xref: /linux/crypto/Kconfig (revision 17ec3e71ba797cdb62164fea9532c81b60f47167)
1b2441318SGreg Kroah-Hartman# SPDX-License-Identifier: GPL-2.0
21da177e4SLinus Torvalds#
3685784aaSDan Williams# Generic algorithms support
4685784aaSDan Williams#
5685784aaSDan Williamsconfig XOR_BLOCKS
6685784aaSDan Williams	tristate
7685784aaSDan Williams
8685784aaSDan Williams#
99bc89cd8SDan Williams# async_tx api: hardware offloaded memory transfer/transform support
109bc89cd8SDan Williams#
119bc89cd8SDan Williamssource "crypto/async_tx/Kconfig"
129bc89cd8SDan Williams
139bc89cd8SDan Williams#
141da177e4SLinus Torvalds# Cryptographic API Configuration
151da177e4SLinus Torvalds#
162e290f43SJan Engelhardtmenuconfig CRYPTO
17c3715cb9SSebastian Siewior	tristate "Cryptographic API"
187033b937SEric Biggers	select CRYPTO_LIB_UTILS
191da177e4SLinus Torvalds	help
201da177e4SLinus Torvalds	  This option provides the core Cryptographic API.
211da177e4SLinus Torvalds
22cce9e06dSHerbert Xuif CRYPTO
23cce9e06dSHerbert Xu
24f1f142adSRobert Elliottmenu "Crypto core or helper"
25584fffc8SSebastian Siewior
26ccb778e1SNeil Hormanconfig CRYPTO_FIPS
27ccb778e1SNeil Horman	bool "FIPS 200 compliance"
28f2c89a10SHerbert Xu	depends on (CRYPTO_ANSI_CPRNG || CRYPTO_DRBG) && !CRYPTO_MANAGER_DISABLE_TESTS
291f696097SAlec Ari	depends on (MODULE_SIG || !MODULES)
30ccb778e1SNeil Horman	help
31d99324c2SGeert Uytterhoeven	  This option enables the fips boot option which is
32d99324c2SGeert Uytterhoeven	  required if you want the system to operate in a FIPS 200
33ccb778e1SNeil Horman	  certification.  You should say no unless you know what
34e84c5480SChuck Ebbert	  this is.
35ccb778e1SNeil Horman
365a44749fSVladis Dronovconfig CRYPTO_FIPS_NAME
375a44749fSVladis Dronov	string "FIPS Module Name"
385a44749fSVladis Dronov	default "Linux Kernel Cryptographic API"
395a44749fSVladis Dronov	depends on CRYPTO_FIPS
405a44749fSVladis Dronov	help
415a44749fSVladis Dronov	  This option sets the FIPS Module name reported by the Crypto API via
425a44749fSVladis Dronov	  the /proc/sys/crypto/fips_name file.
435a44749fSVladis Dronov
445a44749fSVladis Dronovconfig CRYPTO_FIPS_CUSTOM_VERSION
455a44749fSVladis Dronov	bool "Use Custom FIPS Module Version"
465a44749fSVladis Dronov	depends on CRYPTO_FIPS
475a44749fSVladis Dronov	default n
485a44749fSVladis Dronov
495a44749fSVladis Dronovconfig CRYPTO_FIPS_VERSION
505a44749fSVladis Dronov	string "FIPS Module Version"
515a44749fSVladis Dronov	default "(none)"
525a44749fSVladis Dronov	depends on CRYPTO_FIPS_CUSTOM_VERSION
535a44749fSVladis Dronov	help
545a44749fSVladis Dronov	  This option provides the ability to override the FIPS Module Version.
555a44749fSVladis Dronov	  By default the KERNELRELEASE value is used.
565a44749fSVladis Dronov
57cce9e06dSHerbert Xuconfig CRYPTO_ALGAPI
58cce9e06dSHerbert Xu	tristate
596a0fcbb4SHerbert Xu	select CRYPTO_ALGAPI2
60cce9e06dSHerbert Xu	help
61cce9e06dSHerbert Xu	  This option provides the API for cryptographic algorithms.
62cce9e06dSHerbert Xu
636a0fcbb4SHerbert Xuconfig CRYPTO_ALGAPI2
646a0fcbb4SHerbert Xu	tristate
656a0fcbb4SHerbert Xu
661ae97820SHerbert Xuconfig CRYPTO_AEAD
671ae97820SHerbert Xu	tristate
686a0fcbb4SHerbert Xu	select CRYPTO_AEAD2
691ae97820SHerbert Xu	select CRYPTO_ALGAPI
701ae97820SHerbert Xu
716a0fcbb4SHerbert Xuconfig CRYPTO_AEAD2
726a0fcbb4SHerbert Xu	tristate
736a0fcbb4SHerbert Xu	select CRYPTO_ALGAPI2
746a0fcbb4SHerbert Xu
756cb8815fSHerbert Xuconfig CRYPTO_SIG
766cb8815fSHerbert Xu	tristate
776cb8815fSHerbert Xu	select CRYPTO_SIG2
786cb8815fSHerbert Xu	select CRYPTO_ALGAPI
796cb8815fSHerbert Xu
806cb8815fSHerbert Xuconfig CRYPTO_SIG2
816cb8815fSHerbert Xu	tristate
826cb8815fSHerbert Xu	select CRYPTO_ALGAPI2
836cb8815fSHerbert Xu
84b95bba5dSEric Biggersconfig CRYPTO_SKCIPHER
855cde0af2SHerbert Xu	tristate
86b95bba5dSEric Biggers	select CRYPTO_SKCIPHER2
875cde0af2SHerbert Xu	select CRYPTO_ALGAPI
8884534684SHerbert Xu	select CRYPTO_ECB
896a0fcbb4SHerbert Xu
90b95bba5dSEric Biggersconfig CRYPTO_SKCIPHER2
916a0fcbb4SHerbert Xu	tristate
926a0fcbb4SHerbert Xu	select CRYPTO_ALGAPI2
935cde0af2SHerbert Xu
94055bcee3SHerbert Xuconfig CRYPTO_HASH
95055bcee3SHerbert Xu	tristate
966a0fcbb4SHerbert Xu	select CRYPTO_HASH2
97055bcee3SHerbert Xu	select CRYPTO_ALGAPI
98055bcee3SHerbert Xu
996a0fcbb4SHerbert Xuconfig CRYPTO_HASH2
1006a0fcbb4SHerbert Xu	tristate
1016a0fcbb4SHerbert Xu	select CRYPTO_ALGAPI2
1026a0fcbb4SHerbert Xu
10317f0f4a4SNeil Hormanconfig CRYPTO_RNG
10417f0f4a4SNeil Horman	tristate
1056a0fcbb4SHerbert Xu	select CRYPTO_RNG2
10617f0f4a4SNeil Horman	select CRYPTO_ALGAPI
10717f0f4a4SNeil Horman
1086a0fcbb4SHerbert Xuconfig CRYPTO_RNG2
1096a0fcbb4SHerbert Xu	tristate
1106a0fcbb4SHerbert Xu	select CRYPTO_ALGAPI2
1116a0fcbb4SHerbert Xu
112401e4238SHerbert Xuconfig CRYPTO_RNG_DEFAULT
113401e4238SHerbert Xu	tristate
114401e4238SHerbert Xu	select CRYPTO_DRBG_MENU
115401e4238SHerbert Xu
1163c339ab8STadeusz Strukconfig CRYPTO_AKCIPHER2
1173c339ab8STadeusz Struk	tristate
1183c339ab8STadeusz Struk	select CRYPTO_ALGAPI2
1193c339ab8STadeusz Struk
1203c339ab8STadeusz Strukconfig CRYPTO_AKCIPHER
1213c339ab8STadeusz Struk	tristate
1223c339ab8STadeusz Struk	select CRYPTO_AKCIPHER2
1233c339ab8STadeusz Struk	select CRYPTO_ALGAPI
1243c339ab8STadeusz Struk
1254e5f2c40SSalvatore Benedettoconfig CRYPTO_KPP2
1264e5f2c40SSalvatore Benedetto	tristate
1274e5f2c40SSalvatore Benedetto	select CRYPTO_ALGAPI2
1284e5f2c40SSalvatore Benedetto
1294e5f2c40SSalvatore Benedettoconfig CRYPTO_KPP
1304e5f2c40SSalvatore Benedetto	tristate
1314e5f2c40SSalvatore Benedetto	select CRYPTO_ALGAPI
1324e5f2c40SSalvatore Benedetto	select CRYPTO_KPP2
1334e5f2c40SSalvatore Benedetto
1342ebda74fSGiovanni Cabidduconfig CRYPTO_ACOMP2
1352ebda74fSGiovanni Cabiddu	tristate
1362ebda74fSGiovanni Cabiddu	select CRYPTO_ALGAPI2
1378cd579d2SBart Van Assche	select SGL_ALLOC
1382ebda74fSGiovanni Cabiddu
1392ebda74fSGiovanni Cabidduconfig CRYPTO_ACOMP
1402ebda74fSGiovanni Cabiddu	tristate
1412ebda74fSGiovanni Cabiddu	select CRYPTO_ALGAPI
1422ebda74fSGiovanni Cabiddu	select CRYPTO_ACOMP2
1432ebda74fSGiovanni Cabiddu
1442b8c19dbSHerbert Xuconfig CRYPTO_MANAGER
1452b8c19dbSHerbert Xu	tristate "Cryptographic algorithm manager"
1466a0fcbb4SHerbert Xu	select CRYPTO_MANAGER2
1472b8c19dbSHerbert Xu	help
1482b8c19dbSHerbert Xu	  Create default cryptographic template instantiations such as
1492b8c19dbSHerbert Xu	  cbc(aes).
1502b8c19dbSHerbert Xu
1516a0fcbb4SHerbert Xuconfig CRYPTO_MANAGER2
1526a0fcbb4SHerbert Xu	def_tristate CRYPTO_MANAGER || (CRYPTO_MANAGER!=n && CRYPTO_ALGAPI=y)
1532ebda74fSGiovanni Cabiddu	select CRYPTO_ACOMP2
154fb28fabfSHerbert Xu	select CRYPTO_AEAD2
155fb28fabfSHerbert Xu	select CRYPTO_AKCIPHER2
1566cb8815fSHerbert Xu	select CRYPTO_SIG2
157fb28fabfSHerbert Xu	select CRYPTO_HASH2
158fb28fabfSHerbert Xu	select CRYPTO_KPP2
159fb28fabfSHerbert Xu	select CRYPTO_RNG2
160fb28fabfSHerbert Xu	select CRYPTO_SKCIPHER2
1616a0fcbb4SHerbert Xu
162a38f7907SSteffen Klassertconfig CRYPTO_USER
163a38f7907SSteffen Klassert	tristate "Userspace cryptographic algorithm configuration"
1645db017aaSHerbert Xu	depends on NET
165a38f7907SSteffen Klassert	select CRYPTO_MANAGER
166a38f7907SSteffen Klassert	help
167d19978f5SValdis.Kletnieks@vt.edu	  Userspace configuration for cryptographic instantiations such as
168a38f7907SSteffen Klassert	  cbc(aes).
169a38f7907SSteffen Klassert
170326a6346SHerbert Xuconfig CRYPTO_MANAGER_DISABLE_TESTS
171326a6346SHerbert Xu	bool "Disable run-time self tests"
17200ca28a5SHerbert Xu	default y
1730b767f96SAlexander Shishkin	help
174326a6346SHerbert Xu	  Disable run-time self tests that normally take place at
175326a6346SHerbert Xu	  algorithm registration.
1760b767f96SAlexander Shishkin
1775b2706a4SEric Biggersconfig CRYPTO_MANAGER_EXTRA_TESTS
1785b2706a4SEric Biggers	bool "Enable extra run-time crypto self tests"
1796569e309SJason A. Donenfeld	depends on DEBUG_KERNEL && !CRYPTO_MANAGER_DISABLE_TESTS && CRYPTO_MANAGER
1805b2706a4SEric Biggers	help
1815b2706a4SEric Biggers	  Enable extra run-time self tests of registered crypto algorithms,
1825b2706a4SEric Biggers	  including randomized fuzz tests.
1835b2706a4SEric Biggers
1845b2706a4SEric Biggers	  This is intended for developer use only, as these tests take much
1855b2706a4SEric Biggers	  longer to run than the normal self tests.
1865b2706a4SEric Biggers
187584fffc8SSebastian Siewiorconfig CRYPTO_NULL
188584fffc8SSebastian Siewior	tristate "Null algorithms"
189149a3971SHerbert Xu	select CRYPTO_NULL2
190584fffc8SSebastian Siewior	help
191584fffc8SSebastian Siewior	  These are 'Null' algorithms, used by IPsec, which do nothing.
