os/ossrv/ssl/libcrypto/src/crypto/evp/evp.h
author sl
Tue, 10 Jun 2014 14:32:02 +0200
changeset 1 260cb5ec6c19
permissions -rw-r--r--
Update contrib.
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/* crypto/evp/evp.h */
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/* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
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 * All rights reserved.
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 *
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 * This package is an SSL implementation written
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 * by Eric Young (eay@cryptsoft.com).
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 * The implementation was written so as to conform with Netscapes SSL.
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 * 
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 * This library is free for commercial and non-commercial use as long as
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 * the following conditions are aheared to.  The following conditions
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 * apply to all code found in this distribution, be it the RC4, RSA,
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 * lhash, DES, etc., code; not just the SSL code.  The SSL documentation
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 * included with this distribution is covered by the same copyright terms
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 * except that the holder is Tim Hudson (tjh@cryptsoft.com).
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 * 
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 * Copyright remains Eric Young's, and as such any Copyright notices in
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 * the code are not to be removed.
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 * If this package is used in a product, Eric Young should be given attribution
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 * as the author of the parts of the library used.
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 * This can be in the form of a textual message at program startup or
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 * in documentation (online or textual) provided with the package.
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 * 
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 * Redistribution and use in source and binary forms, with or without
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 * modification, are permitted provided that the following conditions
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 * are met:
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 * 1. Redistributions of source code must retain the copyright
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 *    notice, this list of conditions and the following disclaimer.
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 * 2. Redistributions in binary form must reproduce the above copyright
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 *    notice, this list of conditions and the following disclaimer in the
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 *    documentation and/or other materials provided with the distribution.
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 * 3. All advertising materials mentioning features or use of this software
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 *    must display the following acknowledgement:
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 *    "This product includes cryptographic software written by
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 *     Eric Young (eay@cryptsoft.com)"
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 *    The word 'cryptographic' can be left out if the rouines from the library
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 *    being used are not cryptographic related :-).
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 * 4. If you include any Windows specific code (or a derivative thereof) from 
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 *    the apps directory (application code) you must include an acknowledgement:
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 *    "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
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 * 
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 * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
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 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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 * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
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 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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 * SUCH DAMAGE.
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 * 
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 * The licence and distribution terms for any publically available version or
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 * derivative of this code cannot be changed.  i.e. this code cannot simply be
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 * copied and put under another distribution licence
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 * [including the GNU Public Licence.]
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 */
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/*
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 © Portions copyright (c) 2006-2010 Nokia Corporation.  All rights reserved.
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 */
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#ifndef HEADER_ENVELOPE_H
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#define HEADER_ENVELOPE_H
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#ifdef SYMBIAN
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#include <e32def.h>
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#endif
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#ifdef OPENSSL_ALGORITHM_DEFINES
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# include <openssl/opensslconf.h>
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#else
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# define OPENSSL_ALGORITHM_DEFINES
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# include <openssl/opensslconf.h>
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# undef OPENSSL_ALGORITHM_DEFINES
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#endif
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#include <openssl/ossl_typ.h>
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#include <openssl/symhacks.h>
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#ifndef OPENSSL_NO_BIO
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#include <openssl/bio.h>
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#endif
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/*
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#define EVP_RC2_KEY_SIZE		16
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#define EVP_RC4_KEY_SIZE		16
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#define EVP_BLOWFISH_KEY_SIZE		16
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#define EVP_CAST5_KEY_SIZE		16
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#define EVP_RC5_32_12_16_KEY_SIZE	16
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*/
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#define EVP_MAX_MD_SIZE			64	/* longest known is SHA512 */
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#define EVP_MAX_KEY_LENGTH		32
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#define EVP_MAX_IV_LENGTH		16
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#define EVP_MAX_BLOCK_LENGTH		32
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#define PKCS5_SALT_LEN			8
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/* Default PKCS#5 iteration count */
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#define PKCS5_DEFAULT_ITER		2048
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#include <openssl/objects.h>
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#define EVP_PK_RSA	0x0001
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#define EVP_PK_DSA	0x0002
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#define EVP_PK_DH	0x0004
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#define EVP_PK_EC	0x0008
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#define EVP_PKT_SIGN	0x0010
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#define EVP_PKT_ENC	0x0020
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#define EVP_PKT_EXCH	0x0040
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#define EVP_PKS_RSA	0x0100
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#define EVP_PKS_DSA	0x0200
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#define EVP_PKS_EC	0x0400
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#define EVP_PKT_EXP	0x1000 /* <= 512 bit key */
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#define EVP_PKEY_NONE	NID_undef
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#define EVP_PKEY_RSA	NID_rsaEncryption
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#define EVP_PKEY_RSA2	NID_rsa
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#define EVP_PKEY_DSA	NID_dsa
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#define EVP_PKEY_DSA1	NID_dsa_2
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#define EVP_PKEY_DSA2	NID_dsaWithSHA
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#define EVP_PKEY_DSA3	NID_dsaWithSHA1
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#define EVP_PKEY_DSA4	NID_dsaWithSHA1_2
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#define EVP_PKEY_DH	NID_dhKeyAgreement
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#define EVP_PKEY_EC	NID_X9_62_id_ecPublicKey
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#ifdef	__cplusplus
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extern "C" {
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#endif
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/* Type needs to be a bit field
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 * Sub-type needs to be for variations on the method, as in, can it do
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 * arbitrary encryption.... */
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struct evp_pkey_st
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	{
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	int type;
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	int save_type;
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	int references;
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	union	{
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		char *ptr;
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#ifndef OPENSSL_NO_RSA
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		struct rsa_st *rsa;	/* RSA */
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#endif
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#ifndef OPENSSL_NO_DSA
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		struct dsa_st *dsa;	/* DSA */
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#endif
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#ifndef OPENSSL_NO_DH
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		struct dh_st *dh;	/* DH */
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#endif
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#ifndef OPENSSL_NO_EC
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		struct ec_key_st *ec;	/* ECC */
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#endif
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		} pkey;
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	int save_parameters;
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	STACK_OF(X509_ATTRIBUTE) *attributes; /* [ 0 ] */
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	} /* EVP_PKEY */;
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#define EVP_PKEY_MO_SIGN	0x0001
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#define EVP_PKEY_MO_VERIFY	0x0002
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#define EVP_PKEY_MO_ENCRYPT	0x0004
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#define EVP_PKEY_MO_DECRYPT	0x0008
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#if 0
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/* This structure is required to tie the message digest and signing together.
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 * The lookup can be done by md/pkey_method, oid, oid/pkey_method, or
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 * oid, md and pkey.
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 * This is required because for various smart-card perform the digest and
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 * signing/verification on-board.  To handle this case, the specific
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 * EVP_MD and EVP_PKEY_METHODs need to be closely associated.
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 * When a PKEY is created, it will have a EVP_PKEY_METHOD associated with it.
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 * This can either be software or a token to provide the required low level
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 * routines.
