| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 1 | # | 
| Dan Williams | 685784a | 2007-07-09 11:56:42 -0700 | [diff] [blame] | 2 | # Generic algorithms support | 
 | 3 | # | 
 | 4 | config XOR_BLOCKS | 
 | 5 | 	tristate | 
 | 6 |  | 
 | 7 | # | 
| Dan Williams | 9bc89cd | 2007-01-02 11:10:44 -0700 | [diff] [blame] | 8 | # async_tx api: hardware offloaded memory transfer/transform support | 
 | 9 | # | 
 | 10 | source "crypto/async_tx/Kconfig" | 
 | 11 |  | 
 | 12 | # | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 13 | # Cryptographic API Configuration | 
 | 14 | # | 
| Jan Engelhardt | 2e290f4 | 2007-05-18 15:11:01 +1000 | [diff] [blame] | 15 | menuconfig CRYPTO | 
| Sebastian Siewior | c3715cb9 | 2008-03-30 16:36:09 +0800 | [diff] [blame] | 16 | 	tristate "Cryptographic API" | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 17 | 	help | 
 | 18 | 	  This option provides the core Cryptographic API. | 
 | 19 |  | 
| Herbert Xu | cce9e06 | 2006-08-21 21:08:13 +1000 | [diff] [blame] | 20 | if CRYPTO | 
 | 21 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 22 | comment "Crypto core or helper" | 
 | 23 |  | 
| Neil Horman | ccb778e | 2008-08-05 14:13:08 +0800 | [diff] [blame] | 24 | config CRYPTO_FIPS | 
 | 25 | 	bool "FIPS 200 compliance" | 
| Chuck Ebbert | e84c548 | 2010-09-03 19:17:49 +0800 | [diff] [blame] | 26 | 	depends on CRYPTO_ANSI_CPRNG && !CRYPTO_MANAGER_DISABLE_TESTS | 
| Neil Horman | ccb778e | 2008-08-05 14:13:08 +0800 | [diff] [blame] | 27 | 	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 Ebbert | e84c548 | 2010-09-03 19:17:49 +0800 | [diff] [blame] | 31 | 	  this is. | 
| Neil Horman | ccb778e | 2008-08-05 14:13:08 +0800 | [diff] [blame] | 32 |  | 
| Herbert Xu | cce9e06 | 2006-08-21 21:08:13 +1000 | [diff] [blame] | 33 | config CRYPTO_ALGAPI | 
 | 34 | 	tristate | 
| Herbert Xu | 6a0fcbb | 2008-12-10 23:29:44 +1100 | [diff] [blame] | 35 | 	select CRYPTO_ALGAPI2 | 
| Herbert Xu | cce9e06 | 2006-08-21 21:08:13 +1000 | [diff] [blame] | 36 | 	help | 
 | 37 | 	  This option provides the API for cryptographic algorithms. | 
 | 38 |  | 
| Herbert Xu | 6a0fcbb | 2008-12-10 23:29:44 +1100 | [diff] [blame] | 39 | config CRYPTO_ALGAPI2 | 
 | 40 | 	tristate | 
 | 41 |  | 
| Herbert Xu | 1ae9782 | 2007-08-30 15:36:14 +0800 | [diff] [blame] | 42 | config CRYPTO_AEAD | 
 | 43 | 	tristate | 
| Herbert Xu | 6a0fcbb | 2008-12-10 23:29:44 +1100 | [diff] [blame] | 44 | 	select CRYPTO_AEAD2 | 
| Herbert Xu | 1ae9782 | 2007-08-30 15:36:14 +0800 | [diff] [blame] | 45 | 	select CRYPTO_ALGAPI | 
 | 46 |  | 
| Herbert Xu | 6a0fcbb | 2008-12-10 23:29:44 +1100 | [diff] [blame] | 47 | config CRYPTO_AEAD2 | 
 | 48 | 	tristate | 
 | 49 | 	select CRYPTO_ALGAPI2 | 
 | 50 |  | 
| Herbert Xu | 5cde0af | 2006-08-22 00:07:53 +1000 | [diff] [blame] | 51 | config CRYPTO_BLKCIPHER | 
 | 52 | 	tristate | 
| Herbert Xu | 6a0fcbb | 2008-12-10 23:29:44 +1100 | [diff] [blame] | 53 | 	select CRYPTO_BLKCIPHER2 | 
| Herbert Xu | 5cde0af | 2006-08-22 00:07:53 +1000 | [diff] [blame] | 54 | 	select CRYPTO_ALGAPI | 
| Herbert Xu | 6a0fcbb | 2008-12-10 23:29:44 +1100 | [diff] [blame] | 55 |  | 
 | 56 | config CRYPTO_BLKCIPHER2 | 
 | 57 | 	tristate | 
 | 58 | 	select CRYPTO_ALGAPI2 | 
 | 59 | 	select CRYPTO_RNG2 | 
| Huang Ying | 0a2e821 | 2009-02-19 14:44:02 +0800 | [diff] [blame] | 60 | 	select CRYPTO_WORKQUEUE | 
| Herbert Xu | 5cde0af | 2006-08-22 00:07:53 +1000 | [diff] [blame] | 61 |  | 
| Herbert Xu | 055bcee | 2006-08-19 22:24:23 +1000 | [diff] [blame] | 62 | config CRYPTO_HASH | 
 | 63 | 	tristate | 
| Herbert Xu | 6a0fcbb | 2008-12-10 23:29:44 +1100 | [diff] [blame] | 64 | 	select CRYPTO_HASH2 | 
| Herbert Xu | 055bcee | 2006-08-19 22:24:23 +1000 | [diff] [blame] | 65 | 	select CRYPTO_ALGAPI | 
 | 66 |  | 
| Herbert Xu | 6a0fcbb | 2008-12-10 23:29:44 +1100 | [diff] [blame] | 67 | config CRYPTO_HASH2 | 
 | 68 | 	tristate | 
 | 69 | 	select CRYPTO_ALGAPI2 | 
 | 70 |  | 
| Neil Horman | 17f0f4a | 2008-08-14 22:15:52 +1000 | [diff] [blame] | 71 | config CRYPTO_RNG | 
 | 72 | 	tristate | 
| Herbert Xu | 6a0fcbb | 2008-12-10 23:29:44 +1100 | [diff] [blame] | 73 | 	select CRYPTO_RNG2 | 
| Neil Horman | 17f0f4a | 2008-08-14 22:15:52 +1000 | [diff] [blame] | 74 | 	select CRYPTO_ALGAPI | 
 | 75 |  | 
| Herbert Xu | 6a0fcbb | 2008-12-10 23:29:44 +1100 | [diff] [blame] | 76 | config CRYPTO_RNG2 | 
 | 77 | 	tristate | 
 | 78 | 	select CRYPTO_ALGAPI2 | 
 | 79 |  | 
| Geert Uytterhoeven | a1d2f09 | 2009-03-04 15:05:33 +0800 | [diff] [blame] | 80 | config CRYPTO_PCOMP | 
 | 81 | 	tristate | 
| Herbert Xu | bc94e59 | 2010-06-03 20:33:06 +1000 | [diff] [blame] | 82 | 	select CRYPTO_PCOMP2 | 
 | 83 | 	select CRYPTO_ALGAPI | 
 | 84 |  | 
 | 85 | config CRYPTO_PCOMP2 | 
 | 86 | 	tristate | 
| Geert Uytterhoeven | a1d2f09 | 2009-03-04 15:05:33 +0800 | [diff] [blame] | 87 | 	select CRYPTO_ALGAPI2 | 
 | 88 |  | 
| Herbert Xu | 2b8c19d | 2006-09-21 11:31:44 +1000 | [diff] [blame] | 89 | config CRYPTO_MANAGER | 
 | 90 | 	tristate "Cryptographic algorithm manager" | 
| Herbert Xu | 6a0fcbb | 2008-12-10 23:29:44 +1100 | [diff] [blame] | 91 | 	select CRYPTO_MANAGER2 | 
| Herbert Xu | 2b8c19d | 2006-09-21 11:31:44 +1000 | [diff] [blame] | 92 | 	help | 
 | 93 | 	  Create default cryptographic template instantiations such as | 
 | 94 | 	  cbc(aes). | 
 | 95 |  | 
| Herbert Xu | 6a0fcbb | 2008-12-10 23:29:44 +1100 | [diff] [blame] | 96 | config 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 Xu | bc94e59 | 2010-06-03 20:33:06 +1000 | [diff] [blame] | 101 | 	select CRYPTO_PCOMP2 | 
| Herbert Xu | 6a0fcbb | 2008-12-10 23:29:44 +1100 | [diff] [blame] | 102 |  | 
| Steffen Klassert | a38f790 | 2011-09-27 07:23:50 +0200 | [diff] [blame] | 103 | config CRYPTO_USER | 
 | 104 | 	tristate "Userspace cryptographic algorithm configuration" | 
| Herbert Xu | 5db017a | 2011-11-01 12:12:43 +1100 | [diff] [blame] | 105 | 	depends on NET | 
| Steffen Klassert | a38f790 | 2011-09-27 07:23:50 +0200 | [diff] [blame] | 106 | 	select CRYPTO_MANAGER | 
 | 107 | 	help | 
| Valdis.Kletnieks@vt.edu | d19978f | 2011-11-09 01:29:20 -0500 | [diff] [blame] | 108 | 	  Userspace configuration for cryptographic instantiations such as | 
| Steffen Klassert | a38f790 | 2011-09-27 07:23:50 +0200 | [diff] [blame] | 109 | 	  cbc(aes). | 
 | 110 |  | 
| Herbert Xu | 326a634 | 2010-08-06 09:40:28 +0800 | [diff] [blame] | 111 | config CRYPTO_MANAGER_DISABLE_TESTS | 
 | 112 | 	bool "Disable run-time self tests" | 
| Herbert Xu | 00ca28a | 2010-08-06 10:34:00 +0800 | [diff] [blame] | 113 | 	default y | 
 | 114 | 	depends on CRYPTO_MANAGER2 | 
| Alexander Shishkin | 0b767f9 | 2010-06-03 20:53:43 +1000 | [diff] [blame] | 115 | 	help | 
| Herbert Xu | 326a634 | 2010-08-06 09:40:28 +0800 | [diff] [blame] | 116 | 	  Disable run-time self tests that normally take place at | 
 | 117 | 	  algorithm registration. | 
| Alexander Shishkin | 0b767f9 | 2010-06-03 20:53:43 +1000 | [diff] [blame] | 118 |  | 
