AES256 and AES128 are newer enctypes because they are officially specified in RFC4120 and RFC8009, while enctypes not officially specified since RFC4120 are considered older. This function differs from older_enctype() in that it does not report unknown or non-existent enctypes as being 'newer'. Signed-off-by: Joseph Sutton <josephsutton@catalyst.net.nz>
		
			
				
	
	
		
			293 lines
		
	
	
		
			7.1 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			293 lines
		
	
	
		
			7.1 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 * Copyright (c) 1997 - 2008 Kungliga Tekniska Högskolan
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 * (Royal Institute of Technology, Stockholm, Sweden).
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 * All rights reserved.
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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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 *
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 * 1. Redistributions of source code must retain the above copyright
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 *    notice, this list of conditions and the following disclaimer.
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 *
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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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 *
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 * 3. Neither the name of the Institute nor the names of its contributors
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 *    may be used to endorse or promote products derived from this software
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 *    without specific prior written permission.
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 *
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 * THIS SOFTWARE IS PROVIDED BY THE INSTITUTE AND CONTRIBUTORS ``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 INSTITUTE 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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#include "krb5_locl.h"
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/*
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 *
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 */
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static void
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DES3_random_key(krb5_context context,
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		krb5_keyblock *key)
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{
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    DES_cblock *k = key->keyvalue.data;
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    do {
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	krb5_generate_random_block(k, 3 * sizeof(DES_cblock));
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	DES_set_odd_parity(&k[0]);
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	DES_set_odd_parity(&k[1]);
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	DES_set_odd_parity(&k[2]);
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    } while(DES_is_weak_key(&k[0]) ||
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	    DES_is_weak_key(&k[1]) ||
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	    DES_is_weak_key(&k[2]));
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}
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static krb5_error_code
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DES3_prf(krb5_context context,
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	 krb5_crypto crypto,
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	 const krb5_data *in,
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	 krb5_data *out)
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{
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    struct _krb5_checksum_type *ct = crypto->et->checksum;
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    struct krb5_crypto_iov iov[1];
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    krb5_error_code ret;
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    Checksum result;
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    krb5_keyblock *derived;
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    result.cksumtype = ct->type;
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    ret = krb5_data_alloc(&result.checksum, ct->checksumsize);
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    if (ret) {
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	krb5_set_error_message(context, ret, N_("malloc: out memory", ""));
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	return ret;
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    }
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    iov[0].data = *in;
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    iov[0].flags = KRB5_CRYPTO_TYPE_DATA;
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    ret = (*ct->checksum)(context, crypto, NULL, 0, iov, 1, &result);
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    if (ret) {
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	krb5_data_free(&result.checksum);
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	return ret;
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    }
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    if (result.checksum.length < crypto->et->blocksize)
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	krb5_abortx(context, "internal prf error");
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    derived = NULL;
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    ret = krb5_derive_key(context, crypto->key.key,
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			  crypto->et->type, "prf", 3, &derived);
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    if (ret)
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	krb5_abortx(context, "krb5_derive_key");
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    ret = krb5_data_alloc(out, crypto->et->prf_length);
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    if (ret)
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	krb5_abortx(context, "malloc failed");
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    {
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	const EVP_CIPHER *c = (*crypto->et->keytype->evp)();
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	EVP_CIPHER_CTX ctx;
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	EVP_CIPHER_CTX_init(&ctx); /* ivec all zero */
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	EVP_CipherInit_ex(&ctx, c, NULL, derived->keyvalue.data, NULL, 1);
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	EVP_Cipher(&ctx, out->data, result.checksum.data,
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		   crypto->et->prf_length);
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	EVP_CIPHER_CTX_cleanup(&ctx);
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    }
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    krb5_data_free(&result.checksum);
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    krb5_free_keyblock(context, derived);
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    return ret;
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}
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#ifdef DES3_OLD_ENCTYPE
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static struct _krb5_key_type keytype_des3 = {
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    ETYPE_OLD_DES3_CBC_SHA1,
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    "des3",
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    168,
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    24,
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    sizeof(struct _krb5_evp_schedule),
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    DES3_random_key,
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    _krb5_evp_schedule,
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    _krb5_des3_salt,
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    _krb5_DES3_random_to_key,
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    _krb5_evp_cleanup,
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    EVP_des_ede3_cbc
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};
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#endif
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static struct _krb5_key_type keytype_des3_derived = {
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    ETYPE_OLD_DES3_CBC_SHA1,
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    "des3",
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    168,
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    24,
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    sizeof(struct _krb5_evp_schedule),
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    DES3_random_key,
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    _krb5_evp_schedule,
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    _krb5_des3_salt_derived,
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    _krb5_DES3_random_to_key,
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    _krb5_evp_cleanup,
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    EVP_des_ede3_cbc
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};
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#ifdef DES3_OLD_ENCTYPE
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static krb5_error_code
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RSA_MD5_DES3_checksum(krb5_context context,
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		      krb5_crypto crypto,
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		      struct _krb5_key_data *key,
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		      unsigned usage,
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		      const struct krb5_crypto_iov *iov,