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 */
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typedef struct evp_pkey_md_st
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	{
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	int oid;
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	EVP_MD *md;
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	EVP_PKEY_METHOD *pkey;
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	} EVP_PKEY_MD;
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#define EVP_rsa_md2() \
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		EVP_PKEY_MD_add(NID_md2WithRSAEncryption,\
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			EVP_rsa_pkcs1(),EVP_md2())
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#define EVP_rsa_md5() \
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		EVP_PKEY_MD_add(NID_md5WithRSAEncryption,\
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			EVP_rsa_pkcs1(),EVP_md5())
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#define EVP_rsa_sha0() \
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		EVP_PKEY_MD_add(NID_shaWithRSAEncryption,\
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			EVP_rsa_pkcs1(),EVP_sha())
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#define EVP_rsa_sha1() \
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		EVP_PKEY_MD_add(NID_sha1WithRSAEncryption,\
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			EVP_rsa_pkcs1(),EVP_sha1())
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#define EVP_rsa_ripemd160() \
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		EVP_PKEY_MD_add(NID_ripemd160WithRSA,\
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			EVP_rsa_pkcs1(),EVP_ripemd160())
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#define EVP_rsa_mdc2() \
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		EVP_PKEY_MD_add(NID_mdc2WithRSA,\
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			EVP_rsa_octet_string(),EVP_mdc2())
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#define EVP_dsa_sha() \
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		EVP_PKEY_MD_add(NID_dsaWithSHA,\
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			EVP_dsa(),EVP_sha())
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#define EVP_dsa_sha1() \
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		EVP_PKEY_MD_add(NID_dsaWithSHA1,\
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			EVP_dsa(),EVP_sha1())
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typedef struct evp_pkey_method_st
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	{
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	char *name;
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	int flags;
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	int type;		/* RSA, DSA, an SSLeay specific constant */
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	int oid;		/* For the pub-key type */
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	int encrypt_oid;	/* pub/priv key encryption */
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	int (*sign)();
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	int (*verify)();
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	struct	{
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		int (*set)();	/* get and/or set the underlying type */
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		int (*get)();
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		int (*encrypt)();
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		int (*decrypt)();
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		int (*i2d)();
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		int (*d2i)();
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		int (*dup)();
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		} pub,priv;
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	int (*set_asn1_parameters)();
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	int (*get_asn1_parameters)();
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	} EVP_PKEY_METHOD;
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#endif
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#ifndef EVP_MD
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struct env_md_st
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	{
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	int type;
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	int pkey_type;
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	int md_size;
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	unsigned long flags;
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	int (*init)(EVP_MD_CTX *ctx);
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	int (*update)(EVP_MD_CTX *ctx,const void *data,size_t count);
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	int (*final)(EVP_MD_CTX *ctx,unsigned char *md);
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	int (*copy)(EVP_MD_CTX *to,const EVP_MD_CTX *from);
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	int (*cleanup)(EVP_MD_CTX *ctx);
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	/* FIXME: prototype these some day */
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	int (*sign)(int type, const unsigned char *m, unsigned int m_length,
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		    unsigned char *sigret, unsigned int *siglen, void *key);
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	int (*verify)(int type, const unsigned char *m, unsigned int m_length,
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		      const unsigned char *sigbuf, unsigned int siglen,
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		      void *key);
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	int required_pkey_type[5]; /*EVP_PKEY_xxx */
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	int block_size;
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	int ctx_size; /* how big does the ctx->md_data need to be */
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	} /* EVP_MD */;
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typedef int evp_sign_method(int type,const unsigned char *m,
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			    unsigned int m_length,unsigned char *sigret,
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			    unsigned int *siglen, void *key);
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typedef int evp_verify_method(int type,const unsigned char *m,
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			    unsigned int m_length,const unsigned char *sigbuf,
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			    unsigned int siglen, void *key);
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#define EVP_MD_FLAG_ONESHOT	0x0001 /* digest can only handle a single