| Rik Snel | c494e07 | 2006-11-29 18:59:44 +1100 | [diff] [blame] | 119 | config CRYPTO_GF128MUL | 
 | 120 | 	tristate "GF(2^128) multiplication functions (EXPERIMENTAL)" | 
| Rik Snel | c494e07 | 2006-11-29 18:59:44 +1100 | [diff] [blame] | 121 | 	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 Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 128 | config CRYPTO_NULL | 
 | 129 | 	tristate "Null algorithms" | 
 | 130 | 	select CRYPTO_ALGAPI | 
 | 131 | 	select CRYPTO_BLKCIPHER | 
| Herbert Xu | d35d245 | 2008-11-08 08:09:56 +0800 | [diff] [blame] | 132 | 	select CRYPTO_HASH | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 133 | 	help | 
 | 134 | 	  These are 'Null' algorithms, used by IPsec, which do nothing. | 
 | 135 |  | 
| Steffen Klassert | 5068c7a | 2010-01-07 15:57:19 +1100 | [diff] [blame] | 136 | config CRYPTO_PCRYPT | 
 | 137 | 	tristate "Parallel crypto engine (EXPERIMENTAL)" | 
 | 138 | 	depends on SMP && EXPERIMENTAL | 
 | 139 | 	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 Ying | 25c38d3 | 2009-02-19 14:33:40 +0800 | [diff] [blame] | 146 | config CRYPTO_WORKQUEUE | 
 | 147 |        tristate | 
 | 148 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 149 | config CRYPTO_CRYPTD | 
 | 150 | 	tristate "Software async crypto daemon" | 
| Herbert Xu | db131ef | 2006-09-21 11:44:08 +1000 | [diff] [blame] | 151 | 	select CRYPTO_BLKCIPHER | 
| Loc Ho | b8a2825 | 2008-05-14 21:23:00 +0800 | [diff] [blame] | 152 | 	select CRYPTO_HASH | 
| Herbert Xu | 4351840 | 2006-10-16 21:28:58 +1000 | [diff] [blame] | 153 | 	select CRYPTO_MANAGER | 
| Huang Ying | 254eff7 | 2009-02-19 14:42:19 +0800 | [diff] [blame] | 154 | 	select CRYPTO_WORKQUEUE | 
| Herbert Xu | db131ef | 2006-09-21 11:44:08 +1000 | [diff] [blame] | 155 | 	help | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 156 | 	  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 |  | 
 | 160 | config 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 |  | 
 | 170 | config CRYPTO_TEST | 
 | 171 | 	tristate "Testing module" | 
 | 172 | 	depends on m | 
| Herbert Xu | da7f033 | 2008-07-31 17:08:25 +0800 | [diff] [blame] | 173 | 	select CRYPTO_MANAGER | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 174 | 	help | 
 | 175 | 	  Quick & dirty crypto test module. | 
 | 176 |  | 
 | 177 | comment "Authenticated Encryption with Associated Data" | 
 | 178 |  | 
 | 179 | config CRYPTO_CCM | 
 | 180 | 	tristate "CCM support" | 
 | 181 | 	select CRYPTO_CTR | 
 | 182 | 	select CRYPTO_AEAD | 
 | 183 | 	help | 
 | 184 | 	  Support for Counter with CBC MAC. Required for IPsec. | 
 | 185 |  | 
 | 186 | config CRYPTO_GCM | 
 | 187 | 	tristate "GCM/GMAC support" | 
 | 188 | 	select CRYPTO_CTR | 
 | 189 | 	select CRYPTO_AEAD | 
| Huang Ying | 9382d97 | 2009-08-06 15:34:26 +1000 | [diff] [blame] | 190 | 	select CRYPTO_GHASH | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 191 | 	help | 
 | 192 | 	  Support for Galois/Counter Mode (GCM) and Galois Message | 
 | 193 | 	  Authentication Code (GMAC). Required for IPSec. | 
 | 194 |  | 
 | 195 | config CRYPTO_SEQIV | 
 | 196 | 	tristate "Sequence Number IV Generator" | 
 | 197 | 	select CRYPTO_AEAD | 
 | 198 | 	select CRYPTO_BLKCIPHER | 
| Herbert Xu | a0f000e | 2008-08-14 22:21:31 +1000 | [diff] [blame] | 199 | 	select CRYPTO_RNG | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 200 | 	help | 
 | 201 | 	  This IV generator generates an IV based on a sequence number by | 
 | 202 | 	  xoring it with a salt.  This algorithm is mainly useful for CTR | 
 | 203 |  | 
 | 204 | comment "Block modes" | 
| Herbert Xu | db131ef | 2006-09-21 11:44:08 +1000 | [diff] [blame] | 205 |  | 
 | 206 | config CRYPTO_CBC | 
 | 207 | 	tristate "CBC support" | 
 | 208 | 	select CRYPTO_BLKCIPHER | 
| Herbert Xu | 4351840 | 2006-10-16 21:28:58 +1000 | [diff] [blame] | 209 | 	select CRYPTO_MANAGER | 
| Herbert Xu | db131ef | 2006-09-21 11:44:08 +1000 | [diff] [blame] | 210 | 	help | 
 | 211 | 	  CBC: Cipher Block Chaining mode | 
 | 212 | 	  This block cipher algorithm is required for IPSec. | 
 | 213 |  | 
| Joy Latten | 23e353c | 2007-10-23 08:50:32 +0800 | [diff] [blame] | 214 | config CRYPTO_CTR | 
 | 215 | 	tristate "CTR support" | 
 | 216 | 	select CRYPTO_BLKCIPHER | 
| Herbert Xu | 0a27032 | 2007-11-30 21:38:37 +1100 | [diff] [blame] | 217 | 	select CRYPTO_SEQIV | 
| Joy Latten | 23e353c | 2007-10-23 08:50:32 +0800 | [diff] [blame] | 218 | 	select CRYPTO_MANAGER | 
| Joy Latten | 23e353c | 2007-10-23 08:50:32 +0800 | [diff] [blame] | 219 | 	help | 
 | 220 | 	  CTR: Counter mode | 
 | 221 | 	  This block cipher algorithm is required for IPSec. | 
 | 222 |  | 
| Kevin Coffman | 76cb952 | 2008-03-24 21:26:16 +0800 | [diff] [blame] | 223 | config CRYPTO_CTS | 
 | 224 | 	tristate "CTS support" | 
 | 225 | 	select CRYPTO_BLKCIPHER | 
 | 226 | 	help | 
 | 227 | 	  CTS: Cipher Text Stealing | 
 | 228 | 	  This is the Cipher Text Stealing mode as described by | 
 | 229 | 	  Section 8 of rfc2040 and referenced by rfc3962. | 
 | 230 | 	  (rfc3962 includes errata information in its Appendix A) | 
 | 231 | 	  This mode is required for Kerberos gss mechanism support | 
 | 232 | 	  for AES encryption. | 
 | 233 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 234 | config CRYPTO_ECB | 
 | 235 | 	tristate "ECB support" | 
| Herbert Xu | 653ebd9 | 2007-11-27 19:48:27 +0800 | [diff] [blame] | 236 | 	select CRYPTO_BLKCIPHER | 
| Herbert Xu | 124b53d | 2007-04-16 20:49:20 +1000 | [diff] [blame] | 237 | 	select CRYPTO_MANAGER | 
 | 238 | 	help | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 239 | 	  ECB: Electronic CodeBook mode | 
 | 240 | 	  This is the simplest block cipher algorithm.  It simply encrypts | 
 | 241 | 	  the input block by block. | 
| Herbert Xu | 124b53d | 2007-04-16 20:49:20 +1000 | [diff] [blame] | 242 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 243 | config CRYPTO_LRW | 
| Jussi Kivilinna | 2470a2b | 2011-12-13 12:52:51 +0200 | [diff] [blame] | 244 | 	tristate "LRW support" | 
| David Howells | 9083163 | 2006-12-16 12:13:14 +1100 | [diff] [blame] | 245 | 	select CRYPTO_BLKCIPHER | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 246 | 	select CRYPTO_MANAGER | 
 | 247 | 	select CRYPTO_GF128MUL | 
| David Howells | 9083163 | 2006-12-16 12:13:14 +1100 | [diff] [blame] | 248 | 	help | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 249 | 	  LRW: Liskov Rivest Wagner, a tweakable, non malleable, non movable | 
 | 250 | 	  narrow block cipher mode for dm-crypt.  Use it with cipher | 
 | 251 | 	  specification string aes-lrw-benbi, the key must be 256, 320 or 384. | 
 | 252 | 	  The first 128, 192 or 256 bits in the key are used for AES and the | 
 | 253 | 	  rest is used to tie each cipher block to its logical position. | 
| David Howells | 9083163 | 2006-12-16 12:13:14 +1100 | [diff] [blame] | 254 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 255 | config CRYPTO_PCBC | 
