This commit updates all authorship and copyright information to include a standard header that references the AUTHORS and CREDITS file. This standard header was written by the Debian legal team at the request of Franck Joncourt.
245 lines
6.2 KiB
C
245 lines
6.2 KiB
C
/*
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*****************************************************************************
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*
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* File: fko_digest.c
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*
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* Purpose: Create the base64-encoded digest for the current spa data. The
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* digest used is determined by the digest_type setting in the
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* fko context.
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*
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* Fwknop is developed primarily by the people listed in the file 'AUTHORS'.
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* Copyright (C) 2009–2014 fwknop developers and contributors. For a full
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* list of contributors, see the file 'CREDITS'.
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*
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* License (GNU General Public License):
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (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
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
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* USA
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*
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*****************************************************************************
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*/
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#include "fko_common.h"
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#include "fko.h"
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#include "digest.h"
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/* Set the SPA digest type.
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*/
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static int
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set_spa_digest_type(fko_ctx_t ctx,
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short *digest_type_field, const short digest_type)
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{
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/* Must be initialized
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*/
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if(!CTX_INITIALIZED(ctx))
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return(FKO_ERROR_CTX_NOT_INITIALIZED);
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if(digest_type < 1 || digest_type >= FKO_LAST_DIGEST_TYPE)
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return(FKO_ERROR_INVALID_DATA_ENCODE_DIGEST_VALIDFAIL);
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*digest_type_field = digest_type;
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ctx->state |= FKO_DIGEST_TYPE_MODIFIED;
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return(FKO_SUCCESS);
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}
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int
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fko_set_spa_digest_type(fko_ctx_t ctx, const short digest_type)
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{
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return set_spa_digest_type(ctx, &ctx->digest_type, digest_type);
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}
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int
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fko_set_raw_spa_digest_type(fko_ctx_t ctx, const short raw_digest_type)
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{
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return set_spa_digest_type(ctx, &ctx->raw_digest_type, raw_digest_type);
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}
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/* Return the SPA digest type.
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*/
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int
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fko_get_spa_digest_type(fko_ctx_t ctx, short *digest_type)
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{
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/* Must be initialized
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*/
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if(!CTX_INITIALIZED(ctx))
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return(FKO_ERROR_CTX_NOT_INITIALIZED);
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if(digest_type == NULL)
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return(FKO_ERROR_INVALID_DATA);
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*digest_type = ctx->digest_type;
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return(FKO_SUCCESS);
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}
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/* Return the SPA digest type.
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*/
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int
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fko_get_raw_spa_digest_type(fko_ctx_t ctx, short *raw_digest_type)
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{
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/* Must be initialized
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*/
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if(!CTX_INITIALIZED(ctx))
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return(FKO_ERROR_CTX_NOT_INITIALIZED);
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*raw_digest_type = ctx->raw_digest_type;
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return(FKO_SUCCESS);
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}
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static int
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set_digest(char *data, char **digest, short digest_type, int *digest_len)
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{
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char *md = NULL;
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int data_len;
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data_len = strnlen(data, MAX_SPA_ENCODED_MSG_SIZE);
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if(data_len == MAX_SPA_ENCODED_MSG_SIZE)
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return(FKO_ERROR_INVALID_DATA_ENCODE_DIGEST_TOOBIG);
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switch(digest_type)
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{
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case FKO_DIGEST_MD5:
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md = malloc(MD_HEX_SIZE(MD5_DIGEST_LEN)+1);
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if(md == NULL)
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return(FKO_ERROR_MEMORY_ALLOCATION);
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md5_base64(md,
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(unsigned char*)data, data_len);
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*digest_len = MD5_B64_LEN;
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break;
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case FKO_DIGEST_SHA1:
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md = malloc(MD_HEX_SIZE(SHA1_DIGEST_LEN)+1);
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if(md == NULL)
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return(FKO_ERROR_MEMORY_ALLOCATION);
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sha1_base64(md,
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(unsigned char*)data, data_len);
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*digest_len = SHA1_B64_LEN;
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break;
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case FKO_DIGEST_SHA256:
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md = malloc(MD_HEX_SIZE(SHA256_DIGEST_LEN)+1);
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if(md == NULL)
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return(FKO_ERROR_MEMORY_ALLOCATION);
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sha256_base64(md,
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(unsigned char*)data, data_len);
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*digest_len = SHA256_B64_LEN;
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break;
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case FKO_DIGEST_SHA384:
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md = malloc(MD_HEX_SIZE(SHA384_DIGEST_LEN)+1);
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if(md == NULL)
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return(FKO_ERROR_MEMORY_ALLOCATION);
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sha384_base64(md,
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(unsigned char*)data, data_len);
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*digest_len = SHA384_B64_LEN;
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break;
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case FKO_DIGEST_SHA512:
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md = malloc(MD_HEX_SIZE(SHA512_DIGEST_LEN)+1);
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if(md == NULL)
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return(FKO_ERROR_MEMORY_ALLOCATION);
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sha512_base64(md,
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(unsigned char*)data, data_len);
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*digest_len = SHA512_B64_LEN;
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break;
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default:
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return(FKO_ERROR_INVALID_DIGEST_TYPE);
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}
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/* Just in case this is a subsquent call to this function. We
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* do not want to be leaking memory.
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*/
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if(*digest != NULL)
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free(*digest);
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*digest = md;
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return(FKO_SUCCESS);
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}
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int
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fko_set_spa_digest(fko_ctx_t ctx)
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{
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/* Must be initialized
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*/
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if(!CTX_INITIALIZED(ctx))
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return(FKO_ERROR_CTX_NOT_INITIALIZED);
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/* Must have encoded message data to start with.
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*/
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if(ctx->encoded_msg == NULL)
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return(FKO_ERROR_MISSING_ENCODED_DATA);
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return set_digest(ctx->encoded_msg, &ctx->digest,
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ctx->digest_type, &ctx->digest_len);
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}
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int
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fko_set_raw_spa_digest(fko_ctx_t ctx)
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{
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/* Must be initialized
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*/
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if(!CTX_INITIALIZED(ctx))
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return(FKO_ERROR_CTX_NOT_INITIALIZED);
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/* Must have encoded message data to start with.
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*/
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if(ctx->encrypted_msg == NULL)
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return(FKO_ERROR_MISSING_ENCODED_DATA);
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return set_digest(ctx->encrypted_msg, &ctx->raw_digest,
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ctx->raw_digest_type, &ctx->raw_digest_len);
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}
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int
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fko_get_spa_digest(fko_ctx_t ctx, char **md)
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{
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/* Must be initialized
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*/
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if(!CTX_INITIALIZED(ctx))
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return(FKO_ERROR_CTX_NOT_INITIALIZED);
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if(md == NULL)
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return(FKO_ERROR_INVALID_DATA);
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*md = ctx->digest;
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return(FKO_SUCCESS);
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}
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int
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fko_get_raw_spa_digest(fko_ctx_t ctx, char **md)
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{
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/* Must be initialized
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*/
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if(!CTX_INITIALIZED(ctx))
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return(FKO_ERROR_CTX_NOT_INITIALIZED);
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*md = ctx->raw_digest;
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return(FKO_SUCCESS);
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}
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/***EOF***/
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