192584fffc8SSebastian Siewior
193149a3971SHerbert Xuconfig CRYPTO_NULL2
194dd43c4e9SHerbert Xu	tristate
195149a3971SHerbert Xu	select CRYPTO_ALGAPI2
196b95bba5dSEric Biggers	select CRYPTO_SKCIPHER2
197149a3971SHerbert Xu	select CRYPTO_HASH2
198149a3971SHerbert Xu
1995068c7a8SSteffen Klassertconfig CRYPTO_PCRYPT
2003b4afaf2SKees Cook	tristate "Parallel crypto engine"
2013b4afaf2SKees Cook	depends on SMP
2025068c7a8SSteffen Klassert	select PADATA
2035068c7a8SSteffen Klassert	select CRYPTO_MANAGER
2045068c7a8SSteffen Klassert	select CRYPTO_AEAD
2055068c7a8SSteffen Klassert	help
2065068c7a8SSteffen Klassert	  This converts an arbitrary crypto algorithm into a parallel
2075068c7a8SSteffen Klassert	  algorithm that executes in kernel threads.
2085068c7a8SSteffen Klassert
209584fffc8SSebastian Siewiorconfig CRYPTO_CRYPTD
210584fffc8SSebastian Siewior	tristate "Software async crypto daemon"
211b95bba5dSEric Biggers	select CRYPTO_SKCIPHER
212b8a28251SLoc Ho	select CRYPTO_HASH
213584fffc8SSebastian Siewior	select CRYPTO_MANAGER
214584fffc8SSebastian Siewior	help
215584fffc8SSebastian Siewior	  This is a generic software asynchronous crypto daemon that
216584fffc8SSebastian Siewior	  converts an arbitrary synchronous software crypto algorithm
217584fffc8SSebastian Siewior	  into an asynchronous algorithm that executes in a kernel thread.
218584fffc8SSebastian Siewior
219584fffc8SSebastian Siewiorconfig CRYPTO_AUTHENC
220584fffc8SSebastian Siewior	tristate "Authenc support"
221584fffc8SSebastian Siewior	select CRYPTO_AEAD
222b95bba5dSEric Biggers	select CRYPTO_SKCIPHER
223584fffc8SSebastian Siewior	select CRYPTO_MANAGER
224584fffc8SSebastian Siewior	select CRYPTO_HASH
225e94c6a7aSHerbert Xu	select CRYPTO_NULL
226584fffc8SSebastian Siewior	help
227584fffc8SSebastian Siewior	  Authenc: Combined mode wrapper for IPsec.
228cf514b2aSRobert Elliott
229cf514b2aSRobert Elliott	  This is required for IPSec ESP (XFRM_ESP).
230584fffc8SSebastian Siewior
231584fffc8SSebastian Siewiorconfig CRYPTO_TEST
232584fffc8SSebastian Siewior	tristate "Testing module"
23300ea27f1SArd Biesheuvel	depends on m || EXPERT
234da7f033dSHerbert Xu	select CRYPTO_MANAGER
235584fffc8SSebastian Siewior	help
236584fffc8SSebastian Siewior	  Quick & dirty crypto test module.
237584fffc8SSebastian Siewior
238266d0516SHerbert Xuconfig CRYPTO_SIMD
239266d0516SHerbert Xu	tristate
240266d0516SHerbert Xu	select CRYPTO_CRYPTD
241266d0516SHerbert Xu
242735d37b5SBaolin Wangconfig CRYPTO_ENGINE
243735d37b5SBaolin Wang	tristate
244735d37b5SBaolin Wang
245f1f142adSRobert Elliottendmenu
246f1f142adSRobert Elliott
247f1f142adSRobert Elliottmenu "Public-key cryptography"
2483d6228a5SVitaly Chikunov
2493d6228a5SVitaly Chikunovconfig CRYPTO_RSA
25005b37465SRobert Elliott	tristate "RSA (Rivest-Shamir-Adleman)"
2513d6228a5SVitaly Chikunov	select CRYPTO_AKCIPHER
2523d6228a5SVitaly Chikunov	select CRYPTO_MANAGER
2531e562deaSLukas Wunner	select CRYPTO_SIG
2543d6228a5SVitaly Chikunov	select MPILIB
2553d6228a5SVitaly Chikunov	select ASN1
2563d6228a5SVitaly Chikunov	help
25705b37465SRobert Elliott	  RSA (Rivest-Shamir-Adleman) public key algorithm (RFC8017)
2583d6228a5SVitaly Chikunov
2593d6228a5SVitaly Chikunovconfig CRYPTO_DH
26005b37465SRobert Elliott	tristate "DH (Diffie-Hellman)"
2613d6228a5SVitaly Chikunov	select CRYPTO_KPP
2623d6228a5SVitaly Chikunov	select MPILIB
2633d6228a5SVitaly Chikunov	help
26405b37465SRobert Elliott	  DH (Diffie-Hellman) key exchange algorithm
2653d6228a5SVitaly Chikunov
2667dce5981SNicolai Stangeconfig CRYPTO_DH_RFC7919_GROUPS
26705b37465SRobert Elliott	bool "RFC 7919 FFDHE groups"
2687dce5981SNicolai Stange	depends on CRYPTO_DH
2691e207964SNicolai Stange	select CRYPTO_RNG_DEFAULT
2707dce5981SNicolai Stange	help
27105b37465SRobert Elliott	  FFDHE (Finite-Field-based Diffie-Hellman Ephemeral) groups
27205b37465SRobert Elliott	  defined in RFC7919.
27305b37465SRobert Elliott
27405b37465SRobert Elliott	  Support these finite-field groups in DH key exchanges:
27505b37465SRobert Elliott	  - ffdhe2048, ffdhe3072, ffdhe4096, ffdhe6144, ffdhe8192
27605b37465SRobert Elliott
27705b37465SRobert Elliott	  If unsure, say N.
2787dce5981SNicolai Stange
2794a2289daSVitaly Chikunovconfig CRYPTO_ECC
2804a2289daSVitaly Chikunov	tristate
28138aa192aSArnd Bergmann	select CRYPTO_RNG_DEFAULT
2824a2289daSVitaly Chikunov
2833d6228a5SVitaly Chikunovconfig CRYPTO_ECDH
28405b37465SRobert Elliott	tristate "ECDH (Elliptic Curve Diffie-Hellman)"
2854a2289daSVitaly Chikunov	select CRYPTO_ECC
2863d6228a5SVitaly Chikunov	select CRYPTO_KPP
2873d6228a5SVitaly Chikunov	help
28805b37465SRobert Elliott	  ECDH (Elliptic Curve Diffie-Hellman) key exchange algorithm
28905b37465SRobert Elliott	  using curves P-192, P-256, and P-384 (FIPS 186)
2903d6228a5SVitaly Chikunov
2914e660291SStefan Bergerconfig CRYPTO_ECDSA
29205b37465SRobert Elliott	tristate "ECDSA (Elliptic Curve Digital Signature Algorithm)"
2934e660291SStefan Berger	select CRYPTO_ECC
294ef132350SLukas Wunner	select CRYPTO_SIG
2954e660291SStefan Berger	select ASN1
2964e660291SStefan Berger	help
29705b37465SRobert Elliott	  ECDSA (Elliptic Curve Digital Signature Algorithm) (FIPS 186,
29805b37465SRobert Elliott	  ISO/IEC 14888-3)
29991790c7aSLukas Wunner	  using curves P-192, P-256, P-384 and P-521
30005b37465SRobert Elliott
30105b37465SRobert Elliott	  Only signature verification is implemented.
3024e660291SStefan Berger
3030d7a7864SVitaly Chikunovconfig CRYPTO_ECRDSA
30405b37465SRobert Elliott	tristate "EC-RDSA (Elliptic Curve Russian Digital Signature Algorithm)"
3050d7a7864SVitaly Chikunov	select CRYPTO_ECC
306ae117924SLukas Wunner	select CRYPTO_SIG
3070d7a7864SVitaly Chikunov	select CRYPTO_STREEBOG
3081036633eSVitaly Chikunov	select OID_REGISTRY
3091036633eSVitaly Chikunov	select ASN1
3100d7a7864SVitaly Chikunov	help
3110d7a7864SVitaly Chikunov	  Elliptic Curve Russian Digital Signature Algorithm (GOST R 34.10-2012,
31205b37465SRobert Elliott	  RFC 7091, ISO/IEC 14888-3)
31305b37465SRobert Elliott
31405b37465SRobert Elliott	  One of the Russian cryptographic standard algorithms (called GOST
31505b37465SRobert Elliott	  algorithms). Only signature verification is implemented.
3160d7a7864SVitaly Chikunov
317ee772cb6SArd Biesheuvelconfig CRYPTO_CURVE25519
31805b37465SRobert Elliott	tristate "Curve25519"
319ee772cb6SArd Biesheuvel	select CRYPTO_KPP
320*17ec3e71SHerbert Xu	select CRYPTO_LIB_CURVE25519_INTERNAL
32105b37465SRobert Elliott	help
32205b37465SRobert Elliott	  Curve25519 elliptic curve (RFC7748)
323ee772cb6SArd Biesheuvel
324f1f142adSRobert Elliottendmenu
325584fffc8SSebastian Siewior
326f1f142adSRobert Elliottmenu "Block ciphers"
3271da177e4SLinus Torvalds
3281da177e4SLinus Torvaldsconfig CRYPTO_AES
329cf514b2aSRobert Elliott	tristate "AES (Advanced Encryption Standard)"
330cce9e06dSHerbert Xu	select CRYPTO_ALGAPI
3315bb12d78SArd Biesheuvel	select CRYPTO_LIB_AES
3321da177e4SLinus Torvalds	help
333cf514b2aSRobert Elliott	  AES cipher algorithms (Rijndael)(FIPS-197, ISO/IEC 18033-3)
3341da177e4SLinus Torvalds
3351da177e4SLinus Torvalds	  Rijndael appears to be consistently a very good performer in
3361da177e4SLinus Torvalds	  both hardware and software across a wide range of computing
3371da177e4SLinus Torvalds	  environments regardless of its use in feedback or non-feedback
3381da177e4SLinus Torvalds	  modes. Its key setup time is excellent, and its key agility is
3391da177e4SLinus Torvalds	  good. Rijndael's very low memory requirements make it very well
3401da177e4SLinus Torvalds	  suited for restricted-space environments, in which it also
3411da177e4SLinus Torvalds	  demonstrates excellent performance. Rijndael's operations are
3421da177e4SLinus Torvalds	  among the easiest to defend against power and timing attacks.
3431da177e4SLinus Torvalds
3441da177e4SLinus Torvalds	  The AES specifies three key sizes: 128, 192 and 256 bits
3451da177e4SLinus Torvalds
346b5e0b032SArd Biesheuvelconfig CRYPTO_AES_TI
347cf514b2aSRobert Elliott	tristate "AES (Advanced Encryption Standard) (fixed time)"
348b5e0b032SArd Biesheuvel	select CRYPTO_ALGAPI
349e59c1c98SArd Biesheuvel	select CRYPTO_LIB_AES
350b5e0b032SArd Biesheuvel	help
351cf514b2aSRobert Elliott	  AES cipher algorithms (Rijndael)(FIPS-197, ISO/IEC 18033-3)
352cf514b2aSRobert Elliott
353b5e0b032SArd Biesheuvel	  This is a generic implementation of AES that attempts to eliminate
354b5e0b032SArd Biesheuvel	  data dependent latencies as much as possible without affecting
355b5e0b032SArd Biesheuvel	  performance too much. It is intended for use by the generic CCM
356b5e0b032SArd Biesheuvel	  and GCM drivers, and other CTR or CMAC/XCBC based modes that rely
357b5e0b032SArd Biesheuvel	  solely on encryption (although decryption is supported as well, but
358b5e0b032SArd Biesheuvel	  with a more dramatic performance hit)
359b5e0b032SArd Biesheuvel
360b5e0b032SArd Biesheuvel	  Instead of using 16 lookup tables of 1 KB each, (8 for encryption and
361b5e0b032SArd Biesheuvel	  8 for decryption), this implementation only uses just two S-boxes of
362b5e0b032SArd Biesheuvel	  256 bytes each, and attempts to eliminate data dependent latencies by
363b5e0b032SArd Biesheuvel	  prefetching the entire table into the cache at the start of each
3640a6a40c2SEric Biggers	  block. Interrupts are also disabled to avoid races where cachelines
3650a6a40c2SEric Biggers	  are evicted when the CPU is interrupted to do something else.
366b5e0b032SArd Biesheuvel
3671da177e4SLinus Torvaldsconfig CRYPTO_ANUBIS
368cf514b2aSRobert Elliott	tristate "Anubis"
3691674aea5SArd Biesheuvel	depends on CRYPTO_USER_API_ENABLE_OBSOLETE
370cce9e06dSHerbert Xu	select CRYPTO_ALGAPI
3711da177e4SLinus Torvalds	help
372cf514b2aSRobert Elliott	  Anubis cipher algorithm
3731da177e4SLinus Torvalds
3741da177e4SLinus Torvalds	  Anubis is a variable key length cipher which can use keys from
3751da177e4SLinus Torvalds	  128 bits to 320 bits in length.  It was evaluated as a entrant
3761da177e4SLinus Torvalds	  in the NESSIE competition.
