ssl_ciph.c 32.6 KB
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/* ssl/ssl_ciph.c */
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/* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
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 * All rights reserved.
 *
 * This package is an SSL implementation written
 * by Eric Young (eay@cryptsoft.com).
 * The implementation was written so as to conform with Netscapes SSL.
 * 
 * This library is free for commercial and non-commercial use as long as
 * the following conditions are aheared to.  The following conditions
 * apply to all code found in this distribution, be it the RC4, RSA,
 * lhash, DES, etc., code; not just the SSL code.  The SSL documentation
 * included with this distribution is covered by the same copyright terms
 * except that the holder is Tim Hudson (tjh@cryptsoft.com).
 * 
 * Copyright remains Eric Young's, and as such any Copyright notices in
 * the code are not to be removed.
 * If this package is used in a product, Eric Young should be given attribution
 * as the author of the parts of the library used.
 * This can be in the form of a textual message at program startup or
 * in documentation (online or textual) provided with the package.
 * 
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions
 * are met:
 * 1. Redistributions of source code must retain the copyright
 *    notice, this list of conditions and the following disclaimer.
 * 2. Redistributions in binary form must reproduce the above copyright
 *    notice, this list of conditions and the following disclaimer in the
 *    documentation and/or other materials provided with the distribution.
 * 3. All advertising materials mentioning features or use of this software
 *    must display the following acknowledgement:
 *    "This product includes cryptographic software written by
 *     Eric Young (eay@cryptsoft.com)"
 *    The word 'cryptographic' can be left out if the rouines from the library
 *    being used are not cryptographic related :-).
 * 4. If you include any Windows specific code (or a derivative thereof) from 
 *    the apps directory (application code) you must include an acknowledgement:
 *    "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
 * 
 * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
 * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
 * SUCH DAMAGE.
 * 
 * The licence and distribution terms for any publically available version or
 * derivative of this code cannot be changed.  i.e. this code cannot simply be
 * copied and put under another distribution licence
 * [including the GNU Public Licence.]
 */
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/* ====================================================================
 * Copyright 2002 Sun Microsystems, Inc. ALL RIGHTS RESERVED.
 * ECC cipher suite support in OpenSSL originally developed by 
 * SUN MICROSYSTEMS, INC., and contributed to the OpenSSL project.
 */
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/* ====================================================================
 * Copyright 2005 Nokia. All rights reserved.
 *
 * The portions of the attached software ("Contribution") is developed by
 * Nokia Corporation and is licensed pursuant to the OpenSSL open source
 * license.
 *
 * The Contribution, originally written by Mika Kousa and Pasi Eronen of
 * Nokia Corporation, consists of the "PSK" (Pre-Shared Key) ciphersuites
 * support (see RFC 4279) to OpenSSL.
 *
 * No patent licenses or other rights except those expressly stated in
 * the OpenSSL open source license shall be deemed granted or received
 * expressly, by implication, estoppel, or otherwise.
 *
 * No assurances are provided by Nokia that the Contribution does not
 * infringe the patent or other intellectual property rights of any third
 * party or that the license provides you with all the necessary rights
 * to make use of the Contribution.
 *
 * THE SOFTWARE IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY KIND. IN
 * ADDITION TO THE DISCLAIMERS INCLUDED IN THE LICENSE, NOKIA
 * SPECIFICALLY DISCLAIMS ANY LIABILITY FOR CLAIMS BROUGHT BY YOU OR ANY
 * OTHER ENTITY BASED ON INFRINGEMENT OF INTELLECTUAL PROPERTY RIGHTS OR
 * OTHERWISE.
 */

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#include <stdio.h>
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#include <openssl/objects.h>
#include <openssl/comp.h>
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#include "ssl_locl.h"

#define SSL_ENC_DES_IDX		0
#define SSL_ENC_3DES_IDX	1
#define SSL_ENC_RC4_IDX		2
#define SSL_ENC_RC2_IDX		3
#define SSL_ENC_IDEA_IDX	4
#define SSL_ENC_eFZA_IDX	5
#define SSL_ENC_NULL_IDX	6
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#define SSL_ENC_AES128_IDX	7
#define SSL_ENC_AES256_IDX	8
#define SSL_ENC_NUM_IDX		9
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static const EVP_CIPHER *ssl_cipher_methods[SSL_ENC_NUM_IDX]={
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	NULL,NULL,NULL,NULL,NULL,NULL,
	};

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#define SSL_COMP_NULL_IDX	0
#define SSL_COMP_ZLIB_IDX	1
#define SSL_COMP_NUM_IDX	2

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static STACK_OF(SSL_COMP) *ssl_comp_methods=NULL;
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#define SSL_MD_MD5_IDX	0
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#define SSL_MD_SHA1_IDX	1
#define SSL_MD_NUM_IDX	2
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static const EVP_MD *ssl_digest_methods[SSL_MD_NUM_IDX]={
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	NULL,NULL,
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	};

#define CIPHER_ADD	1
#define CIPHER_KILL	2
#define CIPHER_DEL	3
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#define CIPHER_ORD	4
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#define CIPHER_SPECIAL	5
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typedef struct cipher_order_st
	{
	SSL_CIPHER *cipher;
	int active;
	int dead;
	struct cipher_order_st *next,*prev;
	} CIPHER_ORDER;

