__  __    __   __  _____      _            _          _____ _          _ _ 
 |  \/  |   \ \ / / |  __ \    (_)          | |        / ____| |        | | |
 | \  / |_ __\ V /  | |__) | __ ___   ____ _| |_ ___  | (___ | |__   ___| | |
 | |\/| | '__|> <   |  ___/ '__| \ \ / / _` | __/ _ \  \___ \| '_ \ / _ \ | |
 | |  | | |_ / . \  | |   | |  | |\ V / (_| | ||  __/  ____) | | | |  __/ | |
 |_|  |_|_(_)_/ \_\ |_|   |_|  |_| \_/ \__,_|\__\___| |_____/|_| |_|\___V 2.1
 if you need WebShell for Seo everyday contact me on Telegram
 Telegram Address : @jackleet
        
        
For_More_Tools: Telegram: @jackleet | Bulk Smtp support mail sender | Business Mail Collector | Mail Bouncer All Mail | Bulk Office Mail Validator | Html Letter private



Upload:

Command:

[email protected]: ~ $
/* SPDX-License-Identifier: GPL-2.0 */
/*
 * Common values and helper functions for the ChaCha and XChaCha stream ciphers.
 *
 * XChaCha extends ChaCha's nonce to 192 bits, while provably retaining ChaCha's
 * security.  Here they share the same key size, tfm context, and setkey
 * function; only their IV size and encrypt/decrypt function differ.
 *
 * The ChaCha paper specifies 20, 12, and 8-round variants.  In general, it is
 * recommended to use the 20-round variant ChaCha20.  However, the other
 * variants can be needed in some performance-sensitive scenarios.  The generic
 * ChaCha code currently allows only the 20 and 12-round variants.
 */

#ifndef _CRYPTO_CHACHA_H
#define _CRYPTO_CHACHA_H

#include <linux/unaligned.h>
#include <linux/types.h>

/* 32-bit stream position, then 96-bit nonce (RFC7539 convention) */
#define CHACHA_IV_SIZE		16

#define CHACHA_KEY_SIZE		32
#define CHACHA_BLOCK_SIZE	64
#define CHACHAPOLY_IV_SIZE	12

#define CHACHA_STATE_WORDS	(CHACHA_BLOCK_SIZE / sizeof(u32))

/* 192-bit nonce, then 64-bit stream position */
#define XCHACHA_IV_SIZE		32

void chacha_block_generic(u32 *state, u8 *stream, int nrounds);
static inline void chacha20_block(u32 *state, u8 *stream)
{
	chacha_block_generic(state, stream, 20);
}

void hchacha_block_arch(const u32 *state, u32 *out, int nrounds);
void hchacha_block_generic(const u32 *state, u32 *out, int nrounds);

static inline void hchacha_block(const u32 *state, u32 *out, int nrounds)
{
	if (IS_ENABLED(CONFIG_CRYPTO_ARCH_HAVE_LIB_CHACHA))
		hchacha_block_arch(state, out, nrounds);
	else
		hchacha_block_generic(state, out, nrounds);
}

enum chacha_constants { /* expand 32-byte k */
	CHACHA_CONSTANT_EXPA = 0x61707865U,
	CHACHA_CONSTANT_ND_3 = 0x3320646eU,
	CHACHA_CONSTANT_2_BY = 0x79622d32U,
	CHACHA_CONSTANT_TE_K = 0x6b206574U
};

static inline void chacha_init_consts(u32 *state)
{
	state[0]  = CHACHA_CONSTANT_EXPA;
	state[1]  = CHACHA_CONSTANT_ND_3;
	state[2]  = CHACHA_CONSTANT_2_BY;
	state[3]  = CHACHA_CONSTANT_TE_K;
}

void chacha_init_arch(u32 *state, const u32 *key, const u8 *iv);
static inline void chacha_init_generic(u32 *state, const u32 *key, const u8 *iv)
{
	chacha_init_consts(state);
	state[4]  = key[0];
	state[5]  = key[1];
	state[6]  = key[2];
	state[7]  = key[3];
	state[8]  = key[4];
	state[9]  = key[5];
	state[10] = key[6];
	state[11] = key[7];
	state[12] = get_unaligned_le32(iv +  0);
	state[13] = get_unaligned_le32(iv +  4);
	state[14] = get_unaligned_le32(iv +  8);
	state[15] = get_unaligned_le32(iv + 12);
}

