAPI
1180 select CRYPTO_CRYPTD
1181 select CRYPTO_ABLK_HELPER_X86
1182 select CRYPTO_GLUE_HELPER_X86
1183 select CRYPTO_SERPENT
1184 select CRYPTO_SERPENT_AVX_X86_64
1185 select CRYPTO_LRW
1186 select CRYPTO_XTS
1187 help
1188 Serpent cipher algorithm, by Anderson, Biham & Knudsen.
1189
1190 Keys are allowed to be from 0 to 256 bits in length, in steps
1191 of 8 bits.
1192
1193 This module provides Serpent cipher algorithm that processes 16
1194 blocks parallel using AVX2 instruction set.
1195
1196 See also:
1197 <http://www.cl.cam.ac.uk/~rja14/serpent.html>
1198
Sebastian Siewior584fffc2008-04-05 21:04:48 +08001199config CRYPTO_TEA
1200 tristate "TEA, XTEA and XETA cipher algorithms"
1201 select CRYPTO_ALGAPI
1202 help
1203 TEA cipher algorithm.
1204
1205 Tiny Encryption Algorithm is a simple cipher that uses
1206 many rounds for security. It is very fast and uses
1207 little memory.
1208
1209 Xtendend Tiny Encryption Algorithm is a modification to
1210 the TEA algorithm to address a potential key weakness
1211 in the TEA algorithm.
1212
1213 Xtendend Encryption Tiny Algorithm is a mis-implementation
1214 of the XTEA algorithm for compatibility purposes.
1215
1216config CRYPTO_TWOFISH
1217 tristate "Twofish cipher algorithm"
1218 select CRYPTO_ALGAPI
1219 select CRYPTO_TWOFISH_COMMON
1220 help
1221 Twofish cipher algorithm.
1222
1223 Twofish was submitted as an AES (Advanced Encryption Standard)
1224 candidate cipher by researchers at CounterPane Systems. It is a
1225 16 round block cipher supporting key sizes of 128, 192, and 256
1226 bits.
1227
1228 See also:
1229 <http://www.schneier.com/twofish.html>
1230
1231config CRYPTO_TWOFISH_COMMON
1232 tristate
1233 help
1234 Common parts of the Twofish cipher algorithm shared by the
1235 generic c and the assembler implementations.
1236
1237config CRYPTO_TWOFISH_586
1238 tristate "Twofish cipher algorithms (i586)"
1239 depends on (X86 || UML_X86) && !64BIT
1240 select CRYPTO_ALGAPI
1241 select CRYPTO_TWOFISH_COMMON
1242 help
1243 Twofish cipher algorithm.
1244
1245 Twofish was submitted as an AES (Advanced Encryption Standard)
1246 candidate cipher by researchers at CounterPane Systems. It is a
1247 16 round block cipher supporting key sizes of 128, 192, and 256
1248 bits.
1249
1250 See also:
1251 <http://www.schneier.com/twofish.html>
1252
1253config CRYPTO_TWOFISH_X86_64
1254 tristate "Twofish cipher algorithm (x86_64)"
1255 depends on (X86 || UML_X86) && 64BIT
1256 select CRYPTO_ALGAPI
1257 select CRYPTO_TWOFISH_COMMON
1258 help
1259 Twofish cipher algorithm (x86_64).
1260
1261 Twofish was submitted as an AES (Advanced Encryption Standard)
1262 candidate cipher by researchers at CounterPane Systems. It is a
1263 16 round block cipher supporting key sizes of 128, 192, and 256
1264 bits.
