mirror of
https://github.com/openssl/openssl.git
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38fc02a708
Reviewed-by: Richard Levitte <levitte@openssl.org> (Merged from https://github.com/openssl/openssl/pull/15801)
386 lines
13 KiB
C
386 lines
13 KiB
C
/*-
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* Copyright 2007-2021 The OpenSSL Project Authors. All Rights Reserved.
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* Copyright Nokia 2007-2019
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* Copyright Siemens AG 2015-2019
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*
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* Licensed under the Apache License 2.0 (the "License"). You may not use
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* this file except in compliance with the License. You can obtain a copy
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* in the file LICENSE in the source distribution or at
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* https://www.openssl.org/source/license.html
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*
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* CRMF implementation by Martin Peylo, Miikka Viljanen, and David von Oheimb.
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*/
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#ifndef OSSL_CRYPTO_CRMF_LOCAL_H
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# define OSSL_CRYPTO_CRMF_LOCAL_H
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# include <openssl/crmf.h>
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# include <openssl/err.h>
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/* explicit #includes not strictly needed since implied by the above: */
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# include <openssl/types.h>
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# include <openssl/safestack.h>
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# include <openssl/x509.h>
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# include <openssl/x509v3.h>
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/*-
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* EncryptedValue ::= SEQUENCE {
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* intendedAlg [0] AlgorithmIdentifier OPTIONAL,
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* -- the intended algorithm for which the value will be used
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* symmAlg [1] AlgorithmIdentifier OPTIONAL,
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* -- the symmetric algorithm used to encrypt the value
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* encSymmKey [2] BIT STRING OPTIONAL,
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* -- the (encrypted) symmetric key used to encrypt the value
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* keyAlg [3] AlgorithmIdentifier OPTIONAL,
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* -- algorithm used to encrypt the symmetric key
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* valueHint [4] OCTET STRING OPTIONAL,
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* -- a brief description or identifier of the encValue content
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* -- (may be meaningful only to the sending entity, and
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* -- used only if EncryptedValue might be re-examined
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* -- by the sending entity in the future)
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* encValue BIT STRING
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* -- the encrypted value itself
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* }
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*/
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struct ossl_crmf_encryptedvalue_st {
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X509_ALGOR *intendedAlg; /* 0 */
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X509_ALGOR *symmAlg; /* 1 */
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ASN1_BIT_STRING *encSymmKey; /* 2 */
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X509_ALGOR *keyAlg; /* 3 */
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ASN1_OCTET_STRING *valueHint; /* 4 */
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ASN1_BIT_STRING *encValue;
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} /* OSSL_CRMF_ENCRYPTEDVALUE */;
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/*-
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* Attributes ::= SET OF Attribute
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* => X509_ATTRIBUTE
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*
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* PrivateKeyInfo ::= SEQUENCE {
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* version INTEGER,
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* privateKeyAlgorithm AlgorithmIdentifier,
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* privateKey OCTET STRING,
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* attributes [0] IMPLICIT Attributes OPTIONAL
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* }
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*/
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typedef struct ossl_crmf_privatekeyinfo_st {
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ASN1_INTEGER *version;
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X509_ALGOR *privateKeyAlgorithm;
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ASN1_OCTET_STRING *privateKey;
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STACK_OF(X509_ATTRIBUTE) *attributes; /* [ 0 ] */
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} OSSL_CRMF_PRIVATEKEYINFO;
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DECLARE_ASN1_FUNCTIONS(OSSL_CRMF_PRIVATEKEYINFO)
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/*-
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* section 4.2.1 Private Key Info Content Type
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* id-ct-encKeyWithID OBJECT IDENTIFIER ::= {id-ct 21}
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*
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* EncKeyWithID ::= SEQUENCE {
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* privateKey PrivateKeyInfo,
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* identifier CHOICE {
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* string UTF8String,
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* generalName GeneralName
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* } OPTIONAL
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* }
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*/
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typedef struct ossl_crmf_enckeywithid_identifier_st {
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int type;
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union {
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ASN1_UTF8STRING *string;
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GENERAL_NAME *generalName;
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} value;
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} OSSL_CRMF_ENCKEYWITHID_IDENTIFIER;
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DECLARE_ASN1_FUNCTIONS(OSSL_CRMF_ENCKEYWITHID_IDENTIFIER)
