/* Copyright (c) 2010-2016, Mathieu Labbe - IntRoLab - Universite de Sherbrooke All rights reserved. Redistribution and use in source and binary forms, with or without modification, are permitted provided that the following conditions are met: * Redistributions of source code must retain the above copyright notice, this list of conditions and the following disclaimer. * Redistributions in binary form must reproduce the above copyright notice, this list of conditions and the following disclaimer in the documentation and/or other materials provided with the distribution. * Neither the name of the Universite de Sherbrooke nor the names of its contributors may be used to endorse or promote products derived from this software without specific prior written permission. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. */ #include "rtabmap/gui/GraphViewer.h" #include #include #include #include #include #include #include #include #include #include #include #include #include #ifdef QT_SVG_LIB #include #endif #include #include #include #include #include #include #include #include #include #include #include #include #include #if QT_VERSION >= 0x050000 #include #endif #include namespace rtabmap { class NodeItem: public QGraphicsEllipseItem { public: // in meter NodeItem(int id, int mapId, const Transform & pose, float radius, int weight, GraphViewer::ViewPlane plane, float linkWidth) : QGraphicsEllipseItem(QRectF(-radius*100.0f,-radius*100.0f,radius*100.0f*2.0f,radius*100.0f*2.0f)), _id(id), _mapId(mapId), _weight(weight), _pose(pose), _line(0) { this->setPose(pose, plane); this->setBrush(pen().color()); this->setAcceptHoverEvents(true); float r,p,yaw; pose.getEulerAngles(r, p, yaw); radius*=100.0f; _line = new QGraphicsLineItem(0,0,-radius*sin(yaw),-radius*cos(yaw), this); QPen pen = _line->pen(); pen.setWidth(linkWidth*100.0f); _line->setPen(pen); } virtual ~NodeItem() {} void setColor(const QColor & color, const QString & valueName = QString(), float value = 0.0f) { QPen p = this->pen(); p.setColor(color); this->setPen(p); QBrush b = this->brush(); b.setColor(color); this->setBrush(b); QPen pen = _line->pen(); pen.setColor(QColor(255-color.red(), 255-color.green(), 255-color.blue())); _line->setPen(pen); _valueName = valueName; _value = value; } void setToolTipInfo(const QString & info) { _info = info; } void setRadius(float radius) { float r,p,yaw; _pose.getEulerAngles(r, p, yaw); radius*=100.0f; this->setRect(-radius, -radius, radius*2.0f, radius*2.0f); _line->setLine(0,0,-radius*sin(yaw),-radius*cos(yaw)); } int id() const {return _id;}; int mapId() const {return _mapId;} const Transform & pose() const {return _pose;} void setPose(const Transform & pose, GraphViewer::ViewPlane plane) { switch(plane) { case GraphViewer::XZ: this->setPos(pose.x()*100.0f,-pose.z()*100.0f); break; case GraphViewer::YZ: this->setPos(pose.y()*100.0f,-pose.z()*100.0f); break; default: // XY this->setPos(-pose.y()*100.0f,-pose.x()*100.0f); break; } _pose=pose; float r,p,yaw; _pose.getEulerAngles(r, p, yaw); if(_line) { float radius = this->rect().width()/2.0f; _line->setLine(0,0,-radius*sin(yaw),-radius*cos(yaw)); } } protected: virtual void hoverEnterEvent ( QGraphicsSceneHoverEvent * event ) { QString msg; if(_weight>=0) { msg = QString("%1 [map=%2, w=%3]\n%4").arg(_id).arg(_mapId).arg(_weight).arg(_pose.prettyPrint().c_str()); } else { msg = QString("%1 [map=%2]\n%3").arg(_id).arg(_mapId).arg(_pose.prettyPrint().c_str()); } if(!_valueName.isEmpty()) { msg += QString("\n%1=%2").arg(_valueName).arg(_value); } if(!_info.isEmpty()) { msg += QString("\n%1").arg(_info); } this->setToolTip(msg); this->setScale(2); QGraphicsEllipseItem::hoverEnterEvent(event); } virtual void hoverLeaveEvent ( QGraphicsSceneHoverEvent * event ) { this->setScale(1); QGraphicsEllipseItem::hoverEnterEvent(event); } private: int _id; int _mapId; int _weight; Transform _pose; QGraphicsLineItem * _line; QString _valueName; float _value; QString _info; }; class NodeGPSItem: public NodeItem { public: NodeGPSItem(int id, int mapId, const Transform & pose, float radius, const GPS & gps, GraphViewer::ViewPlane plane, float linkWidth) : NodeItem(id, mapId, pose, radius, -1, plane, linkWidth), _gps(gps) { } virtual ~NodeGPSItem() {} protected: virtual void hoverEnterEvent ( QGraphicsSceneHoverEvent * event ) { this->setToolTip(QString("%1 [%2] %3\n" "longitude=%4 latitude=%5 altitude=%6m error=%7m bearing=%8deg") .arg(id()).arg(mapId()).arg(pose().prettyPrint().c_str()) .arg(_gps.longitude()).arg(_gps.latitude()).arg(_gps.altitude()).arg(_gps.error()).arg(_gps.bearing())); this->setScale(2); QGraphicsEllipseItem::hoverEnterEvent(event); } private: GPS _gps; }; class LinkItem: public QGraphicsLineItem { public: // in meter LinkItem(int from, int to, const Transform & poseA, const Transform & poseB, const Link & link, bool interSessionClosure, GraphViewer::ViewPlane plane) : _from(from), _to(to), _poseA(poseA), _poseB(poseB), _link(link), _interSession(interSessionClosure) { this->setPoses(poseA, poseB, plane); this->setAcceptHoverEvents(true); } virtual ~LinkItem() {} void setColor(const QColor & color) { QPen p = this->pen(); p.setColor(color); this->setPen(p); } void setPoses(const Transform & poseA, const Transform & poseB, GraphViewer::ViewPlane plane) { switch(plane) { case GraphViewer::XZ: this->setLine(poseA.x()*100.0f, -poseA.z()*100.0f, poseB.x()*100.0f, -poseB.z()*100.0f); break; case GraphViewer::YZ: this->setLine(poseA.y()*100.0f, -poseA.z()*100.0f, poseB.y()*100.0f, -poseB.z()*100.0f); break; default: // XY this->setLine(-poseA.y()*100.0f, -poseA.x()*100.0f, -poseB.y()*100.0f, -poseB.x()*100.0f); break; } _poseA = poseA; _poseB = poseB; } const Transform & getPoseA() const { return _poseA; } const Transform & getPoseB() const { return _poseB; } Link::Type linkType() const {return _link.type();} bool isInterSession() const {return _interSession;} int from() const {return _from;} int to() const {return _to;} protected: virtual void hoverEnterEvent ( QGraphicsSceneHoverEvent * event ) { QString str = QString("%1->%2 (type=%3 length=%4 m)").arg(_from).arg(_to).arg(_link.type()).arg(_poseA.getDistance(_poseB)); if(!_link.transform().isNull()) { str.append(QString("\n%1\nvar= %2 %3").arg(_link.transform().prettyPrint().c_str()).arg(_link.transVariance()).arg(_link.rotVariance())); } this->setToolTip(str); QPen pen = this->pen(); pen.setWidthF(pen.widthF()+2); this->setPen(pen); QGraphicsLineItem::hoverEnterEvent(event); } virtual void hoverLeaveEvent ( QGraphicsSceneHoverEvent * event ) { QPen pen = this->pen(); pen.setWidthF(pen.widthF()-2); this->setPen(pen); QGraphicsLineItem::hoverEnterEvent(event); } private: int _from; int _to; Transform _poseA; Transform _poseB; Link _link; bool _interSession; }; GraphViewer::GraphViewer(QWidget * parent) : QGraphicsView(parent), _nodeColor(Qt::blue), _nodeOdomCacheColor(Qt::darkGreen), _currentGoalColor(Qt::darkMagenta), _neighborColor(Qt::blue), _loopClosureColor(Qt::red), _loopClosureLocalColor(Qt::yellow), _loopClosureUserColor(Qt::red), _loopClosureVirtualColor(Qt::magenta), _neighborMergedColor(QColor(255,170,0)), _landmarkColor(Qt::darkGreen), _loopClosureRejectedColor(Qt::black), _localPathColor(Qt::cyan), _globalPathColor(Qt::darkMagenta), _gtPathColor(Qt::gray), _gpsPathColor(Qt::darkCyan), _loopIntraSessionColor(Qt::red), _loopInterSessionColor(Qt::green), _intraInterSessionColors(false), _worldMapRotation(0.0f), _world(0), _root(0), _graphRoot(0), _globalPathRoot(0), _nodeVisible(true), _nodeRadius(0.01f), _linkWidth(0), _gridMap(0), _referential(0), _originReferential(0), _gridCellSize(0.0f), _localRadius(0), _loopClosureOutlierThr(0), _minLinkLength(0.02f), _orientationENU(false), _mouseTracking(false), _viewPlane(XY), _ensureFrameVisible(true) { this->setDragMode(QGraphicsView::ScrollHandDrag); _workingDirectory = QDir::homePath(); setupGraphicsScene(); // Match by default scan colors from DatabaseViewer _highlightedNodes.push_back(QPair(Qt::yellow, nullptr)); _highlightedNodes.push_back(QPair(Qt::magenta, nullptr)); this->restoreDefaults(); this->fitInView(this->sceneRect(), Qt::KeepAspectRatio); } GraphViewer::~GraphViewer() { } void GraphViewer::setupGraphicsScene() { if(this->scene()) { delete this->scene(); } this->setScene(new QGraphicsScene(this)); _world = (QGraphicsItem *)this->scene()->addEllipse(QRectF(-0.0001,-0.0001,0.0001,0.0001)); _root = (QGraphicsItem *)this->scene()->addEllipse(QRectF(-0.0001,-0.0001,0.0001,0.0001)); _root->setParentItem(_world); // add referential QGraphicsLineItem * item; _originReferential = new QGraphicsItemGroup(); this->scene()->addItem(_originReferential); // ownership transfered // XY referential _originReferentialXY = new QGraphicsItemGroup(); this->scene()->addItem(_originReferentialXY); // ownership transfered item = this->scene()->addLine(0,0,0,-100, QPen(QBrush(Qt::red), _linkWidth)); item->setZValue(1); item->setParentItem(_root); _originReferentialXY->addToGroup(item); item = this->scene()->addLine(0,0,-100,0, QPen(QBrush(Qt::green), _linkWidth)); item->setZValue(1); item->setParentItem(_root); _originReferentialXY->addToGroup(item); _originReferential->addToGroup(_originReferentialXY); // XZ referential _originReferentialXZ = new QGraphicsItemGroup(); this->scene()->addItem(_originReferentialXZ); // ownership transfered item = this->scene()->addLine(0,0,100,0, QPen(QBrush(Qt::red), _linkWidth)); item->setZValue(1); item->setParentItem(_root); _originReferentialXZ->addToGroup(item); item = this->scene()->addLine(0,0,0,-100, QPen(QBrush(Qt::blue), _linkWidth)); item->setZValue(1); item->setParentItem(_root); _originReferentialXZ->addToGroup(item); _originReferential->addToGroup(_originReferentialXZ); _originReferentialXZ->setVisible(false); // YZ referential _originReferentialYZ = new QGraphicsItemGroup(); this->scene()->addItem(_originReferentialYZ); // ownership transfered item = this->scene()->addLine(0,0,100,0, QPen(QBrush(Qt::green), _linkWidth)); item->setZValue(1); item->setParentItem(_root); _originReferentialYZ->addToGroup(item); item = this->scene()->addLine(0,0,0,-100, QPen(QBrush(Qt::blue), _linkWidth)); item->setZValue(1); item->setParentItem(_root); _originReferentialYZ->addToGroup(item); _originReferential->addToGroup(_originReferentialYZ); _originReferentialYZ->setVisible(false); _originReferential->setZValue(1); _originReferential->setParentItem(_root); // current pose _referential = new QGraphicsItemGroup(); this->scene()->addItem(_referential); // ownership transfered // XY _referentialXY = new QGraphicsItemGroup(); this->scene()->addItem(_referentialXY); // ownership transfered item = this->scene()->addLine(0,0,0,-50, QPen(QBrush(Qt::red), _linkWidth)); item->setZValue(100); item->setParentItem(_root); _referentialXY->addToGroup(item); item = this->scene()->addLine(0,0,-50,0, QPen(QBrush(Qt::green), _linkWidth)); item->setZValue(100); item->setParentItem(_root); _referentialXY->addToGroup(item); _referential->addToGroup(_referentialXY); // XZ _referentialXZ = new QGraphicsItemGroup(); this->scene()->addItem(_referentialXZ); // ownership transfered item = this->scene()->addLine(0,0,50,0, QPen(QBrush(Qt::red), _linkWidth)); item->setZValue(100); item->setParentItem(_root); _referentialXZ->addToGroup(item); item = this->scene()->addLine(0,0,0,-50, QPen(QBrush(Qt::blue), _linkWidth)); item->setZValue(100); item->setParentItem(_root); _referentialXZ->addToGroup(item); _referential->addToGroup(_referentialXZ); _referentialXZ->setVisible(false); // XZ _referentialYZ = new QGraphicsItemGroup(); this->scene()->addItem(_referentialYZ); // ownership transfered item = this->scene()->addLine(0,0,50,0, QPen(QBrush(Qt::green), _linkWidth)); item->setZValue(100); item->setParentItem(_root); _referentialYZ->addToGroup(item); item = this->scene()->addLine(0,0,0,-50, QPen(QBrush(Qt::blue), _linkWidth)); item->setZValue(100); item->setParentItem(_root); _referentialYZ->addToGroup(item); _referential->addToGroup(_referentialYZ); _referentialYZ->setVisible(false); _referential->setZValue(100); _referential->setParentItem(_root); _localRadius = this->scene()->addEllipse(-0.0001,-0.0001,0.0001,0.0001); _localRadius->setZValue(1); _localRadius->setParentItem(_root); _localRadius->setVisible(false); _localRadius->setPen(QPen(Qt::DashLine)); _gridMap = this->scene()->addPixmap(QPixmap()); _gridMap->setZValue(0); _gridMap->setParentItem(_root); _graphRoot = (QGraphicsItem *)this->scene()->addEllipse(QRectF(-0.0001,-0.0001,0.0001,0.0001)); _graphRoot->setZValue(4); _graphRoot->setParentItem(_root); _globalPathRoot = (QGraphicsItem *)this->scene()->addEllipse(QRectF(-0.0001,-0.0001,0.0001,0.0001)); _globalPathRoot->setZValue(8); _globalPathRoot->setParentItem(_root); _localPathRoot = (QGraphicsItem *)this->scene()->addEllipse(QRectF(-0.0001,-0.0001,0.0001,0.0001)); _localPathRoot->setZValue(9); _localPathRoot->setParentItem(_root); _gtGraphRoot = (QGraphicsItem *)this->scene()->addEllipse(QRectF(-0.0001,-0.0001,0.0001,0.0001)); _gtGraphRoot->setZValue(2); _gtGraphRoot->setParentItem(_root); _gpsGraphRoot = (QGraphicsItem *)this->scene()->addEllipse(QRectF(-0.0001,-0.0001,0.0001,0.0001)); _gpsGraphRoot->setZValue(3); _gpsGraphRoot->setParentItem(_root); _odomCacheOverlay = this->scene()->addRect(0,0,0,0); _odomCacheOverlay->setZValue(21); // just under odom cache nodes and links _odomCacheOverlay->setParentItem(_graphRoot); _odomCacheOverlay->setBrush(QBrush(QColor(255, 255, 255, 150))); _odomCacheOverlay->setPen(QPen(Qt::NoPen)); } void GraphViewer::setWorldMapRotation(const float & theta) { _worldMapRotation = theta; setOrientationENU(isOrientationENU()); } void GraphViewer::updateGraph(const std::map & poses, const std::multimap & constraints, const std::map & mapIds, const std::map & weights, const std::set & odomCacheIds) { if(!_graphRoot->isVisible()) { UDEBUG("Ignoring updating graph, the graph root is not visible."); return; } UTimer timer; bool wasEmpty = _nodeItems.size() == 0 && _linkItems.size() == 0 && _gridMap->pixmap().isNull(); UDEBUG("poses=%ld constraints=%ld mapIds=%ld weights=%ld", poses.size(), constraints.size(), mapIds.size(), weights.size()); for(QMultiMap::iterator iter = _linkItems.begin(); iter!=_linkItems.end(); ++iter) { iter.value()->hide(); } UDEBUG("hidden %d links", _linkItems.size()); int created = 0; int reused = 0; int removed = 0; QMap::iterator nter = _nodeItems.begin(); std::map::const_iterator iter=_nodeVisible?poses.begin():poses.end(); while(nter!=_nodeItems.end() || iter!=poses.end()) { if(nter!