crypto: testmgr - Test skciphers with no IVs
[GitHub/mt8127/android_kernel_alcatel_ttab.git] / crypto / Kconfig
CommitLineData
685784aa
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1#
2# Generic algorithms support
3#
4config XOR_BLOCKS
5 tristate
6
1da177e4 7#
9bc89cd8 8# async_tx api: hardware offloaded memory transfer/transform support
1da177e4 9#
9bc89cd8 10source "crypto/async_tx/Kconfig"
1da177e4 11
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12#
13# Cryptographic API Configuration
14#
2e290f43 15menuconfig CRYPTO
c3715cb9 16 tristate "Cryptographic API"
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17 help
18 This option provides the core Cryptographic API.
19
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20if CRYPTO
21
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22comment "Crypto core or helper"
23
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24config CRYPTO_FIPS
25 bool "FIPS 200 compliance"
26 help
27 This options enables the fips boot option which is
28 required if you want to system to operate in a FIPS 200
29 certification. You should say no unless you know what
30 this is.
31
cce9e06d
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32config CRYPTO_ALGAPI
33 tristate
6a0fcbb4 34 select CRYPTO_ALGAPI2
cce9e06d
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35 help
36 This option provides the API for cryptographic algorithms.
37
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38config CRYPTO_ALGAPI2
39 tristate
40
1ae97820
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41config CRYPTO_AEAD
42 tristate
6a0fcbb4 43 select CRYPTO_AEAD2
1ae97820
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44 select CRYPTO_ALGAPI
45
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46config CRYPTO_AEAD2
47 tristate
48 select CRYPTO_ALGAPI2
49
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50config CRYPTO_BLKCIPHER
51 tristate
6a0fcbb4 52 select CRYPTO_BLKCIPHER2
5cde0af2 53 select CRYPTO_ALGAPI
6a0fcbb4
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54
55config CRYPTO_BLKCIPHER2
56 tristate
57 select CRYPTO_ALGAPI2
58 select CRYPTO_RNG2
5cde0af2 59
055bcee3
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60config CRYPTO_HASH
61 tristate
6a0fcbb4 62 select CRYPTO_HASH2
055bcee3
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63 select CRYPTO_ALGAPI
64
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65config CRYPTO_HASH2
66 tristate
67 select CRYPTO_ALGAPI2
68
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69config CRYPTO_RNG
70 tristate
6a0fcbb4 71 select CRYPTO_RNG2
17f0f4a4
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72 select CRYPTO_ALGAPI
73
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74config CRYPTO_RNG2
75 tristate
76 select CRYPTO_ALGAPI2
77
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78config CRYPTO_MANAGER
79 tristate "Cryptographic algorithm manager"
6a0fcbb4 80 select CRYPTO_MANAGER2
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81 help
82 Create default cryptographic template instantiations such as
83 cbc(aes).
84
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85config CRYPTO_MANAGER2
86 def_tristate CRYPTO_MANAGER || (CRYPTO_MANAGER!=n && CRYPTO_ALGAPI=y)
87 select CRYPTO_AEAD2
88 select CRYPTO_HASH2
89 select CRYPTO_BLKCIPHER2
90
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91config CRYPTO_GF128MUL
92 tristate "GF(2^128) multiplication functions (EXPERIMENTAL)"
333b0d7e 93 depends on EXPERIMENTAL
333b0d7e 94 help
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95 Efficient table driven implementation of multiplications in the
96 field GF(2^128). This is needed by some cypher modes. This
97 option will be selected automatically if you select such a
98 cipher mode. Only select this option by hand if you expect to load
99 an external module that requires these functions.
333b0d7e 100
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101config CRYPTO_NULL
102 tristate "Null algorithms"
cce9e06d 103 select CRYPTO_ALGAPI
c8620c25 104 select CRYPTO_BLKCIPHER
d35d2454 105 select CRYPTO_HASH
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106 help
107 These are 'Null' algorithms, used by IPsec, which do nothing.
108
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109config CRYPTO_CRYPTD
110 tristate "Software async crypto daemon"
111 select CRYPTO_BLKCIPHER
b8a28251 112 select CRYPTO_HASH
584fffc8 113 select CRYPTO_MANAGER
1da177e4 114 help
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115 This is a generic software asynchronous crypto daemon that
116 converts an arbitrary synchronous software crypto algorithm
117 into an asynchronous algorithm that executes in a kernel thread.
