diff --git a/core/document.cpp b/core/document.cpp index b725ecfc7..3f6191960 100644 --- a/core/document.cpp +++ b/core/document.cpp @@ -1,5195 +1,5197 @@ /*************************************************************************** * Copyright (C) 2004-2005 by Enrico Ros * * Copyright (C) 2004-2008 by Albert Astals Cid * * * * This program is free software; you can redistribute it and/or modify * * it under the terms of the GNU General Public License as published by * * the Free Software Foundation; either version 2 of the License, or * * (at your option) any later version. * ***************************************************************************/ #include "document.h" #include "document_p.h" #include "documentcommands_p.h" #include #ifdef Q_OS_WIN #define _WIN32_WINNT 0x0500 #include #elif defined(Q_OS_FREEBSD) #include #include #include #endif // qt/kde/system includes #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include // local includes #include "action.h" #include "annotations.h" #include "annotations_p.h" #include "audioplayer.h" #include "audioplayer_p.h" #include "bookmarkmanager.h" #include "chooseenginedialog_p.h" #include "debug_p.h" #include "generator_p.h" #include "interfaces/configinterface.h" #include "interfaces/guiinterface.h" #include "interfaces/printinterface.h" #include "interfaces/saveinterface.h" #include "observer.h" #include "misc.h" #include "page.h" #include "page_p.h" #include "pagecontroller_p.h" #include "scripter.h" #include "settings_core.h" #include "sourcereference.h" #include "sourcereference_p.h" #include "texteditors_p.h" #include "tile.h" #include "tilesmanager_p.h" #include "utils_p.h" #include "view.h" #include "view_p.h" #include "form.h" #include "utils.h" #include #include using namespace Okular; struct AllocatedPixmap { // owner of the page DocumentObserver *observer; int page; qulonglong memory; // public constructor: initialize data AllocatedPixmap( DocumentObserver *o, int p, qulonglong m ) : observer( o ), page( p ), memory( m ) {} }; struct ArchiveData { ArchiveData() { } QTemporaryFile document; QTemporaryFile metadataFile; }; struct RunningSearch { // store search properties int continueOnPage; RegularAreaRect continueOnMatch; QSet< int > highlightedPages; // fields related to previous searches (used for 'continueSearch') QString cachedString; Document::SearchType cachedType; Qt::CaseSensitivity cachedCaseSensitivity; bool cachedViewportMove : 1; bool isCurrentlySearching : 1; QColor cachedColor; int pagesDone; }; #define foreachObserver( cmd ) {\ QSet< DocumentObserver * >::const_iterator it=d->m_observers.constBegin(), end=d->m_observers.constEnd();\ for ( ; it != end ; ++ it ) { (*it)-> cmd ; } } #define foreachObserverD( cmd ) {\ QSet< DocumentObserver * >::const_iterator it = m_observers.constBegin(), end = m_observers.constEnd();\ for ( ; it != end ; ++ it ) { (*it)-> cmd ; } } #define OKULAR_HISTORY_MAXSTEPS 100 #define OKULAR_HISTORY_SAVEDSTEPS 10 /***** Document ******/ QString DocumentPrivate::pagesSizeString() const { if (m_generator) { if (m_generator->pagesSizeMetric() != Generator::None) { QSizeF size = m_parent->allPagesSize(); if (size.isValid()) return localizedSize(size); else return QString(); } else return QString(); } else return QString(); } QString DocumentPrivate::namePaperSize(double inchesWidth, double inchesHeight) const { const QPrinter::Orientation orientation = inchesWidth > inchesHeight ? QPrinter::Landscape : QPrinter::Portrait; const QSize pointsSize(inchesWidth *72.0, inchesHeight*72.0); const QPageSize::PageSizeId paperSize = QPageSize::id(pointsSize, QPageSize::FuzzyOrientationMatch); const QString paperName = QPageSize::name(paperSize); if (orientation == QPrinter::Portrait) { return i18nc("paper type and orientation (eg: Portrait A4)", "Portrait %0").arg(paperName); } else { return i18nc("paper type and orientation (eg: Portrait A4)", "Landscape %0").arg(paperName); } } QString DocumentPrivate::localizedSize(const QSizeF &size) const { double inchesWidth = 0, inchesHeight = 0; switch (m_generator->pagesSizeMetric()) { case Generator::Points: inchesWidth = size.width() / 72.0; inchesHeight = size.height() / 72.0; break; case Generator::Pixels: { const QSizeF dpi = m_generator->dpi(); inchesWidth = size.width() / dpi.width(); inchesHeight = size.height() / dpi.height(); } break; case Generator::None: break; } if (QLocale::system().measurementSystem() == QLocale::ImperialSystem) { return i18nc("%1 is width, %2 is height, %3 is paper size name", "%1 x %2 in (%3)", inchesWidth, inchesHeight, namePaperSize(inchesWidth, inchesHeight)); } else { return i18nc("%1 is width, %2 is height, %3 is paper size name", "%1 x %2 mm (%3)", QString::number(inchesWidth * 25.4, 'd', 0), QString::number(inchesHeight * 25.4, 'd', 0), namePaperSize(inchesWidth, inchesHeight)); } } qulonglong DocumentPrivate::calculateMemoryToFree() { // [MEM] choose memory parameters based on configuration profile qulonglong clipValue = 0; qulonglong memoryToFree = 0; switch ( SettingsCore::memoryLevel() ) { case SettingsCore::EnumMemoryLevel::Low: memoryToFree = m_allocatedPixmapsTotalMemory; break; case SettingsCore::EnumMemoryLevel::Normal: { qulonglong thirdTotalMemory = getTotalMemory() / 3; qulonglong freeMemory = getFreeMemory(); if (m_allocatedPixmapsTotalMemory > thirdTotalMemory) memoryToFree = m_allocatedPixmapsTotalMemory - thirdTotalMemory; if (m_allocatedPixmapsTotalMemory > freeMemory) clipValue = (m_allocatedPixmapsTotalMemory - freeMemory) / 2; } break; case SettingsCore::EnumMemoryLevel::Aggressive: { qulonglong freeMemory = getFreeMemory(); if (m_allocatedPixmapsTotalMemory > freeMemory) clipValue = (m_allocatedPixmapsTotalMemory - freeMemory) / 2; } break; case SettingsCore::EnumMemoryLevel::Greedy: { qulonglong freeSwap; qulonglong freeMemory = getFreeMemory( &freeSwap ); const qulonglong memoryLimit = qMin( qMax( freeMemory, getTotalMemory()/2 ), freeMemory+freeSwap ); if (m_allocatedPixmapsTotalMemory > memoryLimit) clipValue = (m_allocatedPixmapsTotalMemory - memoryLimit) / 2; } break; } if ( clipValue > memoryToFree ) memoryToFree = clipValue; return memoryToFree; } void DocumentPrivate::cleanupPixmapMemory() { cleanupPixmapMemory( calculateMemoryToFree() ); } void DocumentPrivate::cleanupPixmapMemory( qulonglong memoryToFree ) { if ( memoryToFree < 1 ) return; const int currentViewportPage = (*m_viewportIterator).pageNumber; // Create a QMap of visible rects, indexed by page number QMap< int, VisiblePageRect * > visibleRects; QVector< Okular::VisiblePageRect * >::const_iterator vIt = m_pageRects.constBegin(), vEnd = m_pageRects.constEnd(); for ( ; vIt != vEnd; ++vIt ) visibleRects.insert( (*vIt)->pageNumber, (*vIt) ); // Free memory starting from pages that are farthest from the current one int pagesFreed = 0; while ( memoryToFree > 0 ) { AllocatedPixmap * p = searchLowestPriorityPixmap( true, true ); if ( !p ) // No pixmap to remove break; qCDebug(OkularCoreDebug).nospace() << "Evicting cache pixmap observer=" << p->observer << " page=" << p->page; // m_allocatedPixmapsTotalMemory can't underflow because we always add or remove // the memory used by the AllocatedPixmap so at most it can reach zero m_allocatedPixmapsTotalMemory -= p->memory; // Make sure memoryToFree does not underflow if ( p->memory > memoryToFree ) memoryToFree = 0; else memoryToFree -= p->memory; pagesFreed++; // delete pixmap m_pagesVector.at( p->page )->deletePixmap( p->observer ); // delete allocation descriptor delete p; } // If we're still on low memory, try to free individual tiles // Store pages that weren't completely removed QLinkedList< AllocatedPixmap * > pixmapsToKeep; while (memoryToFree > 0) { int clean_hits = 0; foreach (DocumentObserver *observer, m_observers) { AllocatedPixmap * p = searchLowestPriorityPixmap( false, true, observer ); if ( !p ) // No pixmap to remove continue; clean_hits++; TilesManager *tilesManager = m_pagesVector.at( p->page )->d->tilesManager( observer ); if ( tilesManager && tilesManager->totalMemory() > 0 ) { qulonglong memoryDiff = p->memory; NormalizedRect visibleRect; if ( visibleRects.contains( p->page ) ) visibleRect = visibleRects[ p->page ]->rect; // Free non visible tiles tilesManager->cleanupPixmapMemory( memoryToFree, visibleRect, currentViewportPage ); p->memory = tilesManager->totalMemory(); memoryDiff -= p->memory; memoryToFree = (memoryDiff < memoryToFree) ? (memoryToFree - memoryDiff) : 0; m_allocatedPixmapsTotalMemory -= memoryDiff; if ( p->memory > 0 ) pixmapsToKeep.append( p ); else delete p; } else pixmapsToKeep.append( p ); } if (clean_hits == 0) break; } m_allocatedPixmaps += pixmapsToKeep; //p--rintf("freeMemory A:[%d -%d = %d] \n", m_allocatedPixmaps.count() + pagesFreed, pagesFreed, m_allocatedPixmaps.count() ); } /* Returns the next pixmap to evict from cache, or NULL if no suitable pixmap * if found. If unloadableOnly is set, only unloadable pixmaps are returned. If * thenRemoveIt is set, the pixmap is removed from m_allocatedPixmaps before * returning it */ AllocatedPixmap * DocumentPrivate::searchLowestPriorityPixmap( bool unloadableOnly, bool thenRemoveIt, DocumentObserver *observer ) { QLinkedList< AllocatedPixmap * >::iterator pIt = m_allocatedPixmaps.begin(); QLinkedList< AllocatedPixmap * >::iterator pEnd = m_allocatedPixmaps.end(); QLinkedList< AllocatedPixmap * >::iterator farthestPixmap = pEnd; const int currentViewportPage = (*m_viewportIterator).pageNumber; /* Find the pixmap that is farthest from the current viewport */ int maxDistance = -1; while ( pIt != pEnd ) { const AllocatedPixmap * p = *pIt; // Filter by observer if ( observer == 0 || p->observer == observer ) { const int distance = qAbs( p->page - currentViewportPage ); if ( maxDistance < distance && ( !unloadableOnly || p->observer->canUnloadPixmap( p->page ) ) ) { maxDistance = distance; farthestPixmap = pIt; } } ++pIt; } /* No pixmap to remove */ if ( farthestPixmap == pEnd ) return 0; AllocatedPixmap * selectedPixmap = *farthestPixmap; if ( thenRemoveIt ) m_allocatedPixmaps.erase( farthestPixmap ); return selectedPixmap; } qulonglong DocumentPrivate::getTotalMemory() { static qulonglong cachedValue = 0; if ( cachedValue ) return cachedValue; #if defined(Q_OS_LINUX) // if /proc/meminfo doesn't exist, return 128MB QFile memFile( QStringLiteral("/proc/meminfo") ); if ( !memFile.open( QIODevice::ReadOnly ) ) return (cachedValue = 134217728); QTextStream readStream( &memFile ); while ( true ) { QString entry = readStream.readLine(); if ( entry.isNull() ) break; if ( entry.startsWith( QLatin1String("MemTotal:") ) ) return (cachedValue = (Q_UINT64_C(1024) * entry.section( QLatin1Char ( ' ' ), -2, -2 ).toULongLong())); } #elif defined(Q_OS_FREEBSD) qulonglong physmem; int mib[] = {CTL_HW, HW_PHYSMEM}; size_t len = sizeof( physmem ); if ( sysctl( mib, 2, &physmem, &len, NULL, 0 ) == 0 ) return (cachedValue = physmem); #elif defined(Q_OS_WIN) MEMORYSTATUSEX stat; stat.dwLength = sizeof(stat); GlobalMemoryStatusEx (&stat); return ( cachedValue = stat.ullTotalPhys ); #endif return (cachedValue = 134217728); } qulonglong DocumentPrivate::getFreeMemory( qulonglong *freeSwap ) { static QTime lastUpdate = QTime::currentTime().addSecs(-3); static qulonglong cachedValue = 0; static qulonglong cachedFreeSwap = 0; if ( qAbs( lastUpdate.secsTo( QTime::currentTime() ) ) <= 2 ) { if (freeSwap) *freeSwap = cachedFreeSwap; return cachedValue; } /* Initialize the returned free swap value to 0. It is overwritten if the * actual value is available */ if (freeSwap) *freeSwap = 0; #if defined(Q_OS_LINUX) // if /proc/meminfo doesn't exist, return MEMORY FULL QFile memFile( QStringLiteral("/proc/meminfo") ); if ( !memFile.open( QIODevice::ReadOnly ) ) return 0; // read /proc/meminfo and sum up the contents of 'MemFree', 'Buffers' // and 'Cached' fields. consider swapped memory as used memory. qulonglong memoryFree = 0; QString entry; QTextStream readStream( &memFile ); static const int nElems = 5; QString names[nElems] = { QStringLiteral("MemFree:"), QStringLiteral("Buffers:"), QStringLiteral("Cached:"), QStringLiteral("SwapFree:"), QStringLiteral("SwapTotal:") }; qulonglong values[nElems] = { 0, 0, 0, 0, 0 }; bool foundValues[nElems] = { false, false, false, false, false }; while ( true ) { entry = readStream.readLine(); if ( entry.isNull() ) break; for ( int i = 0; i < nElems; ++i ) { if ( entry.startsWith( names[i] ) ) { values[i] = entry.section( QLatin1Char ( ' ' ), -2, -2 ).toULongLong( &foundValues[i] ); } } } memFile.close(); bool found = true; for ( int i = 0; found && i < nElems; ++i ) found = found && foundValues[i]; if ( found ) { /* MemFree + Buffers + Cached - SwapUsed = * = MemFree + Buffers + Cached - (SwapTotal - SwapFree) = * = MemFree + Buffers + Cached + SwapFree - SwapTotal */ memoryFree = values[0] + values[1] + values[2] + values[3]; if ( values[4] > memoryFree ) memoryFree = 0; else memoryFree -= values[4]; } else { return 0; } lastUpdate = QTime::currentTime(); if (freeSwap) *freeSwap = ( cachedFreeSwap = (Q_UINT64_C(1024) * values[3]) ); return ( cachedValue = (Q_UINT64_C(1024) * memoryFree) ); #elif defined(Q_OS_FREEBSD) qulonglong cache, inact, free, psize; size_t cachelen, inactlen, freelen, psizelen; cachelen = sizeof( cache ); inactlen = sizeof( inact ); freelen = sizeof( free ); psizelen = sizeof( psize ); // sum up inactive, cached and free memory if ( sysctlbyname( "vm.stats.vm.v_cache_count", &cache, &cachelen, NULL, 0 ) == 0 && sysctlbyname( "vm.stats.vm.v_inactive_count", &inact, &inactlen, NULL, 0 ) == 0 && sysctlbyname( "vm.stats.vm.v_free_count", &free, &freelen, NULL, 0 ) == 0 && sysctlbyname( "vm.stats.vm.v_page_size", &psize, &psizelen, NULL, 0 ) == 0 ) { lastUpdate = QTime::currentTime(); return (cachedValue = (cache + inact + free) * psize); } else { return 0; } #elif defined(Q_OS_WIN) MEMORYSTATUSEX stat; stat.dwLength = sizeof(stat); GlobalMemoryStatusEx (&stat); lastUpdate = QTime::currentTime(); if (freeSwap) *freeSwap = ( cachedFreeSwap = stat.ullAvailPageFile ); return ( cachedValue = stat.ullAvailPhys ); #else // tell the memory is full.. will act as in LOW profile return 0; #endif } void DocumentPrivate::loadDocumentInfo() // note: load data and stores it internally (document or pages). observers // are still uninitialized at this point so don't access them { //qCDebug(OkularCoreDebug).nospace() << "Using '" << d->m_xmlFileName << "' as document info file."; if ( m_xmlFileName.isEmpty() ) return; QFile infoFile( m_xmlFileName ); loadDocumentInfo( infoFile ); } void DocumentPrivate::loadDocumentInfo( QFile &infoFile ) { if ( !infoFile.exists() || !infoFile.open( QIODevice::ReadOnly ) ) return; // Load DOM from XML file QDomDocument doc( QStringLiteral("documentInfo") ); if ( !doc.setContent( &infoFile ) ) { qCDebug(OkularCoreDebug) << "Can't load XML pair! Check for broken xml."; infoFile.close(); return; } infoFile.close(); QDomElement root = doc.documentElement(); if ( root.tagName() != QLatin1String("documentInfo") ) return; // Parse the DOM tree QDomNode topLevelNode = root.firstChild(); while ( topLevelNode.isElement() ) { QString catName = topLevelNode.toElement().tagName(); // Restore page attributes (bookmark, annotations, ...) from the DOM if ( catName == QLatin1String("pageList") ) { QDomNode pageNode = topLevelNode.firstChild(); while ( pageNode.isElement() ) { QDomElement pageElement = pageNode.toElement(); if ( pageElement.hasAttribute( QStringLiteral("number") ) ) { // get page number (node's attribute) bool ok; int pageNumber = pageElement.attribute( QStringLiteral("number") ).toInt( &ok ); // pass the domElement to the right page, to read config data from if ( ok && pageNumber >= 0 && pageNumber < (int)m_pagesVector.count() ) m_pagesVector[ pageNumber ]->d->restoreLocalContents( pageElement ); } pageNode = pageNode.nextSibling(); } } // Restore 'general info' from the DOM else if ( catName == QLatin1String("generalInfo") ) { QDomNode infoNode = topLevelNode.firstChild(); while ( infoNode.isElement() ) { QDomElement infoElement = infoNode.toElement(); // restore viewports history if ( infoElement.tagName() == QLatin1String("history") ) { // clear history m_viewportHistory.clear(); // append old viewports QDomNode historyNode = infoNode.firstChild(); while ( historyNode.isElement() ) { QDomElement historyElement = historyNode.toElement(); if ( historyElement.hasAttribute( QStringLiteral("viewport") ) ) { QString vpString = historyElement.attribute( QStringLiteral("viewport") ); m_viewportIterator = m_viewportHistory.insert( m_viewportHistory.end(), DocumentViewport( vpString ) ); } historyNode = historyNode.nextSibling(); } // consistancy check if ( m_viewportHistory.isEmpty() ) m_viewportIterator = m_viewportHistory.insert( m_viewportHistory.end(), DocumentViewport() ); } else if ( infoElement.tagName() == QLatin1String("rotation") ) { QString str = infoElement.text(); bool ok = true; int newrotation = !str.isEmpty() ? ( str.toInt( &ok ) % 4 ) : 0; if ( ok && newrotation != 0 ) { setRotationInternal( newrotation, false ); } } else if ( infoElement.tagName() == QLatin1String("views") ) { QDomNode viewNode = infoNode.firstChild(); while ( viewNode.isElement() ) { QDomElement viewElement = viewNode.toElement(); if ( viewElement.tagName() == QLatin1String("view") ) { const QString viewName = viewElement.attribute( QStringLiteral("name") ); Q_FOREACH ( View * view, m_views ) { if ( view->name() == viewName ) { loadViewsInfo( view, viewElement ); break; } } } viewNode = viewNode.nextSibling(); } } infoNode = infoNode.nextSibling(); } } topLevelNode = topLevelNode.nextSibling(); } // } void DocumentPrivate::loadViewsInfo( View *view, const QDomElement &e ) { QDomNode viewNode = e.firstChild(); while ( viewNode.isElement() ) { QDomElement viewElement = viewNode.toElement(); if ( viewElement.tagName() == QLatin1String("zoom") ) { const QString valueString = viewElement.attribute( QStringLiteral("value") ); bool newzoom_ok = true; const double newzoom = !valueString.isEmpty() ? valueString.toDouble( &newzoom_ok ) : 1.0; if ( newzoom_ok && newzoom != 0 && view->supportsCapability( View::Zoom ) && ( view->capabilityFlags( View::Zoom ) & ( View::CapabilityRead | View::CapabilitySerializable ) ) ) { view->setCapability( View::Zoom, newzoom ); } const QString modeString = viewElement.attribute( QStringLiteral("mode") ); bool newmode_ok = true; const int newmode = !modeString.isEmpty() ? modeString.toInt( &newmode_ok ) : 2; if ( newmode_ok && view->supportsCapability( View::ZoomModality ) && ( view->capabilityFlags( View::ZoomModality ) & ( View::CapabilityRead | View::CapabilitySerializable ) ) ) { view->setCapability( View::ZoomModality, newmode ); } } viewNode = viewNode.nextSibling(); } } void DocumentPrivate::saveViewsInfo( View *view, QDomElement &e ) const { if ( view->supportsCapability( View::Zoom ) && ( view->capabilityFlags( View::Zoom ) & ( View::CapabilityRead | View::CapabilitySerializable ) ) && view->supportsCapability( View::ZoomModality ) && ( view->capabilityFlags( View::ZoomModality ) & ( View::CapabilityRead | View::CapabilitySerializable ) ) ) { QDomElement zoomEl = e.ownerDocument().createElement( QStringLiteral("zoom") ); e.appendChild( zoomEl ); bool ok = true; const double zoom = view->capability( View::Zoom ).toDouble( &ok ); if ( ok && zoom != 0 ) { zoomEl.setAttribute( QStringLiteral("value"), QString::number(zoom) ); } const int mode = view->capability( View::ZoomModality ).toInt( &ok ); if ( ok ) { zoomEl.setAttribute( QStringLiteral("mode"), mode ); } } } QUrl DocumentPrivate::giveAbsoluteUrl( const QString & fileName ) const { if ( !QDir::isRelativePath( fileName ) ) return QUrl::fromLocalFile(fileName); if ( !m_url.isValid() ) return QUrl(); return QUrl(KIO::upUrl(m_url).toString() + fileName); } bool DocumentPrivate::openRelativeFile( const QString & fileName ) { QUrl url = giveAbsoluteUrl( fileName ); if ( url.isEmpty() ) return false; qCDebug(OkularCoreDebug).nospace() << "openRelativeFile: '" << url << "'"; emit m_parent->openUrl( url ); return true; } Generator * DocumentPrivate::loadGeneratorLibrary( const KPluginMetaData &service ) { KPluginLoader loader( service.fileName() ); qCDebug(OkularCoreDebug) << service.fileName(); KPluginFactory *factory = loader.factory(); if ( !factory ) { qCWarning(OkularCoreDebug).nospace() << "Invalid plugin factory for " << service.fileName() << ":" << loader.errorString(); return 0; } Generator * plugin = factory->create(); GeneratorInfo info( plugin, service ); m_loadedGenerators.insert( service.pluginId(), info ); return plugin; } void DocumentPrivate::loadAllGeneratorLibraries() { if ( m_generatorsLoaded ) return; loadServiceList( availableGenerators() ); m_generatorsLoaded = true; } void DocumentPrivate::loadServiceList( const QVector& offers ) { int count = offers.count(); if ( count <= 0 ) return; for ( int i = 0; i < count; ++i ) { QString id = offers.at(i).pluginId(); // don't load already loaded generators QHash< QString, GeneratorInfo >::const_iterator genIt = m_loadedGenerators.constFind( id ); if ( !m_loadedGenerators.isEmpty() && genIt != m_loadedGenerators.constEnd() ) continue; Generator * g = loadGeneratorLibrary( offers.at(i) ); (void)g; } } void DocumentPrivate::unloadGenerator( const GeneratorInfo& info ) { delete info.generator; } void DocumentPrivate::cacheExportFormats() { if ( m_exportCached ) return; const ExportFormat::List formats = m_generator->exportFormats(); for ( int i = 0; i < formats.count(); ++i ) { if ( formats.at( i ).mimeType().name() == QLatin1String( "text/plain" ) ) m_exportToText = formats.at( i ); else m_exportFormats.append( formats.at( i ) ); } m_exportCached = true; } ConfigInterface* DocumentPrivate::generatorConfig( GeneratorInfo& info ) { if ( info.configChecked ) return info.config; info.config = qobject_cast< Okular::ConfigInterface * >( info.generator ); info.configChecked = true; return info.config; } SaveInterface* DocumentPrivate::generatorSave( GeneratorInfo& info ) { if ( info.saveChecked ) return info.save; info.save = qobject_cast< Okular::SaveInterface * >( info.generator ); info.saveChecked = true; return info.save; } Document::OpenResult DocumentPrivate::openDocumentInternal( const KPluginMetaData& offer, bool isstdin, const QString& docFile, const QByteArray& filedata, const QString& password ) { QString propName = offer.pluginId(); QHash< QString, GeneratorInfo >::const_iterator genIt = m_loadedGenerators.constFind( propName ); m_walletGenerator = 0; if ( genIt != m_loadedGenerators.constEnd() ) { m_generator = genIt.value().generator; } else { m_generator = loadGeneratorLibrary( offer ); if ( !m_generator ) return Document::OpenError; genIt = m_loadedGenerators.constFind( propName ); Q_ASSERT( genIt != m_loadedGenerators.constEnd() ); } Q_ASSERT_X( m_generator, "Document::load()", "null generator?!" ); m_generator->d_func()->m_document = this; // connect error reporting signals QObject::connect( m_generator, &Generator::error, m_parent, &Document::error ); QObject::connect( m_generator, &Generator::warning, m_parent, &Document::warning ); QObject::connect( m_generator, &Generator::notice, m_parent, &Document::notice ); QApplication::setOverrideCursor( Qt::WaitCursor ); const QSizeF dpi = Utils::realDpi(m_widget); qCDebug(OkularCoreDebug) << "Output DPI:" << dpi; m_generator->setDPI(dpi); Document::OpenResult openResult = Document::OpenError; if ( !isstdin ) { openResult = m_generator->loadDocumentWithPassword( docFile, m_pagesVector, password ); } else if ( !filedata.isEmpty() ) { if ( m_generator->hasFeature( Generator::ReadRawData ) ) { openResult = m_generator->loadDocumentFromDataWithPassword( filedata, m_pagesVector, password ); } else { m_tempFile = new QTemporaryFile(); if ( !m_tempFile->open() ) { delete m_tempFile; m_tempFile = 0; } else { m_tempFile->write( filedata ); QString tmpFileName = m_tempFile->fileName(); m_tempFile->close(); openResult = m_generator->loadDocumentWithPassword( tmpFileName, m_pagesVector, password ); } } } QApplication::restoreOverrideCursor(); if ( openResult != Document::OpenSuccess || m_pagesVector.size() <= 0 ) { m_generator->d_func()->m_document = 0; QObject::disconnect( m_generator, 0, m_parent, 0 ); // TODO this is a bit of a hack, since basically means that // you can only call walletDataForFile after calling openDocument // but since in reality it's what happens I've decided not to refactor/break API // One solution is just kill walletDataForFile and make OpenResult be an object // where the wallet data is also returned when OpenNeedsPassword m_walletGenerator = m_generator; m_generator = 0; qDeleteAll( m_pagesVector ); m_pagesVector.clear(); delete m_tempFile; m_tempFile = 0; // TODO: emit a message telling the document is empty if ( openResult == Document::OpenSuccess ) openResult = Document::OpenError; } return openResult; } bool DocumentPrivate::savePageDocumentInfo( QTemporaryFile *infoFile, int what ) const { if ( infoFile->open() ) { // 1. Create DOM QDomDocument doc( QStringLiteral("documentInfo") ); QDomProcessingInstruction xmlPi = doc.createProcessingInstruction( QStringLiteral( "xml" ), QStringLiteral( "version=\"1.0\" encoding=\"utf-8\"" ) ); doc.appendChild( xmlPi ); QDomElement root = doc.createElement( QStringLiteral("documentInfo") ); doc.appendChild( root ); // 2.1. Save page attributes (bookmark state, annotations, ... ) to DOM QDomElement pageList = doc.createElement( QStringLiteral("pageList") ); root.appendChild( pageList ); // .... save pages that hold data QVector< Page * >::const_iterator pIt = m_pagesVector.constBegin(), pEnd = m_pagesVector.constEnd(); for ( ; pIt != pEnd; ++pIt ) (*pIt)->d->saveLocalContents( pageList, doc, PageItems( what ) ); // 3. Save DOM to XML file QString xml = doc.toString(); QTextStream os( infoFile ); os.setCodec( "UTF-8" ); os << xml; return true; } return false; } DocumentViewport DocumentPrivate::nextDocumentViewport() const { DocumentViewport ret = m_nextDocumentViewport; if ( !m_nextDocumentDestination.isEmpty() && m_generator ) { DocumentViewport vp( m_parent->metaData( QStringLiteral("NamedViewport"), m_nextDocumentDestination ).toString() ); if ( vp.isValid() ) { ret = vp; } } return ret; } void DocumentPrivate::warnLimitedAnnotSupport() { if ( !m_showWarningLimitedAnnotSupport ) return; m_showWarningLimitedAnnotSupport = false; // Show the warning once if ( m_annotationsNeedSaveAs ) { // Shown if the user is editing annotations in a file whose metadata is // not stored locally (.okular archives belong to this category) KMessageBox::information( m_widget, i18n("Your annotation changes will not be saved automatically. Use File -> Save As...\nor your changes will be lost once the document is closed"), QString(), QStringLiteral("annotNeedSaveAs") ); } else if ( !canAddAnnotationsNatively() ) { // If the generator doesn't support native annotations KMessageBox::information( m_widget, i18n("Your annotations are saved internally by Okular.