=_nodeItems.end() && (iter==poses.end() || nter.key() < iter->first || iter->second.isNull())) { // NodeItem is not in poses anymore, increase only _nodeItems iterator for(int i=0; i<_highlightedNodes.size(); ++i) { if(_highlightedNodes[i].second && _highlightedNodes[i].second == nter.value()) { _highlightedNodes[i].second = nullptr; } } delete nter.value(); nter = _nodeItems.erase(nter); ++removed; continue; } QColor color = _nodeColor; bool isOdomCache = odomCacheIds.find(iter->first) != odomCacheIds.end(); if(iter->first<0) { color = QColor(255-color.red(), 255-color.green(), 255-color.blue()); } else if(isOdomCache) { color = _nodeOdomCacheColor; } UASSERT(iter!=poses.end()); if(nter == _nodeItems.end() || nter.key() > iter->first) { // NodeItem is not in poses, create a new one and increase poses iterator const Transform & pose = iter->second; NodeItem * item = new NodeItem( iter->first, uValue(mapIds, iter->first, -1), pose, _nodeRadius, uValue(weights, iter->first, -1), _viewPlane, _linkWidth); this->scene()->addItem(item); item->setZValue(iter->first<0?21:20); item->setColor(color); item->setParentItem(_graphRoot); item->show(); _nodeItems.insert(iter->first, item); ++iter; ++created; } else { // NodeItem exists for the pose, copy data and increase both iterators UASSERT(iter->first == nter.key()); nter.value()->setColor(color); // reset color nter.value()->setToolTipInfo(QString()); nter.value()->setZValue(iter->first<0?21:20); nter.value()->setPose(iter->second, _viewPlane); nter.value()->show(); ++nter; ++iter; ++reused; } } UDEBUG("Nodes created=%d, reused=%d removed=%d", created, reused, removed); created = 0; reused = 0; removed = 0; int removedSmallLinks = 0; int ignoredSmallLinks = 0; for(std::multimap::const_iterator iter=constraints.begin(); iter!=constraints.end(); ++iter) { // make the first id the smallest one int idFrom = iter->second.from() < iter->second.to() ? iter->second.from() : iter->second.to(); int idTo = iter->second.from() < iter->second.to() ? iter->second.to() : iter->second.from(); if(idFrom == idTo) { continue; } std::map::const_iterator jterA = poses.find(idFrom); std::map::const_iterator jterB = poses.find(idTo); LinkItem * linkItem = 0; if(jterA != poses.end() && jterB != poses.end()) { const Transform & poseA = jterA->second; const Transform & poseB = jterB->second; QMultiMap::iterator itemIter = _linkItems.find(idFrom); bool alreadyAdded = false; while(itemIter != _linkItems.end() && itemIter.key() == idFrom) { if(itemIter.value()->to() == idTo) { if(itemIter.value()->isVisible()) { alreadyAdded = true; } else { linkItem = itemIter.value(); } break; } ++itemIter; } if(alreadyAdded){ continue; } bool interSessionClosure = false; if(uContains(mapIds, jterA->first) && uContains(mapIds, jterB->first)) { interSessionClosure = mapIds.at(jterA->first) != mapIds.at(jterB->first); } bool isLinkedToOdomCachePoses = odomCacheIds.find(idFrom)!=odomCacheIds.end() || odomCacheIds.find(idTo)!=odomCacheIds.end(); if(isLinkedToOdomCachePoses) { if(_nodeItems.contains(idFrom)) { _nodeItems.value(idFrom)->setZValue(odomCacheIds.find(idFrom)!=odomCacheIds.end()?24:23); } if(_nodeItems.contains(idTo)) { _nodeItems.value(idTo)->setZValue(odomCacheIds.find(idTo)!=odomCacheIds.end()?24:23); } } if(poseA.getDistance(poseB) > _minLinkLength) { if(linkItem == 0) { //create a link item linkItem = new LinkItem(idFrom, idTo, poseA, poseB, iter->second, interSessionClosure, _viewPlane); QPen p = linkItem->pen(); p.setWidthF(_linkWidth*100.0f); linkItem->setPen(p); linkItem->setZValue(isLinkedToOdomCachePoses?22:10); this->scene()->addItem(linkItem); linkItem->setParentItem(_graphRoot); _linkItems.insert(idFrom, linkItem); ++created; } else { linkItem->setPoses(poseA, poseB, _viewPlane); linkItem->show(); ++reused; } } else if(linkItem) { // erase small links _linkItems.erase(itemIter); delete linkItem; linkItem = 0; ++removedSmallLinks; } else { ++ignoredSmallLinks; } if(linkItem) { //update color if(iter->second.type() == Link::kNeighbor) { linkItem->setColor(_neighborColor); } else if(iter->second.type() == Link::kVirtualClosure) { linkItem->setColor(_loopClosureVirtualColor); } else if(iter->second.type() == Link::kNeighborMerged) { linkItem->setColor(_neighborMergedColor); } else if(iter->second.type() == Link::kUserClosure) { if(_intraInterSessionColors) { linkItem->setColor(interSessionClosure?_loopInterSessionColor:_loopIntraSessionColor); } else { linkItem->setColor(_loopClosureUserColor); } } else if(iter->second.type() == Link::kLandmark) { linkItem->setColor(_landmarkColor); } else if(iter->second.type() == Link::kLocalSpaceClosure || iter->second.type() == Link::kLocalTimeClosure) { if(_intraInterSessionColors) { linkItem->setColor(interSessionClosure?_loopInterSessionColor:_loopIntraSessionColor); linkItem->setZValue(isLinkedToOdomCachePoses?22:interSessionClosure?6:7); } else { linkItem->setColor(_loopClosureLocalColor); linkItem->setZValue(isLinkedToOdomCachePoses?22:7); } } else { if(_intraInterSessionColors) { linkItem->setColor(interSessionClosure?_loopInterSessionColor:_loopIntraSessionColor); linkItem->setZValue(isLinkedToOdomCachePoses?22:interSessionClosure?8:9); } else { linkItem->setColor(_loopClosureColor); linkItem->setZValue(isLinkedToOdomCachePoses?22:9); } } //rejected loop closures if(_loopClosureOutlierThr > 0.0f) { Transform t = poseA.inverse()*poseB; if(iter->second.to() != idTo) { t = t.inverse(); } if(iter->second.type() != Link::kNeighbor && iter->second.type() != Link::kNeighborMerged) { float linearError = fabs(iter->second.transform().getNorm() - t.getNorm()); if(linearError > _loopClosureOutlierThr) { linkItem->setColor(_loopClosureRejectedColor); } } } } } } UDEBUG("Links created=%d, reused=%d, small links: removed=%d ignored=%d", created, reused, removedSmallLinks, ignoredSmallLinks); //remove not used nodes and links removed = 0; int visible = 0; for(QMultiMap::iterator iter = _linkItems.begin(); iter!=_linkItems.end();) { if(!iter.value()->isVisible()) { delete iter.value(); iter = _linkItems.erase(iter); ++removed; } else { ++iter; ++visible; } } UDEBUG("Links removed=%d, visible=%d", removed, visible); if(_nodeItems.size()) { (--_nodeItems.end()).value()->setColor(_nodeOdomCacheColor); } QRectF rect = this->scene()->sceneRect(); if(!odomCacheIds.empty()) _odomCacheOverlay->setRect(rect); else _odomCacheOverlay->setRect(0, 0, 0, 0); if(wasEmpty) { this->fitInView(rect.adjusted(-rect.width()/2.0f, -rect.height()/2.0f, rect.width()/2.0f, rect.height()/2.0f), Qt::KeepAspectRatio); } UDEBUG("_nodeItems=%d, _linkItems=%d, timer=%fs", _nodeItems.size(), _linkItems.size(), timer.ticks()); } void GraphViewer::updateGTGraph(const std::map & poses) { if(!_gtGraphRoot->isVisible()) { UDEBUG("Ignoring updating gt graph, the graph root is not visible."); return; } UTimer timer; UDEBUG("poses=%d", (int)poses.size()); //Hide nodes and links for(QMap::iterator iter = _gtNodeItems.begin(); iter!=_gtNodeItems.end(); ++iter) { iter.value()->hide(); iter.value()->setColor(_gtPathColor); // reset color } for(QMultiMap::iterator iter = _gtLinkItems.begin(); iter!=_gtLinkItems.end(); ++iter) { iter.value()->hide(); } for(std::map::const_iterator iter=poses.begin(); iter!