1da177e4 118
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119config CRYPTO_AUTHENC
120 tristate "Authenc support"
121 select CRYPTO_AEAD
122 select CRYPTO_BLKCIPHER
123 select CRYPTO_MANAGER
124 select CRYPTO_HASH
1da177e4 125 help
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126 Authenc: Combined mode wrapper for IPsec.
127 This is required for IPSec.
1da177e4 128
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129config CRYPTO_TEST
130 tristate "Testing module"
131 depends on m
da7f033d 132 select CRYPTO_MANAGER
1da177e4 133 help
584fffc8 134 Quick & dirty crypto test module.
1da177e4 135
584fffc8 136comment "Authenticated Encryption with Associated Data"
cd12fb90 137
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138config CRYPTO_CCM
139 tristate "CCM support"
140 select CRYPTO_CTR
141 select CRYPTO_AEAD
1da177e4 142 help
584fffc8 143 Support for Counter with CBC MAC. Required for IPsec.
1da177e4 144
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145config CRYPTO_GCM
146 tristate "GCM/GMAC support"
147 select CRYPTO_CTR
148 select CRYPTO_AEAD
149 select CRYPTO_GF128MUL
1da177e4 150 help
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151 Support for Galois/Counter Mode (GCM) and Galois Message
152 Authentication Code (GMAC). Required for IPSec.
1da177e4 153
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154config CRYPTO_SEQIV
155 tristate "Sequence Number IV Generator"
156 select CRYPTO_AEAD
157 select CRYPTO_BLKCIPHER
a0f000ec 158 select CRYPTO_RNG
1da177e4 159 help
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160 This IV generator generates an IV based on a sequence number by
161 xoring it with a salt. This algorithm is mainly useful for CTR
1da177e4 162
584fffc8 163comment "Block modes"
c494e070 164
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165config CRYPTO_CBC
166 tristate "CBC support"
db131ef9 167 select CRYPTO_BLKCIPHER
43518407 168 select CRYPTO_MANAGER
db131ef9 169 help
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170 CBC: Cipher Block Chaining mode
171 This block cipher algorithm is required for IPSec.
db131ef9 172
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173config CRYPTO_CTR
174 tristate "CTR support"
db131ef9 175 select CRYPTO_BLKCIPHER
584fffc8 176 select CRYPTO_SEQIV
43518407 177 select CRYPTO_MANAGER
db131ef9 178 help
584fffc8 179 CTR: Counter mode
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180 This block cipher algorithm is required for IPSec.
181
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182config CRYPTO_CTS
183 tristate "CTS support"
184 select CRYPTO_BLKCIPHER
185 help
186 CTS: Cipher Text Stealing
187 This is the Cipher Text Stealing mode as described by
188 Section 8 of rfc2040 and referenced by rfc3962.
189 (rfc3962 includes errata information in its Appendix A)
190 This mode is required for Kerberos gss mechanism support
191 for AES encryption.
192
193config CRYPTO_ECB
194 tristate "ECB support"
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195 select CRYPTO_BLKCIPHER
196 select CRYPTO_MANAGER
91652be5 197 help
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198 ECB: Electronic CodeBook mode
199 This is the simplest block cipher algorithm. It simply encrypts
200 the input block by block.
91652be5 201
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202config CRYPTO_LRW
203 tristate "LRW support (EXPERIMENTAL)"
204 depends on EXPERIMENTAL
205 select CRYPTO_BLKCIPHER
206 select CRYPTO_MANAGER
207 select CRYPTO_GF128MUL
208 help
209 LRW: Liskov Rivest Wagner, a tweakable, non malleable, non movable
210 narrow block cipher mode for dm-crypt. Use it with cipher
211 specification string aes-lrw-benbi, the key must be 256, 320 or 384.
