682 lines
17 KiB
C
682 lines
17 KiB
C
/*
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* Copyright (C) 2012 Martin Willi
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* Copyright (C) 2012 revosec AG
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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* Free Software Foundation; either version 2 of the License, or (at your
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* option) any later version. See <http://www.fsf.org/copyleft/gpl.txt>.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
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* or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* for more details.
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*/
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#include "pkcs7_signed_data.h"
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#include "pkcs7_attributes.h"
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#include <time.h>
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#include <utils/debug.h>
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#include <asn1/oid.h>
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#include <asn1/asn1.h>
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#include <asn1/asn1_parser.h>
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#include <credentials/sets/mem_cred.h>
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#include <credentials/certificates/x509.h>
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#include <credentials/keys/private_key.h>
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typedef struct private_pkcs7_signed_data_t private_pkcs7_signed_data_t;
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/**
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* Private data of a PKCS#7 signed-data container.
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*/
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struct private_pkcs7_signed_data_t {
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/**
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* Implements pkcs7_t.
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*/
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pkcs7_t public;
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/**
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* Signed content data
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*/
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container_t *content;
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/**
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* Encoded PKCS#7 signed-data
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*/
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chunk_t encoding;
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/**
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* list of signerInfos, signerinfo_t
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*/
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linked_list_t *signerinfos;
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/**
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* Contained certificates
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*/
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mem_cred_t *creds;
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};
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/**
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* A single signerInfo
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*/
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typedef struct {
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/**
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* Signed attributes of signerInfo
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*/
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pkcs7_attributes_t *attributes;
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/**
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* Serial of signing certificate
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*/
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identification_t *serial;
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/**
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* Issuer of signing certificate
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*/
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identification_t *issuer;
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/**
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* EncryptedDigest
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*/
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chunk_t encrypted_digest;
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/**
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* Digesting algorithm OID
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*/
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int digest_alg;
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/**
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* Public key encryption algorithm OID
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*/
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int enc_alg;
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} signerinfo_t;
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/**
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* Destroy a signerinfo_t entry
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*/
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void signerinfo_destroy(signerinfo_t *this)
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{
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DESTROY_IF(this->attributes);
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DESTROY_IF(this->serial);
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DESTROY_IF(this->issuer);
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free(this->encrypted_digest.ptr);
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free(this);
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}
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/**
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* ASN.1 definition of the PKCS#7 signedData type
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*/
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static const asn1Object_t signedDataObjects[] = {
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{ 0, "signedData", ASN1_SEQUENCE, ASN1_NONE }, /* 0 */
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{ 1, "version", ASN1_INTEGER, ASN1_BODY }, /* 1 */
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{ 1, "digestAlgorithms", ASN1_SET, ASN1_LOOP }, /* 2 */
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{ 2, "algorithm", ASN1_EOC, ASN1_RAW }, /* 3 */
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{ 1, "end loop", ASN1_EOC, ASN1_END }, /* 4 */
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{ 1, "contentInfo", ASN1_EOC, ASN1_RAW }, /* 5 */
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{ 1, "certificates", ASN1_CONTEXT_C_0, ASN1_OPT |
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ASN1_LOOP }, /* 6 */
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{ 2, "certificate", ASN1_SEQUENCE, ASN1_OBJ }, /* 7 */
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{ 1, "end opt or loop", ASN1_EOC, ASN1_END }, /* 8 */
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{ 1, "crls", ASN1_CONTEXT_C_1, ASN1_OPT |
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ASN1_LOOP }, /* 9 */
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{ 2, "crl", ASN1_SEQUENCE, ASN1_OBJ }, /* 10 */
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{ 1, "end opt or loop", ASN1_EOC, ASN1_END }, /* 11 */
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{ 1, "signerInfos", ASN1_SET, ASN1_LOOP }, /* 12 */
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{ 2, "signerInfo", ASN1_SEQUENCE, ASN1_NONE }, /* 13 */
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{ 3, "version", ASN1_INTEGER, ASN1_BODY }, /* 14 */
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{ 3, "issuerAndSerialNumber", ASN1_SEQUENCE, ASN1_BODY }, /* 15 */
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{ 4, "issuer", ASN1_SEQUENCE, ASN1_OBJ }, /* 16 */
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{ 4, "serial", ASN1_INTEGER, ASN1_BODY }, /* 17 */