=poses.end(); ++iter) { if(!iter->second.isNull()) { if(_nodeVisible) { QMap::iterator itemIter = _gtNodeItems.find(iter->first); if(itemIter != _gtNodeItems.end()) { itemIter.value()->setPose(iter->second, _viewPlane); itemIter.value()->show(); } else { // create node item const Transform & pose = iter->second; NodeItem * item = new NodeItem(iter->first, -1, pose, _nodeRadius, -1, _viewPlane, _linkWidth); this->scene()->addItem(item); item->setZValue(20); item->setColor(_gtPathColor); item->setParentItem(_gtGraphRoot); item->setVisible(_nodeVisible); _gtNodeItems.insert(iter->first, item); } } if(iter!=poses.begin()) { std::map::const_iterator iterPrevious = iter; --iterPrevious; Transform previousPose = iterPrevious->second; Transform currentPose = iter->second; LinkItem * linkItem = 0; QMultiMap::iterator linkIter = _gtLinkItems.end(); if(_gtLinkItems.contains(iterPrevious->first)) { linkIter = _gtLinkItems.find(iter->first); while(linkIter.key() == iterPrevious->first && linkIter != _gtLinkItems.end()) { if(linkIter.value()->to() == iter->first) { linkIter.value()->setPoses(previousPose, currentPose, _viewPlane); linkIter.value()->show(); linkItem = linkIter.value(); break; } ++linkIter; } } if(linkItem == 0) { bool linkFound = iter->first - iterPrevious->first == 1; // if consecutive, add link for(QMultiMap::iterator kter = _linkItems.find(iterPrevious->first); kter!=_linkItems.end() && kter.key()==iterPrevious->first && !linkFound; ++kter) { if(kter.value()->from() == iterPrevious->first && kter.value()->to() == iter->first) { linkFound = true; } } if(linkFound) { //create a link item linkItem = new LinkItem(iterPrevious->first, iter->first, previousPose, currentPose, Link(), 1, _viewPlane); QPen p = linkItem->pen(); p.setWidthF(_linkWidth*100.0f); linkItem->setPen(p); linkItem->setZValue(10); this->scene()->addItem(linkItem); linkItem->setParentItem(_gtGraphRoot); _gtLinkItems.insert(iterPrevious->first, linkItem); } } if(linkItem) { linkItem->setColor(_gtPathColor); } } } } //remove not used nodes and links for(QMap::iterator iter = _gtNodeItems.begin(); iter!=_gtNodeItems.end();) { if(!iter.value()->isVisible()) { delete iter.value(); iter = _gtNodeItems.erase(iter); } else { ++iter; } } for(QMultiMap::iterator iter = _gtLinkItems.begin(); iter!=_gtLinkItems.end();) { if(!iter.value()->isVisible()) { delete iter.value(); iter = _gtLinkItems.erase(iter); } else { ++iter; } } UDEBUG("_gtNodeItems=%d, _gtLinkItems=%d timer=%fs", _gtNodeItems.size(), _gtLinkItems.size(), timer.ticks()); } void GraphViewer::updateGPSGraph( const std::map & poses, const std::map & gpsValues) { if(!_gpsGraphRoot->isVisible()) { UDEBUG("Ignoring updating gps graph, the graph root is not visible."); return; } UTimer timer; UDEBUG("poses=%d", (int)poses.size()); //Hide nodes and links for(QMap::iterator iter = _gpsNodeItems.begin(); iter!=_gpsNodeItems.end(); ++iter) { iter.value()->hide(); iter.value()->setColor(_gpsPathColor); // reset color } for(QMultiMap::iterator iter = _gpsLinkItems.begin(); iter!=_gpsLinkItems.end(); ++iter) { iter.value()->hide(); } for(std::map::const_iterator iter=poses.begin(); iter!=poses.end(); ++iter) { if(!iter->second.isNull()) { if(_nodeVisible) { QMap::iterator itemIter = _gpsNodeItems.find(iter->first); if(itemIter != _gpsNodeItems.end()) { itemIter.value()->setPose(iter->second, _viewPlane); itemIter.value()->show(); } else { // create node item const Transform & pose = iter->second; UASSERT(gpsValues.find(iter->first) != gpsValues.end()); NodeItem * item = new NodeGPSItem(iter->first, -1, pose, _nodeRadius, gpsValues.at(iter->first), _viewPlane, _linkWidth); this->scene()->addItem(item); item->setZValue(20); item->setColor(_gpsPathColor); item->setParentItem(_gpsGraphRoot); item->setVisible(_nodeVisible); _gpsNodeItems.insert(iter->first, item); } } if(iter!=poses.begin()) { std::map::const_iterator iterPrevious = iter; --iterPrevious; Transform previousPose = iterPrevious->second; Transform currentPose = iter->second; LinkItem * linkItem = 0; QMultiMap::iterator linkIter = _gpsLinkItems.end(); if(_gpsLinkItems.contains(iterPrevious->first)) { linkIter = _gpsLinkItems.find(iter->first); while(linkIter.key() == iterPrevious->first && linkIter != _gpsLinkItems.end()) { if(linkIter.value()->to() == iter->first) { linkIter.value()->setPoses(previousPose, currentPose, _viewPlane); linkIter.value()->show(); linkItem = linkIter.value(); break; } ++linkIter; } } if(linkItem == 0) { //create a link item linkItem = new LinkItem(iterPrevious->first, iter->first, previousPose, currentPose, Link(), 1, _viewPlane); QPen p = linkItem->pen(); p.setWidthF(_linkWidth*100.0f); linkItem->setPen(p); linkItem->setZValue(10); this->scene()->addItem(linkItem); linkItem->setParentItem(_gpsGraphRoot); _gpsLinkItems.insert(iterPrevious->first, linkItem); } if(linkItem) { linkItem->setColor(_gpsPathColor); } } } } //remove not used nodes and links for(QMap::iterator iter = _gpsNodeItems.begin(); iter!=_gpsNodeItems.end();) { if(!iter.value()->isVisible()) { delete iter.value(); iter = _gpsNodeItems.erase(iter); } else { ++iter; } } for(QMultiMap::iterator iter = _gpsLinkItems.begin(); iter!=_gpsLinkItems.end();) { if(!iter.value()->isVisible()) { delete iter.value(); iter = _gpsLinkItems.erase(iter); } else { ++iter; } } UDEBUG("_gpsNodeItems=%d, _gpsLinkItems=%d timer=%fs", _gpsNodeItems.size(), _gpsLinkItems.size(), timer.ticks()); } void GraphViewer::updateReferentialPosition(const Transform & t) { QTransform qt; qt.translate(-t.o24()*100.0f, -t.o14()*100.0f); if(_viewPlane == XY) qt.rotateRadians(-t.theta()); _referential->setTransform(qt); _localRadius->setTransform(qt); if(_ensureFrameVisible) { this->ensureVisible(_referential); if(_localRadius->isVisible()) { this->ensureVisible(_localRadius, 0, 0); } } } void GraphViewer::updateMap(const cv::Mat & map8U, float resolution, float xMin, float yMin) { UASSERT(map8U.empty() || (!map8U.empty() && resolution > 0.0f)); if(!map8U.empty()) { bool wasEmpty = _nodeItems.size() <= 1 && _linkItems.size() == 0 && _gridMap->pixmap().isNull(); _gridCellSize = resolution; QImage image = uCvMat2QImage(map8U, false); _gridMap->resetTransform(); _gridMap->setTransform(QTransform::fromScale(resolution*100.0f, -resolution*100.0f), true); _gridMap->setRotation(90); _gridMap->setPixmap(QPixmap::fromImage(image)); _gridMap->setPos(-yMin*100.0f, -xMin*100.0f); if(wasEmpty) { this->fitInView(this->scene()->sceneRect(), Qt::KeepAspectRatio); } } else { this->clearMap(); } } void GraphViewer::updatePosterior(const std::map & posterior, float max, int zValueOffset) { updateNodeColorByValue("Posterior Prob", posterior, max, false, zValueOffset); } void GraphViewer::updateNodeColorByValue(const std::string & valueName, const std::map & values, float max, bool invertedColorScale, int zValueOffset) { //find max if(max <= 0.0f) { for(std::map::const_iterator iter = values.begin(); iter!=values.end(); ++iter) { if(iter->first > 0 && iter->second>max) { max = iter->second; } } } if(max > 0.0f) { for(QMap::iterator iter = _nodeItems.begin(); iter!=_nodeItems.end(); ++iter) { std::map::const_iterator jter = values.find(iter.key()); if(jter != values.end()) { float v = jter->second>max?max:jter->second; iter.value()->setColor(QColor::fromHsvF(( invertedColorScale ? v/max : 1-v/max )*240.0f/360.0f, 1, 1, 1), valueName.c_str(), jter->second); //0=red 240=blue iter.value()->setZValue(iter.value()->zValue()+zValueOffset); } } } } void GraphViewer::updateNodeColorByValue( const std::string & valueName, const std::map & values, float min, float max, bool invertedColorScale, unsigned short hueMin, unsigned short hueMax, int zValueOffset) { hueMax = hueMax > 360 ? 