 | 256 | 	tristate "PCBC support" | 
 | 257 | 	select CRYPTO_BLKCIPHER | 
 | 258 | 	select CRYPTO_MANAGER | 
 | 259 | 	help | 
 | 260 | 	  PCBC: Propagating Cipher Block Chaining mode | 
 | 261 | 	  This block cipher algorithm is required for RxRPC. | 
 | 262 |  | 
 | 263 | config CRYPTO_XTS | 
| Jussi Kivilinna | 5bcf8e6 | 2011-12-13 12:52:56 +0200 | [diff] [blame] | 264 | 	tristate "XTS support" | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 265 | 	select CRYPTO_BLKCIPHER | 
 | 266 | 	select CRYPTO_MANAGER | 
 | 267 | 	select CRYPTO_GF128MUL | 
 | 268 | 	help | 
 | 269 | 	  XTS: IEEE1619/D16 narrow block cipher use with aes-xts-plain, | 
 | 270 | 	  key size 256, 384 or 512 bits. This implementation currently | 
 | 271 | 	  can't handle a sectorsize which is not a multiple of 16 bytes. | 
 | 272 |  | 
 | 273 | comment "Hash modes" | 
 | 274 |  | 
 | 275 | config CRYPTO_HMAC | 
 | 276 | 	tristate "HMAC support" | 
 | 277 | 	select CRYPTO_HASH | 
 | 278 | 	select CRYPTO_MANAGER | 
 | 279 | 	help | 
 | 280 | 	  HMAC: Keyed-Hashing for Message Authentication (RFC2104). | 
 | 281 | 	  This is required for IPSec. | 
 | 282 |  | 
 | 283 | config CRYPTO_XCBC | 
 | 284 | 	tristate "XCBC support" | 
 | 285 | 	depends on EXPERIMENTAL | 
 | 286 | 	select CRYPTO_HASH | 
 | 287 | 	select CRYPTO_MANAGER | 
 | 288 | 	help | 
 | 289 | 	  XCBC: Keyed-Hashing with encryption algorithm | 
 | 290 | 		http://www.ietf.org/rfc/rfc3566.txt | 
 | 291 | 		http://csrc.nist.gov/encryption/modes/proposedmodes/ | 
 | 292 | 		 xcbc-mac/xcbc-mac-spec.pdf | 
 | 293 |  | 
| Shane Wang | f1939f7 | 2009-09-02 20:05:22 +1000 | [diff] [blame] | 294 | config CRYPTO_VMAC | 
 | 295 | 	tristate "VMAC support" | 
 | 296 | 	depends on EXPERIMENTAL | 
 | 297 | 	select CRYPTO_HASH | 
 | 298 | 	select CRYPTO_MANAGER | 
 | 299 | 	help | 
 | 300 | 	  VMAC is a message authentication algorithm designed for | 
 | 301 | 	  very high speed on 64-bit architectures. | 
 | 302 |  | 
 | 303 | 	  See also: | 
 | 304 | 	  <http://fastcrypto.org/vmac> | 
 | 305 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 306 | comment "Digest" | 
 | 307 |  | 
 | 308 | config CRYPTO_CRC32C | 
 | 309 | 	tristate "CRC32c CRC algorithm" | 
| Herbert Xu | 5773a3e | 2008-07-08 20:54:28 +0800 | [diff] [blame] | 310 | 	select CRYPTO_HASH | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 311 | 	help | 
 | 312 | 	  Castagnoli, et al Cyclic Redundancy-Check Algorithm.  Used | 
 | 313 | 	  by iSCSI for header and data digests and by others. | 
| Herbert Xu | 69c35ef | 2008-11-07 15:11:47 +0800 | [diff] [blame] | 314 | 	  See Castagnoli93.  Module will be crc32c. | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 315 |  | 
| Austin Zhang | 8cb51ba | 2008-08-07 09:57:03 +0800 | [diff] [blame] | 316 | config CRYPTO_CRC32C_INTEL | 
 | 317 | 	tristate "CRC32c INTEL hardware acceleration" | 
 | 318 | 	depends on X86 | 
 | 319 | 	select CRYPTO_HASH | 
 | 320 | 	help | 
 | 321 | 	  In Intel processor with SSE4.2 supported, the processor will | 
 | 322 | 	  support CRC32C implementation using hardware accelerated CRC32 | 
 | 323 | 	  instruction. This option will create 'crc32c-intel' module, | 
 | 324 | 	  which will enable any routine to use the CRC32 instruction to | 
 | 325 | 	  gain performance compared with software implementation. | 
 | 326 | 	  Module will be crc32c-intel. | 
 | 327 |  | 
| Huang Ying | 2cdc689 | 2009-08-06 15:32:38 +1000 | [diff] [blame] | 328 | config CRYPTO_GHASH | 
 | 329 | 	tristate "GHASH digest algorithm" | 
 | 330 | 	select CRYPTO_SHASH | 
 | 331 | 	select CRYPTO_GF128MUL | 
 | 332 | 	help | 
 | 333 | 	  GHASH is message digest algorithm for GCM (Galois/Counter Mode). | 
 | 334 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 335 | config CRYPTO_MD4 | 
 | 336 | 	tristate "MD4 digest algorithm" | 
| Adrian-Ken Rueegsegger | 808a176 | 2008-12-03 19:55:27 +0800 | [diff] [blame] | 337 | 	select CRYPTO_HASH | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 338 | 	help | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 339 | 	  MD4 message digest algorithm (RFC1320). | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 340 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 341 | config CRYPTO_MD5 | 
 | 342 | 	tristate "MD5 digest algorithm" | 
| Adrian-Ken Rueegsegger | 14b75ba | 2008-12-03 19:57:12 +0800 | [diff] [blame] | 343 | 	select CRYPTO_HASH | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 344 | 	help | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 345 | 	  MD5 message digest algorithm (RFC1321). | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 346 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 347 | config CRYPTO_MICHAEL_MIC | 
 | 348 | 	tristate "Michael MIC keyed digest algorithm" | 
| Adrian-Ken Rueegsegger | 19e2bf1 | 2008-12-07 19:35:38 +0800 | [diff] [blame] | 349 | 	select CRYPTO_HASH | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 350 | 	help | 
 | 351 | 	  Michael MIC is used for message integrity protection in TKIP | 
 | 352 | 	  (IEEE 802.11i). This algorithm is required for TKIP, but it | 
 | 353 | 	  should not be used for other purposes because of the weakness | 
 | 354 | 	  of the algorithm. | 
 | 355 |  | 
| Adrian-Ken Rueegsegger | 82798f9 | 2008-05-07 22:17:37 +0800 | [diff] [blame] | 356 | config CRYPTO_RMD128 | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 357 | 	tristate "RIPEMD-128 digest algorithm" | 
| Herbert Xu | 7c4468b | 2008-11-08 09:10:40 +0800 | [diff] [blame] | 358 | 	select CRYPTO_HASH | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 359 | 	help | 
 | 360 | 	  RIPEMD-128 (ISO/IEC 10118-3:2004). | 
| Adrian-Ken Rueegsegger | 82798f9 | 2008-05-07 22:17:37 +0800 | [diff] [blame] | 361 |  | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 362 | 	  RIPEMD-128 is a 128-bit cryptographic hash function. It should only | 
| Michael Witten | 35ed4b3 | 2011-07-09 04:02:31 +0000 | [diff] [blame] | 363 | 	  be used as a secure replacement for RIPEMD. For other use cases, | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 364 | 	  RIPEMD-160 should be used. | 
| Adrian-Ken Rueegsegger | 82798f9 | 2008-05-07 22:17:37 +0800 | [diff] [blame] | 365 |  | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 366 | 	  Developed by Hans Dobbertin, Antoon Bosselaers and Bart Preneel. | 
| Justin P. Mattock | 6d8de74 | 2010-09-12 10:42:47 +0800 | [diff] [blame] | 367 | 	  See <http://homes.esat.kuleuven.be/~bosselae/ripemd160.html> | 
| Adrian-Ken Rueegsegger | 82798f9 | 2008-05-07 22:17:37 +0800 | [diff] [blame] | 368 |  | 
 | 369 | config CRYPTO_RMD160 | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 370 | 	tristate "RIPEMD-160 digest algorithm" | 
| Herbert Xu | e5835fb | 2008-11-08 09:18:51 +0800 | [diff] [blame] | 371 | 	select CRYPTO_HASH | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 372 | 	help | 
 | 373 | 	  RIPEMD-160 (ISO/IEC 10118-3:2004). | 