3771da177e4SLinus Torvalds
378cf514b2aSRobert Elliott	  See https://web.archive.org/web/20160606112246/http://www.larc.usp.br/~pbarreto/AnubisPage.html
379cf514b2aSRobert Elliott	  for further information.
3801da177e4SLinus Torvalds
381f1f142adSRobert Elliottconfig CRYPTO_ARIA
382cf514b2aSRobert Elliott	tristate "ARIA"
383f1f142adSRobert Elliott	select CRYPTO_ALGAPI
384e2ee95b8SHye-Shik Chang	help
385cf514b2aSRobert Elliott	  ARIA cipher algorithm (RFC5794)
386e2ee95b8SHye-Shik Chang
387f1f142adSRobert Elliott	  ARIA is a standard encryption algorithm of the Republic of Korea.
388f1f142adSRobert Elliott	  The ARIA specifies three key sizes and rounds.
389f1f142adSRobert Elliott	  128-bit: 12 rounds.
390f1f142adSRobert Elliott	  192-bit: 14 rounds.
391f1f142adSRobert Elliott	  256-bit: 16 rounds.
392f1f142adSRobert Elliott
393cf514b2aSRobert Elliott	  See:
394cf514b2aSRobert Elliott	  https://seed.kisa.or.kr/kisa/algorithm/EgovAriaInfo.do
395584fffc8SSebastian Siewior
396584fffc8SSebastian Siewiorconfig CRYPTO_BLOWFISH
397cf514b2aSRobert Elliott	tristate "Blowfish"
398584fffc8SSebastian Siewior	select CRYPTO_ALGAPI
39952ba867cSJussi Kivilinna	select CRYPTO_BLOWFISH_COMMON
400584fffc8SSebastian Siewior	help
401cf514b2aSRobert Elliott	  Blowfish cipher algorithm, by Bruce Schneier
402584fffc8SSebastian Siewior
403584fffc8SSebastian Siewior	  This is a variable key length cipher which can use keys from 32
404584fffc8SSebastian Siewior	  bits to 448 bits in length.  It's fast, simple and specifically
405584fffc8SSebastian Siewior	  designed for use on "large microprocessors".
406e2ee95b8SHye-Shik Chang
407cf514b2aSRobert Elliott	  See https://www.schneier.com/blowfish.html for further information.
408584fffc8SSebastian Siewior
40952ba867cSJussi Kivilinnaconfig CRYPTO_BLOWFISH_COMMON
41052ba867cSJussi Kivilinna	tristate
41152ba867cSJussi Kivilinna	help
41252ba867cSJussi Kivilinna	  Common parts of the Blowfish cipher algorithm shared by the
41352ba867cSJussi Kivilinna	  generic c and the assembler implementations.
41452ba867cSJussi Kivilinna
415584fffc8SSebastian Siewiorconfig CRYPTO_CAMELLIA
416cf514b2aSRobert Elliott	tristate "Camellia"
417584fffc8SSebastian Siewior	select CRYPTO_ALGAPI
418584fffc8SSebastian Siewior	help
419cf514b2aSRobert Elliott	  Camellia cipher algorithms (ISO/IEC 18033-3)
420584fffc8SSebastian Siewior
421584fffc8SSebastian Siewior	  Camellia is a symmetric key block cipher developed jointly
422584fffc8SSebastian Siewior	  at NTT and Mitsubishi Electric Corporation.
423584fffc8SSebastian Siewior
424584fffc8SSebastian Siewior	  The Camellia specifies three key sizes: 128, 192 and 256 bits.
425584fffc8SSebastian Siewior
426cf514b2aSRobert Elliott	  See https://info.isl.ntt.co.jp/crypt/eng/camellia/ for further information.
427584fffc8SSebastian Siewior
428044ab525SJussi Kivilinnaconfig CRYPTO_CAST_COMMON
429044ab525SJussi Kivilinna	tristate
430044ab525SJussi Kivilinna	help
431044ab525SJussi Kivilinna	  Common parts of the CAST cipher algorithms shared by the
432044ab525SJussi Kivilinna	  generic c and the assembler implementations.
433044ab525SJussi Kivilinna
434584fffc8SSebastian Siewiorconfig CRYPTO_CAST5
435cf514b2aSRobert Elliott	tristate "CAST5 (CAST-128)"
436584fffc8SSebastian Siewior	select CRYPTO_ALGAPI
437044ab525SJussi Kivilinna	select CRYPTO_CAST_COMMON
438584fffc8SSebastian Siewior	help
439cf514b2aSRobert Elliott	  CAST5 (CAST-128) cipher algorithm (RFC2144, ISO/IEC 18033-3)
440584fffc8SSebastian Siewior
441584fffc8SSebastian Siewiorconfig CRYPTO_CAST6
442cf514b2aSRobert Elliott	tristate "CAST6 (CAST-256)"
443584fffc8SSebastian Siewior	select CRYPTO_ALGAPI
444044ab525SJussi Kivilinna	select CRYPTO_CAST_COMMON
445584fffc8SSebastian Siewior	help
446cf514b2aSRobert Elliott	  CAST6 (CAST-256) encryption algorithm (RFC2612)
447584fffc8SSebastian Siewior
448584fffc8SSebastian Siewiorconfig CRYPTO_DES
449cf514b2aSRobert Elliott	tristate "DES and Triple DES EDE"
450584fffc8SSebastian Siewior	select CRYPTO_ALGAPI
45104007b0eSArd Biesheuvel	select CRYPTO_LIB_DES
452584fffc8SSebastian Siewior	help
453cf514b2aSRobert Elliott	  DES (Data Encryption Standard)(FIPS 46-2, ISO/IEC 18033-3) and
454cf514b2aSRobert Elliott	  Triple DES EDE (Encrypt/Decrypt/Encrypt) (FIPS 46-3, ISO/IEC 18033-3)
455cf514b2aSRobert Elliott	  cipher algorithms
456584fffc8SSebastian Siewior
457584fffc8SSebastian Siewiorconfig CRYPTO_FCRYPT
458cf514b2aSRobert Elliott	tristate "FCrypt"
459584fffc8SSebastian Siewior	select CRYPTO_ALGAPI
460b95bba5dSEric Biggers	select CRYPTO_SKCIPHER
461584fffc8SSebastian Siewior	help
462cf514b2aSRobert Elliott	  FCrypt algorithm used by RxRPC
463cf514b2aSRobert Elliott
464cf514b2aSRobert Elliott	  See https://ota.polyonymo.us/fcrypt-paper.txt
465584fffc8SSebastian Siewior
466584fffc8SSebastian Siewiorconfig CRYPTO_KHAZAD
467cf514b2aSRobert Elliott	tristate "Khazad"
4681674aea5SArd Biesheuvel	depends on CRYPTO_USER_API_ENABLE_OBSOLETE
469584fffc8SSebastian Siewior	select CRYPTO_ALGAPI
470584fffc8SSebastian Siewior	help
471cf514b2aSRobert Elliott	  Khazad cipher algorithm
472584fffc8SSebastian Siewior
473584fffc8SSebastian Siewior	  Khazad was a finalist in the initial NESSIE competition.  It is
474584fffc8SSebastian Siewior	  an algorithm optimized for 64-bit processors with good performance
475584fffc8SSebastian Siewior	  on 32-bit processors.  Khazad uses an 128 bit key size.
476584fffc8SSebastian Siewior
477cf514b2aSRobert Elliott	  See https://web.archive.org/web/20171011071731/http://www.larc.usp.br/~pbarreto/KhazadPage.html
478cf514b2aSRobert Elliott	  for further information.
479e2ee95b8SHye-Shik Chang
480584fffc8SSebastian Siewiorconfig CRYPTO_SEED
481cf514b2aSRobert Elliott	tristate "SEED"
4821674aea5SArd Biesheuvel	depends on CRYPTO_USER_API_ENABLE_OBSOLETE
483584fffc8SSebastian Siewior	select CRYPTO_ALGAPI
484584fffc8SSebastian Siewior	help
485cf514b2aSRobert Elliott	  SEED cipher algorithm (RFC4269, ISO/IEC 18033-3)
486584fffc8SSebastian Siewior
487584fffc8SSebastian Siewior	  SEED is a 128-bit symmetric key block cipher that has been
488584fffc8SSebastian Siewior	  developed by KISA (Korea Information Security Agency) as a
489584fffc8SSebastian Siewior	  national standard encryption algorithm of the Republic of Korea.
490584fffc8SSebastian Siewior	  It is a 16 round block cipher with the key size of 128 bit.
491584fffc8SSebastian Siewior
492cf514b2aSRobert Elliott	  See https://seed.kisa.or.kr/kisa/algorithm/EgovSeedInfo.do
493cf514b2aSRobert Elliott	  for further information.
494584fffc8SSebastian Siewior
495584fffc8SSebastian Siewiorconfig CRYPTO_SERPENT
496cf514b2aSRobert Elliott	tristate "Serpent"
497584fffc8SSebastian Siewior	select CRYPTO_ALGAPI
498584fffc8SSebastian Siewior	help
499cf514b2aSRobert Elliott	  Serpent cipher algorithm, by Anderson, Biham & Knudsen
500584fffc8SSebastian Siewior
501584fffc8SSebastian Siewior	  Keys are allowed to be from 0 to 256 bits in length, in steps
502784506a1SArd Biesheuvel	  of 8 bits.
503584fffc8SSebastian Siewior
504cf514b2aSRobert Elliott	  See https://www.cl.cam.ac.uk/~rja14/serpent.html for further information.
505584fffc8SSebastian Siewior
506747c8ce4SGilad Ben-Yossefconfig CRYPTO_SM4
507d2825fa9SJason A. Donenfeld	tristate
508d2825fa9SJason A. Donenfeld
509d2825fa9SJason A. Donenfeldconfig CRYPTO_SM4_GENERIC
510cf514b2aSRobert Elliott	tristate "SM4 (ShangMi 4)"
511747c8ce4SGilad Ben-Yossef	select CRYPTO_ALGAPI
512d2825fa9SJason A. Donenfeld	select CRYPTO_SM4
513747c8ce4SGilad Ben-Yossef	help
514cf514b2aSRobert Elliott	  SM4 cipher algorithms (OSCCA GB/T 32907-2016,
515cf514b2aSRobert Elliott	  ISO/IEC 18033-3:2010/Amd 1:2021)
516747c8ce4SGilad Ben-Yossef
517747c8ce4SGilad Ben-Yossef	  SM4 (GBT.32907-2016) is a cryptographic standard issued by the
518747c8ce4SGilad Ben-Yossef	  Organization of State Commercial Administration of China (OSCCA)
519747c8ce4SGilad Ben-Yossef	  as an authorized cryptographic algorithms for the use within China.
520747c8ce4SGilad Ben-Yossef
521747c8ce4SGilad Ben-Yossef	  SMS4 was originally created for use in protecting wireless
522747c8ce4SGilad Ben-Yossef	  networks, and is mandated in the Chinese National Standard for
523747c8ce4SGilad Ben-Yossef	  Wireless LAN WAPI (Wired Authentication and Privacy Infrastructure)
524747c8ce4SGilad Ben-Yossef	  (GB.15629.11-2003).
525747c8ce4SGilad Ben-Yossef
526747c8ce4SGilad Ben-Yossef	  The latest SM4 standard (GBT.32907-2016) was proposed by OSCCA and
527747c8ce4SGilad Ben-Yossef	  standardized through TC 260 of the Standardization Administration
528747c8ce4SGilad Ben-Yossef	  of the People's Republic of China (SAC).
529747c8ce4SGilad Ben-Yossef
530747c8ce4SGilad Ben-Yossef	  The input, output, and key of SMS4 are each 128 bits.
531747c8ce4SGilad Ben-Yossef
532cf514b2aSRobert Elliott	  See https://eprint.iacr.org/2008/329.pdf for further information.
533747c8ce4SGilad Ben-Yossef
534747c8ce4SGilad Ben-Yossef	  If unsure, say N.
535747c8ce4SGilad Ben-Yossef
536584fffc8SSebastian Siewiorconfig CRYPTO_TEA
537cf514b2aSRobert Elliott	tristate "TEA, XTEA and XETA"
5381674aea5SArd Biesheuvel	depends on CRYPTO_USER_API_ENABLE_OBSOLETE
539584fffc8SSebastian Siewior	select CRYPTO_ALGAPI
540584fffc8SSebastian Siewior	help
541cf514b2aSRobert Elliott	  TEA (Tiny Encryption Algorithm) cipher algorithms
542584fffc8SSebastian Siewior
543584fffc8SSebastian Siewior	  Tiny Encryption Algorithm is a simple cipher that uses
544584fffc8SSebastian Siewior	  many rounds for security.  It is very fast and uses
545584fffc8SSebastian Siewior	  little memory.
546584fffc8SSebastian Siewior
547584fffc8SSebastian Siewior	  Xtendend Tiny Encryption Algorithm is a modification to
548584fffc8SSebastian Siewior	  the TEA algorithm to address a potential key weakness
549584fffc8SSebastian Siewior	  in the TEA algorithm.