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{ 3, "digestAlgorithm", ASN1_EOC, ASN1_RAW }, /* 18 */
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{ 3, "authenticatedAttributes", ASN1_CONTEXT_C_0, ASN1_OPT |
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ASN1_OBJ }, /* 19 */
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{ 3, "end opt", ASN1_EOC, ASN1_END }, /* 20 */
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{ 3, "digestEncryptionAlgorithm", ASN1_EOC, ASN1_RAW }, /* 21 */
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{ 3, "encryptedDigest", ASN1_OCTET_STRING, ASN1_BODY }, /* 22 */
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{ 3, "unauthenticatedAttributes", ASN1_CONTEXT_C_1, ASN1_OPT }, /* 23 */
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{ 3, "end opt", ASN1_EOC, ASN1_END }, /* 24 */
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{ 1, "end loop", ASN1_EOC, ASN1_END }, /* 25 */
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{ 0, "exit", ASN1_EOC, ASN1_EXIT }
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};
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#define PKCS7_VERSION 1
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#define PKCS7_DIGEST_ALG 3
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#define PKCS7_CONTENT_INFO 5
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#define PKCS7_CERT 7
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#define PKCS7_SIGNER_INFO 13
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#define PKCS7_SIGNER_INFO_VERSION 14
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#define PKCS7_ISSUER 16
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#define PKCS7_SERIAL_NUMBER 17
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#define PKCS7_DIGEST_ALGORITHM 18
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#define PKCS7_AUTH_ATTRIBUTES 19
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#define PKCS7_DIGEST_ENC_ALGORITHM 21
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#define PKCS7_ENCRYPTED_DIGEST 22
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METHOD(container_t, get_type, container_type_t,
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private_pkcs7_signed_data_t *this)
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{
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return CONTAINER_PKCS7_SIGNED_DATA;
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}
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/**
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* Signature enumerator implementation
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*/
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typedef struct {
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/** implements enumerator */
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enumerator_t public;
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/** inner signerinfos enumerator */
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enumerator_t *inner;
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/** currently enumerated auth_cfg */
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auth_cfg_t *auth;
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/** currently enumerating signerinfo */
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signerinfo_t *info;
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/** reference to container */
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private_pkcs7_signed_data_t *this;
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} signature_enumerator_t;
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METHOD(enumerator_t, enumerate, bool,
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signature_enumerator_t *this, va_list args)
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{
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signerinfo_t *info;
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signature_scheme_t scheme;
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hash_algorithm_t algorithm;
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enumerator_t *enumerator;
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certificate_t *cert;
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public_key_t *key;
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auth_cfg_t *auth, **out;
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chunk_t chunk, hash, content;
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hasher_t *hasher;
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bool valid;
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VA_ARGS_VGET(args, out);
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while (this->inner->enumerate(this->inner, &info))
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{
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/* clean up previous round */
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DESTROY_IF(this->auth);
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this->auth = NULL;
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scheme = signature_scheme_from_oid(info->digest_alg);
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if (scheme == SIGN_UNKNOWN)
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{
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DBG1(DBG_LIB, "unsupported signature scheme");
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continue;
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}
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if (!info->attributes)
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{
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DBG1(DBG_LIB, "no authenticatedAttributes object found");
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continue;
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}
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if (info->enc_alg != OID_RSA_ENCRYPTION)
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{
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DBG1(DBG_LIB, "only RSA digest encryption supported");
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continue;
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}
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enumerator = lib->credmgr->create_trusted_enumerator(lib->credmgr,
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KEY_RSA, info->serial, FALSE);
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while (enumerator->enumerate(enumerator, &cert, &auth))
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{
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if (info->issuer->equals(info->issuer, cert->get_issuer(cert)))
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{
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key = cert->get_public_key(cert);
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if (key)
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{
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chunk = info->attributes->get_encoding(info->attributes);
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if (key->verify(key, scheme, chunk, info->encrypted_digest))
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{
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this->auth = auth->clone(auth);
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key->destroy(key);
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break;
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}
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key->destroy(key);
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}
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}
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}
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enumerator->destroy(enumerator);
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if (!this->auth)
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{
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DBG1(DBG_LIB, "unable to verify pkcs7 attributes signature");
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continue;
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}
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chunk = info->attributes->get_attribute(info->attributes,
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OID_PKCS9_MESSAGE_DIGEST);