\nYou can export the annotated document using File -> Export As -> Document Archive"), QString(), QStringLiteral("annotExportAsArchive") ); } } void DocumentPrivate::performAddPageAnnotation( int page, Annotation * annotation ) { Okular::SaveInterface * iface = qobject_cast< Okular::SaveInterface * >( m_generator ); AnnotationProxy *proxy = iface ? iface->annotationProxy() : 0; // find out the page to attach annotation Page * kp = m_pagesVector[ page ]; if ( !m_generator || !kp ) return; // the annotation belongs already to a page if ( annotation->d_ptr->m_page ) return; // add annotation to the page kp->addAnnotation( annotation ); // tell the annotation proxy if ( proxy && proxy->supports(AnnotationProxy::Addition) ) proxy->notifyAddition( annotation, page ); // notify observers about the change notifyAnnotationChanges( page ); if ( annotation->flags() & Annotation::ExternallyDrawn ) { // Redraw everything, including ExternallyDrawn annotations refreshPixmaps( page ); } warnLimitedAnnotSupport(); } void DocumentPrivate::performRemovePageAnnotation( int page, Annotation * annotation ) { Okular::SaveInterface * iface = qobject_cast< Okular::SaveInterface * >( m_generator ); AnnotationProxy *proxy = iface ? iface->annotationProxy() : 0; bool isExternallyDrawn; // find out the page Page * kp = m_pagesVector[ page ]; if ( !m_generator || !kp ) return; if ( annotation->flags() & Annotation::ExternallyDrawn ) isExternallyDrawn = true; else isExternallyDrawn = false; // try to remove the annotation if ( m_parent->canRemovePageAnnotation( annotation ) ) { // tell the annotation proxy if ( proxy && proxy->supports(AnnotationProxy::Removal) ) proxy->notifyRemoval( annotation, page ); kp->removeAnnotation( annotation ); // Also destroys the object // in case of success, notify observers about the change notifyAnnotationChanges( page ); if ( isExternallyDrawn ) { // Redraw everything, including ExternallyDrawn annotations refreshPixmaps( page ); } } warnLimitedAnnotSupport(); } void DocumentPrivate::performModifyPageAnnotation( int page, Annotation * annotation, bool appearanceChanged ) { Okular::SaveInterface * iface = qobject_cast< Okular::SaveInterface * >( m_generator ); AnnotationProxy *proxy = iface ? iface->annotationProxy() : 0; // find out the page Page * kp = m_pagesVector[ page ]; if ( !m_generator || !kp ) return; // tell the annotation proxy if ( proxy && proxy->supports(AnnotationProxy::Modification) ) { proxy->notifyModification( annotation, page, appearanceChanged ); } // notify observers about the change notifyAnnotationChanges( page ); if ( appearanceChanged && (annotation->flags() & Annotation::ExternallyDrawn) ) { /* When an annotation is being moved, the generator will not render it. * Therefore there's no need to refresh pixmaps after the first time */ if ( annotation->flags() & (Annotation::BeingMoved | Annotation::BeingResized) ) { if ( m_annotationBeingModified ) return; else // First time: take note m_annotationBeingModified = true; } else { m_annotationBeingModified = false; } // Redraw everything, including ExternallyDrawn annotations qCDebug(OkularCoreDebug) << "Refreshing Pixmaps"; refreshPixmaps( page ); } // If the user is moving or resizing the annotation, don't steal the focus if ( (annotation->flags() & (Annotation::BeingMoved | Annotation::BeingResized) ) == 0 ) warnLimitedAnnotSupport(); } void DocumentPrivate::performSetAnnotationContents( const QString & newContents, Annotation *annot, int pageNumber ) { bool appearanceChanged = false; // Check if appearanceChanged should be true switch ( annot->subType() ) { // If it's an in-place TextAnnotation, set the inplace text case Okular::Annotation::AText: { Okular::TextAnnotation * txtann = static_cast< Okular::TextAnnotation * >( annot ); if ( txtann->textType() == Okular::TextAnnotation::InPlace ) { appearanceChanged = true; } break; } // If it's a LineAnnotation, check if caption text is visible case Okular::Annotation::ALine: { Okular::LineAnnotation * lineann = static_cast< Okular::LineAnnotation * >( annot ); if ( lineann->showCaption() ) appearanceChanged = true; break; } default: break; } // Set contents annot->setContents( newContents ); // Tell the document the annotation has been modified performModifyPageAnnotation( pageNumber, annot, appearanceChanged ); } void DocumentPrivate::recalculateForms() { const QVariant fco = m_parent->metaData(QLatin1String("FormCalculateOrder")); const QVector formCalculateOrder = fco.value>(); foreach(int formId, formCalculateOrder) { for ( uint pageIdx = 0; pageIdx < m_parent->pages(); pageIdx++ ) { const Page *p = m_parent->page( pageIdx ); if (p) { foreach( FormField *form, p->formFields() ) { if ( form->id() == formId ) { Action *action = form->additionalAction( FormField::CalculateField ); if (action) { m_parent->processAction( action ); } else { qWarning() << "Form that is part of calculate order doesn't have a calculate action"; } } } } } } } void DocumentPrivate::saveDocumentInfo() const { if ( m_xmlFileName.isEmpty() ) return; QFile infoFile( m_xmlFileName ); qCDebug(OkularCoreDebug) << "About to save document info to" << m_xmlFileName; if (!infoFile.open( QIODevice::WriteOnly | QIODevice::Truncate)) { qCWarning(OkularCoreDebug) << "Failed to open docdata file" << m_xmlFileName; return; } // 1. Create DOM QDomDocument doc( QStringLiteral("documentInfo") ); QDomProcessingInstruction xmlPi = doc.createProcessingInstruction( QStringLiteral( "xml" ), QStringLiteral( "version=\"1.0\" encoding=\"utf-8\"" ) ); doc.appendChild( xmlPi ); QDomElement root = doc.createElement( QStringLiteral("documentInfo") ); root.setAttribute( QStringLiteral("url"), m_url.toDisplayString(QUrl::PreferLocalFile) ); doc.appendChild( root ); // 2.1. Save page attributes (bookmark state, annotations, ... ) to DOM QDomElement pageList = doc.createElement( QStringLiteral("pageList") ); root.appendChild( pageList ); PageItems saveWhat = AllPageItems; if ( m_annotationsNeedSaveAs ) { /* In this case, if the user makes a modification, he's requested to * save to a new document. Therefore, if there are existing local * annotations, we save them back unmodified in the original * document's metadata, so that it appears that it was not changed */ saveWhat |= OriginalAnnotationPageItems; } // .... save pages that hold data QVector< Page * >::const_iterator pIt = m_pagesVector.constBegin(), pEnd = m_pagesVector.constEnd(); for ( ; pIt != pEnd; ++pIt ) (*pIt)->d->saveLocalContents( pageList, doc, saveWhat ); // 2.2. Save document info (current viewport, history, ... ) to DOM QDomElement generalInfo = doc.createElement( QStringLiteral("generalInfo") ); root.appendChild( generalInfo ); // create rotation node if ( m_rotation != Rotation0 ) { QDomElement rotationNode = doc.createElement( QStringLiteral("rotation") ); generalInfo.appendChild( rotationNode ); rotationNode.appendChild( doc.createTextNode( QString::number( (int)m_rotation ) ) ); } // ... save history up to OKULAR_HISTORY_SAVEDSTEPS viewports QLinkedList< DocumentViewport >::const_iterator backIterator = m_viewportIterator; if ( backIterator != m_viewportHistory.constEnd() ) { // go back up to OKULAR_HISTORY_SAVEDSTEPS steps from the current viewportIterator int backSteps = OKULAR_HISTORY_SAVEDSTEPS; while ( backSteps-- && backIterator != m_viewportHistory.constBegin() ) --backIterator; // create history root node QDomElement historyNode = doc.createElement( QStringLiteral("history") ); generalInfo.appendChild( historyNode ); // add old[backIterator] and present[viewportIterator] items QLinkedList< DocumentViewport >::const_iterator endIt = m_viewportIterator; ++endIt; while ( backIterator != endIt ) { QString name = (backIterator == m_viewportIterator) ? QStringLiteral ("current") : QStringLiteral ("oldPage"); QDomElement historyEntry = doc.createElement( name ); historyEntry.setAttribute( QStringLiteral("viewport"), (*backIterator).toString() ); historyNode.appendChild( historyEntry ); ++backIterator; } } // create views root node QDomElement viewsNode = doc.createElement( QStringLiteral("views") ); generalInfo.appendChild( viewsNode ); Q_FOREACH ( View * view, m_views ) { QDomElement viewEntry = doc.createElement( QStringLiteral("view") ); viewEntry.setAttribute( QStringLiteral("name"), view->name() ); viewsNode.appendChild( viewEntry ); saveViewsInfo( view, viewEntry ); } // 3. Save DOM to XML file QString xml = doc.toString(); QTextStream os( &infoFile ); os.setCodec( "UTF-8" ); os << xml; infoFile.close(); } void DocumentPrivate::slotTimedMemoryCheck() { // [MEM] clean memory (for 'free mem dependant' profiles only) if ( SettingsCore::memoryLevel() != SettingsCore::EnumMemoryLevel::Low && m_allocatedPixmapsTotalMemory > 1024*1024 ) cleanupPixmapMemory(); } void DocumentPrivate::sendGeneratorPixmapRequest() { /* If the pixmap cache will have to be cleaned in order to make room for the * next request, get the distance from the current viewport of the page * whose pixmap will be removed. We will ignore preload requests for pages * that are at the same distance or farther */ const qulonglong memoryToFree = calculateMemoryToFree(); const int currentViewportPage = (*m_viewportIterator).pageNumber; int maxDistance = INT_MAX; // Default: No maximum if ( memoryToFree ) { AllocatedPixmap *pixmapToReplace = searchLowestPriorityPixmap( true ); if ( pixmapToReplace ) maxDistance = qAbs( pixmapToReplace->page - currentViewportPage ); } // find a request PixmapRequest * request = 0; m_pixmapRequestsMutex.lock(); while ( !m_pixmapRequestsStack.isEmpty() && !request ) { PixmapRequest * r = m_pixmapRequestsStack.last(); if (!r) { m_pixmapRequestsStack.pop_back(); continue; } QRect requestRect = r->isTile() ? r->normalizedRect().geometry( r->width(), r->height() ) : QRect( 0, 0, r->width(), r->height() ); TilesManager *tilesManager = r->d->tilesManager(); // If it's a preload but the generator is not threaded no point in trying to preload if ( r->preload() && !m_generator->hasFeature( Generator::Threaded ) ) { m_pixmapRequestsStack.pop_back(); delete r; } // request only if page isn't already present and request has valid id // request only if page isn't already present and request has valid id else if ( ( !r->d->mForce && r->page()->hasPixmap( r->observer(), r->width(), r->height(), r->normalizedRect() ) ) || !m_observers.contains(r->observer()) ) { m_pixmapRequestsStack.pop_back(); delete r; } else if ( !r->d->mForce && r->preload() && qAbs( r->pageNumber() - currentViewportPage ) >= maxDistance ) { m_pixmapRequestsStack.pop_back(); //qCDebug(OkularCoreDebug) << "Ignoring request that doesn't fit in cache"; delete r; } // Ignore requests for pixmaps that are already being generated else if ( tilesManager && tilesManager->isRequesting( r->normalizedRect(), r->width(), r->height() ) ) { m_pixmapRequestsStack.pop_back(); delete r; } // If the requested area is above 8000000 pixels, switch on the tile manager else if ( !tilesManager && m_generator->hasFeature( Generator::TiledRendering ) && (long)r->width() * (long)r->height() > 8000000L ) { // if the image is too big. start using tiles qCDebug(OkularCoreDebug).nospace() << "Start using tiles on page " << r->pageNumber() << " (" << r->width() << "x" << r->height() << " px);"; // fill the tiles manager with the last rendered pixmap const QPixmap *pixmap = r->page()->_o_nearestPixmap( r->observer(), r->width(), r->height() ); if ( pixmap ) { tilesManager = new TilesManager( r->pageNumber(), pixmap->width(), pixmap->height(), r->page()->rotation() ); tilesManager->setPixmap( pixmap, NormalizedRect( 0, 0, 1, 1 ) ); tilesManager->setSize( r->width(), r->height() ); } else { // create new tiles manager tilesManager = new TilesManager( r->pageNumber(), r->width(), r->height(), r->page()->rotation() ); } tilesManager->setRequest( r->normalizedRect(), r->width(), r->height() ); r->page()->deletePixmap( r->observer() ); r->page()->d->setTilesManager( r->observer(), tilesManager ); r->setTile( true ); // Change normalizedRect to the smallest rect that contains all // visible tiles. if ( !r->normalizedRect().isNull() ) { NormalizedRect tilesRect; const QList tiles = tilesManager->tilesAt( r->normalizedRect(), TilesManager::TerminalTile ); QList::const_iterator tIt = tiles.constBegin(), tEnd = tiles.constEnd(); while ( tIt != tEnd ) { Tile tile = *tIt; if ( tilesRect.isNull() ) tilesRect = tile.rect(); else tilesRect |= tile.rect(); ++tIt; } r->setNormalizedRect( tilesRect ); request = r; } else { // Discard request if normalizedRect is null. This happens in // preload requests issued by PageView if the requested page is // not visible and the user has just switched from a non-tiled // zoom level to a tiled one m_pixmapRequestsStack.pop_back(); delete r; } } // If the requested area is below 6000000 pixels, switch off the tile manager else if ( tilesManager && (long)r->width() * (long)r->height() < 6000000L ) { qCDebug(OkularCoreDebug).nospace() << "Stop using tiles on page " << r->pageNumber() << " (" << r->width() << "x" << r->height() << " px);"; // page is too small. stop using tiles. r->page()->deletePixmap( r->observer() ); r->setTile( false ); request = r; } else if ( (long)requestRect.width() * (long)requestRect.height() > 200000000L && (SettingsCore::memoryLevel() != SettingsCore::EnumMemoryLevel::Greedy ) ) { m_pixmapRequestsStack.pop_back(); if ( !m_warnedOutOfMemory ) { qCWarning(OkularCoreDebug).nospace() << "Running out of memory on page " << r->pageNumber() << " (" << r->width() << "x" << r->height() << " px);"; qCWarning(OkularCoreDebug) << "this message will be reported only once."; m_warnedOutOfMemory = true; } delete r; } else { request = r; } } // if no request found (or already generated), return if ( !request ) { m_pixmapRequestsMutex.unlock(); return; } // [MEM] preventive memory freeing qulonglong pixmapBytes = 0; TilesManager * tm = request->d->tilesManager(); if ( tm ) pixmapBytes = tm->totalMemory(); else pixmapBytes = 4 * request->width() * request->height(); if ( pixmapBytes > (1024 * 1024) ) cleanupPixmapMemory( memoryToFree /* previously calculated value */ ); // submit the request to the generator if ( m_generator->canGeneratePixmap() ) { QRect requestRect = !request->isTile() ? QRect(0, 0, request->width(), request->height() ) : request->normalizedRect().geometry( request->width(), request->height() ); qCDebug(OkularCoreDebug).nospace() << "sending request observer=" << request->observer() << " " <pageNumber() << " async == " << request->asynchronous() << " isTile == " << request->isTile(); m_pixmapRequestsStack.removeAll ( request ); if ( tm ) tm->setRequest( request->normalizedRect(), request->width(), request->height() ); if ( (int)m_rotation % 2 ) request->d->swap(); if ( m_rotation != Rotation0 && !request->normalizedRect().isNull() ) request->setNormalizedRect( TilesManager::fromRotatedRect( request->normalizedRect(), m_rotation ) ); // we always have to unlock _before_ the generatePixmap() because // a sync generation would end with requestDone() -> deadlock, and // we can not really know if the generator can do async requests m_executingPixmapRequests.push_back( request ); m_pixmapRequestsMutex.unlock(); m_generator->generatePixmap( request ); } else { m_pixmapRequestsMutex.unlock(); // pino (7/4/2006): set the polling interval from 10 to 30 QTimer::singleShot( 30, m_parent, SLOT(sendGeneratorPixmapRequest()) ); } } void DocumentPrivate::rotationFinished( int page, Okular::Page *okularPage ) { Okular::Page *wantedPage = m_pagesVector.value( page, 0 ); if ( !wantedPage || wantedPage != okularPage ) return; foreach(DocumentObserver *o, m_observers) o->notifyPageChanged( page, DocumentObserver::Pixmap | DocumentObserver::Annotations ); } void DocumentPrivate::slotFontReadingProgress( int page ) { emit m_parent->fontReadingProgress( page ); if ( page >= (int)m_parent->pages() - 1 ) { emit m_parent->fontReadingEnded(); m_fontThread = 0; m_fontsCached = true; } } void DocumentPrivate::fontReadingGotFont( const Okular::FontInfo& font ) { // Try to avoid duplicate fonts if (m_fontsCache.indexOf(font) == -1) { m_fontsCache.append( font ); emit m_parent->gotFont( font ); } } void DocumentPrivate::slotGeneratorConfigChanged( const QString& ) { if ( !m_generator ) return; // reparse generator config and if something changed clear Pages bool configchanged = false; QHash< QString, GeneratorInfo >::iterator it = m_loadedGenerators.begin(), itEnd = m_loadedGenerators.end(); for ( ; it != itEnd; ++it ) { Okular::ConfigInterface * iface = generatorConfig( it.value() ); if ( iface ) { bool it_changed = iface->reparseConfig(); if ( it_changed && ( m_generator == it.value().generator ) ) configchanged = true; } } if ( configchanged ) { // invalidate pixmaps QVector::const_iterator it = m_pagesVector.constBegin(), end = m_pagesVector.constEnd(); for ( ; it != end; ++it ) { (*it)->deletePixmaps(); } // [MEM] remove allocation descriptors qDeleteAll( m_allocatedPixmaps ); m_allocatedPixmaps.clear(); m_allocatedPixmapsTotalMemory = 0; // send reload signals to observers foreachObserverD( notifyContentsCleared( DocumentObserver::Pixmap ) ); } // free memory if in 'low' profile if ( SettingsCore::memoryLevel() == SettingsCore::EnumMemoryLevel::Low && !m_allocatedPixmaps.isEmpty() && !m_pagesVector.isEmpty() ) cleanupPixmapMemory(); } void DocumentPrivate::refreshPixmaps( int pageNumber ) { Page* page = m_pagesVector.value( pageNumber, 0 ); if ( !page ) return; QLinkedList< Okular::PixmapRequest * > requestedPixmaps; QMap< DocumentObserver*, PagePrivate::PixmapObject >::ConstIterator it = page->d->m_pixmaps.constBegin(), itEnd = page->d->m_pixmaps.constEnd(); for ( ; it != itEnd; ++it ) { QSize size = (*it).m_pixmap->size(); PixmapRequest * p = new PixmapRequest( it.key(), pageNumber, size.width(), size.height(), 1, PixmapRequest::Asynchronous ); p->d->mForce = true; requestedPixmaps.push_back( p ); } foreach (DocumentObserver *observer, m_observers) { TilesManager *tilesManager = page->d->tilesManager( observer ); if ( tilesManager ) { tilesManager->markDirty(); PixmapRequest * p = new PixmapRequest( observer, pageNumber, tilesManager->width(), tilesManager->height(), 1, PixmapRequest::Asynchronous ); NormalizedRect tilesRect; // Get the visible page rect NormalizedRect visibleRect; QVector< Okular::VisiblePageRect * >::const_iterator vIt = m_pageRects.constBegin(), vEnd = m_pageRects.constEnd(); for ( ; vIt != vEnd; ++vIt ) { if ( (*vIt)->pageNumber == pageNumber ) { visibleRect = (*vIt)->rect; break; } } if ( !visibleRect.isNull() ) { p->setNormalizedRect( visibleRect ); p->setTile( true ); p->d->mForce = true; requestedPixmaps.push_back( p ); } else { delete p; } } } if ( !requestedPixmaps.isEmpty() ) m_parent->requestPixmaps( requestedPixmaps, Okular::Document::NoOption ); } void DocumentPrivate::_o_configChanged() { // free text pages if needed calculateMaxTextPages(); while (m_allocatedTextPagesFifo.count() > m_maxAllocatedTextPages) { int pageToKick = m_allocatedTextPagesFifo.takeFirst(); m_pagesVector.at(pageToKick)->setTextPage( 0 ); // deletes the textpage } } void DocumentPrivate::doContinueDirectionMatchSearch(void *doContinueDirectionMatchSearchStruct) { DoContinueDirectionMatchSearchStruct *searchStruct = static_cast(doContinueDirectionMatchSearchStruct); RunningSearch *search = m_searches.value(searchStruct->searchID); if ((m_searchCancelled && !searchStruct->match) || !search) { // if the user cancelled but he just got a match, give him the match! QApplication::restoreOverrideCursor(); if (search) search->isCurrentlySearching = false; emit m_parent->searchFinished( searchStruct->searchID, Document::SearchCancelled ); delete searchStruct->pagesToNotify; delete searchStruct; return; } const bool forward = search->cachedType == Document::NextMatch; bool doContinue = false; // if no match found, loop through the whole doc, starting from currentPage if ( !searchStruct->match ) { const int pageCount = m_pagesVector.count(); if (search->pagesDone < pageCount) { doContinue = true; if ( searchStruct->currentPage >= pageCount || searchStruct->currentPage < 0 ) { doContinue = false; search->isCurrentlySearching = false; search->continueOnPage = forward ? 0 : pageCount - 1; search->continueOnMatch = RegularAreaRect(); emit m_parent->searchFinished ( searchStruct->searchID, Document::EndOfDocumentReached ); } } } if (doContinue) { // get page Page * page = m_pagesVector[ searchStruct->currentPage ]; // request search page if needed if ( !page->hasTextPage() ) m_parent->requestTextPage( page->number() ); // if found a match on the current page, end the loop searchStruct->match = page->findText( searchStruct->searchID, search->cachedString, forward ? FromTop : FromBottom, search->cachedCaseSensitivity ); if ( !searchStruct->match ) { if (forward) searchStruct->currentPage++; else searchStruct->currentPage--; search->pagesDone++; } else { search->pagesDone = 1; } // Both of the previous if branches need to call doContinueDirectionMatchSearch QMetaObject::invokeMethod(m_parent, "doContinueDirectionMatchSearch", Qt::QueuedConnection, Q_ARG(void *, searchStruct)); } else { doProcessSearchMatch( searchStruct->match, search, searchStruct->pagesToNotify, searchStruct->currentPage, searchStruct->searchID, search->cachedViewportMove, search->cachedColor ); delete searchStruct; } } void DocumentPrivate::doProcessSearchMatch( RegularAreaRect *match, RunningSearch *search, QSet< int > *pagesToNotify, int currentPage, int searchID, bool moveViewport, const QColor & color ) { // reset cursor to previous shape QApplication::restoreOverrideCursor(); bool foundAMatch = false; search->isCurrentlySearching = false; // if a match has been found.. if ( match ) { // update the RunningSearch structure adding this match.. foundAMatch = true; search->continueOnPage = currentPage; search->continueOnMatch = *match; search->highlightedPages.insert( currentPage ); // ..add highlight to the page.. m_pagesVector[ currentPage ]->d->setHighlight( searchID, match, color ); // ..queue page for notifying changes.. pagesToNotify->insert( currentPage ); // Create a normalized rectangle around the search match that includes a 5% buffer on all sides. const Okular::NormalizedRect matchRectWithBuffer = Okular::NormalizedRect( match->first().left - 0.05, match->first().top - 0.05, match->first().right + 0.05, match->first().bottom + 0.05 ); const bool matchRectFullyVisible = isNormalizedRectangleFullyVisible( matchRectWithBuffer, currentPage ); // ..move the viewport to show the first of the searched word sequence centered if ( moveViewport && !matchRectFullyVisible ) { DocumentViewport searchViewport( currentPage ); searchViewport.rePos.enabled = true; searchViewport.rePos.normalizedX = (match->first().left + match->first().right) / 2.0; searchViewport.rePos.normalizedY = (match->first().top + match->first().bottom) / 2.0; m_parent->setViewport( searchViewport, 0, true ); } delete match; } // notify observers about highlights changes foreach(int pageNumber, *pagesToNotify) foreach(DocumentObserver *observer, m_observers) observer->notifyPageChanged( pageNumber, DocumentObserver::Highlights ); if (foundAMatch) emit m_parent->searchFinished( searchID, Document::MatchFound ); else emit m_parent->searchFinished( searchID, Document::NoMatchFound ); delete pagesToNotify; } void DocumentPrivate::doContinueAllDocumentSearch(void *pagesToNotifySet, void *pageMatchesMap, int currentPage, int searchID) { QMap< Page *, QVector > *pageMatches = static_cast< QMap< Page *, QVector > * >(pageMatchesMap); QSet< int > *pagesToNotify = static_cast< QSet< int > * >( pagesToNotifySet ); RunningSearch *search = m_searches.value(searchID); if (m_searchCancelled || !search) { typedef QVector MatchesVector; QApplication::restoreOverrideCursor(); if (search) search->isCurrentlySearching = false; emit m_parent->searchFinished( searchID, Document::SearchCancelled ); foreach(const MatchesVector &mv, *pageMatches) qDeleteAll(mv); delete pageMatches; delete pagesToNotify; return; } if (currentPage < m_pagesVector.count()) { // get page (from the first to the last) Page *page = m_pagesVector.at(currentPage); int pageNumber = page->number(); // redundant? is it == currentPage ? // request search page if needed if ( !page->hasTextPage() ) m_parent->requestTextPage( pageNumber ); // loop on a page adding highlights for all found items RegularAreaRect * lastMatch = 0; while ( 1 ) { if ( lastMatch ) lastMatch = page->findText( searchID, search->cachedString, NextResult, search->cachedCaseSensitivity, lastMatch ); else lastMatch = page->findText( searchID, search->cachedString, FromTop, search->cachedCaseSensitivity ); if ( !lastMatch ) break; // add highligh rect to the matches map (*pageMatches)[page].append(lastMatch); } delete lastMatch; QMetaObject::invokeMethod(m_parent, "doContinueAllDocumentSearch", Qt::QueuedConnection, Q_ARG(void *, pagesToNotifySet), Q_ARG(void *, pageMatches), Q_ARG(int, currentPage + 1), Q_ARG(int, searchID)); } else { // reset cursor to previous shape QApplication::restoreOverrideCursor(); search->isCurrentlySearching = false; bool foundAMatch = pageMatches->count() != 0; QMap< Page *, QVector >::const_iterator it, itEnd; it = pageMatches->constBegin(); itEnd = pageMatches->constEnd(); for ( ; it != itEnd; ++it) { foreach(RegularAreaRect *match, it.value()) { it.key()->d->setHighlight( searchID, match, search->cachedColor ); delete match; } search->highlightedPages.insert( it.key()->number() ); pagesToNotify->insert( it.key()->number() ); } foreach(DocumentObserver *observer, m_observers) observer->notifySetup( m_pagesVector, 0 ); // notify observers about highlights changes foreach(int pageNumber, *pagesToNotify) foreach(DocumentObserver *observer, m_observers) observer->notifyPageChanged( pageNumber, DocumentObserver::Highlights ); if (foundAMatch) emit m_parent->searchFinished(searchID, Document::MatchFound ); else emit m_parent->searchFinished( searchID, Document::NoMatchFound ); delete pageMatches; delete pagesToNotify; } } void DocumentPrivate::doContinueGooglesDocumentSearch(void *pagesToNotifySet, void *pageMatchesMap, int currentPage, int searchID, const QStringList & words) { typedef QPair MatchColor; QMap< Page *, QVector > *pageMatches = static_cast< QMap< Page *, QVector > * >(pageMatchesMap); QSet< int > *pagesToNotify = static_cast< QSet< int > * >( pagesToNotifySet ); RunningSearch *search = m_searches.value(searchID); if (m_searchCancelled || !search) { typedef QVector MatchesVector; QApplication::restoreOverrideCursor(); if (search) search->isCurrentlySearching = false; emit m_parent->searchFinished( searchID, Document::SearchCancelled ); foreach(const MatchesVector &mv, *pageMatches) { foreach(const MatchColor &mc, mv) delete mc.first; } delete pageMatches; delete pagesToNotify; return; } const int wordCount = words.count(); const int hueStep = (wordCount > 1) ? (60 / (wordCount - 1)) : 60; int baseHue, baseSat, baseVal; search->cachedColor.getHsv( &baseHue, &baseSat, &baseVal ); if (currentPage < m_pagesVector.count()) { // get page (from the first to the last) Page *page = m_pagesVector.at(currentPage); int pageNumber = page->number(); // redundant? is it == currentPage ? // request search page if needed if ( !page->hasTextPage() ) m_parent->requestTextPage( pageNumber ); // loop on a page adding highlights for all found items bool allMatched = wordCount > 0, anyMatched = false; for ( int w = 0; w < wordCount; w++ ) { const QString &word = words[ w ]; int newHue = baseHue - w * hueStep; if ( newHue < 0 ) newHue += 360; QColor wordColor = QColor::fromHsv( newHue, baseSat, baseVal ); RegularAreaRect * lastMatch = 0; // add all highlights for current word bool wordMatched = false; while ( 1 ) { if ( lastMatch ) lastMatch = page->findText( searchID, word, NextResult, search->cachedCaseSensitivity, lastMatch ); else lastMatch = page->findText( searchID, word, FromTop, search->cachedCaseSensitivity); if ( !lastMatch ) break; // add highligh rect to the matches map (*pageMatches)[page].append(MatchColor(lastMatch, wordColor)); wordMatched = true; } allMatched = allMatched && wordMatched; anyMatched = anyMatched || wordMatched; } // if not all words are present in page, remove partial highlights const bool matchAll = search->cachedType == Document::GoogleAll; if ( !allMatched && matchAll ) { QVector &matches = (*pageMatches)[page]; foreach(const MatchColor &mc, matches) delete mc.first; pageMatches->remove(page); } QMetaObject::invokeMethod(m_parent, "doContinueGooglesDocumentSearch", Qt::QueuedConnection, Q_ARG(void *, pagesToNotifySet), Q_ARG(void *, pageMatches), Q_ARG(int, currentPage + 1), Q_ARG(int, searchID), Q_ARG(QStringList, words)); } else { // reset cursor to previous shape QApplication::restoreOverrideCursor(); search->isCurrentlySearching = false; bool foundAMatch = pageMatches->count() != 0; QMap< Page *, QVector >::const_iterator it, itEnd; it = pageMatches->constBegin(); itEnd = pageMatches->constEnd(); for ( ; it != itEnd; ++it) { foreach(const MatchColor &mc, it.value()) { it.key()->d->setHighlight( searchID, mc.first, mc.second ); delete mc.first; } search->highlightedPages.insert( it.key()->number() ); pagesToNotify->insert( it.key()->number() ); } // send page lists to update observers (since some filter on bookmarks) foreach(DocumentObserver *observer, m_observers) observer->notifySetup( m_pagesVector, 0 ); // notify observers about highlights changes foreach(int pageNumber, *pagesToNotify) foreach(DocumentObserver *observer, m_observers) observer->notifyPageChanged( pageNumber, DocumentObserver::Highlights ); if (foundAMatch) emit m_parent->searchFinished( searchID, Document::MatchFound ); else emit m_parent->searchFinished( searchID, Document::NoMatchFound ); delete pageMatches; delete pagesToNotify; } } QVariant DocumentPrivate::documentMetaData( const Generator::DocumentMetaDataKey key, const QVariant &option ) const { switch ( key ) { case Generator::PaperColorMetaData: { bool giveDefault = option.toBool(); QColor color; if ( ( SettingsCore::renderMode() == SettingsCore::EnumRenderMode::Paper ) && SettingsCore::changeColors() ) { color = SettingsCore::paperColor(); } else if ( giveDefault ) { color = Qt::white; } return color; } break; case Generator::TextAntialiasMetaData: switch ( SettingsCore::textAntialias() ) { case SettingsCore::EnumTextAntialias::Enabled: return true; break; #if 0 case Settings::EnumTextAntialias::UseKDESettings: // TODO: read the KDE configuration return true; break; #endif case SettingsCore::EnumTextAntialias::Disabled: return false; break; } break; case Generator::GraphicsAntialiasMetaData: switch ( SettingsCore::graphicsAntialias() ) { case SettingsCore::EnumGraphicsAntialias::Enabled: return true; break; case SettingsCore::EnumGraphicsAntialias::Disabled: return false; break; } break; case Generator::TextHintingMetaData: switch ( SettingsCore::textHinting() ) { case SettingsCore::EnumTextHinting::Enabled: return true; break; case SettingsCore::EnumTextHinting::Disabled: return false; break; } break; } return QVariant(); } bool DocumentPrivate::isNormalizedRectangleFullyVisible( const Okular::NormalizedRect & rectOfInterest, int rectPage ) { bool rectFullyVisible = false; const QVector & visibleRects = m_parent->visiblePageRects(); QVector::const_iterator vEnd = visibleRects.end(); QVector::const_iterator vIt = visibleRects.begin(); for ( ; ( vIt != vEnd ) && !rectFullyVisible; ++vIt ) { if ( (*vIt)->pageNumber == rectPage && (*vIt)->rect.contains( rectOfInterest.left, rectOfInterest.top ) && (*vIt)->rect.contains( rectOfInterest.right, rectOfInterest.bottom ) ) { rectFullyVisible = true; } } return rectFullyVisible; } struct pdfsyncpoint { QString file; qlonglong x; qlonglong y; int row; int column; int page; }; void DocumentPrivate::loadSyncFile( const QString & filePath ) { QFile f( filePath + QLatin1String( "sync" ) ); if ( !f.open( QIODevice::ReadOnly ) ) return; QTextStream ts( &f ); // first row: core name of the pdf output const QString coreName = ts.readLine(); // second row: version string, in the form 'Version %u' QString versionstr = ts.readLine(); QRegExp versionre( QStringLiteral("Version (\\d+)") ); versionre.setCaseSensitivity( Qt::CaseInsensitive ); if ( !versionre.exactMatch( versionstr ) ) return; QHash points; QStack fileStack; int currentpage = -1; const QLatin1String texStr( ".tex" ); const QChar spaceChar = QChar::fromLatin1( ' ' ); fileStack.push( coreName + texStr ); const QSizeF dpi = m_generator->dpi(); QString line; while ( !ts.atEnd() ) { line = ts.readLine(); const QStringList tokens = line.split( spaceChar, QString::SkipEmptyParts ); const int tokenSize = tokens.count(); if ( tokenSize < 1 ) continue; if ( tokens.first() == QLatin1String( "l" ) && tokenSize >= 3 ) { int id = tokens.at( 1 ).toInt(); QHash::const_iterator it = points.constFind( id ); if ( it == points.constEnd() ) { pdfsyncpoint pt; pt.x = 0; pt.y = 0; pt.row = tokens.at( 2 ).toInt(); pt.column = 0; // TODO pt.page = -1; pt.file = fileStack.top(); points[ id ] = pt; } } else if ( tokens.first() == QLatin1String( "s" ) && tokenSize >= 2 ) { currentpage = tokens.at( 1 ).toInt() - 1; } else if ( tokens.first() == QLatin1String( "p*" ) && tokenSize >= 4 ) { // TODO qCDebug(OkularCoreDebug) << "PdfSync: 'p*' line ignored"; } else if ( tokens.first() == QLatin1String( "p" ) && tokenSize >= 4 ) { int id = tokens.at( 1 ).toInt(); QHash::iterator it = points.find( id ); if ( it != points.end() ) { it->x = tokens.at( 2 ).toInt(); it->y = tokens.at( 3 ).toInt(); it->page = currentpage; } } else if ( line.startsWith( QLatin1Char( '(' ) ) && tokenSize == 1 ) { QString newfile = line; // chop the leading '(' newfile.remove( 0, 1 ); if ( !newfile.endsWith( texStr ) ) { newfile += texStr; } fileStack.push( newfile ); } else if ( line == QLatin1String( ")" ) ) { if ( !fileStack.isEmpty() ) { fileStack.pop(); } else qCDebug(OkularCoreDebug) << "PdfSync: going one level down too much"; } else qCDebug(OkularCoreDebug).nospace() << "PdfSync: unknown line format: '" << line << "'"; } QVector< QLinkedList< Okular::SourceRefObjectRect * > > refRects( m_pagesVector.size() ); foreach ( const pdfsyncpoint& pt, points ) { // drop pdfsync points not completely valid if ( pt.page < 0 || pt.page >= m_pagesVector.size() ) continue; // magic numbers for TeX's RSU's (Ridiculously Small Units) conversion to pixels Okular::NormalizedPoint p( ( pt.x * dpi.width() ) / ( 72.27 * 65536.0 * m_pagesVector[pt.page]->width() ), ( pt.y * dpi.height() ) / ( 72.27 * 65536.0 * m_pagesVector[pt.page]->height() ) ); QString file = pt.file; Okular::SourceReference * sourceRef = new Okular::SourceReference( file, pt.row, pt.column ); refRects[ pt.page ].append( new Okular::SourceRefObjectRect( p, sourceRef ) ); } for ( int i = 0; i < refRects.size(); ++i ) if ( !refRects.at(i).isEmpty() ) m_pagesVector[i]->setSourceReferences( refRects.at(i) ); } Document::Document( QWidget *widget ) : QObject( 0 ), d( new DocumentPrivate( this ) ) { d->m_widget = widget; d->m_bookmarkManager = new BookmarkManager( d ); d->m_viewportIterator = d->m_viewportHistory.insert( d->m_viewportHistory.end(), DocumentViewport() ); d->m_undoStack = new QUndoStack(this); connect( SettingsCore::self(), SIGNAL(configChanged()), this, SLOT(_o_configChanged()) ); connect(d->m_undoStack, &QUndoStack::canUndoChanged, this, &Document::canUndoChanged); connect(d->m_undoStack, &QUndoStack::canRedoChanged, this, &Document::canRedoChanged); qRegisterMetaType(); } Document::~Document() { // delete generator, pages, and related stuff closeDocument(); QSet< View * >::const_iterator viewIt = d->m_views.constBegin(), viewEnd = d->m_views.constEnd(); for ( ; viewIt != viewEnd; ++viewIt ) { View *v = *viewIt; v->d_func()->document = 0; } // delete the bookmark manager delete d->m_bookmarkManager; // delete the loaded generators QHash< QString, GeneratorInfo >::const_iterator it = d->m_loadedGenerators.constBegin(), itEnd = d->m_loadedGenerators.constEnd(); for ( ; it != itEnd; ++it ) d->unloadGenerator( it.value() ); d->m_loadedGenerators.clear(); // delete the private structure delete d; } QString DocumentPrivate::docDataFileName(const QUrl &url, qint64 document_size) { QString fn = url.fileName(); fn = QString::number( document_size ) + QLatin1Char('.') + fn + QStringLiteral(".xml"); QString docdataDir = QStandardPaths::writableLocation(QStandardPaths::GenericDataLocation) + QStringLiteral("/okular/docdata"); // make sure that the okular/docdata/ directory exists (probably this used to be handled by KStandardDirs) if (!QFileInfo::exists(docdataDir)) { qCDebug(OkularCoreDebug) << "creating docdata folder" << docdataDir; QDir().mkpath(docdataDir); } QString newokularfile = docdataDir + QLatin1Char('/') + fn; // we don't want to accidentally migrate old files when running unit tests if (!QFile::exists( newokularfile ) && !QStandardPaths::isTestModeEnabled()) { // see if an KDE4 file still exists static Kdelibs4Migration k4migration; QString oldfile = k4migration.locateLocal("data", QStringLiteral("okular/docdata/") + fn); if (oldfile.isEmpty()) { oldfile = k4migration.locateLocal("data", QStringLiteral("kpdf/") + fn); } if ( !oldfile.isEmpty() && QFile::exists( oldfile ) ) { // ### copy or move? if ( !QFile::copy( oldfile, newokularfile ) ) return QString(); } } return newokularfile; } QVector DocumentPrivate::availableGenerators() { static QVector result; if (result.isEmpty()) { result = KPluginLoader::findPlugins( QLatin1String ( "okular/generators" ) ); } return result; } KPluginMetaData DocumentPrivate::generatorForMimeType(const QMimeType& type, QWidget* widget, const QVector &triedOffers) { // First try to find an exact match, and then look for more general ones (e. g. the plain text one) // Ideally we would rank these by "closeness", but that might be overdoing it const QVector available = availableGenerators(); QVector offers; QVector exactMatches; QMimeDatabase mimeDatabase; for (const KPluginMetaData& md : available) { if (triedOffers.contains(md)) continue; foreach (const QString& supported, md.mimeTypes()) { QMimeType mimeType = mimeDatabase.mimeTypeForName(supported); if (mimeType == type && !exactMatches.contains(md)) { exactMatches << md; } if (type.inherits(supported) && !offers.contains(md)) { offers << md; } } } if (!exactMatches.isEmpty()) { offers = exactMatches; } if (offers.isEmpty()) { return KPluginMetaData(); } int hRank=0; // best ranked offer search int offercount = offers.size(); if (offercount > 1) { // sort the offers: the offers with an higher priority come before auto cmp = [](const KPluginMetaData& s1, const KPluginMetaData& s2) { const QString property = QStringLiteral("X-KDE-Priority"); return s1.rawData()[property].toInt() > s2.rawData()[property].toInt(); }; std::stable_sort(offers.begin(), offers.end(), cmp); if (SettingsCore::chooseGenerators()) { QStringList list; for (int i = 0; i < offercount; ++i) { list << offers.at(i).pluginId(); } ChooseEngineDialog choose(list, type, widget); if (choose.exec() == QDialog::Rejected) return KPluginMetaData(); hRank = choose.selectedGenerator(); } } Q_ASSERT(hRank < offers.size()); return offers.at(hRank); } Document::OpenResult Document::openDocument(const QString & docFile, const QUrl &url, const QMimeType &_mime, const QString & password ) { QMimeDatabase db; QMimeType mime = _mime; QByteArray filedata; qint64 document_size = -1; bool isstdin = url.fileName() == QLatin1String( "-" ); bool triedMimeFromFileContent = false; if ( !isstdin ) { if ( !mime.isValid() ) return OpenError; // docFile is always local so we can use QFileInfo on it QFileInfo fileReadTest( docFile ); if ( fileReadTest.isFile() && !fileReadTest.isReadable() ) { d->m_docFileName.clear(); return OpenError; } // determine the related "xml document-info" filename d->m_url = url; d->m_docFileName = docFile; if ( url.isLocalFile() && !d->m_archiveData ) { document_size = fileReadTest.size(); d->m_xmlFileName = DocumentPrivate::docDataFileName(url, document_size); } } else { QFile qstdin; qstdin.open( stdin, QIODevice::ReadOnly ); filedata = qstdin.readAll(); mime = db.mimeTypeForData( filedata ); if ( !mime.isValid() || mime.isDefault() ) return OpenError; document_size = filedata.size(); triedMimeFromFileContent = true; } // 0. load Generator // request only valid non-disabled plugins suitable for the mimetype KPluginMetaData offer = DocumentPrivate::generatorForMimeType(mime, d->m_widget); if ( !offer.isValid() && !triedMimeFromFileContent ) { QMimeType newmime = db.mimeTypeForFile(docFile, QMimeDatabase::MatchExtension); triedMimeFromFileContent = true; if ( newmime != mime ) { mime = newmime; offer = DocumentPrivate::generatorForMimeType(mime, d->m_widget); } if ( !offer.isValid() ) { // There's still no offers, do a final mime search based on the filename // We need this because sometimes (e.g. when downloading from a webserver) the mimetype we // use is the one fed by the server, that may be wrong newmime = db.mimeTypeForUrl( url ); if ( !newmime.isDefault() && newmime != mime ) { mime = newmime; offer = DocumentPrivate::generatorForMimeType(mime, d->m_widget); } } } if (!offer.isValid()) { emit error( i18n( "Can not find a plugin which is able to handle the document being passed." ), -1 ); qCWarning(OkularCoreDebug).nospace() << "No plugin for mimetype '" << mime.name() << "'."; return OpenError; } // 1. load Document OpenResult openResult = d->openDocumentInternal( offer, isstdin, docFile, filedata, password ); if ( openResult == OpenError ) { QVector triedOffers; triedOffers << offer; offer = DocumentPrivate::generatorForMimeType(mime, d->m_widget, triedOffers); while ( offer.isValid() ) { openResult = d->openDocumentInternal( offer, isstdin, docFile, filedata, password ); if ( openResult == OpenError ) { triedOffers << offer; offer = DocumentPrivate::generatorForMimeType(mime, d->m_widget, triedOffers); } else break; } if (openResult == OpenError && !triedMimeFromFileContent ) { QMimeType newmime = db.mimeTypeForFile(docFile, QMimeDatabase::MatchExtension); triedMimeFromFileContent = true; if ( newmime != mime ) { mime = newmime; offer = DocumentPrivate::generatorForMimeType(mime, d->m_widget, triedOffers); while ( offer.isValid() ) { openResult = d->openDocumentInternal( offer, isstdin, docFile, filedata, password ); if ( openResult == OpenError ) { triedOffers << offer; offer = DocumentPrivate::generatorForMimeType(mime, d->m_widget, triedOffers); } else break; } } } if ( openResult == OpenSuccess ) { // Clear errors, since we're trying various generators, maybe one of them errored out // but we finally succeeded // TODO one can still see the error message animating out but since this is a very rare // condition we can leave this for future work emit error( QString(), -1 ); } } if ( openResult != OpenSuccess ) { return openResult; } // no need to check for the existence of a synctex file, no parser will be // created if none exists d->m_synctex_scanner = synctex_scanner_new_with_output_file( QFile::encodeName( docFile ).constData(), 0, 1); if ( !d->m_synctex_scanner && QFile::exists(docFile + QLatin1String( "sync" ) ) ) { d->loadSyncFile(docFile); } d->m_generatorName = offer.pluginId(); d->m_pageController = new PageController(); connect( d->m_pageController, SIGNAL(rotationFinished(int,Okular::Page*)), this, SLOT(rotationFinished(int,Okular::Page*)) ); bool containsExternalAnnotations = false; foreach ( Page * p, d->m_pagesVector ) { p->d->m_doc = d; if ( !p->annotations().empty() ) containsExternalAnnotations = true; } // Be quiet while restoring local annotations d->m_showWarningLimitedAnnotSupport = false; d->m_annotationsNeedSaveAs = false; // 2. load Additional Data (bookmarks, local annotations and metadata) about the document if ( d->m_archiveData ) { d->loadDocumentInfo( d->m_archiveData->metadataFile ); d->m_annotationsNeedSaveAs = true; } else { d->loadDocumentInfo(); d->m_annotationsNeedSaveAs = ( d->canAddAnnotationsNatively() && containsExternalAnnotations ); } d->m_showWarningLimitedAnnotSupport = true; d->m_bookmarkManager->setUrl( d->m_url ); // 3. setup observers inernal lists and data foreachObserver( notifySetup( d->m_pagesVector, DocumentObserver::DocumentChanged ) ); // 4. set initial page (restoring the page saved in xml if loaded) DocumentViewport loadedViewport = (*d->m_viewportIterator); if ( loadedViewport.isValid() ) { (*d->m_viewportIterator) = DocumentViewport(); if ( loadedViewport.pageNumber >= (int)d->m_pagesVector.size() ) loadedViewport.pageNumber = d->m_pagesVector.size() - 1; } else loadedViewport.pageNumber = 0; setViewport( loadedViewport ); // start bookmark saver timer if ( !d->m_saveBookmarksTimer ) { d->m_saveBookmarksTimer = new QTimer( this ); connect( d->m_saveBookmarksTimer, SIGNAL(timeout()), this, SLOT(saveDocumentInfo()) ); } d->m_saveBookmarksTimer->start( 5 * 60 * 1000 ); // start memory check timer if ( !d->m_memCheckTimer ) { d->m_memCheckTimer = new QTimer( this ); connect( d->m_memCheckTimer, SIGNAL(timeout()), this, SLOT(slotTimedMemoryCheck()) ); } d->m_memCheckTimer->start( 2000 ); const DocumentViewport nextViewport = d->nextDocumentViewport(); if ( nextViewport.isValid() ) { setViewport( nextViewport ); d->m_nextDocumentViewport = DocumentViewport(); d->m_nextDocumentDestination = QString(); } AudioPlayer::instance()->d->m_currentDocument = isstdin ? QUrl() : d->m_url; d->m_docSize = document_size; const QStringList docScripts = d->m_generator->metaData( QStringLiteral("DocumentScripts"), QStringLiteral ( "JavaScript" ) ).toStringList(); if ( !docScripts.isEmpty() ) { d->m_scripter = new Scripter( d ); Q_FOREACH ( const QString &docscript, docScripts ) { d->m_scripter->execute( JavaScript, docscript ); } } return OpenSuccess; } KXMLGUIClient* Document::guiClient() { if ( d->m_generator ) { Okular::GuiInterface * iface = qobject_cast< Okular::GuiInterface * >( d->m_generator ); if ( iface ) return iface->guiClient(); } return 0; } void Document::closeDocument() { // check if there's anything to close... if ( !d->m_generator ) return; delete d->m_pageController; d->m_pageController = 0; delete d->m_scripter; d->m_scripter = 0; // remove requests left in queue d->m_pixmapRequestsMutex.lock(); QLinkedList< PixmapRequest * >::const_iterator sIt = d->m_pixmapRequestsStack.constBegin(); QLinkedList< PixmapRequest * >::const_iterator sEnd = d->m_pixmapRequestsStack.constEnd(); for ( ; sIt != sEnd; ++sIt ) delete *sIt; d->m_pixmapRequestsStack.clear(); d->m_pixmapRequestsMutex.unlock(); QEventLoop loop; bool startEventLoop = false; do { d->m_pixmapRequestsMutex.lock(); startEventLoop = !d->m_executingPixmapRequests.isEmpty(); d->m_pixmapRequestsMutex.unlock(); if ( startEventLoop ) { d->m_closingLoop = &loop; loop.exec(); d->m_closingLoop = 0; } } while ( startEventLoop ); if ( d->m_fontThread ) { disconnect( d->m_fontThread, 0, this, 0 ); d->m_fontThread->stopExtraction(); d->m_fontThread->wait(); d->m_fontThread = 0; } // stop any audio playback AudioPlayer::instance()->stopPlaybacks(); // close the current document and save document info if a document is still opened if ( d->m_generator && d->m_pagesVector.size() > 0 ) { d->saveDocumentInfo(); d->m_generator->closeDocument(); } if ( d->m_synctex_scanner ) { synctex_scanner_free( d->m_synctex_scanner ); d->m_synctex_scanner = 0; } // stop timers if ( d->m_memCheckTimer ) d->m_memCheckTimer->stop(); if ( d->m_saveBookmarksTimer ) d->m_saveBookmarksTimer->stop(); if ( d->m_generator ) { // disconnect the generator from this document ... d->m_generator->d_func()->m_document = 0; // .. and this document from the generator signals disconnect( d->m_generator, 0, this, 0 ); QHash< QString, GeneratorInfo >::const_iterator genIt = d->m_loadedGenerators.constFind( d->m_generatorName ); Q_ASSERT( genIt != d->m_loadedGenerators.constEnd() ); } d->m_generator = 0; d->m_generatorName = QString(); d->m_url = QUrl(); d->m_walletGenerator = 0; d->m_docFileName = QString(); d->m_xmlFileName = QString(); delete d->m_tempFile; d->m_tempFile = 0; delete d->m_archiveData; d->m_archiveData = 0; d->m_docSize = -1; d->m_exportCached = false; d->m_exportFormats.clear(); d->m_exportToText = ExportFormat(); d->m_fontsCached = false; d->m_fontsCache.clear(); d->m_rotation = Rotation0; // send an empty list to observers (to free their data) foreachObserver( notifySetup( QVector< Page * >(), DocumentObserver::DocumentChanged ) ); // delete pages and clear 'd->m_pagesVector' container QVector< Page * >::const_iterator pIt = d->m_pagesVector.constBegin(); QVector< Page * >::const_iterator pEnd = d->m_pagesVector.constEnd(); for ( ; pIt != pEnd; ++pIt ) delete *pIt; d->m_pagesVector.clear(); // clear 'memory allocation' descriptors qDeleteAll( d->m_allocatedPixmaps ); d->m_allocatedPixmaps.clear(); // clear 'running searches' descriptors QMap< int, RunningSearch * >::const_iterator rIt = d->m_searches.constBegin(); QMap< int, RunningSearch * >::const_iterator rEnd = d->m_searches.constEnd(); for ( ; rIt != rEnd; ++rIt ) delete *rIt; d->m_searches.clear(); // clear the visible areas and notify the observers QVector< VisiblePageRect * >::const_iterator vIt = d->m_pageRects.constBegin(); QVector< VisiblePageRect * >::const_iterator vEnd = d->m_pageRects.constEnd(); for ( ; vIt != vEnd; ++vIt ) delete *vIt; d->m_pageRects.clear(); foreachObserver( notifyVisibleRectsChanged() ); // reset internal variables d->m_viewportHistory.clear(); d->m_viewportHistory.append( DocumentViewport() ); d->m_viewportIterator = d->m_viewportHistory.begin(); d->m_allocatedPixmapsTotalMemory = 0; d->m_allocatedTextPagesFifo.clear(); d->m_pageSize = PageSize(); d->m_pageSizes.clear(); d->m_documentInfo = DocumentInfo(); d->m_documentInfoAskedKeys.clear(); AudioPlayer::instance()->d->m_currentDocument = QUrl(); d->m_undoStack->clear(); } void Document::addObserver( DocumentObserver * pObserver ) { Q_ASSERT( !d->m_observers.contains( pObserver ) ); d->m_observers << pObserver; // if the observer is added while a document is already opened, tell it if ( !d->m_pagesVector.isEmpty() ) { pObserver->notifySetup( d->m_pagesVector, DocumentObserver::DocumentChanged ); pObserver->notifyViewportChanged( false /*disables smoothMove*/ ); } } void Document::removeObserver( DocumentObserver * pObserver ) { // remove observer from the map. it won't receive notifications anymore if ( d->m_observers.contains( pObserver ) ) { // free observer's pixmap data QVector::const_iterator it = d->m_pagesVector.constBegin(), end = d->m_pagesVector.constEnd(); for ( ; it != end; ++it ) (*it)->deletePixmap( pObserver ); // [MEM] free observer's allocation descriptors QLinkedList< AllocatedPixmap * >::iterator aIt = d->m_allocatedPixmaps.begin(); QLinkedList< AllocatedPixmap * >::iterator aEnd = d->m_allocatedPixmaps.end(); while ( aIt != aEnd ) { AllocatedPixmap * p = *aIt; if ( p->observer == pObserver ) { aIt = d->m_allocatedPixmaps.erase( aIt ); delete p; } else ++aIt; } // delete observer entry from the map d->m_observers.remove( pObserver ); } } void Document::reparseConfig() { // reparse generator config and if something changed clear Pages bool configchanged = false; if ( d->m_generator ) { Okular::ConfigInterface * iface = qobject_cast< Okular::ConfigInterface * >( d->m_generator ); if ( iface ) configchanged = iface->reparseConfig(); } if ( configchanged ) { // invalidate pixmaps QVector::const_iterator it = d->m_pagesVector.constBegin(), end = d->m_pagesVector.constEnd(); for ( ; it != end; ++it ) { (*it)->deletePixmaps(); } // [MEM] remove allocation descriptors qDeleteAll( d->m_allocatedPixmaps ); d->m_allocatedPixmaps.clear(); d->m_allocatedPixmapsTotalMemory = 0; // send reload signals to observers foreachObserver( notifyContentsCleared( DocumentObserver::Pixmap ) ); } // free memory if in 'low' profile if ( SettingsCore::memoryLevel() == SettingsCore::EnumMemoryLevel::Low && !d->m_allocatedPixmaps.isEmpty() && !d->m_pagesVector.isEmpty() ) d->cleanupPixmapMemory(); } bool Document::isOpened() const { return d->m_generator; } bool Document::canConfigurePrinter( ) const { if ( d->m_generator ) { Okular::PrintInterface * iface = qobject_cast< Okular::PrintInterface * >( d->m_generator ); return iface ? true : false; } else return 0; } DocumentInfo Document::documentInfo() const { QSet keys; for (Okular::DocumentInfo::Key ks = Okular::DocumentInfo::Title; ks < Okular::DocumentInfo::Invalid; ks = Okular::DocumentInfo::Key( ks+1 ) ) { keys << ks; } return documentInfo( keys ); } DocumentInfo Document::documentInfo( const QSet &keys ) const { DocumentInfo result = d->m_documentInfo; const QSet missingKeys = keys - d->m_documentInfoAskedKeys; if ( d->m_generator && !missingKeys.isEmpty() ) { DocumentInfo info = d->m_generator->generateDocumentInfo( missingKeys ); if ( missingKeys.contains( DocumentInfo::FilePath ) ) { info.set( DocumentInfo::FilePath, currentDocument().toDisplayString() ); } if ( d->m_docSize != -1 && missingKeys.contains( DocumentInfo::DocumentSize ) ) { const QString sizeString = KFormat().formatByteSize( d->m_docSize ); info.set( DocumentInfo::DocumentSize, sizeString ); } if ( missingKeys.contains( DocumentInfo::PagesSize ) ) { const QString pagesSize = d->pagesSizeString(); if ( !pagesSize.isEmpty() ) { info.set( DocumentInfo::PagesSize, pagesSize ); } } if ( missingKeys.contains( DocumentInfo::Pages ) && info.get( DocumentInfo::Pages ).isEmpty() ) { info.set( DocumentInfo::Pages, QString::number( this->pages() ) ); } d->m_documentInfo.d->values.unite(info.d->values); d->m_documentInfo.d->titles.unite(info.d->titles); result.d->values.unite(info.d->values); result.d->titles.unite(info.d->titles); } d->m_documentInfoAskedKeys += keys; return result; } const DocumentSynopsis * Document::documentSynopsis() const { return d->m_generator ? d->m_generator->generateDocumentSynopsis() : NULL; } void Document::startFontReading() { if ( !d->m_generator || !d->m_generator->hasFeature( Generator::FontInfo ) || d->m_fontThread ) return; if ( d->m_fontsCached ) { // in case we have cached fonts, simulate a reading // this way the API is the same, and users no need to care about the // internal caching for ( int i = 0; i < d->m_fontsCache.count(); ++i ) { emit gotFont( d->m_fontsCache.at( i ) ); emit fontReadingProgress( i / pages() ); } emit fontReadingEnded(); return; } d->m_fontThread = new FontExtractionThread( d->m_generator, pages() ); connect( d->m_fontThread, SIGNAL(gotFont(Okular::FontInfo)), this, SLOT(fontReadingGotFont(Okular::FontInfo)) ); connect( d->m_fontThread.data(), SIGNAL(progress(int)), this, SLOT(slotFontReadingProgress(int)) ); d->m_fontThread->startExtraction( /*d->m_generator->hasFeature( Generator::Threaded )*/true ); } void Document::stopFontReading() { if ( !d->m_fontThread ) return; disconnect( d->m_fontThread, 0, this, 0 ); d->m_fontThread->stopExtraction(); d->m_fontThread = 0; d->m_fontsCache.clear(); } bool Document::canProvideFontInformation() const { return d->m_generator ? d->m_generator->hasFeature( Generator::FontInfo ) : false; } const QList *Document::embeddedFiles() const { return d->m_generator ? d->m_generator->embeddedFiles() : NULL; } const Page * Document::page( int n ) const { return ( n < d->m_pagesVector.count() ) ? d->m_pagesVector.at(n) : 0; } const DocumentViewport & Document::viewport() const { return (*d->m_viewportIterator); } const QVector< VisiblePageRect * > & Document::visiblePageRects() const { return d->m_pageRects; } void Document::setVisiblePageRects( const QVector< VisiblePageRect * > & visiblePageRects, DocumentObserver *excludeObserver ) { QVector< VisiblePageRect * >::const_iterator vIt = d->m_pageRects.constBegin(); QVector< VisiblePageRect * >::const_iterator vEnd = d->m_pageRects.constEnd(); for ( ; vIt != vEnd; ++vIt ) delete *vIt; d->m_pageRects = visiblePageRects; // notify change to all other (different from id) observers foreach(DocumentObserver *o, d->m_observers) if ( o != excludeObserver ) o->notifyVisibleRectsChanged(); } uint Document::currentPage() const { return (*d->m_viewportIterator).pageNumber; } uint Document::pages() const { return d->m_pagesVector.size(); } QUrl Document::currentDocument() const { return d->m_url; } bool Document::isAllowed( Permission action ) const { if ( action == Okular::AllowNotes && !d->m_annotationEditingEnabled ) return false; #if !OKULAR_FORCE_DRM if ( KAuthorized::authorize( QStringLiteral("skip_drm") ) && !SettingsCore::obeyDRM() ) return true; #endif return d->m_generator ? d->m_generator->isAllowed( action ) : false; } bool Document::supportsSearching() const { return d->m_generator ? d->m_generator->hasFeature( Generator::TextExtraction ) : false; } bool Document::supportsPageSizes() const { return d->m_generator ? d->m_generator->hasFeature( Generator::PageSizes ) : false; } bool Document::supportsTiles() const { return d->m_generator ? d->m_generator->hasFeature( Generator::TiledRendering ) : false; } PageSize::List Document::pageSizes() const { if ( d->m_generator ) { if ( d->m_pageSizes.isEmpty() ) d->m_pageSizes = d->m_generator->pageSizes(); return d->m_pageSizes; } return PageSize::List(); } bool Document::canExportToText() const { if ( !d->m_generator ) return false; d->cacheExportFormats(); return !d->m_exportToText.isNull(); } bool Document::exportToText( const QString& fileName ) const { if ( !d->m_generator ) return false; d->cacheExportFormats(); if ( d->m_exportToText.isNull() ) return false; return d->m_generator->exportTo( fileName, d->m_exportToText ); } ExportFormat::List Document::exportFormats() const { if ( !d->m_generator ) return ExportFormat::List(); d->cacheExportFormats(); return d->m_exportFormats; } bool Document::exportTo( const QString& fileName, const ExportFormat& format ) const { return d->m_generator ? d->m_generator->exportTo( fileName, format ) : false; } bool Document::historyAtBegin() const { return d->m_viewportIterator == d->m_viewportHistory.begin(); } bool Document::historyAtEnd() const { return d->m_viewportIterator == --(d->m_viewportHistory.end()); } QVariant Document::metaData( const QString & key, const QVariant & option ) const { // if option starts with "src:" assume that we are handling a // source reference if ( key == QLatin1String("NamedViewport") && option.toString().startsWith( QLatin1String("src:"), Qt::CaseInsensitive ) && d->m_synctex_scanner) { const QString reference = option.toString(); // The reference is of form "src:1111Filename", where "1111" // points to line number 1111 in the file "Filename". // Extract the file name and the numeral part from the reference string. // This will fail if Filename starts with a digit. QString name, lineString; // Remove "src:". Presence of substring has been checked before this // function is called. name = reference.mid( 4 ); // split int nameLength = name.length(); int i = 0; for( i = 0; i < nameLength; ++i ) { if ( !name[i].isDigit() ) break; } lineString = name.left( i ); name = name.mid( i ); // Remove spaces. name = name.trimmed(); lineString = lineString.trimmed(); // Convert line