mirror of
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366 lines
11 KiB
C
366 lines
11 KiB
C
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/* ***** BEGIN LICENSE BLOCK *****
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* Version: MPL 1.1/GPL 2.0/LGPL 2.1
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*
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* The contents of this file are subject to the Mozilla Public License Version
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* 1.1 (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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* http://www.mozilla.org/MPL/
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*
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* Software distributed under the License is distributed on an "AS IS" basis,
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* WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License
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* for the specific language governing rights and limitations under the
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* License.
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*
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* The Original Code is the Netscape security libraries.
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*
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* The Initial Developer of the Original Code is
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* Netscape Communications Corporation.
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* Portions created by the Initial Developer are Copyright (C) 1994-2000
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* the Initial Developer. All Rights Reserved.
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*
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* Contributor(s):
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*
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* Alternatively, the contents of this file may be used under the terms of
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* either the GNU General Public License Version 2 or later (the "GPL"), or
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* the GNU Lesser General Public License Version 2.1 or later (the "LGPL"),
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* in which case the provisions of the GPL or the LGPL are applicable instead
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* of those above. If you wish to allow use of your version of this file only
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* under the terms of either the GPL or the LGPL, and not to allow others to
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* use your version of this file under the terms of the MPL, indicate your
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* decision by deleting the provisions above and replace them with the notice
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* and other provisions required by the GPL or the LGPL. If you do not delete
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* the provisions above, a recipient may use your version of this file under
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* the terms of any one of the MPL, the GPL or the LGPL.
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*
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* ***** END LICENSE BLOCK ***** */
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/* $Id: nsslowhash.c,v 1.2 2008/11/27 15:20:44 wtc%google.com Exp $ */
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#include "stubs.h"
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#include "prtypes.h"
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#include "secerr.h"
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#include "pkcs11t.h"
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#include "blapi.h"
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#include "sechash.h"
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#include "nsslowhash.h"
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/* FIPS preprocessor directives for message digests */
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#define FIPS_KNOWN_HASH_MESSAGE_LENGTH 64 /* 512-bits */
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/* Known Hash Message (512-bits). Used for all hashes (incl. SHA-N [N>1]). */
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static const PRUint8 known_hash_message[] = {
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"The test message for the MD2, MD5, and SHA-1 hashing algorithms." };
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static CK_RV
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freebl_fips_MD2_PowerUpSelfTest( void )
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{
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/* MD2 Known Digest Message (128-bits). */
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static const PRUint8 md2_known_digest[] = {
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0x41,0x5a,0x12,0xb2,0x3f,0x28,0x97,0x17,
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0x0c,0x71,0x4e,0xcc,0x40,0xc8,0x1d,0x1b};
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/* MD2 variables. */
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MD2Context * md2_context;
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unsigned int md2_bytes_hashed;
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PRUint8 md2_computed_digest[MD2_LENGTH];
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/***********************************************/
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/* MD2 Single-Round Known Answer Hashing Test. */
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/***********************************************/
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md2_context = MD2_NewContext();
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if( md2_context == NULL )
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return( CKR_HOST_MEMORY );
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MD2_Begin( md2_context );
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MD2_Update( md2_context, known_hash_message,
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FIPS_KNOWN_HASH_MESSAGE_LENGTH );
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MD2_End( md2_context, md2_computed_digest, &md2_bytes_hashed, MD2_LENGTH );
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MD2_DestroyContext( md2_context , PR_TRUE );
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if( ( md2_bytes_hashed != MD2_LENGTH ) ||
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( PORT_Memcmp( md2_computed_digest, md2_known_digest,
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MD2_LENGTH ) != 0 ) )
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return( CKR_DEVICE_ERROR );
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return( CKR_OK );
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}
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static CK_RV
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freebl_fips_MD5_PowerUpSelfTest( void )
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{
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/* MD5 Known Digest Message (128-bits). */
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static const PRUint8 md5_known_digest[] = {
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0x25,0xc8,0xc0,0x10,0xc5,0x6e,0x68,0x28,
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0x28,0xa4,0xa5,0xd2,0x98,0x9a,0xea,0x2d};
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/* MD5 variables. */
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PRUint8 md5_computed_digest[MD5_LENGTH];
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SECStatus md5_status;
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/***********************************************/
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/* MD5 Single-Round Known Answer Hashing Test. */