1265
1266 See also:
1267 <http://www.schneier.com/twofish.html>
1268
Jussi Kivilinna8280daa2011-09-26 16:47:25 +03001269config CRYPTO_TWOFISH_X86_64_3WAY
1270 tristate "Twofish cipher algorithm (x86_64, 3-way parallel)"
Al Virof21a7c12012-04-08 20:31:22 -04001271 depends on X86 && 64BIT
Jussi Kivilinna8280daa2011-09-26 16:47:25 +03001272 select CRYPTO_ALGAPI
1273 select CRYPTO_TWOFISH_COMMON
1274 select CRYPTO_TWOFISH_X86_64
Jussi Kivilinna414cb5e2012-06-18 14:07:34 +03001275 select CRYPTO_GLUE_HELPER_X86
Jussi Kivilinnae7cda5d2011-12-13 12:53:01 +02001276 select CRYPTO_LRW
1277 select CRYPTO_XTS
Jussi Kivilinna8280daa2011-09-26 16:47:25 +03001278 help
1279 Twofish cipher algorithm (x86_64, 3-way parallel).
1280
1281 Twofish was submitted as an AES (Advanced Encryption Standard)
1282 candidate cipher by researchers at CounterPane Systems. It is a
1283 16 round block cipher supporting key sizes of 128, 192, and 256
1284 bits.
1285
1286 This module provides Twofish cipher algorithm that processes three
1287 blocks parallel, utilizing resources of out-of-order CPUs better.
1288
1289 See also:
1290 <http://www.schneier.com/twofish.html>
1291
Johannes Goetzfried107778b2012-05-28 15:54:24 +02001292config CRYPTO_TWOFISH_AVX_X86_64
1293 tristate "Twofish cipher algorithm (x86_64/AVX)"
1294 depends on X86 && 64BIT
1295 select CRYPTO_ALGAPI
1296 select CRYPTO_CRYPTD
Jussi Kivilinna30a04002012-06-18 14:07:03 +03001297 select CRYPTO_ABLK_HELPER_X86
Jussi Kivilinnaa7378d42012-06-18 14:07:39 +03001298 select CRYPTO_GLUE_HELPER_X86
Johannes Goetzfried107778b2012-05-28 15:54:24 +02001299 select CRYPTO_TWOFISH_COMMON
1300 select CRYPTO_TWOFISH_X86_64
1301 select CRYPTO_TWOFISH_X86_64_3WAY
1302 select CRYPTO_LRW
1303 select CRYPTO_XTS
1304 help
1305 Twofish cipher algorithm (x86_64/AVX).
1306
1307 Twofish was submitted as an AES (Advanced Encryption Standard)
1308 candidate cipher by researchers at CounterPane Systems. It is a
1309 16 round block cipher supporting key sizes of 128, 192, and 256
1310 bits.
1311
1312 This module provides the Twofish cipher algorithm that processes
1313 eight blocks parallel using the AVX Instruction Set.
1314
1315 See also:
1316 <http://www.schneier.com/twofish.html>
1317
Jussi Kivilinnacf1521a2013-04-13 13:46:50 +03001318config CRYPTO_TWOFISH_AVX2_X86_64
1319 tristate "Twofish cipher algorithm (x86_64/AVX2)"
1320 depends on X86 && 64BIT
1321 select CRYPTO_ALGAPI
1322 select CRYPTO_CRYPTD
1323 select CRYPTO_ABLK_HELPER_X86
1324 select CRYPTO_GLUE_HELPER_X86
1325 select CRYPTO_TWOFISH_COMMON
1326 select CRYPTO_TWOFISH_X86_64
1327 select CRYPTO_TWOFISH_X86_64_3WAY
1328 select CRYPTO_TWOFISH_AVX_X86_64
1329 select CRYPTO_LRW
1330 select CRYPTO_XTS
1331 help
1332 Twofish cipher algorithm (x86_64/AVX2).
1333
1334 Twofish was submitted as an AES (Advanced Encryption Standard)
1335 candidate cipher by researchers at CounterPane Systems. It is a
1336 16 round block cipher supporting key sizes of 128, 192, and 256
1337 bits.
1338
1339 See also:
1340 <http://www.schneier.com/twofish.html>
1341
Sebastian Siewior584fffc2008-04-05 21:04:48 +08001342comment "Compression"
1343
Linus Torvalds1da177e2005-04-16 15:20:36 -07001344config CRYPTO_DEFLATE
1345 tristate "Deflate compression algorithm"
Herbert Xucce9e062006-08-21 21:08:13 +10001346 select CRYPTO_ALGAPI
Linus Torvalds1da177e2005-04-16 15:20:36 -07001347 select ZLIB_INFLATE
1348 select ZLIB_DEFLATE
1349 help
1350 This is the Deflate algorithm (RFC1951), specified for use in
1351 IPSec with the IPCOMP protocol (RFC3173, RFC2394).
Sebastian Siewior584fffc2008-04-05 21:04:48 +08001352
Linus Torvalds1da177e2005-04-16 15:20:36 -07001353 You will most probably want this if using IPSec.
