Introduce limits to prevent malicious keys being able to
cause a denial of service. (CVE-2006-2940) [Steve Henson, Bodo Moeller] Fix ASN.1 parsing of certain invalid structures that can result in a denial of service. (CVE-2006-2937) [Steve Henson] Fix buffer overflow in SSL_get_shared_ciphers() function. (CVE-2006-3738) [Tavis Ormandy and Will Drewry, Google Security Team] Fix SSL client code which could crash if connecting to a malicious SSLv2 server. (CVE-2006-4343) [Tavis Ormandy and Will Drewry, Google Security Team]
This commit is contained in:
parent
8db3f4ace9
commit
b213966415
14
CHANGES
14
CHANGES
@ -4,6 +4,20 @@
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Changes between 0.9.7k and 0.9.7l [xx XXX xxxx]
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*) Introduce limits to prevent malicious keys being able to
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cause a denial of service. (CVE-2006-2940)
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[Steve Henson, Bodo Moeller]
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*) Fix ASN.1 parsing of certain invalid structures that can result
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in a denial of service. (CVE-2006-2937) [Steve Henson]
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*) Fix buffer overflow in SSL_get_shared_ciphers() function.
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(CVE-2006-3738) [Tavis Ormandy and Will Drewry, Google Security Team]
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*) Fix SSL client code which could crash if connecting to a
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malicious SSLv2 server. (CVE-2006-4343)
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[Tavis Ormandy and Will Drewry, Google Security Team]
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*) Change ciphersuite string processing so that an explicit
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ciphersuite selects this one ciphersuite (so that "AES256-SHA"
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will no longer include "AES128-SHA"), and any other similar
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5
NEWS
5
NEWS
@ -5,6 +5,11 @@
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This file gives a brief overview of the major changes between each OpenSSL
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release. For more details please read the CHANGES file.
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Major changes between OpenSSL 0.9.7k and OpenSSL 0.9.7l:
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o Introduce limits to prevent malicious key DoS (CVE-2006-2940)
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o Fix security issues (CVE-2006-2937, CVE-2006-3737, CVE-2006-4343)
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Major changes between OpenSSL 0.9.7j and OpenSSL 0.9.7k:
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o Fix Daniel Bleichenbacher forged signature attack, CVE-2006-4339
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@ -629,6 +629,7 @@ static int asn1_d2i_ex_primitive(ASN1_VALUE **pval, unsigned char **in, long inl
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ASN1err(ASN1_F_ASN1_D2I_EX_PRIMITIVE, ERR_R_NESTED_ASN1_ERROR);
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return 0;
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} else if(ret == -1) return -1;
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ret = 0;
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/* SEQUENCE, SET and "OTHER" are left in encoded form */
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if((utype == V_ASN1_SEQUENCE) || (utype == V_ASN1_SET) || (utype == V_ASN1_OTHER)) {
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/* Clear context cache for type OTHER because the auto clear when
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@ -70,6 +70,10 @@
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#include <openssl/crypto.h>
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#include <openssl/ossl_typ.h>
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#ifndef OPENSSL_DH_MAX_MODULUS_BITS
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# define OPENSSL_DH_MAX_MODULUS_BITS 10000
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#endif
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#define DH_FLAG_CACHE_MONT_P 0x01
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#define DH_FLAG_NO_EXP_CONSTTIME 0x02 /* new with 0.9.7h; the built-in DH
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* implementation now uses constant time
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@ -207,6 +211,7 @@ void ERR_load_DH_strings(void);
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/* Reason codes. */
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#define DH_R_BAD_GENERATOR 101
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#define DH_R_NO_PRIVATE_VALUE 100
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#define DH_R_MODULUS_TOO_LARGE 103
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#ifdef __cplusplus
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}
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@ -82,6 +82,7 @@ static ERR_STRING_DATA DH_str_functs[]=
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static ERR_STRING_DATA DH_str_reasons[]=
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{
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{ERR_REASON(DH_R_BAD_GENERATOR) ,"bad generator"},
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{ERR_REASON(DH_R_MODULUS_TOO_LARGE) ,"modulus too large"},
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{ERR_REASON(DH_R_NO_PRIVATE_VALUE) ,"no private value"},
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{0,NULL}
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};
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@ -180,6 +180,12 @@ static int compute_key(unsigned char *key, const BIGNUM *pub_key, DH *dh)
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BIGNUM *tmp;
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int ret= -1;