550584fffc8SSebastian Siewior
551584fffc8SSebastian Siewior	  Xtendend Encryption Tiny Algorithm is a mis-implementation
552584fffc8SSebastian Siewior	  of the XTEA algorithm for compatibility purposes.
553584fffc8SSebastian Siewior
554584fffc8SSebastian Siewiorconfig CRYPTO_TWOFISH
555cf514b2aSRobert Elliott	tristate "Twofish"
556584fffc8SSebastian Siewior	select CRYPTO_ALGAPI
557584fffc8SSebastian Siewior	select CRYPTO_TWOFISH_COMMON
558584fffc8SSebastian Siewior	help
559cf514b2aSRobert Elliott	  Twofish cipher algorithm
560584fffc8SSebastian Siewior
561584fffc8SSebastian Siewior	  Twofish was submitted as an AES (Advanced Encryption Standard)
562584fffc8SSebastian Siewior	  candidate cipher by researchers at CounterPane Systems.  It is a
563584fffc8SSebastian Siewior	  16 round block cipher supporting key sizes of 128, 192, and 256
564584fffc8SSebastian Siewior	  bits.
565584fffc8SSebastian Siewior
566cf514b2aSRobert Elliott	  See https://www.schneier.com/twofish.html for further information.
567584fffc8SSebastian Siewior
568584fffc8SSebastian Siewiorconfig CRYPTO_TWOFISH_COMMON
569584fffc8SSebastian Siewior	tristate
570584fffc8SSebastian Siewior	help
571584fffc8SSebastian Siewior	  Common parts of the Twofish cipher algorithm shared by the
572584fffc8SSebastian Siewior	  generic c and the assembler implementations.
573584fffc8SSebastian Siewior
574f1f142adSRobert Elliottendmenu
575f1f142adSRobert Elliott
576f1f142adSRobert Elliottmenu "Length-preserving ciphers and modes"
577f1f142adSRobert Elliott
578f1f142adSRobert Elliottconfig CRYPTO_ADIANTUM
579cf514b2aSRobert Elliott	tristate "Adiantum"
580f1f142adSRobert Elliott	select CRYPTO_CHACHA20
581f1f142adSRobert Elliott	select CRYPTO_LIB_POLY1305_GENERIC
582f1f142adSRobert Elliott	select CRYPTO_NHPOLY1305
583f1f142adSRobert Elliott	select CRYPTO_MANAGER
584f1f142adSRobert Elliott	help
585cf514b2aSRobert Elliott	  Adiantum tweakable, length-preserving encryption mode
586cf514b2aSRobert Elliott
587cf514b2aSRobert Elliott	  Designed for fast and secure disk encryption, especially on
588f1f142adSRobert Elliott	  CPUs without dedicated crypto instructions.  It encrypts
589f1f142adSRobert Elliott	  each sector using the XChaCha12 stream cipher, two passes of
590f1f142adSRobert Elliott	  an ε-almost-∆-universal hash function, and an invocation of
591f1f142adSRobert Elliott	  the AES-256 block cipher on a single 16-byte block.  On CPUs
592f1f142adSRobert Elliott	  without AES instructions, Adiantum is much faster than
593f1f142adSRobert Elliott	  AES-XTS.
594f1f142adSRobert Elliott
595f1f142adSRobert Elliott	  Adiantum's security is provably reducible to that of its
596f1f142adSRobert Elliott	  underlying stream and block ciphers, subject to a security
597f1f142adSRobert Elliott	  bound.  Unlike XTS, Adiantum is a true wide-block encryption
598f1f142adSRobert Elliott	  mode, so it actually provides an even stronger notion of
599f1f142adSRobert Elliott	  security than XTS, subject to the security bound.
600f1f142adSRobert Elliott
601f1f142adSRobert Elliott	  If unsure, say N.
602f1f142adSRobert Elliott
603f1f142adSRobert Elliottconfig CRYPTO_ARC4
604cf514b2aSRobert Elliott	tristate "ARC4 (Alleged Rivest Cipher 4)"
605f1f142adSRobert Elliott	depends on CRYPTO_USER_API_ENABLE_OBSOLETE
606f1f142adSRobert Elliott	select CRYPTO_SKCIPHER
607f1f142adSRobert Elliott	select CRYPTO_LIB_ARC4
608f1f142adSRobert Elliott	help
609cf514b2aSRobert Elliott	  ARC4 cipher algorithm
610f1f142adSRobert Elliott
611f1f142adSRobert Elliott	  ARC4 is a stream cipher using keys ranging from 8 bits to 2048
612f1f142adSRobert Elliott	  bits in length.  This algorithm is required for driver-based
613f1f142adSRobert Elliott	  WEP, but it should not be for other purposes because of the
614f1f142adSRobert Elliott	  weakness of the algorithm.
615f1f142adSRobert Elliott
616f1f142adSRobert Elliottconfig CRYPTO_CHACHA20
617cf514b2aSRobert Elliott	tristate "ChaCha"
618*17ec3e71SHerbert Xu	select CRYPTO_LIB_CHACHA_INTERNAL
619f1f142adSRobert Elliott	select CRYPTO_SKCIPHER
620f1f142adSRobert Elliott	help
621cf514b2aSRobert Elliott	  The ChaCha20, XChaCha20, and XChaCha12 stream cipher algorithms
622f1f142adSRobert Elliott
623f1f142adSRobert Elliott	  ChaCha20 is a 256-bit high-speed stream cipher designed by Daniel J.
624f1f142adSRobert Elliott	  Bernstein and further specified in RFC7539 for use in IETF protocols.
625cf514b2aSRobert Elliott	  This is the portable C implementation of ChaCha20.  See
626cf514b2aSRobert Elliott	  https://cr.yp.to/chacha/chacha-20080128.pdf for further information.
627f1f142adSRobert Elliott
628f1f142adSRobert Elliott	  XChaCha20 is the application of the XSalsa20 construction to ChaCha20
629f1f142adSRobert Elliott	  rather than to Salsa20.  XChaCha20 extends ChaCha20's nonce length
630f1f142adSRobert Elliott	  from 64 bits (or 96 bits using the RFC7539 convention) to 192 bits,
631cf514b2aSRobert Elliott	  while provably retaining ChaCha20's security.  See
632cf514b2aSRobert Elliott	  https://cr.yp.to/snuffle/xsalsa-20081128.pdf for further information.
633f1f142adSRobert Elliott
634f1f142adSRobert Elliott	  XChaCha12 is XChaCha20 reduced to 12 rounds, with correspondingly
635f1f142adSRobert Elliott	  reduced security margin but increased performance.  It can be needed
636f1f142adSRobert Elliott	  in some performance-sensitive scenarios.
637f1f142adSRobert Elliott
638f1f142adSRobert Elliottconfig CRYPTO_CBC
639cf514b2aSRobert Elliott	tristate "CBC (Cipher Block Chaining)"
640f1f142adSRobert Elliott	select CRYPTO_SKCIPHER
641f1f142adSRobert Elliott	select CRYPTO_MANAGER
642f1f142adSRobert Elliott	help
643cf514b2aSRobert Elliott	  CBC (Cipher Block Chaining) mode (NIST SP800-38A)
644cf514b2aSRobert Elliott
645cf514b2aSRobert Elliott	  This block cipher mode is required for IPSec ESP (XFRM_ESP).
646f1f142adSRobert Elliott
647f1f142adSRobert Elliottconfig CRYPTO_CTR
648cf514b2aSRobert Elliott	tristate "CTR (Counter)"
649f1f142adSRobert Elliott	select CRYPTO_SKCIPHER
650f1f142adSRobert Elliott	select CRYPTO_MANAGER
651f1f142adSRobert Elliott	help
652cf514b2aSRobert Elliott	  CTR (Counter) mode (NIST SP800-38A)
653f1f142adSRobert Elliott
654f1f142adSRobert Elliottconfig CRYPTO_CTS
655cf514b2aSRobert Elliott	tristate "CTS (Cipher Text Stealing)"
656f1f142adSRobert Elliott	select CRYPTO_SKCIPHER
657f1f142adSRobert Elliott	select CRYPTO_MANAGER
658f1f142adSRobert Elliott	help
659cf514b2aSRobert Elliott	  CBC-CS3 variant of CTS (Cipher Text Stealing) (NIST
660cf514b2aSRobert Elliott	  Addendum to SP800-38A (October 2010))
661cf514b2aSRobert Elliott
662f1f142adSRobert Elliott	  This mode is required for Kerberos gss mechanism support
663f1f142adSRobert Elliott	  for AES encryption.
664f1f142adSRobert Elliott
665f1f142adSRobert Elliottconfig CRYPTO_ECB
666cf514b2aSRobert Elliott	tristate "ECB (Electronic Codebook)"
66784534684SHerbert Xu	select CRYPTO_SKCIPHER2
668f1f142adSRobert Elliott	select CRYPTO_MANAGER
669f1f142adSRobert Elliott	help
670cf514b2aSRobert Elliott	  ECB (Electronic Codebook) mode (NIST SP800-38A)
671f1f142adSRobert Elliott
672f1f142adSRobert Elliottconfig CRYPTO_HCTR2
673cf514b2aSRobert Elliott	tristate "HCTR2"
674f1f142adSRobert Elliott	select CRYPTO_XCTR
675f1f142adSRobert Elliott	select CRYPTO_POLYVAL
676f1f142adSRobert Elliott	select CRYPTO_MANAGER
677f1f142adSRobert Elliott	help
678cf514b2aSRobert Elliott	  HCTR2 length-preserving encryption mode
679cf514b2aSRobert Elliott
680cf514b2aSRobert Elliott	  A mode for storage encryption that is efficient on processors with
681cf514b2aSRobert Elliott	  instructions to accelerate AES and carryless multiplication, e.g.
682cf514b2aSRobert Elliott	  x86 processors with AES-NI and CLMUL, and ARM processors with the
683cf514b2aSRobert Elliott	  ARMv8 crypto extensions.
684cf514b2aSRobert Elliott
685cf514b2aSRobert Elliott	  See https://eprint.iacr.org/2021/1441
686f1f142adSRobert Elliott
687f1f142adSRobert Elliottconfig CRYPTO_LRW
688cf514b2aSRobert Elliott	tristate "LRW (Liskov Rivest Wagner)"
68961c581a4SArd Biesheuvel	select CRYPTO_LIB_GF128MUL
690f1f142adSRobert Elliott	select CRYPTO_SKCIPHER
691f1f142adSRobert Elliott	select CRYPTO_MANAGER
692f1f142adSRobert Elliott	select CRYPTO_ECB
693f1f142adSRobert Elliott	help
694cf514b2aSRobert Elliott	  LRW (Liskov Rivest Wagner) mode
695cf514b2aSRobert Elliott
696cf514b2aSRobert Elliott	  A tweakable, non malleable, non movable
697f1f142adSRobert Elliott	  narrow block cipher mode for dm-crypt.  Use it with cipher
698f1f142adSRobert Elliott	  specification string aes-lrw-benbi, the key must be 256, 320 or 384.
699f1f142adSRobert Elliott	  The first 128, 192 or 256 bits in the key are used for AES and the
700f1f142adSRobert Elliott	  rest is used to tie each cipher block to its logical position.
701f1f142adSRobert Elliott
702cf514b2aSRobert Elliott	  See https://people.csail.mit.edu/rivest/pubs/LRW02.pdf
703cf514b2aSRobert Elliott
704f1f142adSRobert Elliottconfig CRYPTO_PCBC
705cf514b2aSRobert Elliott	tristate "PCBC (Propagating Cipher Block Chaining)"
706f1f142adSRobert Elliott	select CRYPTO_SKCIPHER
707f1f142adSRobert Elliott	select CRYPTO_MANAGER
708f1f142adSRobert Elliott	help
709cf514b2aSRobert Elliott	  PCBC (Propagating Cipher Block Chaining) mode
710cf514b2aSRobert Elliott
711cf514b2aSRobert Elliott	  This block cipher mode is required for RxRPC.
712f1f142adSRobert Elliott
713f1f142adSRobert Elliottconfig CRYPTO_XCTR
714f1f142adSRobert Elliott	tristate
715f1f142adSRobert Elliott	select CRYPTO_SKCIPHER
716f1f142adSRobert Elliott	select CRYPTO_MANAGER
717f1f142adSRobert Elliott	help
718cf514b2aSRobert Elliott	  XCTR (XOR Counter) mode for HCTR2
719cf514b2aSRobert Elliott
720cf514b2aSRobert Elliott	  This blockcipher mode is a variant of CTR mode using XORs and little-endian
721cf514b2aSRobert Elliott	  addition rather than big-endian arithmetic.
722cf514b2aSRobert Elliott
723f1f142adSRobert Elliott	  XCTR mode is used to implement HCTR2.
