bd6fb0cd3e
...in include files. This is a mix of automatic rewriting in include files and manual fixups (mostly addressing loplugin:redundantfcast) in source files that include those. Change-Id: I1f3cc1e67b9cabd2e9d61a4d9e9a01e587ea35cc Reviewed-on: https://gerrit.libreoffice.org/c/core/+/158337 Tested-by: Jenkins Reviewed-by: Stephan Bergmann <sbergman@redhat.com>
408 lines
16 KiB
C++
408 lines
16 KiB
C++
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
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/*
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* This file is part of the LibreOffice project.
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*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/.
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*
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* This file incorporates work covered by the following license notice:
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*
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* Licensed to the Apache Software Foundation (ASF) under one or more
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* contributor license agreements. See the NOTICE file distributed
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* with this work for additional information regarding copyright
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* ownership. The ASF licenses this file to you under the Apache
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* License, Version 2.0 (the "License"); you may not use this file
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* except in compliance with the License. You may obtain a copy of
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* the License at http://www.apache.org/licenses/LICENSE-2.0 .
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*/
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#pragma once
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#include <svl/sigstruct.hxx>
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#include <com/sun/star/xml/crypto/sax/XSAXEventKeeperStatusChangeListener.hpp>
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#include <com/sun/star/xml/crypto/sax/XSignatureCreationResultListener.hpp>
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#include <com/sun/star/xml/crypto/sax/XSignatureVerifyResultListener.hpp>
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#include <rtl/ref.hxx>
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#include <cppuhelper/implbase.hxx>
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#include <vector>
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#include "UriBindingHelper.hxx"
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namespace com::sun::star::embed { class XStorage; }
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namespace com::sun::star::graphic { class XGraphic; }
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namespace com::sun::star::io { class XInputStream; }
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namespace com::sun::star::lang { class XInitialization; }
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namespace com::sun::star::uno { class XComponentContext; }
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namespace com::sun::star::xml::crypto { class XXMLSecurityContext; }
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namespace com::sun::star::xml::crypto { class XXMLSignature; }
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namespace com::sun::star::xml::crypto:: sax { class XReferenceResolvedListener; }
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namespace com::sun::star::xml::sax { class XDocumentHandler; }
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inline constexpr OUString NS_XMLDSIG = u"http://www.w3.org/2000/09/xmldsig#"_ustr;
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inline constexpr OUString NS_DC = u"http://purl.org/dc/elements/1.1/"_ustr;
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inline constexpr OUString NS_XD = u"http://uri.etsi.org/01903/v1.3.2#"_ustr;
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inline constexpr OUString NS_MDSSI = u"http://schemas.openxmlformats.org/package/2006/digital-signature"_ustr;
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inline constexpr OUString NS_LOEXT = u"urn:org:documentfoundation:names:experimental:office:xmlns:loext:1.0"_ustr;
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inline constexpr OUString ALGO_C14N = u"http://www.w3.org/TR/2001/REC-xml-c14n-20010315"_ustr;
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inline constexpr OUString ALGO_RSASHA1 = u"http://www.w3.org/2000/09/xmldsig#rsa-sha1"_ustr;
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inline constexpr OUString ALGO_RSASHA256 = u"http://www.w3.org/2001/04/xmldsig-more#rsa-sha256"_ustr;
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inline constexpr OUString ALGO_RSASHA512 = u"http://www.w3.org/2001/04/xmldsig-more#rsa-sha512"_ustr;
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inline constexpr OUString ALGO_ECDSASHA1 = u"http://www.w3.org/2001/04/xmldsig-more#ecdsa-sha1"_ustr;
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inline constexpr OUString ALGO_ECDSASHA256 = u"http://www.w3.org/2001/04/xmldsig-more#ecdsa-sha256"_ustr;
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inline constexpr OUString ALGO_ECDSASHA512 = u"http://www.w3.org/2001/04/xmldsig-more#ecdsa-sha512"_ustr;
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inline constexpr OUString ALGO_XMLDSIGSHA1 = u"http://www.w3.org/2000/09/xmldsig#sha1"_ustr;
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inline constexpr OUString ALGO_XMLDSIGSHA256 = u"http://www.w3.org/2001/04/xmlenc#sha256"_ustr;
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inline constexpr OUString ALGO_XMLDSIGSHA512 = u"http://www.w3.org/2001/04/xmlenc#sha512"_ustr;
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inline constexpr OUString ALGO_RELATIONSHIP = u"http://schemas.openxmlformats.org/package/2006/RelationshipTransform"_ustr;
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class XMLDocumentWrapper_XmlSecImpl;
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class SAXEventKeeperImpl;
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class XMLSignatureHelper;
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namespace svl::crypto { enum class SignatureMethodAlgorithm; }
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class InternalSignatureInformation
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{
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public:
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SignatureInformation signatureInfor;
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css::uno::Reference< css::xml::crypto::sax::XReferenceResolvedListener > xReferenceResolvedListener;
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::std::vector< sal_Int32 > vKeeperIds;
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InternalSignatureInformation(
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sal_Int32 nId,
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css::uno::Reference< css::xml::crypto::sax::XReferenceResolvedListener > const & xListener)
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:signatureInfor(nId)
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{
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xReferenceResolvedListener = xListener;
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}
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void addReference( SignatureReferenceType type, sal_Int32 digestID, const OUString& uri, sal_Int32 keeperId, const OUString& rType )
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{
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signatureInfor.vSignatureReferenceInfors.push_back(