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if (BN_num_bits(dh->p) > OPENSSL_DH_MAX_MODULUS_BITS)
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{
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DHerr(DH_F_DH_COMPUTE_KEY,DH_R_MODULUS_TOO_LARGE);
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goto err;
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}
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ctx = BN_CTX_new();
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if (ctx == NULL) goto err;
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BN_CTX_start(ctx);
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@ -79,6 +79,10 @@
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# include <openssl/dh.h>
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#endif
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#ifndef OPENSSL_DSA_MAX_MODULUS_BITS
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# define OPENSSL_DSA_MAX_MODULUS_BITS 10000
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#endif
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#define DSA_FLAG_CACHE_MONT_P 0x01
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#define DSA_FLAG_NO_EXP_CONSTTIME 0x02 /* new with 0.9.7h; the built-in DSA
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* implementation now uses constant time
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@ -259,8 +263,10 @@ void ERR_load_DSA_strings(void);
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#define DSA_F_SIG_CB 114
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/* Reason codes. */
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#define DSA_R_BAD_Q_VALUE 102
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#define DSA_R_DATA_TOO_LARGE_FOR_KEY_SIZE 100
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#define DSA_R_MISSING_PARAMETERS 101
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#define DSA_R_MODULUS_TOO_LARGE 103
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#ifdef __cplusplus
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}
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@ -89,8 +89,10 @@ static ERR_STRING_DATA DSA_str_functs[]=
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static ERR_STRING_DATA DSA_str_reasons[]=
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{
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{ERR_REASON(DSA_R_BAD_Q_VALUE) ,"bad q value"},
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{ERR_REASON(DSA_R_DATA_TOO_LARGE_FOR_KEY_SIZE),"data too large for key size"},
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{ERR_REASON(DSA_R_MISSING_PARAMETERS) ,"missing parameters"},
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{ERR_REASON(DSA_R_MODULUS_TOO_LARGE) ,"modulus too large"},
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{0,NULL}
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};
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@ -274,6 +274,18 @@ static int dsa_do_verify(const unsigned char *dgst, int dgst_len, DSA_SIG *sig,
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return -1;
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}
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if (BN_num_bits(dsa->q) != 160)
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{
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DSAerr(DSA_F_DSA_DO_VERIFY,DSA_R_BAD_Q_VALUE);
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return -1;
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}
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if (BN_num_bits(dsa->p) > OPENSSL_DSA_MAX_MODULUS_BITS)
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{
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DSAerr(DSA_F_DSA_DO_VERIFY,DSA_R_MODULUS_TOO_LARGE);
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return -1;
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}
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BN_init(&u1);
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BN_init(&u2);
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BN_init(&t1);
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BN_BLINDING *blinding;
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};
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#ifndef OPENSSL_RSA_MAX_MODULUS_BITS
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# define OPENSSL_RSA_MAX_MODULUS_BITS 16384
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#endif
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#ifndef OPENSSL_RSA_SMALL_MODULUS_BITS
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# define OPENSSL_RSA_SMALL_MODULUS_BITS 3072
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#endif
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#ifndef OPENSSL_RSA_MAX_PUBEXP_BITS
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# define OPENSSL_RSA_MAX_PUBEXP_BITS 64 /* exponent limit enforced for "large" modulus only */
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#endif
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#define RSA_3 0x3L
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#define RSA_F4 0x10001L
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@ -386,6 +397,7 @@ void ERR_load_RSA_strings(void);
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#define RSA_R_IQMP_NOT_INVERSE_OF_Q 126
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#define RSA_R_KEY_SIZE_TOO_SMALL 120
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#define RSA_R_LAST_OCTET_INVALID 134
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#define RSA_R_MODULUS_TOO_LARGE 105
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#define RSA_R_NULL_BEFORE_BLOCK_MISSING 113
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#define RSA_R_N_DOES_NOT_EQUAL_P_Q 127
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#define RSA_R_OAEP_DECODING_ERROR 121
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unsigned char *buf=NULL;
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BN_CTX *ctx=NULL;
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if (BN_num_bits(rsa->n) > OPENSSL_RSA_MAX_MODULUS_BITS)
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{
