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840 lines
32 KiB
840 lines
32 KiB
/**
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* cryptplugwrapper.h
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*
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* Copyright (c) 2001 Karl-Heinz Zimmer, Klaraelvdalens Datakonsult AB
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*
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* This CRYPTPLUG wrapper interface is based on cryptplug.h by
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* Karl-Heinz Zimmer which is based on 'The Aegypten Plugin API' as
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* specified by Matthias Kalle Dalheimer, Klaraelvdalens Datakonsult AB,
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* see file mua-integration.sgml located on Aegypten CVS:
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* http://www.gnupg.org/aegypten/development.en.html
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*
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* purpose: Wrap up all Aegypten Plugin API functions in one C++ class
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* for usage by KDE programs, e.g. KMail (or KMime, resp.)
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; version 2 of the License.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*/
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#ifndef cryptplugwrapper_h
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#define cryptplugwrapper_h
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#include "cryptplug.h"
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#ifndef LIBKLEOPATRA_NO_COMPAT
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/*
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*
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* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
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* *
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* This file's source comments are optimized for processing by Doxygen. *
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* *
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* To obtain best results please get an updated version of Doxygen, *
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* for sources and binaries goto http://www.doxygen.org/index.html *
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* *
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* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
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*
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*/
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#include "kleo/cryptobackend.h"
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#include <tqdatetime.h>
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#include <tqvaluelist.h>
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#include <tqpair.h>
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#include <tqstringlist.h>
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#include <tqstring.h>
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#include <kdemacros.h>
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class TDEConfigBase;
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class QGpgMECryptoConfig;
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namespace GpgME {
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class ImportResult;
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class KeyGenerationResult;
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}
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namespace Kleo {
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class KeyListJob;
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class EncryptJob;
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class DecryptJob;
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class SignJob;
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class VerifyDetachedJob;
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class VerifyOpaqueJob;
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class KeyGenerationJob;
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class ImportJob;
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class ExportJob;
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class DownloadJob;
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class DeleteJob;
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class SignEncryptJob;
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class DecryptVerifyJob;
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class CryptoConfig;
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class RefreshKeysJob;
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class SpecialJob;
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}
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/*! \file cryptplugwrapper.h
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\brief C++ wrapper for the CRYPTPLUG library API.
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This CRYPTPLUG wrapper interface is based on cryptplug.h by
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Karl-Heinz Zimmer which is based on 'The Aegypten Plugin API' as
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specified by Matthias Kalle Dalheimer, Klaraelvdalens Datakonsult AB,
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see file mua-integration.sgml located on Aegypten CVS:
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http://www.gnupg.org/aegypten/development.en.html
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purpose: Wrap up all Aegypten Plugin API functions in one C++ class
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for usage by KDE programs, e.g. KMail (or KMime, resp.)
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CRYPTPLUG is an independent cryptography plug-in API
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developed for Sphinx-enabeling KMail and Mutt.
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CRYPTPLUG was designed for the Aegypten project, but it may
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be used by 3rd party developers as well to design pluggable
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crypto backends for the above mentioned MUAs.
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\note All string parameters appearing in this API are to be
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interpreted as UTF-8 encoded.
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\see cryptplugwrapper.cpp
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*/
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/*! \defgroup groupAdmin Constructor, destructor and setting of 'active' flag
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The functions in this section are used for general administration of
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this CRYPTPLUG wrapper class and for maintaining a separate \c active flag
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for environments using more than one CRYPTPLUG library simultaneously.
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*/
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/*! \defgroup groupGeneral Loading and Unloading the Plugin, General Functionality
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The functions in this section are used for loading and
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unloading the respective CRYPTPLUG library, for (re)setting
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it's internal data structures and for retrieving information
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on the implementation state of all functions covered by the CRYPTPLUG API.
