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 144*3241cd0cSHannes Reineckeconfig CRYPTO_HKDF 145*3241cd0cSHannes Reinecke tristate 146*3241cd0cSHannes Reinecke select CRYPTO_SHA256 if !CONFIG_CRYPTO_MANAGER_DISABLE_TESTS 147*3241cd0cSHannes Reinecke select CRYPTO_SHA512 if !CONFIG_CRYPTO_MANAGER_DISABLE_TESTS 148*3241cd0cSHannes Reinecke select CRYPTO_HASH2 149*3241cd0cSHannes Reinecke 1502b8c19dbSHerbert Xuconfig CRYPTO_MANAGER 1512b8c19dbSHerbert Xu tristate "Cryptographic algorithm manager" 1526a0fcbb4SHerbert Xu select CRYPTO_MANAGER2 1532b8c19dbSHerbert Xu help 1542b8c19dbSHerbert Xu Create default cryptographic template instantiations such as 1552b8c19dbSHerbert Xu cbc(aes). 1562b8c19dbSHerbert Xu 1576a0fcbb4SHerbert Xuconfig CRYPTO_MANAGER2 1586a0fcbb4SHerbert Xu def_tristate CRYPTO_MANAGER || (CRYPTO_MANAGER!=n && CRYPTO_ALGAPI=y) 1592ebda74fSGiovanni Cabiddu select CRYPTO_ACOMP2 160fb28fabfSHerbert Xu select CRYPTO_AEAD2 161fb28fabfSHerbert Xu select CRYPTO_AKCIPHER2 1626cb8815fSHerbert Xu select CRYPTO_SIG2 163fb28fabfSHerbert Xu select CRYPTO_HASH2 164fb28fabfSHerbert Xu select CRYPTO_KPP2 165fb28fabfSHerbert Xu select CRYPTO_RNG2 166fb28fabfSHerbert Xu select CRYPTO_SKCIPHER2 1676a0fcbb4SHerbert Xu 168a38f7907SSteffen Klassertconfig CRYPTO_USER 169a38f7907SSteffen Klassert tristate "Userspace cryptographic algorithm configuration" 1705db017aaSHerbert Xu depends on NET 171a38f7907SSteffen Klassert select CRYPTO_MANAGER 172a38f7907SSteffen Klassert help 173d19978f5SValdis.Kletnieks@vt.edu Userspace configuration for cryptographic instantiations such as 174a38f7907SSteffen Klassert cbc(aes). 175a38f7907SSteffen Klassert 176326a6346SHerbert Xuconfig CRYPTO_MANAGER_DISABLE_TESTS 177326a6346SHerbert Xu bool "Disable run-time self tests" 17800ca28a5SHerbert Xu default y 1790b767f96SAlexander Shishkin help 180326a6346SHerbert Xu Disable run-time self tests that normally take place at 181326a6346SHerbert Xu algorithm registration. 1820b767f96SAlexander Shishkin 1835b2706a4SEric Biggersconfig CRYPTO_MANAGER_EXTRA_TESTS 1845b2706a4SEric Biggers bool "Enable extra run-time crypto self tests" 1856569e309SJason A. Donenfeld depends on DEBUG_KERNEL && !CRYPTO_MANAGER_DISABLE_TESTS && CRYPTO_MANAGER 1865b2706a4SEric Biggers help 1875b2706a4SEric Biggers Enable extra run-time self tests of registered crypto algorithms, 1885b2706a4SEric Biggers including randomized fuzz tests. 1895b2706a4SEric Biggers 1905b2706a4SEric Biggers This is intended for developer use only, as these tests take much 1915b2706a4SEric Biggers longer to run than the normal self tests. 1925b2706a4SEric Biggers 193584fffc8SSebastian Siewiorconfig CRYPTO_NULL 194584fffc8SSebastian Siewior tristate "Null algorithms" 195149a3971SHerbert Xu select CRYPTO_NULL2 196584fffc8SSebastian Siewior help 197584fffc8SSebastian Siewior These are 'Null' algorithms, used by IPsec, which do nothing. 198584fffc8SSebastian Siewior 199149a3971SHerbert Xuconfig CRYPTO_NULL2 200dd43c4e9SHerbert Xu tristate 201149a3971SHerbert Xu select CRYPTO_ALGAPI2 202b95bba5dSEric Biggers select CRYPTO_SKCIPHER2 203149a3971SHerbert Xu select CRYPTO_HASH2 204149a3971SHerbert Xu 2055068c7a8SSteffen Klassertconfig CRYPTO_PCRYPT 2063b4afaf2SKees Cook tristate "Parallel crypto engine" 2073b4afaf2SKees Cook depends on SMP 2085068c7a8SSteffen Klassert select PADATA 2095068c7a8SSteffen Klassert select CRYPTO_MANAGER 2105068c7a8SSteffen Klassert select CRYPTO_AEAD 2115068c7a8SSteffen Klassert help 2125068c7a8SSteffen Klassert This converts an arbitrary crypto algorithm into a parallel 2135068c7a8SSteffen Klassert algorithm that executes in kernel threads. 2145068c7a8SSteffen Klassert 215584fffc8SSebastian Siewiorconfig CRYPTO_CRYPTD 216584fffc8SSebastian Siewior tristate "Software async crypto daemon" 217b95bba5dSEric Biggers select CRYPTO_SKCIPHER 218b8a28251SLoc Ho select CRYPTO_HASH 219584fffc8SSebastian Siewior select CRYPTO_MANAGER 220584fffc8SSebastian Siewior help 221584fffc8SSebastian Siewior This is a generic software asynchronous crypto daemon that 222584fffc8SSebastian Siewior converts an arbitrary synchronous software crypto algorithm 223584fffc8SSebastian Siewior into an asynchronous algorithm that executes in a kernel thread. 224584fffc8SSebastian Siewior 225584fffc8SSebastian Siewiorconfig CRYPTO_AUTHENC 226584fffc8SSebastian Siewior tristate "Authenc support" 227584fffc8SSebastian Siewior select CRYPTO_AEAD 228b95bba5dSEric Biggers select CRYPTO_SKCIPHER 229584fffc8SSebastian Siewior select CRYPTO_MANAGER 230584fffc8SSebastian Siewior select CRYPTO_HASH 231e94c6a7aSHerbert Xu select CRYPTO_NULL 232584fffc8SSebastian Siewior help 233584fffc8SSebastian Siewior Authenc: Combined mode wrapper for IPsec. 234cf514b2aSRobert Elliott 235cf514b2aSRobert Elliott This is required for IPSec ESP (XFRM_ESP). 236584fffc8SSebastian Siewior 237584fffc8SSebastian Siewiorconfig CRYPTO_TEST 238584fffc8SSebastian Siewior tristate "Testing module" 23900ea27f1SArd Biesheuvel depends on m || EXPERT 240da7f033dSHerbert Xu select CRYPTO_MANAGER 241584fffc8SSebastian Siewior help 242584fffc8SSebastian Siewior Quick & dirty crypto test module. 243584fffc8SSebastian Siewior 244266d0516SHerbert Xuconfig CRYPTO_SIMD 245266d0516SHerbert Xu tristate 246266d0516SHerbert Xu select CRYPTO_CRYPTD 247266d0516SHerbert Xu 248735d37b5SBaolin Wangconfig CRYPTO_ENGINE 249735d37b5SBaolin Wang tristate 250735d37b5SBaolin Wang 251f1f142adSRobert Elliottendmenu 252f1f142adSRobert Elliott 253f1f142adSRobert Elliottmenu "Public-key cryptography" 2543d6228a5SVitaly Chikunov 2553d6228a5SVitaly Chikunovconfig CRYPTO_RSA 25605b37465SRobert Elliott tristate "RSA (Rivest-Shamir-Adleman)" 2573d6228a5SVitaly Chikunov select CRYPTO_AKCIPHER 2583d6228a5SVitaly Chikunov select CRYPTO_MANAGER 2591e562deaSLukas Wunner select CRYPTO_SIG 2603d6228a5SVitaly Chikunov select MPILIB 2613d6228a5SVitaly Chikunov select ASN1 2623d6228a5SVitaly Chikunov help 26305b37465SRobert Elliott RSA (Rivest-Shamir-Adleman) public key algorithm (RFC8017) 2643d6228a5SVitaly Chikunov 2653d6228a5SVitaly Chikunovconfig CRYPTO_DH 26605b37465SRobert Elliott tristate "DH (Diffie-Hellman)" 2673d6228a5SVitaly Chikunov select CRYPTO_KPP 2683d6228a5SVitaly Chikunov select MPILIB 2693d6228a5SVitaly Chikunov help 27005b37465SRobert Elliott DH (Diffie-Hellman) key exchange algorithm 2713d6228a5SVitaly Chikunov 2727dce5981SNicolai Stangeconfig CRYPTO_DH_RFC7919_GROUPS 27305b37465SRobert Elliott bool "RFC 7919 FFDHE groups" 2747dce5981SNicolai Stange depends on CRYPTO_DH 2751e207964SNicolai Stange select CRYPTO_RNG_DEFAULT 2767dce5981SNicolai Stange help 27705b37465SRobert Elliott FFDHE (Finite-Field-based Diffie-Hellman Ephemeral) groups 27805b37465SRobert Elliott defined in RFC7919. 27905b37465SRobert Elliott 28005b37465SRobert Elliott Support these finite-field groups in DH key exchanges: 28105b37465SRobert Elliott - ffdhe2048, ffdhe3072, ffdhe4096, ffdhe6144, ffdhe8192 28205b37465SRobert Elliott 28305b37465SRobert Elliott If unsure, say N. 2847dce5981SNicolai Stange 2854a2289daSVitaly Chikunovconfig CRYPTO_ECC 2864a2289daSVitaly Chikunov tristate 28738aa192aSArnd Bergmann select CRYPTO_RNG_DEFAULT 2884a2289daSVitaly Chikunov 2893d6228a5SVitaly Chikunovconfig CRYPTO_ECDH 29005b37465SRobert Elliott tristate "ECDH (Elliptic Curve Diffie-Hellman)" 2914a2289daSVitaly Chikunov select CRYPTO_ECC 2923d6228a5SVitaly Chikunov select CRYPTO_KPP 2933d6228a5SVitaly Chikunov help 29405b37465SRobert Elliott ECDH (Elliptic Curve Diffie-Hellman) key exchange algorithm 29505b37465SRobert Elliott using curves P-192, P-256, and P-384 (FIPS 186) 2963d6228a5SVitaly Chikunov 2974e660291SStefan Bergerconfig CRYPTO_ECDSA 29805b37465SRobert Elliott tristate "ECDSA (Elliptic Curve Digital Signature Algorithm)" 2994e660291SStefan Berger select CRYPTO_ECC 300ef132350SLukas Wunner select CRYPTO_SIG 3014e660291SStefan Berger select ASN1 3024e660291SStefan Berger help 30305b37465SRobert Elliott ECDSA (Elliptic Curve Digital Signature Algorithm) (FIPS 186, 30405b37465SRobert Elliott ISO/IEC 14888-3) 30591790c7aSLukas Wunner using curves P-192, P-256, P-384 and P-521 30605b37465SRobert Elliott 30705b37465SRobert Elliott Only signature verification is implemented. 3084e660291SStefan Berger 3090d7a7864SVitaly Chikunovconfig CRYPTO_ECRDSA 31005b37465SRobert Elliott tristate "EC-RDSA (Elliptic Curve Russian Digital Signature Algorithm)" 3110d7a7864SVitaly Chikunov select CRYPTO_ECC 312ae117924SLukas Wunner select CRYPTO_SIG 3130d7a7864SVitaly Chikunov select CRYPTO_STREEBOG 3141036633eSVitaly Chikunov select OID_REGISTRY 3151036633eSVitaly Chikunov select ASN1 3160d7a7864SVitaly Chikunov help 3170d7a7864SVitaly Chikunov Elliptic Curve Russian Digital Signature Algorithm (GOST R 34.10-2012, 31805b37465SRobert Elliott RFC 7091, ISO/IEC 14888-3) 31905b37465SRobert Elliott 32005b37465SRobert Elliott One of the Russian cryptographic standard algorithms (called GOST 32105b37465SRobert Elliott algorithms). Only signature verification is implemented. 