724f1f142adSRobert Elliott
725f1f142adSRobert Elliottconfig CRYPTO_XTS
726cf514b2aSRobert Elliott	tristate "XTS (XOR Encrypt XOR with ciphertext stealing)"
727f1f142adSRobert Elliott	select CRYPTO_SKCIPHER
728f1f142adSRobert Elliott	select CRYPTO_MANAGER
729f1f142adSRobert Elliott	select CRYPTO_ECB
730f1f142adSRobert Elliott	help
731cf514b2aSRobert Elliott	  XTS (XOR Encrypt XOR with ciphertext stealing) mode (NIST SP800-38E
732cf514b2aSRobert Elliott	  and IEEE 1619)
733cf514b2aSRobert Elliott
734cf514b2aSRobert Elliott	  Use with aes-xts-plain, key size 256, 384 or 512 bits. This
735cf514b2aSRobert Elliott	  implementation currently can't handle a sectorsize which is not a
736cf514b2aSRobert Elliott	  multiple of 16 bytes.
737f1f142adSRobert Elliott
738f1f142adSRobert Elliottconfig CRYPTO_NHPOLY1305
739f1f142adSRobert Elliott	tristate
740f1f142adSRobert Elliott	select CRYPTO_HASH
741f1f142adSRobert Elliott	select CRYPTO_LIB_POLY1305_GENERIC
742f1f142adSRobert Elliott
743f1f142adSRobert Elliottendmenu
744f1f142adSRobert Elliott
745f1f142adSRobert Elliottmenu "AEAD (authenticated encryption with associated data) ciphers"
746f1f142adSRobert Elliott
747f1f142adSRobert Elliottconfig CRYPTO_AEGIS128
748e3d2eaddSRobert Elliott	tristate "AEGIS-128"
749f1f142adSRobert Elliott	select CRYPTO_AEAD
750f1f142adSRobert Elliott	select CRYPTO_AES  # for AES S-box tables
751f1f142adSRobert Elliott	help
752e3d2eaddSRobert Elliott	  AEGIS-128 AEAD algorithm
753f1f142adSRobert Elliott
754f1f142adSRobert Elliottconfig CRYPTO_AEGIS128_SIMD
755e3d2eaddSRobert Elliott	bool "AEGIS-128 (arm NEON, arm64 NEON)"
756f1f142adSRobert Elliott	depends on CRYPTO_AEGIS128 && ((ARM || ARM64) && KERNEL_MODE_NEON)
757f1f142adSRobert Elliott	default y
758e3d2eaddSRobert Elliott	help
759e3d2eaddSRobert Elliott	  AEGIS-128 AEAD algorithm
760e3d2eaddSRobert Elliott
761e3d2eaddSRobert Elliott	  Architecture: arm or arm64 using:
762e3d2eaddSRobert Elliott	  - NEON (Advanced SIMD) extension
763f1f142adSRobert Elliott
764f1f142adSRobert Elliottconfig CRYPTO_CHACHA20POLY1305
765e3d2eaddSRobert Elliott	tristate "ChaCha20-Poly1305"
766f1f142adSRobert Elliott	select CRYPTO_CHACHA20
767f1f142adSRobert Elliott	select CRYPTO_POLY1305
768f1f142adSRobert Elliott	select CRYPTO_AEAD
769f1f142adSRobert Elliott	select CRYPTO_MANAGER
770f1f142adSRobert Elliott	help
771e3d2eaddSRobert Elliott	  ChaCha20 stream cipher and Poly1305 authenticator combined
772e3d2eaddSRobert Elliott	  mode (RFC8439)
773f1f142adSRobert Elliott
774f1f142adSRobert Elliottconfig CRYPTO_CCM
775cf514b2aSRobert Elliott	tristate "CCM (Counter with Cipher Block Chaining-MAC)"
776f1f142adSRobert Elliott	select CRYPTO_CTR
777f1f142adSRobert Elliott	select CRYPTO_HASH
778f1f142adSRobert Elliott	select CRYPTO_AEAD
779f1f142adSRobert Elliott	select CRYPTO_MANAGER
780f1f142adSRobert Elliott	help
781e3d2eaddSRobert Elliott	  CCM (Counter with Cipher Block Chaining-Message Authentication Code)
782e3d2eaddSRobert Elliott	  authenticated encryption mode (NIST SP800-38C)
783f1f142adSRobert Elliott
784f1f142adSRobert Elliottconfig CRYPTO_GCM
785cf514b2aSRobert Elliott	tristate "GCM (Galois/Counter Mode) and GMAC (GCM MAC)"
786f1f142adSRobert Elliott	select CRYPTO_CTR
787f1f142adSRobert Elliott	select CRYPTO_AEAD
788f1f142adSRobert Elliott	select CRYPTO_GHASH
789f1f142adSRobert Elliott	select CRYPTO_NULL
790f1f142adSRobert Elliott	select CRYPTO_MANAGER
791f1f142adSRobert Elliott	help
792e3d2eaddSRobert Elliott	  GCM (Galois/Counter Mode) authenticated encryption mode and GMAC
793e3d2eaddSRobert Elliott	  (GCM Message Authentication Code) (NIST SP800-38D)
794e3d2eaddSRobert Elliott
795e3d2eaddSRobert Elliott	  This is required for IPSec ESP (XFRM_ESP).
796f1f142adSRobert Elliott
797ba51738fSHerbert Xuconfig CRYPTO_GENIV
798ba51738fSHerbert Xu	tristate
799ba51738fSHerbert Xu	select CRYPTO_AEAD
800ba51738fSHerbert Xu	select CRYPTO_NULL
801ba51738fSHerbert Xu	select CRYPTO_MANAGER
802ba51738fSHerbert Xu	select CRYPTO_RNG_DEFAULT
803ba51738fSHerbert Xu
804f1f142adSRobert Elliottconfig CRYPTO_SEQIV
805f1f142adSRobert Elliott	tristate "Sequence Number IV Generator"
806ba51738fSHerbert Xu	select CRYPTO_GENIV
807f1f142adSRobert Elliott	help
808e3d2eaddSRobert Elliott	  Sequence Number IV generator
809e3d2eaddSRobert Elliott
810f1f142adSRobert Elliott	  This IV generator generates an IV based on a sequence number by
811e3d2eaddSRobert Elliott	  xoring it with a salt.  This algorithm is mainly useful for CTR.
812e3d2eaddSRobert Elliott
813e3d2eaddSRobert Elliott	  This is required for IPsec ESP (XFRM_ESP).
814f1f142adSRobert Elliott
815f1f142adSRobert Elliottconfig CRYPTO_ECHAINIV
816f1f142adSRobert Elliott	tristate "Encrypted Chain IV Generator"
817ba51738fSHerbert Xu	select CRYPTO_GENIV
818f1f142adSRobert Elliott	help
819e3d2eaddSRobert Elliott	  Encrypted Chain IV generator
820e3d2eaddSRobert Elliott
821f1f142adSRobert Elliott	  This IV generator generates an IV based on the encryption of
822f1f142adSRobert Elliott	  a sequence number xored with a salt.  This is the default
823f1f142adSRobert Elliott	  algorithm for CBC.
824f1f142adSRobert Elliott
825f1f142adSRobert Elliottconfig CRYPTO_ESSIV
826e3d2eaddSRobert Elliott	tristate "Encrypted Salt-Sector IV Generator"
827f1f142adSRobert Elliott	select CRYPTO_AUTHENC
828f1f142adSRobert Elliott	help
829e3d2eaddSRobert Elliott	  Encrypted Salt-Sector IV generator
830e3d2eaddSRobert Elliott
831e3d2eaddSRobert Elliott	  This IV generator is used in some cases by fscrypt and/or
832f1f142adSRobert Elliott	  dm-crypt. It uses the hash of the block encryption key as the
833f1f142adSRobert Elliott	  symmetric key for a block encryption pass applied to the input
834f1f142adSRobert Elliott	  IV, making low entropy IV sources more suitable for block
835f1f142adSRobert Elliott	  encryption.
836f1f142adSRobert Elliott
837f1f142adSRobert Elliott	  This driver implements a crypto API template that can be
838f1f142adSRobert Elliott	  instantiated either as an skcipher or as an AEAD (depending on the
839f1f142adSRobert Elliott	  type of the first template argument), and which defers encryption
840f1f142adSRobert Elliott	  and decryption requests to the encapsulated cipher after applying
841f1f142adSRobert Elliott	  ESSIV to the input IV. Note that in the AEAD case, it is assumed
842f1f142adSRobert Elliott	  that the keys are presented in the same format used by the authenc
843f1f142adSRobert Elliott	  template, and that the IV appears at the end of the authenticated
844f1f142adSRobert Elliott	  associated data (AAD) region (which is how dm-crypt uses it.)
845f1f142adSRobert Elliott
846f1f142adSRobert Elliott	  Note that the use of ESSIV is not recommended for new deployments,
847f1f142adSRobert Elliott	  and so this only needs to be enabled when interoperability with
848f1f142adSRobert Elliott	  existing encrypted volumes of filesystems is required, or when
849f1f142adSRobert Elliott	  building for a particular system that requires it (e.g., when
850f1f142adSRobert Elliott	  the SoC in question has accelerated CBC but not XTS, making CBC
851f1f142adSRobert Elliott	  combined with ESSIV the only feasible mode for h/w accelerated
852f1f142adSRobert Elliott	  block encryption)
853f1f142adSRobert Elliott
854f1f142adSRobert Elliottendmenu
855f1f142adSRobert Elliott
856f1f142adSRobert Elliottmenu "Hashes, digests, and MACs"
857f1f142adSRobert Elliott
858f1f142adSRobert Elliottconfig CRYPTO_BLAKE2B
8593f342a23SRobert Elliott	tristate "BLAKE2b"
860f1f142adSRobert Elliott	select CRYPTO_HASH
861f1f142adSRobert Elliott	help
8623f342a23SRobert Elliott	  BLAKE2b cryptographic hash function (RFC 7693)
8633f342a23SRobert Elliott
8643f342a23SRobert Elliott	  BLAKE2b is optimized for 64-bit platforms and can produce digests
8653f342a23SRobert Elliott	  of any size between 1 and 64 bytes. The keyed hash is also implemented.
866f1f142adSRobert Elliott
867f1f142adSRobert Elliott	  This module provides the following algorithms:
868f1f142adSRobert Elliott	  - blake2b-160
869f1f142adSRobert Elliott	  - blake2b-256
870f1f142adSRobert Elliott	  - blake2b-384
871f1f142adSRobert Elliott	  - blake2b-512
872f1f142adSRobert Elliott
8733f342a23SRobert Elliott	  Used by the btrfs filesystem.
8743f342a23SRobert Elliott
8753f342a23SRobert Elliott	  See https://blake2.net for further information.
8763f342a23SRobert Elliott
877f1f142adSRobert Elliottconfig CRYPTO_CMAC
8783f342a23SRobert Elliott	tristate "CMAC (Cipher-based MAC)"
879f1f142adSRobert Elliott	select CRYPTO_HASH
880f1f142adSRobert Elliott	select CRYPTO_MANAGER
881f1f142adSRobert Elliott	help
8823f342a23SRobert Elliott	  CMAC (Cipher-based Message Authentication Code) authentication
8833f342a23SRobert Elliott	  mode (NIST SP800-38B and IETF RFC4493)
884f1f142adSRobert Elliott
885f1f142adSRobert Elliottconfig CRYPTO_GHASH
8863f342a23SRobert Elliott	tristate "GHASH"
887f1f142adSRobert Elliott	select CRYPTO_HASH
88861c581a4SArd Biesheuvel	select CRYPTO_LIB_GF128MUL
889f1f142adSRobert Elliott	help
8903f342a23SRobert Elliott	  GCM GHASH function (NIST SP800-38D)
891f1f142adSRobert Elliott
892f1f142adSRobert Elliottconfig CRYPTO_HMAC
8933f342a23SRobert Elliott	tristate "HMAC (Keyed-Hash MAC)"
894f1f142adSRobert Elliott	select CRYPTO_HASH
895f1f142adSRobert Elliott	select CRYPTO_MANAGER
896f1f142adSRobert Elliott	help
8973f342a23SRobert Elliott	  HMAC (Keyed-Hash Message Authentication Code) (FIPS 198 and
8983f342a23SRobert Elliott	  RFC2104)
8993f342a23SRobert Elliott
9003f342a23SRobert Elliott	  This is required for IPsec AH (XFRM_AH) and IPsec ESP (XFRM_ESP).
901f1f142adSRobert Elliott
902f1f142adSRobert Elliottconfig CRYPTO_MD4
9033f342a23SRobert Elliott	tristate "MD4"
904f1f142adSRobert Elliott	select CRYPTO_HASH
905f1f142adSRobert Elliott	help
9063f342a23SRobert Elliott	  MD4 message digest algorithm (RFC1320)
907f1f142adSRobert Elliott
908f1f142adSRobert Elliottconfig CRYPTO_MD5
9093f342a23SRobert Elliott	tristate "MD5"
910f1f142adSRobert Elliott	select CRYPTO_HASH
911f1f142adSRobert Elliott	help
9123f342a23SRobert Elliott	  MD5 message digest algorithm (RFC1321)
913f1f142adSRobert Elliott
914f1f142adSRobert Elliottconfig CRYPTO_MICHAEL_MIC
9153f342a23SRobert Elliott	tristate "Michael MIC"
916f1f142adSRobert Elliott	select CRYPTO_HASH
917f1f142adSRobert Elliott	help
9183f342a23SRobert Elliott	  Michael MIC (Message Integrity Code) (IEEE 802.11i)
9193f342a23SRobert Elliott
9203f342a23SRobert Elliott	  Defined by the IEEE 802.11i TKIP (Temporal Key Integrity Protocol),
9213f342a23SRobert Elliott	  known as WPA (Wif-Fi Protected Access).