| Adrian-Ken Rueegsegger | 82798f9 | 2008-05-07 22:17:37 +0800 | [diff] [blame] | 374 |  | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 375 | 	  RIPEMD-160 is a 160-bit cryptographic hash function. It is intended | 
 | 376 | 	  to be used as a secure replacement for the 128-bit hash functions | 
 | 377 | 	  MD4, MD5 and it's predecessor RIPEMD | 
 | 378 | 	  (not to be confused with RIPEMD-128). | 
| Adrian-Ken Rueegsegger | 82798f9 | 2008-05-07 22:17:37 +0800 | [diff] [blame] | 379 |  | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 380 | 	  It's speed is comparable to SHA1 and there are no known attacks | 
 | 381 | 	  against RIPEMD-160. | 
| Adrian-Ken Rueegsegger | 534fe2c | 2008-05-09 21:30:27 +0800 | [diff] [blame] | 382 |  | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 383 | 	  Developed by Hans Dobbertin, Antoon Bosselaers and Bart Preneel. | 
| Justin P. Mattock | 6d8de74 | 2010-09-12 10:42:47 +0800 | [diff] [blame] | 384 | 	  See <http://homes.esat.kuleuven.be/~bosselae/ripemd160.html> | 
| Adrian-Ken Rueegsegger | 534fe2c | 2008-05-09 21:30:27 +0800 | [diff] [blame] | 385 |  | 
 | 386 | config CRYPTO_RMD256 | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 387 | 	tristate "RIPEMD-256 digest algorithm" | 
| Herbert Xu | d8a5e2e | 2008-11-08 09:58:10 +0800 | [diff] [blame] | 388 | 	select CRYPTO_HASH | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 389 | 	help | 
 | 390 | 	  RIPEMD-256 is an optional extension of RIPEMD-128 with a | 
 | 391 | 	  256 bit hash. It is intended for applications that require | 
 | 392 | 	  longer hash-results, without needing a larger security level | 
 | 393 | 	  (than RIPEMD-128). | 
| Adrian-Ken Rueegsegger | 534fe2c | 2008-05-09 21:30:27 +0800 | [diff] [blame] | 394 |  | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 395 | 	  Developed by Hans Dobbertin, Antoon Bosselaers and Bart Preneel. | 
| Justin P. Mattock | 6d8de74 | 2010-09-12 10:42:47 +0800 | [diff] [blame] | 396 | 	  See <http://homes.esat.kuleuven.be/~bosselae/ripemd160.html> | 
| Adrian-Ken Rueegsegger | 534fe2c | 2008-05-09 21:30:27 +0800 | [diff] [blame] | 397 |  | 
 | 398 | config CRYPTO_RMD320 | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 399 | 	tristate "RIPEMD-320 digest algorithm" | 
| Herbert Xu | 3b8efb4 | 2008-11-08 10:11:09 +0800 | [diff] [blame] | 400 | 	select CRYPTO_HASH | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 401 | 	help | 
 | 402 | 	  RIPEMD-320 is an optional extension of RIPEMD-160 with a | 
 | 403 | 	  320 bit hash. It is intended for applications that require | 
 | 404 | 	  longer hash-results, without needing a larger security level | 
 | 405 | 	  (than RIPEMD-160). | 
| Adrian-Ken Rueegsegger | 534fe2c | 2008-05-09 21:30:27 +0800 | [diff] [blame] | 406 |  | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 407 | 	  Developed by Hans Dobbertin, Antoon Bosselaers and Bart Preneel. | 
| Justin P. Mattock | 6d8de74 | 2010-09-12 10:42:47 +0800 | [diff] [blame] | 408 | 	  See <http://homes.esat.kuleuven.be/~bosselae/ripemd160.html> | 
| Adrian-Ken Rueegsegger | 82798f9 | 2008-05-07 22:17:37 +0800 | [diff] [blame] | 409 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 410 | config CRYPTO_SHA1 | 
 | 411 | 	tristate "SHA1 digest algorithm" | 
| Adrian-Ken Rueegsegger | 54ccb36 | 2008-12-02 21:08:20 +0800 | [diff] [blame] | 412 | 	select CRYPTO_HASH | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 413 | 	help | 
 | 414 | 	  SHA-1 secure hash standard (FIPS 180-1/DFIPS 180-2). | 
 | 415 |  | 
| Mathias Krause | 66be895 | 2011-08-04 20:19:25 +0200 | [diff] [blame] | 416 | config CRYPTO_SHA1_SSSE3 | 
 | 417 | 	tristate "SHA1 digest algorithm (SSSE3/AVX)" | 
 | 418 | 	depends on X86 && 64BIT | 
 | 419 | 	select CRYPTO_SHA1 | 
 | 420 | 	select CRYPTO_HASH | 
 | 421 | 	help | 
 | 422 | 	  SHA-1 secure hash standard (FIPS 180-1/DFIPS 180-2) implemented | 
 | 423 | 	  using Supplemental SSE3 (SSSE3) instructions or Advanced Vector | 
 | 424 | 	  Extensions (AVX), when available. | 
 | 425 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 426 | config CRYPTO_SHA256 | 
 | 427 | 	tristate "SHA224 and SHA256 digest algorithm" | 
| Adrian-Ken Rueegsegger | 50e109b5 | 2008-12-03 19:57:49 +0800 | [diff] [blame] | 428 | 	select CRYPTO_HASH | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 429 | 	help | 
 | 430 | 	  SHA256 secure hash standard (DFIPS 180-2). | 
 | 431 |  | 
 | 432 | 	  This version of SHA implements a 256 bit hash with 128 bits of | 
 | 433 | 	  security against collision attacks. | 
 | 434 |  | 
| Adrian Bunk | b6d4434 | 2008-07-16 19:28:00 +0800 | [diff] [blame] | 435 | 	  This code also includes SHA-224, a 224 bit hash with 112 bits | 
 | 436 | 	  of security against collision attacks. | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 437 |  | 
 | 438 | config CRYPTO_SHA512 | 
 | 439 | 	tristate "SHA384 and SHA512 digest algorithms" | 
| Adrian-Ken Rueegsegger | bd9d20d | 2008-12-17 16:49:02 +1100 | [diff] [blame] | 440 | 	select CRYPTO_HASH | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 441 | 	help | 
 | 442 | 	  SHA512 secure hash standard (DFIPS 180-2). | 
 | 443 |  | 
 | 444 | 	  This version of SHA implements a 512 bit hash with 256 bits of | 
 | 445 | 	  security against collision attacks. | 
 | 446 |  | 
 | 447 | 	  This code also includes SHA-384, a 384 bit hash with 192 bits | 
 | 448 | 	  of security against collision attacks. | 
 | 449 |  | 
 | 450 | config CRYPTO_TGR192 | 
 | 451 | 	tristate "Tiger digest algorithms" | 
| Adrian-Ken Rueegsegger | f63fbd3 | 2008-12-03 19:58:32 +0800 | [diff] [blame] | 452 | 	select CRYPTO_HASH | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 453 | 	help | 
 | 454 | 	  Tiger hash algorithm 192, 160 and 128-bit hashes | 
 | 455 |  | 
 | 456 | 	  Tiger is a hash function optimized for 64-bit processors while | 
 | 457 | 	  still having decent performance on 32-bit processors. | 
 | 458 | 	  Tiger was developed by Ross Anderson and Eli Biham. | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 459 |  | 
 | 460 | 	  See also: | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 461 | 	  <http://www.cs.technion.ac.il/~biham/Reports/Tiger/>. | 
 | 462 |  | 
 | 463 | config CRYPTO_WP512 | 
 | 464 | 	tristate "Whirlpool digest algorithms" | 
| Adrian-Ken Rueegsegger | 4946510 | 2008-12-07 19:34:37 +0800 | [diff] [blame] | 465 | 	select CRYPTO_HASH | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 466 | 	help | 
 | 467 | 	  Whirlpool hash algorithm 512, 384 and 256-bit hashes | 
 | 468 |  | 
 | 469 | 	  Whirlpool-512 is part of the NESSIE cryptographic primitives. | 
 | 470 | 	  Whirlpool will be part of the ISO/IEC 10118-3:2003(E) standard | 
 | 471 |  | 
 | 472 | 	  See also: | 
| Justin P. Mattock | 6d8de74 | 2010-09-12 10:42:47 +0800 | [diff] [blame] | 473 | 	  <http://www.larc.usp.br/~pbarreto/WhirlpoolPage.html> | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 474 |  | 