3220d7a7864SVitaly Chikunov 323ee772cb6SArd Biesheuvelconfig CRYPTO_CURVE25519 32405b37465SRobert Elliott tristate "Curve25519" 325ee772cb6SArd Biesheuvel select CRYPTO_KPP 326ee772cb6SArd Biesheuvel select CRYPTO_LIB_CURVE25519_GENERIC 32705b37465SRobert Elliott help 32805b37465SRobert Elliott Curve25519 elliptic curve (RFC7748) 329ee772cb6SArd Biesheuvel 330f1f142adSRobert Elliottendmenu 331584fffc8SSebastian Siewior 332f1f142adSRobert Elliottmenu "Block ciphers" 3331da177e4SLinus Torvalds 3341da177e4SLinus Torvaldsconfig CRYPTO_AES 335cf514b2aSRobert Elliott tristate "AES (Advanced Encryption Standard)" 336cce9e06dSHerbert Xu select CRYPTO_ALGAPI 3375bb12d78SArd Biesheuvel select CRYPTO_LIB_AES 3381da177e4SLinus Torvalds help 339cf514b2aSRobert Elliott AES cipher algorithms (Rijndael)(FIPS-197, ISO/IEC 18033-3) 3401da177e4SLinus Torvalds 3411da177e4SLinus Torvalds Rijndael appears to be consistently a very good performer in 3421da177e4SLinus Torvalds both hardware and software across a wide range of computing 3431da177e4SLinus Torvalds environments regardless of its use in feedback or non-feedback 3441da177e4SLinus Torvalds modes. Its key setup time is excellent, and its key agility is 3451da177e4SLinus Torvalds good. Rijndael's very low memory requirements make it very well 3461da177e4SLinus Torvalds suited for restricted-space environments, in which it also 3471da177e4SLinus Torvalds demonstrates excellent performance. Rijndael's operations are 3481da177e4SLinus Torvalds among the easiest to defend against power and timing attacks. 3491da177e4SLinus Torvalds 3501da177e4SLinus Torvalds The AES specifies three key sizes: 128, 192 and 256 bits 3511da177e4SLinus Torvalds 352b5e0b032SArd Biesheuvelconfig CRYPTO_AES_TI 353cf514b2aSRobert Elliott tristate "AES (Advanced Encryption Standard) (fixed time)" 354b5e0b032SArd Biesheuvel select CRYPTO_ALGAPI 355e59c1c98SArd Biesheuvel select CRYPTO_LIB_AES 356b5e0b032SArd Biesheuvel help 357cf514b2aSRobert Elliott AES cipher algorithms (Rijndael)(FIPS-197, ISO/IEC 18033-3) 358cf514b2aSRobert Elliott 359b5e0b032SArd Biesheuvel This is a generic implementation of AES that attempts to eliminate 360b5e0b032SArd Biesheuvel data dependent latencies as much as possible without affecting 361b5e0b032SArd Biesheuvel performance too much. It is intended for use by the generic CCM 362b5e0b032SArd Biesheuvel and GCM drivers, and other CTR or CMAC/XCBC based modes that rely 363b5e0b032SArd Biesheuvel solely on encryption (although decryption is supported as well, but 364b5e0b032SArd Biesheuvel with a more dramatic performance hit) 365b5e0b032SArd Biesheuvel 366b5e0b032SArd Biesheuvel Instead of using 16 lookup tables of 1 KB each, (8 for encryption and 367b5e0b032SArd Biesheuvel 8 for decryption), this implementation only uses just two S-boxes of 368b5e0b032SArd Biesheuvel 256 bytes each, and attempts to eliminate data dependent latencies by 369b5e0b032SArd Biesheuvel prefetching the entire table into the cache at the start of each 3700a6a40c2SEric Biggers block. Interrupts are also disabled to avoid races where cachelines 3710a6a40c2SEric Biggers are evicted when the CPU is interrupted to do something else. 372b5e0b032SArd Biesheuvel 3731da177e4SLinus Torvaldsconfig CRYPTO_ANUBIS 374cf514b2aSRobert Elliott tristate "Anubis" 3751674aea5SArd Biesheuvel depends on CRYPTO_USER_API_ENABLE_OBSOLETE 376cce9e06dSHerbert Xu select CRYPTO_ALGAPI 3771da177e4SLinus Torvalds help 378cf514b2aSRobert Elliott Anubis cipher algorithm 3791da177e4SLinus Torvalds 3801da177e4SLinus Torvalds Anubis is a variable key length cipher which can use keys from 3811da177e4SLinus Torvalds 128 bits to 320 bits in length. It was evaluated as a entrant 3821da177e4SLinus Torvalds in the NESSIE competition. 3831da177e4SLinus Torvalds 384cf514b2aSRobert Elliott See https://web.archive.org/web/20160606112246/http://www.larc.usp.br/~pbarreto/AnubisPage.html 385cf514b2aSRobert Elliott for further information. 3861da177e4SLinus Torvalds 387f1f142adSRobert Elliottconfig CRYPTO_ARIA 388cf514b2aSRobert Elliott tristate "ARIA" 389f1f142adSRobert Elliott select CRYPTO_ALGAPI 390e2ee95b8SHye-Shik Chang help 391cf514b2aSRobert Elliott ARIA cipher algorithm (RFC5794) 392e2ee95b8SHye-Shik Chang 393f1f142adSRobert Elliott ARIA is a standard encryption algorithm of the Republic of Korea. 394f1f142adSRobert Elliott The ARIA specifies three key sizes and rounds. 395f1f142adSRobert Elliott 128-bit: 12 rounds. 396f1f142adSRobert Elliott 192-bit: 14 rounds. 397f1f142adSRobert Elliott 256-bit: 16 rounds. 398f1f142adSRobert Elliott 399cf514b2aSRobert Elliott See: 400cf514b2aSRobert Elliott https://seed.kisa.or.kr/kisa/algorithm/EgovAriaInfo.do 401584fffc8SSebastian Siewior 402584fffc8SSebastian Siewiorconfig CRYPTO_BLOWFISH 403cf514b2aSRobert Elliott tristate "Blowfish" 404584fffc8SSebastian Siewior select CRYPTO_ALGAPI 40552ba867cSJussi Kivilinna select CRYPTO_BLOWFISH_COMMON 406584fffc8SSebastian Siewior help 407cf514b2aSRobert Elliott Blowfish cipher algorithm, by Bruce Schneier 408584fffc8SSebastian Siewior 409584fffc8SSebastian Siewior This is a variable key length cipher which can use keys from 32 410584fffc8SSebastian Siewior bits to 448 bits in length. It's fast, simple and specifically 411584fffc8SSebastian Siewior designed for use on "large microprocessors". 412e2ee95b8SHye-Shik Chang 413cf514b2aSRobert Elliott See https://www.schneier.com/blowfish.html for further information. 414584fffc8SSebastian Siewior 41552ba867cSJussi Kivilinnaconfig CRYPTO_BLOWFISH_COMMON 41652ba867cSJussi Kivilinna tristate 41752ba867cSJussi Kivilinna help 41852ba867cSJussi Kivilinna Common parts of the Blowfish cipher algorithm shared by the 41952ba867cSJussi Kivilinna generic c and the assembler implementations. 42052ba867cSJussi Kivilinna 421584fffc8SSebastian Siewiorconfig CRYPTO_CAMELLIA 422cf514b2aSRobert Elliott tristate "Camellia" 423584fffc8SSebastian Siewior select CRYPTO_ALGAPI 424584fffc8SSebastian Siewior help 425cf514b2aSRobert Elliott Camellia cipher algorithms (ISO/IEC 18033-3) 426584fffc8SSebastian Siewior 427584fffc8SSebastian Siewior Camellia is a symmetric key block cipher developed jointly 428584fffc8SSebastian Siewior at NTT and Mitsubishi Electric Corporation. 429584fffc8SSebastian Siewior 430584fffc8SSebastian Siewior The Camellia specifies three key sizes: 128, 192 and 256 bits. 431584fffc8SSebastian Siewior 432cf514b2aSRobert Elliott See https://info.isl.ntt.co.jp/crypt/eng/camellia/ for further information. 433584fffc8SSebastian Siewior 434044ab525SJussi Kivilinnaconfig CRYPTO_CAST_COMMON 435044ab525SJussi Kivilinna tristate 436044ab525SJussi Kivilinna help 437044ab525SJussi Kivilinna Common parts of the CAST cipher algorithms shared by the 438044ab525SJussi Kivilinna generic c and the assembler implementations. 439044ab525SJussi Kivilinna 440584fffc8SSebastian Siewiorconfig CRYPTO_CAST5 441cf514b2aSRobert Elliott tristate "CAST5 (CAST-128)" 442584fffc8SSebastian Siewior select CRYPTO_ALGAPI 443044ab525SJussi Kivilinna select CRYPTO_CAST_COMMON 444584fffc8SSebastian Siewior help 445cf514b2aSRobert Elliott CAST5 (CAST-128) cipher algorithm (RFC2144, ISO/IEC 18033-3) 446584fffc8SSebastian Siewior 447584fffc8SSebastian Siewiorconfig CRYPTO_CAST6 448cf514b2aSRobert Elliott tristate "CAST6 (CAST-256)" 449584fffc8SSebastian Siewior select CRYPTO_ALGAPI 450044ab525SJussi Kivilinna select CRYPTO_CAST_COMMON 451584fffc8SSebastian Siewior help 452cf514b2aSRobert Elliott CAST6 (CAST-256) encryption algorithm (RFC2612) 453584fffc8SSebastian Siewior 454584fffc8SSebastian Siewiorconfig CRYPTO_DES 455cf514b2aSRobert Elliott tristate "DES and Triple DES EDE" 456584fffc8SSebastian Siewior select CRYPTO_ALGAPI 45704007b0eSArd Biesheuvel select CRYPTO_LIB_DES 458584fffc8SSebastian Siewior help 459cf514b2aSRobert Elliott DES (Data Encryption Standard)(FIPS 46-2, ISO/IEC 18033-3) and 460cf514b2aSRobert Elliott Triple DES EDE (Encrypt/Decrypt/Encrypt) (FIPS 46-3, ISO/IEC 18033-3) 461cf514b2aSRobert Elliott cipher algorithms 462584fffc8SSebastian Siewior 463584fffc8SSebastian Siewiorconfig CRYPTO_FCRYPT 464cf514b2aSRobert Elliott tristate "FCrypt" 465584fffc8SSebastian Siewior select CRYPTO_ALGAPI 466b95bba5dSEric Biggers select CRYPTO_SKCIPHER 467584fffc8SSebastian Siewior help 468cf514b2aSRobert Elliott FCrypt algorithm used by RxRPC 469cf514b2aSRobert Elliott 470cf514b2aSRobert Elliott See https://ota.polyonymo.us/fcrypt-paper.txt 471584fffc8SSebastian Siewior 472584fffc8SSebastian Siewiorconfig CRYPTO_KHAZAD 473cf514b2aSRobert Elliott tristate "Khazad" 4741674aea5SArd Biesheuvel depends on CRYPTO_USER_API_ENABLE_OBSOLETE 475584fffc8SSebastian Siewior select CRYPTO_ALGAPI 476584fffc8SSebastian Siewior help 477cf514b2aSRobert Elliott Khazad cipher algorithm 478584fffc8SSebastian Siewior 479584fffc8SSebastian Siewior Khazad was a finalist in the initial NESSIE competition. It is 480584fffc8SSebastian Siewior an algorithm optimized for 64-bit processors with good performance 481584fffc8SSebastian Siewior on 32-bit processors. Khazad uses an 128 bit key size. 482584fffc8SSebastian Siewior 483cf514b2aSRobert Elliott See https://web.archive.org/web/20171011071731/http://www.larc.usp.br/~pbarreto/KhazadPage.html 484cf514b2aSRobert Elliott for further information. 