Remove blake2b-opt from the tree
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920c459ac3
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@ -1,419 +0,0 @@
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/*
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BLAKE2 reference source code package - optimized C implementations
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Written in 2012 by Samuel Neves <sneves@dei.uc.pt>
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To the extent possible under law, the author(s) have dedicated all copyright
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and related and neighboring rights to this software to the public domain
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worldwide. This software is distributed without any warranty.
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You should have received a copy of the CC0 Public Domain Dedication along with
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this software. If not, see <http://creativecommons.org/publicdomain/zero/1.0/>.
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*/
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#include <stdint.h>
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#include <string.h>
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#include <stdio.h>
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#include "blake2.h"
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#include "blake2-impl.h"
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static const uint64_t blake2b_IV[8] =
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{
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0x6a09e667f3bcc908ULL, 0xbb67ae8584caa73bULL,
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0x3c6ef372fe94f82bULL, 0xa54ff53a5f1d36f1ULL,
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0x510e527fade682d1ULL, 0x9b05688c2b3e6c1fULL,
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0x1f83d9abfb41bd6bULL, 0x5be0cd19137e2179ULL
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};
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static const uint8_t blake2b_sigma[12][16] =
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{
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{ 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15 } ,
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{ 14, 10, 4, 8, 9, 15, 13, 6, 1, 12, 0, 2, 11, 7, 5, 3 } ,
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{ 11, 8, 12, 0, 5, 2, 15, 13, 10, 14, 3, 6, 7, 1, 9, 4 } ,
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{ 7, 9, 3, 1, 13, 12, 11, 14, 2, 6, 5, 10, 4, 0, 15, 8 } ,
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{ 9, 0, 5, 7, 2, 4, 10, 15, 14, 1, 11, 12, 6, 8, 3, 13 } ,
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{ 2, 12, 6, 10, 0, 11, 8, 3, 4, 13, 7, 5, 15, 14, 1, 9 } ,
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{ 12, 5, 1, 15, 14, 13, 4, 10, 0, 7, 6, 3, 9, 2, 8, 11 } ,
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{ 13, 11, 7, 14, 12, 1, 3, 9, 5, 0, 15, 4, 8, 6, 2, 10 } ,
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{ 6, 15, 14, 9, 11, 3, 0, 8, 12, 2, 13, 7, 1, 4, 10, 5 } ,
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{ 10, 2, 8, 4, 7, 6, 1, 5, 15, 11, 9, 14, 3, 12, 13 , 0 } ,
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{ 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15 } ,
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{ 14, 10, 4, 8, 9, 15, 13, 6, 1, 12, 0, 2, 11, 7, 5, 3 }
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};
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/* LCOV_EXCL_START */
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static inline int blake2b_set_lastnode( blake2b_state *S )
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{
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S->f[1] = -1;
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return 0;
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}
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/* LCOV_EXCL_STOP */
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#if 0
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static inline int blake2b_clear_lastnode( blake2b_state *S )
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{
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S->f[1] = 0;
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return 0;
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}
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#endif
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static inline int blake2b_set_lastblock( blake2b_state *S )
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{
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if( S->last_node ) blake2b_set_lastnode( S );
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S->f[0] = -1;
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return 0;
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}
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#if 0
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static inline int blake2b_clear_lastblock( blake2b_state *S )
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{
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if( S->last_node ) blake2b_clear_lastnode( S );
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S->f[0] = 0;
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return 0;
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}
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#endif
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static inline int blake2b_increment_counter( blake2b_state *S, const uint64_t inc )
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{
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#if defined(__x86_64__) && defined(__SIZEOF_INT128__)
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__uint128_t t = ( ( __uint128_t )S->t[1] << 64 ) | S->t[0];
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t += inc;
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S->t[0] = ( uint64_t )( t >> 0 );
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S->t[1] = ( uint64_t )( t >> 64 );
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#else
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S->t[0] += inc;
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S->t[1] += ( S->t[0] < inc );
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#endif
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return 0;
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}
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// Parameter-related functions
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#if 0
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static inline int blake2b_param_set_digest_length( blake2b_param *P, const uint8_t digest_length )
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{
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P->digest_length = digest_length;
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return 0;
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}
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static inline int blake2b_param_set_fanout( blake2b_param *P, const uint8_t fanout )
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{
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P->fanout = fanout;
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return 0;
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}
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static inline int blake2b_param_set_max_depth( blake2b_param *P, const uint8_t depth )
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{
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P->depth = depth;
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return 0;
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}
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static inline int blake2b_param_set_leaf_length( blake2b_param *P, const uint32_t leaf_length )
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{
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store32( &P->leaf_length, leaf_length );
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return 0;
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}
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static inline int blake2b_param_set_node_offset( blake2b_param *P, const uint64_t node_offset )
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{
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store64( &P->node_offset, node_offset );
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return 0;
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}
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static inline int blake2b_param_set_node_depth( blake2b_param *P, const uint8_t node_depth )
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{
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P->node_depth = node_depth;
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return 0;
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}
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static inline int blake2b_param_set_inner_length( blake2b_param *P, const uint8_t inner_length )
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{
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P->inner_length = inner_length;
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return 0;
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}
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#endif