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SignatureReferenceInformation(type, digestID, uri, rType));
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vKeeperIds.push_back( keeperId );
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}
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};
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class XSecController final : public cppu::WeakImplHelper
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<
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css::xml::crypto::sax::XSAXEventKeeperStatusChangeListener,
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css::xml::crypto::sax::XSignatureCreationResultListener,
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css::xml::crypto::sax::XSignatureVerifyResultListener
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>
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/****** XSecController.hxx/CLASS XSecController *******************************
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*
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* NAME
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* XSecController -- the xml security framework controller
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*
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* FUNCTION
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* Controls the whole xml security framework to create signatures or to
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* verify signatures.
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*
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******************************************************************************/
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{
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friend class XSecParser;
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friend class OOXMLSecParser;
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private:
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css::uno::Reference< css::uno::XComponentContext> mxCtx;
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/*
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* used to buffer SAX events
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*/
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rtl::Reference<XMLDocumentWrapper_XmlSecImpl> m_xXMLDocumentWrapper;
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/*
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* the SAX events keeper
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*/
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rtl::Reference<SAXEventKeeperImpl> m_xSAXEventKeeper;
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/*
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* the bridge component which creates/verifies signature
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*/
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css::uno::Reference< css::xml::crypto::XXMLSignature > m_xXMLSignature;
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/*
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* the Security Context
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*/
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css::uno::Reference< css::xml::crypto::XXMLSecurityContext > m_xSecurityContext;
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/*
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* the security id incrementer, in order to make any security id unique
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* to the SAXEventKeeper.
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* Because each XSecController has its own SAXEventKeeper, so this variable
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* is not necessary to be static.
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*/
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sal_Int32 m_nNextSecurityId;
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/*
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* Signature information
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*/
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std::vector< InternalSignatureInformation > m_vInternalSignatureInformations;
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/*
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* the previous node on the SAX chain.
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* The reason that use a Reference<XInterface> type variable
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* is that the previous components are different when exporting
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* and importing, and there is no other common interface they
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* can provided.
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*/
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css::uno::Reference< css::uno::XInterface > m_xPreviousNodeOnSAXChain;
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/*
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* whether the previous node can provide an XInitialize interface,
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* use this variable in order to typecast the XInterface to the
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* correct interface type.
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*/
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bool m_bIsPreviousNodeInitializable;
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/*
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* a flag representing whether the SAXEventKeeper is now on the
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* SAX chain.
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*/
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bool m_bIsSAXEventKeeperConnected;
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/*
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* a flag representing whether it is collecting some element,
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* which means that the SAXEventKeeper can't be chained off the
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* SAX chain.
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*/
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bool m_bIsCollectingElement;
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/*
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* a flag representing whether the SAX event stream is blocking,
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* which also means that the SAXEventKeeper can't be chained off
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* the SAX chain.
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*/
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bool m_bIsBlocking;
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/*
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* a flag representing the current status of security related
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* components.
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*/
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/*
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* status of security related components
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*/
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enum class InitializationState { UNINITIALIZED, INITIALIZED, FAILTOINITIALIZED } m_eStatusOfSecurityComponents;
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/*
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* a flag representing whether the SAXEventKeeper need to be
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* on the SAX chain all the time.
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* This flag is used to the situation when creating signature.