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/***********************************************/
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md5_status = MD5_HashBuf( md5_computed_digest, known_hash_message,
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FIPS_KNOWN_HASH_MESSAGE_LENGTH );
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if( ( md5_status != SECSuccess ) ||
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( PORT_Memcmp( md5_computed_digest, md5_known_digest,
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MD5_LENGTH ) != 0 ) )
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return( CKR_DEVICE_ERROR );
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return( CKR_OK );
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}
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static CK_RV
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freebl_fips_SHA_PowerUpSelfTest( void )
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{
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/* SHA-1 Known Digest Message (160-bits). */
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static const PRUint8 sha1_known_digest[] = {
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0x0a,0x6d,0x07,0xba,0x1e,0xbd,0x8a,0x1b,
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0x72,0xf6,0xc7,0x22,0xf1,0x27,0x9f,0xf0,
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0xe0,0x68,0x47,0x7a};
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/* SHA-256 Known Digest Message (256-bits). */
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static const PRUint8 sha256_known_digest[] = {
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0x38,0xa9,0xc1,0xf0,0x35,0xf6,0x5d,0x61,
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0x11,0xd4,0x0b,0xdc,0xce,0x35,0x14,0x8d,
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0xf2,0xdd,0xaf,0xaf,0xcf,0xb7,0x87,0xe9,
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0x96,0xa5,0xd2,0x83,0x62,0x46,0x56,0x79};
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/* SHA-384 Known Digest Message (384-bits). */
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static const PRUint8 sha384_known_digest[] = {
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0x11,0xfe,0x1c,0x00,0x89,0x48,0xde,0xb3,
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0x99,0xee,0x1c,0x18,0xb4,0x10,0xfb,0xfe,
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0xe3,0xa8,0x2c,0xf3,0x04,0xb0,0x2f,0xc8,
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0xa3,0xc4,0x5e,0xea,0x7e,0x60,0x48,0x7b,
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0xce,0x2c,0x62,0xf7,0xbc,0xa7,0xe8,0xa3,
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0xcf,0x24,0xce,0x9c,0xe2,0x8b,0x09,0x72};
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/* SHA-512 Known Digest Message (512-bits). */
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static const PRUint8 sha512_known_digest[] = {
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0xc8,0xb3,0x27,0xf9,0x0b,0x24,0xc8,0xbf,
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0x4c,0xba,0x33,0x54,0xf2,0x31,0xbf,0xdb,
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0xab,0xfd,0xb3,0x15,0xd7,0xfa,0x48,0x99,
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0x07,0x60,0x0f,0x57,0x41,0x1a,0xdd,0x28,
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0x12,0x55,0x25,0xac,0xba,0x3a,0x99,0x12,
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0x2c,0x7a,0x8f,0x75,0x3a,0xe1,0x06,0x6f,
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0x30,0x31,0xc9,0x33,0xc6,0x1b,0x90,0x1a,
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0x6c,0x98,0x9a,0x87,0xd0,0xb2,0xf8,0x07};
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/* SHA-X variables. */
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PRUint8 sha_computed_digest[HASH_LENGTH_MAX];
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SECStatus sha_status;
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/*************************************************/
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/* SHA-1 Single-Round Known Answer Hashing Test. */
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/*************************************************/
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sha_status = SHA1_HashBuf( sha_computed_digest, known_hash_message,
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FIPS_KNOWN_HASH_MESSAGE_LENGTH );
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if( ( sha_status != SECSuccess ) ||
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( PORT_Memcmp( sha_computed_digest, sha1_known_digest,
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SHA1_LENGTH ) != 0 ) )
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return( CKR_DEVICE_ERROR );
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/***************************************************/
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/* SHA-256 Single-Round Known Answer Hashing Test. */
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/***************************************************/
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sha_status = SHA256_HashBuf( sha_computed_digest, known_hash_message,
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FIPS_KNOWN_HASH_MESSAGE_LENGTH );
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if( ( sha_status != SECSuccess ) ||
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( PORT_Memcmp( sha_computed_digest, sha256_known_digest,
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SHA256_LENGTH ) != 0 ) )
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return( CKR_DEVICE_ERROR );
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/***************************************************/
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/* SHA-384 Single-Round Known Answer Hashing Test. */
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/***************************************************/
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sha_status = SHA384_HashBuf( sha_computed_digest, known_hash_message,
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FIPS_KNOWN_HASH_MESSAGE_LENGTH );
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if( ( sha_status != SECSuccess ) ||
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( PORT_Memcmp( sha_computed_digest, sha384_known_digest,
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SHA384_LENGTH ) != 0 ) )
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return( CKR_DEVICE_ERROR );
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/***************************************************/
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/* SHA-512 Single-Round Known Answer Hashing Test. */
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/***************************************************/
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sha_status = SHA512_HashBuf( sha_computed_digest, known_hash_message,
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FIPS_KNOWN_HASH_MESSAGE_LENGTH );
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if( ( sha_status != SECSuccess ) ||
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( PORT_Memcmp( sha_computed_digest, sha512_known_digest,
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SHA512_LENGTH ) != 0 ) )
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return( CKR_DEVICE_ERROR );
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return( CKR_OK );
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}
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static CK_RV
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freebl_fipsSoftwareIntegrityTest(void)
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{
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CK_RV crv = CKR_OK;
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/* make sure that our check file signatures are OK */
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if (!BLAPI_VerifySelf(SHLIB_PREFIX"freebl"SHLIB_VERSION"."SHLIB_SUFFIX)) {
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crv = CKR_DEVICE_ERROR; /* better error code? checksum error? */