360 : hueMax; //find min/max if(min >= max) { bool firstValueSet = false; for(std::map::const_iterator iter = values.begin(); iter!=values.end(); ++iter) { if(iter->first > 0) { if(!firstValueSet) { min = max = iter->second; firstValueSet = true; } else if(iter->second>max) { max = iter->second; } else if(iter->secondsecond; } } } } if(min < max && hueMin < hueMax) { float range = max - min; float hueRange = float(hueMax - hueMin); for(QMap::iterator iter = _nodeItems.begin(); iter!=_nodeItems.end(); ++iter) { std::map::const_iterator jter = values.find(iter.key()); if(jter != values.end()) { float v = jter->second; v = std::min(v, max); v = std::max(v, min); iter.value()->setColor(QColor::fromHsvF(( invertedColorScale ? (v-min)/range : 1-(v-min)/range )*hueRange/360.0f + hueMin/360.0f, 1, 1, 1), valueName.c_str(), jter->second); iter.value()->setZValue(iter.value()->zValue()+zValueOffset); } } } else if(min >= max) { UWARN("min (%f) is not less than max (%f), cannot change color of the graph.", min, max); } else if(hueMin >= hueMax) { UWARN("Hue min (%d) is not less than hue max (%d), cannot change color of the graph. The hue values should be set between 0 (red) and 360(pink).", (int)hueMin, (int)hueMax); } } void GraphViewer::setGlobalPath(const std::vector > & globalPath) { UDEBUG("Set global path size=%d", (int)globalPath.size()); qDeleteAll(_globalPathLinkItems); _globalPathLinkItems.clear(); if(globalPath.size() >= 2) { for(unsigned int i=0; ipen(); p.setWidthF(_linkWidth*100.0f); item->setPen(p); item->setColor(_globalPathColor); this->scene()->addItem(item); item->setZValue(15); item->setParentItem(_globalPathRoot); _globalPathLinkItems.insert(idFrom, item); } } } void GraphViewer::setCurrentGoalID(int id, const Transform & pose) { NodeItem * node = _nodeItems.value(id, 0); if(node) { node->setColor(_currentGoalColor); } else { UWARN("Current goal %d not found in the graph", id); } if(!pose.isNull() && _globalPathLinkItems.size() && _globalPathLinkItems.contains(id)) { // transform the global path in the goal referential const LinkItem * oldPose = _globalPathLinkItems.value(id); Transform t = pose * oldPose->getPoseA().inverse(); for(QMultiMap::iterator iter=_globalPathLinkItems.begin(); iter!=_globalPathLinkItems.end(); ++iter) { iter.value()->setPoses(t*iter.value()->getPoseA(), t*iter.value()->getPoseB(), _viewPlane); } } } void GraphViewer::setNodeInfo(int id, const QString & info) { NodeItem * node = _nodeItems.value(id, 0); if(node) { node->setToolTipInfo(info); } else { UWARN("Node %d not found in the graph", id); } } void GraphViewer::setLocalRadius(float radius) { _localRadius->setRect(-radius*100, -radius*100, radius*200, radius*200); if(_nodeItems.empty() && _linkItems.empty() && _gridMap->pixmap().isNull()) { QRectF rect = this->scene()->sceneRect(); this->fitInView(rect.adjusted(-rect.width()/2.0f, -rect.height()/2.0f, rect.width()/2.0f, rect.height()/2.0f), Qt::KeepAspectRatio); } } void GraphViewer::updateLocalPath(const std::vector & localPath) { bool wasVisible = _localPathRoot->isVisible(); _localPathRoot->show(); for(QMultiMap::iterator iter = _localPathLinkItems.begin(); iter!=_localPathLinkItems.end(); ++iter) { iter.value()->hide(); } if(localPath.size() > 1) { for(unsigned int i=0; i::iterator itemIter = _localPathLinkItems.find(idFrom); while(itemIter.key() == idFrom && itemIter != _localPathLinkItems.end()) { if(itemIter.value()->to() == idTo) { itemIter.value()->setPoses(_nodeItems.value(idFrom)->pose(), _nodeItems.value(idTo)->pose(), _viewPlane); itemIter.value()->show(); updated = true; break; } ++itemIter; } } if(!updated) { //create a link item LinkItem * item = new LinkItem(idFrom, idTo, _nodeItems.value(idFrom)->pose(), _nodeItems.value(idTo)->pose(), Link(), false, _viewPlane); QPen p = item->pen(); p.setWidthF(_linkWidth*100.0f); item->setPen(p); item->setColor(_localPathColor); this->scene()->addItem(item); item->setZValue(16); // just over the global path item->setParentItem(_localPathRoot); _localPathLinkItems.insert(idFrom, item); } } } } // remove not used links for(QMultiMap::iterator iter = _localPathLinkItems.begin(); iter!=_localPathLinkItems.end();) { if(!iter.value()->isVisible()) { delete iter.value(); iter = _localPathLinkItems.erase(iter); } else { ++iter; } } _localPathRoot->setVisible(wasVisible); } void GraphViewer::highlightNode(int nodeId, int highlightIndex) { if(highlightIndex<0 || highlightIndex>_highlightedNodes.size()) { UERROR("Unsupported highlight color index %d", highlightIndex); return; } for(int i=0; i<_highlightedNodes.size(); ++i) { if(_highlightedNodes[i].second && (_highlightedNodes[i].second->id() == nodeId || i == highlightIndex)) { // reset to normal color _highlightedNodes[i].second->setColor(_nodeColor); _highlightedNodes[i].second = nullptr; } } QMap::iterator iter = _nodeItems.find(nodeId); if(iter != _nodeItems.end()) { iter.value()->setColor(_highlightedNodes[highlightIndex].first); _highlightedNodes[highlightIndex].second = iter.value(); } } void GraphViewer::clearGraph() { qDeleteAll(_nodeItems); _nodeItems.clear(); qDeleteAll(_linkItems); _linkItems.clear(); qDeleteAll(_localPathLinkItems); _localPathLinkItems.clear(); qDeleteAll(_globalPathLinkItems); _globalPathLinkItems.clear(); qDeleteAll(_gtNodeItems); _gtNodeItems.clear(); qDeleteAll(_gtLinkItems); _gtLinkItems.clear(); qDeleteAll(_gpsNodeItems); _gpsNodeItems.clear(); qDeleteAll(_gpsLinkItems); _gpsLinkItems.clear(); for(int i=0; i<_highlightedNodes.size(); ++i) { _highlightedNodes[i].second=nullptr; } _root->resetTransform(); _worldMapRotation = 0.0f; _referential->resetTransform(); _localRadius->resetTransform(); } void GraphViewer::clearMap() { _gridCellSize = 0.0f; if(_gridMap->pixmap().isNull()) { // there is no grid map, just return return; } _gridMap->setPixmap(QPixmap()); } void GraphViewer::clearPosterior() { clearNodeColorByValue(); } void GraphViewer::clearNodeColorByValue() { for(QMap::iterator iter = _nodeItems.begin(); iter!