485e2ee95b8SHye-Shik Chang 486584fffc8SSebastian Siewiorconfig CRYPTO_SEED 487cf514b2aSRobert Elliott tristate "SEED" 4881674aea5SArd Biesheuvel depends on CRYPTO_USER_API_ENABLE_OBSOLETE 489584fffc8SSebastian Siewior select CRYPTO_ALGAPI 490584fffc8SSebastian Siewior help 491cf514b2aSRobert Elliott SEED cipher algorithm (RFC4269, ISO/IEC 18033-3) 492584fffc8SSebastian Siewior 493584fffc8SSebastian Siewior SEED is a 128-bit symmetric key block cipher that has been 494584fffc8SSebastian Siewior developed by KISA (Korea Information Security Agency) as a 495584fffc8SSebastian Siewior national standard encryption algorithm of the Republic of Korea. 496584fffc8SSebastian Siewior It is a 16 round block cipher with the key size of 128 bit. 497584fffc8SSebastian Siewior 498cf514b2aSRobert Elliott See https://seed.kisa.or.kr/kisa/algorithm/EgovSeedInfo.do 499cf514b2aSRobert Elliott for further information. 500584fffc8SSebastian Siewior 501584fffc8SSebastian Siewiorconfig CRYPTO_SERPENT 502cf514b2aSRobert Elliott tristate "Serpent" 503584fffc8SSebastian Siewior select CRYPTO_ALGAPI 504584fffc8SSebastian Siewior help 505cf514b2aSRobert Elliott Serpent cipher algorithm, by Anderson, Biham & Knudsen 506584fffc8SSebastian Siewior 507584fffc8SSebastian Siewior Keys are allowed to be from 0 to 256 bits in length, in steps 508784506a1SArd Biesheuvel of 8 bits. 509584fffc8SSebastian Siewior 510cf514b2aSRobert Elliott See https://www.cl.cam.ac.uk/~rja14/serpent.html for further information. 511584fffc8SSebastian Siewior 512747c8ce4SGilad Ben-Yossefconfig CRYPTO_SM4 513d2825fa9SJason A. Donenfeld tristate 514d2825fa9SJason A. Donenfeld 515d2825fa9SJason A. Donenfeldconfig CRYPTO_SM4_GENERIC 516cf514b2aSRobert Elliott tristate "SM4 (ShangMi 4)" 517747c8ce4SGilad Ben-Yossef select CRYPTO_ALGAPI 518d2825fa9SJason A. Donenfeld select CRYPTO_SM4 519747c8ce4SGilad Ben-Yossef help 520cf514b2aSRobert Elliott SM4 cipher algorithms (OSCCA GB/T 32907-2016, 521cf514b2aSRobert Elliott ISO/IEC 18033-3:2010/Amd 1:2021) 522747c8ce4SGilad Ben-Yossef 523747c8ce4SGilad Ben-Yossef SM4 (GBT.32907-2016) is a cryptographic standard issued by the 524747c8ce4SGilad Ben-Yossef Organization of State Commercial Administration of China (OSCCA) 525747c8ce4SGilad Ben-Yossef as an authorized cryptographic algorithms for the use within China. 526747c8ce4SGilad Ben-Yossef 527747c8ce4SGilad Ben-Yossef SMS4 was originally created for use in protecting wireless 528747c8ce4SGilad Ben-Yossef networks, and is mandated in the Chinese National Standard for 529747c8ce4SGilad Ben-Yossef Wireless LAN WAPI (Wired Authentication and Privacy Infrastructure) 530747c8ce4SGilad Ben-Yossef (GB.15629.11-2003). 531747c8ce4SGilad Ben-Yossef 532747c8ce4SGilad Ben-Yossef The latest SM4 standard (GBT.32907-2016) was proposed by OSCCA and 533747c8ce4SGilad Ben-Yossef standardized through TC 260 of the Standardization Administration 534747c8ce4SGilad Ben-Yossef of the People's Republic of China (SAC). 535747c8ce4SGilad Ben-Yossef 536747c8ce4SGilad Ben-Yossef The input, output, and key of SMS4 are each 128 bits. 537747c8ce4SGilad Ben-Yossef 538cf514b2aSRobert Elliott See https://eprint.iacr.org/2008/329.pdf for further information. 539747c8ce4SGilad Ben-Yossef 540747c8ce4SGilad Ben-Yossef If unsure, say N. 541747c8ce4SGilad Ben-Yossef 542584fffc8SSebastian Siewiorconfig CRYPTO_TEA 543cf514b2aSRobert Elliott tristate "TEA, XTEA and XETA" 5441674aea5SArd Biesheuvel depends on CRYPTO_USER_API_ENABLE_OBSOLETE 545584fffc8SSebastian Siewior select CRYPTO_ALGAPI 546584fffc8SSebastian Siewior help 547cf514b2aSRobert Elliott TEA (Tiny Encryption Algorithm) cipher algorithms 548584fffc8SSebastian Siewior 549584fffc8SSebastian Siewior Tiny Encryption Algorithm is a simple cipher that uses 550584fffc8SSebastian Siewior many rounds for security. It is very fast and uses 551584fffc8SSebastian Siewior little memory. 552584fffc8SSebastian Siewior 553584fffc8SSebastian Siewior Xtendend Tiny Encryption Algorithm is a modification to 554584fffc8SSebastian Siewior the TEA algorithm to address a potential key weakness 555584fffc8SSebastian Siewior in the TEA algorithm. 556584fffc8SSebastian Siewior 557584fffc8SSebastian Siewior Xtendend Encryption Tiny Algorithm is a mis-implementation 558584fffc8SSebastian Siewior of the XTEA algorithm for compatibility purposes. 559584fffc8SSebastian Siewior 560584fffc8SSebastian Siewiorconfig CRYPTO_TWOFISH 561cf514b2aSRobert Elliott tristate "Twofish" 562584fffc8SSebastian Siewior select CRYPTO_ALGAPI 563584fffc8SSebastian Siewior select CRYPTO_TWOFISH_COMMON 564584fffc8SSebastian Siewior help 565cf514b2aSRobert Elliott Twofish cipher algorithm 566584fffc8SSebastian Siewior 567584fffc8SSebastian Siewior Twofish was submitted as an AES (Advanced Encryption Standard) 568584fffc8SSebastian Siewior candidate cipher by researchers at CounterPane Systems. It is a 569584fffc8SSebastian Siewior 16 round block cipher supporting key sizes of 128, 192, and 256 570584fffc8SSebastian Siewior bits. 571584fffc8SSebastian Siewior 572cf514b2aSRobert Elliott See https://www.schneier.com/twofish.html for further information. 573584fffc8SSebastian Siewior 574584fffc8SSebastian Siewiorconfig CRYPTO_TWOFISH_COMMON 575584fffc8SSebastian Siewior tristate 576584fffc8SSebastian Siewior help 577584fffc8SSebastian Siewior Common parts of the Twofish cipher algorithm shared by the 578584fffc8SSebastian Siewior generic c and the assembler implementations. 579584fffc8SSebastian Siewior 580f1f142adSRobert Elliottendmenu 581f1f142adSRobert Elliott 582f1f142adSRobert Elliottmenu "Length-preserving ciphers and modes" 583f1f142adSRobert Elliott 584f1f142adSRobert Elliottconfig CRYPTO_ADIANTUM 585cf514b2aSRobert Elliott tristate "Adiantum" 586f1f142adSRobert Elliott select CRYPTO_CHACHA20 587f1f142adSRobert Elliott select CRYPTO_LIB_POLY1305_GENERIC 588f1f142adSRobert Elliott select CRYPTO_NHPOLY1305 589f1f142adSRobert Elliott select CRYPTO_MANAGER 590f1f142adSRobert Elliott help 591cf514b2aSRobert Elliott Adiantum tweakable, length-preserving encryption mode 592cf514b2aSRobert Elliott 593cf514b2aSRobert Elliott Designed for fast and secure disk encryption, especially on 594f1f142adSRobert Elliott CPUs without dedicated crypto instructions. It encrypts 595f1f142adSRobert Elliott each sector using the XChaCha12 stream cipher, two passes of 596f1f142adSRobert Elliott an ε-almost-∆-universal hash function, and an invocation of 597f1f142adSRobert Elliott the AES-256 block cipher on a single 16-byte block. On CPUs 598f1f142adSRobert Elliott without AES instructions, Adiantum is much faster than 599f1f142adSRobert Elliott AES-XTS. 600f1f142adSRobert Elliott 601f1f142adSRobert Elliott Adiantum's security is provably reducible to that of its 602f1f142adSRobert Elliott underlying stream and block ciphers, subject to a security 603f1f142adSRobert Elliott bound. Unlike XTS, Adiantum is a true wide-block encryption 604f1f142adSRobert Elliott mode, so it actually provides an even stronger notion of 605f1f142adSRobert Elliott security than XTS, subject to the security bound. 606f1f142adSRobert Elliott 607f1f142adSRobert Elliott If unsure, say N. 608f1f142adSRobert Elliott 609f1f142adSRobert Elliottconfig CRYPTO_ARC4 610cf514b2aSRobert Elliott tristate "ARC4 (Alleged Rivest Cipher 4)" 611f1f142adSRobert Elliott depends on CRYPTO_USER_API_ENABLE_OBSOLETE 612f1f142adSRobert Elliott select CRYPTO_SKCIPHER 613f1f142adSRobert Elliott select CRYPTO_LIB_ARC4 614f1f142adSRobert Elliott help 615cf514b2aSRobert Elliott ARC4 cipher algorithm 616f1f142adSRobert Elliott 617f1f142adSRobert Elliott ARC4 is a stream cipher using keys ranging from 8 bits to 2048 618f1f142adSRobert Elliott bits in length. This algorithm is required for driver-based 619f1f142adSRobert Elliott WEP, but it should not be for other purposes because of the 620f1f142adSRobert Elliott weakness of the algorithm. 621f1f142adSRobert Elliott 622f1f142adSRobert Elliottconfig CRYPTO_CHACHA20 623cf514b2aSRobert Elliott tristate "ChaCha" 624f1f142adSRobert Elliott select CRYPTO_LIB_CHACHA_GENERIC 625f1f142adSRobert Elliott select CRYPTO_SKCIPHER 626f1f142adSRobert Elliott help 627cf514b2aSRobert Elliott The ChaCha20, XChaCha20, and XChaCha12 stream cipher algorithms 628f1f142adSRobert Elliott 629f1f142adSRobert Elliott ChaCha20 is a 256-bit high-speed stream cipher designed by Daniel J. 630f1f142adSRobert Elliott Bernstein and further specified in RFC7539 for use in IETF protocols. 