/usr/src/linux-headers-5.15.0-190/include/crypto
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internal/-0755rm
acompress.h90730644editdlrm
aead.h188320644editdlrm
aes.h25630644editdlrm
akcipher.h132320644editdlrm
algapi.h75450644editdlrm
arc4.h4840644editdlrm
asym_tpm_subtype.h5210644editdlrm
authenc.h6350644editdlrm
b128ops.h24710644editdlrm
blake2b.h16370644editdlrm
blake2s.h26800644editdlrm
blowfish.h4150644editdlrm
cast5.h5900644editdlrm
cast6.h6070644editdlrm
cast_common.h2320644editdlrm
chacha.h33950644editdlrm
chacha20poly1305.h16990644editdlrm
cryptd.h20500644editdlrm
ctr.h14560644editdlrm
curve25519.h20650644editdlrm
des.h17240644editdlrm
dh.h25740644editdlrm
drbg.h92090644editdlrm
ecc_curve.h13370644editdlrm
ecdh.h24870644editdlrm
engine.h42090644editdlrm
gcm.h8670644editdlrm
gf128mul.h96470644editdlrm
ghash.h3880644editdlrm
hash.h348590644editdlrm
hash_info.h9980644editdlrm
hmac.h1730644editdlrm
if_alg.h68440644editdlrm
kpp.h101440644editdlrm
md5.h4970644editdlrm
nhpoly1305.h22360644editdlrm
null.h3460644editdlrm
padlock.h4380644editdlrm
pcrypt.h8150644editdlrm
pkcs7.h11810644editdlrm
poly1305.h25000644editdlrm
public_key.h24400644editdlrm
rng.h67480644editdlrm
scatterwalk.h39890644editdlrm
serpent.h6960644editdlrm
sha1.h12100644editdlrm
sha1_base.h25120644editdlrm
sha2.h38490644editdlrm
sha3.h8790644editdlrm
sha256_base.h26210644editdlrm
sha512_base.h32550644editdlrm
skcipher.h204280644editdlrm
sm2.h7490644editdlrm
sm3.h8970644editdlrm
sm3_base.h26080644editdlrm
sm4.h11440644editdlrm
streebog.h9490644editdlrm
twofish.h7430644editdlrm
xts.h11250644editdlrm
Edit: /usr/src/linux-headers-5.15.0-190/include/crypto/sha512_base.h (3255B)
/* SPDX-License-Identifier: GPL-2.0-only */ /* * sha512_base.h - core logic for SHA-512 implementations * * Copyright (C) 2015 Linaro Ltd */ #ifndef _CRYPTO_SHA512_BASE_H #define _CRYPTO_SHA512_BASE_H #include #include #include #include #include #include typedef void (sha512_block_fn)(struct sha512_state *sst, u8 const *src, int blocks); static inline int sha384_base_init(struct shash_desc *desc) { struct sha512_state *sctx = shash_desc_ctx(desc); sctx->state[0] = SHA384_H0; sctx->state[1] = SHA384_H1; sctx->state[2] = SHA384_H2; sctx->state[3] = SHA384_H3; sctx->state[4] = SHA384_H4; sctx->state[5] = SHA384_H5; sctx->state[6] = SHA384_H6; sctx->state[7] = SHA384_H7; sctx->count[0] = sctx->count[1] = 0; return 0; } static inline int sha512_base_init(struct shash_desc *desc) { struct sha512_state *sctx = shash_desc_ctx(desc); sctx->state[0] = SHA512_H0; sctx->state[1] = SHA512_H1; sctx->state[2] = SHA512_H2; sctx->state[3] = SHA512_H3; sctx->state[4] = SHA512_H4; sctx->state[5] = SHA512_H5; sctx->state[6] = SHA512_H6; sctx->state[7] = SHA512_H7; sctx->count[0] = sctx->count[1] = 0; return 0; } static inline int sha512_base_do_update(struct shash_desc *desc, const u8 *data, unsigned int len, sha512_block_fn *block_fn) { struct sha512_state *sctx = shash_desc_ctx(desc); unsigned int partial = sctx->count[0] % SHA512_BLOCK_SIZE; sctx->count[0] += len; if (sctx->count[0] < len) sctx->count[1]++; if (unlikely((partial + len) >= SHA512_BLOCK_SIZE)) { int blocks; if (partial) { int p = SHA512_BLOCK_SIZE - partial; memcpy(sctx->buf + partial, data, p); data += p; len -= p; block_fn(sctx, sctx->buf, 1); } blocks = len / SHA512_BLOCK_SIZE; len %= SHA512_BLOCK_SIZE; if (blocks) { block_fn(sctx, data, blocks); data += blocks * SHA512_BLOCK_SIZE; } partial = 0; } if (len) memcpy(sctx->buf + partial, data, len); return 0; } static inline int sha512_base_do_finalize(struct shash_desc *desc, sha512_block_fn *block_fn) { const int bit_offset = SHA512_BLOCK_SIZE - sizeof(__be64[2]); struct sha512_state *sctx = shash_desc_ctx(desc); __be64 *bits = (__be64 *)(sctx->buf + bit_offset); unsigned int partial = sctx->count[0] % SHA512_BLOCK_SIZE; sctx->buf[partial++] = 0x80; if (partial > bit_offset) { memset(sctx->buf + partial, 0x0, SHA512_BLOCK_SIZE - partial); partial = 0; block_fn(sctx, sctx->buf, 1); } memset(sctx->buf + partial, 0x0, bit_offset - partial); bits[0] = cpu_to_be64(sctx->count[1] << 3 | sctx->count[0] >> 61); bits[1] = cpu_to_be64(sctx->count[0] << 3); block_fn(sctx, sctx->buf, 1); return 0; } static inline int sha512_base_finish(struct shash_desc *desc, u8 *out) { unsigned int digest_size = crypto_shash_digestsize(desc->tfm); struct sha512_state *sctx = shash_desc_ctx(desc); __be64 *digest = (__be64 *)out; int i; for (i = 0; digest_size > 0; i++, digest_size -= sizeof(__be64)) put_unaligned_be64(sctx->state[i], digest++); memzero_explicit(sctx, sizeof(*sctx)); return 0; } #endif /* _CRYPTO_SHA512_BASE_H */