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typedef struct ossl_crmf_enckeywithid_st {
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OSSL_CRMF_PRIVATEKEYINFO *privateKey;
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/* [0] */
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OSSL_CRMF_ENCKEYWITHID_IDENTIFIER *identifier;
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} OSSL_CRMF_ENCKEYWITHID;
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DECLARE_ASN1_FUNCTIONS(OSSL_CRMF_ENCKEYWITHID)
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/*-
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* CertId ::= SEQUENCE {
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* issuer GeneralName,
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* serialNumber INTEGER
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* }
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*/
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struct ossl_crmf_certid_st {
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GENERAL_NAME *issuer;
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ASN1_INTEGER *serialNumber;
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} /* OSSL_CRMF_CERTID */;
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/*-
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* SinglePubInfo ::= SEQUENCE {
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* pubMethod INTEGER {
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* dontCare (0),
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* x500 (1),
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* web (2),
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* ldap (3) },
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* pubLocation GeneralName OPTIONAL
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* }
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*/
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struct ossl_crmf_singlepubinfo_st {
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ASN1_INTEGER *pubMethod;
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GENERAL_NAME *pubLocation;
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} /* OSSL_CRMF_SINGLEPUBINFO */;
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DEFINE_STACK_OF(OSSL_CRMF_SINGLEPUBINFO)
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typedef STACK_OF(OSSL_CRMF_SINGLEPUBINFO) OSSL_CRMF_PUBINFOS;
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/*-
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* PKIPublicationInfo ::= SEQUENCE {
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* action INTEGER {
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* dontPublish (0),
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* pleasePublish (1) },
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* pubInfos SEQUENCE SIZE (1..MAX) OF SinglePubInfo OPTIONAL
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* -- pubInfos MUST NOT be present if action is "dontPublish"
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* -- (if action is "pleasePublish" and pubInfos is omitted,
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* -- "dontCare" is assumed)
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* }
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*/
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struct ossl_crmf_pkipublicationinfo_st {
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ASN1_INTEGER *action;
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OSSL_CRMF_PUBINFOS *pubInfos;
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} /* OSSL_CRMF_PKIPUBLICATIONINFO */;
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DECLARE_ASN1_DUP_FUNCTION(OSSL_CRMF_PKIPUBLICATIONINFO)
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/*-
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* PKMACValue ::= SEQUENCE {
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* algId AlgorithmIdentifier,
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* -- algorithm value shall be PasswordBasedMac {1 2 840 113533 7 66 13}
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* -- parameter value is PBMParameter
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* value BIT STRING
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* }
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*/
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typedef struct ossl_crmf_pkmacvalue_st {
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X509_ALGOR *algId;
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ASN1_BIT_STRING *value;
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} OSSL_CRMF_PKMACVALUE;
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DECLARE_ASN1_FUNCTIONS(OSSL_CRMF_PKMACVALUE)
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/*-
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* SubsequentMessage ::= INTEGER {
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* encrCert (0),
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* -- requests that resulting certificate be encrypted for the
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* -- end entity (following which, POP will be proven in a
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* -- confirmation message)
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* challengeResp (1)
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* -- requests that CA engage in challenge-response exchange with
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* -- end entity in order to prove private key possession
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* }
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*
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* POPOPrivKey ::= CHOICE {
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* thisMessage [0] BIT STRING, -- Deprecated
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* -- possession is proven in this message (which contains the private
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* -- key itself (encrypted for the CA))
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* subsequentMessage [1] SubsequentMessage,
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* -- possession will be proven in a subsequent message
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* dhMAC [2] BIT STRING, -- Deprecated
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* agreeMAC [3] PKMACValue,
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* encryptedKey [4] EnvelopedData
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* }
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*/
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typedef struct ossl_crmf_popoprivkey_st {
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int type;
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union {
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ASN1_BIT_STRING *thisMessage; /* 0 */ /* Deprecated */
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ASN1_INTEGER *subsequentMessage; /* 1 */
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ASN1_BIT_STRING *dhMAC; /* 2 */ /* Deprecated */
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OSSL_CRMF_PKMACVALUE *agreeMAC; /* 3 */
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ASN1_NULL *encryptedKey; /* 4 */
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} value;