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*/
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/*! \defgroup groupDisplay Graphical Display Functionality
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The functions in this section return stationery that the
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MUAs can use in order to display security functionality
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graphically. This can be toolbar icons, shortcuts, tooltips,
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etc. Not all MUAs will use all this functionality.
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*/
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/*! \defgroup groupConfig Configuration Support
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The functions in this section provide the necessary
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functionality to configure the security functionality as well
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as to query configuration settings. Since all configuration
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settings will not be saved with the plugin, but rather with
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the MUA, there are also functions to set configuration
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settings programmatically; these will be used on startup of
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the plugin when the MUA transfers the configuration values it
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has read into the plugin. Usually, the functions to query and
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set the configuration values are not needed for anything but
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saving to and restoring from configuration files.
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*/
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/*! \defgroup groupConfigSign Signature Configuration
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\ingroup groupConfig
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The functions in this section provide the functionality
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to configure signature handling and set and query the
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signature configuration.
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*/
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/*! \defgroup groupConfigCrypt Encryption Configuration
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\ingroup groupConfig
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The functions in this section provide the functionality
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to configure encryption handling and set and query the
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encryption configuration.
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\note Whenever the term <b> encryption</b> is used here,
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it is supposed to mean both encryption and decryption,
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unless otherwise specified.
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*/
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/*! \defgroup groupConfigDir Directory Service Configuration
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\ingroup groupConfig
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This section contains messages for configuring the
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directory service.
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*/
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/*! \defgroup groupCertHand Certificate Handling
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The following methods are used to maintain and query certificates.
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*/
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/*! \defgroup groupSignCryptAct Signing and Encrypting Actions
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This section describes methods and structures
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used for signing and/or encrypting your mails.
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*/
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/*! \defgroup groupSignAct Signature Actions
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\ingroup groupSignCryptAct
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This section describes methods that are used for working
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with signatures.
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*/
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/*! \defgroup groupCryptAct Encryption and Decryption
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\ingroup groupSignCryptAct
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The following methods are used to encrypt and decrypt
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email messages.
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*/
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/*! \defgroup groupCertAct Certificate Handling Actions
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The functions in this section provide local certificate management.
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*/
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/*! \defgroup groupCRLAct CRL Handling Actions
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This section describes functions for managing CRLs.
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*/
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/*! \defgroup groupAdUsoInterno Important functions to be used by plugin implementors ONLY.
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This section describes functions that have to be used by
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plugin implementors but should not be used by plugin users
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directly.
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If you are not planning to write your own cryptography
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plugin <b>you should ignore this</b> section!
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*/
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class CryptPlugWrapper;
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/*! \ingroup groupSignCryptAct
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\brief This class provides C++ access to the StructuringInfo helper
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struct that is specified in cryptplug.h to hold information
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returned by signing and by encrypting functions.
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Use this information to compose a MIME object containing signed
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and/or encrypted content (or to build a text frame around your
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flat non-MIME message body, resp.)
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\note This class is different from the respective cryptplug.h class
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because this one takes care for freeing the char** members' memory
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automatically. You must <b>not</b> call the \c free function for
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any of it's members - just ignore the advise given in the
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cryptplug.h documentation!
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<b>If</b> value returned in \c makeMimeObject is <b>TRUE</b> the
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text strings returned in \c contentTypeMain and \c contentDispMain
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and \c contentTEncMain (and, if required, \c content[..]Version and
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\c bodyTextVersion and \c content[..]Sig) should be used to compose
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a respective MIME object.<br>
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If <b>FALSE</b> the texts returned in \c flatTextPrefix and
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\c flatTextSeparator and \c flatTextPostfix are to be used instead.<br>
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Always <b>either</b> the \c content[..] and \c bodyTextVersion
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parameters <b>or</b> the \c flatText[..] parameters are holding
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valid data - never both of them may be used simultaneously
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as plugins will just ignore the parameters not matching their
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\c makeMimeObject setting.