=_nodeItems.end(); ++iter) { iter.value()->setColor(Qt::blue); // blue } } void GraphViewer::clearAll() { clearMap(); clearGraph(); // The only way to re-shrink the dynamic scene rect is to re-create the QGraphicsScene. QSettings tmp; saveSettings(tmp); QRectF localRadiusRectF = _localRadius->rect(); setupGraphicsScene(); loadSettings(tmp); // restore previous state _localRadius->setRect(localRadiusRectF); } void GraphViewer::saveSettings(QSettings & settings, const QString & group) const { if(!group.isEmpty()) { settings.beginGroup(group); } settings.setValue("node_radius", (double)this->getNodeRadius()); settings.setValue("link_width", (double)this->getLinkWidth()); settings.setValue("node_color", this->getNodeColor()); settings.setValue("node_odom_cache_color", this->getNodeOdomCacheColor()); settings.setValue("current_goal_color", this->getCurrentGoalColor()); for(int i=0; i<_highlightedNodes.size(); ++i) { settings.setValue(QString("highlighting_color_%1").arg(i), _highlightedNodes[i].first); } settings.setValue("neighbor_color", this->getNeighborColor()); settings.setValue("global_color", this->getGlobalLoopClosureColor()); settings.setValue("local_color", this->getLocalLoopClosureColor()); settings.setValue("user_color", this->getUserLoopClosureColor()); settings.setValue("virtual_color", this->getVirtualLoopClosureColor()); settings.setValue("neighbor_merged_color", this->getNeighborMergedColor()); settings.setValue("rejected_color", this->getRejectedLoopClosureColor()); settings.setValue("local_path_color", this->getLocalPathColor()); settings.setValue("global_path_color", this->getGlobalPathColor()); settings.setValue("gt_color", this->getGTColor()); settings.setValue("gps_color", this->getGPSColor()); settings.setValue("intra_session_color", this->getIntraSessionLoopColor()); settings.setValue("inter_session_color", this->getInterSessionLoopColor()); settings.setValue("intra_inter_session_colors_enabled", this->isIntraInterSessionColorsEnabled()); settings.setValue("grid_visible", this->isGridMapVisible()); settings.setValue("origin_visible", this->isOriginVisible()); settings.setValue("referential_visible", this->isReferentialVisible()); settings.setValue("local_radius_visible", this->isLocalRadiusVisible()); settings.setValue("loop_closure_outlier_thr", this->getLoopClosureOutlierThr()); settings.setValue("min_link_length", this->getMinLinkLength()); settings.setValue("graph_visible", this->isGraphVisible()); settings.setValue("node_visible", this->isNodeVisible()); settings.setValue("global_path_visible", this->isGlobalPathVisible()); settings.setValue("local_path_visible", this->isLocalPathVisible()); settings.setValue("gt_graph_visible", this->isGtGraphVisible()); settings.setValue("gps_graph_visible", this->isGPSGraphVisible()); settings.setValue("odom_cache_overlay", this->isOdomCacheOverlayVisible()); settings.setValue("orientation_ENU", this->isOrientationENU()); settings.setValue("view_plane", (int)this->getViewPlane()); settings.setValue("ensure_frame_visible", (int)this->isEnsureFrameVisible()); if(!group.isEmpty()) { settings.endGroup(); } } void GraphViewer::loadSettings(QSettings & settings, const QString & group) { if(!group.isEmpty()) { settings.beginGroup(group); } this->setNodeRadius(settings.value("node_radius", this->getNodeRadius()).toDouble()); this->setLinkWidth(settings.value("link_width", this->getLinkWidth()).toDouble()); this->setNodeColor(settings.value("node_color", this->getNodeColor()).value()); this->setNodeOdomCacheColor(settings.value("node_odom_cache_color", this->getNodeOdomCacheColor()).value()); this->setCurrentGoalColor(settings.value("current_goal_color", this->getCurrentGoalColor()).value()); for(int i=0; i<_highlightedNodes.size(); ++i) { this->setHighlightColor(settings.value(QString("highlighting_color_%1").arg(i), _highlightedNodes[i].first).value(), i); } this->setNeighborColor(settings.value("neighbor_color", this->getNeighborColor()).value()); this->setGlobalLoopClosureColor(settings.value("global_color", this->getGlobalLoopClosureColor()).value()); this->setLocalLoopClosureColor(settings.value("local_color", this->getLocalLoopClosureColor()).value()); this->setUserLoopClosureColor(settings.value("user_color", this->getUserLoopClosureColor()).value()); this->setVirtualLoopClosureColor(settings.value("virtual_color", this->getVirtualLoopClosureColor()).value()); this->setNeighborMergedColor(settings.value("neighbor_merged_color", this->getNeighborMergedColor()).value()); this->setRejectedLoopClosureColor(settings.value("rejected_color", this->getRejectedLoopClosureColor()).value()); this->setLocalPathColor(settings.value("local_path_color", this->getLocalPathColor()).value()); this->setGlobalPathColor(settings.value("global_path_color", this->getGlobalPathColor()).value()); this->setGTColor(settings.value("gt_color", this->getGTColor()).value()); this->setGPSColor(settings.value("gps_color", this->getGPSColor()).value()); this->setIntraSessionLoopColor(settings.value("intra_session_color", this->getIntraSessionLoopColor()).value()); this->setInterSessionLoopColor(settings.value("inter_session_color", this->getInterSessionLoopColor()).value()); this->setGridMapVisible(settings.value("grid_visible", this->isGridMapVisible()).toBool()); this->setOriginVisible(settings.value("origin_visible", this->isOriginVisible()).toBool()); this->setReferentialVisible(settings.value("referential_visible", this->isReferentialVisible()).toBool()); this->setLocalRadiusVisible(settings.value("local_radius_visible", this->isLocalRadiusVisible()).toBool()); this->setIntraInterSessionColorsEnabled(settings.value("intra_inter_session_colors_enabled", this->isIntraInterSessionColorsEnabled()).toBool()); this->setLoopClosureOutlierThr(settings.value("loop_closure_outlier_thr", this->getLoopClosureOutlierThr()).toDouble()); this->setMinLinkLength(settings.value("min_link_length", this->getMinLinkLength()).toDouble()); this->setGraphVisible(settings.value("graph_visible", this->isGraphVisible()).toBool()); this->setNodeVisible(settings.value("node_visible", this->isNodeVisible()).toBool()); this->setGlobalPathVisible(settings.value("global_path_visible", this->isGlobalPathVisible()).toBool()); this->setLocalPathVisible(settings.value("local_path_visible", this->isLocalPathVisible()).toBool()); this->setGtGraphVisible(settings.value("gt_graph_visible", this->isGtGraphVisible()).toBool()); this->setGPSGraphVisible(settings.value("gps_graph_visible", this->isGPSGraphVisible()).toBool()); this->setOdomCacheOverlayVisible(settings.value("odom_cache_overlay", this->isOdomCacheOverlayVisible()).toBool()); this->setOrientationENU(settings.value("orientation_ENU", this->isOrientationENU()).toBool()); this->setViewPlane((ViewPlane)settings.value("view_plane", (int)this->getViewPlane()).toInt()); this->setEnsureFrameVisible(settings.value("ensure_frame_visible", this->isEnsureFrameVisible()).toBool()); if(!group.isEmpty()) { settings.endGroup(); } } bool GraphViewer::isGridMapVisible() const { return _gridMap->isVisible(); } bool GraphViewer::isOriginVisible() const { return _originReferential->isVisible(); } bool GraphViewer::isReferentialVisible() const { return _referential->isVisible(); } bool GraphViewer::isLocalRadiusVisible() const { return _localRadius->isVisible(); } bool GraphViewer::isGraphVisible() const { return _graphRoot->isVisible(); } bool GraphViewer::isNodeVisible() const { return _nodeVisible; } bool GraphViewer::isGlobalPathVisible() const { return _globalPathRoot->isVisible(); } bool GraphViewer::isLocalPathVisible() const { return _localPathRoot->isVisible(); } bool GraphViewer::isGtGraphVisible() const { return _gtGraphRoot->isVisible(); } bool GraphViewer::isGPSGraphVisible() const { return _gpsGraphRoot->isVisible(); } bool GraphViewer::isOdomCacheOverlayVisible() const { return _odomCacheOverlay->isVisible(); } bool GraphViewer::isOrientationENU() const { return _orientationENU; } GraphViewer::ViewPlane GraphViewer::getViewPlane() const { return _viewPlane; } bool GraphViewer::isEnsureFrameVisible() const { return _ensureFrameVisible; } void GraphViewer::setWorkingDirectory(const QString & path) { _workingDirectory = path; } void GraphViewer::setNodeVisible(bool visible) { _nodeVisible = visible; for(QMap::iterator iter=_nodeItems.begin(); iter!