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static const SSL_CIPHER cipher_aliases[]={
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	/* Don't include eNULL unless specifically enabled. */
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	/* Don't include ECC in ALL because these ciphers are not yet official. */
	{0,SSL_TXT_ALL, 0,SSL_ALL & ~SSL_eNULL & ~SSL_kECDH & ~SSL_kECDHE, SSL_ALL ,0,0,0,SSL_ALL,SSL_ALL}, /* must be first */
	/* TODO: COMPLEMENT OF ALL and COMPLEMENT OF DEFAULT do not have ECC cipher suites handled properly. */
	{0,SSL_TXT_CMPALL,0,SSL_eNULL,0,0,0,0,SSL_ENC_MASK,0},  /* COMPLEMENT OF ALL */
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	{0,SSL_TXT_CMPDEF,0,SSL_ADH, 0,0,0,0,SSL_AUTH_MASK,0},
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	{0,SSL_TXT_kKRB5,0,SSL_kKRB5,0,0,0,0,SSL_MKEY_MASK,0},  /* VRS Kerberos5 */
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	{0,SSL_TXT_kRSA,0,SSL_kRSA,  0,0,0,0,SSL_MKEY_MASK,0},
	{0,SSL_TXT_kDHr,0,SSL_kDHr,  0,0,0,0,SSL_MKEY_MASK,0},
	{0,SSL_TXT_kDHd,0,SSL_kDHd,  0,0,0,0,SSL_MKEY_MASK,0},
	{0,SSL_TXT_kEDH,0,SSL_kEDH,  0,0,0,0,SSL_MKEY_MASK,0},
	{0,SSL_TXT_kFZA,0,SSL_kFZA,  0,0,0,0,SSL_MKEY_MASK,0},
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        {0,SSL_TXT_kPSK,0,SSL_kPSK,  0,0,0,0,SSL_MKEY_MASK,0},
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	{0,SSL_TXT_DH,	0,SSL_DH,    0,0,0,0,SSL_MKEY_MASK,0},
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	{0,SSL_TXT_ECC,	0,(SSL_kECDH|SSL_kECDHE), 0,0,0,0,SSL_MKEY_MASK,0},
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	{0,SSL_TXT_EDH,	0,SSL_EDH,   0,0,0,0,SSL_MKEY_MASK|SSL_AUTH_MASK,0},
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	{0,SSL_TXT_aKRB5,0,SSL_aKRB5,0,0,0,0,SSL_AUTH_MASK,0},  /* VRS Kerberos5 */
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	{0,SSL_TXT_aRSA,0,SSL_aRSA,  0,0,0,0,SSL_AUTH_MASK,0},
	{0,SSL_TXT_aDSS,0,SSL_aDSS,  0,0,0,0,SSL_AUTH_MASK,0},
	{0,SSL_TXT_aFZA,0,SSL_aFZA,  0,0,0,0,SSL_AUTH_MASK,0},
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        {0,SSL_TXT_aPSK,0,SSL_aPSK,  0,0,0,0,SSL_AUTH_MASK,0},
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	{0,SSL_TXT_aNULL,0,SSL_aNULL,0,0,0,0,SSL_AUTH_MASK,0},
	{0,SSL_TXT_aDH, 0,SSL_aDH,   0,0,0,0,SSL_AUTH_MASK,0},
	{0,SSL_TXT_DSS,	0,SSL_DSS,   0,0,0,0,SSL_AUTH_MASK,0},

	{0,SSL_TXT_DES,	0,SSL_DES,   0,0,0,0,SSL_ENC_MASK,0},
	{0,SSL_TXT_3DES,0,SSL_3DES,  0,0,0,0,SSL_ENC_MASK,0},
	{0,SSL_TXT_RC4,	0,SSL_RC4,   0,0,0,0,SSL_ENC_MASK,0},
	{0,SSL_TXT_RC2,	0,SSL_RC2,   0,0,0,0,SSL_ENC_MASK,0},
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#ifndef OPENSSL_NO_IDEA
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	{0,SSL_TXT_IDEA,0,SSL_IDEA,  0,0,0,0,SSL_ENC_MASK,0},
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#endif
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	{0,SSL_TXT_eNULL,0,SSL_eNULL,0,0,0,0,SSL_ENC_MASK,0},
	{0,SSL_TXT_eFZA,0,SSL_eFZA,  0,0,0,0,SSL_ENC_MASK,0},
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	{0,SSL_TXT_AES,	0,SSL_AES,   0,0,0,0,SSL_ENC_MASK,0},
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	{0,SSL_TXT_MD5,	0,SSL_MD5,   0,0,0,0,SSL_MAC_MASK,0},
	{0,SSL_TXT_SHA1,0,SSL_SHA1,  0,0,0,0,SSL_MAC_MASK,0},
	{0,SSL_TXT_SHA,	0,SSL_SHA,   0,0,0,0,SSL_MAC_MASK,0},

	{0,SSL_TXT_NULL,0,SSL_NULL,  0,0,0,0,SSL_ENC_MASK,0},
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	{0,SSL_TXT_KRB5,0,SSL_KRB5,  0,0,0,0,SSL_AUTH_MASK|SSL_MKEY_MASK,0},
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	{0,SSL_TXT_RSA,	0,SSL_RSA,   0,0,0,0,SSL_AUTH_MASK|SSL_MKEY_MASK,0},
	{0,SSL_TXT_ADH,	0,SSL_ADH,   0,0,0,0,SSL_AUTH_MASK|SSL_MKEY_MASK,0},
	{0,SSL_TXT_FZA,	0,SSL_FZA,   0,0,0,0,SSL_AUTH_MASK|SSL_MKEY_MASK|SSL_ENC_MASK,0},
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        {0,SSL_TXT_PSK, 0,SSL_PSK,   0,0,0,0,SSL_AUTH_MASK|SSL_MKEY_MASK,0},
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	{0,SSL_TXT_SSLV2, 0,SSL_SSLV2, 0,0,0,0,SSL_SSL_MASK,0},
	{0,SSL_TXT_SSLV3, 0,SSL_SSLV3, 0,0,0,0,SSL_SSL_MASK,0},
	{0,SSL_TXT_TLSV1, 0,SSL_TLSV1, 0,0,0,0,SSL_SSL_MASK,0},

	{0,SSL_TXT_EXP   ,0, 0,SSL_EXPORT, 0,0,0,0,SSL_EXP_MASK},
	{0,SSL_TXT_EXPORT,0, 0,SSL_EXPORT, 0,0,0,0,SSL_EXP_MASK},
	{0,SSL_TXT_EXP40, 0, 0, SSL_EXP40, 0,0,0,0,SSL_STRONG_MASK},
	{0,SSL_TXT_EXP56, 0, 0, SSL_EXP56, 0,0,0,0,SSL_STRONG_MASK},
	{0,SSL_TXT_LOW,   0, 0,   SSL_LOW, 0,0,0,0,SSL_STRONG_MASK},
	{0,SSL_TXT_MEDIUM,0, 0,SSL_MEDIUM, 0,0,0,0,SSL_STRONG_MASK},
	{0,SSL_TXT_HIGH,  0, 0,  SSL_HIGH, 0,0,0,0,SSL_STRONG_MASK},
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	};