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					* block */
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#define EVP_PKEY_NULL_method	NULL,NULL,{0,0,0,0}
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#ifndef OPENSSL_NO_DSA
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#define EVP_PKEY_DSA_method	(evp_sign_method *)DSA_sign, \
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				(evp_verify_method *)DSA_verify, \
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				{EVP_PKEY_DSA,EVP_PKEY_DSA2,EVP_PKEY_DSA3, \
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					EVP_PKEY_DSA4,0}
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#else
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#define EVP_PKEY_DSA_method	EVP_PKEY_NULL_method
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#endif
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#ifndef OPENSSL_NO_ECDSA
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#define EVP_PKEY_ECDSA_method   (evp_sign_method *)ECDSA_sign, \
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				(evp_verify_method *)ECDSA_verify, \
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                                 {EVP_PKEY_EC,0,0,0}
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#else   
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#define EVP_PKEY_ECDSA_method   EVP_PKEY_NULL_method
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#endif
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#ifndef OPENSSL_NO_RSA
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#define EVP_PKEY_RSA_method	(evp_sign_method *)RSA_sign, \
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				(evp_verify_method *)RSA_verify, \
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				{EVP_PKEY_RSA,EVP_PKEY_RSA2,0,0}
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#define EVP_PKEY_RSA_ASN1_OCTET_STRING_method \
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				(evp_sign_method *)RSA_sign_ASN1_OCTET_STRING, \
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				(evp_verify_method *)RSA_verify_ASN1_OCTET_STRING, \
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				{EVP_PKEY_RSA,EVP_PKEY_RSA2,0,0}
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#else
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#define EVP_PKEY_RSA_method	EVP_PKEY_NULL_method
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#define EVP_PKEY_RSA_ASN1_OCTET_STRING_method EVP_PKEY_NULL_method
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#endif
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#endif /* !EVP_MD */
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struct env_md_ctx_st
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	{
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	const EVP_MD *digest;
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	ENGINE *engine; /* functional reference if 'digest' is ENGINE-provided */
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	unsigned long flags;
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	void *md_data;
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	} /* EVP_MD_CTX */;
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/* values for EVP_MD_CTX flags */
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#define EVP_MD_CTX_FLAG_ONESHOT		0x0001 /* digest update will be called
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						* once only */
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#define EVP_MD_CTX_FLAG_CLEANED		0x0002 /* context has already been
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						* cleaned */
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#define EVP_MD_CTX_FLAG_REUSE		0x0004 /* Don't free up ctx->md_data
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						* in EVP_MD_CTX_cleanup */
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struct evp_cipher_st
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	{
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	int nid;
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	int block_size;
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	int key_len;		/* Default value for variable length ciphers */
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	int iv_len;
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	unsigned long flags;	/* Various flags */
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	int (*init)(EVP_CIPHER_CTX *ctx, const unsigned char *key,
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		    const unsigned char *iv, int enc);	/* init key */
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	int (*do_cipher)(EVP_CIPHER_CTX *ctx, unsigned char *out,
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			 const unsigned char *in, unsigned int inl);/* encrypt/decrypt data */
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	int (*cleanup)(EVP_CIPHER_CTX *); /* cleanup ctx */
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	int ctx_size;		/* how big ctx->cipher_data needs to be */
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	int (*set_asn1_parameters)(EVP_CIPHER_CTX *, ASN1_TYPE *); /* Populate a ASN1_TYPE with parameters */
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	int (*get_asn1_parameters)(EVP_CIPHER_CTX *, ASN1_TYPE *); /* Get parameters from a ASN1_TYPE */
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	int (*ctrl)(EVP_CIPHER_CTX *, int type, int arg, void *ptr); /* Miscellaneous operations */
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	void *app_data;		/* Application data */
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	} /* EVP_CIPHER */;
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/* Values for cipher flags */
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/* Modes for ciphers */
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#define		EVP_CIPH_STREAM_CIPHER		0x0
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#define		EVP_CIPH_ECB_MODE		0x1
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#define		EVP_CIPH_CBC_MODE		0x2
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#define		EVP_CIPH_CFB_MODE		0x3
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#define		EVP_CIPH_OFB_MODE		0x4
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#define 	EVP_CIPH_MODE			0x7
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/* Set if variable length cipher */
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#define 	EVP_CIPH_VARIABLE_LENGTH	0x8
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/* Set if the iv handling should be done by the cipher itself */
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#define 	EVP_CIPH_CUSTOM_IV		0x10
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/* Set if the cipher's init() function should be called if key is NULL */