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*/
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bool m_bIsSAXEventKeeperSticky;
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/*
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* the XSecParser which is used to parse the signature stream
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*/
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css::uno::Reference<css::xml::sax::XDocumentHandler> m_xSecParser;
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/*
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* the caller assigned signature id for the next signature in the
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* signature stream
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*/
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sal_Int32 m_nReservedSignatureId;
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/*
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* representing whether to verify the current signature
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*/
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bool m_bVerifyCurrentSignature;
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/*
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* An xUriBinding is provided to map Uris to XInputStream interfaces.
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*/
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rtl::Reference<UriBindingHelper> m_xUriBinding;
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private:
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/*
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* Common methods
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*/
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void createXSecComponent( );
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int findSignatureInfor( sal_Int32 nSecurityId ) const;
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bool chainOn();
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void chainOff();
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void checkChainingStatus();
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void initializeSAXChain();
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css::uno::Reference< css::io::XInputStream > getObjectInputStream( const OUString& objectURL );
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//sal_Int32 getFastPropertyIndex(sal_Int32 nHandle) const;
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/*
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* For signature generation
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*/
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static OUString createId();
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css::uno::Reference< css::xml::crypto::sax::XReferenceResolvedListener > prepareSignatureToWrite(
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InternalSignatureInformation& signatureInfo,
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sal_Int32 nStorageFormat,
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bool bXAdESCompliantIfODF );
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/*
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* For signature verification
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*/
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void addSignature();
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/// Sets algorithm from <SignatureMethod Algorithm="...">.
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void setSignatureMethod(svl::crypto::SignatureMethodAlgorithm eAlgorithmID);
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void switchGpgSignature();
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bool haveReferenceForId(std::u16string_view rId) const;
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void addReference(
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const OUString& ouUri,
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sal_Int32 nDigestID,
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const OUString& ouType );
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void addStreamReference(
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const OUString& ouUri,
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bool isBinary,
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sal_Int32 nDigestID );
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void setReferenceCount() const;
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void setX509Data(
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std::vector<std::pair<OUString, OUString>> & rX509IssuerSerials,
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std::vector<OUString> const& rX509Certificates);
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void setX509CertDigest(
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OUString const& rCertDigest, sal_Int32 const nReferenceDigestID,
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std::u16string_view const& rX509IssuerName, std::u16string_view const& rX509SerialNumber);
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void setSignatureValue( OUString const & ouSignatureValue );
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void setDigestValue( sal_Int32 nDigestID, OUString const & ouDigestValue );
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void setGpgKeyID( OUString const & ouKeyID );
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void setGpgCertificate( OUString const & ouGpgCert );
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void setGpgOwner( OUString const & ouGpgOwner );
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void setDate(OUString const& rId, OUString const& ouDate);
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void setDescription(OUString const& rId, OUString const& rDescription);
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void setValidSignatureImage(std::u16string_view rValidSigImg);
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void setInvalidSignatureImage(std::u16string_view rInvalidSigImg);
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void setSignatureLineId(const OUString& rSignatureLineId);
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public:
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void setSignatureBytes(const css::uno::Sequence<sal_Int8>& rBytes);
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private:
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void setId( OUString const & ouId );
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css::uno::Reference< css::xml::crypto::sax::XReferenceResolvedListener > prepareSignatureToRead(
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sal_Int32 nSecurityId );
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public:
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explicit XSecController(css::uno::Reference<css::uno::XComponentContext> xCtx);
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virtual ~XSecController() override;
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sal_Int32 getNewSecurityId( );
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void startMission(const rtl::Reference<UriBindingHelper>& xUriBinding, const css::uno::Reference<css::xml::crypto::XXMLSecurityContext>& xSecurityContext);
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void setSAXChainConnector(const css::uno::Reference< css::lang::XInitialization >& xInitialization);
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void clearSAXChainConnector();
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void endMission();
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SignatureInformation getSignatureInformation( sal_Int32 nSecurityId ) const;
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SignatureInformations getSignatureInformations() const;
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/// only verify can figure out which X509Data is the signing certificate
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void UpdateSignatureInformation(sal_Int32 nSecurityId,
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std::vector<SignatureInformation::X509Data> && rDatas);
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static void exportSignature(
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const css::uno::Reference< css::xml::sax::XDocumentHandler >& xDocumentHandler,
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const SignatureInformation& signatureInfo,
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bool bXAdESCompliantIfODF );
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/*
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* For signature generation
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*/
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void signAStream( sal_Int32 securityId, const OUString& uri, bool isBinary, bool bXAdESCompliantIfODF);
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/** sets data that describes the certificate.