212 The first 128, 192 or 256 bits in the key are used for AES and the
213 rest is used to tie each cipher block to its logical position.
214
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215config CRYPTO_PCBC
216 tristate "PCBC support"
217 select CRYPTO_BLKCIPHER
218 select CRYPTO_MANAGER
219 help
220 PCBC: Propagating Cipher Block Chaining mode
221 This block cipher algorithm is required for RxRPC.
222
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223config CRYPTO_XTS
224 tristate "XTS support (EXPERIMENTAL)"
225 depends on EXPERIMENTAL
226 select CRYPTO_BLKCIPHER
227 select CRYPTO_MANAGER
228 select CRYPTO_GF128MUL
229 help
230 XTS: IEEE1619/D16 narrow block cipher use with aes-xts-plain,
231 key size 256, 384 or 512 bits. This implementation currently
232 can't handle a sectorsize which is not a multiple of 16 bytes.
233
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234comment "Hash modes"
235
236config CRYPTO_HMAC
237 tristate "HMAC support"
238 select CRYPTO_HASH
23e353c8 239 select CRYPTO_MANAGER
23e353c8 240 help
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241 HMAC: Keyed-Hashing for Message Authentication (RFC2104).
242 This is required for IPSec.
23e353c8 243
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244config CRYPTO_XCBC
245 tristate "XCBC support"
246 depends on EXPERIMENTAL
247 select CRYPTO_HASH
248 select CRYPTO_MANAGER
76cb9521 249 help
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250 XCBC: Keyed-Hashing with encryption algorithm
251 http://www.ietf.org/rfc/rfc3566.txt
252 http://csrc.nist.gov/encryption/modes/proposedmodes/
253 xcbc-mac/xcbc-mac-spec.pdf
76cb9521 254
584fffc8 255comment "Digest"
28db8e3e 256
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257config CRYPTO_CRC32C
258 tristate "CRC32c CRC algorithm"
5773a3e6 259 select CRYPTO_HASH
4a49b499 260 help
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261 Castagnoli, et al Cyclic Redundancy-Check Algorithm. Used
262 by iSCSI for header and data digests and by others.
69c35efc 263 See Castagnoli93. Module will be crc32c.
4a49b499 264
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265config CRYPTO_CRC32C_INTEL
266 tristate "CRC32c INTEL hardware acceleration"
267 depends on X86
268 select CRYPTO_HASH
269 help
270 In Intel processor with SSE4.2 supported, the processor will
271 support CRC32C implementation using hardware accelerated CRC32
272 instruction. This option will create 'crc32c-intel' module,
273 which will enable any routine to use the CRC32 instruction to
274 gain performance compared with software implementation.
275 Module will be crc32c-intel.
276
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277config CRYPTO_MD4
278 tristate "MD4 digest algorithm"
808a1763 279 select CRYPTO_HASH
124b53d0 280 help
584fffc8 281 MD4 message digest algorithm (RFC1320).
124b53d0 282
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283config CRYPTO_MD5
284 tristate "MD5 digest algorithm"
14b75ba7 285 select CRYPTO_HASH
1da177e4 286 help
584fffc8 287 MD5 message digest algorithm (RFC1321).
1da177e4 288
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289config CRYPTO_MICHAEL_MIC
290 tristate "Michael MIC keyed digest algorithm"
19e2bf14 291 select CRYPTO_HASH
90831639 292 help
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293 Michael MIC is used for message integrity protection in TKIP
294 (IEEE 802.11i). This algorithm is required for TKIP, but it
295 should not be used for other purposes because of the weakness
296 of the algorithm.
90831639 297
82798f90 298config CRYPTO_RMD128
b6d44341 299 tristate "RIPEMD-128 digest algorithm"
7c4468bc 300 select CRYPTO_HASH
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301 help
302 RIPEMD-128 (ISO/IEC 10118-3:2004).
82798f90 303
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304 RIPEMD-128 is a 128-bit cryptographic hash function. It should only
305 to be used as a secure replacement for RIPEMD. For other use cases
306 RIPEMD-160 should be used.
82798f90 307
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308 Developed by Hans Dobbertin, Antoon Bosselaers and Bart Preneel.