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#define 	EVP_CIPH_ALWAYS_CALL_INIT	0x20
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/* Call ctrl() to init cipher parameters */
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#define 	EVP_CIPH_CTRL_INIT		0x40
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/* Don't use standard key length function */
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#define 	EVP_CIPH_CUSTOM_KEY_LENGTH	0x80
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/* Don't use standard block padding */
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#define 	EVP_CIPH_NO_PADDING		0x100
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/* cipher handles random key generation */
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#define 	EVP_CIPH_RAND_KEY		0x200
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/* ctrl() values */
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#define		EVP_CTRL_INIT			0x0
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#define 	EVP_CTRL_SET_KEY_LENGTH		0x1
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#define 	EVP_CTRL_GET_RC2_KEY_BITS	0x2
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#define 	EVP_CTRL_SET_RC2_KEY_BITS	0x3
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   362
#define 	EVP_CTRL_GET_RC5_ROUNDS		0x4
sl@0
   363
#define 	EVP_CTRL_SET_RC5_ROUNDS		0x5
sl@0
   364
#define 	EVP_CTRL_RAND_KEY		0x6
sl@0
   365
sl@0
   366
typedef struct evp_cipher_info_st
sl@0
   367
	{
sl@0
   368
	const EVP_CIPHER *cipher;
sl@0
   369
	unsigned char iv[EVP_MAX_IV_LENGTH];
sl@0
   370
	} EVP_CIPHER_INFO;
sl@0
   371
sl@0
   372
struct evp_cipher_ctx_st
sl@0
   373
	{
sl@0
   374
	const EVP_CIPHER *cipher;
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   375
	ENGINE *engine;	/* functional reference if 'cipher' is ENGINE-provided */
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   376
	int encrypt;		/* encrypt or decrypt */
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   377
	int buf_len;		/* number we have left */
sl@0
   378
sl@0
   379
	unsigned char  oiv[EVP_MAX_IV_LENGTH];	/* original iv */
sl@0
   380
	unsigned char  iv[EVP_MAX_IV_LENGTH];	/* working iv */
sl@0
   381
	unsigned char buf[EVP_MAX_BLOCK_LENGTH];/* saved partial block */
sl@0
   382
	int num;				/* used by cfb/ofb mode */
sl@0
   383
sl@0
   384
	void *app_data;		/* application stuff */
sl@0
   385
	int key_len;		/* May change for variable length cipher */
sl@0
   386
	unsigned long flags;	/* Various flags */
sl@0
   387
	void *cipher_data; /* per EVP data */
sl@0
   388
	int final_used;
sl@0
   389
	int block_mask;
sl@0
   390
	unsigned char final[EVP_MAX_BLOCK_LENGTH];/* possible final block */
sl@0
   391
	} /* EVP_CIPHER_CTX */;
sl@0
   392
sl@0
   393
typedef struct evp_Encode_Ctx_st
sl@0
   394
	{
sl@0
   395
	int num;	/* number saved in a partial encode/decode */
sl@0
   396
	int length;	/* The length is either the output line length
sl@0
   397
			 * (in input bytes) or the shortest input line
sl@0
   398
			 * length that is ok.  Once decoding begins,
sl@0
   399
			 * the length is adjusted up each time a longer
sl@0
   400
			 * line is decoded */
sl@0
   401
	unsigned char enc_data[80];	/* data to encode */
sl@0
   402
	int line_num;	/* number read on current line */
sl@0
   403
	int expect_nl;
sl@0
   404
	} EVP_ENCODE_CTX;
sl@0
   405
sl@0
   406
/* Password based encryption function */
sl@0
   407
typedef int (EVP_PBE_KEYGEN)(EVP_CIPHER_CTX *ctx, const char *pass, int passlen,
sl@0
   408
		ASN1_TYPE *param, const EVP_CIPHER *cipher,
sl@0
   409
                const EVP_MD *md, int en_de);
sl@0
   410
sl@0
   411
#ifndef OPENSSL_NO_RSA
sl@0
   412
#define EVP_PKEY_assign_RSA(pkey,rsa) EVP_PKEY_assign((pkey),EVP_PKEY_RSA,\
sl@0
   413
					(char *)(rsa))
sl@0
   414
#endif
sl@0
   415
sl@0
   416
#ifndef OPENSSL_NO_DSA
sl@0
   417
#define EVP_PKEY_assign_DSA(pkey,dsa) EVP_PKEY_assign((pkey),EVP_PKEY_DSA,\
sl@0
   418
					(char *)(dsa))
sl@0
   419
#endif
sl@0
   420
sl@0
   421
#ifndef OPENSSL_NO_DH
sl@0
   422
#define EVP_PKEY_assign_DH(pkey,dh) EVP_PKEY_assign((pkey),EVP_PKEY_DH,\
sl@0
   423
					(char *)(dh))
sl@0
   424
#endif
sl@0
   425
sl@0
   426
#ifndef OPENSSL_NO_EC
sl@0
   427
#define EVP_PKEY_assign_EC_KEY(pkey,eckey) EVP_PKEY_assign((pkey),EVP_PKEY_EC,\
sl@0
   428
                                        (char *)(eckey))
sl@0
   429
#endif
sl@0
   430
sl@0
   431
/* Add some extra combinations */
sl@0
   432
#define EVP_get_digestbynid(a) EVP_get_digestbyname(OBJ_nid2sn(a))
sl@0
   433
#define EVP_get_digestbyobj(a) EVP_get_digestbynid(OBJ_obj2nid(a))
sl@0
   434
#define EVP_get_cipherbynid(a) EVP_get_cipherbyname(OBJ_nid2sn(a))
sl@0
   435
#define EVP_get_cipherbyobj(a) EVP_get_cipherbynid(OBJ_obj2nid(a))
sl@0
   436
sl@0
   437
int EVP_MD_type(const EVP_MD *md);
sl@0
   438
#define EVP_MD_nid(e)			EVP_MD_type(e)
sl@0
   439
#define EVP_MD_name(e)			OBJ_nid2sn(EVP_MD_nid(e))
sl@0
   440
int EVP_MD_pkey_type(const EVP_MD *md);	
sl@0
   441
int EVP_MD_size(const EVP_MD *md);
sl@0
   442
int EVP_MD_block_size(const EVP_MD *md);
sl@0
   443
sl@0
   444
const EVP_MD * EVP_MD_CTX_md(const EVP_MD_CTX *ctx);
sl@0
   445
#define EVP_MD_CTX_size(e)		EVP_MD_size(EVP_MD_CTX_md(e))
sl@0
   446
#define EVP_MD_CTX_block_size(e)	EVP_MD_block_size(EVP_MD_CTX_md(e))
sl@0
   447
#define EVP_MD_CTX_type(e)		EVP_MD_type(EVP_MD_CTX_md(e))
sl@0
   448
sl@0
   449
int EVP_CIPHER_nid(const EVP_CIPHER *cipher);
sl@0
   450
#define EVP_CIPHER_name(e)		OBJ_nid2sn(EVP_CIPHER_nid(e))
sl@0
   451
int EVP_CIPHER_block_size(const EVP_CIPHER *cipher);
sl@0
   452
int EVP_CIPHER_key_length(const EVP_CIPHER *cipher);
sl@0
   453
int EVP_CIPHER_iv_length(const EVP_CIPHER *cipher);
sl@0
   454
unsigned long EVP_CIPHER_flags(const EVP_CIPHER *cipher);
sl@0
   455
#define EVP_CIPHER_mode(e)		(EVP_CIPHER_flags(e) & EVP_CIPH_MODE)
sl@0
   456
sl@0
   457
const EVP_CIPHER * EVP_CIPHER_CTX_cipher(const EVP_CIPHER_CTX *ctx);
sl@0
   458
int EVP_CIPHER_CTX_nid(const EVP_CIPHER_CTX *ctx);
sl@0
   459
int EVP_CIPHER_CTX_block_size(const EVP_CIPHER_CTX *ctx);
sl@0
   460
int EVP_CIPHER_CTX_key_length(const EVP_CIPHER_CTX *ctx);
sl@0
   461
int EVP_CIPHER_CTX_iv_length(const EVP_CIPHER_CTX *ctx);
sl@0
   462
void * EVP_CIPHER_CTX_get_app_data(const EVP_CIPHER_CTX *ctx);
sl@0
   463
void EVP_CIPHER_CTX_set_app_data(EVP_CIPHER_CTX *ctx, void *data);
sl@0
   464
#define EVP_CIPHER_CTX_type(c)         EVP_CIPHER_type(EVP_CIPHER_CTX_cipher(c))
sl@0
   465
unsigned long EVP_CIPHER_CTX_flags(const EVP_CIPHER_CTX *ctx);
sl@0
   466
#define EVP_CIPHER_CTX_mode(e)		(EVP_CIPHER_CTX_flags(e) & EVP_CIPH_MODE)
sl@0
   467
sl@0
   468
#define EVP_ENCODE_LENGTH(l)	(((l+2)/3*4)+(l/48+1)*2+80)
sl@0
   469
#define EVP_DECODE_LENGTH(l)	((l+3)/4*3+80)
sl@0
   470
sl@0
   471