| Huang Ying | 0e1227d | 2009-10-19 11:53:06 +0900 | [diff] [blame] | 475 | config CRYPTO_GHASH_CLMUL_NI_INTEL | 
 | 476 | 	tristate "GHASH digest algorithm (CLMUL-NI accelerated)" | 
| Richard Weinberger | 8af0086 | 2011-06-08 20:56:29 +0800 | [diff] [blame] | 477 | 	depends on X86 && 64BIT | 
| Huang Ying | 0e1227d | 2009-10-19 11:53:06 +0900 | [diff] [blame] | 478 | 	select CRYPTO_SHASH | 
 | 479 | 	select CRYPTO_CRYPTD | 
 | 480 | 	help | 
 | 481 | 	  GHASH is message digest algorithm for GCM (Galois/Counter Mode). | 
 | 482 | 	  The implementation is accelerated by CLMUL-NI of Intel. | 
 | 483 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 484 | comment "Ciphers" | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 485 |  | 
 | 486 | config CRYPTO_AES | 
 | 487 | 	tristate "AES cipher algorithms" | 
| Herbert Xu | cce9e06 | 2006-08-21 21:08:13 +1000 | [diff] [blame] | 488 | 	select CRYPTO_ALGAPI | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 489 | 	help | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 490 | 	  AES cipher algorithms (FIPS-197). AES uses the Rijndael | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 491 | 	  algorithm. | 
 | 492 |  | 
 | 493 | 	  Rijndael appears to be consistently a very good performer in | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 494 | 	  both hardware and software across a wide range of computing | 
 | 495 | 	  environments regardless of its use in feedback or non-feedback | 
 | 496 | 	  modes. Its key setup time is excellent, and its key agility is | 
 | 497 | 	  good. Rijndael's very low memory requirements make it very well | 
 | 498 | 	  suited for restricted-space environments, in which it also | 
 | 499 | 	  demonstrates excellent performance. Rijndael's operations are | 
 | 500 | 	  among the easiest to defend against power and timing attacks. | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 501 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 502 | 	  The AES specifies three key sizes: 128, 192 and 256 bits | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 503 |  | 
 | 504 | 	  See <http://csrc.nist.gov/CryptoToolkit/aes/> for more information. | 
 | 505 |  | 
 | 506 | config CRYPTO_AES_586 | 
 | 507 | 	tristate "AES cipher algorithms (i586)" | 
| Herbert Xu | cce9e06 | 2006-08-21 21:08:13 +1000 | [diff] [blame] | 508 | 	depends on (X86 || UML_X86) && !64BIT | 
 | 509 | 	select CRYPTO_ALGAPI | 
| Sebastian Siewior | 5157dea | 2007-11-10 19:07:16 +0800 | [diff] [blame] | 510 | 	select CRYPTO_AES | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 511 | 	help | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 512 | 	  AES cipher algorithms (FIPS-197). AES uses the Rijndael | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 513 | 	  algorithm. | 
 | 514 |  | 
 | 515 | 	  Rijndael appears to be consistently a very good performer in | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 516 | 	  both hardware and software across a wide range of computing | 
 | 517 | 	  environments regardless of its use in feedback or non-feedback | 
 | 518 | 	  modes. Its key setup time is excellent, and its key agility is | 
 | 519 | 	  good. Rijndael's very low memory requirements make it very well | 
 | 520 | 	  suited for restricted-space environments, in which it also | 
 | 521 | 	  demonstrates excellent performance. Rijndael's operations are | 
 | 522 | 	  among the easiest to defend against power and timing attacks. | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 523 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 524 | 	  The AES specifies three key sizes: 128, 192 and 256 bits | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 525 |  | 
 | 526 | 	  See <http://csrc.nist.gov/encryption/aes/> for more information. | 
 | 527 |  | 
| Andreas Steinmetz | a2a892a | 2005-07-06 13:55:00 -0700 | [diff] [blame] | 528 | config CRYPTO_AES_X86_64 | 
 | 529 | 	tristate "AES cipher algorithms (x86_64)" | 
| Herbert Xu | cce9e06 | 2006-08-21 21:08:13 +1000 | [diff] [blame] | 530 | 	depends on (X86 || UML_X86) && 64BIT | 
 | 531 | 	select CRYPTO_ALGAPI | 
| Sebastian Siewior | 81190b3 | 2007-11-08 21:25:04 +0800 | [diff] [blame] | 532 | 	select CRYPTO_AES | 
| Andreas Steinmetz | a2a892a | 2005-07-06 13:55:00 -0700 | [diff] [blame] | 533 | 	help | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 534 | 	  AES cipher algorithms (FIPS-197). AES uses the Rijndael | 
| Andreas Steinmetz | a2a892a | 2005-07-06 13:55:00 -0700 | [diff] [blame] | 535 | 	  algorithm. | 
 | 536 |  | 
 | 537 | 	  Rijndael appears to be consistently a very good performer in | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 538 | 	  both hardware and software across a wide range of computing | 
 | 539 | 	  environments regardless of its use in feedback or non-feedback | 
 | 540 | 	  modes. Its key setup time is excellent, and its key agility is | 
 | 541 | 	  good. Rijndael's very low memory requirements make it very well | 
 | 542 | 	  suited for restricted-space environments, in which it also | 
 | 543 | 	  demonstrates excellent performance. Rijndael's operations are | 
 | 544 | 	  among the easiest to defend against power and timing attacks. | 
| Andreas Steinmetz | a2a892a | 2005-07-06 13:55:00 -0700 | [diff] [blame] | 545 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 546 | 	  The AES specifies three key sizes: 128, 192 and 256 bits | 
| Andreas Steinmetz | a2a892a | 2005-07-06 13:55:00 -0700 | [diff] [blame] | 547 |  | 
 | 548 | 	  See <http://csrc.nist.gov/encryption/aes/> for more information. | 
 | 549 |  | 
| Huang Ying | 54b6a1b | 2009-01-18 16:28:34 +1100 | [diff] [blame] | 550 | config CRYPTO_AES_NI_INTEL | 
 | 551 | 	tristate "AES cipher algorithms (AES-NI)" | 
| Richard Weinberger | 8af0086 | 2011-06-08 20:56:29 +0800 | [diff] [blame] | 552 | 	depends on X86 | 
| Mathias Krause | 0d258ef | 2010-11-27 16:34:46 +0800 | [diff] [blame] | 553 | 	select CRYPTO_AES_X86_64 if 64BIT | 
 | 554 | 	select CRYPTO_AES_586 if !64BIT | 
| Huang Ying | 54b6a1b | 2009-01-18 16:28:34 +1100 | [diff] [blame] | 555 | 	select CRYPTO_CRYPTD | 
 | 556 | 	select CRYPTO_ALGAPI | 
 | 557 | 	help | 
 | 558 | 	  Use Intel AES-NI instructions for AES algorithm. | 
 | 559 |  | 
 | 560 | 	  AES cipher algorithms (FIPS-197). AES uses the Rijndael | 
 | 561 | 	  algorithm. | 
 | 562 |  | 
 | 563 | 	  Rijndael appears to be consistently a very good performer in | 
 | 564 | 	  both hardware and software across a wide range of computing | 
 | 565 | 	  environments regardless of its use in feedback or non-feedback | 
 | 566 | 	  modes. Its key setup time is excellent, and its key agility is | 
 | 567 | 	  good. Rijndael's very low memory requirements make it very well | 
 | 568 | 	  suited for restricted-space environments, in which it also | 
 | 569 | 	  demonstrates excellent performance. Rijndael's operations are | 
