root/lib/crypto/mips/sha512.h
/* SPDX-License-Identifier: GPL-2.0-or-later */
/*
 * Cryptographic API.
 *
 * SHA-512 and SHA-384 Secure Hash Algorithm.
 *
 * Adapted for OCTEON by Aaro Koskinen <aaro.koskinen@iki.fi>.
 *
 * Based on crypto/sha512_generic.c, which is:
 *
 * Copyright (c) Jean-Luc Cooke <jlcooke@certainkey.com>
 * Copyright (c) Andrew McDonald <andrew@mcdonald.org.uk>
 * Copyright (c) 2003 Kyle McMartin <kyle@debian.org>
 */

#include <asm/octeon/crypto.h>
#include <asm/octeon/octeon.h>

/*
 * We pass everything as 64-bit. OCTEON can handle misaligned data.
 */

static void sha512_blocks(struct sha512_block_state *state,
                          const u8 *data, size_t nblocks)
{
        struct octeon_cop2_state cop2_state;
        unsigned long flags;

        if (!octeon_has_crypto())
                return sha512_blocks_generic(state, data, nblocks);

        flags = octeon_crypto_enable(&cop2_state);
        write_octeon_64bit_hash_sha512(state->h[0], 0);
        write_octeon_64bit_hash_sha512(state->h[1], 1);
        write_octeon_64bit_hash_sha512(state->h[2], 2);
        write_octeon_64bit_hash_sha512(state->h[3], 3);
        write_octeon_64bit_hash_sha512(state->h[4], 4);
        write_octeon_64bit_hash_sha512(state->h[5], 5);
        write_octeon_64bit_hash_sha512(state->h[6], 6);
        write_octeon_64bit_hash_sha512(state->h[7], 7);

        do {
                const u64 *block = (const u64 *)data;

                write_octeon_64bit_block_sha512(block[0], 0);
                write_octeon_64bit_block_sha512(block[1], 1);
                write_octeon_64bit_block_sha512(block[2], 2);
                write_octeon_64bit_block_sha512(block[3], 3);
                write_octeon_64bit_block_sha512(block[4], 4);
                write_octeon_64bit_block_sha512(block[5], 5);
                write_octeon_64bit_block_sha512(block[6], 6);
                write_octeon_64bit_block_sha512(block[7], 7);
                write_octeon_64bit_block_sha512(block[8], 8);
                write_octeon_64bit_block_sha512(block[9], 9);
                write_octeon_64bit_block_sha512(block[10], 10);
                write_octeon_64bit_block_sha512(block[11], 11);
                write_octeon_64bit_block_sha512(block[12], 12);
                write_octeon_64bit_block_sha512(block[13], 13);
                write_octeon_64bit_block_sha512(block[14], 14);
                octeon_sha512_start(block[15]);

                data += SHA512_BLOCK_SIZE;
        } while (--nblocks);

        state->h[0] = read_octeon_64bit_hash_sha512(0);
        state->h[1] = read_octeon_64bit_hash_sha512(1);
        state->h[2] = read_octeon_64bit_hash_sha512(2);
        state->h[3] = read_octeon_64bit_hash_sha512(3);
        state->h[4] = read_octeon_64bit_hash_sha512(4);
        state->h[5] = read_octeon_64bit_hash_sha512(5);
        state->h[6] = read_octeon_64bit_hash_sha512(6);
        state->h[7] = read_octeon_64bit_hash_sha512(7);
        octeon_crypto_disable(&cop2_state, flags);
}