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void ssl_load_ciphers(void)
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	{
	ssl_cipher_methods[SSL_ENC_DES_IDX]= 
		EVP_get_cipherbyname(SN_des_cbc);
	ssl_cipher_methods[SSL_ENC_3DES_IDX]=
		EVP_get_cipherbyname(SN_des_ede3_cbc);
	ssl_cipher_methods[SSL_ENC_RC4_IDX]=
		EVP_get_cipherbyname(SN_rc4);
	ssl_cipher_methods[SSL_ENC_RC2_IDX]= 
		EVP_get_cipherbyname(SN_rc2_cbc);
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#ifndef OPENSSL_NO_IDEA
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	ssl_cipher_methods[SSL_ENC_IDEA_IDX]= 
		EVP_get_cipherbyname(SN_idea_cbc);
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#else
	ssl_cipher_methods[SSL_ENC_IDEA_IDX]= NULL;
#endif
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	ssl_cipher_methods[SSL_ENC_AES128_IDX]=
	  EVP_get_cipherbyname(SN_aes_128_cbc);
	ssl_cipher_methods[SSL_ENC_AES256_IDX]=
	  EVP_get_cipherbyname(SN_aes_256_cbc);
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	ssl_digest_methods[SSL_MD_MD5_IDX]=
		EVP_get_digestbyname(SN_md5);
	ssl_digest_methods[SSL_MD_SHA1_IDX]=
		EVP_get_digestbyname(SN_sha1);
	}

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#ifndef OPENSSL_NO_COMP

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static int sk_comp_cmp(const SSL_COMP * const *a,
			const SSL_COMP * const *b)
	{
	return((*a)->id-(*b)->id);
	}

static void load_builtin_compressions(void)
	{
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	if (ssl_comp_methods != NULL)
		return;

	CRYPTO_w_lock(CRYPTO_LOCK_SSL);
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	if (ssl_comp_methods == NULL)
		{
		SSL_COMP *comp = NULL;

		MemCheck_off();
		ssl_comp_methods=sk_SSL_COMP_new(sk_comp_cmp);
		if (ssl_comp_methods != NULL)
			{
			comp=(SSL_COMP *)OPENSSL_malloc(sizeof(SSL_COMP));
			if (comp != NULL)
				{
				comp->method=COMP_zlib();
				if (comp->method
					&& comp->method->type == NID_undef)
					OPENSSL_free(comp);
				else
					{
					comp->id=SSL_COMP_ZLIB_IDX;
					comp->name=comp->method->name;
					sk_SSL_COMP_push(ssl_comp_methods,comp);
					}
				}
			}
		MemCheck_on();
		}
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	CRYPTO_w_unlock(CRYPTO_LOCK_SSL);
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	}
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#endif
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int ssl_cipher_get_evp(const SSL_SESSION *s, const EVP_CIPHER **enc,
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	     const EVP_MD **md, SSL_COMP **comp)
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	{
	int i;
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	SSL_CIPHER *c;
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	c=s->cipher;
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	if (c == NULL) return(0);
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	if (comp != NULL)
		{
		SSL_COMP ctmp;
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#ifndef OPENSSL_NO_COMP
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		load_builtin_compressions();
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#endif
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		*comp=NULL;
		ctmp.id=s->compress_meth;
		if (ssl_comp_methods != NULL)
			{
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			i=sk_SSL_COMP_find(ssl_comp_methods,&ctmp);
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			if (i >= 0)
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				*comp=sk_SSL_COMP_value(ssl_comp_methods,i);
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			else
				*comp=NULL;
			}
		}

	if ((enc == NULL) || (md == NULL)) return(0);
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	switch (c->algorithms & SSL_ENC_MASK)
		{
	case SSL_DES:
		i=SSL_ENC_DES_IDX;
		break;
	case SSL_3DES:
		i=SSL_ENC_3DES_IDX;
		break;
	case SSL_RC4:
		i=SSL_ENC_RC4_IDX;
		break;
	case SSL_RC2:
		i=SSL_ENC_RC2_IDX;
		break;
	case SSL_IDEA:
		i=SSL_ENC_IDEA_IDX;
		break;
	case SSL_eNULL:
		i=SSL_ENC_NULL_IDX;
		break;
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	case SSL_AES:
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		switch(c->alg_bits)
			{
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		case 128: i=SSL_ENC_AES128_IDX; break;
		case 256: i=SSL_ENC_AES256_IDX; break;
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		default: i=-1; break;
			}
		break;
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	default:
		i= -1;
		break;
		}

	if ((i < 0) || (i > SSL_ENC_NUM_IDX))
		*enc=NULL;
	else
		{
		if (i == SSL_ENC_NULL_IDX)
			*enc=EVP_enc_null();
		else
			*enc=ssl_cipher_methods[i];
		}

	switch (c->algorithms & SSL_MAC_MASK)
		{
	case SSL_MD5:
		i=SSL_MD_MD5_IDX;
		break;
	case SSL_SHA1:
		i=SSL_MD_SHA1_IDX;
		break;
	default:
		i= -1;
		break;
		}
	if ((i < 0) || (i > SSL_MD_NUM_IDX))
		*md=NULL;
	else
		*md=ssl_digest_methods[i];

	if ((*enc != NULL) && (*md != NULL))
		return(1);
	else
		return(0);
	}

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#define ITEM_SEP(a) \
	(((a) == ':') || ((a) == ' ') || ((a) == ';') || ((a) == ','))

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static void ll_append_tail(CIPHER_ORDER **head, CIPHER_ORDER *curr,
	     CIPHER_ORDER **tail)
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	{
	if (curr == *tail) return;
	if (curr == *head)
		*head=curr->next;
	if (curr->prev != NULL)
		curr->prev->next=curr->next;
	if (curr->next != NULL) /* should always be true */
		curr->next->prev=curr->prev;
	(*tail)->next=curr;
	curr->prev= *tail;
	curr->next=NULL;
	*tail=curr;
	}

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static unsigned long ssl_cipher_get_disabled(void)
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	{
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	unsigned long mask;
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	mask = SSL_kFZA;
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#ifdef OPENSSL_NO_RSA
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	mask |= SSL_aRSA|SSL_kRSA;
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#endif
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#ifdef OPENSSL_NO_DSA
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	mask |= SSL_aDSS;
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#endif
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#ifdef OPENSSL_NO_DH
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	mask |= SSL_kDHr|SSL_kDHd|SSL_kEDH|SSL_aDH;
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#endif
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#ifdef OPENSSL_NO_KRB5
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	mask |= SSL_kKRB5|SSL_aKRB5;
#endif
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#ifdef OPENSSL_NO_ECDH
	mask |= SSL_kECDH|SSL_kECDHE;
#endif
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#ifdef OPENSSL_NO_PSK
	mask |= SSL_kPSK;
#endif
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#ifdef SSL_FORBID_ENULL
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	mask |= SSL_eNULL;
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#endif