=_nodeItems.end(); ++iter) { iter.value()->setVisible(_nodeVisible); } for(QMap::iterator iter=_gtNodeItems.begin(); iter!=_gtNodeItems.end(); ++iter) { iter.value()->setVisible(_nodeVisible); } for(QMap::iterator iter=_gpsNodeItems.begin(); iter!=_gpsNodeItems.end(); ++iter) { iter.value()->setVisible(_nodeVisible); } } void GraphViewer::setNodeRadius(float radius) { _nodeRadius = radius; for(QMap::iterator iter=_nodeItems.begin(); iter!=_nodeItems.end(); ++iter) { iter.value()->setRadius(_nodeRadius); } for(QMap::iterator iter=_gtNodeItems.begin(); iter!=_gtNodeItems.end(); ++iter) { iter.value()->setRadius(_nodeRadius); } for(QMap::iterator iter=_gpsNodeItems.begin(); iter!=_gpsNodeItems.end(); ++iter) { iter.value()->setRadius(_nodeRadius); } } void GraphViewer::setLinkWidth(float width) { _linkWidth = width; QList items = this->scene()->items(); for(int i=0; i(items[i]); if(line) { QPen pen = line->pen(); pen.setWidthF(_linkWidth*100.0f); line->setPen(pen); } } } void GraphViewer::setNodeColor(const QColor & color) { _nodeColor = color; for(QMap::iterator iter=_nodeItems.begin(); iter!=_nodeItems.end(); ++iter) { iter.value()->setColor(_nodeColor); } } void GraphViewer::setNodeOdomCacheColor(const QColor & color) { _nodeOdomCacheColor = color; for(QMap::iterator iter=_nodeItems.begin(); iter!=_nodeItems.end(); ++iter) { if(iter.value()->zValue() == 24) { iter.value()->setColor(_nodeOdomCacheColor); } } } void GraphViewer::setCurrentGoalColor(const QColor & color) { _currentGoalColor = color; } void GraphViewer::setNeighborColor(const QColor & color) { _neighborColor = color; for(QMultiMap::iterator iter=_linkItems.begin(); iter!=_linkItems.end(); ++iter) { if(iter.value()->linkType() == Link::kNeighbor) { iter.value()->setColor(_neighborColor); } } } void GraphViewer::setGlobalLoopClosureColor(const QColor & color) { _loopClosureColor = color; if(!_intraInterSessionColors) { for(QMultiMap::iterator iter=_linkItems.begin(); iter!=_linkItems.end(); ++iter) { if(iter.value()->linkType() == Link::kGlobalClosure) { iter.value()->setColor(_loopClosureColor); iter.value()->setZValue(10); } } } } void GraphViewer::setLocalLoopClosureColor(const QColor & color) { _loopClosureLocalColor = color; if(!_intraInterSessionColors) { for(QMultiMap::iterator iter=_linkItems.begin(); iter!=_linkItems.end(); ++iter) { if(iter.value()->linkType() == Link::kLocalSpaceClosure || iter.value()->linkType() == Link::kLocalTimeClosure) { iter.value()->setColor(_loopClosureLocalColor); iter.value()->setZValue(10); } } } } void GraphViewer::setUserLoopClosureColor(const QColor & color) { _loopClosureUserColor = color; for(QMultiMap::iterator iter=_linkItems.begin(); iter!=_linkItems.end(); ++iter) { if(iter.value()->linkType() == Link::kUserClosure) { iter.value()->setColor(_loopClosureUserColor); } } } void GraphViewer::setVirtualLoopClosureColor(const QColor & color) { _loopClosureVirtualColor = color; for(QMultiMap::iterator iter=_linkItems.begin(); iter!=_linkItems.end(); ++iter) { if(iter.value()->linkType() == Link::kVirtualClosure) { iter.value()->setColor(_loopClosureVirtualColor); } } } void GraphViewer::setNeighborMergedColor(const QColor & color) { _neighborMergedColor = color; for(QMultiMap::iterator iter=_linkItems.begin(); iter!=_linkItems.end(); ++iter) { if(iter.value()->linkType() == Link::kNeighborMerged) { iter.value()->setColor(_neighborMergedColor); } } } void GraphViewer::setLandmarkColor(const QColor & color) { _landmarkColor = color; for(QMultiMap::iterator iter=_linkItems.begin(); iter!=_linkItems.end(); ++iter) { if(iter.value()->linkType() == Link::kLandmark) { iter.value()->setColor(_landmarkColor); } } } void GraphViewer::setRejectedLoopClosureColor(const QColor & color) { _loopClosureRejectedColor = color; } void GraphViewer::setLocalPathColor(const QColor & color) { _localPathColor = color; } void GraphViewer::setGlobalPathColor(const QColor & color) { _globalPathColor = color; } void GraphViewer::setGTColor(const QColor & color) { _gtPathColor = color; for(QMap::iterator iter=_gtNodeItems.begin(); iter!=_gtNodeItems.end(); ++iter) { iter.value()->setColor(_gtPathColor); } for(QMultiMap::iterator iter=_gtLinkItems.begin(); iter!=_gtLinkItems.end(); ++iter) { iter.value()->setColor(_gtPathColor); } } void GraphViewer::setGPSColor(const QColor & color) { _gpsPathColor = color; for(QMap::iterator iter=_gpsNodeItems.begin(); iter!=_gpsNodeItems.end(); ++iter) { iter.value()->setColor(_gpsPathColor); } for(QMultiMap::iterator iter=_gpsLinkItems.begin(); iter!=_gpsLinkItems.end(); ++iter) { iter.value()->setColor(_gpsPathColor); } } void GraphViewer::setHighlightColor(const QColor & color, int index) { if(index<0 || index > _highlightedNodes.size()) { UERROR("Unsupported highlight color index %d", index); return; } _highlightedNodes[index].first = color; NodeItem * node = _highlightedNodes[index].second; if(node != nullptr) { node->setColor(color); } } void GraphViewer::setIntraSessionLoopColor(const QColor & color) { _loopIntraSessionColor = color; if(_intraInterSessionColors) { for(QMultiMap::iterator iter=_linkItems.begin(); iter!=_linkItems.end(); ++iter) { if((iter.value()->linkType() == Link::kGlobalClosure || iter.value()->linkType() == Link::kLocalSpaceClosure || iter.value()->linkType() == Link::kLocalTimeClosure || iter.value()->linkType() == Link::kUserClosure) && !iter.value()->isInterSession()) { iter.value()->setColor(_loopIntraSessionColor); iter.value()->setZValue(9); } } } } void GraphViewer::setInterSessionLoopColor(const QColor & color) { _loopInterSessionColor = color; if(_intraInterSessionColors) { for(QMultiMap::iterator iter=_linkItems.begin(); iter!=_linkItems.end(); ++iter) { if((iter.value()->linkType() == Link::kGlobalClosure || iter.value()->linkType() == Link::kLocalSpaceClosure || iter.value()->linkType() == Link::kLocalTimeClosure || iter.value()->linkType() == Link::kUserClosure) && iter.value()->isInterSession()) { iter.value()->setColor(_loopInterSessionColor); iter.value()->setZValue(8); } } } } void GraphViewer::setIntraInterSessionColorsEnabled(bool enabled) { _intraInterSessionColors = enabled; if(_intraInterSessionColors) { this->setIntraSessionLoopColor(_loopIntraSessionColor); this->setInterSessionLoopColor(_loopInterSessionColor); } else { this->setGlobalLoopClosureColor(_loopClosureColor); this->setLocalLoopClosureColor(_loopClosureLocalColor); this->setUserLoopClosureColor(_loopClosureUserColor); } } void GraphViewer::setGridMapVisible(bool visible) { if(visible && _viewPlane!=XY) { UWARN("Grid map can be shown only with view plane is XY."); } _gridMap->setVisible(_viewPlane==XY && visible); } void GraphViewer::setOriginVisible(bool visible) { _originReferential->setVisible(visible); } void GraphViewer::setReferentialVisible(bool visible) { _referential->setVisible(visible); } void GraphViewer::setLocalRadiusVisible(bool visible) { _localRadius->setVisible(visible); } void GraphViewer::setLoopClosureOutlierThr(float value) { _loopClosureOutlierThr = value; } void GraphViewer::setMinLinkLength(float value) { _minLinkLength = value; } void GraphViewer::setGraphVisible(bool visible) { _graphRoot->setVisible(visible); } void GraphViewer::setGlobalPathVisible(bool visible) { _globalPathRoot->setVisible(visible); } void GraphViewer::setLocalPathVisible(bool visible) { _localPathRoot->setVisible(visible); } void GraphViewer::setGtGraphVisible(bool visible) { _gtGraphRoot->setVisible(visible); } void GraphViewer::setGPSGraphVisible(bool visible) { _gpsGraphRoot->setVisible(visible); } void GraphViewer::setOdomCacheOverlayVisible(bool visible) { _odomCacheOverlay->setVisible(visible); } void GraphViewer::setOrientationENU(bool enabled) { if(enabled && _viewPlane!