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When creating your MIME object please observe these common rules:
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\li Parameters named \c contentType[..] and \c contentDisp[..] and
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\c contentTEnc[..] will return the values for the respective MIME
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headers 'Content-Type' and 'Content-Disposition' and
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'Content-Transfer-Encoding'. The following applies to these parameters:
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\li The relevant MIME part may <b>only</b> be created if the respective
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\c contentType[..] parameter is holding a non-zero-length string. If the
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\c contentType[..] parameter value is invalid or holding an empty string
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the respective \c contentDisp[..] and \c contentTEnc[..] parameters
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should be ignored.
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\li If the respective \c contentDisp[..] or \c contentTEnc[..] parameter
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is NULL or holding a zero-length string it is up to you whether you want
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to add the relevant MIME header yourself, but since it in in the
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responsibility of the plugin implementors to provide you with all
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necessary 'Content-[..]' header information you should <b>not need</b>
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to define them if they are not returned by the signing or encrypting
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function - otherwise this may be considered as a bug in the plugin and
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you could report the missing MIME header information to the address
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returned by the \c bugURL() function.
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If \c makeMultiMime returns FALSE the \c contentTypeMain returned must
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not be altered but used to specify a single part mime object holding the
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code bloc, e.g. this is used for 'enveloped-data' single part MIME
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objects. In this case you should ignore both the \c content[..]Version
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and \c content[..]Code parameters.
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If \c makeMultiMime returns TRUE also the following rules apply:
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\li If \c includeCleartext is TRUE you should include the cleartext
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as first part of our multipart MIME object, typically this is TRUE
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when signing mails but FALSE when encrypting.
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\li The \c contentTypeMain returned typically starts with
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"multipart/" while providing a "protocol" and a "micalg" parameter: just
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add an appropriate \c "; boundary=[your \c boundary \c string]" to get
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the complete Content-Type value to be used for the MIME object embedding
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both the signed part and the signature part (or - in case of
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encrypting - the version part and the code part, resp.).
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\li If \c contentTypeVersion is holding a non-zero-length string an
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additional MIME part must added immediately before the code part, this
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version part's MIME headers must have the unaltered values of
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\c contentTypeVersion and (if they are holding non-zero-length strings)
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\c contentDispVersion and \c contentTEncVersion, the unaltered contents
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of \c bodyTextVersion must be it's body.
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\li The value returned in \c contentTypeCode is specifying the complete
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Content-Type to be used for this multipart MIME object's signature part
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(or - in case of encrypting - for the code part following after the
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version part, resp.), you should not add/change/remove anything here
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but just use it's unaltered value for specifying the Content-Type header
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of the respective MIME part.
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\li The same applies to the \c contentDispCode value: just use it's
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unaltered value to specify the Content-Disposition header entry of
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the respective MIME part.
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\li The same applies to the \c contentTEncCode value: just use it's
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unaltered value to specify the Content-Transfer-Encoding header of
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the respective MIME part.
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<b>If</b> value returned in \c makeMimeObject is <b>FALSE</b> the
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text strings returned in \c flatTextPrefix and \c flatTextPostfix
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should be used to build a frame around the cleartext and the code
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bloc holding the signature (or - in case of encrypting - the encoded
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data bloc, resp.).<br>
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If \c includeCleartext is TRUE this frame should also include the
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cleartext as first bloc, this bloc should be divided from the code bloc
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by the contents of \c flatTextSeparator - typically this is used for
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signing but not when encrypting.<br>
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If \c includeCleartext is FALSE you should ignore both the cleartext
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and the \c flatTextSeparator parameter.
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<b>How to use StructuringInfoWrapper data in your program:</b>
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\li To compose a signed message please act as described below.
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\li For constructing an encrypted message just replace the
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\c signMessage() call by the respective \c encryptMessage() call
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and then proceed exactly the same way.
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\li In any case make <b>sure</b> to free your \c ciphertext when
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you are done with processing the data returned by the signing
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(or encrypting, resp.) function.