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	mask |= (ssl_cipher_methods[SSL_ENC_DES_IDX ] == NULL) ? SSL_DES :0;
	mask |= (ssl_cipher_methods[SSL_ENC_3DES_IDX] == NULL) ? SSL_3DES:0;
	mask |= (ssl_cipher_methods[SSL_ENC_RC4_IDX ] == NULL) ? SSL_RC4 :0;
	mask |= (ssl_cipher_methods[SSL_ENC_RC2_IDX ] == NULL) ? SSL_RC2 :0;
	mask |= (ssl_cipher_methods[SSL_ENC_IDEA_IDX] == NULL) ? SSL_IDEA:0;
	mask |= (ssl_cipher_methods[SSL_ENC_eFZA_IDX] == NULL) ? SSL_eFZA:0;
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	mask |= (ssl_cipher_methods[SSL_ENC_AES128_IDX] == NULL) ? SSL_AES:0;
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	mask |= (ssl_digest_methods[SSL_MD_MD5_IDX ] == NULL) ? SSL_MD5 :0;
	mask |= (ssl_digest_methods[SSL_MD_SHA1_IDX] == NULL) ? SSL_SHA1:0;
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	return(mask);
	}

static void ssl_cipher_collect_ciphers(const SSL_METHOD *ssl_method,
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		int num_of_ciphers, unsigned long mask, CIPHER_ORDER *co_list,
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		CIPHER_ORDER **head_p, CIPHER_ORDER **tail_p)
	{
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	int i, co_list_num;
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	SSL_CIPHER *c;

	/*
	 * We have num_of_ciphers descriptions compiled in, depending on the
	 * method selected (SSLv2 and/or SSLv3, TLSv1 etc).
	 * These will later be sorted in a linked list with at most num
	 * entries.
	 */
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	/* Get the initial list of ciphers */
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	co_list_num = 0;	/* actual count of ciphers */
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	for (i = 0; i < num_of_ciphers; i++)
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		{
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		c = ssl_method->get_cipher(i);
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		/* drop those that use any of that is not available */
		if ((c != NULL) && c->valid && !(c->algorithms & mask))
			{
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			co_list[co_list_num].cipher = c;
			co_list[co_list_num].next = NULL;
			co_list[co_list_num].prev = NULL;
			co_list[co_list_num].active = 0;
			co_list_num++;
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#ifdef KSSL_DEBUG
			printf("\t%d: %s %lx %lx\n",i,c->name,c->id,c->algorithms);
#endif	/* KSSL_DEBUG */
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			/*
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			if (!sk_push(ca_list,(char *)c)) goto err;
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			*/
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			}
		}
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	/*
	 * Prepare linked list from list entries
	 */	
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	for (i = 1; i < co_list_num - 1; i++)
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		{
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		co_list[i].prev = &(co_list[i-1]);
		co_list[i].next = &(co_list[i+1]);
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		}
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	if (co_list_num > 0)
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		{
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		(*head_p) = &(co_list[0]);
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		(*head_p)->prev = NULL;
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		(*head_p)->next = &(co_list[1]);
		(*tail_p) = &(co_list[co_list_num - 1]);
		(*tail_p)->prev = &(co_list[co_list_num - 2]);
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		(*tail_p)->next = NULL;
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		}
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	}
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static void ssl_cipher_collect_aliases(SSL_CIPHER **ca_list,
			int num_of_group_aliases, unsigned long mask,
			CIPHER_ORDER *head)
	{
	CIPHER_ORDER *ciph_curr;
	SSL_CIPHER **ca_curr;
	int i;
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	/*
	 * First, add the real ciphers as already collected
	 */
	ciph_curr = head;
	ca_curr = ca_list;
	while (ciph_curr != NULL)
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		{
494 495 496
		*ca_curr = ciph_curr->cipher;
		ca_curr++;
		ciph_curr = ciph_curr->next;
497 498
		}

499 500 501 502 503 504 505 506 507 508 509 510 511 512 513
	/*
	 * Now we add the available ones from the cipher_aliases[] table.
	 * They represent either an algorithm, that must be fully
	 * supported (not match any bit in mask) or represent a cipher
	 * strength value (will be added in any case because algorithms=0).
	 */
	for (i = 0; i < num_of_group_aliases; i++)
		{
		if ((i == 0) ||		/* always fetch "ALL" */
		    !(cipher_aliases[i].algorithms & mask))
			{
			*ca_curr = (SSL_CIPHER *)(cipher_aliases + i);
			ca_curr++;
			}
		}
514

515 516
	*ca_curr = NULL;	/* end of list */
	}
517

518 519
static void ssl_cipher_apply_rule(unsigned long algorithms, unsigned long mask,
		unsigned long algo_strength, unsigned long mask_strength,
520
		int rule, int strength_bits, CIPHER_ORDER *co_list,
521 522 523 524 525 526 527 528 529 530 531
		CIPHER_ORDER **head_p, CIPHER_ORDER **tail_p)
	{
	CIPHER_ORDER *head, *tail, *curr, *curr2, *tail2;
	SSL_CIPHER *cp;
	unsigned long ma, ma_s;

#ifdef CIPHER_DEBUG
	printf("Applying rule %d with %08lx %08lx %08lx %08lx (%d)\n",
		rule, algorithms, mask, algo_strength, mask_strength,
		strength_bits);
#endif
532

533 534 535
	curr = head = *head_p;
	curr2 = head;
	tail2 = tail = *tail_p;
536 537
	for (;;)
		{
538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571 572 573 574 575 576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614
		if ((curr == NULL) || (curr == tail2)) break;
		curr = curr2;
		curr2 = curr->next;

		cp = curr->cipher;

		/*
		 * Selection criteria is either the number of strength_bits
		 * or the algorithm used.
		 */
		if (strength_bits == -1)
			{
			ma = mask & cp->algorithms;
			ma_s = mask_strength & cp->algo_strength;

#ifdef CIPHER_DEBUG
			printf("\nName: %s:\nAlgo = %08lx Algo_strength = %08lx\nMask = %08lx Mask_strength %08lx\n", cp->name, cp->algorithms, cp->algo_strength, mask, mask_strength);
			printf("ma = %08lx ma_s %08lx, ma&algo=%08lx, ma_s&algos=%08lx\n", ma, ma_s, ma&algorithms, ma_s&algo_strength);
#endif
			/*
			 * Select: if none of the mask bit was met from the
			 * cipher or not all of the bits were met, the
			 * selection does not apply.
			 */
			if (((ma == 0) && (ma_s == 0)) ||
			    ((ma & algorithms) != ma) ||
			    ((ma_s & algo_strength) != ma_s))
				continue; /* does not apply */
			}
		else if (strength_bits != cp->strength_bits)
			continue;	/* does not apply */