631cf514b2aSRobert Elliott This is the portable C implementation of ChaCha20. See 632cf514b2aSRobert Elliott https://cr.yp.to/chacha/chacha-20080128.pdf for further information. 633f1f142adSRobert Elliott 634f1f142adSRobert Elliott XChaCha20 is the application of the XSalsa20 construction to ChaCha20 635f1f142adSRobert Elliott rather than to Salsa20. XChaCha20 extends ChaCha20's nonce length 636f1f142adSRobert Elliott from 64 bits (or 96 bits using the RFC7539 convention) to 192 bits, 637cf514b2aSRobert Elliott while provably retaining ChaCha20's security. See 638cf514b2aSRobert Elliott https://cr.yp.to/snuffle/xsalsa-20081128.pdf for further information. 639f1f142adSRobert Elliott 640f1f142adSRobert Elliott XChaCha12 is XChaCha20 reduced to 12 rounds, with correspondingly 641f1f142adSRobert Elliott reduced security margin but increased performance. It can be needed 642f1f142adSRobert Elliott in some performance-sensitive scenarios. 643f1f142adSRobert Elliott 644f1f142adSRobert Elliottconfig CRYPTO_CBC 645cf514b2aSRobert Elliott tristate "CBC (Cipher Block Chaining)" 646f1f142adSRobert Elliott select CRYPTO_SKCIPHER 647f1f142adSRobert Elliott select CRYPTO_MANAGER 648f1f142adSRobert Elliott help 649cf514b2aSRobert Elliott CBC (Cipher Block Chaining) mode (NIST SP800-38A) 650cf514b2aSRobert Elliott 651cf514b2aSRobert Elliott This block cipher mode is required for IPSec ESP (XFRM_ESP). 652f1f142adSRobert Elliott 653f1f142adSRobert Elliottconfig CRYPTO_CTR 654cf514b2aSRobert Elliott tristate "CTR (Counter)" 655f1f142adSRobert Elliott select CRYPTO_SKCIPHER 656f1f142adSRobert Elliott select CRYPTO_MANAGER 657f1f142adSRobert Elliott help 658cf514b2aSRobert Elliott CTR (Counter) mode (NIST SP800-38A) 659f1f142adSRobert Elliott 660f1f142adSRobert Elliottconfig CRYPTO_CTS 661cf514b2aSRobert Elliott tristate "CTS (Cipher Text Stealing)" 662f1f142adSRobert Elliott select CRYPTO_SKCIPHER 663f1f142adSRobert Elliott select CRYPTO_MANAGER 664f1f142adSRobert Elliott help 665cf514b2aSRobert Elliott CBC-CS3 variant of CTS (Cipher Text Stealing) (NIST 666cf514b2aSRobert Elliott Addendum to SP800-38A (October 2010)) 667cf514b2aSRobert Elliott 668f1f142adSRobert Elliott This mode is required for Kerberos gss mechanism support 669f1f142adSRobert Elliott for AES encryption. 670f1f142adSRobert Elliott 671f1f142adSRobert Elliottconfig CRYPTO_ECB 672cf514b2aSRobert Elliott tristate "ECB (Electronic Codebook)" 67384534684SHerbert Xu select CRYPTO_SKCIPHER2 674f1f142adSRobert Elliott select CRYPTO_MANAGER 675f1f142adSRobert Elliott help 676cf514b2aSRobert Elliott ECB (Electronic Codebook) mode (NIST SP800-38A) 677f1f142adSRobert Elliott 678f1f142adSRobert Elliottconfig CRYPTO_HCTR2 679cf514b2aSRobert Elliott tristate "HCTR2" 680f1f142adSRobert Elliott select CRYPTO_XCTR 681f1f142adSRobert Elliott select CRYPTO_POLYVAL 682f1f142adSRobert Elliott select CRYPTO_MANAGER 683f1f142adSRobert Elliott help 684cf514b2aSRobert Elliott HCTR2 length-preserving encryption mode 685cf514b2aSRobert Elliott 686cf514b2aSRobert Elliott A mode for storage encryption that is efficient on processors with 687cf514b2aSRobert Elliott instructions to accelerate AES and carryless multiplication, e.g. 688cf514b2aSRobert Elliott x86 processors with AES-NI and CLMUL, and ARM processors with the 689cf514b2aSRobert Elliott ARMv8 crypto extensions. 690cf514b2aSRobert Elliott 691cf514b2aSRobert Elliott See https://eprint.iacr.org/2021/1441 692f1f142adSRobert Elliott 693f1f142adSRobert Elliottconfig CRYPTO_LRW 694cf514b2aSRobert Elliott tristate "LRW (Liskov Rivest Wagner)" 69561c581a4SArd Biesheuvel select CRYPTO_LIB_GF128MUL 696f1f142adSRobert Elliott select CRYPTO_SKCIPHER 697f1f142adSRobert Elliott select CRYPTO_MANAGER 698f1f142adSRobert Elliott select CRYPTO_ECB 699f1f142adSRobert Elliott help 700cf514b2aSRobert Elliott LRW (Liskov Rivest Wagner) mode 701cf514b2aSRobert Elliott 702cf514b2aSRobert Elliott A tweakable, non malleable, non movable 703f1f142adSRobert Elliott narrow block cipher mode for dm-crypt. Use it with cipher 704f1f142adSRobert Elliott specification string aes-lrw-benbi, the key must be 256, 320 or 384. 705f1f142adSRobert Elliott The first 128, 192 or 256 bits in the key are used for AES and the 706f1f142adSRobert Elliott rest is used to tie each cipher block to its logical position. 707f1f142adSRobert Elliott 708cf514b2aSRobert Elliott See https://people.csail.mit.edu/rivest/pubs/LRW02.pdf 709cf514b2aSRobert Elliott 710f1f142adSRobert Elliottconfig CRYPTO_PCBC 711cf514b2aSRobert Elliott tristate "PCBC (Propagating Cipher Block Chaining)" 712f1f142adSRobert Elliott select CRYPTO_SKCIPHER 713f1f142adSRobert Elliott select CRYPTO_MANAGER 714f1f142adSRobert Elliott help 715cf514b2aSRobert Elliott PCBC (Propagating Cipher Block Chaining) mode 716cf514b2aSRobert Elliott 717cf514b2aSRobert Elliott This block cipher mode is required for RxRPC. 718f1f142adSRobert Elliott 719f1f142adSRobert Elliottconfig CRYPTO_XCTR 720f1f142adSRobert Elliott tristate 721f1f142adSRobert Elliott select CRYPTO_SKCIPHER 722f1f142adSRobert Elliott select CRYPTO_MANAGER 723f1f142adSRobert Elliott help 724cf514b2aSRobert Elliott XCTR (XOR Counter) mode for HCTR2 725cf514b2aSRobert Elliott 726cf514b2aSRobert Elliott This blockcipher mode is a variant of CTR mode using XORs and little-endian 727cf514b2aSRobert Elliott addition rather than big-endian arithmetic. 728cf514b2aSRobert Elliott 729f1f142adSRobert Elliott XCTR mode is used to implement HCTR2. 730f1f142adSRobert Elliott 731f1f142adSRobert Elliottconfig CRYPTO_XTS 732cf514b2aSRobert Elliott tristate "XTS (XOR Encrypt XOR with ciphertext stealing)" 733f1f142adSRobert Elliott select CRYPTO_SKCIPHER 734f1f142adSRobert Elliott select CRYPTO_MANAGER 735f1f142adSRobert Elliott select CRYPTO_ECB 736f1f142adSRobert Elliott help 737cf514b2aSRobert Elliott XTS (XOR Encrypt XOR with ciphertext stealing) mode (NIST SP800-38E 738cf514b2aSRobert Elliott and IEEE 1619) 739cf514b2aSRobert Elliott 740cf514b2aSRobert Elliott Use with aes-xts-plain, key size 256, 384 or 512 bits. This 741cf514b2aSRobert Elliott implementation currently can't handle a sectorsize which is not a 742cf514b2aSRobert Elliott multiple of 16 bytes. 743f1f142adSRobert Elliott 744f1f142adSRobert Elliottconfig CRYPTO_NHPOLY1305 745f1f142adSRobert Elliott tristate 746f1f142adSRobert Elliott select CRYPTO_HASH 747f1f142adSRobert Elliott select CRYPTO_LIB_POLY1305_GENERIC 748f1f142adSRobert Elliott 749f1f142adSRobert Elliottendmenu 750f1f142adSRobert Elliott 751f1f142adSRobert Elliottmenu "AEAD (authenticated encryption with associated data) ciphers" 752f1f142adSRobert Elliott 753f1f142adSRobert Elliottconfig CRYPTO_AEGIS128 754e3d2eaddSRobert Elliott tristate "AEGIS-128" 755f1f142adSRobert Elliott select CRYPTO_AEAD 756f1f142adSRobert Elliott select CRYPTO_AES # for AES S-box tables 757f1f142adSRobert Elliott help 758e3d2eaddSRobert Elliott AEGIS-128 AEAD algorithm 759f1f142adSRobert Elliott 760f1f142adSRobert Elliottconfig CRYPTO_AEGIS128_SIMD 761e3d2eaddSRobert Elliott bool "AEGIS-128 (arm NEON, arm64 NEON)" 762f1f142adSRobert Elliott depends on CRYPTO_AEGIS128 && ((ARM || ARM64) && KERNEL_MODE_NEON) 763f1f142adSRobert Elliott default y 764e3d2eaddSRobert Elliott help 765e3d2eaddSRobert Elliott AEGIS-128 AEAD algorithm 766e3d2eaddSRobert Elliott 767e3d2eaddSRobert Elliott Architecture: arm or arm64 using: 768e3d2eaddSRobert Elliott - NEON (Advanced SIMD) extension 769f1f142adSRobert Elliott 770f1f142adSRobert Elliottconfig CRYPTO_CHACHA20POLY1305 771e3d2eaddSRobert Elliott tristate "ChaCha20-Poly1305" 772f1f142adSRobert Elliott select CRYPTO_CHACHA20 773f1f142adSRobert Elliott select CRYPTO_POLY1305 774f1f142adSRobert Elliott select CRYPTO_AEAD 775f1f142adSRobert Elliott select CRYPTO_MANAGER 776f1f142adSRobert Elliott help 777e3d2eaddSRobert Elliott ChaCha20 stream cipher and Poly1305 authenticator combined 778e3d2eaddSRobert Elliott mode (RFC8439) 779f1f142adSRobert Elliott 780f1f142adSRobert Elliottconfig CRYPTO_CCM 781cf514b2aSRobert Elliott tristate "CCM (Counter with Cipher Block Chaining-MAC)" 782f1f142adSRobert Elliott select CRYPTO_CTR 783f1f142adSRobert Elliott select CRYPTO_HASH 784f1f142adSRobert Elliott select CRYPTO_AEAD 785f1f142adSRobert Elliott select CRYPTO_MANAGER 786f1f142adSRobert Elliott help 787e3d2eaddSRobert Elliott CCM (Counter with Cipher Block Chaining-Message Authentication Code) 788e3d2eaddSRobert Elliott authenticated encryption mode (NIST SP800-38C) 789f1f142adSRobert Elliott 790f1f142adSRobert Elliottconfig CRYPTO_GCM 791cf514b2aSRobert Elliott tristate "GCM (Galois/Counter Mode) and GMAC (GCM MAC)" 792f1f142adSRobert Elliott select CRYPTO_CTR 793f1f142adSRobert Elliott select CRYPTO_AEAD 794f1f142adSRobert Elliott select CRYPTO_GHASH 795f1f142adSRobert Elliott select CRYPTO_NULL 796f1f142adSRobert Elliott select CRYPTO_MANAGER 797f1f142adSRobert Elliott help 798e3d2eaddSRobert Elliott GCM (Galois/Counter Mode) authenticated encryption mode and GMAC 799e3d2eaddSRobert Elliott (GCM Message Authentication Code) (NIST SP800-38D) 800e3d2eaddSRobert Elliott 801e3d2eaddSRobert Elliott This is required for IPSec ESP (XFRM_ESP). 