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if (!chunk.len)
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{
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DBG1(DBG_LIB, "messageDigest attribute not found");
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continue;
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}
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if (!this->this->content->get_data(this->this->content, &content))
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{
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continue;
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}
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algorithm = hasher_algorithm_from_oid(info->digest_alg);
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hasher = lib->crypto->create_hasher(lib->crypto, algorithm);
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if (!hasher || !hasher->allocate_hash(hasher, content, &hash))
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{
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free(content.ptr);
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DESTROY_IF(hasher);
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DBG1(DBG_LIB, "hash algorithm %N not supported",
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hash_algorithm_names, algorithm);
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continue;
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}
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free(content.ptr);
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hasher->destroy(hasher);
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DBG3(DBG_LIB, "hash: %B", &hash);
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valid = chunk_equals_const(chunk, hash);
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free(hash.ptr);
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if (!valid)
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{
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DBG1(DBG_LIB, "invalid messageDigest");
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continue;
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}
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*out = this->auth;
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this->info = info;
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return TRUE;
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}
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this->info = NULL;
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return FALSE;
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}
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METHOD(enumerator_t, enumerator_destroy, void,
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signature_enumerator_t *this)
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{
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lib->credmgr->remove_local_set(lib->credmgr, &this->this->creds->set);
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this->inner->destroy(this->inner);
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DESTROY_IF(this->auth);
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free(this);
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}
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METHOD(container_t, create_signature_enumerator, enumerator_t*,
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private_pkcs7_signed_data_t *this)
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{
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signature_enumerator_t *enumerator;
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INIT(enumerator,
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.public = {
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.enumerate = enumerator_enumerate_default,
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.venumerate = _enumerate,
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.destroy = _enumerator_destroy,
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},
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.inner = this->signerinfos->create_enumerator(this->signerinfos),
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.this = this,
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);
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lib->credmgr->add_local_set(lib->credmgr, &this->creds->set, FALSE);
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return &enumerator->public;
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}
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METHOD(pkcs7_t, get_attribute, bool,
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private_pkcs7_signed_data_t *this, int oid, enumerator_t *enumerator, chunk_t *value)
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{
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signature_enumerator_t *e;
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chunk_t chunk;
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e = (signature_enumerator_t*)enumerator;
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if (e->info)
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{
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chunk = e->info->attributes->get_attribute(e->info->attributes, oid);
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if (chunk.len)
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{
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*value = chunk_clone(chunk);
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return TRUE;
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}
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}
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return FALSE;
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}
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METHOD(pkcs7_t, create_cert_enumerator, enumerator_t*,
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private_pkcs7_signed_data_t *this)
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{
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return this->creds->set.create_cert_enumerator(&this->creds->set,
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CERT_ANY, KEY_ANY, NULL, FALSE);
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}
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METHOD(container_t, get_data, bool,
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private_pkcs7_signed_data_t *this, chunk_t *data)
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{
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if (this->content)
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{
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return this->content->get_data(this->content, data);
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}
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return FALSE;
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}
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METHOD(container_t, get_encoding, bool,
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private_pkcs7_signed_data_t *this, chunk_t *data)
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{
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*data = chunk_clone(this->encoding);
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return TRUE;
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}
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METHOD(container_t, destroy, void,
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private_pkcs7_signed_data_t *this)
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{
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this->creds->destroy(this->creds);
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this->signerinfos->destroy_function(this->signerinfos,
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(void*)signerinfo_destroy);
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DESTROY_IF(this->content);
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free(this->encoding.ptr);
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free(this);
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}
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/**
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* Create an empty PKCS#7 signed-data container.