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} OSSL_CRMF_POPOPRIVKEY;
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DECLARE_ASN1_FUNCTIONS(OSSL_CRMF_POPOPRIVKEY)
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/*-
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* PBMParameter ::= SEQUENCE {
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* salt OCTET STRING,
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* owf AlgorithmIdentifier,
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* -- AlgId for a One-Way Function (SHA-1 recommended)
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* iterationCount INTEGER,
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* -- number of times the OWF is applied
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* mac AlgorithmIdentifier
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* -- the MAC AlgId (e.g., DES-MAC, Triple-DES-MAC [PKCS11],
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* -- or HMAC [HMAC, RFC2202])
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* }
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*/
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struct ossl_crmf_pbmparameter_st {
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ASN1_OCTET_STRING *salt;
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X509_ALGOR *owf;
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ASN1_INTEGER *iterationCount;
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X509_ALGOR *mac;
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} /* OSSL_CRMF_PBMPARAMETER */;
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# define OSSL_CRMF_PBM_MAX_ITERATION_COUNT 100000 /* if too large allows DoS */
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/*-
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* POPOSigningKeyInput ::= SEQUENCE {
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* authInfo CHOICE {
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* sender [0] GeneralName,
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* -- used only if an authenticated identity has been
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* -- established for the sender (e.g., a DN from a
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* -- previously-issued and currently-valid certificate)
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* publicKeyMAC PKMACValue },
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* -- used if no authenticated GeneralName currently exists for
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* -- the sender; publicKeyMAC contains a password-based MAC
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* -- on the DER-encoded value of publicKey
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* publicKey SubjectPublicKeyInfo -- from CertTemplate
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* }
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*/
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typedef struct ossl_crmf_poposigningkeyinput_authinfo_st {
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int type;
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union {
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/* 0 */ GENERAL_NAME *sender;
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/* 1 */ OSSL_CRMF_PKMACVALUE *publicKeyMAC;
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} value;
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} OSSL_CRMF_POPOSIGNINGKEYINPUT_AUTHINFO;
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DECLARE_ASN1_FUNCTIONS(OSSL_CRMF_POPOSIGNINGKEYINPUT_AUTHINFO)
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typedef struct ossl_crmf_poposigningkeyinput_st {
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OSSL_CRMF_POPOSIGNINGKEYINPUT_AUTHINFO *authInfo;
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X509_PUBKEY *publicKey;
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} OSSL_CRMF_POPOSIGNINGKEYINPUT;
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DECLARE_ASN1_FUNCTIONS(OSSL_CRMF_POPOSIGNINGKEYINPUT)
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/*-
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* POPOSigningKey ::= SEQUENCE {
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* poposkInput [0] POPOSigningKeyInput OPTIONAL,
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* algorithmIdentifier AlgorithmIdentifier,
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* signature BIT STRING
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* }
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*/
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struct ossl_crmf_poposigningkey_st {
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OSSL_CRMF_POPOSIGNINGKEYINPUT *poposkInput;
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X509_ALGOR *algorithmIdentifier;
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ASN1_BIT_STRING *signature;
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} /* OSSL_CRMF_POPOSIGNINGKEY */;
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DECLARE_ASN1_FUNCTIONS(OSSL_CRMF_POPOSIGNINGKEY)
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/*-
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* ProofOfPossession ::= CHOICE {
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* raVerified [0] NULL,
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* -- used if the RA has already verified that the requester is in
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* -- possession of the private key
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* signature [1] POPOSigningKey,
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* keyEncipherment [2] POPOPrivKey,
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* keyAgreement [3] POPOPrivKey
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* }
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*/
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typedef struct ossl_crmf_popo_st {
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int type;
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union {
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ASN1_NULL *raVerified; /* 0 */
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OSSL_CRMF_POPOSIGNINGKEY *signature; /* 1 */
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OSSL_CRMF_POPOPRIVKEY *keyEncipherment; /* 2 */
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OSSL_CRMF_POPOPRIVKEY *keyAgreement; /* 3 */
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} value;
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} OSSL_CRMF_POPO;
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DECLARE_ASN1_FUNCTIONS(OSSL_CRMF_POPO)
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/*-
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* OptionalValidity ::= SEQUENCE {
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* notBefore [0] Time OPTIONAL,
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* notAfter [1] Time OPTIONAL -- at least one MUST be present
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* }
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*/
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struct ossl_crmf_optionalvalidity_st {
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/* 0 */ ASN1_TIME *notBefore;
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/* 1 */ ASN1_TIME *notAfter;