309 See <http://home.esat.kuleuven.be/~bosselae/ripemd160.html>
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310
311config CRYPTO_RMD160
b6d44341 312 tristate "RIPEMD-160 digest algorithm"
e5835fba 313 select CRYPTO_HASH
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314 help
315 RIPEMD-160 (ISO/IEC 10118-3:2004).
82798f90 316
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317 RIPEMD-160 is a 160-bit cryptographic hash function. It is intended
318 to be used as a secure replacement for the 128-bit hash functions
319 MD4, MD5 and it's predecessor RIPEMD
320 (not to be confused with RIPEMD-128).
82798f90 321
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322 It's speed is comparable to SHA1 and there are no known attacks
323 against RIPEMD-160.
534fe2c1 324
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325 Developed by Hans Dobbertin, Antoon Bosselaers and Bart Preneel.
326 See <http://home.esat.kuleuven.be/~bosselae/ripemd160.html>
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327
328config CRYPTO_RMD256
b6d44341 329 tristate "RIPEMD-256 digest algorithm"
d8a5e2e9 330 select CRYPTO_HASH
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331 help
332 RIPEMD-256 is an optional extension of RIPEMD-128 with a
333 256 bit hash. It is intended for applications that require
334 longer hash-results, without needing a larger security level
335 (than RIPEMD-128).
534fe2c1 336
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337 Developed by Hans Dobbertin, Antoon Bosselaers and Bart Preneel.
338 See <http://home.esat.kuleuven.be/~bosselae/ripemd160.html>
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339
340config CRYPTO_RMD320
b6d44341 341 tristate "RIPEMD-320 digest algorithm"
3b8efb4c 342 select CRYPTO_HASH
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343 help
344 RIPEMD-320 is an optional extension of RIPEMD-160 with a
345 320 bit hash. It is intended for applications that require
346 longer hash-results, without needing a larger security level
347 (than RIPEMD-160).
534fe2c1 348
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349 Developed by Hans Dobbertin, Antoon Bosselaers and Bart Preneel.
350 See <http://home.esat.kuleuven.be/~bosselae/ripemd160.html>
82798f90 351
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352config CRYPTO_SHA1
353 tristate "SHA1 digest algorithm"
54ccb367 354 select CRYPTO_HASH
1da177e4 355 help
584fffc8 356 SHA-1 secure hash standard (FIPS 180-1/DFIPS 180-2).
1da177e4 357
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358config CRYPTO_SHA256
359 tristate "SHA224 and SHA256 digest algorithm"
50e109b5 360 select CRYPTO_HASH
1da177e4 361 help
584fffc8 362 SHA256 secure hash standard (DFIPS 180-2).
1da177e4 363
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364 This version of SHA implements a 256 bit hash with 128 bits of
365 security against collision attacks.
2729bb42 366
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367 This code also includes SHA-224, a 224 bit hash with 112 bits
368 of security against collision attacks.
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369
370config CRYPTO_SHA512
371 tristate "SHA384 and SHA512 digest algorithms"
bd9d20db 372 select CRYPTO_HASH
b9f535ff 373 help
584fffc8 374 SHA512 secure hash standard (DFIPS 180-2).
b9f535ff 375
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376 This version of SHA implements a 512 bit hash with 256 bits of
377 security against collision attacks.
b9f535ff 378
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379 This code also includes SHA-384, a 384 bit hash with 192 bits
380 of security against collision attacks.
b9f535ff 381
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382config CRYPTO_TGR192
383 tristate "Tiger digest algorithms"
f63fbd3d 384 select CRYPTO_HASH
eaf44088 385 help
584fffc8 386 Tiger hash algorithm 192, 160 and 128-bit hashes
eaf44088 387
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388 Tiger is a hash function optimized for 64-bit processors while
389 still having decent performance on 32-bit processors.