9223f342a23SRobert Elliott
9233f342a23SRobert Elliott	  This algorithm is required for TKIP, but it should not be used for
9243f342a23SRobert Elliott	  other purposes because of the weakness of the algorithm.
925f1f142adSRobert Elliott
926f1f142adSRobert Elliottconfig CRYPTO_POLYVAL
927f1f142adSRobert Elliott	tristate
928f1f142adSRobert Elliott	select CRYPTO_HASH
92961c581a4SArd Biesheuvel	select CRYPTO_LIB_GF128MUL
930f1f142adSRobert Elliott	help
9313f342a23SRobert Elliott	  POLYVAL hash function for HCTR2
9323f342a23SRobert Elliott
9333f342a23SRobert Elliott	  This is used in HCTR2.  It is not a general-purpose
934f1f142adSRobert Elliott	  cryptographic hash function.
935f1f142adSRobert Elliott
936f1f142adSRobert Elliottconfig CRYPTO_POLY1305
9373f342a23SRobert Elliott	tristate "Poly1305"
938f1f142adSRobert Elliott	select CRYPTO_HASH
939*17ec3e71SHerbert Xu	select CRYPTO_LIB_POLY1305_INTERNAL
940f1f142adSRobert Elliott	help
9413f342a23SRobert Elliott	  Poly1305 authenticator algorithm (RFC7539)
942f1f142adSRobert Elliott
943f1f142adSRobert Elliott	  Poly1305 is an authenticator algorithm designed by Daniel J. Bernstein.
944f1f142adSRobert Elliott	  It is used for the ChaCha20-Poly1305 AEAD, specified in RFC7539 for use
945f1f142adSRobert Elliott	  in IETF protocols. This is the portable C implementation of Poly1305.
946f1f142adSRobert Elliott
947f1f142adSRobert Elliottconfig CRYPTO_RMD160
9483f342a23SRobert Elliott	tristate "RIPEMD-160"
949f1f142adSRobert Elliott	select CRYPTO_HASH
950f1f142adSRobert Elliott	help
9513f342a23SRobert Elliott	  RIPEMD-160 hash function (ISO/IEC 10118-3)
952f1f142adSRobert Elliott
953f1f142adSRobert Elliott	  RIPEMD-160 is a 160-bit cryptographic hash function. It is intended
954f1f142adSRobert Elliott	  to be used as a secure replacement for the 128-bit hash functions
955f1f142adSRobert Elliott	  MD4, MD5 and its predecessor RIPEMD
956f1f142adSRobert Elliott	  (not to be confused with RIPEMD-128).
957f1f142adSRobert Elliott
9583f342a23SRobert Elliott	  Its speed is comparable to SHA-1 and there are no known attacks
959f1f142adSRobert Elliott	  against RIPEMD-160.
960f1f142adSRobert Elliott
961f1f142adSRobert Elliott	  Developed by Hans Dobbertin, Antoon Bosselaers and Bart Preneel.
9623f342a23SRobert Elliott	  See https://homes.esat.kuleuven.be/~bosselae/ripemd160.html
9633f342a23SRobert Elliott	  for further information.
964f1f142adSRobert Elliott
965f1f142adSRobert Elliottconfig CRYPTO_SHA1
9663f342a23SRobert Elliott	tristate "SHA-1"
967f1f142adSRobert Elliott	select CRYPTO_HASH
968f1f142adSRobert Elliott	select CRYPTO_LIB_SHA1
969f1f142adSRobert Elliott	help
9703f342a23SRobert Elliott	  SHA-1 secure hash algorithm (FIPS 180, ISO/IEC 10118-3)
971f1f142adSRobert Elliott
972f1f142adSRobert Elliottconfig CRYPTO_SHA256
9733f342a23SRobert Elliott	tristate "SHA-224 and SHA-256"
974f1f142adSRobert Elliott	select CRYPTO_HASH
975f1f142adSRobert Elliott	select CRYPTO_LIB_SHA256
976f1f142adSRobert Elliott	help
9773f342a23SRobert Elliott	  SHA-224 and SHA-256 secure hash algorithms (FIPS 180, ISO/IEC 10118-3)
978f1f142adSRobert Elliott
9793f342a23SRobert Elliott	  This is required for IPsec AH (XFRM_AH) and IPsec ESP (XFRM_ESP).
9803f342a23SRobert Elliott	  Used by the btrfs filesystem, Ceph, NFS, and SMB.
981f1f142adSRobert Elliott
982f1f142adSRobert Elliottconfig CRYPTO_SHA512
9833f342a23SRobert Elliott	tristate "SHA-384 and SHA-512"
984f1f142adSRobert Elliott	select CRYPTO_HASH
985f1f142adSRobert Elliott	help
9863f342a23SRobert Elliott	  SHA-384 and SHA-512 secure hash algorithms (FIPS 180, ISO/IEC 10118-3)
987f1f142adSRobert Elliott
988f1f142adSRobert Elliottconfig CRYPTO_SHA3
9893f342a23SRobert Elliott	tristate "SHA-3"
990f1f142adSRobert Elliott	select CRYPTO_HASH
991f1f142adSRobert Elliott	help
9923f342a23SRobert Elliott	  SHA-3 secure hash algorithms (FIPS 202, ISO/IEC 10118-3)
993f1f142adSRobert Elliott
994f1f142adSRobert Elliottconfig CRYPTO_SM3
995f1f142adSRobert Elliott	tristate
996f1f142adSRobert Elliott
997f1f142adSRobert Elliottconfig CRYPTO_SM3_GENERIC
9983f342a23SRobert Elliott	tristate "SM3 (ShangMi 3)"
999f1f142adSRobert Elliott	select CRYPTO_HASH
1000f1f142adSRobert Elliott	select CRYPTO_SM3
1001f1f142adSRobert Elliott	help
10023f342a23SRobert Elliott	  SM3 (ShangMi 3) secure hash function (OSCCA GM/T 0004-2012, ISO/IEC 10118-3)
10033f342a23SRobert Elliott
10043f342a23SRobert Elliott	  This is part of the Chinese Commercial Cryptography suite.
1005f1f142adSRobert Elliott
1006f1f142adSRobert Elliott	  References:
1007f1f142adSRobert Elliott	  http://www.oscca.gov.cn/UpFile/20101222141857786.pdf
1008f1f142adSRobert Elliott	  https://datatracker.ietf.org/doc/html/draft-shen-sm3-hash
1009f1f142adSRobert Elliott
1010f1f142adSRobert Elliottconfig CRYPTO_STREEBOG
10113f342a23SRobert Elliott	tristate "Streebog"
1012f1f142adSRobert Elliott	select CRYPTO_HASH
1013f1f142adSRobert Elliott	help
10143f342a23SRobert Elliott	  Streebog Hash Function (GOST R 34.11-2012, RFC 6986, ISO/IEC 10118-3)
10153f342a23SRobert Elliott
10163f342a23SRobert Elliott	  This is one of the Russian cryptographic standard algorithms (called
10173f342a23SRobert Elliott	  GOST algorithms). This setting enables two hash algorithms with
10183f342a23SRobert Elliott	  256 and 512 bits output.
1019f1f142adSRobert Elliott
1020f1f142adSRobert Elliott	  References:
1021f1f142adSRobert Elliott	  https://tc26.ru/upload/iblock/fed/feddbb4d26b685903faa2ba11aea43f6.pdf
1022f1f142adSRobert Elliott	  https://tools.ietf.org/html/rfc6986
1023f1f142adSRobert Elliott
1024f1f142adSRobert Elliottconfig CRYPTO_WP512
10253f342a23SRobert Elliott	tristate "Whirlpool"
1026f1f142adSRobert Elliott	select CRYPTO_HASH
1027f1f142adSRobert Elliott	help
10283f342a23SRobert Elliott	  Whirlpool hash function (ISO/IEC 10118-3)
10293f342a23SRobert Elliott
10303f342a23SRobert Elliott	  512, 384 and 256-bit hashes.
1031f1f142adSRobert Elliott
1032f1f142adSRobert Elliott	  Whirlpool-512 is part of the NESSIE cryptographic primitives.
1033f1f142adSRobert Elliott
10343f342a23SRobert Elliott	  See https://web.archive.org/web/20171129084214/http://www.larc.usp.br/~pbarreto/WhirlpoolPage.html
10353f342a23SRobert Elliott	  for further information.
1036f1f142adSRobert Elliott
1037f1f142adSRobert Elliottconfig CRYPTO_XCBC
10383f342a23SRobert Elliott	tristate "XCBC-MAC (Extended Cipher Block Chaining MAC)"
1039f1f142adSRobert Elliott	select CRYPTO_HASH
1040f1f142adSRobert Elliott	select CRYPTO_MANAGER
1041f1f142adSRobert Elliott	help
10423f342a23SRobert Elliott	  XCBC-MAC (Extended Cipher Block Chaining Message Authentication
10433f342a23SRobert Elliott	  Code) (RFC3566)
1044f1f142adSRobert Elliott
1045f1f142adSRobert Elliottconfig CRYPTO_XXHASH
10463f342a23SRobert Elliott	tristate "xxHash"
1047f1f142adSRobert Elliott	select CRYPTO_HASH
1048f1f142adSRobert Elliott	select XXHASH
1049f1f142adSRobert Elliott	help
10503f342a23SRobert Elliott	  xxHash non-cryptographic hash algorithm
10513f342a23SRobert Elliott
10523f342a23SRobert Elliott	  Extremely fast, working at speeds close to RAM limits.
10533f342a23SRobert Elliott
10543f342a23SRobert Elliott	  Used by the btrfs filesystem.
1055f1f142adSRobert Elliott
1056f1f142adSRobert Elliottendmenu
1057f1f142adSRobert Elliott
1058f1f142adSRobert Elliottmenu "CRCs (cyclic redundancy checks)"
1059f1f142adSRobert Elliott
1060f1f142adSRobert Elliottconfig CRYPTO_CRC32C
1061ec84348dSRobert Elliott	tristate "CRC32c"
1062f1f142adSRobert Elliott	select CRYPTO_HASH
1063f1f142adSRobert Elliott	select CRC32
1064f1f142adSRobert Elliott	help
1065ec84348dSRobert Elliott	  CRC32c CRC algorithm with the iSCSI polynomial (RFC 3385 and RFC 3720)
1066ec84348dSRobert Elliott
1067ec84348dSRobert Elliott	  A 32-bit CRC (cyclic redundancy check) with a polynomial defined
1068ec84348dSRobert Elliott	  by G. Castagnoli, S. Braeuer and M. Herrman in "Optimization of Cyclic
1069ec84348dSRobert Elliott	  Redundancy-Check Codes with 24 and 32 Parity Bits", IEEE Transactions
1070ec84348dSRobert Elliott	  on Communications, Vol. 41, No. 6, June 1993, selected for use with
1071ec84348dSRobert Elliott	  iSCSI.
1072ec84348dSRobert Elliott
1073ec84348dSRobert Elliott	  Used by btrfs, ext4, jbd2, NVMeoF/TCP, and iSCSI.
1074f1f142adSRobert Elliott
1075f1f142adSRobert Elliottconfig CRYPTO_CRC32
1076ec84348dSRobert Elliott	tristate "CRC32"
1077f1f142adSRobert Elliott	select CRYPTO_HASH
1078f1f142adSRobert Elliott	select CRC32
1079f1f142adSRobert Elliott	help
1080ec84348dSRobert Elliott	  CRC32 CRC algorithm (IEEE 802.3)
1081ec84348dSRobert Elliott
1082ec84348dSRobert Elliott	  Used by RoCEv2 and f2fs.
1083f1f142adSRobert Elliott
1084f1f142adSRobert Elliottconfig CRYPTO_CRCT10DIF
1085ec84348dSRobert Elliott	tristate "CRCT10DIF"
1086f1f142adSRobert Elliott	select CRYPTO_HASH
1087be3c45b0SEric Biggers	select CRC_T10DIF
1088f1f142adSRobert Elliott	help
1089ec84348dSRobert Elliott	  CRC16 CRC algorithm used for the T10 (SCSI) Data Integrity Field (DIF)
1090ec84348dSRobert Elliott
1091ec84348dSRobert Elliott	  CRC algorithm used by the SCSI Block Commands standard.