 | 570 | 	  among the easiest to defend against power and timing attacks. | 
 | 571 |  | 
 | 572 | 	  The AES specifies three key sizes: 128, 192 and 256 bits | 
 | 573 |  | 
 | 574 | 	  See <http://csrc.nist.gov/encryption/aes/> for more information. | 
 | 575 |  | 
| Mathias Krause | 0d258ef | 2010-11-27 16:34:46 +0800 | [diff] [blame] | 576 | 	  In addition to AES cipher algorithm support, the acceleration | 
 | 577 | 	  for some popular block cipher mode is supported too, including | 
 | 578 | 	  ECB, CBC, LRW, PCBC, XTS. The 64 bit version has additional | 
 | 579 | 	  acceleration for CTR. | 
| Huang Ying | 2cf4ac8 | 2009-03-29 15:41:20 +0800 | [diff] [blame] | 580 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 581 | config CRYPTO_ANUBIS | 
 | 582 | 	tristate "Anubis cipher algorithm" | 
 | 583 | 	select CRYPTO_ALGAPI | 
 | 584 | 	help | 
 | 585 | 	  Anubis cipher algorithm. | 
 | 586 |  | 
 | 587 | 	  Anubis is a variable key length cipher which can use keys from | 
 | 588 | 	  128 bits to 320 bits in length.  It was evaluated as a entrant | 
 | 589 | 	  in the NESSIE competition. | 
 | 590 |  | 
 | 591 | 	  See also: | 
| Justin P. Mattock | 6d8de74 | 2010-09-12 10:42:47 +0800 | [diff] [blame] | 592 | 	  <https://www.cosic.esat.kuleuven.be/nessie/reports/> | 
 | 593 | 	  <http://www.larc.usp.br/~pbarreto/AnubisPage.html> | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 594 |  | 
 | 595 | config CRYPTO_ARC4 | 
 | 596 | 	tristate "ARC4 cipher algorithm" | 
 | 597 | 	select CRYPTO_ALGAPI | 
 | 598 | 	help | 
 | 599 | 	  ARC4 cipher algorithm. | 
 | 600 |  | 
 | 601 | 	  ARC4 is a stream cipher using keys ranging from 8 bits to 2048 | 
 | 602 | 	  bits in length.  This algorithm is required for driver-based | 
 | 603 | 	  WEP, but it should not be for other purposes because of the | 
 | 604 | 	  weakness of the algorithm. | 
 | 605 |  | 
 | 606 | config CRYPTO_BLOWFISH | 
 | 607 | 	tristate "Blowfish cipher algorithm" | 
 | 608 | 	select CRYPTO_ALGAPI | 
| Jussi Kivilinna | 52ba867 | 2011-09-02 01:45:07 +0300 | [diff] [blame] | 609 | 	select CRYPTO_BLOWFISH_COMMON | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 610 | 	help | 
 | 611 | 	  Blowfish cipher algorithm, by Bruce Schneier. | 
 | 612 |  | 
 | 613 | 	  This is a variable key length cipher which can use keys from 32 | 
 | 614 | 	  bits to 448 bits in length.  It's fast, simple and specifically | 
 | 615 | 	  designed for use on "large microprocessors". | 
 | 616 |  | 
 | 617 | 	  See also: | 
 | 618 | 	  <http://www.schneier.com/blowfish.html> | 
 | 619 |  | 
| Jussi Kivilinna | 52ba867 | 2011-09-02 01:45:07 +0300 | [diff] [blame] | 620 | config CRYPTO_BLOWFISH_COMMON | 
 | 621 | 	tristate | 
 | 622 | 	help | 
 | 623 | 	  Common parts of the Blowfish cipher algorithm shared by the | 
 | 624 | 	  generic c and the assembler implementations. | 
 | 625 |  | 
 | 626 | 	  See also: | 
 | 627 | 	  <http://www.schneier.com/blowfish.html> | 
 | 628 |  | 
| Jussi Kivilinna | 64b94ce | 2011-09-02 01:45:22 +0300 | [diff] [blame] | 629 | config CRYPTO_BLOWFISH_X86_64 | 
 | 630 | 	tristate "Blowfish cipher algorithm (x86_64)" | 
 | 631 | 	depends on (X86 || UML_X86) && 64BIT | 
 | 632 | 	select CRYPTO_ALGAPI | 
 | 633 | 	select CRYPTO_BLOWFISH_COMMON | 
 | 634 | 	help | 
 | 635 | 	  Blowfish cipher algorithm (x86_64), by Bruce Schneier. | 
 | 636 |  | 
 | 637 | 	  This is a variable key length cipher which can use keys from 32 | 
 | 638 | 	  bits to 448 bits in length.  It's fast, simple and specifically | 
 | 639 | 	  designed for use on "large microprocessors". | 
 | 640 |  | 
 | 641 | 	  See also: | 
 | 642 | 	  <http://www.schneier.com/blowfish.html> | 
 | 643 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 644 | config CRYPTO_CAMELLIA | 
 | 645 | 	tristate "Camellia cipher algorithms" | 
 | 646 | 	depends on CRYPTO | 
 | 647 | 	select CRYPTO_ALGAPI | 
 | 648 | 	help | 
 | 649 | 	  Camellia cipher algorithms module. | 
 | 650 |  | 
 | 651 | 	  Camellia is a symmetric key block cipher developed jointly | 
 | 652 | 	  at NTT and Mitsubishi Electric Corporation. | 
 | 653 |  | 
 | 654 | 	  The Camellia specifies three key sizes: 128, 192 and 256 bits. | 
 | 655 |  | 
 | 656 | 	  See also: | 
 | 657 | 	  <https://info.isl.ntt.co.jp/crypt/eng/camellia/index_s.html> | 
 | 658 |  | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 659 | config CRYPTO_CAST5 | 
 | 660 | 	tristate "CAST5 (CAST-128) cipher algorithm" | 
| Herbert Xu | cce9e06 | 2006-08-21 21:08:13 +1000 | [diff] [blame] | 661 | 	select CRYPTO_ALGAPI | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 662 | 	help | 
 | 663 | 	  The CAST5 encryption algorithm (synonymous with CAST-128) is | 
 | 664 | 	  described in RFC2144. | 
 | 665 |  | 
 | 666 | config CRYPTO_CAST6 | 
 | 667 | 	tristate "CAST6 (CAST-256) cipher algorithm" | 
| Herbert Xu | cce9e06 | 2006-08-21 21:08:13 +1000 | [diff] [blame] | 668 | 	select CRYPTO_ALGAPI | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 669 | 	help | 
 | 670 | 	  The CAST6 encryption algorithm (synonymous with CAST-256) is | 
 | 671 | 	  described in RFC2612. | 
 | 672 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 673 | config CRYPTO_DES | 
 | 674 | 	tristate "DES and Triple DES EDE cipher algorithms" | 
| Herbert Xu | cce9e06 | 2006-08-21 21:08:13 +1000 | [diff] [blame] | 675 | 	select CRYPTO_ALGAPI | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 676 | 	help | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 677 | 	  DES cipher algorithm (FIPS 46-2), and Triple DES EDE (FIPS 46-3). | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 678 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 679 | config CRYPTO_FCRYPT | 
 | 680 | 	tristate "FCrypt cipher algorithm" | 
| Herbert Xu | cce9e06 | 2006-08-21 21:08:13 +1000 | [diff] [blame] | 681 | 	select CRYPTO_ALGAPI | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 682 | 	select CRYPTO_BLKCIPHER | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 683 | 	help | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 684 | 	  FCrypt algorithm used by RxRPC. | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 685 |  | 
 | 686 | config CRYPTO_KHAZAD | 
 | 687 | 	tristate "Khazad cipher algorithm" | 
| Herbert Xu | cce9e06 | 2006-08-21 21:08:13 +1000 | [diff] [blame] | 688 | 	select CRYPTO_ALGAPI | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 689 | 	help | 
 | 690 | 	  Khazad cipher algorithm. | 
 | 691 |  | 
 | 692 | 	  Khazad was a finalist in the initial NESSIE competition.  It is | 
 | 693 | 	  an algorithm optimized for 64-bit processors with good performance | 
 | 694 | 	  on 32-bit processors.  Khazad uses an 128 bit key size. | 
 | 695 |  | 
 | 696 | 	  See also: | 
| Justin P. Mattock | 6d8de74 | 2010-09-12 10:42:47 +0800 | [diff] [blame] | 697 | 	  <http://www.larc.usp.br/~pbarreto/KhazadPage.html> | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 698 |  | 