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*/
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static private_pkcs7_signed_data_t* create_empty()
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{
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private_pkcs7_signed_data_t *this;
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INIT(this,
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.public = {
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.container = {
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.get_type = _get_type,
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.create_signature_enumerator = _create_signature_enumerator,
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.get_data = _get_data,
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.get_encoding = _get_encoding,
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.destroy = _destroy,
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},
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.get_attribute = _get_attribute,
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.create_cert_enumerator = _create_cert_enumerator,
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},
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.creds = mem_cred_create(),
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.signerinfos = linked_list_create(),
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);
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return this;
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}
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/**
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* Parse PKCS#7 signed data
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*/
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static bool parse(private_pkcs7_signed_data_t *this, chunk_t content)
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{
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asn1_parser_t *parser;
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chunk_t object;
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int objectID, version;
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signerinfo_t *info = NULL;
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bool success = FALSE;
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parser = asn1_parser_create(signedDataObjects, content);
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parser->set_top_level(parser, 0);
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while (parser->iterate(parser, &objectID, &object))
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{
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u_int level = parser->get_level(parser);
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switch (objectID)
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{
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case PKCS7_VERSION:
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version = object.len ? (int)*object.ptr : 0;
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DBG2(DBG_LIB, " v%d", version);
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break;
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case PKCS7_CONTENT_INFO:
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this->content = lib->creds->create(lib->creds,
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CRED_CONTAINER, CONTAINER_PKCS7,
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BUILD_BLOB_ASN1_DER, object, BUILD_END);
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break;
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case PKCS7_CERT:
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{
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certificate_t *cert;
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DBG2(DBG_LIB, " parsing pkcs7-wrapped certificate");
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cert = lib->creds->create(lib->creds,
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CRED_CERTIFICATE, CERT_X509,
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BUILD_BLOB_ASN1_DER, object,
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BUILD_END);
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if (cert)
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{
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this->creds->add_cert(this->creds, FALSE, cert);
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}
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break;
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}
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case PKCS7_SIGNER_INFO:
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INIT(info,
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.digest_alg = OID_UNKNOWN,
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.enc_alg = OID_UNKNOWN,
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);
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this->signerinfos->insert_last(this->signerinfos, info);
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break;
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case PKCS7_SIGNER_INFO_VERSION:
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version = object.len ? (int)*object.ptr : 0;
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DBG2(DBG_LIB, " v%d", version);
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break;
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case PKCS7_ISSUER:
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info->issuer = identification_create_from_encoding(
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ID_DER_ASN1_DN, object);
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break;
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case PKCS7_SERIAL_NUMBER:
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info->serial = identification_create_from_encoding(
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ID_KEY_ID, object);
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break;
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case PKCS7_AUTH_ATTRIBUTES:
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*object.ptr = ASN1_SET;
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info->attributes = pkcs7_attributes_create_from_chunk(
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object, level+1);
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*object.ptr = ASN1_CONTEXT_C_0;
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break;
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case PKCS7_DIGEST_ALGORITHM:
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info->digest_alg = asn1_parse_algorithmIdentifier(object,
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level, NULL);
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break;
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case PKCS7_DIGEST_ENC_ALGORITHM:
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info->enc_alg = asn1_parse_algorithmIdentifier(object,
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level, NULL);
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break;
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case PKCS7_ENCRYPTED_DIGEST:
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info->encrypted_digest = chunk_clone(object);
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break;
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}
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}
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success = parser->success(parser);
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parser->destroy(parser);
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return success;
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}
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/**
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* See header.