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\verbatim
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char* ciphertext;
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StructuringInfoWrapper structInf;
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if( ! signMessage( cleartext, &ciphertext, certificate,
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structInf ) ) {
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myErrorDialog( "Error: could not sign the message!" );
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} else {
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if( structInf.data.makeMimeObject ) {
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// Build the main MIME object.
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// This is done by
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// using the header values returned in
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// structInf.data.contentTypeMain and in
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// structInf.data.contentDispMain and in
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// structInf.data.contentTEncMain.
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..
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if( ! structInf.data.makeMultiMime ) {
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// Build the main MIME object's body.
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// This is done by
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// using the code bloc returned in
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// ciphertext.
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..
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} else {
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// Build the encapsulated MIME parts.
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if( structInf.data.includeCleartext ) {
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// Build a MIME part holding the cleartext.
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// This is done by
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// using the original cleartext's headers and by
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// taking it's original body text.
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..
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}
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if( structInf.data.contentTypeVersion
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&& 0 < strlen( structInf.data.contentTypeVersion ) ) {
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// Build a MIME part holding the version information.
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// This is done by
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// using the header values returned in
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// structInf.data.contentTypeVersion and
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// structInf.data.contentDispVersion and
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// structInf.data.contentTEncVersion and by
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// taking the body contents returned in
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// structInf.data.bodyTextVersion.
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..
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}
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if( structInf.data.contentTypeCode
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&& 0 < strlen( structInf.data.contentTypeCode ) ) {
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// Build a MIME part holding the code information.
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// This is done by
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// using the header values returned in
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// structInf.data.contentTypeCode and
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// structInf.data.contentDispCode and
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// structInf.data.contentTEncCode and by
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// taking the body contents returned in
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// ciphertext.
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..
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} else {
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// Plugin error!
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myErrorDialog( "Error: Cryptography plugin returned a main"
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"Content-Type=Multipart/.. but did not "
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"specify the code bloc's Content-Type header."
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"\nYou may report this bug:"
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"\n" + cryptplug.bugURL() );
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}
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}
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} else {
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// Build a plain message body
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// based on the values returned in structInf.
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// Note: We do _not_ insert line breaks between the parts since
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// it is the plugin job to provide us with ready-to-use
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// texts containing all necessary line breaks.
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strcpy( myMessageBody, structInf.data.plainTextPrefix );
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if( structInf.data.includeCleartext ) {
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strcat( myMessageBody, cleartext );
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strcat( myMessageBody, structInf.data.plainTextSeparator );
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}
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strcat( myMessageBody, *ciphertext );
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strcat( myMessageBody, structInf.data.plainTextPostfix );
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}
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// free the memory that was allocated
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// for the ciphertext
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free( ciphertext );
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}
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\endverbatim
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\see signMessage, encryptMessage, encryptAndSignMessage
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*/
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class StructuringInfoWrapper {
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public:
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StructuringInfoWrapper( CryptPlugWrapper* wrapper );
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~StructuringInfoWrapper();
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void reset();
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CryptPlug::StructuringInfo data;
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private:
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void initMe();
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void freeMe();
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bool _initDone;
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CryptPlugWrapper* _wrapper;
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};
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|
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/*!
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\brief This class provides C++ access to the CRYPTPLUG API.
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|
*/
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|
class KDE_EXPORT CryptPlugWrapper : public Kleo::CryptoBackend::Protocol {
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public:
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static TQString errorIdToText( int errId, bool & isPassphraseError );
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|
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/*! \ingroup groupGeneral
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\brief Current initialization state.
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This flag holding status of previous call of initialize function.
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If initialize was not called before return value will be
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\c CryptPlugInit_undef.