390 Tiger was developed by Ross Anderson and Eli Biham.
eaf44088
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391
392 See also:
584fffc8 393 <http://www.cs.technion.ac.il/~biham/Reports/Tiger/>.
eaf44088 394
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395config CRYPTO_WP512
396 tristate "Whirlpool digest algorithms"
4946510b 397 select CRYPTO_HASH
1da177e4 398 help
584fffc8 399 Whirlpool hash algorithm 512, 384 and 256-bit hashes
1da177e4 400
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401 Whirlpool-512 is part of the NESSIE cryptographic primitives.
402 Whirlpool will be part of the ISO/IEC 10118-3:2003(E) standard
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403
404 See also:
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405 <http://planeta.terra.com.br/informatica/paulobarreto/WhirlpoolPage.html>
406
407comment "Ciphers"
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408
409config CRYPTO_AES
410 tristate "AES cipher algorithms"
cce9e06d 411 select CRYPTO_ALGAPI
1da177e4 412 help
584fffc8 413 AES cipher algorithms (FIPS-197). AES uses the Rijndael
1da177e4
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414 algorithm.
415
416 Rijndael appears to be consistently a very good performer in
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417 both hardware and software across a wide range of computing
418 environments regardless of its use in feedback or non-feedback
419 modes. Its key setup time is excellent, and its key agility is
420 good. Rijndael's very low memory requirements make it very well
421 suited for restricted-space environments, in which it also
422 demonstrates excellent performance. Rijndael's operations are
423 among the easiest to defend against power and timing attacks.
1da177e4 424
584fffc8 425 The AES specifies three key sizes: 128, 192 and 256 bits
1da177e4
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426
427 See <http://csrc.nist.gov/CryptoToolkit/aes/> for more information.
428
429config CRYPTO_AES_586
430 tristate "AES cipher algorithms (i586)"
cce9e06d
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431 depends on (X86 || UML_X86) && !64BIT
432 select CRYPTO_ALGAPI
5157dea8 433 select CRYPTO_AES
1da177e4 434 help
584fffc8 435 AES cipher algorithms (FIPS-197). AES uses the Rijndael
1da177e4
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436 algorithm.
437
438 Rijndael appears to be consistently a very good performer in
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439 both hardware and software across a wide range of computing
440 environments regardless of its use in feedback or non-feedback
441 modes. Its key setup time is excellent, and its key agility is
442 good. Rijndael's very low memory requirements make it very well
443 suited for restricted-space environments, in which it also
444 demonstrates excellent performance. Rijndael's operations are
445 among the easiest to defend against power and timing attacks.
1da177e4 446
584fffc8 447 The AES specifies three key sizes: 128, 192 and 256 bits
a2a892a2
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448
449 See <http://csrc.nist.gov/encryption/aes/> for more information.
450
451config CRYPTO_AES_X86_64
452 tristate "AES cipher algorithms (x86_64)"
cce9e06d
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453 depends on (X86 || UML_X86) && 64BIT
454 select CRYPTO_ALGAPI
81190b32 455 select CRYPTO_AES
a2a892a2 456 help
584fffc8 457 AES cipher algorithms (FIPS-197). AES uses the Rijndael
a2a892a2
AS
458 algorithm.
459
460 Rijndael appears to be consistently a very good performer in
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461 both hardware and software across a wide range of computing
462 environments regardless of its use in feedback or non-feedback
463 modes. Its key setup time is excellent, and its key agility is
54b6a1bd
HY
464 good. Rijndael's very low memory requirements make it very well
465 suited for restricted-space environments, in which it also
466 demonstrates excellent performance. Rijndael's operations are
467 among the easiest to defend against power and timing attacks.
468
469 The AES specifies three key sizes: 128, 192 and 256 bits
470
471 See <http://csrc.nist.gov/encryption/aes/> for more information.
472
473config CRYPTO_AES_NI_INTEL
474 tristate "AES cipher algorithms (AES-NI)"
475 depends on (X86 || UML_X86) && 64BIT
476 select CRYPTO_AES_X86_64
477 select CRYPTO_CRYPTD
478 select CRYPTO_ALGAPI
479 help
480 Use Intel AES-NI instructions for AES algorithm.
481
482 AES cipher algorithms (FIPS-197). AES uses the Rijndael
483 algorithm.