1092f1f142adSRobert Elliott
1093f1f142adSRobert Elliottconfig CRYPTO_CRC64_ROCKSOFT
1094ec84348dSRobert Elliott	tristate "CRC64 based on Rocksoft Model algorithm"
1095f1f142adSRobert Elliott	depends on CRC64
1096f1f142adSRobert Elliott	select CRYPTO_HASH
1097ec84348dSRobert Elliott	help
1098ec84348dSRobert Elliott	  CRC64 CRC algorithm based on the Rocksoft Model CRC Algorithm
1099ec84348dSRobert Elliott
1100ec84348dSRobert Elliott	  Used by the NVMe implementation of T10 DIF (BLK_DEV_INTEGRITY)
1101ec84348dSRobert Elliott
1102ec84348dSRobert Elliott	  See https://zlib.net/crc_v3.txt
1103f1f142adSRobert Elliott
1104f1f142adSRobert Elliottendmenu
1105f1f142adSRobert Elliott
1106f1f142adSRobert Elliottmenu "Compression"
1107584fffc8SSebastian Siewior
11081da177e4SLinus Torvaldsconfig CRYPTO_DEFLATE
1109a9a98d49SRobert Elliott	tristate "Deflate"
1110cce9e06dSHerbert Xu	select CRYPTO_ALGAPI
1111f6ded09dSGiovanni Cabiddu	select CRYPTO_ACOMP2
11121da177e4SLinus Torvalds	select ZLIB_INFLATE
11131da177e4SLinus Torvalds	select ZLIB_DEFLATE
11141da177e4SLinus Torvalds	help
1115a9a98d49SRobert Elliott	  Deflate compression algorithm (RFC1951)
11161da177e4SLinus Torvalds
1117a9a98d49SRobert Elliott	  Used by IPSec with the IPCOMP protocol (RFC3173, RFC2394)
11181da177e4SLinus Torvalds
11190b77abb3SZoltan Sogorconfig CRYPTO_LZO
1120a9a98d49SRobert Elliott	tristate "LZO"
11210b77abb3SZoltan Sogor	select CRYPTO_ALGAPI
1122ac9d2c4bSGiovanni Cabiddu	select CRYPTO_ACOMP2
11230b77abb3SZoltan Sogor	select LZO_COMPRESS
11240b77abb3SZoltan Sogor	select LZO_DECOMPRESS
11250b77abb3SZoltan Sogor	help
1126a9a98d49SRobert Elliott	  LZO compression algorithm
1127a9a98d49SRobert Elliott
1128a9a98d49SRobert Elliott	  See https://www.oberhumer.com/opensource/lzo/ for further information.
11290b77abb3SZoltan Sogor
113035a1fc18SSeth Jenningsconfig CRYPTO_842
1131a9a98d49SRobert Elliott	tristate "842"
11322062c5b6SDan Streetman	select CRYPTO_ALGAPI
11336a8de3aeSGiovanni Cabiddu	select CRYPTO_ACOMP2
11342062c5b6SDan Streetman	select 842_COMPRESS
11352062c5b6SDan Streetman	select 842_DECOMPRESS
113635a1fc18SSeth Jennings	help
1137a9a98d49SRobert Elliott	  842 compression algorithm by IBM
1138a9a98d49SRobert Elliott
1139a9a98d49SRobert Elliott	  See https://github.com/plauth/lib842 for further information.
114035a1fc18SSeth Jennings
11410ea8530dSChanho Minconfig CRYPTO_LZ4
1142a9a98d49SRobert Elliott	tristate "LZ4"
11430ea8530dSChanho Min	select CRYPTO_ALGAPI
11448cd9330eSGiovanni Cabiddu	select CRYPTO_ACOMP2
11450ea8530dSChanho Min	select LZ4_COMPRESS
11460ea8530dSChanho Min	select LZ4_DECOMPRESS
11470ea8530dSChanho Min	help
1148a9a98d49SRobert Elliott	  LZ4 compression algorithm
1149a9a98d49SRobert Elliott
1150a9a98d49SRobert Elliott	  See https://github.com/lz4/lz4 for further information.
11510ea8530dSChanho Min
11520ea8530dSChanho Minconfig CRYPTO_LZ4HC
1153a9a98d49SRobert Elliott	tristate "LZ4HC"
11540ea8530dSChanho Min	select CRYPTO_ALGAPI
115591d53d96SGiovanni Cabiddu	select CRYPTO_ACOMP2
11560ea8530dSChanho Min	select LZ4HC_COMPRESS
11570ea8530dSChanho Min	select LZ4_DECOMPRESS
11580ea8530dSChanho Min	help
1159a9a98d49SRobert Elliott	  LZ4 high compression mode algorithm
1160a9a98d49SRobert Elliott
1161a9a98d49SRobert Elliott	  See https://github.com/lz4/lz4 for further information.
11620ea8530dSChanho Min
1163d28fc3dbSNick Terrellconfig CRYPTO_ZSTD
1164a9a98d49SRobert Elliott	tristate "Zstd"
1165d28fc3dbSNick Terrell	select CRYPTO_ALGAPI
1166d28fc3dbSNick Terrell	select CRYPTO_ACOMP2
1167d28fc3dbSNick Terrell	select ZSTD_COMPRESS
1168d28fc3dbSNick Terrell	select ZSTD_DECOMPRESS
1169d28fc3dbSNick Terrell	help
1170a9a98d49SRobert Elliott	  zstd compression algorithm
1171a9a98d49SRobert Elliott
1172a9a98d49SRobert Elliott	  See https://github.com/facebook/zstd for further information.
1173d28fc3dbSNick Terrell
1174f1f142adSRobert Elliottendmenu
1175f1f142adSRobert Elliott
1176f1f142adSRobert Elliottmenu "Random number generation"
117717f0f4a4SNeil Horman
117817f0f4a4SNeil Hormanconfig CRYPTO_ANSI_CPRNG
1179a9a98d49SRobert Elliott	tristate "ANSI PRNG (Pseudo Random Number Generator)"
118017f0f4a4SNeil Horman	select CRYPTO_AES
118117f0f4a4SNeil Horman	select CRYPTO_RNG
118217f0f4a4SNeil Horman	help
1183a9a98d49SRobert Elliott	  Pseudo RNG (random number generator) (ANSI X9.31 Appendix A.2.4)
1184a9a98d49SRobert Elliott
1185a9a98d49SRobert Elliott	  This uses the AES cipher algorithm.
1186a9a98d49SRobert Elliott
1187a9a98d49SRobert Elliott	  Note that this option must be enabled if CRYPTO_FIPS is selected
118817f0f4a4SNeil Horman
1189f2c89a10SHerbert Xumenuconfig CRYPTO_DRBG_MENU
1190a9a98d49SRobert Elliott	tristate "NIST SP800-90A DRBG (Deterministic Random Bit Generator)"
1191419090c6SStephan Mueller	help
1192a9a98d49SRobert Elliott	  DRBG (Deterministic Random Bit Generator) (NIST SP800-90A)
1193a9a98d49SRobert Elliott
1194a9a98d49SRobert Elliott	  In the following submenu, one or more of the DRBG types must be selected.
1195419090c6SStephan Mueller
1196f2c89a10SHerbert Xuif CRYPTO_DRBG_MENU
1197419090c6SStephan Mueller
1198419090c6SStephan Muellerconfig CRYPTO_DRBG_HMAC
1199401e4238SHerbert Xu	bool
1200419090c6SStephan Mueller	default y
1201419090c6SStephan Mueller	select CRYPTO_HMAC
12025261cdf4SStephan Mueller	select CRYPTO_SHA512
1203419090c6SStephan Mueller
1204419090c6SStephan Muellerconfig CRYPTO_DRBG_HASH
1205a9a98d49SRobert Elliott	bool "Hash_DRBG"
1206826775bbSHerbert Xu	select CRYPTO_SHA256
1207419090c6SStephan Mueller	help
1208a9a98d49SRobert Elliott	  Hash_DRBG variant as defined in NIST SP800-90A.
1209a9a98d49SRobert Elliott
1210a9a98d49SRobert Elliott	  This uses the SHA-1, SHA-256, SHA-384, or SHA-512 hash algorithms.
1211419090c6SStephan Mueller
1212419090c6SStephan Muellerconfig CRYPTO_DRBG_CTR
1213a9a98d49SRobert Elliott	bool "CTR_DRBG"
1214419090c6SStephan Mueller	select CRYPTO_AES
1215d6fc1a45SCorentin Labbe	select CRYPTO_CTR
1216419090c6SStephan Mueller	help
1217a9a98d49SRobert Elliott	  CTR_DRBG variant as defined in NIST SP800-90A.
1218a9a98d49SRobert Elliott
1219a9a98d49SRobert Elliott	  This uses the AES cipher algorithm with the counter block mode.
1220419090c6SStephan Mueller
1221f2c89a10SHerbert Xuconfig CRYPTO_DRBG
1222f2c89a10SHerbert Xu	tristate
1223401e4238SHerbert Xu	default CRYPTO_DRBG_MENU
1224f2c89a10SHerbert Xu	select CRYPTO_RNG
1225bb5530e4SStephan Mueller	select CRYPTO_JITTERENTROPY
1226f2c89a10SHerbert Xu
1227f2c89a10SHerbert Xuendif	# if CRYPTO_DRBG_MENU
1228419090c6SStephan Mueller
1229bb5530e4SStephan Muellerconfig CRYPTO_JITTERENTROPY
1230a9a98d49SRobert Elliott	tristate "CPU Jitter Non-Deterministic RNG (Random Number Generator)"
12312f313e02SArnd Bergmann	select CRYPTO_RNG
1232bb897c55SStephan Müller	select CRYPTO_SHA3
1233bb5530e4SStephan Mueller	help
1234a9a98d49SRobert Elliott	  CPU Jitter RNG (Random Number Generator) from the Jitterentropy library
1235a9a98d49SRobert Elliott
1236a9a98d49SRobert Elliott	  A non-physical non-deterministic ("true") RNG (e.g., an entropy source
1237a9a98d49SRobert Elliott	  compliant with NIST SP800-90B) intended to provide a seed to a
1238e63df1ecSRandy Dunlap	  deterministic RNG (e.g., per NIST SP800-90C).
1239a9a98d49SRobert Elliott	  This RNG does not perform any cryptographic whitening of the generated
1240e63df1ecSRandy Dunlap	  random numbers.
1241a9a98d49SRobert Elliott
1242e63df1ecSRandy Dunlap	  See https://www.chronox.de/jent/
1243bb5530e4SStephan Mueller
1244e7ed6473SHerbert Xuif CRYPTO_JITTERENTROPY
1245e7ed6473SHerbert Xuif CRYPTO_FIPS && EXPERT
1246e7ed6473SHerbert Xu
124759bcfd78SStephan Müllerchoice
124859bcfd78SStephan Müller	prompt "CPU Jitter RNG Memory Size"
124959bcfd78SStephan Müller	default CRYPTO_JITTERENTROPY_MEMSIZE_2
125059bcfd78SStephan Müller	help
125159bcfd78SStephan Müller	  The Jitter RNG measures the execution time of memory accesses.
125259bcfd78SStephan Müller	  Multiple consecutive memory accesses are performed. If the memory
125359bcfd78SStephan Müller	  size fits into a cache (e.g. L1), only the memory access timing
125459bcfd78SStephan Müller	  to that cache is measured. The closer the cache is to the CPU
125559bcfd78SStephan Müller	  the less variations are measured and thus the less entropy is
125659bcfd78SStephan Müller	  obtained. Thus, if the memory size fits into the L1 cache, the
125759bcfd78SStephan Müller	  obtained entropy is less than if the memory size fits within
125859bcfd78SStephan Müller	  L1 + L2, which in turn is less if the memory fits into
125959bcfd78SStephan Müller	  L1 + L2 + L3. Thus, by selecting a different memory size,
126059bcfd78SStephan Müller	  the entropy rate produced by the Jitter RNG can be modified.