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\sa iniStatus, initialize
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*/
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typedef enum {
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IniStatus_undef = 0,
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IniStatus_Ok = 1,
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IniStatus_NoLibName = 2,
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IniStatus_LoadError = 0x1000,
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IniStatus_InitError = 0x2000
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} IniStatus;
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/*! \ingroup groupSignAct
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\brief Flags used to compose the SigStatusFlags value.
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This status flags are used to compose the SigStatusFlags value
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returned in \c SignatureMetaDataExtendedInfo after trying to
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verify a signed message part's signature status.
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The normal flags may <b>not</b> be used together with the
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special SigStatus_NUMERICAL_CODE flag. When finding the special
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SigStatus_NUMERICAL_CODE flag in a SigStatusFlags value you
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can obtain the respective error code number by substracting
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the SigStatusFlags value by SigStatus_NUMERICAL_CODE: this is
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used to transport special status information NOT matching
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any of the normal predefined status codes.
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\note to PlugIn developers: Implementations of the CryptPlug API
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should try to express their signature states by bit-wise OR'ing
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the normal SigStatusFlags values. Using the SigStatus_NUMERICAL_CODE
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flag should only be used as for exceptional situations where no
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other flag(s) could be used. By using the normal status flags your
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PlugIn's users will be told an understandable description of the
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status - when using (SigStatus_NUMERICAL_CODE + internalCode) they
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will only be shown the respective code number and have to look
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into your PlugIn's manual to learn about it's meaning...
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*/
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enum {
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SigStatus_UNKNOWN = 0x0000,
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SigStatus_VALID = SigStat_VALID,
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SigStatus_GREEN = SigStat_GREEN,
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SigStatus_RED = SigStat_RED,
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SigStatus_KEY_REVOKED = SigStat_KEY_REVOKED,
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SigStatus_KEY_EXPIRED = SigStat_KEY_EXPIRED,
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SigStatus_SIG_EXPIRED = SigStat_SIG_EXPIRED,
|
|
SigStatus_KEY_MISSING = SigStat_KEY_MISSING,
|
|
SigStatus_CRL_MISSING = SigStat_CRL_MISSING,
|
|
SigStatus_CRL_TOO_OLD = SigStat_CRL_TOO_OLD,
|
|
SigStatus_BAD_POLICY = SigStat_BAD_POLICY,
|
|
SigStatus_SYS_ERROR = SigStat_SYS_ERROR,
|
|
|
|
SigStatus_NUMERICAL_CODE = 0x8000 /* An other error occurred. */
|
|
};
|
|
typedef unsigned long SigStatusFlags;
|
|
|
|
|
|
enum {
|
|
CerStatus_EXPIRES_NEVER = CRYPTPLUG_CERT_DOES_NEVER_EXPIRE
|
|
};
|
|
|
|
|
|
/*! \ingroup groupAdmin
|
|
\brief Constructor of CRYPTPLUG wrapper class.
|
|
|
|
This constructor does <b>not</b> call the initialize() method
|
|
but just stores some information for later use.
|
|
|
|
\note Since more than one crypto plug-in might be specified (using
|
|
multiple instances of the warpper class) it is necessary to
|
|
set \c active at least one them. Only wrappers that have been
|
|
activated may be initialized or configured or used to perform
|
|
crypto actions.
|
|
|
|
\param name The external name that is visible in lists, messages,
|
|
etc.
|
|
\param libName Complete path+name of CRYPTPLUG library that is to
|
|
be used by this instance of CryptPlugWrapper.
|
|
\param update the URL from where updates can be downloaded
|
|
\param active Specify whether the relative library is to be used
|
|
or not.
|
|
|
|
\sa ~CryptPlugWrapper, setActive, active, initialize, deinitialize
|
|
\sa iniStatus
|
|
*/
|
|
CryptPlugWrapper( const TQString& name=TQString(),
|
|
const TQString& libName=TQString(),
|
|
const TQString& update=TQString(),
|
|
bool active = false );
|
|
|
|
/*! \ingroup groupAdmin
|
|
\brief Destructor of CRYPTPLUG wrapper class.