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		      int niov,
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		      Checksum *C)
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{
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    return _krb5_des_checksum(context, EVP_md5(), key, iov, niov, C);
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}
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static krb5_error_code
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RSA_MD5_DES3_verify(krb5_context context,
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		    krb5_crypto crypto,
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		    struct _krb5_key_data *key,
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		    unsigned usage,
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                    const struct krb5_crypto_iov *iov,
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                    int niov,
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		    Checksum *C)
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{
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    return _krb5_des_verify(context, EVP_md5(), key, iov, niov, C);
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}
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struct _krb5_checksum_type _krb5_checksum_rsa_md5_des3 = {
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    CKSUMTYPE_RSA_MD5_DES3,
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    "rsa-md5-des3",
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    64,
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    24,
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    F_KEYED | F_CPROOF | F_VARIANT,
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    RSA_MD5_DES3_checksum,
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    RSA_MD5_DES3_verify
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};
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#endif
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struct _krb5_checksum_type _krb5_checksum_hmac_sha1_des3 = {
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    CKSUMTYPE_HMAC_SHA1_DES3,
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    "hmac-sha1-des3",
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    64,
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    20,
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    F_KEYED | F_CPROOF | F_DERIVED,
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    _krb5_SP_HMAC_SHA1_checksum,
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    NULL
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};
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#ifdef DES3_OLD_ENCTYPE
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struct _krb5_encryption_type _krb5_enctype_des3_cbc_md5 = {
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    ETYPE_DES3_CBC_MD5,
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    "des3-cbc-md5",
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    NULL,
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    8,
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    8,
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    8,
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    &keytype_des3,
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    &_krb5_checksum_rsa_md5,
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    &_krb5_checksum_rsa_md5_des3,
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    F_OLD,
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    _krb5_evp_encrypt,
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    _krb5_evp_encrypt_iov,
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    0,
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    NULL
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};
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#endif
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struct _krb5_encryption_type _krb5_enctype_des3_cbc_sha1 = {
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    ETYPE_DES3_CBC_SHA1,
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    "des3-cbc-sha1",
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    NULL,
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    8,
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    8,
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    8,
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    &keytype_des3_derived,
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    &_krb5_checksum_sha1,
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    &_krb5_checksum_hmac_sha1_des3,
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    F_DERIVED | F_RFC3961_ENC | F_RFC3961_KDF | F_OLD,
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    _krb5_evp_encrypt,
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    _krb5_evp_encrypt_iov,
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    16,
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    DES3_prf
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};
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#ifdef DES3_OLD_ENCTYPE
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struct _krb5_encryption_type _krb5_enctype_old_des3_cbc_sha1 = {
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    ETYPE_OLD_DES3_CBC_SHA1,
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    "old-des3-cbc-sha1",
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    NULL,
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    8,
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    8,
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    8,
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    &keytype_des3,
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    &_krb5_checksum_sha1,
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    &_krb5_checksum_hmac_sha1_des3,
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    F_OLD,
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    _krb5_evp_encrypt,
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    _krb5_evp_encrypt_iov,
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    0,
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    NULL
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};
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#endif
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struct _krb5_encryption_type _krb5_enctype_des3_cbc_none = {
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    ETYPE_DES3_CBC_NONE,
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    "des3-cbc-none",
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    NULL,
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    8,
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    8,
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    0,
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    &keytype_des3_derived,
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    &_krb5_checksum_none,
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    NULL,
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    F_PSEUDO | F_OLD,
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    _krb5_evp_encrypt,
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    _krb5_evp_encrypt_iov,
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    0,
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    NULL
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};
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void
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_krb5_DES3_random_to_key(krb5_context context,
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			 krb5_keyblock *key,
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			 const void *data,
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			 size_t size)
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{
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    unsigned char *x = key->keyvalue.data;
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    const u_char *q = data;
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    DES_cblock *k;
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    int i, j;
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    memset(key->keyvalue.data, 0, key->keyvalue.length);
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    for (i = 0; i < 3; ++i) {
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	unsigned char foo;
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	for (j = 0; j < 7; ++j) {
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	    unsigned char b = q[7 * i + j];
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	    x[8 * i + j] = b;
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	}
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	foo = 0;
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	for (j = 6; j >= 0; --j) {
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	    foo |= q[7 * i + j] & 1;
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	    foo <<= 1;
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	}
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	x[8 * i + 7] = foo;
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    }
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    k = key->keyvalue.data;
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    for (i = 0; i < 3; i++) {
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	DES_set_odd_parity(&k[i]);
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	if(DES_is_weak_key(&k[i]))
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	    _krb5_xor8(k[i], (const unsigned char*)"\0\0\0\0\0\0\0\xf0");
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    }
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}
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