#ifdef CIPHER_DEBUG
		printf("Action = %d\n", rule);
#endif

		/* add the cipher if it has not been added yet. */
		if (rule == CIPHER_ADD)
			{
			if (!curr->active)
				{
				ll_append_tail(&head, curr, &tail);
				curr->active = 1;
				}
			}
		/* Move the added cipher to this location */
		else if (rule == CIPHER_ORD)
			{
			if (curr->active)
				{
				ll_append_tail(&head, curr, &tail);
				}
			}
		else if	(rule == CIPHER_DEL)
			curr->active = 0;
		else if (rule == CIPHER_KILL)
			{
			if (head == curr)
				head = curr->next;
			else
				curr->prev->next = curr->next;
			if (tail == curr)
				tail = curr->prev;
			curr->active = 0;
			if (curr->next != NULL)
				curr->next->prev = curr->prev;
			if (curr->prev != NULL)
				curr->prev->next = curr->next;
			curr->next = NULL;
			curr->prev = NULL;
			}
		}

	*head_p = head;
	*tail_p = tail;
	}

615 616 617
static int ssl_cipher_strength_sort(CIPHER_ORDER *co_list,
				    CIPHER_ORDER **head_p,
				    CIPHER_ORDER **tail_p)
618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636
	{
	int max_strength_bits, i, *number_uses;
	CIPHER_ORDER *curr;

	/*
	 * This routine sorts the ciphers with descending strength. The sorting
	 * must keep the pre-sorted sequence, so we apply the normal sorting
	 * routine as '+' movement to the end of the list.
	 */
	max_strength_bits = 0;
	curr = *head_p;
	while (curr != NULL)
		{
		if (curr->active &&
		    (curr->cipher->strength_bits > max_strength_bits))
		    max_strength_bits = curr->cipher->strength_bits;
		curr = curr->next;
		}

637
	number_uses = OPENSSL_malloc((max_strength_bits + 1) * sizeof(int));
638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656
	if (!number_uses)
	{
		SSLerr(SSL_F_SSL_CIPHER_STRENGTH_SORT,ERR_R_MALLOC_FAILURE);
		return(0);
	}
	memset(number_uses, 0, (max_strength_bits + 1) * sizeof(int));

	/*
	 * Now find the strength_bits values actually used
	 */
	curr = *head_p;
	while (curr != NULL)
		{
		if (curr->active)
			number_uses[curr->cipher->strength_bits]++;
		curr = curr->next;
		}
	/*
	 * Go through the list of used strength_bits values in descending
657
	 * order.
658 659 660 661
	 */
	for (i = max_strength_bits; i >= 0; i--)
		if (number_uses[i] > 0)
			ssl_cipher_apply_rule(0, 0, 0, 0, CIPHER_ORD, i,
662
					co_list, head_p, tail_p);
663

664
	OPENSSL_free(number_uses);
665 666 667 668
	return(1);
	}

static int ssl_cipher_process_rulestr(const char *rule_str,
669
		CIPHER_ORDER *co_list, CIPHER_ORDER **head_p,
670 671 672 673 674 675
		CIPHER_ORDER **tail_p, SSL_CIPHER **ca_list)
	{
	unsigned long algorithms, mask, algo_strength, mask_strength;
	const char *l, *start, *buf;
	int j, multi, found, rule, retval, ok, buflen;
	char ch;
676

677 678 679 680 681
	retval = 1;
	l = rule_str;
	for (;;)
		{
		ch = *l;
682

683 684
		if (ch == '\0')
			break;		/* done */
685
		if (ch == '-')
686
			{ rule = CIPHER_DEL; l++; }
687
		else if (ch == '+')
688
			{ rule = CIPHER_ORD; l++; }
689
		else if (ch == '!')
690 691 692 693 694
			{ rule = CIPHER_KILL; l++; }
		else if (ch == '@')
			{ rule = CIPHER_SPECIAL; l++; }
		else
			{ rule = CIPHER_ADD; }
695

696
		if (ITEM_SEP(ch))
697 698 699 700
			{
			l++;
			continue;
			}
701 702

		algorithms = mask = algo_strength = mask_strength = 0;
703 704 705 706

		start=l;
		for (;;)
			{
707 708 709
			ch = *l;
			buf = l;
			buflen = 0;
710
#ifndef CHARSET_EBCDIC
711 712 713 714
			while (	((ch >= 'A') && (ch <= 'Z')) ||
				((ch >= '0') && (ch <= '9')) ||
				((ch >= 'a') && (ch <= 'z')) ||
				 (ch == '-'))
715 716 717
#else
			while (	isalnum(ch) || (ch == '-'))
#endif
718
				 {
719 720
				 ch = *(++l);
				 buflen++;
721
				 }
722 723 724 725

			if (buflen == 0)
				{
				/*
726
				 * We hit something we cannot deal with,
U
Ulf Möller 已提交
727
				 * it is no command or separator nor
728 729 730 731 732 733 734 735 736 737 738
				 * alphanumeric, so we call this an error.
				 */
				SSLerr(SSL_F_SSL_CIPHER_PROCESS_RULESTR,
				       SSL_R_INVALID_COMMAND);
				retval = found = 0;
				l++;
				break;
				}

			if (rule == CIPHER_SPECIAL)
				{
739
				found = 0; /* unused -- avoid compiler warning */
740 741
				break;	/* special treatment */
				}
742 743

			/* check for multi-part specification */
744 745 746 747 748 749 750
			if (ch == '+')
				{
				multi=1;
				l++;
				}
			else
				multi=0;
751

752
			/*
753
			 * Now search for the cipher alias in the ca_list. Be careful
754 755 756
			 * with the strncmp, because the "buflen" limitation
			 * will make the rule "ADH:SOME" and the cipher
			 * "ADH-MY-CIPHER" look like a match for buflen=3.
757 758
			 * So additionally check whether the cipher name found
			 * has the correct length. We can save a strlen() call:
759
			 * just checking for the '\0' at the right place is
760 761
			 * sufficient, we have to strncmp() anyway. (We cannot
			 * use strcmp(), because buf is not '\0' terminated.)
762 763 764 765
			 */
			 j = found = 0;
			 while (ca_list[j])
				{
766 767
				if (!strncmp(buf, ca_list[j]->name, buflen) &&
				    (ca_list[j]->name[buflen] == '\0'))
768 769 770 771 772 773 774 775 776 777
					{
					found = 1;
					break;
					}
				else
					j++;
				}
			if (!found)
				break;	/* ignore this entry */