|
|
|
|
This destructor <b>does</b> call the deinitialize() method in case
|
|
this was not done by explicitly calling it before.
|
|
|
|
\sa deinitialize, initialize, CryptPlugWrapper(), setActive, active
|
|
\sa
|
|
*/
|
|
~CryptPlugWrapper();
|
|
|
|
TQString protocol() const;
|
|
|
|
TQString name() const {
|
|
return protocol();
|
|
}
|
|
|
|
/*! \ingroup groupAdmin
|
|
\brief Set this CRYPTPLUG wrapper's internal \c active flag.
|
|
|
|
Since more than one crypto plug-in might be specified (using
|
|
multiple instances of the warpper class) it is necessary to
|
|
set \c active at least one them. Only wrappers that have been
|
|
activated may be initialized or configured or used to perform
|
|
crypto actions.
|
|
|
|
This flag may be set in the constructor or by calling setActive().
|
|
|
|
\note Deactivating does <b>not</b> mean resetting the internal
|
|
structures - if just prevents the normal functions from
|
|
being called erroneously. When deactivated only the following
|
|
functions are operational: constructor , destructor ,
|
|
setActive , active, setLibName , libName , iniStatus;
|
|
calling other functions will be ignored and their return
|
|
values will be undefined.
|
|
|
|
\param active Specify whether the relative library is to be used
|
|
or not.
|
|
|
|
\sa active, CryptPlugWrapper(), ~CryptPlugWrapper
|
|
\sa deinitialize, initialize, iniStatus
|
|
*/
|
|
void setActive( bool active );
|
|
|
|
/*! \ingroup groupAdmin
|
|
\brief Returns this CRYPTPLUG wrapper's internal \c active flag.
|
|
|
|
\return whether the relative library is to be used or not.
|
|
|
|
\sa setActive
|
|
*/
|
|
bool active() const;
|
|
|
|
|
|
/*! \ingroup groupAdmin
|
|
\brief Set the CRYPTPLUG library name.
|
|
|
|
Complete path+name of CRYPTPLUG library that is to
|
|
be used by this instance of CryptPlugWrapper.
|
|
|
|
This name may be set in the constructor or by calling setLibName().
|
|
|
|
\note Setting/changing the library name may only be done when
|
|
the iniStatus() is <b>not</b> \c IniStatus_Ok.
|
|
If you want to change the name of the library after
|
|
successfully having called initialize() please make
|
|
sure to unload it by calling the deinitialize() function.
|
|
|
|
\param libName libName Complete path+name of CRYPTPLUG library
|
|
that is to be used by this CryptPlugWrapper.
|
|
|
|
\return whether the library name could be changed; library name
|
|
can only be changed when library is not initialized - see
|
|
above 'note'.
|
|
|
|
\sa libName, CryptPlugWrapper(), ~CryptPlugWrapper
|
|
\sa deinitialize, initialize, iniStatus
|
|
*/
|
|
bool setLibName( const TQString& libName );
|
|
|
|
/*! \ingroup groupAdmin
|
|
\brief Returns the CRYPTPLUG library name.
|
|
|
|
\return the complete path+name of CRYPTPLUG library that is to
|
|
be used by this instance of CryptPlugWrapper.
|
|
|
|
\sa setLibName
|
|
*/
|
|
TQString libName() const;
|
|
|
|
|
|
/*! \ingroup groupAdmin
|
|
\brief Specifies the external name that is visible in lists,
|
|
messages, etc.
|
|
*/
|
|
void setDisplayName( const TQString& name );
|
|
|
|
|
|
/*! \ingroup groupAdmin
|
|
\brief Returns the external name.
|
|
\return the external name used for display purposes
|
|
*/
|
|
TQString displayName() const;
|
|
|
|
private:
|
|
/*! \ingroup groupGeneral
|
|
\brief This function does two things: (a) load the lib and (b) set up all internal structures.