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static inline int blake2b_param_set_salt( blake2b_param *P, const uint8_t salt[BLAKE2B_SALTBYTES] )
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{
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memcpy( P->salt, salt, BLAKE2B_SALTBYTES );
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return 0;
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}
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static inline int blake2b_param_set_personal( blake2b_param *P, const uint8_t personal[BLAKE2B_PERSONALBYTES] )
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{
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memcpy( P->personal, personal, BLAKE2B_PERSONALBYTES );
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return 0;
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}
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static inline int blake2b_init0( blake2b_state *S )
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{
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int i;
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memset( S, 0, sizeof( blake2b_state ) );
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for( i = 0; i < 8; ++i ) S->h[i] = blake2b_IV[i];
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return 0;
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}
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/* init xors IV with input parameter block */
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int blake2b_init_param( blake2b_state *S, const blake2b_param *P )
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{
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size_t i;
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const uint8_t *p;
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blake2b_init0( S );
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p = ( const uint8_t * )( P );
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/* IV XOR ParamBlock */
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for( i = 0; i < 8; ++i )
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S->h[i] ^= load64( p + sizeof( S->h[i] ) * i );
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return 0;
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}
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int blake2b_init( blake2b_state *S, const uint8_t outlen )
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{
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blake2b_param P[1];
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if ( ( !outlen ) || ( outlen > BLAKE2B_OUTBYTES ) ) return -1;
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P->digest_length = outlen;
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P->key_length = 0;
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P->fanout = 1;
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P->depth = 1;
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store32( &P->leaf_length, 0 );
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store64( &P->node_offset, 0 );
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P->node_depth = 0;
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P->inner_length = 0;
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memset( P->reserved, 0, sizeof( P->reserved ) );
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memset( P->salt, 0, sizeof( P->salt ) );
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memset( P->personal, 0, sizeof( P->personal ) );
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return blake2b_init_param( S, P );
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}
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int blake2b_init_salt_personal( blake2b_state *S, const uint8_t outlen,
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const void *salt, const void *personal )
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{
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blake2b_param P[1];
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if ( ( !outlen ) || ( outlen > BLAKE2B_OUTBYTES ) ) return -1;
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P->digest_length = outlen;
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P->key_length = 0;
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P->fanout = 1;
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P->depth = 1;
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store32( &P->leaf_length, 0 );
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store64( &P->node_offset, 0 );
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P->node_depth = 0;
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P->inner_length = 0;
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memset( P->reserved, 0, sizeof( P->reserved ) );
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if (salt != NULL) {
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blake2b_param_set_salt( P, (const uint8_t *) salt );
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} else {
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memset( P->salt, 0, sizeof( P->salt ) );
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}
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if (personal != NULL) {
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blake2b_param_set_personal( P, (const uint8_t *) personal );
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} else {
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memset( P->personal, 0, sizeof( P->personal ) );
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}
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return blake2b_init_param( S, P );
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}
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int blake2b_init_key( blake2b_state *S, const uint8_t outlen, const void *key, const uint8_t keylen )
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{
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blake2b_param P[1];
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if ( ( !outlen ) || ( outlen > BLAKE2B_OUTBYTES ) ) return -1;
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if ( !key || !keylen || keylen > BLAKE2B_KEYBYTES ) return -1;
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P->digest_length = outlen;
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P->key_length = keylen;
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P->fanout = 1;
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P->depth = 1;
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store32( &P->leaf_length, 0 );
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store64( &P->node_offset, 0 );
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P->node_depth = 0;
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P->inner_length = 0;
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memset( P->reserved, 0, sizeof( P->reserved ) );
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memset( P->salt, 0, sizeof( P->salt ) );
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memset( P->personal, 0, sizeof( P->personal ) );
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if( blake2b_init_param( S, P ) < 0 ) return -1;
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{
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uint8_t block[BLAKE2B_BLOCKBYTES];
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memset( block, 0, BLAKE2B_BLOCKBYTES );
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memcpy( block, key, keylen );
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blake2b_update( S, block, BLAKE2B_BLOCKBYTES );
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secure_zero_memory( block, BLAKE2B_BLOCKBYTES ); /* Burn the key from stack */
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}
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return 0;
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}
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int blake2b_init_key_salt_personal( blake2b_state *S, const uint8_t outlen, const void *key, const uint8_t keylen,
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const void *salt, const void *personal )
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{
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blake2b_param P[1];
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if ( ( !outlen ) || ( outlen > BLAKE2B_OUTBYTES ) ) return -1;
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if ( !key || !keylen || keylen > BLAKE2B_KEYBYTES ) return -1;
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P->digest_length = outlen;
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P->key_length = keylen;
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P->fanout = 1;
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P->depth = 1;
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store32( &P->leaf_length, 0 );
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store64( &P->node_offset, 0 );
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P->node_depth = 0;
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P->inner_length = 0;
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memset( P->reserved, 0, sizeof( P->reserved ) );
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if (salt != NULL) {
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blake2b_param_set_salt( P, (const uint8_t *) salt );
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} else {
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memset( P->salt, 0, sizeof( P->salt ) );