| Tan Swee Heng | 2407d60 | 2007-11-23 19:45:00 +0800 | [diff] [blame] | 699 | config CRYPTO_SALSA20 | 
 | 700 | 	tristate "Salsa20 stream cipher algorithm (EXPERIMENTAL)" | 
 | 701 | 	depends on EXPERIMENTAL | 
 | 702 | 	select CRYPTO_BLKCIPHER | 
 | 703 | 	help | 
 | 704 | 	  Salsa20 stream cipher algorithm. | 
 | 705 |  | 
 | 706 | 	  Salsa20 is a stream cipher submitted to eSTREAM, the ECRYPT | 
 | 707 | 	  Stream Cipher Project. See <http://www.ecrypt.eu.org/stream/> | 
 | 708 |  | 
 | 709 | 	  The Salsa20 stream cipher algorithm is designed by Daniel J. | 
 | 710 | 	  Bernstein <djb@cr.yp.to>. See <http://cr.yp.to/snuffle.html> | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 711 |  | 
| Tan Swee Heng | 974e4b7 | 2007-12-10 15:52:56 +0800 | [diff] [blame] | 712 | config CRYPTO_SALSA20_586 | 
 | 713 | 	tristate "Salsa20 stream cipher algorithm (i586) (EXPERIMENTAL)" | 
 | 714 | 	depends on (X86 || UML_X86) && !64BIT | 
 | 715 | 	depends on EXPERIMENTAL | 
 | 716 | 	select CRYPTO_BLKCIPHER | 
| Tan Swee Heng | 974e4b7 | 2007-12-10 15:52:56 +0800 | [diff] [blame] | 717 | 	help | 
 | 718 | 	  Salsa20 stream cipher algorithm. | 
 | 719 |  | 
 | 720 | 	  Salsa20 is a stream cipher submitted to eSTREAM, the ECRYPT | 
 | 721 | 	  Stream Cipher Project. See <http://www.ecrypt.eu.org/stream/> | 
 | 722 |  | 
 | 723 | 	  The Salsa20 stream cipher algorithm is designed by Daniel J. | 
 | 724 | 	  Bernstein <djb@cr.yp.to>. See <http://cr.yp.to/snuffle.html> | 
 | 725 |  | 
| Tan Swee Heng | 9a7dafb | 2007-12-18 00:04:40 +0800 | [diff] [blame] | 726 | config CRYPTO_SALSA20_X86_64 | 
 | 727 | 	tristate "Salsa20 stream cipher algorithm (x86_64) (EXPERIMENTAL)" | 
 | 728 | 	depends on (X86 || UML_X86) && 64BIT | 
 | 729 | 	depends on EXPERIMENTAL | 
 | 730 | 	select CRYPTO_BLKCIPHER | 
| Tan Swee Heng | 9a7dafb | 2007-12-18 00:04:40 +0800 | [diff] [blame] | 731 | 	help | 
 | 732 | 	  Salsa20 stream cipher algorithm. | 
 | 733 |  | 
 | 734 | 	  Salsa20 is a stream cipher submitted to eSTREAM, the ECRYPT | 
 | 735 | 	  Stream Cipher Project. See <http://www.ecrypt.eu.org/stream/> | 
 | 736 |  | 
 | 737 | 	  The Salsa20 stream cipher algorithm is designed by Daniel J. | 
 | 738 | 	  Bernstein <djb@cr.yp.to>. See <http://cr.yp.to/snuffle.html> | 
 | 739 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 740 | config CRYPTO_SEED | 
 | 741 | 	tristate "SEED cipher algorithm" | 
 | 742 | 	select CRYPTO_ALGAPI | 
 | 743 | 	help | 
 | 744 | 	  SEED cipher algorithm (RFC4269). | 
 | 745 |  | 
 | 746 | 	  SEED is a 128-bit symmetric key block cipher that has been | 
 | 747 | 	  developed by KISA (Korea Information Security Agency) as a | 
 | 748 | 	  national standard encryption algorithm of the Republic of Korea. | 
 | 749 | 	  It is a 16 round block cipher with the key size of 128 bit. | 
 | 750 |  | 
 | 751 | 	  See also: | 
 | 752 | 	  <http://www.kisa.or.kr/kisa/seed/jsp/seed_eng.jsp> | 
 | 753 |  | 
 | 754 | config CRYPTO_SERPENT | 
 | 755 | 	tristate "Serpent cipher algorithm" | 
 | 756 | 	select CRYPTO_ALGAPI | 
 | 757 | 	help | 
 | 758 | 	  Serpent cipher algorithm, by Anderson, Biham & Knudsen. | 
 | 759 |  | 
 | 760 | 	  Keys are allowed to be from 0 to 256 bits in length, in steps | 
 | 761 | 	  of 8 bits.  Also includes the 'Tnepres' algorithm, a reversed | 
 | 762 | 	  variant of Serpent for compatibility with old kerneli.org code. | 
 | 763 |  | 
 | 764 | 	  See also: | 
 | 765 | 	  <http://www.cl.cam.ac.uk/~rja14/serpent.html> | 
 | 766 |  | 
| Jussi Kivilinna | 937c30d | 2011-11-09 16:26:25 +0200 | [diff] [blame] | 767 | config CRYPTO_SERPENT_SSE2_X86_64 | 
 | 768 | 	tristate "Serpent cipher algorithm (x86_64/SSE2)" | 
 | 769 | 	depends on X86 && 64BIT | 
 | 770 | 	select CRYPTO_ALGAPI | 
| Jussi Kivilinna | 341975b | 2011-11-24 08:37:41 +0200 | [diff] [blame] | 771 | 	select CRYPTO_CRYPTD | 
| Jussi Kivilinna | 937c30d | 2011-11-09 16:26:25 +0200 | [diff] [blame] | 772 | 	select CRYPTO_SERPENT | 
| Jussi Kivilinna | feaf0cf | 2011-12-13 12:53:12 +0200 | [diff] [blame^] | 773 | 	select CRYPTO_LRW | 
 | 774 | 	select CRYPTO_XTS | 
| Jussi Kivilinna | 937c30d | 2011-11-09 16:26:25 +0200 | [diff] [blame] | 775 | 	help | 
 | 776 | 	  Serpent cipher algorithm, by Anderson, Biham & Knudsen. | 
 | 777 |  | 
 | 778 | 	  Keys are allowed to be from 0 to 256 bits in length, in steps | 
 | 779 | 	  of 8 bits. | 
 | 780 |  | 
 | 781 | 	  This module provides Serpent cipher algorithm that processes eigth | 
 | 782 | 	  blocks parallel using SSE2 instruction set. | 
 | 783 |  | 
 | 784 | 	  See also: | 
 | 785 | 	  <http://www.cl.cam.ac.uk/~rja14/serpent.html> | 
 | 786 |  | 
| Jussi Kivilinna | 251496d | 2011-11-09 16:26:31 +0200 | [diff] [blame] | 787 | config CRYPTO_SERPENT_SSE2_586 | 
 | 788 | 	tristate "Serpent cipher algorithm (i586/SSE2)" | 
 | 789 | 	depends on X86 && !64BIT | 
 | 790 | 	select CRYPTO_ALGAPI | 
| Jussi Kivilinna | 341975b | 2011-11-24 08:37:41 +0200 | [diff] [blame] | 791 | 	select CRYPTO_CRYPTD | 
| Jussi Kivilinna | 251496d | 2011-11-09 16:26:31 +0200 | [diff] [blame] | 792 | 	select CRYPTO_SERPENT | 
| Jussi Kivilinna | feaf0cf | 2011-12-13 12:53:12 +0200 | [diff] [blame^] | 793 | 	select CRYPTO_LRW | 
 | 794 | 	select CRYPTO_XTS | 
| Jussi Kivilinna | 251496d | 2011-11-09 16:26:31 +0200 | [diff] [blame] | 795 | 	help | 
 | 796 | 	  Serpent cipher algorithm, by Anderson, Biham & Knudsen. | 
 | 797 |  | 
 | 798 | 	  Keys are allowed to be from 0 to 256 bits in length, in steps | 
 | 799 | 	  of 8 bits. | 
 | 800 |  | 
 | 801 | 	  This module provides Serpent cipher algorithm that processes four | 
 | 802 | 	  blocks parallel using SSE2 instruction set. | 
 | 803 |  | 
 | 804 | 	  See also: | 
 | 805 | 	  <http://www.cl.cam.ac.uk/~rja14/serpent.html> | 
 | 806 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 807 | config CRYPTO_TEA | 
 | 808 | 	tristate "TEA, XTEA and XETA cipher algorithms" | 
 | 809 | 	select CRYPTO_ALGAPI | 
 | 810 | 	help | 
 | 811 | 	  TEA cipher algorithm. | 
 | 812 |  | 
 | 813 | 	  Tiny Encryption Algorithm is a simple cipher that uses | 
 | 814 | 	  many rounds for security.  It is very fast and uses | 
 | 815 | 	  little memory. | 
 | 816 |  | 
 | 817 | 	  Xtendend Tiny Encryption Algorithm is a modification to | 
 | 818 | 	  the TEA algorithm to address a potential key weakness | 
 | 819 | 	  in the TEA algorithm. | 
 | 820 |  | 
 | 821 | 	  Xtendend Encryption Tiny Algorithm is a mis-implementation | 
 | 822 | 	  of the XTEA algorithm for compatibility purposes. | 
 | 823 |  | 
 | 824 | config CRYPTO_TWOFISH | 
 | 825 | 	tristate "Twofish cipher algorithm" | 
 | 826 | 	select CRYPTO_ALGAPI | 
 | 827 | 	select CRYPTO_TWOFISH_COMMON | 
 | 828 | 	help | 
 | 829 | 	  Twofish cipher algorithm. | 
 | 830 |  | 
 | 831 | 	  Twofish was submitted as an AES (Advanced Encryption Standard) | 
 | 832 | 	  candidate cipher by researchers at CounterPane Systems.  It is a | 