1354
Geert Uytterhoevenbf68e652009-03-04 15:15:49 +08001355config CRYPTO_ZLIB
1356 tristate "Zlib compression algorithm"
1357 select CRYPTO_PCOMP
1358 select ZLIB_INFLATE
1359 select ZLIB_DEFLATE
1360 select NLATTR
1361 help
1362 This is the zlib algorithm.
1363
Zoltan Sogor0b77abb2007-12-07 16:53:23 +08001364config CRYPTO_LZO
1365 tristate "LZO compression algorithm"
1366 select CRYPTO_ALGAPI
1367 select LZO_COMPRESS
1368 select LZO_DECOMPRESS
1369 help
1370 This is the LZO algorithm.
1371
Seth Jennings35a1fc12012-07-19 09:42:41 -05001372config CRYPTO_842
1373 tristate "842 compression algorithm"
1374 depends on CRYPTO_DEV_NX_COMPRESS
1375 # 842 uses lzo if the hardware becomes unavailable
1376 select LZO_COMPRESS
1377 select LZO_DECOMPRESS
1378 help
1379 This is the 842 algorithm.
1380
Neil Horman17f0f4a2008-08-14 22:15:52 +10001381comment "Random Number Generation"
1382
1383config CRYPTO_ANSI_CPRNG
1384 tristate "Pseudo Random Number Generation for Cryptographic modules"
Neil Horman4e4ed832009-08-20 17:54:16 +10001385 default m
Neil Horman17f0f4a2008-08-14 22:15:52 +10001386 select CRYPTO_AES
1387 select CRYPTO_RNG
Neil Horman17f0f4a2008-08-14 22:15:52 +10001388 help
1389 This option enables the generic pseudo random number generator
1390 for cryptographic modules. Uses the Algorithm specified in
Jiri Kosina7dd607e2010-01-27 01:00:10 +01001391 ANSI X9.31 A.2.4. Note that this option must be enabled if
1392 CRYPTO_FIPS is selected
Neil Horman17f0f4a2008-08-14 22:15:52 +10001393
Herbert Xu03c8efc2010-10-19 21:12:39 +08001394config CRYPTO_USER_API
1395 tristate
1396
Herbert Xufe869cd2010-10-19 21:23:00 +08001397config CRYPTO_USER_API_HASH
1398 tristate "User-space interface for hash algorithms"
Herbert Xu74517082010-11-29 22:56:03 +08001399 depends on NET
Herbert Xufe869cd2010-10-19 21:23:00 +08001400 select CRYPTO_HASH
1401 select CRYPTO_USER_API
1402 help
1403 This option enables the user-spaces interface for hash
1404 algorithms.
1405
Herbert Xu8ff59092010-10-19 21:31:55 +08001406config CRYPTO_USER_API_SKCIPHER
1407 tristate "User-space interface for symmetric key cipher algorithms"
Herbert Xu74517082010-11-29 22:56:03 +08001408 depends on NET
Herbert Xu8ff59092010-10-19 21:31:55 +08001409 select CRYPTO_BLKCIPHER
1410 select CRYPTO_USER_API
1411 help
1412 This option enables the user-spaces interface for symmetric
1413 key cipher algorithms.
1414
Linus Torvalds1da177e2005-04-16 15:20:36 -07001415source "drivers/crypto/Kconfig"
David Howells964f3b32012-09-13 15:17:21 +01001416source crypto/asymmetric_keys/Kconfig
Linus Torvalds1da177e2005-04-16 15:20:36 -07001417
Herbert Xucce9e062006-08-21 21:08:13 +10001418endif # if CRYPTO