802f1f142adSRobert Elliott 803ba51738fSHerbert Xuconfig CRYPTO_GENIV 804ba51738fSHerbert Xu tristate 805ba51738fSHerbert Xu select CRYPTO_AEAD 806ba51738fSHerbert Xu select CRYPTO_NULL 807ba51738fSHerbert Xu select CRYPTO_MANAGER 808ba51738fSHerbert Xu select CRYPTO_RNG_DEFAULT 809ba51738fSHerbert Xu 810f1f142adSRobert Elliottconfig CRYPTO_SEQIV 811f1f142adSRobert Elliott tristate "Sequence Number IV Generator" 812ba51738fSHerbert Xu select CRYPTO_GENIV 813f1f142adSRobert Elliott help 814e3d2eaddSRobert Elliott Sequence Number IV generator 815e3d2eaddSRobert Elliott 816f1f142adSRobert Elliott This IV generator generates an IV based on a sequence number by 817e3d2eaddSRobert Elliott xoring it with a salt. This algorithm is mainly useful for CTR. 818e3d2eaddSRobert Elliott 819e3d2eaddSRobert Elliott This is required for IPsec ESP (XFRM_ESP). 820f1f142adSRobert Elliott 821f1f142adSRobert Elliottconfig CRYPTO_ECHAINIV 822f1f142adSRobert Elliott tristate "Encrypted Chain IV Generator" 823ba51738fSHerbert Xu select CRYPTO_GENIV 824f1f142adSRobert Elliott help 825e3d2eaddSRobert Elliott Encrypted Chain IV generator 826e3d2eaddSRobert Elliott 827f1f142adSRobert Elliott This IV generator generates an IV based on the encryption of 828f1f142adSRobert Elliott a sequence number xored with a salt. This is the default 829f1f142adSRobert Elliott algorithm for CBC. 830f1f142adSRobert Elliott 831f1f142adSRobert Elliottconfig CRYPTO_ESSIV 832e3d2eaddSRobert Elliott tristate "Encrypted Salt-Sector IV Generator" 833f1f142adSRobert Elliott select CRYPTO_AUTHENC 834f1f142adSRobert Elliott help 835e3d2eaddSRobert Elliott Encrypted Salt-Sector IV generator 836e3d2eaddSRobert Elliott 837e3d2eaddSRobert Elliott This IV generator is used in some cases by fscrypt and/or 838f1f142adSRobert Elliott dm-crypt. It uses the hash of the block encryption key as the 839f1f142adSRobert Elliott symmetric key for a block encryption pass applied to the input 840f1f142adSRobert Elliott IV, making low entropy IV sources more suitable for block 841f1f142adSRobert Elliott encryption. 842f1f142adSRobert Elliott 843f1f142adSRobert Elliott This driver implements a crypto API template that can be 844f1f142adSRobert Elliott instantiated either as an skcipher or as an AEAD (depending on the 845f1f142adSRobert Elliott type of the first template argument), and which defers encryption 846f1f142adSRobert Elliott and decryption requests to the encapsulated cipher after applying 847f1f142adSRobert Elliott ESSIV to the input IV. Note that in the AEAD case, it is assumed 848f1f142adSRobert Elliott that the keys are presented in the same format used by the authenc 849f1f142adSRobert Elliott template, and that the IV appears at the end of the authenticated 850f1f142adSRobert Elliott associated data (AAD) region (which is how dm-crypt uses it.) 851f1f142adSRobert Elliott 852f1f142adSRobert Elliott Note that the use of ESSIV is not recommended for new deployments, 853f1f142adSRobert Elliott and so this only needs to be enabled when interoperability with 854f1f142adSRobert Elliott existing encrypted volumes of filesystems is required, or when 855f1f142adSRobert Elliott building for a particular system that requires it (e.g., when 856f1f142adSRobert Elliott the SoC in question has accelerated CBC but not XTS, making CBC 857f1f142adSRobert Elliott combined with ESSIV the only feasible mode for h/w accelerated 858f1f142adSRobert Elliott block encryption) 859f1f142adSRobert Elliott 860f1f142adSRobert Elliottendmenu 861f1f142adSRobert Elliott 862f1f142adSRobert Elliottmenu "Hashes, digests, and MACs" 863f1f142adSRobert Elliott 864f1f142adSRobert Elliottconfig CRYPTO_BLAKE2B 8653f342a23SRobert Elliott tristate "BLAKE2b" 866f1f142adSRobert Elliott select CRYPTO_HASH 867f1f142adSRobert Elliott help 8683f342a23SRobert Elliott BLAKE2b cryptographic hash function (RFC 7693) 8693f342a23SRobert Elliott 8703f342a23SRobert Elliott BLAKE2b is optimized for 64-bit platforms and can produce digests 8713f342a23SRobert Elliott of any size between 1 and 64 bytes. The keyed hash is also implemented. 872f1f142adSRobert Elliott 873f1f142adSRobert Elliott This module provides the following algorithms: 874f1f142adSRobert Elliott - blake2b-160 875f1f142adSRobert Elliott - blake2b-256 876f1f142adSRobert Elliott - blake2b-384 877f1f142adSRobert Elliott - blake2b-512 878f1f142adSRobert Elliott 8793f342a23SRobert Elliott Used by the btrfs filesystem. 8803f342a23SRobert Elliott 8813f342a23SRobert Elliott See https://blake2.net for further information. 8823f342a23SRobert Elliott 883f1f142adSRobert Elliottconfig CRYPTO_CMAC 8843f342a23SRobert Elliott tristate "CMAC (Cipher-based MAC)" 885f1f142adSRobert Elliott select CRYPTO_HASH 886f1f142adSRobert Elliott select CRYPTO_MANAGER 887f1f142adSRobert Elliott help 8883f342a23SRobert Elliott CMAC (Cipher-based Message Authentication Code) authentication 8893f342a23SRobert Elliott mode (NIST SP800-38B and IETF RFC4493) 890f1f142adSRobert Elliott 891f1f142adSRobert Elliottconfig CRYPTO_GHASH 8923f342a23SRobert Elliott tristate "GHASH" 893f1f142adSRobert Elliott select CRYPTO_HASH 89461c581a4SArd Biesheuvel select CRYPTO_LIB_GF128MUL 895f1f142adSRobert Elliott help 8963f342a23SRobert Elliott GCM GHASH function (NIST SP800-38D) 897f1f142adSRobert Elliott 898f1f142adSRobert Elliottconfig CRYPTO_HMAC 8993f342a23SRobert Elliott tristate "HMAC (Keyed-Hash MAC)" 900f1f142adSRobert Elliott select CRYPTO_HASH 901f1f142adSRobert Elliott select CRYPTO_MANAGER 902f1f142adSRobert Elliott help 9033f342a23SRobert Elliott HMAC (Keyed-Hash Message Authentication Code) (FIPS 198 and 9043f342a23SRobert Elliott RFC2104) 9053f342a23SRobert Elliott 9063f342a23SRobert Elliott This is required for IPsec AH (XFRM_AH) and IPsec ESP (XFRM_ESP). 907f1f142adSRobert Elliott 908f1f142adSRobert Elliottconfig CRYPTO_MD4 9093f342a23SRobert Elliott tristate "MD4" 910f1f142adSRobert Elliott select CRYPTO_HASH 911f1f142adSRobert Elliott help 9123f342a23SRobert Elliott MD4 message digest algorithm (RFC1320) 913f1f142adSRobert Elliott 914f1f142adSRobert Elliottconfig CRYPTO_MD5 9153f342a23SRobert Elliott tristate "MD5" 916f1f142adSRobert Elliott select CRYPTO_HASH 917f1f142adSRobert Elliott help 9183f342a23SRobert Elliott MD5 message digest algorithm (RFC1321) 919f1f142adSRobert Elliott 920f1f142adSRobert Elliottconfig CRYPTO_MICHAEL_MIC 9213f342a23SRobert Elliott tristate "Michael MIC" 922f1f142adSRobert Elliott select CRYPTO_HASH 923f1f142adSRobert Elliott help 9243f342a23SRobert Elliott Michael MIC (Message Integrity Code) (IEEE 802.11i) 9253f342a23SRobert Elliott 9263f342a23SRobert Elliott Defined by the IEEE 802.11i TKIP (Temporal Key Integrity Protocol), 9273f342a23SRobert Elliott known as WPA (Wif-Fi Protected Access). 9283f342a23SRobert Elliott 9293f342a23SRobert Elliott This algorithm is required for TKIP, but it should not be used for 9303f342a23SRobert Elliott other purposes because of the weakness of the algorithm. 931f1f142adSRobert Elliott 932f1f142adSRobert Elliottconfig CRYPTO_POLYVAL 933f1f142adSRobert Elliott tristate 934f1f142adSRobert Elliott select CRYPTO_HASH 93561c581a4SArd Biesheuvel select CRYPTO_LIB_GF128MUL 936f1f142adSRobert Elliott help 9373f342a23SRobert Elliott POLYVAL hash function for HCTR2 9383f342a23SRobert Elliott 9393f342a23SRobert Elliott This is used in HCTR2. It is not a general-purpose 940f1f142adSRobert Elliott cryptographic hash function. 941f1f142adSRobert Elliott 942f1f142adSRobert Elliottconfig CRYPTO_POLY1305 9433f342a23SRobert Elliott tristate "Poly1305" 944f1f142adSRobert Elliott select CRYPTO_HASH 945f1f142adSRobert Elliott select CRYPTO_LIB_POLY1305_GENERIC 946f1f142adSRobert Elliott help 9473f342a23SRobert Elliott Poly1305 authenticator algorithm (RFC7539) 948f1f142adSRobert Elliott 949f1f142adSRobert Elliott Poly1305 is an authenticator algorithm designed by Daniel J. Bernstein. 950f1f142adSRobert Elliott It is used for the ChaCha20-Poly1305 AEAD, specified in RFC7539 for use 951f1f142adSRobert Elliott in IETF protocols. This is the portable C implementation of Poly1305. 952f1f142adSRobert Elliott 953f1f142adSRobert Elliottconfig CRYPTO_RMD160 9543f342a23SRobert Elliott tristate "RIPEMD-160" 955f1f142adSRobert Elliott select CRYPTO_HASH 956f1f142adSRobert Elliott help 9573f342a23SRobert Elliott RIPEMD-160 hash function (ISO/IEC 10118-3) 958f1f142adSRobert Elliott 959f1f142adSRobert Elliott RIPEMD-160 is a 160-bit cryptographic hash function. It is intended 960f1f142adSRobert Elliott to be used as a secure replacement for the 128-bit hash functions 961f1f142adSRobert Elliott MD4, MD5 and its predecessor RIPEMD 962f1f142adSRobert Elliott (not to be confused with RIPEMD-128). 