|
|
|
|
The method tries to load the CRYPTPLUG library specified
|
|
in the constructor and returns \c true if the both <b>loading
|
|
and initializing</b> the internal data structures was successful
|
|
and \c false otherwise. Before this function is called,
|
|
no other plugin functions should be called; the behavior is
|
|
undefined in this case, this rule does not apply to the functions
|
|
\c setActive() and \c setLibName().
|
|
|
|
\param iniStatus will receive the resulting IniStatus if not NULL
|
|
\param errorMsg will receive the system error message if not NULL
|
|
|
|
\sa iniStatus, deinitialize, CryptPlugWrapper(), ~CryptPlugWrapper
|
|
\sa setActive, active
|
|
*/
|
|
bool initialize( IniStatus* iniStatus, TQString* errorMsg );
|
|
|
|
public:
|
|
/*! \ingroup groupGeneral
|
|
\brief This function unloads the lib and frees all internal structures.
|
|
|
|
After this function has been called, no other plugin functions
|
|
should be called; the behavior is undefined in this case.
|
|
|
|
\note Deinitializing sets the internal iniStatus value back
|
|
to \c IniStatus_undef.
|
|
|
|
\sa iniStatus, initialize, CryptPlugWrapper, ~CryptPlugWrapper
|
|
\sa setActive, active
|
|
*/
|
|
void deinitialize();
|
|
|
|
/*! \ingroup groupGeneral
|
|
\brief Returns this CRYPTPLUG wrapper's initialization state.
|
|
|
|
\param errorMsg receives the last system error message, this value
|
|
should be ignored if IniStatus value equals \c IniStatus_Ok.
|
|
|
|
\return whether the relative library was loaded and initialized
|
|
correctly
|
|
|
|
\sa initialize, deinitialize, CryptPlugWrapper(), ~CryptPlugWrapper
|
|
\sa setActive, active
|
|
*/
|
|
IniStatus iniStatus( TQString* errorMsg ) const;
|
|
|
|
|
|
/*! \ingroup groupGeneral
|
|
\brief This function returns \c true if the
|
|
specified feature is available in the plugin, and
|
|
\c false otherwise.
|
|
|
|
Not all plugins will support all features; a complete Sphinx
|
|
implementation will support all features contained in the enum,
|
|
however.
|
|
|
|
\note In case this function cannot be executed the system's error
|
|
message may be retrieved by calling iniStatus( TQString* ).
|
|
|
|
\return whether the relative feature is implemented or not
|
|
*/
|
|
bool hasFeature( ::Feature );
|
|
|
|
|
|
/* \ingroup groupSignAct
|
|
* Frees the members of a signature meta data struct, but not the
|
|
* signature meta data struct itself as this could be allocated on
|
|
* the stack.
|
|
*/
|
|
void freeSignatureMetaData( CryptPlug::SignatureMetaData* );
|
|
|
|
/*! \ingroup groupSignAct
|
|
\brief Checks whether the signature of a message is
|
|
valid.
|
|
|
|
\c cleartext must never be 0 but be a valid pointer.
|
|
|
|
If \c *cleartext > 0 then **cleartext specifies the message text
|
|
that was signed and \c signaturetext is the signature itself.
|
|
|
|
If \c *cleartext == 0 is an empty string then \c signaturetext is
|
|
supposed to contain an opaque signed message part. After checking the
|
|
data and verifying the signature the cleartext of the message will be
|
|
returned in \c cleartext. The user must free the respective memory
|
|
occupied by *cleartext.
|
|
|
|
Depending on the configuration, MUAs might not need to use this.
|
|
If \c sigmeta is non-null, the
|
|
\c SignatureMetaData object pointed to will
|
|
contain meta information about the signature after the
|
|
function call.