126159bcfd78SStephan Müller
126259bcfd78SStephan Müller	config CRYPTO_JITTERENTROPY_MEMSIZE_2
126359bcfd78SStephan Müller		bool "2048 Bytes (default)"
126459bcfd78SStephan Müller
126559bcfd78SStephan Müller	config CRYPTO_JITTERENTROPY_MEMSIZE_128
126659bcfd78SStephan Müller		bool "128 kBytes"
126759bcfd78SStephan Müller
126859bcfd78SStephan Müller	config CRYPTO_JITTERENTROPY_MEMSIZE_1024
126959bcfd78SStephan Müller		bool "1024 kBytes"
127059bcfd78SStephan Müller
127159bcfd78SStephan Müller	config CRYPTO_JITTERENTROPY_MEMSIZE_8192
127259bcfd78SStephan Müller		bool "8192 kBytes"
127359bcfd78SStephan Müllerendchoice
127459bcfd78SStephan Müller
127559bcfd78SStephan Müllerconfig CRYPTO_JITTERENTROPY_MEMORY_BLOCKS
127659bcfd78SStephan Müller	int
127759bcfd78SStephan Müller	default 64 if CRYPTO_JITTERENTROPY_MEMSIZE_2
127859bcfd78SStephan Müller	default 512 if CRYPTO_JITTERENTROPY_MEMSIZE_128
127959bcfd78SStephan Müller	default 1024 if CRYPTO_JITTERENTROPY_MEMSIZE_1024
128059bcfd78SStephan Müller	default 4096 if CRYPTO_JITTERENTROPY_MEMSIZE_8192
128159bcfd78SStephan Müller
128259bcfd78SStephan Müllerconfig CRYPTO_JITTERENTROPY_MEMORY_BLOCKSIZE
128359bcfd78SStephan Müller	int
128459bcfd78SStephan Müller	default 32 if CRYPTO_JITTERENTROPY_MEMSIZE_2
128559bcfd78SStephan Müller	default 256 if CRYPTO_JITTERENTROPY_MEMSIZE_128
128659bcfd78SStephan Müller	default 1024 if CRYPTO_JITTERENTROPY_MEMSIZE_1024
128759bcfd78SStephan Müller	default 2048 if CRYPTO_JITTERENTROPY_MEMSIZE_8192
128859bcfd78SStephan Müller
12890baa8fabSStephan Müllerconfig CRYPTO_JITTERENTROPY_OSR
12900baa8fabSStephan Müller	int "CPU Jitter RNG Oversampling Rate"
12910baa8fabSStephan Müller	range 1 15
129295a798d2SStephan Mueller	default 3
12930baa8fabSStephan Müller	help
12940baa8fabSStephan Müller	  The Jitter RNG allows the specification of an oversampling rate (OSR).
12950baa8fabSStephan Müller	  The Jitter RNG operation requires a fixed amount of timing
12960baa8fabSStephan Müller	  measurements to produce one output block of random numbers. The
12970baa8fabSStephan Müller	  OSR value is multiplied with the amount of timing measurements to
12980baa8fabSStephan Müller	  generate one output block. Thus, the timing measurement is oversampled
12990baa8fabSStephan Müller	  by the OSR factor. The oversampling allows the Jitter RNG to operate
13000baa8fabSStephan Müller	  on hardware whose timers deliver limited amount of entropy (e.g.
13010baa8fabSStephan Müller	  the timer is coarse) by setting the OSR to a higher value. The
13020baa8fabSStephan Müller	  trade-off, however, is that the Jitter RNG now requires more time
13030baa8fabSStephan Müller	  to generate random numbers.
13040baa8fabSStephan Müller
130569f1c387SStephan Müllerconfig CRYPTO_JITTERENTROPY_TESTINTERFACE
130669f1c387SStephan Müller	bool "CPU Jitter RNG Test Interface"
130769f1c387SStephan Müller	help
130869f1c387SStephan Müller	  The test interface allows a privileged process to capture
130969f1c387SStephan Müller	  the raw unconditioned high resolution time stamp noise that
131069f1c387SStephan Müller	  is collected by the Jitter RNG for statistical analysis. As
131169f1c387SStephan Müller	  this data is used at the same time to generate random bits,
131269f1c387SStephan Müller	  the Jitter RNG operates in an insecure mode as long as the
131369f1c387SStephan Müller	  recording is enabled. This interface therefore is only
131469f1c387SStephan Müller	  intended for testing purposes and is not suitable for
131569f1c387SStephan Müller	  production systems.
131669f1c387SStephan Müller
131769f1c387SStephan Müller	  The raw noise data can be obtained using the jent_raw_hires
131869f1c387SStephan Müller	  debugfs file. Using the option
131969f1c387SStephan Müller	  jitterentropy_testing.boot_raw_hires_test=1 the raw noise of
132069f1c387SStephan Müller	  the first 1000 entropy events since boot can be sampled.
132169f1c387SStephan Müller
132269f1c387SStephan Müller	  If unsure, select N.
132369f1c387SStephan Müller
1324e7ed6473SHerbert Xuendif	# if CRYPTO_FIPS && EXPERT
1325e7ed6473SHerbert Xu
1326e7ed6473SHerbert Xuif !(CRYPTO_FIPS && EXPERT)
1327e7ed6473SHerbert Xu
1328e7ed6473SHerbert Xuconfig CRYPTO_JITTERENTROPY_MEMORY_BLOCKS
1329e7ed6473SHerbert Xu	int
1330e7ed6473SHerbert Xu	default 64
1331e7ed6473SHerbert Xu
1332e7ed6473SHerbert Xuconfig CRYPTO_JITTERENTROPY_MEMORY_BLOCKSIZE
1333e7ed6473SHerbert Xu	int
1334e7ed6473SHerbert Xu	default 32
1335e7ed6473SHerbert Xu
1336e7ed6473SHerbert Xuconfig CRYPTO_JITTERENTROPY_OSR
1337e7ed6473SHerbert Xu	int
1338e7ed6473SHerbert Xu	default 1
1339e7ed6473SHerbert Xu
1340e7ed6473SHerbert Xuconfig CRYPTO_JITTERENTROPY_TESTINTERFACE
1341e7ed6473SHerbert Xu	bool
1342e7ed6473SHerbert Xu
1343e7ed6473SHerbert Xuendif	# if !(CRYPTO_FIPS && EXPERT)
1344e7ed6473SHerbert Xuendif	# if CRYPTO_JITTERENTROPY
1345e7ed6473SHerbert Xu
1346026a733eSStephan Müllerconfig CRYPTO_KDF800108_CTR
1347026a733eSStephan Müller	tristate
1348a88592ccSHerbert Xu	select CRYPTO_HMAC
1349304b4aceSStephan Müller	select CRYPTO_SHA256
1350026a733eSStephan Müller
1351f1f142adSRobert Elliottendmenu
13529bc51715SRobert Elliottmenu "Userspace interface"
1353f1f142adSRobert Elliott
135403c8efc1SHerbert Xuconfig CRYPTO_USER_API
135503c8efc1SHerbert Xu	tristate
135603c8efc1SHerbert Xu
1357fe869cdbSHerbert Xuconfig CRYPTO_USER_API_HASH
13589bc51715SRobert Elliott	tristate "Hash algorithms"
13597451708fSHerbert Xu	depends on NET
1360fe869cdbSHerbert Xu	select CRYPTO_HASH
1361fe869cdbSHerbert Xu	select CRYPTO_USER_API
1362fe869cdbSHerbert Xu	help
13639bc51715SRobert Elliott	  Enable the userspace interface for hash algorithms.
13649bc51715SRobert Elliott
13659bc51715SRobert Elliott	  See Documentation/crypto/userspace-if.rst and
13669bc51715SRobert Elliott	  https://www.chronox.de/libkcapi/html/index.html
1367fe869cdbSHerbert Xu
13688ff59090SHerbert Xuconfig CRYPTO_USER_API_SKCIPHER
13699bc51715SRobert Elliott	tristate "Symmetric key cipher algorithms"
13707451708fSHerbert Xu	depends on NET
1371b95bba5dSEric Biggers	select CRYPTO_SKCIPHER
13728ff59090SHerbert Xu	select CRYPTO_USER_API
13738ff59090SHerbert Xu	help
13749bc51715SRobert Elliott	  Enable the userspace interface for symmetric key cipher algorithms.
13759bc51715SRobert Elliott
13769bc51715SRobert Elliott	  See Documentation/crypto/userspace-if.rst and
13779bc51715SRobert Elliott	  https://www.chronox.de/libkcapi/html/index.html
13788ff59090SHerbert Xu
13792f375538SStephan Muellerconfig CRYPTO_USER_API_RNG
13809bc51715SRobert Elliott	tristate "RNG (random number generator) algorithms"
13812f375538SStephan Mueller	depends on NET
13822f375538SStephan Mueller	select CRYPTO_RNG
13832f375538SStephan Mueller	select CRYPTO_USER_API
13842f375538SStephan Mueller	help
13859bc51715SRobert Elliott	  Enable the userspace interface for RNG (random number generator)
13869bc51715SRobert Elliott	  algorithms.
13879bc51715SRobert Elliott
13889bc51715SRobert Elliott	  See Documentation/crypto/userspace-if.rst and
13899bc51715SRobert Elliott	  https://www.chronox.de/libkcapi/html/index.html
13902f375538SStephan Mueller
139177ebdabeSElena Petrovaconfig CRYPTO_USER_API_RNG_CAVP
139277ebdabeSElena Petrova	bool "Enable CAVP testing of DRBG"
139377ebdabeSElena Petrova	depends on CRYPTO_USER_API_RNG && CRYPTO_DRBG
139477ebdabeSElena Petrova	help
13959bc51715SRobert Elliott	  Enable extra APIs in the userspace interface for NIST CAVP
13969bc51715SRobert Elliott	  (Cryptographic Algorithm Validation Program) testing:
13979bc51715SRobert Elliott	  - resetting DRBG entropy
13989bc51715SRobert Elliott	  - providing Additional Data
13999bc51715SRobert Elliott
140077ebdabeSElena Petrova	  This should only be enabled for CAVP testing. You should say
140177ebdabeSElena Petrova	  no unless you know what this is.
140277ebdabeSElena Petrova
1403b64a2d95SHerbert Xuconfig CRYPTO_USER_API_AEAD
14049bc51715SRobert Elliott	tristate "AEAD cipher algorithms"
1405b64a2d95SHerbert Xu	depends on NET
1406b64a2d95SHerbert Xu	select CRYPTO_AEAD
1407b95bba5dSEric Biggers	select CRYPTO_SKCIPHER
140872548b09SStephan Mueller	select CRYPTO_NULL
1409b64a2d95SHerbert Xu	select CRYPTO_USER_API
1410b64a2d95SHerbert Xu	help
14119bc51715SRobert Elliott	  Enable the userspace interface for AEAD cipher algorithms.
14129bc51715SRobert Elliott
14139bc51715SRobert Elliott	  See Documentation/crypto/userspace-if.rst and
14149bc51715SRobert Elliott	  https://www.chronox.de/libkcapi/html/index.html
1415b64a2d95SHerbert Xu
14169ace6771SArd Biesheuvelconfig CRYPTO_USER_API_ENABLE_OBSOLETE
14179bc51715SRobert Elliott	bool "Obsolete cryptographic algorithms"
14189ace6771SArd Biesheuvel	depends on CRYPTO_USER_API
14199ace6771SArd Biesheuvel	default y
14209ace6771SArd Biesheuvel	help
14219ace6771SArd Biesheuvel	  Allow obsolete cryptographic algorithms to be selected that have
14229ace6771SArd Biesheuvel	  already been phased out from internal use by the kernel, and are
14239ace6771SArd Biesheuvel	  only useful for userspace clients that still rely on them.
14249ace6771SArd Biesheuvel
1425f1f142adSRobert Elliottendmenu
1426f1f142adSRobert Elliott
1427ee08997fSDmitry Kasatkinconfig CRYPTO_HASH_INFO
1428ee08997fSDmitry Kasatkin	bool
1429ee08997fSDmitry Kasatkin
143027bc50fcSLinus Torvaldsif !KMSAN # avoid false positives from assembly
14314a329fecSRobert Elliottif ARM
14324a329fecSRobert Elliottsource "arch/arm/crypto/Kconfig"
14334a329fecSRobert Elliottendif
14344a329fecSRobert Elliottif ARM64
14354a329fecSRobert Elliottsource "arch/arm64/crypto/Kconfig"
14364a329fecSRobert Elliottendif
14372f164822SMin Zhouif LOONGARCH
14382f164822SMin Zhousource "arch/loongarch/crypto/Kconfig"
14392f164822SMin Zhouendif
1440e45f710bSRobert Elliottif MIPS
1441e45f710bSRobert Elliottsource "arch/mips/crypto/Kconfig"
1442e45f710bSRobert Elliottendif
14436a490a4eSRobert Elliottif PPC
14446a490a4eSRobert Elliottsource "arch/powerpc/crypto/Kconfig"
14456a490a4eSRobert Elliottendif
1446178f3856SHeiko Stuebnerif RISCV
1447178f3856SHeiko Stuebnersource "arch/riscv/crypto/Kconfig"
1448178f3856SHeiko Stuebnerendif
1449c9d24c97SRobert Elliottif S390
1450c9d24c97SRobert Elliottsource "arch/s390/crypto/Kconfig"
1451c9d24c97SRobert Elliottendif
14520e9f9ea6SRobert Elliottif SPARC
14530e9f9ea6SRobert Elliottsource "arch/sparc/crypto/Kconfig"
14540e9f9ea6SRobert Elliottendif
145528a936efSRobert Elliottif X86
145628a936efSRobert Elliottsource "arch/x86/crypto/Kconfig"
145728a936efSRobert Elliottendif
145827bc50fcSLinus Torvaldsendif
1459e45f710bSRobert Elliott
14601da177e4SLinus Torvaldssource "drivers/crypto/Kconfig"
14618636a1f9SMasahiro Yamadasource "crypto/asymmetric_keys/Kconfig"
14628636a1f9SMasahiro Yamadasource "certs/Kconfig"
14631da177e4SLinus Torvalds
1464cce9e06dSHerbert Xuendif	# if CRYPTO
1465