to integer. bool ok; int line = lineString.toInt( &ok ); if (!ok) line = -1; // Use column == -1 for now. if( synctex_display_query( d->m_synctex_scanner, QFile::encodeName(name).constData(), line, -1 ) > 0 ) { synctex_node_t node; // For now use the first hit. Could possibly be made smarter // in case there are multiple hits. while( ( node = synctex_next_result( d->m_synctex_scanner ) ) ) { Okular::DocumentViewport viewport; // TeX pages start at 1. viewport.pageNumber = synctex_node_page( node ) - 1; if ( viewport.pageNumber >= 0 ) { const QSizeF dpi = d->m_generator->dpi(); // TeX small points ... double px = (synctex_node_visible_h( node ) * dpi.width()) / 72.27; double py = (synctex_node_visible_v( node ) * dpi.height()) / 72.27; viewport.rePos.normalizedX = px / page(viewport.pageNumber)->width(); viewport.rePos.normalizedY = ( py + 0.5 ) / page(viewport.pageNumber)->height(); viewport.rePos.enabled = true; viewport.rePos.pos = Okular::DocumentViewport::Center; return viewport.toString(); } } } } return d->m_generator ? d->m_generator->metaData( key, option ) : QVariant(); } Rotation Document::rotation() const { return d->m_rotation; } QSizeF Document::allPagesSize() const { bool allPagesSameSize = true; QSizeF size; for (int i = 0; allPagesSameSize && i < d->m_pagesVector.count(); ++i) { const Page *p = d->m_pagesVector.at(i); if (i == 0) size = QSizeF(p->width(), p->height()); else { allPagesSameSize = (size == QSizeF(p->width(), p->height())); } } if (allPagesSameSize) return size; else return QSizeF(); } QString Document::pageSizeString(int page) const { if (d->m_generator) { if (d->m_generator->pagesSizeMetric() != Generator::None) { const Page *p = d->m_pagesVector.at( page ); return d->localizedSize(QSizeF(p->width(), p->height())); } } return QString(); } void Document::requestPixmaps( const QLinkedList< PixmapRequest * > & requests ) { requestPixmaps( requests, RemoveAllPrevious ); } void Document::requestPixmaps( const QLinkedList< PixmapRequest * > & requests, PixmapRequestFlags reqOptions ) { if ( requests.isEmpty() ) return; if ( !d->m_pageController ) { // delete requests.. QLinkedList< PixmapRequest * >::const_iterator rIt = requests.constBegin(), rEnd = requests.constEnd(); for ( ; rIt != rEnd; ++rIt ) delete *rIt; // ..and return return; } // 1. [CLEAN STACK] remove previous requests of requesterID // FIXME This assumes all requests come from the same observer, that is true atm but not enforced anywhere DocumentObserver *requesterObserver = requests.first()->observer(); QSet< int > requestedPages; { QLinkedList< PixmapRequest * >::const_iterator rIt = requests.constBegin(), rEnd = requests.constEnd(); for ( ; rIt != rEnd; ++rIt ) requestedPages.insert( (*rIt)->pageNumber() ); } const bool removeAllPrevious = reqOptions & RemoveAllPrevious; d->m_pixmapRequestsMutex.lock(); QLinkedList< PixmapRequest * >::iterator sIt = d->m_pixmapRequestsStack.begin(), sEnd = d->m_pixmapRequestsStack.end(); while ( sIt != sEnd ) { if ( (*sIt)->observer() == requesterObserver && ( removeAllPrevious || requestedPages.contains( (*sIt)->pageNumber() ) ) ) { // delete request and remove it from stack delete *sIt; sIt = d->m_pixmapRequestsStack.erase( sIt ); } else ++sIt; } // 2. [ADD TO STACK] add requests to stack QLinkedList< PixmapRequest * >::const_iterator rIt = requests.constBegin(), rEnd = requests.constEnd(); for ( ; rIt != rEnd; ++rIt ) { // set the 'page field' (see PixmapRequest) and check if it is valid PixmapRequest * request = *rIt; qCDebug(OkularCoreDebug).nospace() << "request observer=" << request->observer() << " " <width() << "x" << request->height() << "@" << request->pageNumber(); if ( d->m_pagesVector.value( request->pageNumber() ) == 0 ) { // skip requests referencing an invalid page (must not happen) delete request; continue; } request->d->mPage = d->m_pagesVector.value( request->pageNumber() ); if ( request->isTile() ) { // Change the current request rect so that only invalid tiles are // requested. Also make sure the rect is tile-aligned. NormalizedRect tilesRect; const QList tiles = request->d->tilesManager()->tilesAt( request->normalizedRect(), TilesManager::TerminalTile ); QList::const_iterator tIt = tiles.constBegin(), tEnd = tiles.constEnd(); while ( tIt != tEnd ) { const Tile &tile = *tIt; if ( !tile.isValid() ) { if ( tilesRect.isNull() ) tilesRect = tile.rect(); else tilesRect |= tile.rect(); } tIt++; } request->setNormalizedRect( tilesRect ); } if ( !request->asynchronous() ) request->d->mPriority = 0; // add request to the 'stack' at the right place if ( !request->priority() ) // add priority zero requests to the top of the stack d->m_pixmapRequestsStack.append( request ); else { // insert in stack sorted by priority sIt = d->m_pixmapRequestsStack.begin(); sEnd = d->m_pixmapRequestsStack.end(); while ( sIt != sEnd && (*sIt)->priority() > request->priority() ) ++sIt; d->m_pixmapRequestsStack.insert( sIt, request ); } } d->m_pixmapRequestsMutex.unlock(); // 3. [START FIRST GENERATION] if generator is ready, start a new generation, // or else (if gen is running) it will be started when the new contents will //come from generator (in requestDone()) // all handling of requests put into sendGeneratorPixmapRequest // if ( generator->canRequestPixmap() ) d->sendGeneratorPixmapRequest(); } void Document::requestTextPage( uint page ) { Page * kp = d->m_pagesVector[ page ]; if ( !d->m_generator || !kp ) return; // Memory management for TextPages d->m_generator->generateTextPage( kp ); } void DocumentPrivate::notifyAnnotationChanges( int page ) { int flags = DocumentObserver::Annotations; if ( m_annotationsNeedSaveAs ) flags |= DocumentObserver::NeedSaveAs; foreachObserverD( notifyPageChanged( page, flags ) ); } void Document::addPageAnnotation( int page, Annotation * annotation ) { // Transform annotation's base boundary rectangle into unrotated coordinates Page *p = d->m_pagesVector[page]; QTransform t = p->d->rotationMatrix(); annotation->d_ptr->baseTransform(t.inverted()); QUndoCommand *uc = new AddAnnotationCommand(this->d, annotation, page); d->m_undoStack->push(uc); } bool Document::canModifyPageAnnotation( const Annotation * annotation ) const { if ( !annotation || ( annotation->flags() & Annotation::DenyWrite ) ) return false; if ( !isAllowed(Okular::AllowNotes) ) return false; if ( ( annotation->flags() & Annotation::External ) && !d->canModifyExternalAnnotations() ) return false; switch ( annotation->subType() ) { case Annotation::AText: case Annotation::ALine: case Annotation::AGeom: case Annotation::AHighlight: case Annotation::AStamp: case Annotation::AInk: return true; default: return false; } } void Document::prepareToModifyAnnotationProperties( Annotation * annotation ) { Q_ASSERT(d->m_prevPropsOfAnnotBeingModified.isNull()); if (!d->m_prevPropsOfAnnotBeingModified.isNull()) { qCCritical(OkularCoreDebug) << "Error: Document::prepareToModifyAnnotationProperties has already been called since last call to Document::modifyPageAnnotationProperties"; return; } d->m_prevPropsOfAnnotBeingModified = annotation->getAnnotationPropertiesDomNode(); } void Document::modifyPageAnnotationProperties( int page, Annotation * annotation ) { Q_ASSERT(!d->m_prevPropsOfAnnotBeingModified.isNull()); if (d->m_prevPropsOfAnnotBeingModified.isNull()) { qCCritical(OkularCoreDebug) << "Error: Document::prepareToModifyAnnotationProperties must be called before Annotation is modified"; return; } QDomNode prevProps = d->m_prevPropsOfAnnotBeingModified; QUndoCommand *uc = new Okular::ModifyAnnotationPropertiesCommand( d, annotation, page, prevProps, annotation->getAnnotationPropertiesDomNode() ); d->m_undoStack->push( uc ); d->m_prevPropsOfAnnotBeingModified.clear(); } void Document::translatePageAnnotation(int page, Annotation* annotation, const NormalizedPoint & delta ) { int complete = (annotation->flags() & Okular::Annotation::BeingMoved) == 0; QUndoCommand *uc = new Okular::TranslateAnnotationCommand( d, annotation, page, delta, complete ); d->m_undoStack->push(uc); } void Document::adjustPageAnnotation( int page, Annotation *annotation, const Okular::NormalizedPoint & delta1, const Okular::NormalizedPoint & delta2 ) { const bool complete = (annotation->flags() & Okular::Annotation::BeingResized) == 0; QUndoCommand *uc = new Okular::AdjustAnnotationCommand( d, annotation, page, delta1, delta2, complete ); d->m_undoStack->push(uc); } void Document::editPageAnnotationContents( int page, Annotation* annotation, const QString & newContents, int newCursorPos, int prevCursorPos, int prevAnchorPos ) { QString prevContents = annotation->contents(); QUndoCommand *uc = new EditAnnotationContentsCommand( d, annotation, page, newContents, newCursorPos, prevContents, prevCursorPos, prevAnchorPos ); d->m_undoStack->push( uc ); } bool Document::canRemovePageAnnotation( const Annotation * annotation ) const { if ( !annotation || ( annotation->flags() & Annotation::DenyDelete ) ) return false; if ( ( annotation->flags() & Annotation::External ) && !d->canRemoveExternalAnnotations() ) return false; switch ( annotation->subType() ) { case Annotation::AText: case Annotation::ALine: case Annotation::AGeom: case Annotation::AHighlight: case Annotation::AStamp: case Annotation::AInk: case Annotation::ACaret: return true; default: return false; } } void Document::removePageAnnotation( int page, Annotation * annotation ) { QUndoCommand *uc = new RemoveAnnotationCommand(this->d, annotation, page); d->m_undoStack->push(uc); } void Document::removePageAnnotations( int page, const QList &annotations ) { d->m_undoStack->beginMacro(i18nc("remove a collection of annotations from the page", "remove annotations")); foreach(Annotation* annotation, annotations) { QUndoCommand *uc = new RemoveAnnotationCommand(this->d, annotation, page); d->m_undoStack->push(uc); } d->m_undoStack->endMacro(); } bool DocumentPrivate::canAddAnnotationsNatively() const { Okular::SaveInterface * iface = qobject_cast< Okular::SaveInterface * >( m_generator ); if ( iface && iface->supportsOption(Okular::SaveInterface::SaveChanges) && iface->annotationProxy() && iface->annotationProxy()->supports(AnnotationProxy::Addition) ) return true; return false; } bool DocumentPrivate::canModifyExternalAnnotations() const { Okular::SaveInterface * iface = qobject_cast< Okular::SaveInterface * >( m_generator ); if ( iface && iface->supportsOption(Okular::SaveInterface::SaveChanges) && iface->annotationProxy() && iface->annotationProxy()->supports(AnnotationProxy::Modification) ) return true; return false; } bool DocumentPrivate::canRemoveExternalAnnotations() const { Okular::SaveInterface * iface = qobject_cast< Okular::SaveInterface * >( m_generator ); if ( iface && iface->supportsOption(Okular::SaveInterface::SaveChanges) && iface->annotationProxy() && iface->annotationProxy()->supports(AnnotationProxy::Removal) ) return true; return false; } void Document::setPageTextSelection( int page, RegularAreaRect * rect, const QColor & color ) { Page * kp = d->m_pagesVector[ page ]; if ( !d->m_generator || !kp ) return; // add or remove the selection basing whether rect is null or not if ( rect ) kp->d->setTextSelections( rect, color ); else kp->d->deleteTextSelections(); // notify observers about the change foreachObserver( notifyPageChanged( page, DocumentObserver::TextSelection ) ); } bool Document::canUndo() const { return d->m_undoStack->canUndo(); } bool Document::canRedo() const { return d->m_undoStack->canRedo(); } /* REFERENCE IMPLEMENTATION: better calling setViewport from other code void Document::setNextPage() { // advance page and set viewport on observers if ( (*d->m_viewportIterator).pageNumber < (int)d->m_pagesVector.count() - 1 ) setViewport( DocumentViewport( (*d->m_viewportIterator).pageNumber + 1 ) ); } void Document::setPrevPage() { // go to previous page and set viewport on observers if ( (*d->m_viewportIterator).pageNumber > 0 ) setViewport( DocumentViewport( (*d->m_viewportIterator).pageNumber - 1 ) ); } */ void Document::setViewportPage( int page, DocumentObserver *excludeObserver, bool smoothMove ) { // clamp page in range [0 ... numPages-1] if ( page < 0 ) page = 0; else if ( page > (int)d->m_pagesVector.count() ) page = d->m_pagesVector.count() - 1; // make a viewport from the page and broadcast it setViewport( DocumentViewport( page ), excludeObserver, smoothMove ); } void Document::setViewport( const DocumentViewport & viewport, DocumentObserver *excludeObserver, bool smoothMove ) { if ( !viewport.isValid() ) { qCDebug(OkularCoreDebug) << "invalid viewport:" << viewport.toString(); return; } if ( viewport.pageNumber >= int(d->m_pagesVector.count()) ) { //qCDebug(OkularCoreDebug) << "viewport out of document:" << viewport.toString(); return; } // if already broadcasted, don't redo it DocumentViewport & oldViewport = *d->m_viewportIterator; // disabled by enrico on 2005-03-18 (less debug output) //if ( viewport == oldViewport ) // qCDebug(OkularCoreDebug) << "setViewport with the same viewport."; const int oldPageNumber = oldViewport.pageNumber; // set internal viewport taking care of history if ( oldViewport.pageNumber == viewport.pageNumber || !oldViewport.isValid() ) { // if page is unchanged save the viewport at current position in queue oldViewport = viewport; } else { // remove elements after viewportIterator in queue d->m_viewportHistory.erase( ++d->m_viewportIterator, d->m_viewportHistory.end() ); // keep the list to a reasonable size by removing head when needed if ( d->m_viewportHistory.count() >= OKULAR_HISTORY_MAXSTEPS ) d->m_viewportHistory.pop_front(); // add the item at the end of the queue d->m_viewportIterator = d->m_viewportHistory.insert( d->m_viewportHistory.end(), viewport ); } const int currentViewportPage = (*d->m_viewportIterator).pageNumber; + qDebug() << "PRES page" << oldPageNumber << currentViewportPage; + const bool currentPageChanged = (oldPageNumber != currentViewportPage); // notify change to all other (different from id) observers foreach(DocumentObserver *o, d->m_observers) { if ( o != excludeObserver ) o->notifyViewportChanged( smoothMove ); if ( currentPageChanged ) o->notifyCurrentPageChanged( oldPageNumber, currentViewportPage ); } } void Document::setZoom(int factor, DocumentObserver *excludeObserver) { // notify change to all other (different from id) observers foreach(DocumentObserver *o, d->m_observers) if (o != excludeObserver) o->notifyZoom( factor ); } void Document::setPrevViewport() // restore viewport from the history { if ( d->m_viewportIterator != d->m_viewportHistory.begin() ) { const int oldViewportPage = (*d->m_viewportIterator).pageNumber; // restore previous viewport and notify it to observers --d->m_viewportIterator; foreachObserver( notifyViewportChanged( true ) ); const int currentViewportPage = (*d->m_viewportIterator).pageNumber; if (oldViewportPage != currentViewportPage) foreachObserver( notifyCurrentPageChanged( oldViewportPage, currentViewportPage ) ); } } void Document::setNextViewport() // restore next viewport from the history { QLinkedList< DocumentViewport >::const_iterator nextIterator = d->m_viewportIterator; ++nextIterator; if ( nextIterator != d->m_viewportHistory.end() ) { const int oldViewportPage = (*d->m_viewportIterator).pageNumber; // restore next viewport and notify it to observers ++d->m_viewportIterator; foreachObserver( notifyViewportChanged( true ) ); const int currentViewportPage = (*d->m_viewportIterator).pageNumber; if (oldViewportPage != currentViewportPage) foreachObserver( notifyCurrentPageChanged( oldViewportPage, currentViewportPage ) ); } } void Document::setNextDocumentViewport( const DocumentViewport & viewport ) { d->m_nextDocumentViewport = viewport; } void Document::setNextDocumentDestination( const QString &namedDestination ) { d->m_nextDocumentDestination = namedDestination; } void Document::searchText( int searchID, const QString & text, bool fromStart, Qt::CaseSensitivity caseSensitivity, SearchType type, bool moveViewport, const QColor & color ) { d->m_searchCancelled = false; // safety checks: don't perform searches on empty or unsearchable docs if ( !d->m_generator || !d->m_generator->hasFeature( Generator::TextExtraction ) || d->m_pagesVector.isEmpty() ) { emit searchFinished( searchID, NoMatchFound ); return; } // if searchID search not recorded, create new descriptor and init params QMap< int, RunningSearch * >::iterator searchIt = d->m_searches.find( searchID ); if ( searchIt == d->m_searches.end() ) { RunningSearch * search = new RunningSearch(); search->continueOnPage = -1; searchIt = d->m_searches.insert( searchID, search ); } RunningSearch * s = *searchIt; // update search structure bool newText = text != s->cachedString; s->cachedString = text; s->cachedType = type; s->cachedCaseSensitivity = caseSensitivity; s->cachedViewportMove = moveViewport; s->cachedColor = color; s->isCurrentlySearching = true; // global data for search QSet< int > *pagesToNotify = new QSet< int >; // remove highlights from pages and queue them for notifying changes *pagesToNotify += s->highlightedPages; foreach(int pageNumber, s->highlightedPages) d->m_pagesVector.at(pageNumber)->d->deleteHighlights( searchID ); s->highlightedPages.clear(); // set hourglass cursor QApplication::setOverrideCursor( Qt::WaitCursor ); // 1. ALLDOC - proces all document marking pages if ( type == AllDocument ) { QMap< Page *, QVector > *pageMatches = new QMap< Page *, QVector >; // search and highlight 'text' (as a solid phrase) on all pages QMetaObject::invokeMethod(this, "doContinueAllDocumentSearch", Qt::QueuedConnection, Q_ARG(void *, pagesToNotify), Q_ARG(void *, pageMatches), Q_ARG(int, 0), Q_ARG(int, searchID)); } // 2. NEXTMATCH - find next matching item (or start from top) // 3. PREVMATCH - find previous matching item (or start from bottom) else if ( type == NextMatch || type == PreviousMatch ) { // find out from where to start/resume search from const bool forward = type == NextMatch; const int viewportPage = (*d->m_viewportIterator).pageNumber; const int fromStartSearchPage = forward ? 0 : d->m_pagesVector.count() - 1; int currentPage = fromStart ? fromStartSearchPage : ((s->continueOnPage != -1) ? s->continueOnPage : viewportPage); Page * lastPage = fromStart ? 0 : d->m_pagesVector[ currentPage ]; int pagesDone = 0; // continue checking last TextPage first (if it is the current page) RegularAreaRect * match = 0; if ( lastPage && lastPage->number() == s->continueOnPage ) { if ( newText ) match = lastPage->findText( searchID, text, forward ? FromTop : FromBottom, caseSensitivity ); else match = lastPage->findText( searchID, text, forward ? NextResult : PreviousResult, caseSensitivity, &s->continueOnMatch ); if ( !match ) { if (forward) currentPage++; else currentPage--; pagesDone++; } } s->pagesDone = pagesDone; DoContinueDirectionMatchSearchStruct *searchStruct = new DoContinueDirectionMatchSearchStruct(); searchStruct->pagesToNotify = pagesToNotify; searchStruct->match = match; searchStruct->currentPage = currentPage; searchStruct->searchID = searchID; QMetaObject::invokeMethod(this, "doContinueDirectionMatchSearch", Qt::QueuedConnection, Q_ARG(void *, searchStruct)); } // 4. GOOGLE* - process all document marking pages else if ( type == GoogleAll || type == GoogleAny ) { QMap< Page *, QVector< QPair > > *pageMatches = new QMap< Page *, QVector > >; const QStringList words = text.split( QLatin1Char ( ' ' ), QString::SkipEmptyParts ); // search and highlight every word in 'text' on all pages QMetaObject::invokeMethod(this, "doContinueGooglesDocumentSearch", Qt::QueuedConnection, Q_ARG(void *, pagesToNotify), Q_ARG(void *, pageMatches), Q_ARG(int, 0), Q_ARG(int, searchID), Q_ARG(QStringList, words)); } } void Document::continueSearch( int searchID ) { // check if searchID is present in runningSearches QMap< int, RunningSearch * >::const_iterator it = d->m_searches.constFind( searchID ); if ( it == d->m_searches.constEnd() ) { emit searchFinished( searchID, NoMatchFound ); return; } // start search with cached parameters from last search by searchID RunningSearch * p = *it; if ( !p->isCurrentlySearching ) searchText( searchID, p->cachedString, false, p->cachedCaseSensitivity, p->cachedType, p->cachedViewportMove, p->cachedColor ); } void Document::continueSearch( int searchID, SearchType type ) { // check if searchID is present in runningSearches QMap< int, RunningSearch * >::const_iterator it = d->m_searches.constFind( searchID ); if ( it == d->m_searches.constEnd() ) { emit searchFinished( searchID, NoMatchFound ); return; } // start search with cached parameters from last search by searchID RunningSearch * p = *it; if ( !p->isCurrentlySearching ) searchText( searchID, p->cachedString, false, p->cachedCaseSensitivity, type, p->cachedViewportMove, p->cachedColor ); } void Document::resetSearch( int searchID ) { // if we are closing down, don't bother doing anything if ( !d->m_generator ) return; // check if searchID is present in runningSearches QMap< int, RunningSearch * >::iterator searchIt = d->m_searches.find( searchID ); if ( searchIt == d->m_searches.end() ) return; // get previous parameters for search RunningSearch * s = *searchIt; // unhighlight pages and inform observers about that foreach(int pageNumber, s->highlightedPages) { d->m_pagesVector.at(pageNumber)->d->deleteHighlights( searchID ); foreachObserver( notifyPageChanged( pageNumber, DocumentObserver::Highlights ) ); } // send the setup signal too (to update views that filter on matches) foreachObserver( notifySetup( d->m_pagesVector, 0 ) ); // remove serch from the runningSearches list and delete it d->m_searches.erase( searchIt ); delete s; } void Document::cancelSearch() { d->m_searchCancelled = true; } void Document::undo() { d->m_undoStack->undo(); } void Document::redo() { d->m_undoStack->redo(); } void Document::editFormText( int pageNumber, Okular::FormFieldText* form, const QString & newContents, int newCursorPos, int prevCursorPos, int prevAnchorPos ) { QUndoCommand *uc = new EditFormTextCommand( this->d, form, pageNumber, newContents, newCursorPos, form->text(), prevCursorPos, prevAnchorPos ); d->m_undoStack->push( uc ); d->recalculateForms(); } void Document::editFormList( int pageNumber, FormFieldChoice* form, const QList< int > & newChoices ) { const QList< int > prevChoices = form->currentChoices(); QUndoCommand *uc = new EditFormListCommand( this->d, form, pageNumber, newChoices, prevChoices ); d->m_undoStack->push( uc ); d->recalculateForms(); } void Document::editFormCombo( int pageNumber, FormFieldChoice* form, const QString & newText, int newCursorPos, int prevCursorPos, int prevAnchorPos ) { QString prevText; if ( form->currentChoices().isEmpty() ) { prevText = form->editChoice(); } else { prevText = form->choices()[form->currentChoices().constFirst()]; } QUndoCommand *uc = new EditFormComboCommand( this->d, form, pageNumber, newText, newCursorPos, prevText, prevCursorPos, prevAnchorPos ); d->m_undoStack->push( uc ); d->recalculateForms(); } void Document::editFormButtons( int pageNumber, const QList< FormFieldButton* >& formButtons, const QList< bool >& newButtonStates ) { QUndoCommand *uc = new EditFormButtonsCommand( this->d, pageNumber, formButtons, newButtonStates ); d->m_undoStack->push( uc ); } void Document::reloadDocument() const { const int numOfPages = pages(); for( int i = currentPage(); i >= 0; i -- ) d->refreshPixmaps( i ); for( int i = currentPage() + 1; i < numOfPages; i ++ ) d->refreshPixmaps( i ); } BookmarkManager * Document::bookmarkManager() const { return d->m_bookmarkManager; } QList Document::bookmarkedPageList() const { QList list; uint docPages = pages(); //pages are 0-indexed internally, but 1-indexed externally for ( uint i = 0; i < docPages; i++ ) { if ( bookmarkManager()->isBookmarked( i ) ) { list << i + 1; } } return list; } QString Document::bookmarkedPageRange() const { // Code formerly in Part::slotPrint() // range detecting QString range; uint docPages = pages(); int startId = -1; int endId = -1; for ( uint i = 0; i < docPages; ++i ) { if ( bookmarkManager()->isBookmarked( i ) ) { if ( startId < 0 ) startId = i; if ( endId < 0 ) endId = startId; else ++endId; } else if ( startId >= 0 && endId >= 0 ) { if ( !range.isEmpty() ) range += QLatin1Char ( ',' ); if ( endId - startId > 0 ) range += QStringLiteral( "%1-%2" ).arg( startId + 1 ).arg( endId + 1 ); else range += QString::number( startId + 1 ); startId = -1; endId = -1; } } if ( startId >= 0 && endId >= 0 ) { if ( !range.isEmpty() ) range += QLatin1Char ( ',' ); if ( endId - startId > 0 ) range += QStringLiteral( "%1-%2" ).arg( startId + 1 ).arg( endId + 1 ); else range += QString::number( startId + 1 ); } return range; } void Document::processAction( const Action * action ) { if ( !action ) return; switch( action->actionType() ) { case Action::Goto: { const GotoAction * go = static_cast< const GotoAction * >( action ); d->m_nextDocumentViewport = go->destViewport(); d->m_nextDocumentDestination = go->destinationName(); // Explanation of why d->m_nextDocumentViewport is needed: // all openRelativeFile does is launch a signal telling we // want to open another URL, the problem is that when the file is // non local, the loading is done assynchronously so you can't // do a setViewport after the if as it was because you are doing the setViewport // on the old file and when the new arrives there is no setViewport for it and // it does not show anything // first open filename if link is pointing outside this document if ( go->isExternal() && !d->openRelativeFile( go->fileName() ) ) { qCWarning(OkularCoreDebug).nospace() << "Action: Error opening '" << go->fileName() << "'."; return; } else { const DocumentViewport nextViewport = d->nextDocumentViewport(); // skip local links that point to nowhere (broken ones) if ( !nextViewport.isValid() ) return; setViewport( nextViewport, 0, true ); d->m_nextDocumentViewport = DocumentViewport(); d->m_nextDocumentDestination = QString(); } } break; case Action::Execute: { const ExecuteAction * exe = static_cast< const ExecuteAction * >( action ); const QString fileName = exe->fileName(); if ( fileName.endsWith( QLatin1String(".pdf"), Qt::CaseInsensitive ) ) { d->openRelativeFile( fileName ); return; } // Albert: the only pdf i have that has that kind of link don't define // an application and use the fileName as the file to open QUrl url = d->giveAbsoluteUrl( fileName ); QMimeDatabase db; QMimeType mime = db.mimeTypeForUrl( url ); // Check executables if ( KRun::isExecutableFile( url, mime.name() ) ) { // Don't have any pdf that uses this code path, just a guess on how it should work if ( !exe->parameters().isEmpty() ) { url = d->giveAbsoluteUrl( exe->parameters() ); mime = db.mimeTypeForUrl( url ); if ( KRun::isExecutableFile( url, mime.name() ) ) { // this case is a link pointing to an executable with a parameter // that also is an executable, possibly a hand-crafted pdf KMessageBox::information( d->m_widget, i18n("The document is trying to execute an external application and, for your safety, Okular does not allow that.") ); return; } } else { // this case is a link pointing to an executable with no parameters // core developers find unacceptable executing it even after asking the user KMessageBox::information( d->m_widget, i18n("The document is trying to execute an external application and, for your safety, Okular does not allow that.") ); return; } } KService::Ptr ptr = KMimeTypeTrader::self()->preferredService( mime.name(), QStringLiteral("Application") ); if ( ptr ) { QList lst; lst.append( url ); KRun::runService( *ptr, lst, 0 ); } else KMessageBox::information( d->m_widget, i18n( "No application found for opening file of mimetype %1.", mime.name() ) ); } break; case Action::DocAction: { const DocumentAction * docaction = static_cast< const DocumentAction * >( action ); switch( docaction->documentActionType() ) { case DocumentAction::PageFirst: setViewportPage( 0 ); break; case DocumentAction::PagePrev: if ( (*d->m_viewportIterator).pageNumber > 0 ) setViewportPage( (*d->m_viewportIterator).pageNumber - 1 ); break; case DocumentAction::PageNext: if ( (*d->m_viewportIterator).pageNumber < (int)d->m_pagesVector.count() - 1 ) setViewportPage( (*d->m_viewportIterator).pageNumber + 1 ); break; case DocumentAction::PageLast: setViewportPage( d->m_pagesVector.count() - 1 ); break; case DocumentAction::HistoryBack: setPrevViewport(); break; case DocumentAction::HistoryForward: setNextViewport(); break; case DocumentAction::Quit: emit quit(); break; case DocumentAction::Presentation: emit linkPresentation(); break; case DocumentAction::EndPresentation: emit linkEndPresentation(); break; case DocumentAction::Find: emit