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*/
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pkcs7_t *pkcs7_signed_data_load(chunk_t encoding, chunk_t content)
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{
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private_pkcs7_signed_data_t *this = create_empty();
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this->encoding = chunk_clone(encoding);
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if (!parse(this, content))
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{
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destroy(this);
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return NULL;
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}
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return &this->public;
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}
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/**
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* build a DER-encoded issuerAndSerialNumber object
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*/
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static chunk_t build_issuerAndSerialNumber(certificate_t *cert)
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{
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identification_t *issuer = cert->get_issuer(cert);
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chunk_t serial = chunk_empty;
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if (cert->get_type(cert) == CERT_X509)
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{
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x509_t *x509 = (x509_t*)cert;
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serial = x509->get_serial(x509);
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}
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return asn1_wrap(ASN1_SEQUENCE, "cm",
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issuer->get_encoding(issuer),
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asn1_integer("c", serial));
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}
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/**
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* Generate a new PKCS#7 signed-data container
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*/
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static bool generate(private_pkcs7_signed_data_t *this, private_key_t *key,
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certificate_t *cert, hash_algorithm_t alg,
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|
pkcs7_attributes_t *pkcs9)
|
|
{
|
|
chunk_t authenticatedAttributes = chunk_empty;
|
|
chunk_t encryptedDigest = chunk_empty;
|
|
chunk_t data, signerInfo, encoding = chunk_empty;
|
|
chunk_t messageDigest, signingTime, attributes;
|
|
signature_scheme_t scheme;
|
|
hasher_t *hasher;
|
|
time_t now;
|
|
int digest_oid;
|
|
|
|
digest_oid = hasher_algorithm_to_oid(alg);
|
|
scheme = signature_scheme_from_oid(digest_oid);
|
|
|
|
if (!this->content->get_data(this->content, &data))
|
|
{
|
|
return FALSE;
|
|
}
|
|
|
|
hasher = lib->crypto->create_hasher(lib->crypto, alg);
|
|
if (!hasher || !hasher->allocate_hash(hasher, data, &messageDigest))
|
|
{
|
|
DESTROY_IF(hasher);
|
|
DBG1(DBG_LIB, " hash algorithm %N not support",
|
|
hash_algorithm_names, alg);
|
|
free(data.ptr);