static inline void chacha_init(u32 *state, const u32 *key, const u8 *iv)
{
	if (IS_ENABLED(CONFIG_CRYPTO_ARCH_HAVE_LIB_CHACHA))
		chacha_init_arch(state, key, iv);
	else
		chacha_init_generic(state, key, iv);
}

void chacha_crypt_arch(u32 *state, u8 *dst, const u8 *src,
		       unsigned int bytes, int nrounds);
void chacha_crypt_generic(u32 *state, u8 *dst, const u8 *src,
			  unsigned int bytes, int nrounds);

static inline void chacha_crypt(u32 *state, u8 *dst, const u8 *src,
				unsigned int bytes, int nrounds)
{
	if (IS_ENABLED(CONFIG_CRYPTO_ARCH_HAVE_LIB_CHACHA))
		chacha_crypt_arch(state, dst, src, bytes, nrounds);
	else
		chacha_crypt_generic(state, dst, src, bytes, nrounds);
}

static inline void chacha20_crypt(u32 *state, u8 *dst, const u8 *src,
				  unsigned int bytes)
{
	chacha_crypt(state, dst, src, bytes, 20);
}

#endif /* _CRYPTO_CHACHA_H */

Filemanager

Name Type Size Permission Actions
internal Folder 0755
acompress.h File 7.7 KB 0644
aead.h File 18.89 KB 0644
aes.h File 2.74 KB 0644
akcipher.h File 11.32 KB 0644
algapi.h File 7.55 KB 0644
arc4.h File 484 B 0644
aria.h File 16.71 KB 0644
authenc.h File 635 B 0644
b128ops.h File 2.26 KB 0644
blake2b.h File 1.57 KB 0644
blake2s.h File 2.62 KB 0644
blowfish.h File 415 B 0644
cast5.h File 590 B 0644
cast6.h File 607 B 0644
cast_common.h File 232 B 0644
chacha.h File 3.32 KB 0644
chacha20poly1305.h File 1.66 KB 0644
cryptd.h File 2 KB 0644
ctr.h File 1.42 KB 0644
curve25519.h File 2.02 KB 0644
des.h File 1.68 KB 0644
dh.h File 3.03 KB 0644
drbg.h File 9.02 KB 0644
ecc_curve.h File 1.36 KB 0644
ecdh.h File 2.46 KB 0644
engine.h File 3.72 KB 0644
gcm.h File 1.48 KB 0644
gf128mul.h File 9.25 KB 0644
ghash.h File 388 B 0644
hash.h File 33.06 KB 0644
hash_info.h File 1023 B 0644
hmac.h File 173 B 0644
if_alg.h File 6.57 KB 0644
kdf_sp800108.h File 2.07 KB 0644
kpp.h File 9.53 KB 0644
md5.h File 497 B 0644
nhpoly1305.h File 2.18 KB 0644
null.h File 346 B 0644
padlock.h File 438 B 0644
pcrypt.h File 821 B 0644
pkcs7.h File 1.15 KB 0644
poly1305.h File 2.44 KB 0644
polyval.h File 445 B 0644
public_key.h File 3.39 KB 0644
rng.h File 6.61 KB 0644
scatterwalk.h File 2.74 KB 0644
serpent.h File 696 B 0644
sha1.h File 1.18 KB 0644
sha1_base.h File 2.46 KB 0644
sha2.h File 3.75 KB 0644
sha256_base.h File 3.12 KB 0644
sha3.h File 879 B 0644
sha512_base.h File 3.18 KB 0644
sig.h File 8.2 KB 0644
skcipher.h File 32.47 KB 0644
sm3.h File 1.6 KB 0644
sm3_base.h File 2.55 KB 0644
sm4.h File 1.22 KB 0644
streebog.h File 949 B 0644
twofish.h File 743 B 0644
utils.h File 1.89 KB 0644
xts.h File 978 B 0644
Filemanager