linkFind(); break; case DocumentAction::GoToPage: emit linkGoToPage(); break; case DocumentAction::Close: emit close(); break; } } break; case Action::Browse: { const BrowseAction * browse = static_cast< const BrowseAction * >( action ); QString lilySource; int lilyRow = 0, lilyCol = 0; // if the url is a mailto one, invoke mailer if ( browse->url().scheme() == QLatin1String("mailto") ) { QDesktopServices::openUrl( browse->url() ); } else if ( extractLilyPondSourceReference( browse->url(), &lilySource, &lilyRow, &lilyCol ) ) { const SourceReference ref( lilySource, lilyRow, lilyCol ); processSourceReference( &ref ); } else { const QUrl url = browse->url(); // fix for #100366, documents with relative links that are the form of http:foo.pdf if ((url.scheme() == "http") && url.host().isEmpty() && url.fileName().endsWith("pdf")) { d->openRelativeFile(url.fileName()); return; } // handle documents with relative path if ( d->m_url.isValid() ) { const QUrl realUrl = KIO::upUrl(d->m_url).resolved(url); // KRun autodeletes new KRun( realUrl, d->m_widget ); } } } break; case Action::Sound: { const SoundAction * linksound = static_cast< const SoundAction * >( action ); AudioPlayer::instance()->playSound( linksound->sound(), linksound ); } break; case Action::Script: { const ScriptAction * linkscript = static_cast< const ScriptAction * >( action ); if ( !d->m_scripter ) d->m_scripter = new Scripter( d ); d->m_scripter->execute( linkscript->scriptType(), linkscript->script() ); } break; case Action::Movie: emit processMovieAction( static_cast< const MovieAction * >( action ) ); break; case Action::Rendition: { const RenditionAction * linkrendition = static_cast< const RenditionAction * >( action ); if ( !linkrendition->script().isEmpty() ) { if ( !d->m_scripter ) d->m_scripter = new Scripter( d ); d->m_scripter->execute( linkrendition->scriptType(), linkrendition->script() ); } emit processRenditionAction( static_cast< const RenditionAction * >( action ) ); } break; case Action::BackendOpaque: { d->m_generator->opaqueAction( static_cast< const BackendOpaqueAction * >( action ) ); } break; } } void Document::processSourceReference( const SourceReference * ref ) { if ( !ref ) return; const QUrl url = d->giveAbsoluteUrl( ref->fileName() ); if ( !url.isLocalFile() ) { qCDebug(OkularCoreDebug) << url.url() << "is not a local file."; return; } const QString absFileName = url.toLocalFile(); if ( !QFile::exists( absFileName ) ) { qCDebug(OkularCoreDebug) << "No such file:" << absFileName; return; } bool handled = false; emit sourceReferenceActivated(absFileName, ref->row(), ref->column(), &handled); if(handled) { return; } static QHash< int, QString > editors; // init the editors table if empty (on first run, usually) if ( editors.isEmpty() ) { editors = buildEditorsMap(); } QHash< int, QString >::const_iterator it = editors.constFind( SettingsCore::externalEditor() ); QString p; if ( it != editors.constEnd() ) p = *it; else p = SettingsCore::externalEditorCommand(); // custom editor not yet configured if ( p.isEmpty() ) return; // manually append the %f placeholder if not specified if ( p.indexOf( QLatin1String( "%f" ) ) == -1 ) p.append( QLatin1String( " %f" ) ); // replacing the placeholders QHash< QChar, QString > map; map.insert( QLatin1Char ( 'f' ), absFileName ); map.insert( QLatin1Char ( 'c' ), QString::number( ref->column() ) ); map.insert( QLatin1Char ( 'l' ), QString::number( ref->row() ) ); const QString cmd = KMacroExpander::expandMacrosShellQuote( p, map ); if ( cmd.isEmpty() ) return; const QStringList args = KShell::splitArgs( cmd ); if ( args.isEmpty() ) return; KProcess::startDetached( args ); } const SourceReference * Document::dynamicSourceReference( int pageNr, double absX, double absY ) { if ( !d->m_synctex_scanner ) return 0; const QSizeF dpi = d->m_generator->dpi(); if (synctex_edit_query(d->m_synctex_scanner, pageNr + 1, absX * 72. / dpi.width(), absY * 72. / dpi.height()) > 0) { synctex_node_t node; // TODO what should we do if there is really more than one node? while (( node = synctex_next_result( d->m_synctex_scanner ) )) { int line = synctex_node_line(node); int col = synctex_node_column(node); // column extraction does not seem to be implemented in synctex so far. set the SourceReference default value. if ( col == -1 ) { col = 0; } const char *name = synctex_scanner_get_name( d->m_synctex_scanner, synctex_node_tag( node ) ); return new Okular::SourceReference( QFile::decodeName( name ), line, col ); } } return 0; } Document::PrintingType Document::printingSupport() const { if ( d->m_generator ) { if ( d->m_generator->hasFeature( Generator::PrintNative ) ) { return NativePrinting; } #ifndef Q_OS_WIN if ( d->m_generator->hasFeature( Generator::PrintPostscript ) ) { return PostscriptPrinting; } #endif } return NoPrinting; } bool Document::supportsPrintToFile() const { return d->m_generator ? d->m_generator->hasFeature( Generator::PrintToFile ) : false; } bool Document::print( QPrinter &printer ) { return d->m_generator ? d->m_generator->print( printer ) : false; } QString Document::printError() const { Okular::Generator::PrintError err = Generator::UnknownPrintError; if ( d->m_generator ) { QMetaObject::invokeMethod( d->m_generator, "printError", Qt::DirectConnection, Q_RETURN_ARG(Okular::Generator::PrintError, err) ); } Q_ASSERT( err != Generator::NoPrintError ); switch ( err ) { case Generator::TemporaryFileOpenPrintError: return i18n( "Could not open a temporary file" ); case Generator::FileConversionPrintError: return i18n( "Print conversion failed" ); case Generator::PrintingProcessCrashPrintError: return i18n( "Printing process crashed" ); case Generator::PrintingProcessStartPrintError: return i18n( "Printing process could not start" ); case Generator::PrintToFilePrintError: return i18n( "Printing to file failed" ); case Generator::InvalidPrinterStatePrintError: return i18n( "Printer was in invalid state" ); case Generator::UnableToFindFilePrintError: return i18n( "Unable to find file to print" ); case Generator::NoFileToPrintError: return i18n( "There was no file to print" ); case Generator::NoBinaryToPrintError: return i18n( "Could not find a suitable binary for printing. Make sure CUPS lpr binary is available" ); case Generator::InvalidPageSizePrintError: return i18n( "The page print size is invalid" ); case Generator::NoPrintError: return QString(); case Generator::UnknownPrintError: return QString(); } return QString(); } QWidget* Document::printConfigurationWidget() const { if ( d->m_generator ) { PrintInterface * iface = qobject_cast< Okular::PrintInterface * >( d->m_generator ); return iface ? iface->printConfigurationWidget() : 0; } else return 0; } void Document::fillConfigDialog( KConfigDialog * dialog ) { if ( !dialog ) return; // ensure that we have all the generators with settings loaded QVector offers = DocumentPrivate::configurableGenerators(); d->loadServiceList( offers ); bool pagesAdded = false; QHash< QString, GeneratorInfo >::iterator it = d->m_loadedGenerators.begin(); QHash< QString, GeneratorInfo >::iterator itEnd = d->m_loadedGenerators.end(); for ( ; it != itEnd; ++it ) { Okular::ConfigInterface * iface = d->generatorConfig( it.value() ); if ( iface ) { iface->addPages( dialog ); pagesAdded = true; } } if ( pagesAdded ) { connect( dialog, SIGNAL(settingsChanged(QString)), this, SLOT(slotGeneratorConfigChanged(QString)) ); } } QVector DocumentPrivate::configurableGenerators() { const QVector available = availableGenerators(); QVector result; for (const KPluginMetaData& md : available) { if (md.rawData()[QStringLiteral("X-KDE-okularHasInternalSettings")].toBool()) { result << md; } } return result; } KPluginMetaData Document::generatorInfo() const { if (!d->m_generator) return KPluginMetaData(); auto genIt = d->m_loadedGenerators.constFind(d->m_generatorName); Q_ASSERT(genIt != d->m_loadedGenerators.constEnd()); return genIt.value().metadata; } int Document::configurableGenerators() const { return DocumentPrivate::configurableGenerators().size(); } QStringList Document::supportedMimeTypes() const { // TODO: make it a static member of DocumentPrivate? QStringList result = d->m_supportedMimeTypes; if (result.isEmpty()) { const QVector available = DocumentPrivate::availableGenerators(); for (const KPluginMetaData& md : available) { result << md.mimeTypes(); } // Remove duplicate mimetypes represented by different names QMimeDatabase mimeDatabase; QSet uniqueMimetypes; for (const QString &mimeName : result) { uniqueMimetypes.insert(mimeDatabase.mimeTypeForName(mimeName)); } result.clear(); for (const QMimeType &mimeType : uniqueMimetypes) { result.append(mimeType.name()); } // Sorting by mimetype name doesn't make a ton of sense, // but ensures that the list is ordered the same way every time qSort(result); d->m_supportedMimeTypes = result; } return result; } bool Document::canSaveChanges() const { if ( !d->m_generator ) return false; Q_ASSERT( !d->m_generatorName.isEmpty() ); QHash< QString, GeneratorInfo >::iterator genIt = d->m_loadedGenerators.find( d->m_generatorName ); Q_ASSERT( genIt != d->m_loadedGenerators.end() ); SaveInterface* saveIface = d->generatorSave( genIt.value() ); if ( !saveIface ) return false; return saveIface->supportsOption( SaveInterface::SaveChanges ); } bool Document::canSaveChanges( SaveCapability cap ) const { switch ( cap ) { case SaveFormsCapability: /* Assume that if the generator supports saving, forms can be saved. * We have no means to actually query the generator at the moment * TODO: Add some method to query the generator in SaveInterface */ return canSaveChanges(); case SaveAnnotationsCapability: return d->canAddAnnotationsNatively(); } return false; } bool Document::saveChanges( const QString &fileName ) { QString errorText; return saveChanges( fileName, &errorText ); } bool Document::saveChanges( const QString &fileName, QString *errorText ) { if ( !d->m_generator || fileName.isEmpty() ) return false; Q_ASSERT( !d->m_generatorName.isEmpty() ); QHash< QString, GeneratorInfo >::iterator genIt = d->m_loadedGenerators.find( d->m_generatorName ); Q_ASSERT( genIt != d->m_loadedGenerators.end() ); SaveInterface* saveIface = d->generatorSave( genIt.value() ); if ( !saveIface || !saveIface->supportsOption( SaveInterface::SaveChanges ) ) return false; return saveIface->save( fileName, SaveInterface::SaveChanges, errorText ); } void Document::registerView( View *view ) { if ( !view ) return; Document *viewDoc = view->viewDocument(); if ( viewDoc ) { // check if already registered for this document if ( viewDoc == this ) return; viewDoc->unregisterView( view ); } d->m_views.insert( view ); view->d_func()->document = d; } void Document::unregisterView( View *view ) { if ( !view ) return; Document *viewDoc = view->viewDocument(); if ( !viewDoc || viewDoc != this ) return; view->d_func()->document = 0; d->m_views.remove( view ); } QByteArray Document::fontData(const FontInfo &font) const { QByteArray result; if (d->m_generator) { QMetaObject::invokeMethod(d->m_generator, "requestFontData", Qt::DirectConnection, Q_ARG(Okular::FontInfo, font), Q_ARG(QByteArray *, &result)); } return result; } Document::OpenResult Document::openDocumentArchive( const QString & docFile, const QUrl & url, const QString & password ) { QMimeDatabase db; const QMimeType mime = db.mimeTypeForFile( docFile, QMimeDatabase::MatchExtension ); if ( !mime.inherits( QStringLiteral("application/vnd.kde.okular-archive") ) ) return OpenError; KZip okularArchive( docFile ); if ( !okularArchive.open( QIODevice::ReadOnly ) ) return OpenError; const KArchiveDirectory * mainDir = okularArchive.directory(); const KArchiveEntry * mainEntry = mainDir->entry( QStringLiteral("content.xml") ); if ( !mainEntry || !mainEntry->isFile() ) return OpenError; std::unique_ptr< QIODevice > mainEntryDevice( static_cast< const KZipFileEntry * >( mainEntry )->createDevice() ); QDomDocument doc; if ( !doc.setContent( mainEntryDevice.get() ) ) return OpenError; mainEntryDevice.reset(); QDomElement root = doc.documentElement(); if ( root.tagName() != QLatin1String("OkularArchive") ) return OpenError; QString documentFileName; QString metadataFileName; QDomElement el = root.firstChild().toElement(); for ( ; !el.isNull(); el = el.nextSibling().toElement() ) { if ( el.tagName() == QLatin1String("Files") ) { QDomElement fileEl = el.firstChild().toElement(); for ( ; !fileEl.isNull(); fileEl = fileEl.nextSibling().toElement() ) { if ( fileEl.tagName() == QLatin1String("DocumentFileName") ) documentFileName = fileEl.text(); else if ( fileEl.tagName() == QLatin1String("MetadataFileName") ) metadataFileName = fileEl.text(); } } } if ( documentFileName.isEmpty() ) return OpenError; const KArchiveEntry * docEntry = mainDir->entry( documentFileName ); if ( !docEntry || !docEntry->isFile() ) return OpenError; std::unique_ptr< ArchiveData > archiveData( new ArchiveData() ); const int dotPos = documentFileName.indexOf( QLatin1Char('.') ); if ( dotPos != -1 ) archiveData->document.setFileTemplate(QDir::tempPath() + QLatin1String("/okular_XXXXXX") + documentFileName.mid(dotPos)); if ( !archiveData->document.open() ) return OpenError; QString tempFileName = archiveData->document.fileName(); { std::unique_ptr< QIODevice > docEntryDevice( static_cast< const KZipFileEntry * >( docEntry )->createDevice() ); copyQIODevice( docEntryDevice.get(), &archiveData->document ); archiveData->document.close(); } const KArchiveEntry * metadataEntry = mainDir->entry( metadataFileName ); if ( metadataEntry && metadataEntry->isFile() ) { std::unique_ptr< QIODevice > metadataEntryDevice( static_cast< const KZipFileEntry * >( metadataEntry )->createDevice() ); archiveData->metadataFile.setFileTemplate(QDir::tempPath() + QLatin1String("/okular_XXXXXX.xml")); if ( archiveData->metadataFile.open() ) { copyQIODevice( metadataEntryDevice.get(), &archiveData->metadataFile ); archiveData->metadataFile.close(); } } const QMimeType docMime = db.mimeTypeForFile( tempFileName, QMimeDatabase::MatchContent ); d->m_archiveData = archiveData.get(); d->m_archivedFileName = documentFileName; const OpenResult ret = openDocument( tempFileName, url, docMime, password ); if ( ret == OpenSuccess ) { archiveData.release(); } else { d->m_archiveData = 0; } return ret; } bool Document::saveDocumentArchive( const QString &fileName ) { if ( !d->m_generator ) return false; /* If we opened an archive, use the name of original file (eg foo.pdf) * instead of the archive's one (eg foo.okular) */ QString docFileName = d->m_archiveData ? d->m_archivedFileName : d->m_url.fileName(); if ( docFileName == QLatin1String( "-" ) ) return false; QString docPath = d->m_docFileName; const QFileInfo fi( docPath ); if ( fi.isSymLink() ) docPath = fi.symLinkTarget(); KZip okularArchive( fileName ); if ( !okularArchive.open( QIODevice::WriteOnly ) ) return false; const KUser user; #ifndef Q_OS_WIN const KUserGroup userGroup( user.groupId() ); #else const KUserGroup userGroup( QString( "" ) ); #endif QDomDocument contentDoc( QStringLiteral("OkularArchive") ); QDomProcessingInstruction xmlPi = contentDoc.createProcessingInstruction( QStringLiteral( "xml" ), QStringLiteral( "version=\"1.0\" encoding=\"utf-8\"" ) ); contentDoc.appendChild( xmlPi ); QDomElement root = contentDoc.createElement( QStringLiteral("OkularArchive") ); contentDoc.appendChild( root ); QDomElement filesNode = contentDoc.createElement( QStringLiteral("Files") ); root.appendChild( filesNode ); QDomElement fileNameNode = contentDoc.createElement( QStringLiteral("DocumentFileName") ); filesNode.appendChild( fileNameNode ); fileNameNode.appendChild( contentDoc.createTextNode( docFileName ) ); QDomElement metadataFileNameNode = contentDoc.createElement( QStringLiteral("MetadataFileName") ); filesNode.appendChild( metadataFileNameNode ); metadataFileNameNode.appendChild( contentDoc.createTextNode( QStringLiteral("metadata.xml") ) ); // If the generator can save annotations natively, do it QTemporaryFile modifiedFile; bool annotationsSavedNatively = false; if ( d->canAddAnnotationsNatively() ) { if ( !modifiedFile.open() ) return false; modifiedFile.close(); // We're only interested in the file name QString errorText; if ( saveChanges( modifiedFile.fileName(), &errorText ) ) { docPath = modifiedFile.fileName(); // Save this instead of the original file annotationsSavedNatively = true; } else { qCWarning(OkularCoreDebug) << "saveChanges failed: " << errorText; qCDebug(OkularCoreDebug) << "Falling back to saving a copy of the original file"; } } QTemporaryFile metadataFile; PageItems saveWhat = annotationsSavedNatively ? None : AnnotationPageItems; if ( !d->savePageDocumentInfo( &metadataFile, saveWhat ) ) return false; const QByteArray contentDocXml = contentDoc.toByteArray(); const mode_t perm = 0100644; okularArchive.writeFile( QStringLiteral("content.xml"), contentDocXml, perm, user.loginName(), userGroup.name() ); okularArchive.addLocalFile( docPath, docFileName ); okularArchive.addLocalFile( metadataFile.fileName(), QStringLiteral("metadata.xml") ); if ( !okularArchive.close() ) return false; return true; } QPrinter::Orientation Document::orientation() const { double width, height; int landscape, portrait; const Okular::Page *currentPage; // if some pages are landscape and others are not, the most common wins, as // QPrinter does not accept a per-page setting landscape = 0; portrait = 0; for (uint i = 0; i < pages(); i++) { currentPage = page(i); width = currentPage->width(); height = currentPage->height(); if (currentPage->orientation() == Okular::Rotation90 || currentPage->orientation() == Okular::Rotation270) qSwap(width, height); if (width > height) landscape++; else portrait++; } return (landscape > portrait) ? QPrinter::Landscape : QPrinter::Portrait; } void Document::setAnnotationEditingEnabled( bool enable ) { d->m_annotationEditingEnabled = enable; foreachObserver( notifySetup( d->m_pagesVector, 0 ) ); } void Document::walletDataForFile( const QString &fileName, QString *walletName, QString *walletFolder, QString *walletKey ) const { if (d->m_generator) { d->m_generator->walletDataForFile( fileName, walletName, walletFolder, walletKey ); } else if (d->m_walletGenerator) { d->m_walletGenerator->walletDataForFile( fileName, walletName, walletFolder, walletKey ); } } QAbstractItemModel * Document::layersModel() const { return d->m_generator ? d->m_generator->layersModel() : NULL; } void DocumentPrivate::requestDone( PixmapRequest * req ) { if ( !req ) return; if ( !m_generator || m_closingLoop ) { m_pixmapRequestsMutex.lock(); m_executingPixmapRequests.removeAll( req ); m_pixmapRequestsMutex.unlock(); delete req; if ( m_closingLoop ) m_closingLoop->exit(); return; } #ifndef NDEBUG if ( !m_generator->canGeneratePixmap() ) qCDebug(OkularCoreDebug) << "requestDone with generator not in READY state."; #endif // [MEM] 1.1 find and remove a previous entry for the same page and id QLinkedList< AllocatedPixmap * >::iterator aIt = m_allocatedPixmaps.begin(); QLinkedList< AllocatedPixmap * >::iterator aEnd = m_allocatedPixmaps.end(); for ( ; aIt != aEnd; ++aIt ) if ( (*aIt)->page == req->pageNumber() && (*aIt)->observer == req->observer() ) { AllocatedPixmap * p = *aIt; m_allocatedPixmaps.erase( aIt ); m_allocatedPixmapsTotalMemory -= p->memory; delete p; break; } DocumentObserver *observer = req->observer(); if ( m_observers.contains(observer) ) { // [MEM] 1.2 append memory allocation descriptor to the FIFO qulonglong memoryBytes = 0; const TilesManager *tm = req->d->tilesManager(); if ( tm ) memoryBytes = tm->totalMemory(); else memoryBytes = 4 * req->width() * req->height(); AllocatedPixmap * memoryPage = new AllocatedPixmap( req->observer(), req->pageNumber(), memoryBytes ); m_allocatedPixmaps.append( memoryPage ); m_allocatedPixmapsTotalMemory += memoryBytes; // 2. notify an observer that its pixmap changed observer->notifyPageChanged( req->pageNumber(), DocumentObserver::Pixmap ); } #ifndef NDEBUG else qCWarning(OkularCoreDebug) << "Receiving a done request for the defunct observer" << observer; #endif // 3. delete request m_pixmapRequestsMutex.lock(); m_executingPixmapRequests.removeAll( req ); m_pixmapRequestsMutex.unlock(); delete req; // 4. start a new generation if some is pending m_pixmapRequestsMutex.lock(); bool hasPixmaps = !m_pixmapRequestsStack.isEmpty(); m_pixmapRequestsMutex.unlock(); if ( hasPixmaps ) sendGeneratorPixmapRequest(); } void DocumentPrivate::setPageBoundingBox( int page, const NormalizedRect& boundingBox ) { Page * kp = m_pagesVector[ page ]; if ( !m_generator || !kp ) return; if ( kp->boundingBox() == boundingBox ) return; kp->setBoundingBox( boundingBox ); // notify observers about the change foreachObserverD( notifyPageChanged( page, DocumentObserver::BoundingBox ) ); // TODO: For generators that generate the bbox by pixmap scanning, if the first generated pixmap is very small, the bounding box will forever be inaccurate. // TODO: Crop computation should also consider annotations, actions, etc. to make sure they're not cropped away. // TODO: Help compute bounding box for generators that create a QPixmap without a QImage, like text and plucker. // TODO: Don't compute the bounding box if no one needs it (e.g., Trim Borders is off). } void DocumentPrivate::calculateMaxTextPages() { int multipliers = qMax(1, qRound(getTotalMemory() / 536870912.0)); // 512 MB switch (SettingsCore::memoryLevel()) { case SettingsCore::EnumMemoryLevel::Low: m_maxAllocatedTextPages = multipliers * 2; break; case SettingsCore::EnumMemoryLevel::Normal: m_maxAllocatedTextPages = multipliers * 50; break; case SettingsCore::EnumMemoryLevel::Aggressive: m_maxAllocatedTextPages = multipliers * 250; break; case SettingsCore::EnumMemoryLevel::Greedy: m_maxAllocatedTextPages = multipliers * 1250; break; } } void DocumentPrivate::textGenerationDone( Page *page ) { if ( !m_pageController ) return; // 1. If we reached the cache limit, delete the first text page from the fifo if (m_allocatedTextPagesFifo.size() == m_maxAllocatedTextPages) { int pageToKick = m_allocatedTextPagesFifo.takeFirst(); if (pageToKick != page->number()) // this should never happen but better be safe than sorry { m_pagesVector.at(pageToKick)->setTextPage( 0 ); // deletes the textpage } } // 2. Add the page to the fifo of generated text pages m_allocatedTextPagesFifo.append( page->number() ); } void Document::setRotation( int r ) { d->setRotationInternal( r, true ); } void DocumentPrivate::setRotationInternal( int r, bool notify ) { Rotation rotation = (Rotation)r; if ( !m_generator || ( m_rotation == rotation ) ) return; // tell the pages to rotate QVector< Okular::Page * >::const_iterator pIt = m_pagesVector.constBegin(); QVector< Okular::Page * >::const_iterator pEnd = m_pagesVector.constEnd(); for ( ; pIt != pEnd; ++pIt ) (*pIt)->d->rotateAt( rotation ); if ( notify ) { // notify the generator that the current rotation has changed m_generator->rotationChanged( rotation, m_rotation ); } // set the new rotation m_rotation = rotation; if ( notify ) { foreachObserverD( notifySetup( m_pagesVector, DocumentObserver::NewLayoutForPages ) ); foreachObserverD( notifyContentsCleared( DocumentObserver::Pixmap | DocumentObserver::Highlights | DocumentObserver::Annotations ) ); } qCDebug(OkularCoreDebug) << "Rotated:" << r; } void Document::setPageSize( const PageSize &size ) { if ( !d->m_generator || !d->m_generator->hasFeature( Generator::PageSizes ) ) return; if ( d->m_pageSizes.isEmpty() ) d->m_pageSizes = d->m_generator->pageSizes(); int sizeid = d->m_pageSizes.indexOf( size ); if ( sizeid == -1 ) return; // tell the pages to change size QVector< Okular::Page * >::const_iterator pIt = d->m_pagesVector.constBegin(); QVector< Okular::Page * >::const_iterator pEnd = d->m_pagesVector.constEnd(); for ( ; pIt != pEnd; ++pIt ) (*pIt)->d->changeSize( size ); // clear 'memory allocation' descriptors qDeleteAll( d->m_allocatedPixmaps ); d->m_allocatedPixmaps.clear(); d->m_allocatedPixmapsTotalMemory = 0; // notify the generator that the current page size has changed d->m_generator->pageSizeChanged( size, d->m_pageSize ); // set the new page size d->m_pageSize = size; foreachObserver( notifySetup( d->m_pagesVector, DocumentObserver::NewLayoutForPages ) ); foreachObserver( notifyContentsCleared( DocumentObserver::Pixmap | DocumentObserver::Highlights ) ); qCDebug(OkularCoreDebug) << "New PageSize id:" << sizeid; } /** DocumentViewport **/ DocumentViewport::DocumentViewport( int n ) : pageNumber( n ) { // default settings rePos.enabled = false; rePos.normalizedX = 0.5; rePos.normalizedY = 0.0; rePos.pos = Center; autoFit.enabled = false; autoFit.width = false; autoFit.height = false; } DocumentViewport::DocumentViewport( const QString & xmlDesc ) : pageNumber( -1 ) { // default settings (maybe overridden below) rePos.enabled = false; rePos.normalizedX = 0.5; rePos.normalizedY = 0.0; rePos.pos = Center; autoFit.enabled = false; autoFit.width = false; autoFit.height = false; // check for string presence if ( xmlDesc.isEmpty() ) return; // decode the string bool ok; int field = 0; QString token = xmlDesc.section( QLatin1Char(';'), field, field ); while ( !token.isEmpty() ) { // decode the current token if ( field == 0 ) { pageNumber = token.toInt( &ok ); if ( !ok ) return; } else if ( token.startsWith( QLatin1String("C1") ) ) { rePos.enabled = true; rePos.normalizedX = token.section( QLatin1Char(':'), 1, 1 ).toDouble(); rePos.normalizedY = token.section( QLatin1Char(':'), 2, 2 ).toDouble(); rePos.pos = Center; } else if ( token.startsWith( QLatin1String("C2") ) ) { rePos.enabled = true; rePos.normalizedX = token.section( QLatin1Char(':'), 1, 1 ).toDouble(); rePos.normalizedY = token.section( QLatin1Char(':'), 2, 2 ).toDouble(); if (token.section( QLatin1Char(':'), 3, 3 ).toInt() == 1) rePos.pos = Center; else rePos.pos = TopLeft; } else if ( token.startsWith( QLatin1String("AF1") ) ) { autoFit.enabled = true; autoFit.width = token.section( QLatin1Char(':'), 1, 1 ) == QLatin1String("T"); autoFit.height = token.section( QLatin1Char(':'), 2, 2 ) == QLatin1String("T"); } // proceed tokenizing string field++; token = xmlDesc.section( QLatin1Char(';'), field, field ); } } QString DocumentViewport::toString() const { // start string with page number QString s = QString::number( pageNumber ); // if has center coordinates, save them on string if ( rePos.enabled ) s += QStringLiteral( ";C2:" ) + QString::number( rePos.normalizedX ) + QLatin1Char(':') + QString::number( rePos.normalizedY ) + QLatin1Char(':') + QString::number( rePos.pos ); // if has autofit enabled, save its state on string if ( autoFit.enabled ) s += QStringLiteral( ";AF1:" ) + (autoFit.width ? QLatin1Char('T') : QLatin1Char('F')) + QLatin1Char(':') + (autoFit.height ? QLatin1Char('T') : QLatin1Char('F')); return s; } bool DocumentViewport::isValid() const { return pageNumber >= 0; } bool DocumentViewport::operator==( const DocumentViewport & vp ) const { bool equal = ( pageNumber == vp.pageNumber ) && ( rePos.enabled == vp.rePos.enabled ) && ( autoFit.enabled == vp.autoFit.enabled ); if ( !equal ) return false; if ( rePos.enabled && (( rePos.normalizedX != vp.rePos.normalizedX) || ( rePos.normalizedY != vp.rePos.normalizedY ) || rePos.pos != vp.rePos.pos) ) return false; if ( autoFit.enabled && (( autoFit.width != vp.autoFit.width ) || ( autoFit.height != vp.autoFit.height )) ) return false; return true; } bool DocumentViewport::operator<( const DocumentViewport & vp ) const { // TODO: Check autoFit and Position if ( pageNumber != vp.pageNumber ) return pageNumber < vp.pageNumber; if ( !rePos.enabled && vp.rePos.enabled ) return true; if ( !vp.rePos.enabled ) return false; if ( rePos.normalizedY != vp.rePos.normalizedY ) return rePos.normalizedY < vp.rePos.normalizedY; return rePos.normalizedX < vp.rePos.normalizedX; } /** DocumentInfo **/ DocumentInfo::DocumentInfo() : d(new DocumentInfoPrivate()) { } DocumentInfo::DocumentInfo(const DocumentInfo &info) : d(new DocumentInfoPrivate()) { *this = info; } DocumentInfo& DocumentInfo::operator=(const DocumentInfo &info) { d->values = info.d->values; d->titles = info.d->titles; return *this; } DocumentInfo::~DocumentInfo() { delete d; } void DocumentInfo::set( const QString &key, const QString &value, const QString &title ) { d->values[ key ] = value; d->titles[ key ] = title; } void DocumentInfo::set( Key key, const QString &value ) { d->values[ getKeyString( key ) ] = value; } QStringList DocumentInfo::keys() const { return d->values.keys(); } QString DocumentInfo::get( Key key ) const { return get( getKeyString( key ) ); } QString DocumentInfo::get( const QString &key ) const { return d->values[ key ]; } QString DocumentInfo::getKeyString( Key