|
|
*/
|
|
bool checkMessageSignature( char** cleartext,
|
|
const char* signaturetext,
|
|
bool signatureIsBinary,
|
|
int signatureLen,
|
|
CryptPlug::SignatureMetaData* sigmeta );
|
|
|
|
/*! \ingroup groupCryptAct
|
|
\brief Tries to decrypt an email message
|
|
\c ciphertext and returns the decrypted
|
|
message in \c cleartext.
|
|
|
|
The \c certificate is used for decryption. If
|
|
the message could be decrypted, the function returns
|
|
\c true, otherwise
|
|
\c false.
|
|
*/
|
|
bool decryptMessage( const char* ciphertext,
|
|
bool cipherIsBinary,
|
|
int cipherLen,
|
|
char** cleartext,
|
|
const char* certificate,
|
|
int* errId,
|
|
char** errTxt );
|
|
|
|
/*! \ingroup groupCryptAct
|
|
\brief Combines the functionality of
|
|
\c checkMessageSignature() and
|
|
\c decryptMessage().
|
|
|
|
If \c certificate is \c NULL,
|
|
the default certificate will be used. If
|
|
\c sigmeta is non-null, the
|
|
\c SignatureMetaData object pointed to will
|
|
contain meta information about the signature after the
|
|
function call.
|
|
*/
|
|
bool decryptAndCheckMessage( const char* ciphertext,
|
|
bool cipherIsBinary,
|
|
int cipherLen,
|
|
char** cleartext,
|
|
const char* certificate,
|
|
bool* signatureFound,
|
|
CryptPlug::SignatureMetaData* sigmeta,
|
|
int* errId,
|
|
char** errTxt );
|
|
|
|
Kleo::KeyListJob * keyListJob( bool remote=false, bool includeSigs=false, bool validate=true ) const;
|
|
Kleo::EncryptJob * encryptJob( bool armor=false, bool textmode=false ) const;
|
|
Kleo::DecryptJob * decryptJob() const;
|
|
Kleo::SignJob * signJob( bool armor=false, bool textMode=false ) const;
|
|
Kleo::VerifyDetachedJob * verifyDetachedJob( bool textmode=false) const;
|
|
Kleo::VerifyOpaqueJob * verifyOpaqueJob( bool textmode=false ) const;
|
|
Kleo::KeyGenerationJob * keyGenerationJob() const;
|
|
|
|
Kleo::ImportJob * importJob() const;
|
|
Kleo::ExportJob * publicKeyExportJob( bool armor=false ) const;
|
|
Kleo::ExportJob * secretKeyExportJob( bool armor=false, const TQString& charset = TQString() ) const;
|
|
Kleo::DownloadJob * downloadJob( bool armor=false ) const;
|
|
Kleo::DeleteJob * deleteJob() const;
|
|
|
|
Kleo::SignEncryptJob * signEncryptJob( bool armor=false, bool textmode=false ) const;
|
|
Kleo::DecryptVerifyJob * decryptVerifyJob( bool textmode=false ) const;
|
|
Kleo::RefreshKeysJob * refreshKeysJob() const;
|
|
|
|
Kleo::SpecialJob * specialJob( const char *, const TQStringVariantMap & ) const { return 0; }
|
|
|
|
GpgME::ImportResult importCertificate( const char* data, size_t length );
|
|
|
|
CryptPlug * cryptPlug() const { return _cp; }
|
|
|
|
private:
|
|
TQString _name;
|
|
TQString _libName;
|
|
TQString _updateURL;
|
|
bool _active;
|
|
IniStatus _iniStatus;
|
|
TQString _lastError;
|
|
CryptPlug* _cp;
|
|
// local parameters without representation in cryptplug.h
|
|
bool mAlwaysEncryptToSelf;
|
|
class Config;
|
|
Config * _config;
|
|
QGpgMECryptoConfig * _cryptoConfig;
|
|
};
|
|
|
|
#endif // !LIBKLEOPATRA_NO_COMPAT
|
|
|
|
#endif // cryptplugwrapper_h
|