963f1f142adSRobert Elliott 9643f342a23SRobert Elliott Its speed is comparable to SHA-1 and there are no known attacks 965f1f142adSRobert Elliott against RIPEMD-160. 966f1f142adSRobert Elliott 967f1f142adSRobert Elliott Developed by Hans Dobbertin, Antoon Bosselaers and Bart Preneel. 9683f342a23SRobert Elliott See https://homes.esat.kuleuven.be/~bosselae/ripemd160.html 9693f342a23SRobert Elliott for further information. 970f1f142adSRobert Elliott 971f1f142adSRobert Elliottconfig CRYPTO_SHA1 9723f342a23SRobert Elliott tristate "SHA-1" 973f1f142adSRobert Elliott select CRYPTO_HASH 974f1f142adSRobert Elliott select CRYPTO_LIB_SHA1 975f1f142adSRobert Elliott help 9763f342a23SRobert Elliott SHA-1 secure hash algorithm (FIPS 180, ISO/IEC 10118-3) 977f1f142adSRobert Elliott 978f1f142adSRobert Elliottconfig CRYPTO_SHA256 9793f342a23SRobert Elliott tristate "SHA-224 and SHA-256" 980f1f142adSRobert Elliott select CRYPTO_HASH 981f1f142adSRobert Elliott select CRYPTO_LIB_SHA256 982f1f142adSRobert Elliott help 9833f342a23SRobert Elliott SHA-224 and SHA-256 secure hash algorithms (FIPS 180, ISO/IEC 10118-3) 984f1f142adSRobert Elliott 9853f342a23SRobert Elliott This is required for IPsec AH (XFRM_AH) and IPsec ESP (XFRM_ESP). 9863f342a23SRobert Elliott Used by the btrfs filesystem, Ceph, NFS, and SMB. 987f1f142adSRobert Elliott 988f1f142adSRobert Elliottconfig CRYPTO_SHA512 9893f342a23SRobert Elliott tristate "SHA-384 and SHA-512" 990f1f142adSRobert Elliott select CRYPTO_HASH 991f1f142adSRobert Elliott help 9923f342a23SRobert Elliott SHA-384 and SHA-512 secure hash algorithms (FIPS 180, ISO/IEC 10118-3) 993f1f142adSRobert Elliott 994f1f142adSRobert Elliottconfig CRYPTO_SHA3 9953f342a23SRobert Elliott tristate "SHA-3" 996f1f142adSRobert Elliott select CRYPTO_HASH 997f1f142adSRobert Elliott help 9983f342a23SRobert Elliott SHA-3 secure hash algorithms (FIPS 202, ISO/IEC 10118-3) 999f1f142adSRobert Elliott 1000f1f142adSRobert Elliottconfig CRYPTO_SM3 1001f1f142adSRobert Elliott tristate 1002f1f142adSRobert Elliott 1003f1f142adSRobert Elliottconfig CRYPTO_SM3_GENERIC 10043f342a23SRobert Elliott tristate "SM3 (ShangMi 3)" 1005f1f142adSRobert Elliott select CRYPTO_HASH 1006f1f142adSRobert Elliott select CRYPTO_SM3 1007f1f142adSRobert Elliott help 10083f342a23SRobert Elliott SM3 (ShangMi 3) secure hash function (OSCCA GM/T 0004-2012, ISO/IEC 10118-3) 10093f342a23SRobert Elliott 10103f342a23SRobert Elliott This is part of the Chinese Commercial Cryptography suite. 1011f1f142adSRobert Elliott 1012f1f142adSRobert Elliott References: 1013f1f142adSRobert Elliott http://www.oscca.gov.cn/UpFile/20101222141857786.pdf 1014f1f142adSRobert Elliott https://datatracker.ietf.org/doc/html/draft-shen-sm3-hash 1015f1f142adSRobert Elliott 1016f1f142adSRobert Elliottconfig CRYPTO_STREEBOG 10173f342a23SRobert Elliott tristate "Streebog" 1018f1f142adSRobert Elliott select CRYPTO_HASH 1019f1f142adSRobert Elliott help 10203f342a23SRobert Elliott Streebog Hash Function (GOST R 34.11-2012, RFC 6986, ISO/IEC 10118-3) 10213f342a23SRobert Elliott 10223f342a23SRobert Elliott This is one of the Russian cryptographic standard algorithms (called 10233f342a23SRobert Elliott GOST algorithms). This setting enables two hash algorithms with 10243f342a23SRobert Elliott 256 and 512 bits output. 1025f1f142adSRobert Elliott 1026f1f142adSRobert Elliott References: 1027f1f142adSRobert Elliott https://tc26.ru/upload/iblock/fed/feddbb4d26b685903faa2ba11aea43f6.pdf 1028f1f142adSRobert Elliott https://tools.ietf.org/html/rfc6986 1029f1f142adSRobert Elliott 1030f1f142adSRobert Elliottconfig CRYPTO_WP512 10313f342a23SRobert Elliott tristate "Whirlpool" 1032f1f142adSRobert Elliott select CRYPTO_HASH 1033f1f142adSRobert Elliott help 10343f342a23SRobert Elliott Whirlpool hash function (ISO/IEC 10118-3) 10353f342a23SRobert Elliott 10363f342a23SRobert Elliott 512, 384 and 256-bit hashes. 1037f1f142adSRobert Elliott 1038f1f142adSRobert Elliott Whirlpool-512 is part of the NESSIE cryptographic primitives. 1039f1f142adSRobert Elliott 10403f342a23SRobert Elliott See https://web.archive.org/web/20171129084214/http://www.larc.usp.br/~pbarreto/WhirlpoolPage.html 10413f342a23SRobert Elliott for further information. 1042f1f142adSRobert Elliott 1043f1f142adSRobert Elliottconfig CRYPTO_XCBC 10443f342a23SRobert Elliott tristate "XCBC-MAC (Extended Cipher Block Chaining MAC)" 1045f1f142adSRobert Elliott select CRYPTO_HASH 1046f1f142adSRobert Elliott select CRYPTO_MANAGER 1047f1f142adSRobert Elliott help 10483f342a23SRobert Elliott XCBC-MAC (Extended Cipher Block Chaining Message Authentication 10493f342a23SRobert Elliott Code) (RFC3566) 1050f1f142adSRobert Elliott 1051f1f142adSRobert Elliottconfig CRYPTO_XXHASH 10523f342a23SRobert Elliott tristate "xxHash" 1053f1f142adSRobert Elliott select CRYPTO_HASH 1054f1f142adSRobert Elliott select XXHASH 1055f1f142adSRobert Elliott help 10563f342a23SRobert Elliott xxHash non-cryptographic hash algorithm 10573f342a23SRobert Elliott 10583f342a23SRobert Elliott Extremely fast, working at speeds close to RAM limits. 10593f342a23SRobert Elliott 10603f342a23SRobert Elliott Used by the btrfs filesystem. 1061f1f142adSRobert Elliott 1062f1f142adSRobert Elliottendmenu 1063f1f142adSRobert Elliott 1064f1f142adSRobert Elliottmenu "CRCs (cyclic redundancy checks)" 1065f1f142adSRobert Elliott 1066f1f142adSRobert Elliottconfig CRYPTO_CRC32C 1067ec84348dSRobert Elliott tristate "CRC32c" 1068f1f142adSRobert Elliott select CRYPTO_HASH 1069f1f142adSRobert Elliott select CRC32 1070f1f142adSRobert Elliott help 1071ec84348dSRobert Elliott CRC32c CRC algorithm with the iSCSI polynomial (RFC 3385 and RFC 3720) 1072ec84348dSRobert Elliott 1073ec84348dSRobert Elliott A 32-bit CRC (cyclic redundancy check) with a polynomial defined 1074ec84348dSRobert Elliott by G. Castagnoli, S. Braeuer and M. Herrman in "Optimization of Cyclic 1075ec84348dSRobert Elliott Redundancy-Check Codes with 24 and 32 Parity Bits", IEEE Transactions 1076ec84348dSRobert Elliott on Communications, Vol. 41, No. 6, June 1993, selected for use with 1077ec84348dSRobert Elliott iSCSI. 1078ec84348dSRobert Elliott 1079ec84348dSRobert Elliott Used by btrfs, ext4, jbd2, NVMeoF/TCP, and iSCSI. 1080f1f142adSRobert Elliott 1081f1f142adSRobert Elliottconfig CRYPTO_CRC32 1082ec84348dSRobert Elliott tristate "CRC32" 1083f1f142adSRobert Elliott select CRYPTO_HASH 1084f1f142adSRobert Elliott select CRC32 1085f1f142adSRobert Elliott help 1086ec84348dSRobert Elliott CRC32 CRC algorithm (IEEE 802.3) 1087ec84348dSRobert Elliott 1088ec84348dSRobert Elliott Used by RoCEv2 and f2fs. 1089f1f142adSRobert Elliott 1090f1f142adSRobert Elliottconfig CRYPTO_CRCT10DIF 1091ec84348dSRobert Elliott tristate "CRCT10DIF" 1092f1f142adSRobert Elliott select CRYPTO_HASH 1093be3c45b0SEric Biggers select CRC_T10DIF 1094f1f142adSRobert Elliott help 1095ec84348dSRobert Elliott CRC16 CRC algorithm used for the T10 (SCSI) Data Integrity Field (DIF) 1096ec84348dSRobert Elliott 1097ec84348dSRobert Elliott CRC algorithm used by the SCSI Block Commands standard. 1098f1f142adSRobert Elliott 1099f1f142adSRobert Elliottconfig CRYPTO_CRC64_ROCKSOFT 1100ec84348dSRobert Elliott tristate "CRC64 based on Rocksoft Model algorithm" 1101f1f142adSRobert Elliott depends on CRC64 1102f1f142adSRobert Elliott select CRYPTO_HASH 1103ec84348dSRobert Elliott help 1104ec84348dSRobert Elliott CRC64 CRC algorithm based on the Rocksoft Model CRC Algorithm 1105ec84348dSRobert Elliott 1106ec84348dSRobert Elliott Used by the NVMe implementation of T10 DIF (BLK_DEV_INTEGRITY) 1107ec84348dSRobert Elliott 1108ec84348dSRobert Elliott See https://zlib.net/crc_v3.txt 1109f1f142adSRobert Elliott 1110f1f142adSRobert Elliottendmenu 1111f1f142adSRobert Elliott 1112f1f142adSRobert Elliottmenu "Compression" 1113584fffc8SSebastian Siewior 11141da177e4SLinus Torvaldsconfig CRYPTO_DEFLATE 1115a9a98d49SRobert Elliott tristate "Deflate" 1116cce9e06dSHerbert Xu select CRYPTO_ALGAPI 1117f6ded09dSGiovanni Cabiddu select CRYPTO_ACOMP2 11181da177e4SLinus Torvalds select ZLIB_INFLATE 11191da177e4SLinus Torvalds select ZLIB_DEFLATE 11201da177e4SLinus Torvalds help 1121a9a98d49SRobert Elliott Deflate compression algorithm (RFC1951) 11221da177e4SLinus Torvalds 1123a9a98d49SRobert Elliott Used by IPSec with the IPCOMP protocol (RFC3173, RFC2394) 11241da177e4SLinus Torvalds 11250b77abb3SZoltan Sogorconfig CRYPTO_LZO 1126a9a98d49SRobert Elliott tristate "LZO" 11270b77abb3SZoltan Sogor select CRYPTO_ALGAPI 1128ac9d2c4bSGiovanni Cabiddu select CRYPTO_ACOMP2 11290b77abb3SZoltan Sogor select LZO_COMPRESS 11300b77abb3SZoltan Sogor select LZO_DECOMPRESS 11310b77abb3SZoltan Sogor help 1132a9a98d49SRobert Elliott LZO compression algorithm 1133a9a98d49SRobert Elliott 1134a9a98d49SRobert Elliott See https://www.oberhumer.com/opensource/lzo/ for further information. 