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} /* OSSL_CRMF_OPTIONALVALIDITY */;
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DECLARE_ASN1_FUNCTIONS(OSSL_CRMF_OPTIONALVALIDITY)
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/*-
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* CertTemplate ::= SEQUENCE {
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* version [0] Version OPTIONAL,
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* serialNumber [1] INTEGER OPTIONAL,
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* signingAlg [2] AlgorithmIdentifier OPTIONAL,
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* issuer [3] Name OPTIONAL,
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* validity [4] OptionalValidity OPTIONAL,
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* subject [5] Name OPTIONAL,
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* publicKey [6] SubjectPublicKeyInfo OPTIONAL,
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* issuerUID [7] UniqueIdentifier OPTIONAL,
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* subjectUID [8] UniqueIdentifier OPTIONAL,
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* extensions [9] Extensions OPTIONAL
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* }
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*/
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struct ossl_crmf_certtemplate_st {
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ASN1_INTEGER *version;
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ASN1_INTEGER *serialNumber; /* serialNumber MUST be omitted */
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/* This field is assigned by the CA during certificate creation */
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X509_ALGOR *signingAlg; /* signingAlg MUST be omitted */
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/* This field is assigned by the CA during certificate creation */
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const X509_NAME *issuer;
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OSSL_CRMF_OPTIONALVALIDITY *validity;
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const X509_NAME *subject;
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X509_PUBKEY *publicKey;
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ASN1_BIT_STRING *issuerUID; /* deprecated in version 2 */
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/* According to rfc 3280: UniqueIdentifier ::= BIT STRING */
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ASN1_BIT_STRING *subjectUID; /* deprecated in version 2 */
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/* Could be X509_EXTENSION*S*, but that's only cosmetic */
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STACK_OF(X509_EXTENSION) *extensions;
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} /* OSSL_CRMF_CERTTEMPLATE */;
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/*-
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* CertRequest ::= SEQUENCE {
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* certReqId INTEGER, -- ID for matching request and reply
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* certTemplate CertTemplate, -- Selected fields of cert to be issued
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* controls Controls OPTIONAL -- Attributes affecting issuance
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* }
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*/
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struct ossl_crmf_certrequest_st {
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ASN1_INTEGER *certReqId;
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OSSL_CRMF_CERTTEMPLATE *certTemplate;
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STACK_OF(OSSL_CRMF_ATTRIBUTETYPEANDVALUE) *controls;
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} /* OSSL_CRMF_CERTREQUEST */;
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DECLARE_ASN1_FUNCTIONS(OSSL_CRMF_CERTREQUEST)
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DECLARE_ASN1_DUP_FUNCTION(OSSL_CRMF_CERTREQUEST)
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struct ossl_crmf_attributetypeandvalue_st {
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ASN1_OBJECT *type;
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union {
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/* NID_id_regCtrl_regToken */
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ASN1_UTF8STRING *regToken;
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/* NID_id_regCtrl_authenticator */
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ASN1_UTF8STRING *authenticator;
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/* NID_id_regCtrl_pkiPublicationInfo */
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OSSL_CRMF_PKIPUBLICATIONINFO *pkiPublicationInfo;
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/* NID_id_regCtrl_oldCertID */
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OSSL_CRMF_CERTID *oldCertID;
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/* NID_id_regCtrl_protocolEncrKey */
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X509_PUBKEY *protocolEncrKey;
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/* NID_id_regInfo_utf8Pairs */
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ASN1_UTF8STRING *utf8Pairs;
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/* NID_id_regInfo_certReq */
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OSSL_CRMF_CERTREQUEST *certReq;
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ASN1_TYPE *other;
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} value;
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} /* OSSL_CRMF_ATTRIBUTETYPEANDVALUE */;
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DECLARE_ASN1_FUNCTIONS(OSSL_CRMF_ATTRIBUTETYPEANDVALUE)
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DEFINE_STACK_OF(OSSL_CRMF_ATTRIBUTETYPEANDVALUE)
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DECLARE_ASN1_DUP_FUNCTION(OSSL_CRMF_ATTRIBUTETYPEANDVALUE)
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/*-
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* CertReqMessages ::= SEQUENCE SIZE (1..MAX) OF CertReqMsg
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* CertReqMsg ::= SEQUENCE {
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* certReq CertRequest,
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* popo ProofOfPossession OPTIONAL,
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* -- content depends upon key type
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* regInfo SEQUENCE SIZE(1..MAX) OF AttributeTypeAndValue OPTIONAL
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* }
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*/
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struct ossl_crmf_msg_st {
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OSSL_CRMF_CERTREQUEST *certReq;
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/* 0 */
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OSSL_CRMF_POPO *popo;
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/* 1 */
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STACK_OF(OSSL_CRMF_ATTRIBUTETYPEANDVALUE) *regInfo;
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} /* OSSL_CRMF_MSG */;
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#endif
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