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It is absolutely necessary that the parameter ouX509IssuerName is set. It contains
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the base64 encoded certificate, which is DER encoded. The XMLSec needs it to find
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the private key. Although issuer name and certificate should be sufficient to identify
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the certificate the implementation in XMLSec is broken, both for Windows and mozilla.
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The reason is that they use functions to find the certificate which take as parameter
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the DER encoded ASN.1 issuer name. The issuer name is a DName, where most attributes
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are of type DirectoryName, which is a choice of 5 string types. This information is
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not contained in the issuer string and while it is converted to the ASN.1 name the
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conversion function must assume a particular type, which is often wrong. For example,
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the Windows function CertStrToName will use a T.61 string if the string does not contain
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special characters. So if the certificate uses simple characters but encodes the
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issuer attributes in Utf8, then CertStrToName will use T.61. The resulting DER encoded
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ASN.1 name now contains different bytes which indicate the string type. The functions
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for finding the certificate apparently use memcmp - hence they fail to find the
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certificate.
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*/
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void setX509Certificate(
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sal_Int32 nSecurityId,
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const OUString& ouX509IssuerName,
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const OUString& ouX509SerialNumber,
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const OUString& ouX509Cert,
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const OUString& ouX509CertDigest,
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svl::crypto::SignatureMethodAlgorithm eAlgorithmID);
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void addEncapsulatedX509Certificate(const OUString& rEncapsulatedX509Certificate);
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void setGpgCertificate(
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sal_Int32 nSecurityId,
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const OUString& ouCertDigest,
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const OUString& ouCert,
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const OUString& ouOwner);
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void setDate(
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sal_Int32 nSecurityId,
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const css::util::DateTime& rDateTime );
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void setDescription(sal_Int32 nSecurityId, const OUString& rDescription);
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void setSignatureLineId(sal_Int32 nSecurityId, const OUString& rSignatureLineId);
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void
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setSignatureLineValidGraphic(sal_Int32 nSecurityId,
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const css::uno::Reference<css::graphic::XGraphic>& xValidGraphic);
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void setSignatureLineInvalidGraphic(
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sal_Int32 nSecurityId, const css::uno::Reference<css::graphic::XGraphic>& xInvalidGraphic);
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bool WriteSignature(
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const css::uno::Reference< css::xml::sax::XDocumentHandler >& xDocumentHandler,
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bool bXAdESCompliantIfODF);
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/*
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* For signature verification
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*/
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void collectToVerify( std::u16string_view referenceId );
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void addSignature( sal_Int32 nSignatureId );
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css::uno::Reference< css::xml::sax::XDocumentHandler > const & createSignatureReader(XMLSignatureHelper& rXMLSignatureHelper, sal_Int32 nType = 0);
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void releaseSignatureReader();
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public:
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/* Interface methods */
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/*
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* XSAXEventKeeperStatusChangeListener
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*/
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virtual void SAL_CALL blockingStatusChanged( sal_Bool isBlocking ) override;
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virtual void SAL_CALL collectionStatusChanged(
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sal_Bool isInsideCollectedElement ) override;
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virtual void SAL_CALL bufferStatusChanged( sal_Bool isBufferEmpty ) override;
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/*
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* XSignatureCreationResultListener
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*/
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virtual void SAL_CALL signatureCreated( sal_Int32 securityId, css::xml::crypto::SecurityOperationStatus nResult ) override;
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/*
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* XSignatureVerifyResultListener
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*/
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virtual void SAL_CALL signatureVerified( sal_Int32 securityId, css::xml::crypto::SecurityOperationStatus nResult ) override;
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/// Writes XML elements inside a single OOXML signature's <Signature> element.
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bool WriteOOXMLSignature(const css::uno::Reference<css::embed::XStorage>& xRootStorage, const css::uno::Reference<css::xml::sax::XDocumentHandler>& xDocumentHandler);
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/// Exports an OOXML signature, called by WriteOOXMLSignature().
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void exportOOXMLSignature(const css::uno::Reference<css::embed::XStorage>& xRootStorage, const css::uno::Reference<css::xml::sax::XDocumentHandler>& xDocumentHandler, const SignatureInformation& rInformation);
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};
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/* vim:set shiftwidth=4 softtabstop=4 expandtab: */
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