|
|
return FALSE;
|
|
}
|
|
hasher->destroy(hasher);
|
|
pkcs9->add_attribute(pkcs9,
|
|
OID_PKCS9_MESSAGE_DIGEST,
|
|
asn1_wrap(ASN1_OCTET_STRING, "m", messageDigest));
|
|
|
|
/* take the current time as signingTime */
|
|
now = time(NULL);
|
|
signingTime = asn1_from_time(&now, ASN1_UTCTIME);
|
|
pkcs9->add_attribute(pkcs9, OID_PKCS9_SIGNING_TIME, signingTime);
|
|
pkcs9->add_attribute(pkcs9, OID_PKCS9_CONTENT_TYPE,
|
|
asn1_build_known_oid(OID_PKCS7_DATA));
|
|
|
|
attributes = pkcs9->get_encoding(pkcs9);
|
|
|
|
if (!key->sign(key, scheme, attributes, &encryptedDigest))
|
|
{
|
|
free(data.ptr);
|
|
return FALSE;
|
|
}
|
|
authenticatedAttributes = chunk_clone(attributes);
|
|
*authenticatedAttributes.ptr = ASN1_CONTEXT_C_0;
|
|
|
|
free(data.ptr);
|
|
if (encryptedDigest.ptr)
|
|
{
|
|
encryptedDigest = asn1_wrap(ASN1_OCTET_STRING, "m", encryptedDigest);
|
|
}
|
|
signerInfo = asn1_wrap(ASN1_SEQUENCE, "cmmmmm",
|
|
ASN1_INTEGER_1,
|
|
build_issuerAndSerialNumber(cert),
|
|
asn1_algorithmIdentifier(digest_oid),
|
|
authenticatedAttributes,
|
|
asn1_algorithmIdentifier(OID_RSA_ENCRYPTION),
|
|
encryptedDigest);
|
|
|
|
if (!cert->get_encoding(cert, CERT_ASN1_DER, &encoding))
|
|
{
|
|
free(signerInfo.ptr);
|
|
return FALSE;
|
|
}
|
|
if (!this->content->get_encoding(this->content, &data))
|
|
{
|
|
free(encoding.ptr);
|
|
free(signerInfo.ptr);
|
|
return FALSE;
|
|
}
|
|
|
|
this->encoding = asn1_wrap(ASN1_SEQUENCE, "mm",
|
|
asn1_build_known_oid(OID_PKCS7_SIGNED_DATA),
|
|
asn1_wrap(ASN1_CONTEXT_C_0, "m",
|
|
asn1_wrap(ASN1_SEQUENCE, "cmmmm",
|
|
ASN1_INTEGER_1,
|
|
asn1_wrap(ASN1_SET, "m", asn1_algorithmIdentifier(digest_oid)),
|
|
data,
|
|
asn1_wrap(ASN1_CONTEXT_C_0, "m", encoding),
|
|
asn1_wrap(ASN1_SET, "m", signerInfo))));
|
|
|
|
|
|
pkcs9->destroy(pkcs9);
|
|
/* TODO: create signerInfos entry */
|
|
return TRUE;
|
|
}
|
|
|
|
/**
|
|
* See header.
|
|
*/
|
|
pkcs7_t *pkcs7_signed_data_gen(container_type_t type, va_list args)
|
|
{
|
|
private_pkcs7_signed_data_t *this;
|
|
chunk_t blob = chunk_empty;
|
|
hash_algorithm_t alg = HASH_SHA1;
|
|
private_key_t *key = NULL;
|
|
certificate_t *cert = NULL;
|
|
pkcs7_attributes_t *pkcs9;
|
|
chunk_t value;
|
|
int oid;
|
|
|
|
pkcs9 = pkcs7_attributes_create();
|
|
|
|
while (TRUE)
|
|
{
|
|
switch (va_arg(args, builder_part_t))
|
|
{
|
|
case BUILD_SIGNING_KEY:
|
|
key = va_arg(args, private_key_t*);
|
|
continue;
|
|
case BUILD_SIGNING_CERT:
|
|
cert = va_arg(args, certificate_t*);
|
|
continue;
|
|
case BUILD_DIGEST_ALG:
|
|
alg = va_arg(args, int);
|
|
continue;
|
|
case BUILD_BLOB:
|
|
blob = va_arg(args, chunk_t);
|
|
continue;
|
|
case BUILD_PKCS7_ATTRIBUTE:
|
|
oid = va_arg(args, int);
|
|
value = va_arg(args, chunk_t);
|
|
pkcs9->add_attribute(pkcs9, oid, chunk_clone(value));
|
|
continue;
|
|
case BUILD_END:
|
|
break;
|
|
default:
|
|
pkcs9->destroy(pkcs9);
|
|
return NULL;
|
|
}
|
|
break;
|
|
}
|
|
if (blob.len && key && cert)
|
|
{
|
|
this = create_empty();
|
|
|
|
this->creds->add_cert(this->creds, FALSE, cert->get_ref(cert));
|
|
this->content = lib->creds->create(lib->creds,
|
|
CRED_CONTAINER, CONTAINER_PKCS7_DATA,
|
|
BUILD_BLOB, blob, BUILD_END);
|
|
|
|
if (this->content && generate(this, key, cert, alg, pkcs9))
|
|
{
|
|
return &this->public;
|
|
}
|
|
pkcs9->destroy(pkcs9);
|
|
destroy(this);
|
|
}
|
|
else
|
|
{
|
|
pkcs9->destroy(pkcs9);
|
|
}
|
|
return NULL;
|
|
}
|