778 779 780 781 782 783 784 785
			/* New algorithms:
			 *  1 - any old restrictions apply outside new mask
			 *  2 - any new restrictions apply outside old mask
			 *  3 - enforce old & new where masks intersect
			 */
			algorithms = (algorithms & ~ca_list[j]->mask) |		/* 1 */
			             (ca_list[j]->algorithms & ~mask) |		/* 2 */
			             (algorithms & ca_list[j]->algorithms);	/* 3 */
786
			mask |= ca_list[j]->mask;
787 788 789
			algo_strength = (algo_strength & ~ca_list[j]->mask_strength) |
			                (ca_list[j]->algo_strength & ~mask_strength) |
			                (algo_strength & ca_list[j]->algo_strength);
790
			mask_strength |= ca_list[j]->mask_strength;
791 792 793

			if (!multi) break;
			}
794

795 796 797 798 799 800 801 802
		/*
		 * Ok, we have the rule, now apply it
		 */
		if (rule == CIPHER_SPECIAL)
			{	/* special command */
			ok = 0;
			if ((buflen == 8) &&
				!strncmp(buf, "STRENGTH", 8))
803
				ok = ssl_cipher_strength_sort(co_list,
804 805 806 807 808 809
					head_p, tail_p);
			else
				SSLerr(SSL_F_SSL_CIPHER_PROCESS_RULESTR,
					SSL_R_INVALID_COMMAND);
			if (ok == 0)
				retval = 0;
810
			/*
811 812 813 814
			 * We do not support any "multi" options
			 * together with "@", so throw away the
			 * rest of the command, if any left, until
			 * end or ':' is found.
815
			 */
816 817 818 819 820 821 822
			while ((*l != '\0') && ITEM_SEP(*l))
				l++;
			}
		else if (found)
			{
			ssl_cipher_apply_rule(algorithms, mask,
				algo_strength, mask_strength, rule, -1,
823
				co_list, head_p, tail_p);
824 825 826 827 828 829 830
			}
		else
			{
			while ((*l != '\0') && ITEM_SEP(*l))
				l++;
			}
		if (*l == '\0') break; /* done */
831 832
		}

833 834 835 836 837 838 839 840 841 842
	return(retval);
	}

STACK_OF(SSL_CIPHER) *ssl_create_cipher_list(const SSL_METHOD *ssl_method,
		STACK_OF(SSL_CIPHER) **cipher_list,
		STACK_OF(SSL_CIPHER) **cipher_list_by_id,
		const char *rule_str)
	{
	int ok, num_of_ciphers, num_of_alias_max, num_of_group_aliases;
	unsigned long disabled_mask;
843
	STACK_OF(SSL_CIPHER) *cipherstack, *tmp_cipher_list;
844
	const char *rule_p;
845
	CIPHER_ORDER *co_list = NULL, *head = NULL, *tail = NULL, *curr;
846 847 848 849 850
	SSL_CIPHER **ca_list = NULL;

	/*
	 * Return with error if nothing to do.
	 */
851 852
	if (rule_str == NULL || cipher_list == NULL || cipher_list_by_id == NULL)
		return NULL;
853 854 855 856 857 858 859 860 861 862 863 864 865

	/*
	 * To reduce the work to do we only want to process the compiled
	 * in algorithms, so we first get the mask of disabled ciphers.
	 */
	disabled_mask = ssl_cipher_get_disabled();

	/*
	 * Now we have to collect the available ciphers from the compiled
	 * in ciphers. We cannot get more than the number compiled in, so
	 * it is used for allocation.
	 */
	num_of_ciphers = ssl_method->num_ciphers();
866 867 868
#ifdef KSSL_DEBUG
	printf("ssl_create_cipher_list() for %d ciphers\n", num_of_ciphers);
#endif    /* KSSL_DEBUG */
869 870
	co_list = (CIPHER_ORDER *)OPENSSL_malloc(sizeof(CIPHER_ORDER) * num_of_ciphers);
	if (co_list == NULL)
871
		{
872 873 874
		SSLerr(SSL_F_SSL_CREATE_CIPHER_LIST,ERR_R_MALLOC_FAILURE);
		return(NULL);	/* Failure */
		}
875

876
	ssl_cipher_collect_ciphers(ssl_method, num_of_ciphers, disabled_mask,
877
				   co_list, &head, &tail);
878 879 880 881 882 883

	/*
	 * We also need cipher aliases for selecting based on the rule_str.
	 * There might be two types of entries in the rule_str: 1) names
	 * of ciphers themselves 2) aliases for groups of ciphers.
	 * For 1) we need the available ciphers and for 2) the cipher
U
Ulf Möller 已提交
884
	 * groups of cipher_aliases added together in one list (otherwise
885 886 887 888 889
	 * we would be happy with just the cipher_aliases table).
	 */
	num_of_group_aliases = sizeof(cipher_aliases) / sizeof(SSL_CIPHER);
	num_of_alias_max = num_of_ciphers + num_of_group_aliases + 1;
	ca_list =
890
		(SSL_CIPHER **)OPENSSL_malloc(sizeof(SSL_CIPHER *) * num_of_alias_max);
891 892
	if (ca_list == NULL)
		{
893
		OPENSSL_free(co_list);
894 895 896 897 898 899 900 901 902 903 904 905 906 907 908
		SSLerr(SSL_F_SSL_CREATE_CIPHER_LIST,ERR_R_MALLOC_FAILURE);
		return(NULL);	/* Failure */
		}
	ssl_cipher_collect_aliases(ca_list, num_of_group_aliases, disabled_mask,
				   head);

	/*
	 * If the rule_string begins with DEFAULT, apply the default rule
	 * before using the (possibly available) additional rules.
	 */
	ok = 1;
	rule_p = rule_str;
	if (strncmp(rule_str,"DEFAULT",7) == 0)
		{
		ok = ssl_cipher_process_rulestr(SSL_DEFAULT_CIPHER_LIST,
909
			co_list, &head, &tail, ca_list);
910 911 912 913
		rule_p += 7;
		if (*rule_p == ':')
			rule_p++;
		}
914