11350b77abb3SZoltan Sogor 113635a1fc18SSeth Jenningsconfig CRYPTO_842 1137a9a98d49SRobert Elliott tristate "842" 11382062c5b6SDan Streetman select CRYPTO_ALGAPI 11396a8de3aeSGiovanni Cabiddu select CRYPTO_ACOMP2 11402062c5b6SDan Streetman select 842_COMPRESS 11412062c5b6SDan Streetman select 842_DECOMPRESS 114235a1fc18SSeth Jennings help 1143a9a98d49SRobert Elliott 842 compression algorithm by IBM 1144a9a98d49SRobert Elliott 1145a9a98d49SRobert Elliott See https://github.com/plauth/lib842 for further information. 114635a1fc18SSeth Jennings 11470ea8530dSChanho Minconfig CRYPTO_LZ4 1148a9a98d49SRobert Elliott tristate "LZ4" 11490ea8530dSChanho Min select CRYPTO_ALGAPI 11508cd9330eSGiovanni Cabiddu select CRYPTO_ACOMP2 11510ea8530dSChanho Min select LZ4_COMPRESS 11520ea8530dSChanho Min select LZ4_DECOMPRESS 11530ea8530dSChanho Min help 1154a9a98d49SRobert Elliott LZ4 compression algorithm 1155a9a98d49SRobert Elliott 1156a9a98d49SRobert Elliott See https://github.com/lz4/lz4 for further information. 11570ea8530dSChanho Min 11580ea8530dSChanho Minconfig CRYPTO_LZ4HC 1159a9a98d49SRobert Elliott tristate "LZ4HC" 11600ea8530dSChanho Min select CRYPTO_ALGAPI 116191d53d96SGiovanni Cabiddu select CRYPTO_ACOMP2 11620ea8530dSChanho Min select LZ4HC_COMPRESS 11630ea8530dSChanho Min select LZ4_DECOMPRESS 11640ea8530dSChanho Min help 1165a9a98d49SRobert Elliott LZ4 high compression mode algorithm 1166a9a98d49SRobert Elliott 1167a9a98d49SRobert Elliott See https://github.com/lz4/lz4 for further information. 11680ea8530dSChanho Min 1169d28fc3dbSNick Terrellconfig CRYPTO_ZSTD 1170a9a98d49SRobert Elliott tristate "Zstd" 1171d28fc3dbSNick Terrell select CRYPTO_ALGAPI 1172d28fc3dbSNick Terrell select CRYPTO_ACOMP2 1173d28fc3dbSNick Terrell select ZSTD_COMPRESS 1174d28fc3dbSNick Terrell select ZSTD_DECOMPRESS 1175d28fc3dbSNick Terrell help 1176a9a98d49SRobert Elliott zstd compression algorithm 1177a9a98d49SRobert Elliott 1178a9a98d49SRobert Elliott See https://github.com/facebook/zstd for further information. 1179d28fc3dbSNick Terrell 1180f1f142adSRobert Elliottendmenu 1181f1f142adSRobert Elliott 1182f1f142adSRobert Elliottmenu "Random number generation" 118317f0f4a4SNeil Horman 118417f0f4a4SNeil Hormanconfig CRYPTO_ANSI_CPRNG 1185a9a98d49SRobert Elliott tristate "ANSI PRNG (Pseudo Random Number Generator)" 118617f0f4a4SNeil Horman select CRYPTO_AES 118717f0f4a4SNeil Horman select CRYPTO_RNG 118817f0f4a4SNeil Horman help 1189a9a98d49SRobert Elliott Pseudo RNG (random number generator) (ANSI X9.31 Appendix A.2.4) 1190a9a98d49SRobert Elliott 1191a9a98d49SRobert Elliott This uses the AES cipher algorithm. 1192a9a98d49SRobert Elliott 1193a9a98d49SRobert Elliott Note that this option must be enabled if CRYPTO_FIPS is selected 119417f0f4a4SNeil Horman 1195f2c89a10SHerbert Xumenuconfig CRYPTO_DRBG_MENU 1196a9a98d49SRobert Elliott tristate "NIST SP800-90A DRBG (Deterministic Random Bit Generator)" 1197419090c6SStephan Mueller help 1198a9a98d49SRobert Elliott DRBG (Deterministic Random Bit Generator) (NIST SP800-90A) 1199a9a98d49SRobert Elliott 1200a9a98d49SRobert Elliott In the following submenu, one or more of the DRBG types must be selected. 1201419090c6SStephan Mueller 1202f2c89a10SHerbert Xuif CRYPTO_DRBG_MENU 1203419090c6SStephan Mueller 1204419090c6SStephan Muellerconfig CRYPTO_DRBG_HMAC 1205401e4238SHerbert Xu bool 1206419090c6SStephan Mueller default y 1207419090c6SStephan Mueller select CRYPTO_HMAC 12085261cdf4SStephan Mueller select CRYPTO_SHA512 1209419090c6SStephan Mueller 1210419090c6SStephan Muellerconfig CRYPTO_DRBG_HASH 1211a9a98d49SRobert Elliott bool "Hash_DRBG" 1212826775bbSHerbert Xu select CRYPTO_SHA256 1213419090c6SStephan Mueller help 1214a9a98d49SRobert Elliott Hash_DRBG variant as defined in NIST SP800-90A. 1215a9a98d49SRobert Elliott 1216a9a98d49SRobert Elliott This uses the SHA-1, SHA-256, SHA-384, or SHA-512 hash algorithms. 1217419090c6SStephan Mueller 1218419090c6SStephan Muellerconfig CRYPTO_DRBG_CTR 1219a9a98d49SRobert Elliott bool "CTR_DRBG" 1220419090c6SStephan Mueller select CRYPTO_AES 1221d6fc1a45SCorentin Labbe select CRYPTO_CTR 1222419090c6SStephan Mueller help 1223a9a98d49SRobert Elliott CTR_DRBG variant as defined in NIST SP800-90A. 1224a9a98d49SRobert Elliott 1225a9a98d49SRobert Elliott This uses the AES cipher algorithm with the counter block mode. 1226419090c6SStephan Mueller 1227f2c89a10SHerbert Xuconfig CRYPTO_DRBG 1228f2c89a10SHerbert Xu tristate 1229401e4238SHerbert Xu default CRYPTO_DRBG_MENU 1230f2c89a10SHerbert Xu select CRYPTO_RNG 1231bb5530e4SStephan Mueller select CRYPTO_JITTERENTROPY 1232f2c89a10SHerbert Xu 1233f2c89a10SHerbert Xuendif # if CRYPTO_DRBG_MENU 1234419090c6SStephan Mueller 1235bb5530e4SStephan Muellerconfig CRYPTO_JITTERENTROPY 1236a9a98d49SRobert Elliott tristate "CPU Jitter Non-Deterministic RNG (Random Number Generator)" 12372f313e02SArnd Bergmann select CRYPTO_RNG 1238bb897c55SStephan Müller select CRYPTO_SHA3 1239bb5530e4SStephan Mueller help 1240a9a98d49SRobert Elliott CPU Jitter RNG (Random Number Generator) from the Jitterentropy library 1241a9a98d49SRobert Elliott 1242a9a98d49SRobert Elliott A non-physical non-deterministic ("true") RNG (e.g., an entropy source 1243a9a98d49SRobert Elliott compliant with NIST SP800-90B) intended to provide a seed to a 1244e63df1ecSRandy Dunlap deterministic RNG (e.g., per NIST SP800-90C). 1245a9a98d49SRobert Elliott This RNG does not perform any cryptographic whitening of the generated 1246e63df1ecSRandy Dunlap random numbers. 1247a9a98d49SRobert Elliott 1248e63df1ecSRandy Dunlap See https://www.chronox.de/jent/ 1249bb5530e4SStephan Mueller 1250e7ed6473SHerbert Xuif CRYPTO_JITTERENTROPY 1251e7ed6473SHerbert Xuif CRYPTO_FIPS && EXPERT 1252e7ed6473SHerbert Xu 125359bcfd78SStephan Müllerchoice 125459bcfd78SStephan Müller prompt "CPU Jitter RNG Memory Size" 125559bcfd78SStephan Müller default CRYPTO_JITTERENTROPY_MEMSIZE_2 125659bcfd78SStephan Müller help 125759bcfd78SStephan Müller The Jitter RNG measures the execution time of memory accesses. 125859bcfd78SStephan Müller Multiple consecutive memory accesses are performed. If the memory 125959bcfd78SStephan Müller size fits into a cache (e.g. L1), only the memory access timing 126059bcfd78SStephan Müller to that cache is measured. The closer the cache is to the CPU 126159bcfd78SStephan Müller the less variations are measured and thus the less entropy is 126259bcfd78SStephan Müller obtained. Thus, if the memory size fits into the L1 cache, the 126359bcfd78SStephan Müller obtained entropy is less than if the memory size fits within 126459bcfd78SStephan Müller L1 + L2, which in turn is less if the memory fits into 126559bcfd78SStephan Müller L1 + L2 + L3. Thus, by selecting a different memory size, 126659bcfd78SStephan Müller the entropy rate produced by the Jitter RNG can be modified. 126759bcfd78SStephan Müller 126859bcfd78SStephan Müller config CRYPTO_JITTERENTROPY_MEMSIZE_2 126959bcfd78SStephan Müller bool "2048 Bytes (default)" 127059bcfd78SStephan Müller 127159bcfd78SStephan Müller config CRYPTO_JITTERENTROPY_MEMSIZE_128 127259bcfd78SStephan Müller bool "128 kBytes" 127359bcfd78SStephan Müller 127459bcfd78SStephan Müller config CRYPTO_JITTERENTROPY_MEMSIZE_1024 127559bcfd78SStephan Müller bool "1024 kBytes" 127659bcfd78SStephan Müller 127759bcfd78SStephan Müller config CRYPTO_JITTERENTROPY_MEMSIZE_8192 127859bcfd78SStephan Müller bool "8192 kBytes" 127959bcfd78SStephan Müllerendchoice 128059bcfd78SStephan Müller 128159bcfd78SStephan Müllerconfig CRYPTO_JITTERENTROPY_MEMORY_BLOCKS 128259bcfd78SStephan Müller int 128359bcfd78SStephan Müller default 64 if CRYPTO_JITTERENTROPY_MEMSIZE_2 128459bcfd78SStephan Müller default 512 if CRYPTO_JITTERENTROPY_MEMSIZE_128 128559bcfd78SStephan Müller default 1024 if CRYPTO_JITTERENTROPY_MEMSIZE_1024 128659bcfd78SStephan Müller default 4096 if CRYPTO_JITTERENTROPY_MEMSIZE_8192 128759bcfd78SStephan Müller 128859bcfd78SStephan Müllerconfig CRYPTO_JITTERENTROPY_MEMORY_BLOCKSIZE 128959bcfd78SStephan Müller int 129059bcfd78SStephan Müller default 32 if CRYPTO_JITTERENTROPY_MEMSIZE_2 129159bcfd78SStephan Müller default 256 if CRYPTO_JITTERENTROPY_MEMSIZE_128 129259bcfd78SStephan Müller default 1024 if CRYPTO_JITTERENTROPY_MEMSIZE_1024 129359bcfd78SStephan Müller default 2048 if CRYPTO_JITTERENTROPY_MEMSIZE_8192 129459bcfd78SStephan Müller 12950baa8fabSStephan Müllerconfig CRYPTO_JITTERENTROPY_OSR 12960baa8fabSStephan Müller int "CPU Jitter RNG Oversampling Rate" 12970baa8fabSStephan Müller range 1 15 129895a798d2SStephan Mueller default 3 12990baa8fabSStephan Müller help 13000baa8fabSStephan Müller The Jitter RNG allows the specification of an oversampling rate (OSR). 