#define EVP_SignInit_ex(a,b,c)		EVP_DigestInit_ex(a,b,c)
sl@0
   472
#define EVP_SignInit(a,b)		EVP_DigestInit(a,b)
sl@0
   473
#define EVP_SignUpdate(a,b,c)		EVP_DigestUpdate(a,b,c)
sl@0
   474
#define	EVP_VerifyInit_ex(a,b,c)	EVP_DigestInit_ex(a,b,c)
sl@0
   475
#define	EVP_VerifyInit(a,b)		EVP_DigestInit(a,b)
sl@0
   476
#define	EVP_VerifyUpdate(a,b,c)		EVP_DigestUpdate(a,b,c)
sl@0
   477
#define EVP_OpenUpdate(a,b,c,d,e)	EVP_DecryptUpdate(a,b,c,d,e)
sl@0
   478
#define EVP_SealUpdate(a,b,c,d,e)	EVP_EncryptUpdate(a,b,c,d,e)	
sl@0
   479
sl@0
   480
#ifdef CONST_STRICT
sl@0
   481
IMPORT_C void BIO_set_md(BIO *,const EVP_MD *md);
sl@0
   482
#else
sl@0
   483
# define BIO_set_md(b,md)		BIO_ctrl(b,BIO_C_SET_MD,0,(char *)md)
sl@0
   484
#endif
sl@0
   485
#define BIO_get_md(b,mdp)		BIO_ctrl(b,BIO_C_GET_MD,0,(char *)mdp)
sl@0
   486
#define BIO_get_md_ctx(b,mdcp)     BIO_ctrl(b,BIO_C_GET_MD_CTX,0,(char *)mdcp)
sl@0
   487
#define BIO_set_md_ctx(b,mdcp)     BIO_ctrl(b,BIO_C_SET_MD_CTX,0,(char *)mdcp)
sl@0
   488
#define BIO_get_cipher_status(b)	BIO_ctrl(b,BIO_C_GET_CIPHER_STATUS,0,NULL)
sl@0
   489
#define BIO_get_cipher_ctx(b,c_pp)	BIO_ctrl(b,BIO_C_GET_CIPHER_CTX,0,(char *)c_pp)
sl@0
   490
sl@0
   491
int EVP_Cipher(EVP_CIPHER_CTX *c,
sl@0
   492
		unsigned char *out,
sl@0
   493
		const unsigned char *in,
sl@0
   494
		unsigned int inl);
sl@0
   495
sl@0
   496
#define EVP_add_cipher_alias(n,alias) \
sl@0
   497
	OBJ_NAME_add((alias),OBJ_NAME_TYPE_CIPHER_METH|OBJ_NAME_ALIAS,(n))
sl@0
   498
#define EVP_add_digest_alias(n,alias) \
sl@0
   499
	OBJ_NAME_add((alias),OBJ_NAME_TYPE_MD_METH|OBJ_NAME_ALIAS,(n))
sl@0
   500
#define EVP_delete_cipher_alias(alias) \
sl@0
   501
	OBJ_NAME_remove(alias,OBJ_NAME_TYPE_CIPHER_METH|OBJ_NAME_ALIAS);
sl@0
   502
#define EVP_delete_digest_alias(alias) \
sl@0
   503
	OBJ_NAME_remove(alias,OBJ_NAME_TYPE_MD_METH|OBJ_NAME_ALIAS);
sl@0
   504
sl@0
   505
IMPORT_C void	EVP_MD_CTX_init(EVP_MD_CTX *ctx);
sl@0
   506
IMPORT_C int	EVP_MD_CTX_cleanup(EVP_MD_CTX *ctx);
sl@0
   507
IMPORT_C EVP_MD_CTX *EVP_MD_CTX_create(void);
sl@0
   508
IMPORT_C void	EVP_MD_CTX_destroy(EVP_MD_CTX *ctx);
sl@0
   509
IMPORT_C int     EVP_MD_CTX_copy_ex(EVP_MD_CTX *out,const EVP_MD_CTX *in);  
sl@0
   510
IMPORT_C void	EVP_MD_CTX_set_flags(EVP_MD_CTX *ctx, int flags);
sl@0
   511
IMPORT_C void	EVP_MD_CTX_clear_flags(EVP_MD_CTX *ctx, int flags);
sl@0
   512
IMPORT_C int 	EVP_MD_CTX_test_flags(const EVP_MD_CTX *ctx,int flags);
sl@0
   513
IMPORT_C int	EVP_DigestInit_ex(EVP_MD_CTX *ctx, const EVP_MD *type, ENGINE *impl);
sl@0
   514
IMPORT_C int	EVP_DigestUpdate(EVP_MD_CTX *ctx,const void *d,
sl@0
   515
			 size_t cnt);
sl@0
   516
IMPORT_C int	EVP_DigestFinal_ex(EVP_MD_CTX *ctx,unsigned char *md,unsigned int *s);
sl@0
   517
IMPORT_C int	EVP_Digest(const void *data, size_t count,
sl@0
   518
		unsigned char *md, unsigned int *size, const EVP_MD *type, ENGINE *impl);
sl@0
   519
sl@0
   520
IMPORT_C int     EVP_MD_CTX_copy(EVP_MD_CTX *out,const EVP_MD_CTX *in);  
sl@0
   521
IMPORT_C int	EVP_DigestInit(EVP_MD_CTX *ctx, const EVP_MD *type);
sl@0
   522
IMPORT_C int	EVP_DigestFinal(EVP_MD_CTX *ctx,unsigned char *md,unsigned int *s);
sl@0
   523
sl@0
   524
IMPORT_C int	EVP_read_pw_string(char *buf,int length,const char *prompt,int verify);
sl@0
   525
IMPORT_C void	EVP_set_pw_prompt(const char *prompt);
sl@0
   526
IMPORT_C char *	EVP_get_pw_prompt(void);
sl@0
   527
sl@0
   528
IMPORT_C int	EVP_BytesToKey(const EVP_CIPHER *type,const EVP_MD *md,
sl@0
   529
		const unsigned char *salt, const unsigned char *data,
sl@0
   530
		int datal, int count, unsigned char *key,unsigned char *iv);
sl@0
   531
sl@0
   532
IMPORT_C int	EVP_EncryptInit(EVP_CIPHER_CTX *ctx,const EVP_CIPHER *cipher,
sl@0
   533
		const unsigned char *key, const unsigned char *iv);
sl@0
   534
IMPORT_C int	EVP_EncryptInit_ex(EVP_CIPHER_CTX *ctx,const EVP_CIPHER *cipher, ENGINE *impl,
sl@0
   535
		const unsigned char *key, const unsigned char *iv);
sl@0
   536
IMPORT_C int	EVP_EncryptUpdate(EVP_CIPHER_CTX *ctx, unsigned char *out,
sl@0
   537
		int *outl, const unsigned char *in, int inl);
sl@0
   538
IMPORT_C int	EVP_EncryptFinal_ex(EVP_CIPHER_CTX *ctx, unsigned char *out, int *outl);
sl@0
   539
IMPORT_C int	EVP_EncryptFinal(EVP_CIPHER_CTX *ctx, unsigned char *out, int *outl);
sl@0
   540
sl@0
   541
IMPORT_C int	EVP_DecryptInit(EVP_CIPHER_CTX *ctx,const EVP_CIPHER *cipher,
sl@0
   542
		const unsigned char *key, const unsigned char *iv);
sl@0
   543
IMPORT_C int	EVP_DecryptInit_ex(EVP_CIPHER_CTX *ctx,const EVP_CIPHER *cipher, ENGINE *impl,
sl@0
   544
		const unsigned char *key, const unsigned char *iv);
sl@0
   545
IMPORT_C int	EVP_DecryptUpdate(EVP_CIPHER_CTX *ctx, unsigned char *out,
sl@0
   546
		int *outl, const unsigned char *in, int inl);
sl@0
   547
IMPORT_C int	EVP_DecryptFinal(EVP_CIPHER_CTX *ctx, unsigned char *outm, int *outl);
sl@0
   548
IMPORT_C int	EVP_DecryptFinal_ex(EVP_CIPHER_CTX *ctx, unsigned char *outm, int *outl);
sl@0
   549
sl@0
   550
IMPORT_C int	EVP_CipherInit(EVP_CIPHER_CTX *ctx,const EVP_CIPHER *cipher,
sl@0
   551
		       const unsigned char *key,const unsigned char *iv,
sl@0
   552
		       int enc);
sl@0
   553
IMPORT_C int	EVP_CipherInit_ex(EVP_CIPHER_CTX *ctx,const EVP_CIPHER *cipher, ENGINE *impl,
sl@0
   554
		       const unsigned char *key,const unsigned char *iv,
sl@0
   555
		       int enc);
sl@0
   556
IMPORT_C int	EVP_CipherUpdate(EVP_CIPHER_CTX *ctx, unsigned char *out,
sl@0
   557
		int *outl, const unsigned char *in, int inl);
sl@0
   558
IMPORT_C int	EVP_CipherFinal(EVP_CIPHER_CTX *ctx, unsigned char *outm, int *outl);
sl@0
   559
IMPORT_C int	EVP_CipherFinal_ex(EVP_CIPHER_CTX *ctx, unsigned char *outm, int *outl);
sl@0
   560
sl@0
   561
IMPORT_C int	EVP_SignFinal(EVP_MD_CTX *ctx,unsigned char *md,unsigned int *s,
sl@0
   562
		EVP_PKEY *pkey);
sl@0
   563
sl@0
   564
IMPORT_C int	EVP_VerifyFinal(EVP_MD_CTX *ctx,const unsigned char *sigbuf,
sl@0
   565
		unsigned int siglen,EVP_PKEY *pkey);
sl@0
   566
sl@0
   567
IMPORT_C int	EVP_OpenInit(EVP_CIPHER_CTX *ctx,const EVP_CIPHER *type,
sl@0
   568
		const unsigned char *ek, int ekl, const unsigned char *iv,
sl@0
   569
		EVP_PKEY *priv);
sl@0
   570
IMPORT_C int	EVP_OpenFinal(EVP_CIPHER_CTX *ctx, unsigned char *out, int *outl);
sl@0
   571
sl@0
   572
IMPORT_C int	EVP_SealInit(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *type,
sl@0
   573
		 unsigned char **ek, int *ekl, unsigned char *iv,
sl@0
   574
		EVP_PKEY **pubk, int npubk);
sl@0
   575
IMPORT_C int	EVP_SealFinal(EVP_CIPHER_CTX *ctx,unsigned char *out,int *outl);
sl@0
   576
sl@0
   577
IMPORT_C void	EVP_EncodeInit(EVP_ENCODE_CTX *ctx);
sl@0
   578
IMPORT_C void	EVP_EncodeUpdate(EVP_ENCODE_CTX *ctx,unsigned char *out,int *outl,
sl@0
   579
		const unsigned char *in,int inl);
sl@0
   580
IMPORT_C void	EVP_EncodeFinal(EVP_ENCODE_CTX *ctx,unsigned char *out,int *outl);