915
	if (ok && (strlen(rule_p) > 0))
916
		ok = ssl_cipher_process_rulestr(rule_p, co_list, &head, &tail,
917
						ca_list);
918

919
	OPENSSL_free(ca_list);	/* Not needed anymore */
920 921 922

	if (!ok)
		{	/* Rule processing failure */
923
		OPENSSL_free(co_list);
924 925 926 927 928 929
		return(NULL);
		}
	/*
	 * Allocate new "cipherstack" for the result, return with error
	 * if we cannot get one.
	 */
930
	if ((cipherstack = sk_SSL_CIPHER_new_null()) == NULL)
931
		{
932
		OPENSSL_free(co_list);
933
		return(NULL);
934 935
		}

936 937 938 939 940
	/*
	 * The cipher selection for the list is done. The ciphers are added
	 * to the resulting precedence to the STACK_OF(SSL_CIPHER).
	 */
	for (curr = head; curr != NULL; curr = curr->next)
941
		{
942
		if (curr->active)
943
			{
944
			sk_SSL_CIPHER_push(cipherstack, curr->cipher);
945
#ifdef CIPHER_DEBUG
946
			printf("<%s>\n",curr->cipher->name);
947 948 949
#endif
			}
		}
950
	OPENSSL_free(co_list);	/* Not needed any longer */
951

952 953
	tmp_cipher_list = sk_SSL_CIPHER_dup(cipherstack);
	if (tmp_cipher_list == NULL)
954 955
		{
		sk_SSL_CIPHER_free(cipherstack);
956
		return NULL;
957
		}
958 959 960 961 962 963
	if (*cipher_list != NULL)
		sk_SSL_CIPHER_free(*cipher_list);
	*cipher_list = cipherstack;
	if (*cipher_list_by_id != NULL)
		sk_SSL_CIPHER_free(*cipher_list_by_id);
	*cipher_list_by_id = tmp_cipher_list;
B
Ben Laurie 已提交
964
	sk_SSL_CIPHER_set_cmp_func(*cipher_list_by_id,ssl_cipher_ptr_id_cmp);
965

966
	return(cipherstack);
967 968
	}

U
Ulf Möller 已提交
969
char *SSL_CIPHER_description(SSL_CIPHER *cipher, char *buf, int len)
970
	{
971
	int is_export,pkl,kl;
N
Nils Larsch 已提交
972 973
	const char *ver,*exp_str;
	const char *kx,*au,*enc,*mac;
974
	unsigned long alg,alg2,alg_s;
975
#ifdef KSSL_DEBUG
N
Nils Larsch 已提交
976
	static const char *format="%-23s %s Kx=%-8s Au=%-4s Enc=%-9s Mac=%-4s%s AL=%lx\n";
977
#else
N
Nils Larsch 已提交
978
	static const char *format="%-23s %s Kx=%-8s Au=%-4s Enc=%-9s Mac=%-4s%s\n";
979 980
#endif /* KSSL_DEBUG */

981
	alg=cipher->algorithms;
982
	alg_s=cipher->algo_strength;
983 984
	alg2=cipher->algorithm2;

985 986 987
	is_export=SSL_C_IS_EXPORT(cipher);
	pkl=SSL_C_EXPORT_PKEYLENGTH(cipher);
	kl=SSL_C_EXPORT_KEYLENGTH(cipher);
G
Geoff Thorpe 已提交
988
	exp_str=is_export?" export":"";
B
Bodo Möller 已提交
989
	
990 991 992 993 994 995 996 997 998 999
	if (alg & SSL_SSLV2)
		ver="SSLv2";
	else if (alg & SSL_SSLV3)
		ver="SSLv3";
	else
		ver="unknown";

	switch (alg&SSL_MKEY_MASK)
		{
	case SSL_kRSA:
1000
		kx=is_export?(pkl == 512 ? "RSA(512)" : "RSA(1024)"):"RSA";
1001 1002 1003 1004 1005 1006 1007
		break;
	case SSL_kDHr:
		kx="DH/RSA";
		break;
	case SSL_kDHd:
		kx="DH/DSS";
		break;
1008 1009 1010 1011
        case SSL_kKRB5:         /* VRS */
        case SSL_KRB5:          /* VRS */
            kx="KRB5";
            break;
1012 1013 1014 1015
	case SSL_kFZA:
		kx="Fortezza";
		break;
	case SSL_kEDH:
1016
		kx=is_export?(pkl == 512 ? "DH(512)" : "DH(1024)"):"DH";
1017
		break;
B
Bodo Möller 已提交
1018 1019 1020 1021
	case SSL_kECDH:
	case SSL_kECDHE:
		kx=is_export?"ECDH(<=163)":"ECDH";
		break;
1022 1023 1024
	case SSL_kPSK:
		kx="PSK";
		break;
1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039
	default:
		kx="unknown";
		}

	switch (alg&SSL_AUTH_MASK)
		{
	case SSL_aRSA:
		au="RSA";
		break;
	case SSL_aDSS:
		au="DSS";
		break;
	case SSL_aDH:
		au="DH";
		break;
1040 1041 1042 1043
        case SSL_aKRB5:         /* VRS */
        case SSL_KRB5:          /* VRS */
            au="KRB5";
            break;
1044 1045 1046 1047
	case SSL_aFZA:
	case SSL_aNULL:
		au="None";
		break;
B
Bodo Möller 已提交
1048 1049 1050
	case SSL_aECDSA:
		au="ECDSA";
		break;
1051 1052 1053
	case SSL_aPSK:
		au="PSK";
		break;
1054 1055 1056 1057 1058 1059 1060 1061
	default:
		au="unknown";
		break;
		}

	switch (alg&SSL_ENC_MASK)
		{
	case SSL_DES:
1062
		enc=(is_export && kl == 5)?"DES(40)":"DES(56)";
1063 1064 1065 1066 1067
		break;
	case SSL_3DES:
		enc="3DES(168)";
		break;
	case SSL_RC4:
1068
		enc=is_export?(kl == 5 ? "RC4(40)" : "RC4(56)")
1069
		  :((alg2&SSL2_CF_8_BYTE_ENC)?"RC4(64)":"RC4(128)");
1070 1071
		break;
	case SSL_RC2:
1072
		enc=is_export?(kl == 5 ? "RC2(40)" : "RC2(56)"):"RC2(128)";
1073 1074 1075 1076 1077 1078 1079 1080 1081 1082
		break;
	case SSL_IDEA:
		enc="IDEA(128)";
		break;
	case SSL_eFZA:
		enc="Fortezza";
		break;
	case SSL_eNULL:
		enc="None";
		break;
D
 