key ) //const { switch ( key ) { case Title: return QStringLiteral("title"); break; case Subject: return QStringLiteral("subject"); break; case Description: return QStringLiteral("description"); break; case Author: return QStringLiteral("author"); break; case Creator: return QStringLiteral("creator"); break; case Producer: return QStringLiteral("producer"); break; case Copyright: return QStringLiteral("copyright"); break; case Pages: return QStringLiteral("pages"); break; case CreationDate: return QStringLiteral("creationDate"); break; case ModificationDate: return QStringLiteral("modificationDate"); break; case MimeType: return QStringLiteral("mimeType"); break; case Category: return QStringLiteral("category"); break; case Keywords: return QStringLiteral("keywords"); break; case FilePath: return QStringLiteral("filePath"); break; case DocumentSize: return QStringLiteral("documentSize"); break; case PagesSize: return QStringLiteral("pageSize"); break; default: qCWarning(OkularCoreDebug) << "Unknown" << key; return QString(); break; } } DocumentInfo::Key DocumentInfo::getKeyFromString( const QString &key ) //const { if (key == QLatin1String("title")) return Title; else if (key == QLatin1String("subject")) return Subject; else if (key == QLatin1String("description")) return Description; else if (key == QLatin1String("author")) return Author; else if (key == QLatin1String("creator")) return Creator; else if (key == QLatin1String("producer")) return Producer; else if (key == QLatin1String("copyright")) return Copyright; else if (key == QLatin1String("pages")) return Pages; else if (key == QLatin1String("creationDate")) return CreationDate; else if (key == QLatin1String("modificationDate")) return ModificationDate; else if (key == QLatin1String("mimeType")) return MimeType; else if (key == QLatin1String("category")) return Category; else if (key == QLatin1String("keywords")) return Keywords; else if (key == QLatin1String("filePath")) return FilePath; else if (key == QLatin1String("documentSize")) return DocumentSize; else if (key == QLatin1String("pageSize")) return PagesSize; else return Invalid; } QString DocumentInfo::getKeyTitle( Key key ) //const { switch ( key ) { case Title: return i18n( "Title" ); break; case Subject: return i18n( "Subject" ); break; case Description: return i18n( "Description" ); break; case Author: return i18n( "Author" ); break; case Creator: return i18n( "Creator" ); break; case Producer: return i18n( "Producer" ); break; case Copyright: return i18n( "Copyright" ); break; case Pages: return i18n( "Pages" ); break; case CreationDate: return i18n( "Created" ); break; case ModificationDate: return i18n( "Modified" ); break; case MimeType: return i18n( "Mime Type" ); break; case Category: return i18n( "Category" ); break; case Keywords: return i18n( "Keywords" ); break; case FilePath: return i18n( "File Path" ); break; case DocumentSize: return i18n( "File Size" ); break; case PagesSize: return i18n("Page Size"); break; default: return QString(); break; } } QString DocumentInfo::getKeyTitle( const QString &key ) const { QString title = getKeyTitle ( getKeyFromString( key ) ); if ( title.isEmpty() ) title = d->titles[ key ]; return title; } /** DocumentSynopsis **/ DocumentSynopsis::DocumentSynopsis() : QDomDocument( QStringLiteral("DocumentSynopsis") ) { // void implementation, only subclassed for naming } DocumentSynopsis::DocumentSynopsis( const QDomDocument &document ) : QDomDocument( document ) { } /** EmbeddedFile **/ EmbeddedFile::EmbeddedFile() { } EmbeddedFile::~EmbeddedFile() { } VisiblePageRect::VisiblePageRect( int page, const NormalizedRect &rectangle ) : pageNumber( page ), rect( rectangle ) { } #undef foreachObserver #undef foreachObserverD #include "moc_document.cpp" /* kate: replace-tabs on; indent-width 4; */ diff --git a/generators/tiff/generator_tiff.cpp b/generators/tiff/generator_tiff.cpp index a4c2810ac..1c349f5e7 100644 --- a/generators/tiff/generator_tiff.cpp +++ b/generators/tiff/generator_tiff.cpp @@ -1,450 +1,450 @@ /*************************************************************************** * Copyright (C) 2006 by Pino Toscano * * * * This program is free software; you can redistribute it and/or modify * * it under the terms of the GNU General Public License as published by * * the Free Software Foundation; either version 2 of the License, or * * (at your option) any later version. * ***************************************************************************/ #include "generator_tiff.h" #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #define TiffDebug 4714 tsize_t okular_tiffReadProc( thandle_t handle, tdata_t buf, tsize_t size ) { QIODevice * device = static_cast< QIODevice * >( handle ); return device->isReadable() ? device->read( static_cast< char * >( buf ), size ) : -1; } tsize_t okular_tiffWriteProc( thandle_t handle, tdata_t buf, tsize_t size ) { QIODevice * device = static_cast< QIODevice * >( handle ); return device->write( static_cast< char * >( buf ), size ); } toff_t okular_tiffSeekProc( thandle_t handle, toff_t offset, int whence ) { QIODevice * device = static_cast< QIODevice * >( handle ); switch ( whence ) { case SEEK_SET: device->seek( offset ); break; case SEEK_CUR: device->seek( device->pos() + offset ); break; case SEEK_END: device->seek( device->size() + offset ); break; } return device->pos(); } int okular_tiffCloseProc( thandle_t handle ) { Q_UNUSED( handle ) return 0; } toff_t okular_tiffSizeProc( thandle_t handle ) { QIODevice * device = static_cast< QIODevice * >( handle ); return device->size(); } int okular_tiffMapProc( thandle_t, tdata_t *, toff_t * ) { return 0; } void okular_tiffUnmapProc( thandle_t, tdata_t, toff_t ) { } class TIFFGenerator::Private { public: Private() : tiff( 0 ), dev( 0 ) {} TIFF* tiff; QByteArray data; QIODevice* dev; }; static QDateTime convertTIFFDateTime( const char* tiffdate ) { if ( !tiffdate ) return QDateTime(); return QDateTime::fromString( QString::fromLatin1( tiffdate ), QStringLiteral("yyyy:MM:dd HH:mm:ss") ); } static void adaptSizeToResolution( TIFF *tiff, ttag_t whichres, double dpi, uint32 *size ) { float resvalue = 1.0; uint16 resunit = 0; if ( !TIFFGetField( tiff, whichres, &resvalue ) || !TIFFGetFieldDefaulted( tiff, TIFFTAG_RESOLUTIONUNIT, &resunit ) ) return; float newsize = *size / resvalue; switch ( resunit ) { case RESUNIT_INCH: *size = (uint32)( newsize * dpi ); break; case RESUNIT_CENTIMETER: *size = (uint32)( newsize * 10.0 / 25.4 * dpi ); break; case RESUNIT_NONE: break; } } static Okular::Rotation readTiffRotation( TIFF *tiff ) { uint32 tiffOrientation = 0; if ( !TIFFGetField( tiff, TIFFTAG_ORIENTATION, &tiffOrientation ) ) return Okular::Rotation0; Okular::Rotation ret = Okular::Rotation0; switch ( tiffOrientation ) { case ORIENTATION_TOPLEFT: case ORIENTATION_TOPRIGHT: ret = Okular::Rotation0; break; case ORIENTATION_BOTRIGHT: case ORIENTATION_BOTLEFT: ret = Okular::Rotation180; break; case ORIENTATION_LEFTTOP: case ORIENTATION_LEFTBOT: ret = Okular::Rotation270; break; case ORIENTATION_RIGHTTOP: case ORIENTATION_RIGHTBOT: ret = Okular::Rotation90; break; } return ret; } OKULAR_EXPORT_PLUGIN(TIFFGenerator, "libokularGenerator_tiff.json") TIFFGenerator::TIFFGenerator( QObject *parent, const QVariantList &args ) : Okular::Generator( parent, args ), d( new Private ) { setFeature( Threaded ); setFeature( PrintNative ); setFeature( PrintToFile ); setFeature( ReadRawData ); } TIFFGenerator::~TIFFGenerator() { if ( d->tiff ) { TIFFClose( d->tiff ); d->tiff = 0; } delete d; } bool TIFFGenerator::loadDocument( const QString & fileName, QVector & pagesVector ) { QFile* qfile = new QFile( fileName ); qfile->open( QIODevice::ReadOnly ); d->dev = qfile; d->data = QFile::encodeName( QFileInfo( *qfile ).fileName() ); return loadTiff( pagesVector, d->data.constData() ); } bool TIFFGenerator::loadDocumentFromData( const QByteArray & fileData, QVector< Okular::Page * > & pagesVector ) { d->data = fileData; QBuffer* qbuffer = new QBuffer( &d->data ); qbuffer->open( QIODevice::ReadOnly ); d->dev = qbuffer; return loadTiff( pagesVector, "" ); } bool TIFFGenerator::loadTiff( QVector< Okular::Page * > & pagesVector, const char *name ) { d->tiff = TIFFClientOpen( name, "r", d->dev, okular_tiffReadProc, okular_tiffWriteProc, okular_tiffSeekProc, okular_tiffCloseProc, okular_tiffSizeProc, okular_tiffMapProc, okular_tiffUnmapProc ); if ( !d->tiff ) { delete d->dev; d->dev = 0; d->data.clear(); return false; } loadPages( pagesVector ); return true; } bool TIFFGenerator::doCloseDocument() { // closing the old document if ( d->tiff ) { TIFFClose( d->tiff ); d->tiff = 0; delete d->dev; d->dev = 0; d->data.clear(); m_pageMapping.clear(); } return true; } QImage TIFFGenerator::image( Okular::PixmapRequest * request ) { bool generated = false; QImage img; if ( TIFFSetDirectory( d->tiff, mapPage( request->page()->number() ) ) ) { int rotation = request->page()->rotation(); uint32 width = 1; uint32 height = 1; uint32 orientation = 0; TIFFGetField( d->tiff, TIFFTAG_IMAGEWIDTH, &width ); TIFFGetField( d->tiff, TIFFTAG_IMAGELENGTH, &height ); if ( !TIFFGetField( d->tiff, TIFFTAG_ORIENTATION, &orientation ) ) orientation = ORIENTATION_TOPLEFT; QImage image( width, height, QImage::Format_RGB32 ); uint32 * data = (uint32 *)image.bits(); // read data if ( TIFFReadRGBAImageOriented( d->tiff, width, height, data, orientation ) != 0 ) { // an image read by ReadRGBAImage is ABGR, we need ARGB, so swap red and blue uint32 size = width * height; for ( uint32 i = 0; i < size; ++i ) { uint32 red = ( data[i] & 0x00FF0000 ) >> 16; uint32 blue = ( data[i] & 0x000000FF ) << 16; data[i] = ( data[i] & 0xFF00FF00 ) + red + blue; } int reqwidth = request->width(); int reqheight = request->height(); if ( rotation % 2 == 1 ) qSwap( reqwidth, reqheight ); image.save("/tmp/paint/p_" + QString::number(request->page()->number()) + "_" + "_tiff_1.png"); qDebug() << "TIFF image" << reqwidth << reqheight; - img = image.scaled( reqwidth, reqheight, Qt::IgnoreAspectRatio, Qt::SmoothTransformation ); + //img = image.scaled( reqwidth, reqheight, Qt::KeepAspectRatioByExpanding, Qt::SmoothTransformation ); img.save("/tmp/paint/p_" + QString::number(request->page()->number()) + "_" + "_tiff_2.png"); generated = true; } } if ( !generated ) { img = QImage( request->width(), request->height(), QImage::Format_RGB32 ); img.fill( qRgb( 255, 255, 255 ) ); } return img; } Okular::DocumentInfo TIFFGenerator::generateDocumentInfo( const QSet &keys ) const { Okular::DocumentInfo docInfo; if ( d->tiff ) { if ( keys.contains( Okular::DocumentInfo::MimeType ) ) docInfo.set( Okular::DocumentInfo::MimeType, QStringLiteral("image/tiff") ); if ( keys.contains( Okular::DocumentInfo::Description ) ) { char* buffer = 0; TIFFGetField( d->tiff, TIFFTAG_IMAGEDESCRIPTION, &buffer ); docInfo.set( Okular::DocumentInfo::Description, buffer ? QString::fromLatin1( buffer ) : QString() ); } if ( keys.contains( Okular::DocumentInfo::Producer ) ) { char* buffer = 0; TIFFGetField( d->tiff, TIFFTAG_SOFTWARE, &buffer ); docInfo.set( Okular::DocumentInfo::Producer, buffer ? QString::fromLatin1( buffer ) : QString() ); } if ( keys.contains( Okular::DocumentInfo::Copyright ) ) { char* buffer = 0; TIFFGetField( d->tiff, TIFFTAG_COPYRIGHT, &buffer ); docInfo.set( Okular::DocumentInfo::Copyright, buffer ? QString::fromLatin1( buffer ) : QString() ); } if ( keys.contains( Okular::DocumentInfo::Author ) ) { char* buffer = 0; TIFFGetField( d->tiff, TIFFTAG_ARTIST, &buffer ); docInfo.set( Okular::DocumentInfo::Author, buffer ? QString::fromLatin1( buffer ) : QString() ); } if ( keys.contains( Okular::DocumentInfo::CreationDate ) ) { char* buffer = 0; TIFFGetField( d->tiff, TIFFTAG_DATETIME, &buffer ); QDateTime date = convertTIFFDateTime( buffer ); docInfo.set( Okular::DocumentInfo::CreationDate, date.isValid() ? QLocale().toString( date, QLocale::LongFormat ) : QString() ); } } return docInfo; } void TIFFGenerator::loadPages( QVector & pagesVector ) { if ( !d->tiff ) return; tdir_t dirs = TIFFNumberOfDirectories( d->tiff ); pagesVector.resize( dirs ); tdir_t realdirs = 0; uint32 width = 0; uint32 height = 0; const QSizeF dpi = Okular::Utils::realDpi(nullptr); for ( tdir_t i = 0; i < dirs; ++i ) { if ( !TIFFSetDirectory( d->tiff, i ) ) continue; if ( TIFFGetField( d->tiff, TIFFTAG_IMAGEWIDTH, &width ) != 1 || TIFFGetField( d->tiff, TIFFTAG_IMAGELENGTH, &height ) != 1 ) continue; adaptSizeToResolution( d->tiff, TIFFTAG_XRESOLUTION, dpi.width(), &width ); adaptSizeToResolution( d->tiff, TIFFTAG_YRESOLUTION, dpi.height(), &height ); qDebug() << "TIFF: " << width << height; Okular::Page * page = new Okular::Page( realdirs, width, height, readTiffRotation( d->tiff ) ); pagesVector[ realdirs ] = page; m_pageMapping[ realdirs ] = i; ++realdirs; } pagesVector.resize( realdirs ); } bool TIFFGenerator::print( QPrinter& printer ) { uint32 width = 0; uint32 height = 0; QPainter p( &printer ); QList pageList = Okular::FilePrinter::pageList( printer, document()->pages(), document()->currentPage() + 1, document()->bookmarkedPageList() ); for ( tdir_t i = 0; i < pageList.count(); ++i ) { if ( !TIFFSetDirectory( d->tiff, mapPage( pageList[i] - 1 ) ) ) continue; if ( TIFFGetField( d->tiff, TIFFTAG_IMAGEWIDTH, &width ) != 1 || TIFFGetField( d->tiff, TIFFTAG_IMAGELENGTH, &height ) != 1 ) continue; QImage image( width, height, QImage::Format_RGB32 ); uint32 * data = (uint32 *)image.bits(); // read data if ( TIFFReadRGBAImageOriented( d->tiff, width, height, data, ORIENTATION_TOPLEFT ) != 0 ) { // an image read by ReadRGBAImage is ABGR, we need ARGB, so swap red and blue uint32 size = width * height; for ( uint32 i = 0; i < size; ++i ) { uint32 red = ( data[i] & 0x00FF0000 ) >> 16; uint32 blue = ( data[i] & 0x000000FF ) << 16; data[i] = ( data[i] & 0xFF00FF00 ) + red + blue; } } if ( i != 0 ) printer.newPage(); QSize targetSize = printer.pageRect().size(); qDebug() << "TIFF: " << image.width() << targetSize.width() << image.height() << targetSize.height(); if ( (image.width() < targetSize.width()) && (image.height() < targetSize.height()) ) { // draw small images at 100% (don't scale up) p.drawImage( 0, 0, image ); } else { // fit to page p.drawImage( 0, 0, image.scaled( targetSize, Qt::IgnoreAspectRatio, Qt::SmoothTransformation ) ); } } return true; } int TIFFGenerator::mapPage( int page ) const { QHash< int, int >::const_iterator it = m_pageMapping.find( page ); if ( it == m_pageMapping.end() ) { qCWarning(OkularTiffDebug) << "Requesting unmapped page" << page << ":" << m_pageMapping; return -1; } return it.value(); } Q_LOGGING_CATEGORY(OkularTiffDebug, "org.kde.okular.generators.tiff", QtWarningMsg) #include "generator_tiff.moc" diff --git a/ui/presentationwidget.cpp b/ui/presentationwidget.cpp index 7e28b1166..5e0d1a769 100644 --- a/ui/presentationwidget.cpp +++ b/ui/presentationwidget.cpp @@ -1,2473 +1,2483 @@ /*************************************************************************** * Copyright (C) 2004 by Enrico Ros * * * * This program is free software; you can redistribute it and/or modify * * it under the terms of the GNU General Public License as published by * * the Free Software Foundation; either version 2 of the License, or * * (at your option) any later version. * ***************************************************************************/ #include "presentationwidget.h" // qt/kde includes #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #ifdef Q_OS_LINUX #include #include // For ::close() for sleep inhibition #endif // system includes #include #include // local includes #include "annotationtools.h" #include "debug_ui.h" #include "drawingtoolactions.h" #include "guiutils.h" #include "pagepainter.h" #include "presentationsearchbar.h" #include "priorities.h" #include "videowidget.h" #include "core/action.h" #include "core/annotations.h" #include "core/audioplayer.h" #include "core/document.h" #include "core/generator.h" #include "core/movie.h" #include "core/page.h" #include "settings.h" #include "settings_core.h" // comment this to disable the top-right progress indicator #define ENABLE_PROGRESS_OVERLAY // a frame contains a pointer to the page object, its geometry and the // transition effect to the next frame struct PresentationFrame { ~PresentationFrame() { qDeleteAll( videoWidgets ); } void recalcGeometry( int width, int height, float screenRatio, qreal dpr ) { // calculate frame geometry keeping constant aspect ratio float pageRatio = page->ratio(); qreal pageWidth = width, pageHeight = height; if ( pageRatio > screenRatio ) pageWidth = (int)( (float)pageHeight / pageRatio ); else pageHeight = (int)( (float)pageWidth * pageRatio ); geometry.setRect( (( width - pageWidth ) / 2) /** dpr*/, (( height - pageHeight ) / 2) /** dpr*/, pageWidth /** dpr*/, pageHeight /** dpr */); qDebug() << "PW recalcGeometry geometry" << geometry; Q_FOREACH ( VideoWidget *vw, videoWidgets ) { const Okular::NormalizedRect r = vw->normGeometry(); QRect vwgeom = r.geometry( geometry.width(), geometry.height() ); vw->resize( vwgeom.size() ); vw->move( geometry.topLeft() + vwgeom.topLeft() ); } } const Okular::Page * page; QRect geometry; QHash< Okular::Movie *, VideoWidget * > videoWidgets; QLinkedList< SmoothPath > drawings; }; // a custom QToolBar that basically does not propagate the event if the widget // background is not automatically filled class PresentationToolBar : public QToolBar { Q_OBJECT public: PresentationToolBar( QWidget * parent = Q_NULLPTR ) : QToolBar( parent ) {} protected: void mousePressEvent( QMouseEvent * e ) override { QToolBar::mousePressEvent( e ); e->accept(); } void mouseReleaseEvent( QMouseEvent * e ) override { QToolBar::mouseReleaseEvent( e ); e->accept(); } }; PresentationWidget::PresentationWidget( QWidget * parent, Okular::Document * doc, DrawingToolActions * drawingToolActions, KActionCollection * collection ) : QWidget( 0 /* must be null, to have an independent widget */, Qt::FramelessWindowHint ), m_pressedLink( 0 ), m_handCursor( false ), m_drawingEngine( 0 ), m_screenInhibitCookie(0), m_sleepInhibitCookie(0), m_parentWidget( parent ), m_document( doc ), m_frameIndex( -1 ), m_topBar( 0 ), m_pagesEdit( 0 ), m_searchBar( 0 ), m_ac( collection ), m_screenSelect( 0 ), m_isSetup( false ), m_blockNotifications( false ), m_inBlackScreenMode( false ), m_showSummaryView( Okular::Settings::slidesShowSummary() ), m_advanceSlides( Okular::SettingsCore::slidesAdvance() ), m_goToNextPageOnRelease( false ) { Q_UNUSED( parent ) setAttribute( Qt::WA_DeleteOnClose ); setAttribute( Qt::WA_OpaquePaintEvent ); setObjectName( QStringLiteral( "presentationWidget" ) ); QString caption = doc->metaData( QStringLiteral("DocumentTitle") ).toString(); if ( caption.trimmed().isEmpty() ) caption = doc->currentDocument().fileName(); caption = i18nc( "[document title/filename] – Presentation", "%1 – Presentation", caption ); setWindowTitle( caption ); m_width = -1; m_screen = -2; // create top toolbar m_topBar = new PresentationToolBar( this ); m_topBar->setObjectName( QStringLiteral( "presentationBar" ) ); m_topBar->setMovable( false ); m_topBar->layout()->setMargin(0); m_topBar->addAction( QIcon::fromTheme( layoutDirection() == Qt::RightToLeft ? QStringLiteral("go-next") : QStringLiteral("go-previous") ), i18n( "Previous Page" ), this, SLOT(slotPrevPage()) ); m_pagesEdit = new KLineEdit( m_topBar ); QSizePolicy sp = m_pagesEdit->sizePolicy(); sp.setHorizontalPolicy( QSizePolicy::Minimum ); m_pagesEdit->setSizePolicy( sp ); QFontMetrics fm( m_pagesEdit->font() ); QStyleOptionFrame option; option.initFrom( m_pagesEdit ); m_pagesEdit->setMaximumWidth( fm.width( QString::number( m_document->pages() ) ) + 2 * style()->pixelMetric( QStyle::PM_DefaultFrameWidth, &option, m_pagesEdit ) + 4 ); // the 4 comes from 2*horizontalMargin, horizontalMargin being a define in qlineedit.cpp QIntValidator *validator = new QIntValidator( 1, m_document->pages(), m_pagesEdit ); m_pagesEdit->setValidator( validator ); m_topBar->addWidget( m_pagesEdit ); QLabel *pagesLabel = new QLabel( m_topBar ); pagesLabel->setText( QLatin1String( " / " ) + QString::number( m_document->pages() ) + QLatin1String( " " ) ); m_topBar->addWidget( pagesLabel ); connect(m_pagesEdit, &QLineEdit::returnPressed, this, &PresentationWidget::slotPageChanged); m_topBar->addAction( QIcon::fromTheme( layoutDirection() == Qt::RightToLeft ? QStringLiteral("go-previous") : QStringLiteral("go-next") ), i18n( "Next Page" ), this, SLOT(slotNextPage()) ); m_topBar->addSeparator(); QAction *playPauseAct = collection->action( QStringLiteral("presentation_play_pause") ); playPauseAct->setEnabled( true ); connect(playPauseAct, &QAction::triggered, this, &PresentationWidget::slotTogglePlayPause); m_topBar->addAction( playPauseAct ); setPlayPauseIcon(); addAction( playPauseAct ); m_topBar->addSeparator(); QAction *eraseDrawingAct = collection->action( QStringLiteral("presentation_erase_drawings") ); eraseDrawingAct->setEnabled( true ); connect(eraseDrawingAct, &QAction::triggered, this, &PresentationWidget::clearDrawings); m_topBar->addAction( eraseDrawingAct ); addAction( eraseDrawingAct ); foreach(QAction *action, drawingToolActions->actions()) { action->setEnabled( true ); m_topBar->addAction( action ); addAction( action ); } connect( drawingToolActions, &DrawingToolActions::changeEngine, this, &PresentationWidget::slotChangeDrawingToolEngine ); connect( drawingToolActions, &DrawingToolActions::actionsRecreated, this, &PresentationWidget::slotAddDrawingToolActions ); QDesktopWidget *desktop = QApplication::desktop(); if ( desktop->numScreens() > 1 ) { m_topBar->addSeparator(); m_screenSelect = new KSelectAction( QIcon::fromTheme( QStringLiteral("video-display") ), i18n( "Switch Screen" ), m_topBar ); m_screenSelect->setToolBarMode( KSelectAction::MenuMode ); m_screenSelect->setToolButtonPopupMode( QToolButton::InstantPopup ); m_topBar->addAction( m_screenSelect ); const int screenCount = desktop->numScreens(); for ( int i = 0; i < screenCount; ++i ) { QAction *act = m_screenSelect->addAction( i18nc( "%1 is the screen number (0, 1, ...)", "Screen %1", i ) ); act->setData( qVariantFromValue( i ) ); } } QWidget *spacer = new QWidget( m_topBar ); spacer->setSizePolicy( QSizePolicy::Expanding, QSizePolicy::MinimumExpanding ); m_topBar->addWidget( spacer ); m_topBar->addAction( QIcon::fromTheme( QStringLiteral("application-exit") ), i18n( "Exit Presentation Mode" ), this, SLOT(close()) ); m_topBar->setAutoFillBackground( true ); showTopBar( false ); // change topbar background color QPalette p = m_topBar->palette(); p.setColor( QPalette::Active, QPalette::Button, Qt::gray ); p.setColor( QPalette::Active, QPalette::Background, Qt::darkGray ); m_topBar->setPalette( p ); // Grab swipe gestures to change pages grabGesture(Qt::SwipeGesture); // misc stuff setMouseTracking( true ); setContextMenuPolicy( Qt::PreventContextMenu ); m_transitionTimer = new QTimer( this ); m_transitionTimer->setSingleShot( true ); connect(m_transitionTimer, &QTimer::timeout, this, &PresentationWidget::slotTransitionStep); m_overlayHideTimer = new QTimer( this ); m_overlayHideTimer->setSingleShot( true ); connect(m_overlayHideTimer, &QTimer::timeout, this, &PresentationWidget::slotHideOverlay); m_nextPageTimer = new QTimer( this ); m_nextPageTimer->setSingleShot( true ); connect(m_nextPageTimer, &QTimer::timeout, this, &PresentationWidget::slotNextPage); connect(m_document, &Okular::Document::processMovieAction, this, &PresentationWidget::slotProcessMovieAction); connect(m_document, &Okular::Document::processRenditionAction, this, &PresentationWidget::slotProcessRenditionAction); // handle cursor appearance as specified in configuration if ( Okular::Settings::slidesCursor() == Okular::Settings::EnumSlidesCursor::HiddenDelay ) { KCursor::setAutoHideCursor( this, true ); KCursor::setHideCursorDelay( 3000 ); } else if ( Okular::Settings::slidesCursor() == Okular::Settings::EnumSlidesCursor::Hidden ) { setCursor( QCursor( Qt::BlankCursor ) ); } setupActions(); // inhibit power management inhibitPowerManagement(); show(); QTimer::singleShot( 0, this, &PresentationWidget::slotDelayedEvents ); // setFocus() so KCursor::setAutoHideCursor() goes into effect if it's enabled setFocus( Qt::OtherFocusReason ); } PresentationWidget::~PresentationWidget() { // allow power management saver again allowPowerManagement(); // stop the audio playbacks Okular::AudioPlayer::instance()->stopPlaybacks(); // remove our highlights if ( m_searchBar ) { m_document->resetSearch( PRESENTATION_SEARCH_ID ); } // remove this widget from document observer m_document->removeObserver( this ); foreach( QAction *action, m_topBar->actions() ) { action->setChecked( false ); action->setEnabled( false ); } delete m_drawingEngine; // delete frames QVector< PresentationFrame * >::iterator fIt = m_frames.begin(), fEnd = m_frames.end(); for ( ; fIt != fEnd; ++fIt ) delete *fIt; } void PresentationWidget::notifySetup( const QVector< Okular::Page * > & pageSet, int setupFlags ) { // same document, nothing to change - here we assume the document sets up // us with the whole document set as first notifySetup() if ( !