sl@0
   581
IMPORT_C int	EVP_EncodeBlock(unsigned char *t, const unsigned char *f, int n);
sl@0
   582
sl@0
   583
IMPORT_C void	EVP_DecodeInit(EVP_ENCODE_CTX *ctx);
sl@0
   584
IMPORT_C int	EVP_DecodeUpdate(EVP_ENCODE_CTX *ctx,unsigned char *out,int *outl,
sl@0
   585
		const unsigned char *in, int inl);
sl@0
   586
IMPORT_C int	EVP_DecodeFinal(EVP_ENCODE_CTX *ctx, unsigned
sl@0
   587
		char *out, int *outl);
sl@0
   588
IMPORT_C int	EVP_DecodeBlock(unsigned char *t, const unsigned char *f, int n);
sl@0
   589
sl@0
   590
IMPORT_C void EVP_CIPHER_CTX_init(EVP_CIPHER_CTX *a);
sl@0
   591
IMPORT_C int EVP_CIPHER_CTX_cleanup(EVP_CIPHER_CTX *a);
sl@0
   592
IMPORT_C EVP_CIPHER_CTX *EVP_CIPHER_CTX_new(void);
sl@0
   593
IMPORT_C void EVP_CIPHER_CTX_free(EVP_CIPHER_CTX *a);
sl@0
   594
IMPORT_C int EVP_CIPHER_CTX_set_key_length(EVP_CIPHER_CTX *x, int keylen);
sl@0
   595
IMPORT_C int EVP_CIPHER_CTX_set_padding(EVP_CIPHER_CTX *c, int pad);
sl@0
   596
IMPORT_C int EVP_CIPHER_CTX_ctrl(EVP_CIPHER_CTX *ctx, int type, int arg, void *ptr);
sl@0
   597
IMPORT_C int EVP_CIPHER_CTX_rand_key(EVP_CIPHER_CTX *ctx, unsigned char *key);
sl@0
   598
sl@0
   599
#ifndef OPENSSL_NO_BIO
sl@0
   600
IMPORT_C BIO_METHOD *BIO_f_md(void);
sl@0
   601
IMPORT_C BIO_METHOD *BIO_f_base64(void);
sl@0
   602
IMPORT_C BIO_METHOD *BIO_f_cipher(void);
sl@0
   603
IMPORT_C BIO_METHOD *BIO_f_reliable(void);
sl@0
   604
IMPORT_C void BIO_set_cipher(BIO *b,const EVP_CIPHER *c,const unsigned char *k,
sl@0
   605
		const unsigned char *i, int enc);
sl@0
   606
#endif
sl@0
   607
sl@0
   608
IMPORT_C const EVP_MD *EVP_md_null(void);
sl@0
   609
#ifndef OPENSSL_NO_MD2
sl@0
   610
IMPORT_C const EVP_MD *EVP_md2(void);
sl@0
   611
#endif
sl@0
   612
#ifndef OPENSSL_NO_MD5
sl@0
   613
IMPORT_C const EVP_MD *EVP_md5(void);
sl@0
   614
#endif
sl@0
   615
#ifndef OPENSSL_NO_SHA
sl@0
   616
IMPORT_C const EVP_MD *EVP_sha(void);
sl@0
   617
IMPORT_C const EVP_MD *EVP_sha1(void);
sl@0
   618
IMPORT_C const EVP_MD *EVP_dss(void);
sl@0
   619
IMPORT_C const EVP_MD *EVP_dss1(void);
sl@0
   620
#endif
sl@0
   621
#ifndef OPENSSL_NO_SHA256
sl@0
   622
IMPORT_C const EVP_MD *EVP_sha224(void);
sl@0
   623
IMPORT_C const EVP_MD *EVP_sha256(void);
sl@0
   624
#endif
sl@0
   625
#ifndef OPENSSL_NO_SHA512
sl@0
   626
IMPORT_C const EVP_MD *EVP_sha384(void);
sl@0
   627
IMPORT_C const EVP_MD *EVP_sha512(void);
sl@0
   628
#endif
sl@0
   629
IMPORT_C const EVP_CIPHER *EVP_enc_null(void);		/* does nothing :-) */
sl@0
   630
#ifndef OPENSSL_NO_DES
sl@0
   631
IMPORT_C const EVP_CIPHER *EVP_des_ecb(void);
sl@0
   632
IMPORT_C const EVP_CIPHER *EVP_des_ede(void);
sl@0
   633
IMPORT_C const EVP_CIPHER *EVP_des_ede3(void);
sl@0
   634
IMPORT_C const EVP_CIPHER *EVP_des_ede_ecb(void);
sl@0
   635
IMPORT_C const EVP_CIPHER *EVP_des_ede3_ecb(void);
sl@0
   636
IMPORT_C const EVP_CIPHER *EVP_des_cfb64(void);
sl@0
   637
# define EVP_des_cfb EVP_des_cfb64
sl@0
   638
IMPORT_C const EVP_CIPHER *EVP_des_cfb1(void);
sl@0
   639
IMPORT_C const EVP_CIPHER *EVP_des_cfb8(void);
sl@0
   640
IMPORT_C const EVP_CIPHER *EVP_des_ede_cfb64(void);
sl@0
   641
# define EVP_des_ede_cfb EVP_des_ede_cfb64
sl@0
   642
#if 0
sl@0
   643
IMPORT_C const EVP_CIPHER *EVP_des_ede_cfb1(void);
sl@0
   644
IMPORT_C const EVP_CIPHER *EVP_des_ede_cfb8(void);
sl@0
   645
#endif
sl@0
   646
IMPORT_C const EVP_CIPHER *EVP_des_ede3_cfb64(void);
sl@0
   647
# define EVP_des_ede3_cfb EVP_des_ede3_cfb64
sl@0
   648
IMPORT_C const EVP_CIPHER *EVP_des_ede3_cfb1(void);
sl@0
   649
IMPORT_C const EVP_CIPHER *EVP_des_ede3_cfb8(void);
sl@0
   650
IMPORT_C const EVP_CIPHER *EVP_des_ofb(void);
sl@0
   651
IMPORT_C const EVP_CIPHER *EVP_des_ede_ofb(void);
sl@0
   652
IMPORT_C const EVP_CIPHER *EVP_des_ede3_ofb(void);
sl@0
   653
IMPORT_C const EVP_CIPHER *EVP_des_cbc(void);
sl@0
   654
IMPORT_C const EVP_CIPHER *EVP_des_ede_cbc(void);
sl@0
   655
IMPORT_C const EVP_CIPHER *EVP_des_ede3_cbc(void);
sl@0
   656
IMPORT_C const EVP_CIPHER *EVP_desx_cbc(void);
sl@0
   657
/* This should now be supported through the dev_crypto ENGINE. But also, why are
sl@0
   658
 * rc4 and md5 declarations made here inside a "NO_DES" precompiler branch? */
sl@0
   659
#if 0
sl@0
   660
# ifdef OPENSSL_OPENBSD_DEV_CRYPTO
sl@0
   661
IMPORT_C const EVP_CIPHER *EVP_dev_crypto_des_ede3_cbc(void);
sl@0
   662
IMPORT_C const EVP_CIPHER *EVP_dev_crypto_rc4(void);
sl@0
   663
IMPORT_C const EVP_MD *EVP_dev_crypto_md5(void);
sl@0
   664
# endif
sl@0
   665
#endif
sl@0
   666
#endif
sl@0
   667
#ifndef OPENSSL_NO_RC4
sl@0
   668
IMPORT_C const EVP_CIPHER *EVP_rc4(void);
sl@0
   669
IMPORT_C const EVP_CIPHER *EVP_rc4_40(void);
sl@0
   670
#endif
sl@0
   671
#ifndef OPENSSL_NO_RC2
sl@0
   672
IMPORT_C const EVP_CIPHER *EVP_rc2_ecb(void);
sl@0
   673
IMPORT_C const EVP_CIPHER *EVP_rc2_cbc(void);
sl@0
   674
IMPORT_C const EVP_CIPHER *EVP_rc2_40_cbc(void);
sl@0
   675
IMPORT_C const EVP_CIPHER *EVP_rc2_64_cbc(void);
sl@0
   676
IMPORT_C const EVP_CIPHER *EVP_rc2_cfb64(void);
sl@0
   677
# define EVP_rc2_cfb EVP_rc2_cfb64
sl@0
   678
IMPORT_C const EVP_CIPHER *EVP_rc2_ofb(void);
sl@0
   679
#endif
sl@0
   680
#ifndef OPENSSL_NO_AES
sl@0
   681
IMPORT_C const EVP_CIPHER *EVP_aes_128_ecb(void);
sl@0
   682
IMPORT_C const EVP_CIPHER *EVP_aes_128_cbc(void);
sl@0
   683
IMPORT_C const EVP_CIPHER *EVP_aes_128_cfb1(void);
sl@0
   684
IMPORT_C const EVP_CIPHER *EVP_aes_128_cfb8(void);
sl@0
   685
IMPORT_C const EVP_CIPHER *EVP_aes_128_cfb128(void);
sl@0
   686
# define EVP_aes_128_cfb EVP_aes_128_cfb128
sl@0
   687
IMPORT_C const EVP_CIPHER *EVP_aes_128_ofb(void);
sl@0
   688
#if 0
sl@0
   689
IMPORT_C const EVP_CIPHER *EVP_aes_128_ctr(void);
sl@0
   690
#endif
sl@0
   691
IMPORT_C const EVP_CIPHER *EVP_aes_192_ecb(void);
sl@0
   692
IMPORT_C const EVP_CIPHER *EVP_aes_192_cbc(void);
sl@0
   693
IMPORT_C const EVP_CIPHER *EVP_aes_192_cfb1(void);
sl@0
   694
IMPORT_C const EVP_CIPHER *EVP_aes_192_cfb8(void);
sl@0
   695
IMPORT_C const EVP_CIPHER *EVP_aes_192_cfb128(void);
sl@0
   696
# define EVP_aes_192_cfb EVP_aes_192_cfb128
sl@0
   697
IMPORT_C const EVP_CIPHER *EVP_aes_192_ofb(void);
sl@0
   698
#if 0
sl@0
   699
IMPORT_C const EVP_CIPHER *EVP_aes_192_ctr(void);
sl@0
   700
#endif
sl@0
   701
IMPORT_C const EVP_CIPHER *EVP_aes_256_ecb(void);
sl@0
   702
IMPORT_C const EVP_CIPHER *EVP_aes_256_cbc(void);
sl@0
   703
IMPORT_C const EVP_CIPHER *EVP_aes_256_cfb1(void);
sl@0
   704
IMPORT_C const EVP_CIPHER *EVP_aes_256_cfb8(void);
sl@0
   705
IMPORT_C const EVP_CIPHER *EVP_aes_256_cfb128(void);
sl@0
   706
# define EVP_aes_256_cfb EVP_aes_256_cfb128
sl@0
   707
IMPORT_C const EVP_CIPHER *EVP_aes_256_ofb(void);
sl@0
   708
#if 0
sl@0
   709
IMPORT_C const EVP_CIPHER *EVP_aes_256_ctr(void);
sl@0
   710
#endif
sl@0
   711
#endif
sl@0
   712
sl@0
   713
IMPORT_C void OPENSSL_add_all_algorithms_noconf(void);
sl@0
   714