Dr. Stephen Henson 已提交
1083 1084
	case SSL_AES:
		switch(cipher->strength_bits)
1085
			{
1086 1087 1088 1089
		case 128: enc="AES(128)"; break;
		case 192: enc="AES(192)"; break;
		case 256: enc="AES(256)"; break;
		default: enc="AES(?""?""?)"; break;
1090 1091
			}
		break;
1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111
	default:
		enc="unknown";
		break;
		}

	switch (alg&SSL_MAC_MASK)
		{
	case SSL_MD5:
		mac="MD5";
		break;
	case SSL_SHA1:
		mac="SHA1";
		break;
	default:
		mac="unknown";
		break;
		}

	if (buf == NULL)
		{
B
Bodo Möller 已提交
1112
		len=128;
1113 1114
		buf=OPENSSL_malloc(len);
		if (buf == NULL) return("OPENSSL_malloc Error");
1115 1116 1117 1118
		}
	else if (len < 128)
		return("Buffer too small");

1119
#ifdef KSSL_DEBUG
G
Geoff Thorpe 已提交
1120
	BIO_snprintf(buf,len,format,cipher->name,ver,kx,au,enc,mac,exp_str,alg);
1121
#else
G
Geoff Thorpe 已提交
1122
	BIO_snprintf(buf,len,format,cipher->name,ver,kx,au,enc,mac,exp_str);
1123
#endif /* KSSL_DEBUG */
1124 1125 1126
	return(buf);
	}

B
Ben Laurie 已提交
1127
char *SSL_CIPHER_get_version(const SSL_CIPHER *c)
1128 1129 1130
	{
	int i;

1131
	if (c == NULL) return("(NONE)");
1132 1133
	i=(int)(c->id>>24L);
	if (i == 3)
1134
		return("TLSv1/SSLv3");
1135 1136 1137 1138 1139 1140 1141
	else if (i == 2)
		return("SSLv2");
	else
		return("unknown");
	}

/* return the actual cipher being used */
B
Ben Laurie 已提交
1142
const char *SSL_CIPHER_get_name(const SSL_CIPHER *c)
1143 1144 1145 1146 1147 1148
	{
	if (c != NULL)
		return(c->name);
	return("(NONE)");
	}

U
Ulf Möller 已提交
1149
/* number of bits for symmetric cipher */
B
Ben Laurie 已提交
1150
int SSL_CIPHER_get_bits(const SSL_CIPHER *c, int *alg_bits)
1151
	{
1152
	int ret=0;
1153 1154 1155

	if (c != NULL)
		{
1156 1157
		if (alg_bits != NULL) *alg_bits = c->alg_bits;
		ret = c->strength_bits;
1158 1159 1160 1161
		}
	return(ret);
	}

U
Ulf Möller 已提交
1162
SSL_COMP *ssl3_comp_find(STACK_OF(SSL_COMP) *sk, int n)
1163 1164 1165 1166 1167
	{
	SSL_COMP *ctmp;
	int i,nn;

	if ((n == 0) || (sk == NULL)) return(NULL);
B
Ben Laurie 已提交
1168
	nn=sk_SSL_COMP_num(sk);
1169 1170
	for (i=0; i<nn; i++)
		{
B
Ben Laurie 已提交
1171
		ctmp=sk_SSL_COMP_value(sk,i);
1172 1173 1174 1175 1176 1177
		if (ctmp->id == n)
			return(ctmp);
		}
	return(NULL);
	}

1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192
#ifdef OPENSSL_NO_COMP
void *SSL_COMP_get_compression_methods(void)
	{
	return NULL;
	}
int SSL_COMP_add_compression_method(int id, void *cm)
	{
	return 1;
	}

const char *SSL_COMP_get_name(const void *comp)
	{
	return NULL;
	}
#else
U
Ulf Möller 已提交
1193
STACK_OF(SSL_COMP) *SSL_COMP_get_compression_methods(void)
1194
	{
1195
	load_builtin_compressions();
1196 1197 1198
	return(ssl_comp_methods);
	}

U
Ulf Möller 已提交
1199
int SSL_COMP_add_compression_method(int id, COMP_METHOD *cm)
1200 1201 1202
	{
	SSL_COMP *comp;

1203 1204 1205
        if (cm == NULL || cm->type == NID_undef)
                return 1;

1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217
	/* According to draft-ietf-tls-compression-04.txt, the
	   compression number ranges should be the following:

	   0 to 63:    methods defined by the IETF
	   64 to 192:  external party methods assigned by IANA
	   193 to 255: reserved for private use */
	if (id < 193 || id > 255)
		{
		SSLerr(SSL_F_SSL_COMP_ADD_COMPRESSION_METHOD,SSL_R_COMPRESSION_ID_NOT_WITHIN_PRIVATE_RANGE);
		return 0;
		}

1218
	MemCheck_off();
1219
	comp=(SSL_COMP *)OPENSSL_malloc(sizeof(SSL_COMP));
1220 1221
	comp->id=id;
	comp->method=cm;
1222
	load_builtin_compressions();
1223 1224 1225 1226 1227 1228 1229 1230 1231
	if (ssl_comp_methods
		&& !sk_SSL_COMP_find(ssl_comp_methods,comp))
		{
		OPENSSL_free(comp);
		MemCheck_on();
		SSLerr(SSL_F_SSL_COMP_ADD_COMPRESSION_METHOD,SSL_R_DUPLICATE_COMPRESSION_ID);
		return(1);
		}
	else if ((ssl_comp_methods == NULL)
1232
		|| !sk_SSL_COMP_push(ssl_comp_methods,comp))
1233
		{
1234
		OPENSSL_free(comp);
1235
		MemCheck_on();
1236
		SSLerr(SSL_F_SSL_COMP_ADD_COMPRESSION_METHOD,ERR_R_MALLOC_FAILURE);
R
Richard Levitte 已提交
1237
		return(1);
1238 1239
		}
	else
1240 1241
		{
		MemCheck_on();
R
Richard Levitte 已提交
1242
		return(0);
1243
		}
1244
	}
1245 1246 1247 1248 1249 1250 1251 1252

const char *SSL_COMP_get_name(const COMP_METHOD *comp)
	{
	if (comp)
		return comp->name;
	return NULL;
	}

1253
#endif