mirror of
https://bitbucket.org/smil3y/kde-playground.git
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218 lines
6.3 KiB
C++
218 lines
6.3 KiB
C++
/*
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Copyright (C) 2009 Klaralvdalens Datakonsult AB, a KDAB Group company, info@kdab.net
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Copyright (c) 2009 Leo Franchi <lfranchi@kde.org>
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This library is free software; you can redistribute it and/or modify it
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under the terms of the GNU Library General Public License as published by
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the Free Software Foundation; either version 2 of the License, or (at your
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option) any later version.
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This library is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU Library General Public
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License for more details.
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You should have received a copy of the GNU Library General Public License
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along with this library; see the file COPYING.LIB. If not, write to the
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Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
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02110-1301, USA.
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*/
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#include "signencryptjob.h"
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#include "contentjobbase_p.h"
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#include "kleo/cryptobackendfactory.h"
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#include "kleo/cryptobackend.h"
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#include "kleo/enum.h"
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#include "kleo/signencryptjob.h"
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#include "util.h"
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#include <kdebug.h>
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#include <kmime/kmime_message.h>
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#include <kmime/kmime_content.h>
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#include <kmime/kmime_util.h>
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#include <QBuffer>
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#include <gpgme++/global.h>
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#include <gpgme++/signingresult.h>
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#include <gpgme++/encryptionresult.h>
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#include <sstream>
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using namespace MessageComposer;
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class MessageComposer::SignEncryptJobPrivate : public ContentJobBasePrivate
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{
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public:
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SignEncryptJobPrivate( SignEncryptJob *qq )
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: ContentJobBasePrivate( qq )
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, content( 0 )
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{
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}
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KMime::Content* content;
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std::vector<GpgME::Key> signers;
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Kleo::CryptoMessageFormat format;
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std::vector<GpgME::Key> encKeys;
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QStringList recipients;
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// copied from messagecomposer.cpp
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bool binaryHint( Kleo::CryptoMessageFormat f )
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{
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switch ( f ) {
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case Kleo::SMIMEFormat:
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case Kleo::SMIMEOpaqueFormat:
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return true;
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default:
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case Kleo::OpenPGPMIMEFormat:
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case Kleo::InlineOpenPGPFormat:
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return false;
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}
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}
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Q_DECLARE_PUBLIC( SignEncryptJob )
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};
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SignEncryptJob::SignEncryptJob( QObject *parent )
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: ContentJobBase( *new SignEncryptJobPrivate( this ), parent )
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{
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}
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SignEncryptJob::~SignEncryptJob()
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{
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}
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void SignEncryptJob::setContent( KMime::Content* content )
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{
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Q_D( SignEncryptJob );
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Q_ASSERT( content );
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d->content = content;
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}
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void SignEncryptJob::setCryptoMessageFormat( Kleo::CryptoMessageFormat format)
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{
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Q_D( SignEncryptJob );
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// There *must* be a concrete format set at this point.
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Q_ASSERT( format == Kleo::OpenPGPMIMEFormat
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|| format == Kleo::InlineOpenPGPFormat
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|| format == Kleo::SMIMEFormat
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|| format == Kleo::SMIMEOpaqueFormat );
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d->format = format;
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}
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void SignEncryptJob::setSigningKeys( std::vector<GpgME::Key>& signers )
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{
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Q_D( SignEncryptJob );
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d->signers = signers;
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}
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KMime::Content* SignEncryptJob::origContent()
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{
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Q_D( SignEncryptJob );
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return d->content;
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}
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void SignEncryptJob::setEncryptionKeys( const std::vector<GpgME::Key>& keys )
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{
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Q_D( SignEncryptJob );
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d->encKeys = keys;
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}
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void SignEncryptJob::setRecipients( const QStringList& recipients ) {
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Q_D( SignEncryptJob );
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d->recipients = recipients;
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}
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QStringList SignEncryptJob::recipients() const {
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Q_D( const SignEncryptJob );
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return d->recipients;
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}
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std::vector<GpgME::Key> SignEncryptJob::encryptionKeys() const {
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Q_D( const SignEncryptJob );
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return d->encKeys;
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}
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void SignEncryptJob::process()
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{
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Q_D( SignEncryptJob );
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Q_ASSERT( d->resultContent == 0 ); // Not processed before.
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// if setContent hasn't been called, we assume that a subjob was added
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// and we want to use that
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if( !d->content || !d->content->hasContent() ) {
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Q_ASSERT( d->subjobContents.size() == 1 );
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d->content = d->subjobContents.first();
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}
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const Kleo::CryptoBackend::Protocol *proto = 0;
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if( d->format & Kleo::AnyOpenPGP ) {
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proto = Kleo::CryptoBackendFactory::instance()->openpgp();
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} else if( d->format & Kleo::AnySMIME ) {
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proto = Kleo::CryptoBackendFactory::instance()->smime();
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} else {
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return;
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}
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//d->resultContent = new KMime::Content;
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kDebug() << "creating signencrypt from:" << proto->name() << proto->displayName();
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std::auto_ptr<Kleo::SignEncryptJob> job( proto->signEncryptJob( !d->binaryHint( d->format ), d->format == Kleo::InlineOpenPGPFormat ) );
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QByteArray encBody;
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d->content->assemble();
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// replace simple LFs by CRLFs for all MIME supporting CryptPlugs
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// according to RfC 2633, 3.1.1 Canonicalization
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QByteArray content;
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if( d->format & Kleo::InlineOpenPGPFormat ) {
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content = d->content->body();
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} else if ( !( d->format & Kleo::SMIMEOpaqueFormat ) ) {
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content = KMime::LFtoCRLF( d->content->encodedContent() );
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} else { // SMimeOpaque doesn't need LFtoCRLF, else it gets munged
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content = d->content->encodedContent();
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}
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// FIXME: Make this async
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const std::pair<GpgME::SigningResult,GpgME::EncryptionResult> res = job->exec( d->signers, d->encKeys,
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content,
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false,
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encBody );
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// exec'ed jobs don't delete themselves
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job->deleteLater();
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if ( res.first.error() ) {
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kDebug() << "signing failed:" << res.first.error().asString();
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setError( res.first.error().code() );
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setErrorText( QString::fromLocal8Bit( res.first.error().asString() ) );
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emitResult();
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return;
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}
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if ( res.second.error() ) {
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kDebug() << "encrypyting failed:" << res.second.error().asString();
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setError( res.second.error().code() );
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setErrorText( QString::fromLocal8Bit( res.second.error().asString() ) );
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emitResult();
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return;
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}
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QByteArray signatureHashAlgo = res.first.createdSignature( 0 ).hashAlgorithmAsString();
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d->resultContent = MessageComposer::Util::composeHeadersAndBody( d->content, encBody, d->format, true, signatureHashAlgo );
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emitResult();
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}
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