484
485 Rijndael appears to be consistently a very good performer in
486 both hardware and software across a wide range of computing
487 environments regardless of its use in feedback or non-feedback
488 modes. Its key setup time is excellent, and its key agility is
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SS
489 good. Rijndael's very low memory requirements make it very well
490 suited for restricted-space environments, in which it also
491 demonstrates excellent performance. Rijndael's operations are
492 among the easiest to defend against power and timing attacks.
a2a892a2 493
584fffc8 494 The AES specifies three key sizes: 128, 192 and 256 bits
1da177e4
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495
496 See <http://csrc.nist.gov/encryption/aes/> for more information.
497
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498config CRYPTO_ANUBIS
499 tristate "Anubis cipher algorithm"
500 select CRYPTO_ALGAPI
501 help
502 Anubis cipher algorithm.
503
504 Anubis is a variable key length cipher which can use keys from
505 128 bits to 320 bits in length. It was evaluated as a entrant
506 in the NESSIE competition.
507
508 See also:
509 <https://www.cosic.esat.kuleuven.ac.be/nessie/reports/>
510 <http://planeta.terra.com.br/informatica/paulobarreto/AnubisPage.html>
511
512config CRYPTO_ARC4
513 tristate "ARC4 cipher algorithm"
514 select CRYPTO_ALGAPI
515 help
516 ARC4 cipher algorithm.
517
518 ARC4 is a stream cipher using keys ranging from 8 bits to 2048
519 bits in length. This algorithm is required for driver-based
520 WEP, but it should not be for other purposes because of the
521 weakness of the algorithm.
522
523config CRYPTO_BLOWFISH
524 tristate "Blowfish cipher algorithm"
525 select CRYPTO_ALGAPI
526 help
527 Blowfish cipher algorithm, by Bruce Schneier.
528
529 This is a variable key length cipher which can use keys from 32
530 bits to 448 bits in length. It's fast, simple and specifically
531 designed for use on "large microprocessors".
532
533 See also:
534 <http://www.schneier.com/blowfish.html>
535
536config CRYPTO_CAMELLIA
537 tristate "Camellia cipher algorithms"
538 depends on CRYPTO
539 select CRYPTO_ALGAPI
540 help
541 Camellia cipher algorithms module.
542
543 Camellia is a symmetric key block cipher developed jointly
544 at NTT and Mitsubishi Electric Corporation.
545
546 The Camellia specifies three key sizes: 128, 192 and 256 bits.
547
548 See also:
549 <https://info.isl.ntt.co.jp/crypt/eng/camellia/index_s.html>
550
1da177e4
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551config CRYPTO_CAST5
552 tristate "CAST5 (CAST-128) cipher algorithm"
cce9e06d 553 select CRYPTO_ALGAPI
1da177e4
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554 help
555 The CAST5 encryption algorithm (synonymous with CAST-128) is
556 described in RFC2144.
557
558config CRYPTO_CAST6
559 tristate "CAST6 (CAST-256) cipher algorithm"
cce9e06d 560 select CRYPTO_ALGAPI
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561 help
562 The CAST6 encryption algorithm (synonymous with CAST-256) is
563 described in RFC2612.
564
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565config CRYPTO_DES
566 tristate "DES and Triple DES EDE cipher algorithms"
cce9e06d 567 select CRYPTO_ALGAPI
1da177e4 568 help
584fffc8 569 DES cipher algorithm (FIPS 46-2), and Triple DES EDE (FIPS 46-3).
fb4f10ed 570
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571config CRYPTO_FCRYPT
572 tristate "FCrypt cipher algorithm"
cce9e06d 573 select CRYPTO_ALGAPI
584fffc8 574 select CRYPTO_BLKCIPHER
1da177e4 575 help
584fffc8 576 FCrypt algorithm used by RxRPC.