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RSAerr(RSA_F_RSA_EAY_PUBLIC_DECRYPT, RSA_R_MODULUS_TOO_LARGE);
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return -1;
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}
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if (BN_ucmp(rsa->n, rsa->e) <= 0)
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{
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RSAerr(RSA_F_RSA_EAY_PUBLIC_DECRYPT, RSA_R_BAD_E_VALUE);
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return -1;
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}
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/* for large moduli, enforce exponent limit */
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if (BN_num_bits(rsa->n) > OPENSSL_RSA_SMALL_MODULUS_BITS)
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{
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if (BN_num_bits(rsa->e) > OPENSSL_RSA_MAX_PUBEXP_BITS)
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{
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RSAerr(RSA_F_RSA_EAY_PUBLIC_DECRYPT, RSA_R_BAD_E_VALUE);
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return -1;
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}
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}
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BN_init(&f);
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BN_init(&ret);
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if ((ctx=BN_CTX_new()) == NULL) goto err;
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@ -600,6 +622,28 @@ static int RSA_eay_public_decrypt(int flen, const unsigned char *from,
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unsigned char *buf=NULL;
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BN_CTX *ctx=NULL;
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if (BN_num_bits(rsa->n) > OPENSSL_RSA_MAX_MODULUS_BITS)
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{
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RSAerr(RSA_F_RSA_EAY_PUBLIC_ENCRYPT, RSA_R_MODULUS_TOO_LARGE);
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return -1;
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}
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if (BN_ucmp(rsa->n, rsa->e) <= 0)
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{
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RSAerr(RSA_F_RSA_EAY_PUBLIC_ENCRYPT, RSA_R_BAD_E_VALUE);
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return -1;
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}
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/* for large moduli, enforce exponent limit */
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if (BN_num_bits(rsa->n) > OPENSSL_RSA_SMALL_MODULUS_BITS)
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{
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if (BN_num_bits(rsa->e) > OPENSSL_RSA_MAX_PUBEXP_BITS)
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{
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RSAerr(RSA_F_RSA_EAY_PUBLIC_ENCRYPT, RSA_R_BAD_E_VALUE);
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return -1;
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}
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}
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BN_init(&f);
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BN_init(&ret);
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ctx=BN_CTX_new();
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{ERR_REASON(RSA_R_IQMP_NOT_INVERSE_OF_Q) ,"iqmp not inverse of q"},
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{ERR_REASON(RSA_R_KEY_SIZE_TOO_SMALL) ,"key size too small"},
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{ERR_REASON(RSA_R_LAST_OCTET_INVALID) ,"last octet invalid"},
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{ERR_REASON(RSA_R_MODULUS_TOO_LARGE) ,"modulus too large"},
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{ERR_REASON(RSA_R_NULL_BEFORE_BLOCK_MISSING),"null before block missing"},
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{ERR_REASON(RSA_R_N_DOES_NOT_EQUAL_P_Q) ,"n does not equal p q"},
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{ERR_REASON(RSA_R_OAEP_DECODING_ERROR) ,"oaep decoding error"},
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CRYPTO_add(&s->session->peer->references, 1, CRYPTO_LOCK_X509);
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}
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if (s->session->peer != s->session->sess_cert->peer_key->x509)
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if (s->session->sess_cert == NULL
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|| s->session->peer != s->session->sess_cert->peer_key->x509)
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/* can't happen */
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{
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ssl2_return_error(s, SSL2_PE_UNDEFINED_ERROR);
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if (kssl_ctx->client_princ)
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{
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int len = strlen(kssl_ctx->client_princ);
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size_t len = strlen(kssl_ctx->client_princ);
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if ( len < SSL_MAX_KRB5_PRINCIPAL_LENGTH )
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{
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s->session->krb5_client_princ_len = len;
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c=sk_SSL_CIPHER_value(sk,i);
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for (cp=c->name; *cp; )
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{
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if (len-- == 0)
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if (len-- <= 0)
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{
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*p='\0';
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return(buf);
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