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153 lines
4.4 KiB
C++
153 lines
4.4 KiB
C++
// Copyright 2013 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#ifndef NET_CERT_SIGNED_CERTIFICATE_TIMESTAMP_H_
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#define NET_CERT_SIGNED_CERTIFICATE_TIMESTAMP_H_
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#include <string>
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#include <vector>
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#include "base/macros.h"
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#include "base/memory/ref_counted.h"
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#include "base/time/time.h"
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#include "net/base/hash_value.h"
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#include "net/base/net_export.h"
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namespace base {
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class Pickle;
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class PickleIterator;
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}
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namespace net {
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// Structures related to Certificate Transparency (RFC6962).
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namespace ct {
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// Contains the data necessary to reconstruct the signed_entry of a
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// SignedCertificateTimestamp, from RFC 6962, Section 3.2.
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//
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// All the data necessary to validate a SignedCertificateTimestamp is present
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// within the SignedCertificateTimestamp, except for the signature_type,
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// entry_type, and the actual entry. The only supported signature_type at
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// present is certificate_timestamp. The entry_type is implicit from the
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// context in which it is received (those in the X.509 extension are
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// precert_entry, all others are x509_entry). The signed_entry itself is
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// reconstructed from the certificate being verified, or from the corresponding
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// precertificate.
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//
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// The SignedEntryData contains this reconstructed data, and can be used to
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// either generate or verify the signature in SCTs.
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struct NET_EXPORT SignedEntryData {
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// LogEntryType enum in RFC 6962, Section 3.1
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enum Type {
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LOG_ENTRY_TYPE_X509 = 0,
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LOG_ENTRY_TYPE_PRECERT = 1
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};
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SignedEntryData();
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~SignedEntryData();
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void Reset();
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Type type;
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// Set if type == LOG_ENTRY_TYPE_X509
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std::string leaf_certificate;
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// Set if type == LOG_ENTRY_TYPE_PRECERT
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SHA256HashValue issuer_key_hash;
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std::string tbs_certificate;
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};
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// Helper structure to represent Digitally Signed data, as described in
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// Sections 4.7 and 7.4.1.4.1 of RFC 5246.
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struct NET_EXPORT_PRIVATE DigitallySigned {
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enum HashAlgorithm {
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HASH_ALGO_NONE = 0,
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HASH_ALGO_MD5 = 1,
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HASH_ALGO_SHA1 = 2,
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HASH_ALGO_SHA224 = 3,
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HASH_ALGO_SHA256 = 4,
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HASH_ALGO_SHA384 = 5,
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HASH_ALGO_SHA512 = 6,
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};
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enum SignatureAlgorithm {
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SIG_ALGO_ANONYMOUS = 0,
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SIG_ALGO_RSA = 1,
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SIG_ALGO_DSA = 2,
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SIG_ALGO_ECDSA = 3
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};
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DigitallySigned();
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~DigitallySigned();
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// Returns true if |other_hash_algorithm| and |other_signature_algorithm|
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// match this DigitallySigned hash and signature algorithms.
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bool SignatureParametersMatch(
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HashAlgorithm other_hash_algorithm,
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SignatureAlgorithm other_signature_algorithm) const;
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HashAlgorithm hash_algorithm;
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SignatureAlgorithm signature_algorithm;
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// 'signature' field.
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std::string signature_data;
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};
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// SignedCertificateTimestamp struct in RFC 6962, Section 3.2.
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struct NET_EXPORT SignedCertificateTimestamp
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: public base::RefCountedThreadSafe<SignedCertificateTimestamp> {
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// Predicate functor used in maps when SignedCertificateTimestamp is used as
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// the key.
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struct NET_EXPORT LessThan {
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bool operator()(const scoped_refptr<SignedCertificateTimestamp>& lhs,
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const scoped_refptr<SignedCertificateTimestamp>& rhs) const;
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};
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// Version enum in RFC 6962, Section 3.2.
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enum Version {
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V1 = 0,
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};
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// Source of the SCT - supplementary, not defined in CT RFC.
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// Note: The numeric values are used within histograms and should not change
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// or be re-assigned.
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enum Origin {
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SCT_EMBEDDED = 0,
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SCT_FROM_TLS_EXTENSION = 1,
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SCT_FROM_OCSP_RESPONSE = 2,
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SCT_ORIGIN_MAX,
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};
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SignedCertificateTimestamp();
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void Persist(base::Pickle* pickle);
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static scoped_refptr<SignedCertificateTimestamp> CreateFromPickle(
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base::PickleIterator* iter);
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Version version;
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std::string log_id;
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base::Time timestamp;
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std::string extensions;
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DigitallySigned signature;
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Origin origin;
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// The log description is not one of the SCT fields, but a user-readable
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// name defined alongside the log key. It should not participate
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// in equality checks as the log's description could change while
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// the SCT would be the same.
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std::string log_description;
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private:
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friend class base::RefCountedThreadSafe<SignedCertificateTimestamp>;
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~SignedCertificateTimestamp();
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DISALLOW_COPY_AND_ASSIGN(SignedCertificateTimestamp);
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};
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} // namespace ct
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} // namespace net
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#endif // NET_CERT_SIGNED_CERTIFICATE_TIMESTAMP_H_
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