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}
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if (personal != NULL) {
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blake2b_param_set_personal( P, (const uint8_t *) personal );
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} else {
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memset( P->personal, 0, sizeof( P->personal ) );
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}
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if( blake2b_init_param( S, P ) < 0 ) return -1;
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{
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uint8_t block[BLAKE2B_BLOCKBYTES];
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memset( block, 0, BLAKE2B_BLOCKBYTES );
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memcpy( block, key, keylen );
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blake2b_update( S, block, BLAKE2B_BLOCKBYTES );
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secure_zero_memory( block, BLAKE2B_BLOCKBYTES ); /* Burn the key from stack */
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}
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return 0;
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}
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int blake2b_compress( blake2b_state *S, const uint8_t block[BLAKE2B_BLOCKBYTES] );
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/* inlen now in bytes */
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int blake2b_update( blake2b_state *S, const uint8_t *in, uint64_t inlen )
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{
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while( inlen > 0 )
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{
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size_t left = S->buflen;
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size_t fill = 2 * BLAKE2B_BLOCKBYTES - left;
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if( inlen > fill )
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{
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memcpy( S->buf + left, in, fill ); // Fill buffer
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S->buflen += fill;
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blake2b_increment_counter( S, BLAKE2B_BLOCKBYTES );
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blake2b_compress( S, S->buf ); // Compress
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memcpy( S->buf, S->buf + BLAKE2B_BLOCKBYTES, BLAKE2B_BLOCKBYTES ); // Shift buffer left
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S->buflen -= BLAKE2B_BLOCKBYTES;
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in += fill;
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inlen -= fill;
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}
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else // inlen <= fill
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{
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memcpy( S->buf + left, in, inlen );
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S->buflen += inlen; // Be lazy, do not compress
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in += inlen;
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inlen -= inlen;
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}
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}
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return 0;
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}
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int blake2b_final( blake2b_state *S, uint8_t *out, uint8_t outlen )
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{
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if( !outlen || outlen > BLAKE2B_OUTBYTES ) {
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return -1;
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}
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if( S->buflen > BLAKE2B_BLOCKBYTES )
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{
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blake2b_increment_counter( S, BLAKE2B_BLOCKBYTES );
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blake2b_compress( S, S->buf );
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S->buflen -= BLAKE2B_BLOCKBYTES;
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memmove( S->buf, S->buf + BLAKE2B_BLOCKBYTES, S->buflen );
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}
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blake2b_increment_counter( S, S->buflen );
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blake2b_set_lastblock( S );
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memset( S->buf + S->buflen, 0, 2 * BLAKE2B_BLOCKBYTES - S->buflen ); /* Padding */
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blake2b_compress( S, S->buf );
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#ifdef NATIVE_LITTLE_ENDIAN
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memcpy( out, &S->h[0], outlen );
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#else
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{
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uint8_t buffer[BLAKE2B_OUTBYTES];
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int i;
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for( i = 0; i < 8; ++i ) /* Output full hash to temp buffer */
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store64( buffer + sizeof( S->h[i] ) * i, S->h[i] );
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memcpy( out, buffer, outlen );
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}
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#endif
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return 0;
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}
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/* inlen, at least, should be uint64_t. Others can be size_t. */
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int blake2b( uint8_t *out, const void *in, const void *key, const uint8_t outlen, const uint64_t inlen, uint8_t keylen )
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{
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blake2b_state S[1];
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/* Verify parameters */
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if( NULL == in && inlen > 0 ) return -1;
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if( NULL == out ) return -1;
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if( !outlen || outlen > BLAKE2B_OUTBYTES ) return -1;
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if( NULL == key && keylen > 0 ) return -1;
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if( keylen > BLAKE2B_KEYBYTES ) return -1;
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if( keylen > 0 )
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{
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if( blake2b_init_key( S, outlen, key, keylen ) < 0 ) return -1;
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}
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else
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{
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if( blake2b_init( S, outlen ) < 0 ) return -1;
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}
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blake2b_update( S, ( const uint8_t * )in, inlen );
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blake2b_final( S, out, outlen );
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return 0;
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}
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int blake2b_salt_personal( uint8_t *out, const void *in, const void *key, const uint8_t outlen, const uint64_t inlen, uint8_t keylen,
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const void *salt, const void *personal )
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{
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blake2b_state S[1];
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/* Verify parameters */
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if( NULL == in && inlen > 0 ) return -1;
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if( NULL == out ) return -1;
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if( !outlen || outlen > BLAKE2B_OUTBYTES ) return -1;
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if( NULL == key && keylen > 0 ) return -1;
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if( keylen > BLAKE2B_KEYBYTES ) return -1;
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if( keylen > 0 )
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{
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if( blake2b_init_key_salt_personal( S, outlen, key, keylen, salt, personal ) < 0 ) return -1;
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}
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else
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{
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if( blake2b_init_salt_personal( S, outlen, salt, personal ) < 0 ) return -1;
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}
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blake2b_update( S, ( const uint8_t * )in, inlen );
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blake2b_final( S, out, outlen );
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return 0;
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}
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