IMPORT_C void OPENSSL_add_all_algorithms_conf(void);
sl@0
   715
sl@0
   716
#ifdef OPENSSL_LOAD_CONF
sl@0
   717
#define OpenSSL_add_all_algorithms() \
sl@0
   718
		OPENSSL_add_all_algorithms_conf()
sl@0
   719
#else
sl@0
   720
#define OpenSSL_add_all_algorithms() \
sl@0
   721
		OPENSSL_add_all_algorithms_noconf()
sl@0
   722
#endif
sl@0
   723
sl@0
   724
IMPORT_C void OpenSSL_add_all_ciphers(void);
sl@0
   725
IMPORT_C void OpenSSL_add_all_digests(void);
sl@0
   726
#define SSLeay_add_all_algorithms() OpenSSL_add_all_algorithms()
sl@0
   727
#define SSLeay_add_all_ciphers() OpenSSL_add_all_ciphers()
sl@0
   728
#define SSLeay_add_all_digests() OpenSSL_add_all_digests()
sl@0
   729
sl@0
   730
IMPORT_C int EVP_add_cipher(const EVP_CIPHER *cipher);
sl@0
   731
IMPORT_C int EVP_add_digest(const EVP_MD *digest);
sl@0
   732
sl@0
   733
IMPORT_C const EVP_CIPHER *EVP_get_cipherbyname(const char *name);
sl@0
   734
IMPORT_C const EVP_MD *EVP_get_digestbyname(const char *name);
sl@0
   735
IMPORT_C void EVP_cleanup(void);
sl@0
   736
sl@0
   737
IMPORT_C int		EVP_PKEY_decrypt(unsigned char *dec_key,
sl@0
   738
			const unsigned char *enc_key,int enc_key_len,
sl@0
   739
			EVP_PKEY *private_key);
sl@0
   740
IMPORT_C int		EVP_PKEY_encrypt(unsigned char *enc_key,
sl@0
   741
			const unsigned char *key,int key_len,
sl@0
   742
			EVP_PKEY *pub_key);
sl@0
   743
IMPORT_C int		EVP_PKEY_type(int type);
sl@0
   744
IMPORT_C int		EVP_PKEY_bits(EVP_PKEY *pkey);
sl@0
   745
IMPORT_C int		EVP_PKEY_size(EVP_PKEY *pkey);
sl@0
   746
IMPORT_C int 		EVP_PKEY_assign(EVP_PKEY *pkey,int type,char *key);
sl@0
   747
sl@0
   748
#ifndef OPENSSL_NO_RSA
sl@0
   749
struct rsa_st;
sl@0
   750
IMPORT_C int EVP_PKEY_set1_RSA(EVP_PKEY *pkey,struct rsa_st *key);
sl@0
   751
IMPORT_C struct rsa_st *EVP_PKEY_get1_RSA(EVP_PKEY *pkey);
sl@0
   752
#endif
sl@0
   753
#ifndef OPENSSL_NO_DSA
sl@0
   754
struct dsa_st;
sl@0
   755
IMPORT_C int EVP_PKEY_set1_DSA(EVP_PKEY *pkey,struct dsa_st *key);
sl@0
   756
IMPORT_C struct dsa_st *EVP_PKEY_get1_DSA(EVP_PKEY *pkey);
sl@0
   757
#endif
sl@0
   758
#ifndef OPENSSL_NO_DH
sl@0
   759
struct dh_st;
sl@0
   760
IMPORT_C int EVP_PKEY_set1_DH(EVP_PKEY *pkey,struct dh_st *key);
sl@0
   761
IMPORT_C struct dh_st *EVP_PKEY_get1_DH(EVP_PKEY *pkey);
sl@0
   762
#endif
sl@0
   763
sl@0
   764
IMPORT_C EVP_PKEY *	EVP_PKEY_new(void);
sl@0
   765
IMPORT_C void		EVP_PKEY_free(EVP_PKEY *pkey);
sl@0
   766
sl@0
   767
IMPORT_C EVP_PKEY *	d2i_PublicKey(int type,EVP_PKEY **a, const unsigned char **pp,
sl@0
   768
			long length);
sl@0
   769
IMPORT_C int		i2d_PublicKey(EVP_PKEY *a, unsigned char **pp);
sl@0
   770
sl@0
   771
IMPORT_C EVP_PKEY *	d2i_PrivateKey(int type,EVP_PKEY **a, const unsigned char **pp,
sl@0
   772
			long length);
sl@0
   773
IMPORT_C EVP_PKEY *	d2i_AutoPrivateKey(EVP_PKEY **a, const unsigned char **pp,
sl@0
   774
			long length);
sl@0
   775
IMPORT_C int		i2d_PrivateKey(EVP_PKEY *a, unsigned char **pp);
sl@0
   776
sl@0
   777
IMPORT_C int EVP_PKEY_copy_parameters(EVP_PKEY *to, const EVP_PKEY *from);
sl@0
   778
IMPORT_C int EVP_PKEY_missing_parameters(const EVP_PKEY *pkey);
sl@0
   779
IMPORT_C int EVP_PKEY_save_parameters(EVP_PKEY *pkey,int mode);
sl@0
   780
IMPORT_C int EVP_PKEY_cmp_parameters(const EVP_PKEY *a, const EVP_PKEY *b);
sl@0
   781
sl@0
   782
IMPORT_C int EVP_PKEY_cmp(const EVP_PKEY *a, const EVP_PKEY *b);
sl@0
   783
sl@0
   784
IMPORT_C int EVP_CIPHER_type(const EVP_CIPHER *ctx);
sl@0
   785
IMPORT_C int EVP_CIPHER_block_size(const EVP_CIPHER *e);
sl@0
   786
IMPORT_C int EVP_CIPHER_CTX_block_size(const EVP_CIPHER_CTX *ctx);
sl@0
   787
IMPORT_C int EVP_Cipher(EVP_CIPHER_CTX *ctx, unsigned char *out, const unsigned char *in, unsigned int inl);
sl@0
   788
IMPORT_C const EVP_CIPHER *EVP_CIPHER_CTX_cipher(const EVP_CIPHER_CTX *ctx);
sl@0
   789
IMPORT_C unsigned long EVP_CIPHER_flags(const EVP_CIPHER *cipher);
sl@0
   790
IMPORT_C unsigned long EVP_CIPHER_CTX_flags(const EVP_CIPHER_CTX *ctx);
sl@0
   791
IMPORT_C void *EVP_CIPHER_CTX_get_app_data(const EVP_CIPHER_CTX *ctx);
sl@0
   792
IMPORT_C void EVP_CIPHER_CTX_set_app_data(EVP_CIPHER_CTX *ctx, void *data);
sl@0
   793
IMPORT_C int EVP_CIPHER_iv_length(const EVP_CIPHER *cipher);
sl@0
   794
IMPORT_C int EVP_CIPHER_CTX_iv_length(const EVP_CIPHER_CTX *ctx);
sl@0
   795
IMPORT_C int EVP_CIPHER_key_length(const EVP_CIPHER *cipher);
sl@0
   796
IMPORT_C int EVP_CIPHER_CTX_key_length(const EVP_CIPHER_CTX *ctx);
sl@0
   797
IMPORT_C int EVP_CIPHER_nid(const EVP_CIPHER *cipher);
sl@0
   798
IMPORT_C int EVP_CIPHER_CTX_nid(const EVP_CIPHER_CTX *ctx);
sl@0
   799
IMPORT_C int EVP_MD_block_size(const EVP_MD *md) ;
sl@0
   800
IMPORT_C int EVP_MD_type(const EVP_MD *md);
sl@0
   801
IMPORT_C int EVP_MD_pkey_type(const EVP_MD *md);
sl@0
   802
IMPORT_C int EVP_MD_size(const EVP_MD *md);
sl@0
   803
IMPORT_C const EVP_MD * EVP_MD_CTX_md(const EVP_MD_CTX *ctx);
sl@0
   804
IMPORT_C void EVP_MD_CTX_set_flags(EVP_MD_CTX *ctx, int flags);
sl@0
   805
IMPORT_C void EVP_MD_CTX_clear_flags(EVP_MD_CTX *ctx, int flags);
sl@0
   806
IMPORT_C int EVP_MD_CTX_test_flags(const EVP_MD_CTX *ctx, int flags);
sl@0
   807
sl@0
   808
/* calls methods */
sl@0
   809
IMPORT_C int EVP_CIPHER_param_to_asn1(EVP_CIPHER_CTX *c, ASN1_TYPE *type);
sl@0
   810
IMPORT_C int EVP_CIPHER_asn1_to_param(EVP_CIPHER_CTX *c, ASN1_TYPE *type);
sl@0
   811
sl@0
   812
/* These are used by EVP_CIPHER methods */
sl@0
   813
IMPORT_C int EVP_CIPHER_set_asn1_iv(EVP_CIPHER_CTX *c,ASN1_TYPE *type);
sl@0
   814
IMPORT_C int EVP_CIPHER_get_asn1_iv(EVP_CIPHER_CTX *c,ASN1_TYPE *type);
sl@0
   815
sl@0
   816
/* PKCS5 password based encryption */
sl@0
   817
IMPORT_C int PKCS5_PBE_keyivgen(EVP_CIPHER_CTX *ctx, const char *pass, int passlen,
sl@0
   818
			 ASN1_TYPE *param, const EVP_CIPHER *cipher, const EVP_MD *md,
sl@0
   819
			 int en_de);
sl@0
   820
IMPORT_C int PKCS5_PBKDF2_HMAC_SHA1(const char *pass, int passlen,
sl@0
   821
			   const unsigned char *salt, int saltlen, int iter,
sl@0
   822
			   int keylen, unsigned char *out);
sl@0
   823
IMPORT_C int PKCS5_v2_PBE_keyivgen(EVP_CIPHER_CTX *ctx, const char *pass, int passlen,
sl@0
   824
			 ASN1_TYPE *param, const EVP_CIPHER *cipher, const EVP_MD *md,
sl@0
   825
			 int en_de);
sl@0
   826
sl@0
   827
IMPORT_C void PKCS5_PBE_add(void);
sl@0
   828
sl@0
   829
IMPORT_C int EVP_PBE_CipherInit (ASN1_OBJECT *pbe_obj, const char *pass, int passlen,
sl@0
   830
	     ASN1_TYPE *param, EVP_CIPHER_CTX *ctx, int en_de);
sl@0
   831
IMPORT_C int EVP_PBE_alg_add(int nid, const EVP_CIPHER *cipher, const EVP_MD *md,
sl@0
   832
		    EVP_PBE_KEYGEN *keygen);
sl@0
   833
IMPORT_C void EVP_PBE_cleanup(void);
sl@0
   834
sl@0
   835
/* BEGIN ERROR CODES */
sl@0
   836
/* The following lines are auto generated by the script mkerr.pl. Any changes
sl@0
   837
 * made after this point may be overwritten when the script is next run.