13010baa8fabSStephan Müller The Jitter RNG operation requires a fixed amount of timing 13020baa8fabSStephan Müller measurements to produce one output block of random numbers. The 13030baa8fabSStephan Müller OSR value is multiplied with the amount of timing measurements to 13040baa8fabSStephan Müller generate one output block. Thus, the timing measurement is oversampled 13050baa8fabSStephan Müller by the OSR factor. The oversampling allows the Jitter RNG to operate 13060baa8fabSStephan Müller on hardware whose timers deliver limited amount of entropy (e.g. 13070baa8fabSStephan Müller the timer is coarse) by setting the OSR to a higher value. The 13080baa8fabSStephan Müller trade-off, however, is that the Jitter RNG now requires more time 13090baa8fabSStephan Müller to generate random numbers. 13100baa8fabSStephan Müller 131169f1c387SStephan Müllerconfig CRYPTO_JITTERENTROPY_TESTINTERFACE 131269f1c387SStephan Müller bool "CPU Jitter RNG Test Interface" 131369f1c387SStephan Müller help 131469f1c387SStephan Müller The test interface allows a privileged process to capture 131569f1c387SStephan Müller the raw unconditioned high resolution time stamp noise that 131669f1c387SStephan Müller is collected by the Jitter RNG for statistical analysis. As 131769f1c387SStephan Müller this data is used at the same time to generate random bits, 131869f1c387SStephan Müller the Jitter RNG operates in an insecure mode as long as the 131969f1c387SStephan Müller recording is enabled. This interface therefore is only 132069f1c387SStephan Müller intended for testing purposes and is not suitable for 132169f1c387SStephan Müller production systems. 132269f1c387SStephan Müller 132369f1c387SStephan Müller The raw noise data can be obtained using the jent_raw_hires 132469f1c387SStephan Müller debugfs file. Using the option 132569f1c387SStephan Müller jitterentropy_testing.boot_raw_hires_test=1 the raw noise of 132669f1c387SStephan Müller the first 1000 entropy events since boot can be sampled. 132769f1c387SStephan Müller 132869f1c387SStephan Müller If unsure, select N. 132969f1c387SStephan Müller 1330e7ed6473SHerbert Xuendif # if CRYPTO_FIPS && EXPERT 1331e7ed6473SHerbert Xu 1332e7ed6473SHerbert Xuif !(CRYPTO_FIPS && EXPERT) 1333e7ed6473SHerbert Xu 1334e7ed6473SHerbert Xuconfig CRYPTO_JITTERENTROPY_MEMORY_BLOCKS 1335e7ed6473SHerbert Xu int 1336e7ed6473SHerbert Xu default 64 1337e7ed6473SHerbert Xu 1338e7ed6473SHerbert Xuconfig CRYPTO_JITTERENTROPY_MEMORY_BLOCKSIZE 1339e7ed6473SHerbert Xu int 1340e7ed6473SHerbert Xu default 32 1341e7ed6473SHerbert Xu 1342e7ed6473SHerbert Xuconfig CRYPTO_JITTERENTROPY_OSR 1343e7ed6473SHerbert Xu int 1344e7ed6473SHerbert Xu default 1 1345e7ed6473SHerbert Xu 1346e7ed6473SHerbert Xuconfig CRYPTO_JITTERENTROPY_TESTINTERFACE 1347e7ed6473SHerbert Xu bool 1348e7ed6473SHerbert Xu 1349e7ed6473SHerbert Xuendif # if !(CRYPTO_FIPS && EXPERT) 1350e7ed6473SHerbert Xuendif # if CRYPTO_JITTERENTROPY 1351e7ed6473SHerbert Xu 1352026a733eSStephan Müllerconfig CRYPTO_KDF800108_CTR 1353026a733eSStephan Müller tristate 1354a88592ccSHerbert Xu select CRYPTO_HMAC 1355304b4aceSStephan Müller select CRYPTO_SHA256 1356026a733eSStephan Müller 1357f1f142adSRobert Elliottendmenu 13589bc51715SRobert Elliottmenu "Userspace interface" 1359f1f142adSRobert Elliott 136003c8efc1SHerbert Xuconfig CRYPTO_USER_API 136103c8efc1SHerbert Xu tristate 136203c8efc1SHerbert Xu 1363fe869cdbSHerbert Xuconfig CRYPTO_USER_API_HASH 13649bc51715SRobert Elliott tristate "Hash algorithms" 13657451708fSHerbert Xu depends on NET 1366fe869cdbSHerbert Xu select CRYPTO_HASH 1367fe869cdbSHerbert Xu select CRYPTO_USER_API 1368fe869cdbSHerbert Xu help 13699bc51715SRobert Elliott Enable the userspace interface for hash algorithms. 13709bc51715SRobert Elliott 13719bc51715SRobert Elliott See Documentation/crypto/userspace-if.rst and 13729bc51715SRobert Elliott https://www.chronox.de/libkcapi/html/index.html 1373fe869cdbSHerbert Xu 13748ff59090SHerbert Xuconfig CRYPTO_USER_API_SKCIPHER 13759bc51715SRobert Elliott tristate "Symmetric key cipher algorithms" 13767451708fSHerbert Xu depends on NET 1377b95bba5dSEric Biggers select CRYPTO_SKCIPHER 13788ff59090SHerbert Xu select CRYPTO_USER_API 13798ff59090SHerbert Xu help 13809bc51715SRobert Elliott Enable the userspace interface for symmetric key cipher algorithms. 13819bc51715SRobert Elliott 13829bc51715SRobert Elliott See Documentation/crypto/userspace-if.rst and 13839bc51715SRobert Elliott https://www.chronox.de/libkcapi/html/index.html 13848ff59090SHerbert Xu 13852f375538SStephan Muellerconfig CRYPTO_USER_API_RNG 13869bc51715SRobert Elliott tristate "RNG (random number generator) algorithms" 13872f375538SStephan Mueller depends on NET 13882f375538SStephan Mueller select CRYPTO_RNG 13892f375538SStephan Mueller select CRYPTO_USER_API 13902f375538SStephan Mueller help 13919bc51715SRobert Elliott Enable the userspace interface for RNG (random number generator) 13929bc51715SRobert Elliott algorithms. 13939bc51715SRobert Elliott 13949bc51715SRobert Elliott See Documentation/crypto/userspace-if.rst and 13959bc51715SRobert Elliott https://www.chronox.de/libkcapi/html/index.html 13962f375538SStephan Mueller 139777ebdabeSElena Petrovaconfig CRYPTO_USER_API_RNG_CAVP 139877ebdabeSElena Petrova bool "Enable CAVP testing of DRBG" 139977ebdabeSElena Petrova depends on CRYPTO_USER_API_RNG && CRYPTO_DRBG 140077ebdabeSElena Petrova help 14019bc51715SRobert Elliott Enable extra APIs in the userspace interface for NIST CAVP 14029bc51715SRobert Elliott (Cryptographic Algorithm Validation Program) testing: 14039bc51715SRobert Elliott - resetting DRBG entropy 14049bc51715SRobert Elliott - providing Additional Data 14059bc51715SRobert Elliott 140677ebdabeSElena Petrova This should only be enabled for CAVP testing. You should say 140777ebdabeSElena Petrova no unless you know what this is. 140877ebdabeSElena Petrova 1409b64a2d95SHerbert Xuconfig CRYPTO_USER_API_AEAD 14109bc51715SRobert Elliott tristate "AEAD cipher algorithms" 1411b64a2d95SHerbert Xu depends on NET 1412b64a2d95SHerbert Xu select CRYPTO_AEAD 1413b95bba5dSEric Biggers select CRYPTO_SKCIPHER 141472548b09SStephan Mueller select CRYPTO_NULL 1415b64a2d95SHerbert Xu select CRYPTO_USER_API 1416b64a2d95SHerbert Xu help 14179bc51715SRobert Elliott Enable the userspace interface for AEAD cipher algorithms. 14189bc51715SRobert Elliott 14199bc51715SRobert Elliott See Documentation/crypto/userspace-if.rst and 14209bc51715SRobert Elliott https://www.chronox.de/libkcapi/html/index.html 1421b64a2d95SHerbert Xu 14229ace6771SArd Biesheuvelconfig CRYPTO_USER_API_ENABLE_OBSOLETE 14239bc51715SRobert Elliott bool "Obsolete cryptographic algorithms" 14249ace6771SArd Biesheuvel depends on CRYPTO_USER_API 14259ace6771SArd Biesheuvel default y 14269ace6771SArd Biesheuvel help 14279ace6771SArd Biesheuvel Allow obsolete cryptographic algorithms to be selected that have 14289ace6771SArd Biesheuvel already been phased out from internal use by the kernel, and are 14299ace6771SArd Biesheuvel only useful for userspace clients that still rely on them. 14309ace6771SArd Biesheuvel 1431f1f142adSRobert Elliottendmenu 1432f1f142adSRobert Elliott 1433ee08997fSDmitry Kasatkinconfig CRYPTO_HASH_INFO 1434ee08997fSDmitry Kasatkin bool 1435ee08997fSDmitry Kasatkin 143627bc50fcSLinus Torvaldsif !KMSAN # avoid false positives from assembly 14374a329fecSRobert Elliottif ARM 14384a329fecSRobert Elliottsource "arch/arm/crypto/Kconfig" 14394a329fecSRobert Elliottendif 14404a329fecSRobert Elliottif ARM64 14414a329fecSRobert Elliottsource "arch/arm64/crypto/Kconfig" 14424a329fecSRobert Elliottendif 14432f164822SMin Zhouif LOONGARCH 14442f164822SMin Zhousource "arch/loongarch/crypto/Kconfig" 14452f164822SMin Zhouendif 1446e45f710bSRobert Elliottif MIPS 1447e45f710bSRobert Elliottsource "arch/mips/crypto/Kconfig" 1448e45f710bSRobert Elliottendif 14496a490a4eSRobert Elliottif PPC 14506a490a4eSRobert Elliottsource "arch/powerpc/crypto/Kconfig" 14516a490a4eSRobert Elliottendif 1452178f3856SHeiko Stuebnerif RISCV 1453178f3856SHeiko Stuebnersource "arch/riscv/crypto/Kconfig" 1454178f3856SHeiko Stuebnerendif 1455c9d24c97SRobert Elliottif S390 1456c9d24c97SRobert Elliottsource "arch/s390/crypto/Kconfig" 1457c9d24c97SRobert Elliottendif 14580e9f9ea6SRobert Elliottif SPARC 14590e9f9ea6SRobert Elliottsource "arch/sparc/crypto/Kconfig" 14600e9f9ea6SRobert Elliottendif 146128a936efSRobert Elliottif X86 146228a936efSRobert Elliottsource "arch/x86/crypto/Kconfig" 146328a936efSRobert Elliottendif 146427bc50fcSLinus Torvaldsendif 1465e45f710bSRobert Elliott 14661da177e4SLinus Torvaldssource "drivers/crypto/Kconfig" 14678636a1f9SMasahiro Yamadasource "crypto/asymmetric_keys/Kconfig" 14688636a1f9SMasahiro Yamadasource "certs/Kconfig" 14691da177e4SLinus Torvalds 1470cce9e06dSHerbert Xuendif # if CRYPTO 1471