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577
578config CRYPTO_KHAZAD
579 tristate "Khazad cipher algorithm"
cce9e06d 580 select CRYPTO_ALGAPI
1da177e4
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581 help
582 Khazad cipher algorithm.
583
584 Khazad was a finalist in the initial NESSIE competition. It is
585 an algorithm optimized for 64-bit processors with good performance
586 on 32-bit processors. Khazad uses an 128 bit key size.
587
588 See also:
589 <http://planeta.terra.com.br/informatica/paulobarreto/KhazadPage.html>
590
2407d608
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591config CRYPTO_SALSA20
592 tristate "Salsa20 stream cipher algorithm (EXPERIMENTAL)"
593 depends on EXPERIMENTAL
594 select CRYPTO_BLKCIPHER
595 help
596 Salsa20 stream cipher algorithm.
597
598 Salsa20 is a stream cipher submitted to eSTREAM, the ECRYPT
599 Stream Cipher Project. See <http://www.ecrypt.eu.org/stream/>
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600
601 The Salsa20 stream cipher algorithm is designed by Daniel J.
602 Bernstein <djb@cr.yp.to>. See <http://cr.yp.to/snuffle.html>
603
604config CRYPTO_SALSA20_586
605 tristate "Salsa20 stream cipher algorithm (i586) (EXPERIMENTAL)"
606 depends on (X86 || UML_X86) && !64BIT
607 depends on EXPERIMENTAL
608 select CRYPTO_BLKCIPHER
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609 help
610 Salsa20 stream cipher algorithm.
611
612 Salsa20 is a stream cipher submitted to eSTREAM, the ECRYPT
613 Stream Cipher Project. See <http://www.ecrypt.eu.org/stream/>
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614
615 The Salsa20 stream cipher algorithm is designed by Daniel J.
616 Bernstein <djb@cr.yp.to>. See <http://cr.yp.to/snuffle.html>
617
618config CRYPTO_SALSA20_X86_64
619 tristate "Salsa20 stream cipher algorithm (x86_64) (EXPERIMENTAL)"
620 depends on (X86 || UML_X86) && 64BIT
621 depends on EXPERIMENTAL
622 select CRYPTO_BLKCIPHER
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623 help
624 Salsa20 stream cipher algorithm.
625
626 Salsa20 is a stream cipher submitted to eSTREAM, the ECRYPT
627 Stream Cipher Project. See <http://www.ecrypt.eu.org/stream/>
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628
629 The Salsa20 stream cipher algorithm is designed by Daniel J.
630 Bernstein <djb@cr.yp.to>. See <http://cr.yp.to/snuffle.html>
1da177e4 631
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632config CRYPTO_SEED
633 tristate "SEED cipher algorithm"
cce9e06d 634 select CRYPTO_ALGAPI
1da177e4 635 help
584fffc8 636 SEED cipher algorithm (RFC4269).
1da177e4 637
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638 SEED is a 128-bit symmetric key block cipher that has been
639 developed by KISA (Korea Information Security Agency) as a
640 national standard encryption algorithm of the Republic of Korea.
641 It is a 16 round block cipher with the key size of 128 bit.
642
643 See also:
644 <http://www.kisa.or.kr/kisa/seed/jsp/seed_eng.jsp>
645
646config CRYPTO_SERPENT
647 tristate "Serpent cipher algorithm"
cce9e06d 648 select CRYPTO_ALGAPI
1da177e4 649 help
584fffc8 650 Serpent cipher algorithm, by Anderson, Biham & Knudsen.
1da177e4 651
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652 Keys are allowed to be from 0 to 256 bits in length, in steps
653 of 8 bits. Also includes the 'Tnepres' algorithm, a reversed
654 variant of Serpent for compatibility with old kerneli.org code.
655
656 See also:
657 <http://www.cl.cam.ac.uk/~rja14/serpent.html>
658
659config CRYPTO_TEA
660 tristate "TEA, XTEA and XETA cipher algorithms"
cce9e06d 661 select CRYPTO_ALGAPI
1da177e4 662 help
584fffc8 663 TEA cipher algorithm.