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}
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return crv;
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}
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CK_RV
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freebl_fipsPowerUpSelfTest( void )
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{
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CK_RV rv;
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/* MD2 Power-Up SelfTest(s). */
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rv = freebl_fips_MD2_PowerUpSelfTest();
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if( rv != CKR_OK )
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return rv;
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/* MD5 Power-Up SelfTest(s). */
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rv = freebl_fips_MD5_PowerUpSelfTest();
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if( rv != CKR_OK )
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return rv;
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/* SHA-X Power-Up SelfTest(s). */
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rv = freebl_fips_SHA_PowerUpSelfTest();
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if( rv != CKR_OK )
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return rv;
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/* Software/Firmware Integrity Test. */
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rv = freebl_fipsSoftwareIntegrityTest();
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if( rv != CKR_OK )
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return rv;
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/* Passed Power-Up SelfTest(s). */
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return( CKR_OK );
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}
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struct NSSLOWInitContextStr {
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int count;
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};
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struct NSSLOWHASHContextStr {
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const SECHashObject *hashObj;
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void *hashCtxt;
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};
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static int post = 0;
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static NSSLOWInitContext dummyContext = { 0 };
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NSSLOWInitContext *
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NSSLOW_Init(void)
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{
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SECStatus rv;
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CK_RV crv;
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PRBool nsprAvailable = PR_FALSE;
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rv = FREEBL_InitStubs();
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nsprAvailable = (rv == SECSuccess ) ? PR_TRUE : PR_FALSE;
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if (!post) {
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crv = freebl_fipsPowerUpSelfTest();
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if (crv != CKR_OK) {
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return NULL;
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}
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}
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post = 1;
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return &dummyContext;
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}
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void
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NSSLOW_Shutdown(NSSLOWInitContext *context)
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{
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PORT_Assert(context == &dummyContext);
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return;
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}
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NSSLOWHASHContext *
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NSSLOWHASH_NewContext(NSSLOWInitContext *initContext,
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HASH_HashType hashType)
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{
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NSSLOWHASHContext *context;
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if (initContext != &dummyContext) {
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PORT_SetError(SEC_ERROR_INVALID_ARGS);
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return (NULL);
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}
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context = PORT_ZNew(NSSLOWHASHContext);
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if (!context) {
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return NULL;
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}
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context->hashObj = HASH_GetRawHashObject(hashType);
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if (!context->hashObj) {
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PORT_Free(context);
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return NULL;
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}
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context->hashCtxt = context->hashObj->create();
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if (!context->hashCtxt) {
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PORT_Free(context);
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return NULL;
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}
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return context;
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}
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void
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NSSLOWHASH_Begin(NSSLOWHASHContext *context)
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{
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return context->hashObj->begin(context->hashCtxt);
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}
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void
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NSSLOWHASH_Update(NSSLOWHASHContext *context, const unsigned char *buf,
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unsigned int len)
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{
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return context->hashObj->update(context->hashCtxt, buf, len);
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}
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void
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NSSLOWHASH_End(NSSLOWHASHContext *context, unsigned char *buf,
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unsigned int *ret, unsigned int len)
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{
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return context->hashObj->end(context->hashCtxt, buf, ret, len);
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}
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void
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NSSLOWHASH_Destroy(NSSLOWHASHContext *context)
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{
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context->hashObj->destroy(context->hashCtxt, PR_TRUE);
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PORT_Free(context);
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}
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unsigned int
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NSSLOWHASH_Length(NSSLOWHASHContext *context)
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{
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return context->hashObj->length;
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}
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