( setupFlags & Okular::DocumentObserver::DocumentChanged ) ) return; // delete previous frames (if any (shouldn't be)) QVector< PresentationFrame * >::iterator fIt = m_frames.begin(), fEnd = m_frames.end(); for ( ; fIt != fEnd; ++fIt ) delete *fIt; if ( !m_frames.isEmpty() ) qCWarning(OkularUiDebug) << "Frames setup changed while a Presentation is in progress."; m_frames.clear(); // create the new frames QVector< Okular::Page * >::const_iterator setIt = pageSet.begin(), setEnd = pageSet.end(); float screenRatio = (float)m_height / (float)m_width; for ( ; setIt != setEnd; ++setIt ) { PresentationFrame * frame = new PresentationFrame(); frame->page = *setIt; const QLinkedList< Okular::Annotation * > annotations = (*setIt)->annotations(); QLinkedList< Okular::Annotation * >::const_iterator aIt = annotations.begin(), aEnd = annotations.end(); for ( ; aIt != aEnd; ++aIt ) { Okular::Annotation * a = *aIt; if ( a->subType() == Okular::Annotation::AMovie ) { Okular::MovieAnnotation * movieAnn = static_cast< Okular::MovieAnnotation * >( a ); VideoWidget * vw = new VideoWidget( movieAnn, movieAnn->movie(), m_document, this ); frame->videoWidgets.insert( movieAnn->movie(), vw ); vw->pageInitialized(); } else if ( a->subType() == Okular::Annotation::ARichMedia ) { Okular::RichMediaAnnotation * richMediaAnn = static_cast< Okular::RichMediaAnnotation * >( a ); if ( richMediaAnn->movie() ) { VideoWidget * vw = new VideoWidget( richMediaAnn, richMediaAnn->movie(), m_document, this ); frame->videoWidgets.insert( richMediaAnn->movie(), vw ); vw->pageInitialized(); } } else if ( a->subType() == Okular::Annotation::AScreen ) { const Okular::ScreenAnnotation * screenAnn = static_cast< Okular::ScreenAnnotation * >( a ); Okular::Movie *movie = GuiUtils::renditionMovieFromScreenAnnotation( screenAnn ); if ( movie ) { VideoWidget * vw = new VideoWidget( screenAnn, movie, m_document, this ); frame->videoWidgets.insert( movie, vw ); vw->pageInitialized(); } } } frame->recalcGeometry( m_width, m_height, screenRatio, qApp->devicePixelRatio() ); // add the frame to the vector m_frames.push_back( frame ); } // get metadata from the document m_metaStrings.clear(); const Okular::DocumentInfo info = m_document->documentInfo( QSet() << Okular::DocumentInfo::Title << Okular::DocumentInfo::Author ); if ( !info.get( Okular::DocumentInfo::Title ).isNull() ) m_metaStrings += i18n( "Title: %1", info.get( Okular::DocumentInfo::Title ) ); if ( !info.get( Okular::DocumentInfo::Author ).isNull() ) m_metaStrings += i18n( "Author: %1", info.get( Okular::DocumentInfo::Author ) ); m_metaStrings += i18n( "Pages: %1", m_document->pages() ); m_metaStrings += i18n( "Click to begin" ); m_isSetup = true; } void PresentationWidget::notifyViewportChanged( bool /*smoothMove*/ ) { // display the current page changePage( m_document->viewport().pageNumber ); // auto advance to the next page if set startAutoChangeTimer(); } void PresentationWidget::notifyPageChanged( int pageNumber, int changedFlags ) { + qDebug() << "PRES notifyPageChanged " << pageNumber << m_frameIndex; + // if we are blocking the notifications, do nothing if ( m_blockNotifications ) return; // check if it's the last requested pixmap. if so update the widget. if ( (changedFlags & ( DocumentObserver::Pixmap | DocumentObserver::Annotations | DocumentObserver::Highlights ) ) && pageNumber == m_frameIndex ) generatePage( changedFlags & ( DocumentObserver::Annotations | DocumentObserver::Highlights ) ); } void PresentationWidget::notifyCurrentPageChanged( int previousPage, int currentPage ) { + qDebug() << "PRES notifyCurrentPageChanged " << previousPage << currentPage; + if ( previousPage != -1 ) { // stop video playback Q_FOREACH ( VideoWidget *vw, m_frames[ previousPage ]->videoWidgets ) { vw->stop(); vw->pageLeft(); } // stop audio playback, if any Okular::AudioPlayer::instance()->stopPlaybacks(); // perform the page closing action, if any if ( m_document->page( previousPage )->pageAction( Okular::Page::Closing ) ) m_document->processAction( m_document->page( previousPage )->pageAction( Okular::Page::Closing ) ); // perform the additional actions of the page's annotations, if any Q_FOREACH ( const Okular::Annotation *annotation, m_document->page( previousPage )->annotations() ) { Okular::Action *action = 0; if ( annotation->subType() == Okular::Annotation::AScreen ) action = static_cast( annotation )->additionalAction( Okular::Annotation::PageClosing ); else if ( annotation->subType() == Okular::Annotation::AWidget ) action = static_cast( annotation )->additionalAction( Okular::Annotation::PageClosing ); if ( action ) m_document->processAction( action ); } } if ( currentPage != -1 ) { m_frameIndex = currentPage; // check if pixmap exists or else request it PresentationFrame * frame = m_frames[ m_frameIndex ]; int pixW = frame->geometry.width(); int pixH = frame->geometry.height(); bool signalsBlocked = m_pagesEdit->signalsBlocked(); m_pagesEdit->blockSignals( true ); m_pagesEdit->setText( QString::number( m_frameIndex + 1 ) ); m_pagesEdit->blockSignals( signalsBlocked ); // if pixmap not inside the Okular::Page we request it and wait for // notifyPixmapChanged call or else we can proceed to pixmap generation if ( !frame->page->hasPixmap( this, pixW, pixH ) ) { requestPixmaps(); } else { // make the background pixmap generatePage(); } // perform the page opening action, if any if ( m_document->page( m_frameIndex )->pageAction( Okular::Page::Opening ) ) m_document->processAction( m_document->page( m_frameIndex )->pageAction( Okular::Page::Opening ) ); // perform the additional actions of the page's annotations, if any Q_FOREACH ( const Okular::Annotation *annotation, m_document->page( m_frameIndex )->annotations() ) { Okular::Action *action = 0; if ( annotation->subType() == Okular::Annotation::AScreen ) action = static_cast( annotation )->additionalAction( Okular::Annotation::PageOpening ); else if ( annotation->subType() == Okular::Annotation::AWidget ) action = static_cast( annotation )->additionalAction( Okular::Annotation::PageOpening ); if ( action ) m_document->processAction( action ); } // start autoplay video playback Q_FOREACH ( VideoWidget *vw, m_frames[ m_frameIndex ]->videoWidgets ) vw->pageEntered(); } } bool PresentationWidget::canUnloadPixmap( int pageNumber ) const { if ( Okular::SettingsCore::memoryLevel() == Okular::SettingsCore::EnumMemoryLevel::Low || Okular::SettingsCore::memoryLevel() == Okular::SettingsCore::EnumMemoryLevel::Normal ) { // can unload all pixmaps except for the currently visible one return pageNumber != m_frameIndex; } else { // can unload all pixmaps except for the currently visible one, previous and next return qAbs(pageNumber - m_frameIndex) <= 1; } } void PresentationWidget::setupActions() { addAction( m_ac->action( QStringLiteral("first_page") ) ); addAction( m_ac->action( QStringLiteral("last_page") ) ); addAction( m_ac->action( QString::fromLocal8Bit(KStandardAction::name( KStandardAction::Prior ) ) ) ); addAction( m_ac->action( QString::fromLocal8Bit(KStandardAction::name( KStandardAction::Next ) ) ) ); addAction( m_ac->action( QString::fromLocal8Bit(KStandardAction::name( KStandardAction::DocumentBack ) ) ) ); addAction( m_ac->action( QString::fromLocal8Bit(KStandardAction::name( KStandardAction::DocumentForward ) ) ) ); QAction *action = m_ac->action( QStringLiteral("switch_blackscreen_mode") ); connect(action, &QAction::toggled, this, &PresentationWidget::toggleBlackScreenMode); action->setEnabled( true ); addAction( action ); } void PresentationWidget::setPlayPauseIcon() { QAction *playPauseAction = m_ac->action( QStringLiteral("presentation_play_pause") ); if ( m_advanceSlides ) { playPauseAction->setIcon( QIcon::fromTheme( QStringLiteral("media-playback-pause") ) ); playPauseAction->setToolTip( i18nc( "For Presentation", "Pause" ) ); } else { playPauseAction->setIcon( QIcon::fromTheme( QStringLiteral("media-playback-start") ) ); playPauseAction->setToolTip( i18nc( "For Presentation", "Play" ) ); } } // bool PresentationWidget::event( QEvent * e ) { if ( e->type() == QEvent::Gesture ) return gestureEvent(static_cast(e)); if ( e->type() == QEvent::ToolTip ) { QHelpEvent * he = (QHelpEvent*)e; QRect r; const Okular::Action * link = getLink( he->x(), he->y(), &r ); if ( link ) { QString tip = link->actionTip(); if ( !tip.isEmpty() ) QToolTip::showText( he->globalPos(), tip, this, r ); } e->accept(); return true; } else // do not stop the event return QWidget::event( e ); } bool PresentationWidget::gestureEvent( QGestureEvent * event ) { // Swiping left or right on a touch screen will go to the previous or next slide, respectively. // The precise gesture is the standard Qt swipe: with three(!) fingers. if (QGesture *swipe = event->gesture(Qt::SwipeGesture)) { QSwipeGesture * swipeEvent = static_cast(swipe); if (swipeEvent->state() == Qt::GestureFinished) { if (swipeEvent->horizontalDirection() == QSwipeGesture::Left) { slotPrevPage(); event->accept(); return true; } if (swipeEvent->horizontalDirection() == QSwipeGesture::Right) { slotNextPage(); event->accept(); return true; } } } return false; } void PresentationWidget::keyPressEvent( QKeyEvent * e ) { if ( !m_isSetup ) return; switch ( e->key() ) { case Qt::Key_Left: case Qt::Key_Backspace: case Qt::Key_PageUp: case Qt::Key_Up: slotPrevPage(); break; case Qt::Key_Right: case Qt::Key_Space: case Qt::Key_PageDown: case Qt::Key_Down: slotNextPage(); break; case Qt::Key_Home: slotFirstPage(); break; case Qt::Key_End: slotLastPage(); break; case Qt::Key_Escape: if ( !m_topBar->isHidden() ) showTopBar( false ); else close(); break; } } void PresentationWidget::wheelEvent( QWheelEvent * e ) { if ( !m_isSetup ) return; // performance note: don't remove the clipping int div = e->delta() / 120; if ( div > 0 ) { if ( div > 3 ) div = 3; while ( div-- ) slotPrevPage(); } else if ( div < 0 ) { if ( div < -3 ) div = -3; while ( div++ ) slotNextPage(); } } void PresentationWidget::mousePressEvent( QMouseEvent * e ) { if ( !m_isSetup ) return; if ( m_drawingEngine ) { QRect r = routeMouseDrawingEvent( e ); if ( r.isValid() ) { m_drawingRect |= r.translated( m_frames[ m_frameIndex ]->geometry.topLeft() ); update( m_drawingRect ); } return; } // pressing left button if ( e->button() == Qt::LeftButton ) { // if pressing on a link, skip other checks if ( ( m_pressedLink = getLink( e->x(), e->y() ) ) ) return; const Okular::Annotation *annotation = getAnnotation( e->x(), e->y() ); if ( annotation ) { if ( annotation->subType() == Okular::Annotation::AMovie ) { const Okular::MovieAnnotation *movieAnnotation = static_cast( annotation ); VideoWidget *vw = m_frames[ m_frameIndex ]->videoWidgets.value( movieAnnotation->movie() ); vw->show(); vw->play(); return; } else if ( annotation->subType() == Okular::Annotation::ARichMedia ) { const Okular::RichMediaAnnotation *richMediaAnnotation = static_cast( annotation ); VideoWidget *vw = m_frames[ m_frameIndex ]->videoWidgets.value( richMediaAnnotation->movie() ); vw->show(); vw->play(); return; } else if ( annotation->subType() == Okular::Annotation::AScreen ) { m_document->processAction( static_cast( annotation )->action() ); return; } } // handle clicking on top-right overlay if ( !( Okular::Settings::slidesCursor() == Okular::Settings::EnumSlidesCursor::Hidden ) && m_overlayGeometry.contains( e->pos() ) ) { overlayClick( e->pos() ); return; } m_goToNextPageOnRelease = true; } // pressing the "move forward" mouse button: unlike the left button this // always means "show next page", so we unconditionally delegate to that // action on mouse button press else if ( e->button() == Qt::ForwardButton ) { slotNextPage(); } // pressing right or backward button else if ( e->button() == Qt::RightButton || e->button() == Qt::BackButton ) slotPrevPage(); } void PresentationWidget::mouseReleaseEvent( QMouseEvent * e ) { if ( m_drawingEngine ) { routeMouseDrawingEvent( e ); return; } // if releasing on the same link we pressed over, execute it if ( m_pressedLink && e->button() == Qt::LeftButton ) { const Okular::Action * link = getLink( e->x(), e->y() ); if ( link == m_pressedLink ) m_document->processAction( link ); m_pressedLink = 0; } if ( m_goToNextPageOnRelease ) { slotNextPage(); m_goToNextPageOnRelease = false; } } void PresentationWidget::mouseMoveEvent( QMouseEvent * e ) { // safety check if ( !m_isSetup ) return; // update cursor and tooltip if hovering a link if ( !m_drawingEngine && Okular::Settings::slidesCursor() != Okular::Settings::EnumSlidesCursor::Hidden ) testCursorOnLink( e->x(), e->y() ); if ( !m_topBar->isHidden() ) { // hide a shown bar when exiting the area if ( e->y() > ( m_topBar->height() + 1 ) ) { showTopBar( false ); setFocus( Qt::OtherFocusReason ); } } else { if ( m_drawingEngine && e->buttons() != Qt::NoButton ) { QRect r = routeMouseDrawingEvent( e ); if ( r.isValid() ) { m_drawingRect |= r.translated( m_frames[ m_frameIndex ]->geometry.topLeft() ); update( m_drawingRect ); } } else { // show the bar if reaching top 2 pixels if ( e->y() <= 1 ) showTopBar( true ); // handle "dragging the wheel" if clicking on its geometry else if ( ( QApplication::mouseButtons() & Qt::LeftButton ) && m_overlayGeometry.contains( e->pos() ) ) overlayClick( e->pos() ); } } } void PresentationWidget::paintEvent( QPaintEvent * pe ) { qreal dpr = devicePixelRatioF(); //QPainter painter( this ); //painter.fillRect( pe->rect(), Qt::green ); if ( m_inBlackScreenMode ) { QPainter painter( this ); painter.fillRect( pe->rect(), Qt::black ); return; } if ( !m_isSetup ) { m_width = width(); m_height = height(); connect(m_document, &Okular::Document::linkFind, this, &PresentationWidget::slotFind); // register this observer in document. events will come immediately m_document->addObserver( this ); // show summary if requested if ( Okular::Settings::slidesShowSummary() ) generatePage(); } qDebug() << "PW: width" << m_width << "height" << m_height; // check painting rect consistancy QRect r = pe->rect().intersected( QRect( QPoint( 0, 0 ), geometry().size() ) ); if ( r.isNull() ) return; if ( m_lastRenderedPixmap.isNull() ) { QPainter painter( this ); painter.fillRect( pe->rect(), Okular::Settings::slidesBackgroundColor() ); return; } m_lastRenderedPixmap.save("/tmp/paint/pw_last.png"); // blit the pixmap to the screen QVector allRects = pe->region().rects(); uint numRects = allRects.count(); QPainter painter( this ); for ( uint i = 0; i < numRects; i++ ) { const QRect & r = allRects[i]; if ( !r.isValid() ) continue; #ifdef ENABLE_PROGRESS_OVERLAY const QRect dR(QRectF(r.x() * dpr, r.y() * dpr, r.width() * dpr, r.height() * dpr).toAlignedRect()); if ( Okular::Settings::slidesShowProgress() && r.intersects( m_overlayGeometry ) ) { // backbuffer the overlay operation QPixmap backPixmap( dR.size() ); backPixmap.setDevicePixelRatio( dpr ); QPainter pixPainter( &backPixmap ); // first draw the background on the backbuffer pixPainter.drawPixmap( QPoint(0,0), m_lastRenderedPixmap, dR ); // then blend the overlay (a piece of) over the background m_lastRenderedOverlay.save("/tmp/overlay.png"); QRect ovr = m_overlayGeometry.intersected( r ); pixPainter.drawPixmap( (ovr.left() - r.left()), (ovr.top() - r.top()), m_lastRenderedOverlay, (ovr.left() - m_overlayGeometry.left()) * dpr, (ovr.top() - m_overlayGeometry.top()) * dpr, ovr.width() * dpr, ovr.height() * dpr ); // finally blit the pixmap to the screen pixPainter.end(); const QRect backPixmapRect = backPixmap.rect(); const QRect dBackPixmapRect(QRectF(backPixmapRect.x() * dpr, backPixmapRect.y() * dpr, backPixmapRect.width() * dpr, backPixmapRect.height() * dpr).toAlignedRect()); painter.drawPixmap( r.topLeft(), backPixmap, dBackPixmapRect ); } else #endif // copy the rendered pixmap to the screen painter.drawPixmap( r.topLeft(), m_lastRenderedPixmap, dR ); qDebug() << "m_lastRenderedPixmap DPR" << m_lastRenderedPixmap.devicePixelRatioF(); } // paint drawings if ( m_frameIndex != -1 ) { painter.save(); const QRect & geom = m_frames[ m_frameIndex ]->geometry; QPixmap pm( geom.size() ); pm.fill( Qt::transparent ); QPainter pmPainter( &pm ); pmPainter.setRenderHints( QPainter::Antialiasing ); foreach ( const SmoothPath &drawing, m_frames[ m_frameIndex ]->drawings ) drawing.paint( &pmPainter, geom.width(), geom.height() ); if ( m_drawingEngine && m_drawingRect.intersects( pe->rect() ) ) m_drawingEngine->paint( &pmPainter, geom.width(), geom.height(), m_drawingRect.intersected( pe->rect() ) ); painter.setRenderHints( QPainter::Antialiasing ); painter.drawPixmap( geom.topLeft() , pm ); painter.restore(); } painter.end(); } void PresentationWidget::resizeEvent( QResizeEvent *re ) { // qCDebug(OkularUiDebug) << re->oldSize() << "=>" << re->size(); if ( re->oldSize() == QSize( -1, -1 ) ) return; m_screen = QApplication::desktop()->screenNumber( this ); applyNewScreenSize( re->oldSize() ); } void PresentationWidget::leaveEvent( QEvent * e ) { Q_UNUSED( e ) if ( !m_topBar->isHidden() ) { showTopBar( false ); } } // const void * PresentationWidget::getObjectRect( Okular::ObjectRect::ObjectType type, int x, int y, QRect * geometry ) const { // no links on invalid pages if ( geometry && !geometry->isNull() ) geometry->setRect( 0, 0, 0, 0 ); if ( m_frameIndex < 0 || m_frameIndex >= (int)m_frames.size() ) return 0; // get frame, page and geometry const PresentationFrame * frame = m_frames[ m_frameIndex ]; const Okular::Page * page = frame->page; const QRect & frameGeometry = frame->geometry; // compute normalized x and y double nx = (double)(x - frameGeometry.left()) / (double)frameGeometry.width(); double ny = (double)(y - frameGeometry.top()) / (double)frameGeometry.height(); // no links outside the pages if ( nx < 0 || nx > 1 || ny < 0 || ny > 1 ) return 0; // check if 1) there is an object and 2) it's a link const QRect d = QApplication::desktop()->screenGeometry( m_screen ); const Okular::ObjectRect * object = page->objectRect( type, nx, ny, d.width(), d.height() ); if ( !object ) return 0; // compute link geometry if destination rect present if ( geometry ) { *geometry = object->boundingRect( frameGeometry.width(), frameGeometry.height() ); geometry->translate( frameGeometry.left(), frameGeometry.top() ); } // return the link pointer return object->object(); } const Okular::Action * PresentationWidget::getLink( int x, int y, QRect * geometry ) const { return reinterpret_cast( getObjectRect( Okular::ObjectRect::Action, x, y, geometry ) ); } const Okular::Annotation * PresentationWidget::getAnnotation( int x, int y, QRect * geometry ) const { return reinterpret_cast( getObjectRect( Okular::ObjectRect::OAnnotation, x, y, geometry ) ); } void PresentationWidget::testCursorOnLink( int x, int y ) { const Okular::Action * link = getLink( x, y, 0 ); const Okular::Annotation *annotation = getAnnotation( x, y, 0 ); const bool needsHandCursor = ( ( link != 0 ) || ( ( annotation != 0 ) && ( annotation->subType() == Okular::Annotation::AMovie ) ) || ( ( annotation != 0 ) && ( annotation->subType() == Okular::Annotation::ARichMedia ) ) || ( ( annotation != 0 ) && ( annotation->subType() == Okular::Annotation::AScreen ) && ( GuiUtils::renditionMovieFromScreenAnnotation( static_cast< const Okular::ScreenAnnotation * >( annotation ) ) != 0 ) ) ); // only react on changes (in/out from a link) if ( ( needsHandCursor && !m_handCursor ) || ( !needsHandCursor && m_handCursor ) ) { // change cursor shape m_handCursor = needsHandCursor; setCursor( QCursor( m_handCursor ? Qt::PointingHandCursor : Qt::ArrowCursor ) ); } } void PresentationWidget::overlayClick( const QPoint & position ) { // clicking the progress indicator int xPos = position.x() - m_overlayGeometry.x() - m_overlayGeometry.width() / 2, yPos = m_overlayGeometry.height() / 2 - position.y(); if ( !xPos && !yPos ) return; // compute angle relative to indicator (note coord transformation) float angle = 0.5 + 0.5 * atan2( (double)-xPos, (double)-yPos ) / M_PI; int pageIndex = (int)( angle * ( m_frames.count() - 1 ) + 0.5 ); // go to selected page changePage( pageIndex ); } void PresentationWidget::changePage( int newPage ) { if ( m_showSummaryView ) { m_showSummaryView = false; m_frameIndex = -1; return; } if ( m_frameIndex == newPage ) return; // switch to newPage m_document->setViewportPage( newPage, this ); if ( (Okular::Settings::slidesShowSummary() && !m_showSummaryView) || m_frameIndex == -1 ) notifyCurrentPageChanged( -1, newPage ); } void PresentationWidget::generatePage( bool disableTransition ) { + qDebug() << "PRES generatePage!"; + if ( m_lastRenderedPixmap.isNull() ) { qreal dpr = qApp->devicePixelRatio(); m_lastRenderedPixmap = QPixmap( m_width * dpr, m_height * dpr ); m_lastRenderedPixmap.setDevicePixelRatio(dpr); m_previousPagePixmap = QPixmap(); } else { m_previousPagePixmap = m_lastRenderedPixmap; } // opens the painter over the pixmap QPainter pixmapPainter; pixmapPainter.begin( &m_lastRenderedPixmap ); // generate welcome page if ( m_frameIndex == -1 ) generateIntroPage( pixmapPainter ); // generate a normal pixmap with extended margin filling if ( m_frameIndex >= 0 && m_frameIndex < (int)m_document->pages() ) generateContentsPage( m_frameIndex, pixmapPainter ); pixmapPainter.end(); // generate the top-right corner overlay #ifdef ENABLE_PROGRESS_OVERLAY if ( Okular::Settings::slidesShowProgress() && m_frameIndex != -1 ) generateOverlay(); #endif // start transition on pages that have one if ( !disableTransition && Okular::Settings::slidesTransitionsEnabled() ) { const Okular::PageTransition * transition = m_frameIndex != -1 ? m_frames[ m_frameIndex ]->page->transition() : 0; if ( transition ) initTransition( transition ); else { Okular::PageTransition trans = defaultTransition(); initTransition( &trans ); } } else { Okular::PageTransition trans = defaultTransition( Okular::Settings::EnumSlidesTransition::Replace ); initTransition( &trans ); } // update cursor + tooltip if ( !m_drawingEngine && Okular::Settings::slidesCursor() != Okular::Settings::EnumSlidesCursor::Hidden ) { QPoint p = mapFromGlobal( QCursor::pos() ); testCursorOnLink( p.x(), p.y() ); } } void PresentationWidget::generateIntroPage( QPainter & p ) { qreal dpr = qApp->devicePixelRatio(); // use a vertical gray gradient background int blend1 = m_height / 10, blend2 = 9 * m_height / 10; int baseTint = QColor(Qt::gray).red(); for ( int i = 0; i < m_height; i++ ) { int k = baseTint; if ( i < blend1 ) k -= (int)( baseTint * (i-blend1)*(i-blend1) / (float)(blend1 * blend1) ); if ( i > blend2 ) k += (int)( (255-baseTint) * (i-blend2)*(i-blend2) / (float)(blend1 * blend1) ); p.fillRect( 0, i, m_width, 1, QColor( k, k, k ) ); } // draw okular logo in the four corners QPixmap logo = DesktopIcon( QStringLiteral("okular"), 64 * dpr ); logo.setDevicePixelRatio( dpr ); if ( !logo.isNull() ) { p.drawPixmap( 5, 5, logo ); p.drawPixmap( m_width - 5 - logo.width(), 5, logo ); p.drawPixmap( m_width - 5 - logo.width(), m_height - 5 - logo.height(), logo ); p.drawPixmap( 5, m_height - 5 - logo.height(), logo ); } // draw metadata text (the last line is 'click to begin') int strNum = m_metaStrings.count(), strHeight = m_height / ( strNum + 4 ), fontHeight = 2 * strHeight / 3; QFont font( p.font() ); font.setPixelSize( fontHeight ); QFontMetrics metrics( font ); for ( int i = 0; i < strNum; i++ ) { // set a font to fit text width float wScale = (float)metrics.boundingRect( m_metaStrings[i] ).width() / (float)m_width; QFont f( font ); if ( wScale > 1.0 ) f.setPixelSize( (int)( (float)fontHeight / (float)wScale ) ); p.setFont( f ); // text shadow p.setPen( Qt::darkGray ); p.drawText( 2, m_height / 4 + strHeight * i + 2, m_width, strHeight, Qt::AlignHCenter | Qt::AlignVCenter, m_metaStrings[i] ); // text body p.setPen( 128 + (127 * i) / strNum ); p.drawText( 0, m_height / 4 + strHeight * i, m_width, strHeight, Qt::AlignHCenter | Qt::AlignVCenter, m_metaStrings[i] ); } } void PresentationWidget::generateContentsPage( int pageNum, QPainter & p ) { + qDebug() << "PRES generateContentsPage: " << pageNum; + PresentationFrame * frame = m_frames[ pageNum ]; // translate painter and contents rect QRect geom( frame->geometry ); p.translate( geom.left(), geom.top() ); geom.translate( -geom.left(), -geom.top() ); // draw the page using the shared PagePainter class int flags = PagePainter::Accessibility | PagePainter::Highlights | PagePainter::Annotations; qDebug() << "PW paintPageOnPainter" << geom.width() << geom.height() << geom; PagePainter::paintPageOnPainter( &p, frame->page, this, flags, geom.width(), geom.height(), geom ); // restore painter p.translate( -frame->geometry.left(), -frame->geometry.top() ); // fill unpainted areas with background color QRegion unpainted( QRect( 0, 0, m_width, m_height ) ); QVector rects = unpainted.subtracted( frame->geometry ).rects(); for ( int i = 0; i < rects.count(); i++ ) { const QRect & r = rects[i]; p.fillRect( r, Okular::Settings::slidesBackgroundColor() ); } } // from Arthur - Qt4 - (is defined elsewhere as 'qt_div_255' to not break final compilation) inline int qt_div255(int x) { return (x + (x>>8) + 0x80) >> 8; } void PresentationWidget::generateOverlay() { #ifdef ENABLE_PROGRESS_OVERLAY qreal dpr = qApp->devicePixelRatio(); // calculate overlay geometry and resize pixmap if needed int side = m_width / 16; m_overlayGeometry.setRect( m_width - side - 4, 4, side, side ); // note: to get a sort of antialiasing, we render the pixmap double sized // and the resulting image is smoothly scaled down. So here we open a // painter on the double sized pixmap. side *= 2; QPixmap doublePixmap( side * dpr, side * dpr ); doublePixmap.setDevicePixelRatio( dpr ); doublePixmap.fill( Qt::black ); QPainter pixmapPainter( &doublePixmap ); pixmapPainter.setRenderHints( QPainter::Antialiasing ); // draw PIE SLICES in blue levels (the levels will then be the alpha component) int pages = m_document->pages(); if ( pages > 28 ) { // draw continuous slices int degrees = (int)( 360 * (float)(m_frameIndex + 1) / (float)pages ); pixmapPainter.setPen( 0x05 ); pixmapPainter.setBrush( QColor( 0x40 ) ); pixmapPainter.drawPie( 2, 2, side - 4, side - 4, 90*16, (360-degrees)*16 ); pixmapPainter.setPen( 0x40 ); pixmapPainter.setBrush( QColor( 0xF0 ) ); pixmapPainter.drawPie( 2, 2, side - 4, side - 4, 90*16, -degrees*16 ); } else { // draw discrete slices float oldCoord = -90; for ( int i = 0; i < pages; i++ ) { float newCoord = -90 + 360 * (float)(i + 1) / (float)pages; pixmapPainter.setPen( i <= m_frameIndex ? 0x40 : 0x05 ); pixmapPainter.setBrush( QColor( i <= m_frameIndex ? 0xF0 : 0x40 ) ); pixmapPainter.drawPie( 2, 2, side - 4, side - 4, (int)( -16*(oldCoord + 1) ), (int)( -16*(newCoord - (oldCoord + 2)) ) ); oldCoord = newCoord; } } int circleOut = side / 4; pixmapPainter.setPen( Qt::black ); pixmapPainter.setBrush( Qt::black ); pixmapPainter.drawEllipse( circleOut, circleOut, side - 2*circleOut, side - 2*circleOut ); // draw TEXT using maximum opacity QFont f( pixmapPainter.font() ); f.setPixelSize( side / 4 ); pixmapPainter.setFont( f ); pixmapPainter.setPen( 0xFF ); // use a little offset to prettify output pixmapPainter.drawText( 2, 2, side, side, Qt::AlignCenter, QString::number( m_frameIndex + 1 ) ); // end drawing pixmap and halve image pixmapPainter.end(); QImage image( doublePixmap.toImage().scaled( (side / 2) * dpr, (side / 2) * dpr, Qt::IgnoreAspectRatio, Qt::SmoothTransformation ) ); image.setDevicePixelRatio( dpr ); image = image.convertToFormat( QImage::Format_ARGB32 ); image.setDevicePixelRatio( dpr ); // draw circular shadow using the same technique doublePixmap.fill( Qt::black ); pixmapPainter.begin( &doublePixmap ); pixmapPainter.setPen( 0x40 ); pixmapPainter.setBrush( QColor( 0x80 ) ); pixmapPainter.drawEllipse( 0, 0, side, side ); pixmapPainter.end(); QImage shadow( doublePixmap.toImage().scaled( (side / 2) * dpr, (side / 2) * dpr, Qt::IgnoreAspectRatio, Qt::SmoothTransformation ) ); shadow.setDevicePixelRatio( dpr ); // generate a 2 colors pixmap using mixing shadow (made with highlight color) // and image (made with highlightedText color) QPalette pal = palette(); QColor color = pal.color( QPalette::Active, QPalette::HighlightedText ); int red = color.red(), green = color.green(), blue = color.blue(); color = pal.color( QPalette::Active, QPalette::Highlight ); int sRed = color.red(), sGreen = color.green(), sBlue = color.blue(); // pointers unsigned int * data = (unsigned int *)image.bits(), * shadowData = (unsigned int *)shadow.bits(), pixels = image.width() * image.height(); // cache data (reduce computation time to 26%!) int c1 = -1, c2 = -1, cR = 0, cG = 0, cB = 0, cA = 0; // foreach pixel for( unsigned int i = 0; i < pixels; ++i ) { // alpha for shadow and image int shadowAlpha = shadowData[i] & 0xFF, srcAlpha = data[i] & 0xFF; // cache values if ( srcAlpha != c1 || shadowAlpha != c2 ) { c1 = srcAlpha; c2 = shadowAlpha; // fuse color components and alpha value of image over shadow data[i] = qRgba( cR = qt_div255( srcAlpha * red + (255 - srcAlpha) * sRed ), cG = qt_div255( srcAlpha * green + (255 - srcAlpha) * sGreen ), cB = qt_div255( srcAlpha * blue + (255 - srcAlpha) * sBlue ), cA = qt_div255( srcAlpha * srcAlpha + (255 - srcAlpha) * shadowAlpha ) ); } else data[i] = qRgba( cR, cG, cB, cA ); } m_lastRenderedOverlay = QPixmap::fromImage( image ); m_lastRenderedOverlay.setDevicePixelRatio( dpr ); // start the autohide timer //repaint( m_overlayGeometry ); // toggle with next line update( m_overlayGeometry ); m_overlayHideTimer->start( 2500 ); #endif } QRect PresentationWidget::routeMouseDrawingEvent( QMouseEvent * e ) { if ( m_frameIndex == -1 ) // Can't draw on the summary page return QRect(); const QRect & geom = m_frames[ m_frameIndex ]->geometry; const Okular::Page * page = m_frames[ m_frameIndex ]->page; AnnotatorEngine::EventType eventType; AnnotatorEngine::Button button; // figure out the event type and button AnnotatorEngine::decodeEvent( e, &eventType, &button ); static bool hasclicked = false; if ( eventType == AnnotatorEngine::Press ) hasclicked = true; double nX = ( (double)e->x() - (double)geom.left() ) / (double)geom.width(); double nY = ( (double)e->y() - (double)geom.top() ) / (double)geom.height(); QRect ret; bool isInside = nX >= 0 && nX < 1 && nY >= 0 && nY < 1; if ( hasclicked && !isInside ) { // Fake a move to the last border pos nX = qBound(0., nX, 1.); nY = qBound(0., nY, 1.); m_drawingEngine->event( AnnotatorEngine::Move, button, nX, nY, geom.width(), geom.height(), page ); // Fake a release in the following lines eventType = AnnotatorEngine::Release; isInside = true; } else if ( !hasclicked && isInside ) { // we're coming from the outside, pretend we started clicking at the closest border if ( nX < ( 1 - nX ) && nX < nY && nX < ( 1 - nY ) ) nX = 0; else if ( nY < ( 1 - nY ) && nY < nX && nY < ( 1 - nX ) ) nY = 0; else if ( ( 1 - nX ) < nX && ( 1 - nX ) < nY && ( 1 - nX ) < ( 1 - nY ) ) nX = 1; else nY = 1; hasclicked = true; eventType = AnnotatorEngine::Press; } if ( hasclicked && isInside ) { ret = m_drawingEngine->event( eventType, button, nX, nY, geom.width(), geom.height(), page ); } if ( eventType == AnnotatorEngine::Release ) { hasclicked = false; } if ( m_drawingEngine->creationCompleted() ) { // add drawing to current page m_frames[ m_frameIndex ]->drawings << m_drawingEngine->endSmoothPath(); // manually disable and re-enable the pencil mode, so we can do // cleaning of the actual drawer and create a new one just after // that - that gives continuous drawing slotChangeDrawingToolEngine( QDomElement() ); slotChangeDrawingToolEngine( m_currentDrawingToolElement ); // schedule repaint update(); } return ret; } void PresentationWidget::startAutoChangeTimer() { double pageDuration = m_frameIndex >= 0 && m_frameIndex < (int)m_frames.count() ? m_frames[ m_frameIndex ]->page->duration() : -1; if ( m_advanceSlides || pageDuration >= 0.0 ) { double secs; if ( pageDuration < 0.0 ) secs = Okular::SettingsCore::slidesAdvanceTime(); else if ( m_advanceSlides ) secs = qMin( pageDuration, Okular::SettingsCore::slidesAdvanceTime() ); else secs = pageDuration; m_nextPageTimer->start( (int)( secs * 1000 ) ); } } void PresentationWidget::recalcGeometry() { QDesktopWidget *desktop = QApplication::desktop(); const int preferenceScreen = Okular::Settings::slidesScreen(); int screen = 0; if ( preferenceScreen == -2 ) { screen = desktop->screenNumber( m_parentWidget ); } else if ( preferenceScreen == -1 ) { screen = desktop->primaryScreen(); } else if ( preferenceScreen >= 0 && preferenceScreen < desktop->numScreens() ) { screen = preferenceScreen; } else { screen = desktop->screenNumber( m_parentWidget ); Okular::Settings::setSlidesScreen( -2 ); } const QRect screenGeom = desktop->screenGeometry( screen ); // qCDebug(OkularUiDebug) << screen << "=>" << screenGeom; m_screen = screen; setGeometry( screenGeom ); } void PresentationWidget::repositionContent() { const QRect ourGeom = geometry(); // tool bar height in pixels, make it large enough to hold the text fields with the page numbers const int toolBarHeight = m_pagesEdit->height() * 1.5; m_topBar->setGeometry( 0, 0, ourGeom.width(), toolBarHeight ); m_topBar->setIconSize( QSize( toolBarHeight * 0.75, toolBarHeight * 0.75 ) ); } void PresentationWidget::requestPixmaps() { PresentationFrame * frame = m_frames[ m_frameIndex ]; int pixW = frame->geometry.width(); int pixH = frame->geometry.height(); // operation will take long: set busy cursor QApplication::setOverrideCursor( QCursor( Qt::BusyCursor ) ); // request the pixmap QLinkedList< Okular::PixmapRequest * > requests; qDebug() << "PW PixmapRequest" << devicePixelRatioF(); requests.push_back( new Okular::PixmapRequest( this, m_frameIndex, pixW, pixH, PRESENTATION_PRIO, Okular::PixmapRequest::NoFeature ) ); // restore cursor QApplication::restoreOverrideCursor(); // ask for next and previous page if not in low memory usage setting if ( Okular::SettingsCore::memoryLevel() != Okular::SettingsCore::EnumMemoryLevel::Low ) { int pagesToPreload = 1; // If greedy, preload everything if (Okular::SettingsCore::memoryLevel() == Okular::SettingsCore::EnumMemoryLevel::Greedy) pagesToPreload = (int)m_document->pages(); Okular::PixmapRequest::PixmapRequestFeatures requestFeatures = Okular::PixmapRequest::Preload; requestFeatures |= Okular::PixmapRequest::Asynchronous; for( int j = 1; j <= pagesToPreload; j++ ) { int tailRequest = m_frameIndex + j; if ( tailRequest < (int)m_document->pages() ) { PresentationFrame *nextFrame = m_frames[ tailRequest ]; pixW = nextFrame->geometry.width(); pixH = nextFrame->geometry.height(); if ( !nextFrame->page->hasPixmap( this, pixW, pixH ) ) requests.push_back( new Okular::PixmapRequest( this, tailRequest, pixW, pixH, PRESENTATION_PRELOAD_PRIO, requestFeatures ) ); } int headRequest = m_frameIndex - j; if ( headRequest >= 0 ) { PresentationFrame *prevFrame = m_frames[ headRequest ]; pixW = prevFrame->geometry.width(); pixH = prevFrame->geometry.height(); if ( !prevFrame->page->hasPixmap( this, pixW, pixH ) ) requests.push_back( new Okular::PixmapRequest( this, headRequest, pixW, pixH, PRESENTATION_PRELOAD_PRIO, requestFeatures ) ); } // stop if we've already reached both ends of the document if ( headRequest < 0 && tailRequest >= (int)m_document->pages() ) break; } } m_document->requestPixmaps( requests ); } void PresentationWidget::slotNextPage() { int nextIndex = m_frameIndex + 1; // loop when configured if ( nextIndex == m_frames.count() && Okular::Settings::slidesLoop() ) nextIndex = 0; if ( nextIndex < m_frames.count() ) { + qDebug() << "PRES nextIndex" << nextIndex; + // go to next page changePage( nextIndex ); // auto advance to the next page if set startAutoChangeTimer(); } else { #ifdef ENABLE_PROGRESS_OVERLAY if ( Okular::Settings::slidesShowProgress() ) generateOverlay(); #endif if ( m_transitionTimer->isActive() ) { m_transitionTimer->stop(); m_lastRenderedPixmap = m_currentPagePixmap; update(); } } // we need the setFocus() call here to let KCursor::autoHide() work correctly setFocus(); } void PresentationWidget::slotPrevPage() { if ( m_frameIndex > 0 ) { // go to previous page changePage( m_frameIndex - 1 ); // auto advance to the next page if set startAutoChangeTimer(); } else { #ifdef ENABLE_PROGRESS_OVERLAY if ( Okular::Settings::slidesShowProgress() ) generateOverlay(); #endif if ( m_transitionTimer->isActive() ) { m_transitionTimer->stop(); m_lastRenderedPixmap = m_currentPagePixmap; update(); } } } void PresentationWidget::slotFirstPage() { changePage( 0 ); } void PresentationWidget::slotLastPage() { changePage( (int)m_frames.count() - 1 ); } void PresentationWidget::slotHideOverlay() { QRect geom( m_overlayGeometry ); m_overlayGeometry.setCoords( 0, 0, -1, -1 ); update( geom ); } void PresentationWidget::slotTransitionStep() { switch( m_currentTransition.type() ) { case Okular::PageTransition::Fade: { QPainter pixmapPainter; m_currentPixmapOpacity += 1.0 / m_transitionSteps; m_lastRenderedPixmap = QPixmap( m_lastRenderedPixmap.size() ); m_lastRenderedPixmap.setDevicePixelRatio( qApp->devicePixelRatio() ); m_lastRenderedPixmap.fill( Qt::transparent ); pixmapPainter.begin( &m_lastRenderedPixmap ); pixmapPainter.setCompositionMode( QPainter::CompositionMode_Source ); pixmapPainter.setOpacity( 1 - m_currentPixmapOpacity ); pixmapPainter.drawPixmap( 0, 0, m_previousPagePixmap ); pixmapPainter.setOpacity( m_currentPixmapOpacity ); pixmapPainter.drawPixmap( 0, 0, m_currentPagePixmap ); update(); if( m_currentPixmapOpacity >= 1 ) return; } break; default: { if ( m_transitionRects.empty() ) { // it's better to fix the transition to cover the whole screen than // enabling the following line that wastes cpu for nothing //update(); return; } for ( int i = 0; i < m_transitionMul && !m_transitionRects.empty(); i++ ) { update( m_transitionRects.first() ); m_transitionRects.pop_front(); } } break; } m_transitionTimer->start( m_transitionDelay ); } void PresentationWidget::slotDelayedEvents() { recalcGeometry(); repositionContent(); if ( m_screenSelect ) { m_screenSelect->setCurrentItem( m_screen ); connect( m_screenSelect->selectableActionGroup(), &QActionGroup::triggered, this, &PresentationWidget::chooseScreen ); } // show widget and take control show(); setWindowState( windowState() | Qt::WindowFullScreen ); connect( QApplication::desktop(), &QDesktopWidget::resized, this, &PresentationWidget::screenResized ); // inform user on how to exit from presentation mode KMessageBox::information( this, i18n("There are two ways of exiting presentation mode, you can press either ESC key or click with the quit button that appears when placing the mouse in the top-right corner. Of course you can cycle windows (Alt+TAB by default)"), QString(), QStringLiteral("presentationInfo") ); } void PresentationWidget::slotPageChanged() { bool ok = true; int p = m_pagesEdit->text().toInt( &ok ); if ( !ok ) return; changePage( p - 1 ); } void PresentationWidget::slotChangeDrawingToolEngine( const QDomElement &element ) { if ( element.isNull() ) { delete m_drawingEngine; m_drawingEngine = 0; m_drawingRect = QRect(); setCursor( Qt::ArrowCursor ); } else { m_drawingEngine = new SmoothPathEngine( element ); setCursor( QCursor( QPixmap( QStringLiteral("pencil") ), Qt::ArrowCursor ) ); m_currentDrawingToolElement = element; } } void PresentationWidget::slotAddDrawingToolActions() { DrawingToolActions *drawingToolActions = qobject_cast(sender()); foreach(QAction *action, drawingToolActions->actions()) { action->setEnabled( true ); m_topBar->addAction( action ); addAction( action ); } } void PresentationWidget::clearDrawings() { if ( m_frameIndex != -1 ) m_frames[ m_frameIndex ]->drawings.clear(); update(); } void PresentationWidget::screenResized( int screen ) { // we can ignore if a screen was resized in the case the screen is not // where we are on if ( screen != m_screen ) return; setScreen( screen ); } void PresentationWidget::chooseScreen( QAction *act ) { if ( !act || act->data().type() != QVariant::Int ) return; const int newScreen = act->data().toInt(); setScreen( newScreen ); } void PresentationWidget::toggleBlackScreenMode( bool ) { m_inBlackScreenMode = !m_inBlackScreenMode; update(); } void PresentationWidget::setScreen( int newScreen ) { const QRect screenGeom = QApplication::desktop()->screenGeometry( newScreen ); const QSize oldSize = size(); // qCDebug(OkularUiDebug) << newScreen << "=>" << screenGeom; m_screen = newScreen; setGeometry( screenGeom ); applyNewScreenSize( oldSize ); } void PresentationWidget::applyNewScreenSize( const QSize & oldSize ) { repositionContent(); // if by chance the new screen has the same resolution of the previous, // do not invalidate pixmaps and such.. if ( size() == oldSize ) return; m_width = width(); m_height = height(); // update the frames QVector< PresentationFrame * >::const_iterator fIt = m_frames.constBegin(), fEnd = m_frames.constEnd(); const float screenRatio = (float)m_height / (float)m_width; for ( ; fIt != fEnd; ++fIt ) { (*fIt)->recalcGeometry( m_width, m_height, screenRatio, qApp->devicePixelRatio() ); } if ( m_frameIndex != -1 ) { // ugliness alarm! const_cast< Okular::Page * >( m_frames[ m_frameIndex ]->page )->deletePixmap( this ); // force the regeneration of the pixmap m_lastRenderedPixmap = QPixmap(); m_blockNotifications = true; requestPixmaps(); m_blockNotifications = false; } if ( m_transitionTimer->isActive() ) { m_transitionTimer->stop(); } generatePage( true /* no transitions */ ); } void PresentationWidget::inhibitPowerManagement() { #ifdef Q_OS_LINUX QString reason = i18nc( "Reason for inhibiting the screensaver activation, when the presentation mode is active", "Giving a presentation" ); if (!m_screenInhibitCookie) { QDBusMessage message = QDBusMessage::createMethodCall("org.freedesktop.ScreenSaver", "/ScreenSaver", "org.freedesktop.ScreenSaver", "Inhibit"); message << QCoreApplication::applicationName(); message << reason; QDBusPendingReply reply = QDBusConnection::sessionBus().asyncCall(message); reply.waitForFinished(); if (reply.isValid()) { m_screenInhibitCookie = reply.value(); qCDebug(OkularUiDebug) << "Screen inhibition cookie" << m_screenInhibitCookie; } else { qCWarning(OkularUiDebug) << "Unable to inhibit screensaver" << reply.error(); } } if (!m_sleepInhibitCookie) { QDBusMessage message = QDBusMessage::createMethodCall(QStringLiteral("org.freedesktop.login1"), QStringLiteral("/org/freedesktop/login1"), QStringLiteral("org.freedesktop.login1.Manager"), QStringLiteral("Inhibit") ); message << QStringLiteral("sleep"); message << QCoreApplication::applicationName(); message << reason; message << QStringLiteral("block"); QDBusPendingReply reply = QDBusConnection::systemBus().asyncCall(message); reply.waitForFinished(); if (reply.isValid()) { m_sleepInhibitCookie = reply.value().fileDescriptor(); } else { qCWarning(OkularUiDebug) << "Unable to inhibit sleep" << reply.error(); } } #endif } void PresentationWidget::allowPowerManagement() { #ifdef Q_OS_LINUX if (m_sleepInhibitCookie) { ::close(m_sleepInhibitCookie); m_sleepInhibitCookie = 0; } if (m_screenInhibitCookie) { QDBusMessage message = QDBusMessage::createMethodCall("org.freedesktop.ScreenSaver", "/ScreenSaver", "org.freedesktop.ScreenSaver", "UnInhibit"); message << m_screenInhibitCookie; QDBusPendingReply reply = QDBusConnection::sessionBus().asyncCall(message); reply.waitForFinished(); m_screenInhibitCookie = 0; } #endif } void PresentationWidget::showTopBar( bool show ) { if ( show ) { m_topBar->show(); // Don't autohide the mouse cursor if it's over the toolbar if ( Okular::Settings::slidesCursor() == Okular::Settings::EnumSlidesCursor::HiddenDelay ) { KCursor::setAutoHideCursor( this, false ); } // Always show a cursor when topBar is visible if ( !m_drawingEngine ) { setCursor( QCursor( Qt::ArrowCursor ) ); } } else { m_topBar->hide(); // Reenable autohide if need be when leaving the toolbar if ( Okular::Settings::slidesCursor() == Okular::Settings::EnumSlidesCursor::HiddenDelay ) { KCursor::setAutoHideCursor( this, true ); } // Or hide the cursor again if hidden cursor is enabled else if ( Okular::Settings::slidesCursor() == Okular::Settings::EnumSlidesCursor::Hidden ) { // Don't hide the cursor if drawing mode is on if ( !m_drawingEngine ) { setCursor( QCursor( Qt::BlankCursor ) ); } } } // Make sure mouse tracking isn't off after the KCursor::setAutoHideCursor() calls setMouseTracking( true ); } void PresentationWidget::slotFind() { if ( !m_searchBar ) { m_searchBar = new PresentationSearchBar( m_document, this, this ); m_searchBar->forceSnap(); } m_searchBar->focusOnSearchEdit(); m_searchBar->show(); } const Okular::PageTransition PresentationWidget::defaultTransition() const { return defaultTransition( Okular::Settings::slidesTransition() ); } const Okular::PageTransition PresentationWidget::defaultTransition( int type ) const { switch ( type ) { case Okular::Settings::EnumSlidesTransition::BlindsHorizontal: { Okular::PageTransition transition( Okular::PageTransition::Blinds ); transition.setAlignment( Okular::PageTransition::Horizontal ); return transition; break; } case Okular::Settings::EnumSlidesTransition::BlindsVertical: { Okular::PageTransition transition( Okular::PageTransition::Blinds ); transition.setAlignment( Okular::PageTransition::Vertical ); return transition; break; } case Okular::Settings::EnumSlidesTransition::BoxIn: { Okular::PageTransition transition( Okular::PageTransition::Box ); transition.setDirection( Okular::PageTransition::Inward ); return transition; break; } case Okular::Settings::EnumSlidesTransition::BoxOut: { Okular::PageTransition transition( Okular::PageTransition::Box ); transition.setDirection( Okular::PageTransition::Outward ); return transition; break; } case Okular::Settings::EnumSlidesTransition::Dissolve: { return Okular::PageTransition( Okular::PageTransition::Dissolve ); break; } case Okular::Settings::EnumSlidesTransition::GlitterDown: { Okular::PageTransition transition( Okular::PageTransition::Glitter ); transition.setAngle( 270 ); return transition; break; } case Okular::Settings::EnumSlidesTransition::GlitterRight: { Okular::PageTransition transition( Okular::PageTransition::Glitter ); transition.setAngle( 0 ); return transition; break; } case Okular::Settings::EnumSlidesTransition::GlitterRightDown: { Okular::PageTransition transition( Okular::PageTransition::Glitter ); transition.setAngle( 315 ); return transition; break; } case Okular::Settings::EnumSlidesTransition::Random: { return defaultTransition( KRandom::random() % 18 ); break; } case Okular::Settings::EnumSlidesTransition::SplitHorizontalIn: { Okular::PageTransition transition( Okular::PageTransition::Split ); transition.setAlignment( Okular::PageTransition::Horizontal ); transition.setDirection( Okular::PageTransition::Inward ); return transition; break; } case Okular::Settings::EnumSlidesTransition::SplitHorizontalOut: { Okular::PageTransition transition( Okular::PageTransition::Split ); transition.setAlignment( Okular::PageTransition::Horizontal ); transition.setDirection( Okular::PageTransition::Outward ); return transition; break; } case Okular::Settings::EnumSlidesTransition::SplitVerticalIn: { Okular::PageTransition transition( Okular::PageTransition::Split ); transition.setAlignment( Okular::PageTransition::Vertical ); transition.setDirection( Okular::PageTransition::Inward ); return transition; break; } case Okular::Settings::EnumSlidesTransition::SplitVerticalOut: { Okular::PageTransition transition( Okular::PageTransition::Split ); transition.setAlignment( Okular::PageTransition::Vertical ); transition.setDirection( Okular::PageTransition::Outward ); return transition; break; } case Okular::Settings::EnumSlidesTransition::WipeDown: { Okular::PageTransition transition( Okular::PageTransition::Wipe ); transition.setAngle( 270 ); return transition; break; } case Okular::Settings::EnumSlidesTransition::WipeRight: { Okular::PageTransition transition( Okular::PageTransition::Wipe ); transition.setAngle( 0 ); return transition; break; } case Okular::Settings::EnumSlidesTransition::WipeLeft: { Okular::PageTransition transition( Okular::PageTransition::Wipe ); transition.setAngle( 180 ); return transition; break; } case Okular::Settings::EnumSlidesTransition::WipeUp: { Okular::PageTransition transition( Okular::PageTransition::Wipe ); transition.setAngle( 90 ); return transition; break; } case Okular::Settings::EnumSlidesTransition::Fade: { return Okular::PageTransition( Okular::PageTransition::Fade ); break; } case Okular::Settings::EnumSlidesTransition::Replace: default: return Okular::PageTransition( Okular::PageTransition::Replace ); break; } // should not happen, just make gcc happy return Okular::PageTransition(); } /** ONLY the TRANSITIONS GENERATION function from here on **/ void PresentationWidget::initTransition( const Okular::PageTransition *transition ) { // if it's just a 'replace' transition, repaint the screen if ( transition->type() == Okular::PageTransition::Replace ) { update(); return; } const bool isInward = transition->direction() == Okular::PageTransition::Inward; const bool isHorizontal = transition->alignment() == Okular::PageTransition::Horizontal; const float totalTime = transition->duration(); m_transitionRects.clear(); m_currentTransition = *transition; m_currentPagePixmap = m_lastRenderedPixmap; switch( transition->type() ) { // split: horizontal / vertical and inward / outward case Okular::PageTransition::Split: { const int steps = isHorizontal ? 100 : 75; if ( isHorizontal ) { if ( isInward ) { int xPosition = 0; for ( int i = 0; i < steps; i++ ) { int xNext = ((i + 1) * m_width) / (2 * steps); m_transitionRects.push_back( QRect( xPosition, 0, xNext - xPosition, m_height ) ); m_transitionRects.push_back( QRect( m_width - xNext, 0, xNext - xPosition, m_height ) ); xPosition = xNext; } } else { int xPosition = m_width / 2; for ( int i = 0; i < steps; i++ ) { int xNext = ((steps - (i + 1)) * m_width) / (2 * steps); m_transitionRects.push_back( QRect( xNext, 0, xPosition - xNext, m_height ) ); m_transitionRects.push_back( QRect( m_width - xPosition, 0, xPosition - xNext, m_height ) ); xPosition = xNext; } } } else { if ( isInward ) { int yPosition = 0; for ( int i = 0; i < steps; i++ ) { int yNext = ((i + 1) * m_height) / (2 * steps); m_transitionRects.push_back( QRect( 0, yPosition, m_width, yNext - yPosition ) ); m_transitionRects.push_back( QRect( 0, m_height - yNext, m_width, yNext - yPosition ) ); yPosition = yNext; } } else { int yPosition = m_height / 2; for ( int i = 0; i < steps; i++ ) { int yNext = ((steps - (i + 1)) * m_height) / (2 * steps); m_transitionRects.push_back( QRect( 0, yNext, m_width, yPosition - yNext ) ); m_transitionRects.push_back( QRect( 0, m_height - yPosition, m_width, yPosition - yNext ) ); yPosition = yNext; } } } m_transitionMul = 2; m_transitionDelay = (int)( (totalTime * 1000) / steps ); } break; // blinds: horizontal(l-to-r) / vertical(t-to-b) case Okular::PageTransition::Blinds: { const int blinds = isHorizontal ? 8 : 6; const int steps = m_width / (4 * blinds); if ( isHorizontal ) { int xPosition[ 8 ]; for ( int b = 0; b < blinds; b++ ) xPosition[ b ] = (b * m_width) / blinds; for ( int i = 0; i < steps; i++ ) { int stepOffset = (int)( ((float)i * (float)m_width) / ((float)blinds * (float)steps) ); for ( int b = 0; b < blinds; b++ ) { m_transitionRects.push_back( QRect( xPosition[ b ], 0, stepOffset, m_height ) ); xPosition[ b ] = stepOffset + (b * m_width) / blinds; } } } else { int yPosition[ 6 ]; for ( int b = 0; b < blinds; b++ ) yPosition[ b ] = (b * m_height) / blinds; for ( int i = 0; i < steps; i++ ) { int stepOffset = (int)( ((float)i * (float)m_height) / ((float)blinds * (float)steps) ); for ( int b = 0; b < blinds; b++ ) { m_transitionRects.push_back( QRect( 0, yPosition[ b ], m_width, stepOffset ) ); yPosition[ b ] = stepOffset + (b * m_height) / blinds; } } } m_transitionMul = blinds; m_transitionDelay = (int)( (totalTime * 1000) / steps ); } break; // box: inward / outward case Okular::PageTransition::Box: { const int steps = m_width / 10; if ( isInward ) { int L = 0, T = 0, R = m_width, B = m_height; for ( int i = 0; i < steps; i++ ) { // compure shrinked box coords int newL = ((i + 1) * m_width) / (2 * steps); int newT = ((i + 1) * m_height) / (2 * steps); int newR = m_width - newL; int newB = m_height - newT; // add left, right, topcenter, bottomcenter rects m_transitionRects.push_back( QRect( L, T, newL - L, B - T ) ); m_transitionRects.push_back( QRect( newR, T, R - newR, B - T ) ); m_transitionRects.push_back( QRect( newL, T, newR - newL, newT - T ) ); m_transitionRects.push_back( QRect( newL, newB, newR - newL, B - newB ) ); L = newL; T = newT; R = newR, B = newB; } } else { int L = m_width / 2, T = m_height / 2, R = L, B = T; for ( int i = 0; i < steps; i++ ) { // compure shrinked box coords int newL = ((steps - (i + 1)) * m_width) / (2 * steps); int newT = ((steps - (i + 1)) * m_height) / (2 * steps); int newR = m_width - newL; int newB = m_height - newT; // add left, right, topcenter, bottomcenter rects m_transitionRects.push_back( QRect( newL, newT, L - newL, newB - newT ) ); m_transitionRects.push_back( QRect( R, newT, newR - R, newB - newT ) ); m_transitionRects.push_back( QRect( L, newT, R - L, T - newT ) ); m_transitionRects.push_back( QRect( L, B, R - L, newB - B ) ); L = newL; T = newT; R = newR, B = newB; } } m_transitionMul = 4; m_transitionDelay = (int)( (totalTime * 1000) / steps ); } break; // wipe: implemented for 4 canonical angles case Okular::PageTransition::Wipe: { const int angle = transition->angle(); const int steps = (angle == 0) || (angle == 180) ? m_width / 8 : m_height / 8; if ( angle == 0 ) { int xPosition = 0; for ( int i = 0; i < steps; i++ ) { int xNext = ((i + 1) * m_width) / steps; m_transitionRects.push_back( QRect( xPosition, 0, xNext - xPosition, m_height ) ); xPosition = xNext; } } else if ( angle == 90 ) { int yPosition = m_height; for ( int i = 0; i < steps; i++ ) { int yNext = ((steps - (i + 1)) * m_height) / steps; m_transitionRects.push_back( QRect( 0, yNext, m_width, yPosition - yNext ) ); yPosition = yNext; } } else if ( angle == 180 ) { int xPosition = m_width; for ( int i = 0; i < steps; i++ ) { int xNext = ((steps - (i + 1)) * m_width) / steps; m_transitionRects.push_back( QRect( xNext, 0, xPosition - xNext, m_height ) ); xPosition = xNext; } } else if ( angle == 270 ) { int yPosition = 0; for ( int i = 0; i < steps; i++ ) { int yNext = ((i + 1) * m_height) / steps; m_transitionRects.push_back( QRect( 0, yPosition, m_width, yNext - yPosition ) ); yPosition = yNext; } } else { update(); return; } m_transitionMul = 1; m_transitionDelay = (int)( (totalTime * 1000) / steps ); } break; // dissolve: replace 'random' rects case Okular::PageTransition::Dissolve: { const int gridXsteps = 50; const int gridYsteps = 38; const int steps = gridXsteps * gridYsteps; int oldX = 0; int oldY = 0; // create a grid of gridXstep by gridYstep QRects for ( int y = 0; y < gridYsteps; y++ ) { int newY = (int)( m_height * ((float)(y+1) / (float)gridYsteps) ); for ( int x = 0; x < gridXsteps; x++ ) { int newX = (int)( m_width * ((float)(x+1) / (float)gridXsteps) ); m_transitionRects.push_back( QRect( oldX, oldY, newX - oldX, newY - oldY ) ); oldX = newX; } oldX = 0; oldY = newY; } // randomize the grid for ( int i = 0; i < steps; i++ ) { #ifndef Q_OS_WIN int n1 = (int)(steps * drand48()); int n2 = (int)(steps * drand48()); #else int n1 = (int)(steps * (std::rand() / RAND_MAX)); int n2 = (int)(steps * (std::rand() / RAND_MAX)); #endif // swap items if index differs if ( n1 != n2 ) { QRect r = m_transitionRects[ n2 ]; m_transitionRects[ n2 ] = m_transitionRects[ n1 ]; m_transitionRects[ n1 ] = r; } } // set global transition parameters m_transitionMul = 40; m_transitionDelay = (int)( (m_transitionMul * 1000 * totalTime) / steps ); } break; // glitter: similar to dissolve but has a direction case Okular::PageTransition::Glitter: { const int gridXsteps = 50; const int gridYsteps = 38; const int steps = gridXsteps * gridYsteps; const int angle = transition->angle(); // generate boxes using a given direction if ( angle == 90 ) { int yPosition = m_height; for ( int i = 0; i < gridYsteps; i++ ) { int yNext = ((gridYsteps - (i + 1)) * m_height) / gridYsteps; int xPosition = 0; for ( int j = 0; j < gridXsteps; j++ ) { int xNext = ((j + 1) * m_width) / gridXsteps; m_transitionRects.push_back( QRect( xPosition, yNext, xNext - xPosition, yPosition - yNext ) ); xPosition = xNext; } yPosition = yNext; } } else if ( angle == 180 ) { int xPosition = m_width; for ( int i = 0; i < gridXsteps; i++ ) { int xNext = ((gridXsteps - (i + 1)) * m_width) / gridXsteps; int yPosition = 0; for ( int j = 0; j < gridYsteps; j++ ) { int yNext = ((j + 1) * m_height) / gridYsteps; m_transitionRects.push_back( QRect( xNext, yPosition, xPosition - xNext, yNext - yPosition ) ); yPosition = yNext; } xPosition = xNext; } } else if ( angle == 270 ) { int yPosition = 0; for ( int i = 0; i < gridYsteps; i++ ) { int yNext = ((i + 1) * m_height) / gridYsteps; int xPosition = 0; for ( int j = 0; j < gridXsteps; j++ ) { int xNext = ((j + 1) * m_width) / gridXsteps; m_transitionRects.push_back( QRect( xPosition, yPosition, xNext - xPosition, yNext - yPosition ) ); xPosition = xNext; } yPosition = yNext; } } else // if angle is 0 or 315 { int xPosition = 0; for ( int i = 0; i < gridXsteps; i++ ) { int xNext = ((i + 1) * m_width) / gridXsteps; int yPosition = 0; for ( int j = 0; j < gridYsteps; j++ ) { int yNext = ((j + 1) * m_height) / gridYsteps; m_transitionRects.push_back( QRect( xPosition, yPosition, xNext - xPosition, yNext - yPosition ) ); yPosition = yNext; } xPosition = xNext; } } // add a 'glitter' (1 over 10 pieces is randomized) int randomSteps = steps / 20; for ( int i = 0; i < randomSteps; i++ ) { #ifndef Q_OS_WIN int n1 = (int)(steps * drand48()); int n2 = (int)(steps * drand48()); #else int n1 = (int)(steps * (std::rand() / RAND_MAX)); int n2 = (int)(steps * (std::rand() / RAND_MAX)); #endif // swap items if index differs if ( n1 != n2 ) { QRect r = m_transitionRects[ n2 ]; m_transitionRects[ n2 ] = m_transitionRects[ n1 ]; m_transitionRects[ n1 ] = r; } } // set global transition parameters m_transitionMul = (angle == 90) || (angle == 270) ? gridYsteps : gridXsteps; m_transitionMul /= 2; m_transitionDelay = (int)( (m_transitionMul * 1000 * totalTime) / steps ); } break; case Okular::PageTransition::Fade: { enum {FADE_TRANSITION_FPS = 20}; const int steps = totalTime * FADE_TRANSITION_FPS; m_transitionSteps = steps; QPainter pixmapPainter; m_currentPixmapOpacity = (double) 1 / steps; m_transitionDelay = (int)( totalTime * 1000 ) / steps; m_lastRenderedPixmap = QPixmap( m_lastRenderedPixmap.size() ); m_lastRenderedPixmap.fill( Qt::transparent ); pixmapPainter.begin( &m_lastRenderedPixmap ); pixmapPainter.setCompositionMode( QPainter::CompositionMode_Source ); pixmapPainter.setOpacity( 1 - m_currentPixmapOpacity ); pixmapPainter.drawPixmap( 0, 0, m_previousPagePixmap ); pixmapPainter.setOpacity( m_currentPixmapOpacity ); pixmapPainter.drawPixmap( 0, 0, m_currentPagePixmap ); pixmapPainter.end(); update(); } break; // implement missing transitions (a binary raster engine needed here) case Okular::PageTransition::Fly: case Okular::PageTransition::Push: case Okular::PageTransition::Cover: case Okular::PageTransition::Uncover: default: update(); return; } // send the first start to the timer m_transitionTimer->start( 0 ); } void PresentationWidget::slotProcessMovieAction( const Okular::MovieAction *action ) { const Okular::MovieAnnotation *movieAnnotation = action->annotation(); if ( !movieAnnotation ) return; Okular::Movie *movie = movieAnnotation->movie(); if ( !movie ) return; VideoWidget *vw = m_frames[ m_frameIndex ]->videoWidgets.value( movieAnnotation->movie() ); if ( !vw ) return; vw->show(); switch ( action->operation() ) { case Okular::MovieAction::Play: vw->stop(); vw->play(); break; case Okular::MovieAction::Stop: vw->stop(); break; case Okular::MovieAction::Pause: vw->pause(); break; case Okular::MovieAction::Resume: vw->play(); break; }; } void PresentationWidget::slotProcessRenditionAction( const Okular::RenditionAction *action ) { Okular::Movie *movie = action->movie(); if ( !movie ) return; VideoWidget *vw = m_frames[ m_frameIndex ]->videoWidgets.value( movie ); if ( !vw ) return; if ( action->operation() == Okular::RenditionAction::None ) return; vw->show(); switch ( action->operation() ) { case Okular::RenditionAction::Play: vw->stop(); vw->play(); break; case Okular::RenditionAction::Stop: vw->stop(); break; case Okular::RenditionAction::Pause: vw->pause(); break; case Okular::RenditionAction::Resume: vw->play(); break; default: return; }; } void PresentationWidget::slotTogglePlayPause() { m_advanceSlides = !m_advanceSlides; setPlayPauseIcon(); if ( m_advanceSlides ) { startAutoChangeTimer(); } else { m_nextPageTimer->stop(); } } #include "presentationwidget.moc"