mirror of
https://github.com/yuzu-emu/mbedtls
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254 lines
6.1 KiB
C
254 lines
6.1 KiB
C
/*
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* Public Key abstraction layer: wrapper functions
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*
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* Copyright (C) 2006-2013, Brainspark B.V.
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*
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* This file is part of PolarSSL (http://www.polarssl.org)
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* Lead Maintainer: Paul Bakker <polarssl_maintainer at polarssl.org>
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*
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* All rights reserved.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along
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* with this program; if not, write to the Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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*/
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#include "polarssl/config.h"
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#include "polarssl/pk_wrap.h"
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#if defined(POLARSSL_RSA_C)
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#include "polarssl/rsa.h"
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#endif
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#if defined(POLARSSL_ECP_C)
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#include "polarssl/ecp.h"
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#endif
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#if defined(POLARSSL_ECDSA_C)
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#include "polarssl/ecdsa.h"
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#endif
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#if defined(POLARSSL_MEMORY_C)
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#include "polarssl/memory.h"
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#else
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#include <stdlib.h>
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#define polarssl_malloc malloc
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#define polarssl_free free
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#endif
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#if defined(POLARSSL_RSA_C)
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static int rsa_can_do( pk_type_t type )
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{
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return( type == POLARSSL_PK_RSA );
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}
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static size_t rsa_get_size( const void * ctx )
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{
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return( 8 * ((rsa_context *) ctx)->len );
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}
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static int rsa_verify_wrap( void *ctx, md_type_t md_alg,
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const unsigned char *hash, size_t hash_len,
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const unsigned char *sig, size_t sig_len )
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{
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if( sig_len != ((rsa_context *) ctx)->len )
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return( POLARSSL_ERR_RSA_VERIFY_FAILED );
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return( rsa_pkcs1_verify( (rsa_context *) ctx,
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RSA_PUBLIC, md_alg, hash_len, hash, sig ) );
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}
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static void *rsa_alloc_wrap( void )
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{
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void *ctx = polarssl_malloc( sizeof( rsa_context ) );
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if( ctx != NULL )
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rsa_init( (rsa_context *) ctx, 0, 0 );
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return ctx;
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}
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static void rsa_free_wrap( void *ctx )
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{
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rsa_free( (rsa_context *) ctx );
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polarssl_free( ctx );
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}
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static void rsa_debug( const void *ctx, pk_debug_item *items )
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{
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items->type = POLARSSL_PK_DEBUG_MPI;
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items->name = "rsa.N";
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items->value = &( ((rsa_context *) ctx)->N );
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items++;
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items->type = POLARSSL_PK_DEBUG_MPI;
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items->name = "rsa.E";
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items->value = &( ((rsa_context *) ctx)->E );
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}
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const pk_info_t rsa_info = {
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POLARSSL_PK_RSA,
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"RSA",
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rsa_get_size,
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rsa_can_do,
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rsa_verify_wrap,
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rsa_alloc_wrap,
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rsa_free_wrap,
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rsa_debug,
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};
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#endif /* POLARSSL_RSA_C */
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#if defined(POLARSSL_ECP_C)
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/*
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* Generic EC key
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*/
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static int eckey_can_do( pk_type_t type )
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{
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return( type == POLARSSL_PK_ECKEY ||
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type == POLARSSL_PK_ECKEY_DH ||
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type == POLARSSL_PK_ECDSA );
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}
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static size_t eckey_get_size( const void *ctx )
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{
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return( ((ecp_keypair *) ctx)->grp.pbits );
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}
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#if defined(POLARSSL_ECDSA_C)
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/* Forward declaration */
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static int ecdsa_verify_wrap( void *ctx, md_type_t md_alg,
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const unsigned char *hash, size_t hash_len,
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const unsigned char *sig, size_t sig_len );
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static int eckey_verify_wrap( void *ctx, md_type_t md_alg,
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const unsigned char *hash, size_t hash_len,
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const unsigned char *sig, size_t sig_len )
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{
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int ret;
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ecdsa_context ecdsa;
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ecdsa_init( &ecdsa );
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ret = ecdsa_from_keypair( &ecdsa, ctx ) ||
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ecdsa_verify_wrap( &ecdsa, md_alg, hash, hash_len, sig, sig_len );
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ecdsa_free( &ecdsa );
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return( ret );
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}
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#endif /* POLARSSL_ECDSA_C */
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static void *eckey_alloc_wrap( void )
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{
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void *ctx = polarssl_malloc( sizeof( ecp_keypair ) );
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if( ctx != NULL )
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ecp_keypair_init( ctx );
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return( ctx );
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}
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static void eckey_free_wrap( void *ctx )
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{
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ecp_keypair_free( (ecp_keypair *) ctx );
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polarssl_free( ctx );
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}
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static void eckey_debug( const void *ctx, pk_debug_item *items )
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{
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items->type = POLARSSL_PK_DEBUG_ECP;
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items->name = "eckey.Q";
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items->value = &( ((ecp_keypair *) ctx)->Q );
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}
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const pk_info_t eckey_info = {
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POLARSSL_PK_ECKEY,
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"EC",
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eckey_get_size,
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eckey_can_do,
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#if defined(POLARSSL_ECDSA_C)
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eckey_verify_wrap,
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#else
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NULL,
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#endif
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eckey_alloc_wrap,
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eckey_free_wrap,
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eckey_debug,
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};
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/*
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* EC key resticted to ECDH
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*/
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static int eckeydh_can_do( pk_type_t type )
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{
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return( type == POLARSSL_PK_ECKEY ||
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type == POLARSSL_PK_ECKEY_DH );
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}
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const pk_info_t eckeydh_info = {
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POLARSSL_PK_ECKEY_DH,
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"EC_DH",
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eckey_get_size, /* Same underlying key structure */
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eckeydh_can_do,
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NULL,
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eckey_alloc_wrap, /* Same underlying key structure */
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eckey_free_wrap, /* Same underlying key structure */
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eckey_debug, /* Same underlying key structure */
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};
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#endif /* POLARSSL_ECP_C */
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#if defined(POLARSSL_ECDSA_C)
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static int ecdsa_can_do( pk_type_t type )
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{
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return( type == POLARSSL_PK_ECDSA );
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}
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static int ecdsa_verify_wrap( void *ctx, md_type_t md_alg,
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const unsigned char *hash, size_t hash_len,
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const unsigned char *sig, size_t sig_len )
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{
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((void) md_alg);
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return( ecdsa_read_signature( (ecdsa_context *) ctx,
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hash, hash_len, sig, sig_len ) );
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}
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static void *ecdsa_alloc_wrap( void )
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{
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void *ctx = polarssl_malloc( sizeof( ecdsa_context ) );
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if( ctx != NULL )
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ecdsa_init( (ecdsa_context *) ctx );
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return( ctx );
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}
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static void ecdsa_free_wrap( void *ctx )
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{
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ecdsa_free( (ecdsa_context *) ctx );
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polarssl_free( ctx );
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}
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const pk_info_t ecdsa_info = {
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POLARSSL_PK_ECDSA,
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"ECDSA",
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eckey_get_size, /* Compatible key structures */
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ecdsa_can_do,
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ecdsa_verify_wrap,
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ecdsa_alloc_wrap,
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ecdsa_free_wrap,
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eckey_debug, /* Compatible key structures */
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};
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#endif /* POLARSSL_ECDSA_C */
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