sl@0
   838
 */
sl@0
   839
IMPORT_C void ERR_load_EVP_strings(void);
sl@0
   840
sl@0
   841
/* Error codes for the EVP functions. */
sl@0
   842
sl@0
   843
/* Function codes. */
sl@0
   844
#define EVP_F_AES_INIT_KEY				 133
sl@0
   845
#define EVP_F_D2I_PKEY					 100
sl@0
   846
#define EVP_F_DSAPKEY2PKCS8				 134
sl@0
   847
#define EVP_F_DSA_PKEY2PKCS8				 135
sl@0
   848
#define EVP_F_ECDSA_PKEY2PKCS8				 129
sl@0
   849
#define EVP_F_ECKEY_PKEY2PKCS8				 132
sl@0
   850
#define EVP_F_EVP_CIPHERINIT_EX				 123
sl@0
   851
#define EVP_F_EVP_CIPHER_CTX_CTRL			 124
sl@0
   852
#define EVP_F_EVP_CIPHER_CTX_SET_KEY_LENGTH		 122
sl@0
   853
#define EVP_F_EVP_DECRYPTFINAL_EX			 101
sl@0
   854
#define EVP_F_EVP_DIGESTINIT_EX				 128
sl@0
   855
#define EVP_F_EVP_ENCRYPTFINAL_EX			 127
sl@0
   856
#define EVP_F_EVP_MD_CTX_COPY_EX			 110
sl@0
   857
#define EVP_F_EVP_OPENINIT				 102
sl@0
   858
#define EVP_F_EVP_PBE_ALG_ADD				 115
sl@0
   859
#define EVP_F_EVP_PBE_CIPHERINIT			 116
sl@0
   860
#define EVP_F_EVP_PKCS82PKEY				 111
sl@0
   861
#define EVP_F_EVP_PKEY2PKCS8_BROKEN			 113
sl@0
   862
#define EVP_F_EVP_PKEY_COPY_PARAMETERS			 103
sl@0
   863
#define EVP_F_EVP_PKEY_DECRYPT				 104
sl@0
   864
#define EVP_F_EVP_PKEY_ENCRYPT				 105
sl@0
   865
#define EVP_F_EVP_PKEY_GET1_DH				 119
sl@0
   866
#define EVP_F_EVP_PKEY_GET1_DSA				 120
sl@0
   867
#define EVP_F_EVP_PKEY_GET1_ECDSA			 130
sl@0
   868
#define EVP_F_EVP_PKEY_GET1_EC_KEY			 131
sl@0
   869
#define EVP_F_EVP_PKEY_GET1_RSA				 121
sl@0
   870
#define EVP_F_EVP_PKEY_NEW				 106
sl@0
   871
#define EVP_F_EVP_RIJNDAEL				 126
sl@0
   872
#define EVP_F_EVP_SIGNFINAL				 107
sl@0
   873
#define EVP_F_EVP_VERIFYFINAL				 108
sl@0
   874
#define EVP_F_PKCS5_PBE_KEYIVGEN			 117
sl@0
   875
#define EVP_F_PKCS5_V2_PBE_KEYIVGEN			 118
sl@0
   876
#define EVP_F_PKCS8_SET_BROKEN				 112
sl@0
   877
#define EVP_F_RC2_MAGIC_TO_METH				 109
sl@0
   878
#define EVP_F_RC5_CTRL					 125
sl@0
   879
sl@0
   880
/* Reason codes. */
sl@0
   881
#define EVP_R_AES_KEY_SETUP_FAILED			 143
sl@0
   882
#define EVP_R_ASN1_LIB					 140
sl@0
   883
#define EVP_R_BAD_BLOCK_LENGTH				 136
sl@0
   884
#define EVP_R_BAD_DECRYPT				 100
sl@0
   885
#define EVP_R_BAD_KEY_LENGTH				 137
sl@0
   886
#define EVP_R_BN_DECODE_ERROR				 112
sl@0
   887
#define EVP_R_BN_PUBKEY_ERROR				 113
sl@0
   888
#define EVP_R_CIPHER_PARAMETER_ERROR			 122
sl@0
   889
#define EVP_R_CTRL_NOT_IMPLEMENTED			 132
sl@0
   890
#define EVP_R_CTRL_OPERATION_NOT_IMPLEMENTED		 133
sl@0
   891
#define EVP_R_DATA_NOT_MULTIPLE_OF_BLOCK_LENGTH		 138
sl@0
   892
#define EVP_R_DECODE_ERROR				 114
sl@0
   893
#define EVP_R_DIFFERENT_KEY_TYPES			 101
sl@0
   894
#define EVP_R_ENCODE_ERROR				 115
sl@0
   895
#define EVP_R_EVP_PBE_CIPHERINIT_ERROR			 119
sl@0
   896
#define EVP_R_EXPECTING_AN_RSA_KEY			 127
sl@0
   897
#define EVP_R_EXPECTING_A_DH_KEY			 128
sl@0
   898
#define EVP_R_EXPECTING_A_DSA_KEY			 129
sl@0
   899
#define EVP_R_EXPECTING_A_ECDSA_KEY			 141
sl@0
   900
#define EVP_R_EXPECTING_A_EC_KEY			 142
sl@0
   901
#define EVP_R_INITIALIZATION_ERROR			 134
sl@0
   902
#define EVP_R_INPUT_NOT_INITIALIZED			 111
sl@0
   903
#define EVP_R_INVALID_KEY_LENGTH			 130
sl@0
   904
#define EVP_R_IV_TOO_LARGE				 102
sl@0
   905
#define EVP_R_KEYGEN_FAILURE				 120
sl@0
   906
#define EVP_R_MISSING_PARAMETERS			 103
sl@0
   907
#define EVP_R_NO_CIPHER_SET				 131
sl@0
   908
#define EVP_R_NO_DIGEST_SET				 139
sl@0
   909
#define EVP_R_NO_DSA_PARAMETERS				 116
sl@0
   910
#define EVP_R_NO_SIGN_FUNCTION_CONFIGURED		 104
sl@0
   911
#define EVP_R_NO_VERIFY_FUNCTION_CONFIGURED		 105
sl@0
   912
#define EVP_R_PKCS8_UNKNOWN_BROKEN_TYPE			 117
sl@0
   913
#define EVP_R_PUBLIC_KEY_NOT_RSA			 106
sl@0
   914
#define EVP_R_UNKNOWN_PBE_ALGORITHM			 121
sl@0
   915
#define EVP_R_UNSUPORTED_NUMBER_OF_ROUNDS		 135
sl@0
   916
#define EVP_R_UNSUPPORTED_CIPHER			 107
sl@0
   917
#define EVP_R_UNSUPPORTED_KEYLENGTH			 123
sl@0
   918
#define EVP_R_UNSUPPORTED_KEY_DERIVATION_FUNCTION	 124
sl@0
   919
#define EVP_R_UNSUPPORTED_KEY_SIZE			 108
sl@0
   920
#define EVP_R_UNSUPPORTED_PRF				 125
sl@0
   921
#define EVP_R_UNSUPPORTED_PRIVATE_KEY_ALGORITHM		 118
sl@0
   922
#define EVP_R_UNSUPPORTED_SALT_TYPE			 126
sl@0
   923
#define EVP_R_WRONG_FINAL_BLOCK_LENGTH			 109
sl@0
   924
#define EVP_R_WRONG_PUBLIC_KEY_TYPE			 110
sl@0
   925
sl@0
   926
#ifdef  __cplusplus
sl@0
   927
}
sl@0
   928
#endif
sl@0
   929
#endif