1da177e4 664
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665 Tiny Encryption Algorithm is a simple cipher that uses
666 many rounds for security. It is very fast and uses
667 little memory.
668
669 Xtendend Tiny Encryption Algorithm is a modification to
670 the TEA algorithm to address a potential key weakness
671 in the TEA algorithm.
672
673 Xtendend Encryption Tiny Algorithm is a mis-implementation
674 of the XTEA algorithm for compatibility purposes.
675
676config CRYPTO_TWOFISH
677 tristate "Twofish cipher algorithm"
04ac7db3 678 select CRYPTO_ALGAPI
584fffc8 679 select CRYPTO_TWOFISH_COMMON
04ac7db3 680 help
584fffc8 681 Twofish cipher algorithm.
04ac7db3 682
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683 Twofish was submitted as an AES (Advanced Encryption Standard)
684 candidate cipher by researchers at CounterPane Systems. It is a
685 16 round block cipher supporting key sizes of 128, 192, and 256
686 bits.
04ac7db3 687
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688 See also:
689 <http://www.schneier.com/twofish.html>
690
691config CRYPTO_TWOFISH_COMMON
692 tristate
693 help
694 Common parts of the Twofish cipher algorithm shared by the
695 generic c and the assembler implementations.
696
697config CRYPTO_TWOFISH_586
698 tristate "Twofish cipher algorithms (i586)"
699 depends on (X86 || UML_X86) && !64BIT
700 select CRYPTO_ALGAPI
701 select CRYPTO_TWOFISH_COMMON
702 help
703 Twofish cipher algorithm.
704
705 Twofish was submitted as an AES (Advanced Encryption Standard)
706 candidate cipher by researchers at CounterPane Systems. It is a
707 16 round block cipher supporting key sizes of 128, 192, and 256
708 bits.
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709
710 See also:
584fffc8 711 <http://www.schneier.com/twofish.html>
04ac7db3 712
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713config CRYPTO_TWOFISH_X86_64
714 tristate "Twofish cipher algorithm (x86_64)"
715 depends on (X86 || UML_X86) && 64BIT
cce9e06d 716 select CRYPTO_ALGAPI
584fffc8 717 select CRYPTO_TWOFISH_COMMON
1da177e4 718 help
584fffc8 719 Twofish cipher algorithm (x86_64).
1da177e4 720
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721 Twofish was submitted as an AES (Advanced Encryption Standard)
722 candidate cipher by researchers at CounterPane Systems. It is a
723 16 round block cipher supporting key sizes of 128, 192, and 256
724 bits.
725
726 See also:
727 <http://www.schneier.com/twofish.html>
728
729comment "Compression"
730
731config CRYPTO_DEFLATE
732 tristate "Deflate compression algorithm"
733 select CRYPTO_ALGAPI
734 select ZLIB_INFLATE
735 select ZLIB_DEFLATE
3c09f17c 736 help
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737 This is the Deflate algorithm (RFC1951), specified for use in
738 IPSec with the IPCOMP protocol (RFC3173, RFC2394).
739
740 You will most probably want this if using IPSec.
3c09f17c 741
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742config CRYPTO_LZO
743 tristate "LZO compression algorithm"
744 select CRYPTO_ALGAPI
745 select LZO_COMPRESS
746 select LZO_DECOMPRESS
747 help
748 This is the LZO algorithm.
749
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750comment "Random Number Generation"
751
752config CRYPTO_ANSI_CPRNG
753 tristate "Pseudo Random Number Generation for Cryptographic modules"
754 select CRYPTO_AES
755 select CRYPTO_RNG
756 select CRYPTO_FIPS
757 help
758 This option enables the generic pseudo random number generator
759 for cryptographic modules. Uses the Algorithm specified in
760 ANSI X9.31 A.2.4
761
1da177e4 762source "drivers/crypto/Kconfig"
1da177e4 763
cce9e06d 764endif # if CRYPTO