 | 833 | 	  16 round block cipher supporting key sizes of 128, 192, and 256 | 
 | 834 | 	  bits. | 
 | 835 |  | 
 | 836 | 	  See also: | 
 | 837 | 	  <http://www.schneier.com/twofish.html> | 
 | 838 |  | 
 | 839 | config CRYPTO_TWOFISH_COMMON | 
 | 840 | 	tristate | 
 | 841 | 	help | 
 | 842 | 	  Common parts of the Twofish cipher algorithm shared by the | 
 | 843 | 	  generic c and the assembler implementations. | 
 | 844 |  | 
 | 845 | config CRYPTO_TWOFISH_586 | 
 | 846 | 	tristate "Twofish cipher algorithms (i586)" | 
 | 847 | 	depends on (X86 || UML_X86) && !64BIT | 
 | 848 | 	select CRYPTO_ALGAPI | 
 | 849 | 	select CRYPTO_TWOFISH_COMMON | 
 | 850 | 	help | 
 | 851 | 	  Twofish cipher algorithm. | 
 | 852 |  | 
 | 853 | 	  Twofish was submitted as an AES (Advanced Encryption Standard) | 
 | 854 | 	  candidate cipher by researchers at CounterPane Systems.  It is a | 
 | 855 | 	  16 round block cipher supporting key sizes of 128, 192, and 256 | 
 | 856 | 	  bits. | 
 | 857 |  | 
 | 858 | 	  See also: | 
 | 859 | 	  <http://www.schneier.com/twofish.html> | 
 | 860 |  | 
 | 861 | config CRYPTO_TWOFISH_X86_64 | 
 | 862 | 	tristate "Twofish cipher algorithm (x86_64)" | 
 | 863 | 	depends on (X86 || UML_X86) && 64BIT | 
 | 864 | 	select CRYPTO_ALGAPI | 
 | 865 | 	select CRYPTO_TWOFISH_COMMON | 
 | 866 | 	help | 
 | 867 | 	  Twofish cipher algorithm (x86_64). | 
 | 868 |  | 
 | 869 | 	  Twofish was submitted as an AES (Advanced Encryption Standard) | 
 | 870 | 	  candidate cipher by researchers at CounterPane Systems.  It is a | 
 | 871 | 	  16 round block cipher supporting key sizes of 128, 192, and 256 | 
 | 872 | 	  bits. | 
 | 873 |  | 
 | 874 | 	  See also: | 
 | 875 | 	  <http://www.schneier.com/twofish.html> | 
 | 876 |  | 
| Jussi Kivilinna | 8280daa | 2011-09-26 16:47:25 +0300 | [diff] [blame] | 877 | config CRYPTO_TWOFISH_X86_64_3WAY | 
 | 878 | 	tristate "Twofish cipher algorithm (x86_64, 3-way parallel)" | 
 | 879 | 	depends on (X86 || UML_X86) && 64BIT | 
 | 880 | 	select CRYPTO_ALGAPI | 
 | 881 | 	select CRYPTO_TWOFISH_COMMON | 
 | 882 | 	select CRYPTO_TWOFISH_X86_64 | 
| Jussi Kivilinna | e7cda5d | 2011-12-13 12:53:01 +0200 | [diff] [blame] | 883 | 	select CRYPTO_LRW | 
 | 884 | 	select CRYPTO_XTS | 
| Jussi Kivilinna | 8280daa | 2011-09-26 16:47:25 +0300 | [diff] [blame] | 885 | 	help | 
 | 886 | 	  Twofish cipher algorithm (x86_64, 3-way parallel). | 
 | 887 |  | 
 | 888 | 	  Twofish was submitted as an AES (Advanced Encryption Standard) | 
 | 889 | 	  candidate cipher by researchers at CounterPane Systems.  It is a | 
 | 890 | 	  16 round block cipher supporting key sizes of 128, 192, and 256 | 
 | 891 | 	  bits. | 
 | 892 |  | 
 | 893 | 	  This module provides Twofish cipher algorithm that processes three | 
 | 894 | 	  blocks parallel, utilizing resources of out-of-order CPUs better. | 
 | 895 |  | 
 | 896 | 	  See also: | 
 | 897 | 	  <http://www.schneier.com/twofish.html> | 
 | 898 |  | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 899 | comment "Compression" | 
 | 900 |  | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 901 | config CRYPTO_DEFLATE | 
 | 902 | 	tristate "Deflate compression algorithm" | 
| Herbert Xu | cce9e06 | 2006-08-21 21:08:13 +1000 | [diff] [blame] | 903 | 	select CRYPTO_ALGAPI | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 904 | 	select ZLIB_INFLATE | 
 | 905 | 	select ZLIB_DEFLATE | 
 | 906 | 	help | 
 | 907 | 	  This is the Deflate algorithm (RFC1951), specified for use in | 
 | 908 | 	  IPSec with the IPCOMP protocol (RFC3173, RFC2394). | 
| Sebastian Siewior | 584fffc | 2008-04-05 21:04:48 +0800 | [diff] [blame] | 909 |  | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 910 | 	  You will most probably want this if using IPSec. | 
 | 911 |  | 
| Geert Uytterhoeven | bf68e65 | 2009-03-04 15:15:49 +0800 | [diff] [blame] | 912 | config CRYPTO_ZLIB | 
 | 913 | 	tristate "Zlib compression algorithm" | 
 | 914 | 	select CRYPTO_PCOMP | 
 | 915 | 	select ZLIB_INFLATE | 
 | 916 | 	select ZLIB_DEFLATE | 
 | 917 | 	select NLATTR | 
 | 918 | 	help | 
 | 919 | 	  This is the zlib algorithm. | 
 | 920 |  | 
| Zoltan Sogor | 0b77abb | 2007-12-07 16:53:23 +0800 | [diff] [blame] | 921 | config CRYPTO_LZO | 
 | 922 | 	tristate "LZO compression algorithm" | 
 | 923 | 	select CRYPTO_ALGAPI | 
 | 924 | 	select LZO_COMPRESS | 
 | 925 | 	select LZO_DECOMPRESS | 
 | 926 | 	help | 
 | 927 | 	  This is the LZO algorithm. | 
 | 928 |  | 
| Neil Horman | 17f0f4a | 2008-08-14 22:15:52 +1000 | [diff] [blame] | 929 | comment "Random Number Generation" | 
 | 930 |  | 
 | 931 | config CRYPTO_ANSI_CPRNG | 
 | 932 | 	tristate "Pseudo Random Number Generation for Cryptographic modules" | 
| Neil Horman | 4e4ed83 | 2009-08-20 17:54:16 +1000 | [diff] [blame] | 933 | 	default m | 
| Neil Horman | 17f0f4a | 2008-08-14 22:15:52 +1000 | [diff] [blame] | 934 | 	select CRYPTO_AES | 
 | 935 | 	select CRYPTO_RNG | 
| Neil Horman | 17f0f4a | 2008-08-14 22:15:52 +1000 | [diff] [blame] | 936 | 	help | 
 | 937 | 	  This option enables the generic pseudo random number generator | 
 | 938 | 	  for cryptographic modules.  Uses the Algorithm specified in | 
| Jiri Kosina | 7dd607e | 2010-01-27 01:00:10 +0100 | [diff] [blame] | 939 | 	  ANSI X9.31 A.2.4. Note that this option must be enabled if | 
 | 940 | 	  CRYPTO_FIPS is selected | 
| Neil Horman | 17f0f4a | 2008-08-14 22:15:52 +1000 | [diff] [blame] | 941 |  | 
| Herbert Xu | 03c8efc | 2010-10-19 21:12:39 +0800 | [diff] [blame] | 942 | config CRYPTO_USER_API | 
 | 943 | 	tristate | 
 | 944 |  | 
| Herbert Xu | fe869cd | 2010-10-19 21:23:00 +0800 | [diff] [blame] | 945 | config CRYPTO_USER_API_HASH | 
 | 946 | 	tristate "User-space interface for hash algorithms" | 
| Herbert Xu | 7451708 | 2010-11-29 22:56:03 +0800 | [diff] [blame] | 947 | 	depends on NET | 
| Herbert Xu | fe869cd | 2010-10-19 21:23:00 +0800 | [diff] [blame] | 948 | 	select CRYPTO_HASH | 
 | 949 | 	select CRYPTO_USER_API | 
 | 950 | 	help | 
 | 951 | 	  This option enables the user-spaces interface for hash | 
 | 952 | 	  algorithms. | 
 | 953 |  | 
| Herbert Xu | 8ff5909 | 2010-10-19 21:31:55 +0800 | [diff] [blame] | 954 | config CRYPTO_USER_API_SKCIPHER | 
 | 955 | 	tristate "User-space interface for symmetric key cipher algorithms" | 
| Herbert Xu | 7451708 | 2010-11-29 22:56:03 +0800 | [diff] [blame] | 956 | 	depends on NET | 
| Herbert Xu | 8ff5909 | 2010-10-19 21:31:55 +0800 | [diff] [blame] | 957 | 	select CRYPTO_BLKCIPHER | 
 | 958 | 	select CRYPTO_USER_API | 
 | 959 | 	help | 
 | 960 | 	  This option enables the user-spaces interface for symmetric | 
 | 961 | 	  key cipher algorithms. | 
 | 962 |  | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 963 | source "drivers/crypto/Kconfig" | 
| Linus Torvalds | 1da177e | 2005-04-16 15:20:36 -0700 | [diff] [blame] | 964 |  | 
| Herbert Xu | cce9e06 | 2006-08-21 21:08:13 +1000 | [diff] [blame] | 965 | endif	# if CRYPTO |