=XY) { UWARN("ENU orientation can be set only with view plane is XY."); } enabled = _viewPlane==XY && enabled; if(_orientationENU!=enabled) { _orientationENU = enabled; this->rotate(_orientationENU?90:270); } QTransform t; t.rotateRadians(_worldMapRotation); _root->setTransform(t); } void GraphViewer::setViewPlane(ViewPlane plane) { if(plane != XY) { setOrientationENU(false); setGridMapVisible(false); } _viewPlane = plane; for(QMap::iterator iter=_nodeItems.begin(); iter!=_nodeItems.end(); ++iter) { iter.value()->setPose(iter.value()->pose(), _viewPlane); } for(QMultiMap::iterator iter=_linkItems.begin(); iter!=_linkItems.end(); ++iter) { iter.value()->setPoses(iter.value()->getPoseA(), iter.value()->getPoseB(), _viewPlane); } _originReferentialXY->setVisible(plane==XY); _originReferentialXZ->setVisible(plane==XZ); _originReferentialYZ->setVisible(plane==YZ); _referentialXY->setVisible(plane==XY); _referentialXZ->setVisible(plane==XZ); _referentialYZ->setVisible(plane==YZ); } void GraphViewer::setEnsureFrameVisible(bool visible) { _ensureFrameVisible = visible; } void GraphViewer::restoreDefaults() { setNodeRadius(0.01f); setLinkWidth(0.0f); setNodeColor(Qt::blue); setNodeOdomCacheColor(Qt::darkGreen); setCurrentGoalColor(Qt::darkMagenta); setHighlightColor(Qt::yellow, 0); setHighlightColor(Qt::magenta, 1); setNeighborColor(Qt::blue); setGlobalLoopClosureColor(Qt::red); setLocalLoopClosureColor(Qt::yellow); setUserLoopClosureColor(Qt::red); setVirtualLoopClosureColor(Qt::magenta); setNeighborMergedColor(QColor(255,170,0)); setRejectedLoopClosureColor(Qt::black); setLandmarkColor(Qt::darkGreen); setLocalPathColor(Qt::cyan); setGlobalPathColor(Qt::darkMagenta); setGTColor(Qt::gray); setGPSColor(Qt::darkCyan); setIntraSessionLoopColor(Qt::red); setInterSessionLoopColor(Qt::green); setIntraInterSessionColorsEnabled(false); setGridMapVisible(true); setGraphVisible(true); setGlobalPathVisible(true); setLocalPathVisible(true); setGtGraphVisible(true); } void GraphViewer::wheelEvent ( QWheelEvent * event ) { if(event->angleDelta().y() < 0) { this->scale(0.95, 0.95); } else { this->scale(1.05, 1.05); } } void GraphViewer::mouseMoveEvent(QMouseEvent * event) { QPointF scenePoint = mapToScene(event->pos()); if(_mouseTracking && _viewPlane==XY && this->sceneRect().contains(scenePoint)) { #if QT_VERSION >= QT_VERSION_CHECK(6, 0, 0) QToolTip::showText(event->globalPosition().toPoint(), QString("%1m %2m").arg(-scenePoint.y()/100.0).arg(-scenePoint.x()/100.0)); #else QToolTip::showText(event->globalPos(), QString("%1m %2m").arg(-scenePoint.y()/100.0).arg(-scenePoint.x()/100.0)); #endif } else { QToolTip::hideText(); } if (event->modifiers() & (Qt::ShiftModifier | Qt::ControlModifier) && event->buttons() & Qt::LeftButton) { // same modifiers than 3D view, change zoom if(_previousMousePos.y()!=0) { if(event->pos().y() - _previousMousePos.y() > 0) { this->scale(0.98, 0.98); } else { this->scale(1.02, 1.02); } } _previousMousePos = event->pos(); return; } _previousMousePos.setY(0); QGraphicsView::mouseMoveEvent(event); } void GraphViewer::mousePressEvent(QMouseEvent * event) { QGraphicsItem *item = this->scene()->itemAt(mapToScene(event->pos()), QTransform()); if(item) { NodeItem *nodeItem = qgraphicsitem_cast(item); LinkItem *linkItem = qgraphicsitem_cast(item); if(nodeItem && nodeItem->parentItem() == _graphRoot && nodeItem->id() != 0) { Q_EMIT nodeSelected(nodeItem->id()); } else if(linkItem && linkItem->parentItem() == _graphRoot && linkItem->from() != 0 && linkItem->to() != 0) { Q_EMIT linkSelected(linkItem->from(), linkItem->to()); } else { QGraphicsView::mousePressEvent(event); } } else { QGraphicsView::mousePressEvent(event); } } QIcon createIcon(const QColor & color) { QPixmap pixmap(50, 50); pixmap.fill(color); return QIcon(pixmap); } void GraphViewer::contextMenuEvent(QContextMenuEvent * event) { QMenu menu; QAction * aScreenShot = menu.addAction(tr("Take a screenshot...")); QAction * aExportGridMap = menu.addAction(tr("Export grid map...")); aExportGridMap->setEnabled(!_gridMap->pixmap().isNull()); menu.addSeparator(); QAction * aChangeNodeColor = menu.addAction(createIcon(_nodeColor), tr("Set node color...")); QAction * aChangeNodeOdomCacheColor = menu.addAction(createIcon(_nodeOdomCacheColor), tr("Set node odom cache color...")); QAction * aChangeCurrentGoalColor = menu.addAction(createIcon(_currentGoalColor), tr("Set current goal color...")); QMenu * menuChangeHighlightingColors = menu.addMenu(tr("Set node highlighting colors...")); QVector aChangeHighlightingColors(_highlightedNodes.size()); for(int i=0; i<_highlightedNodes.size(); ++i) { aChangeHighlightingColors[i] = menuChangeHighlightingColors->addAction(createIcon(_highlightedNodes[i].first), tr("Color %1...").arg(i+1)); aChangeHighlightingColors[i]->setIconVisibleInMenu(true); } aChangeNodeColor->setIconVisibleInMenu(true); aChangeNodeOdomCacheColor->setIconVisibleInMenu(true); aChangeCurrentGoalColor->setIconVisibleInMenu(true); // Links QMenu * menuLink = menu.addMenu(tr("Set link color...")); QAction * aChangeNeighborColor = menuLink->addAction(tr("Neighbor")); QAction * aChangeGlobalLoopColor = menuLink->addAction(tr("Global loop closure")); QAction * aChangeLocalLoopColor = menuLink->addAction(tr("Local loop closure")); QAction * aChangeUserLoopColor = menuLink->addAction(tr("User loop closure")); QAction * aChangeVirtualLoopColor = menuLink->addAction(tr("Virtual loop closure")); QAction * aChangeNeighborMergedColor = menuLink->addAction(tr("Neighbor merged")); QAction * aChangeLandmarkColor = menuLink->addAction(tr("Landmark")); QAction * aChangeRejectedLoopColor = menuLink->addAction(tr("Outlier loop closure")); QAction * aChangeRejectedLoopThr = menuLink->addAction(tr("Set outlier threshold...")); QAction * aChangeLocalPathColor = menuLink->addAction(tr("Local path")); QAction * aChangeGlobalPathColor = menuLink->addAction(tr("Global path")); QAction * aChangeGTColor = menuLink->addAction(tr("Ground truth")); QAction * aChangeGPSColor = menuLink->addAction(tr("GPS")); menuLink->addSeparator(); QAction * aSetIntraInterSessionColors = menuLink->addAction(tr("Enable intra/inter-session colors")); QAction * aChangeIntraSessionLoopColor = menuLink->addAction(tr("Intra-session loop closure")); QAction * aChangeInterSessionLoopColor = menuLink->addAction(tr("Inter-session loop closure")); aChangeNeighborColor->setIcon(createIcon(_neighborColor)); aChangeGlobalLoopColor->setIcon(createIcon(_loopClosureColor)); aChangeLocalLoopColor->setIcon(createIcon(_loopClosureLocalColor)); aChangeUserLoopColor->setIcon(createIcon(_loopClosureUserColor)); aChangeVirtualLoopColor->setIcon(createIcon(_loopClosureVirtualColor)); aChangeNeighborMergedColor->setIcon(createIcon(_neighborMergedColor)); aChangeLandmarkColor->setIcon(createIcon(_landmarkColor)); aChangeRejectedLoopColor->setIcon(createIcon(_loopClosureRejectedColor)); aChangeLocalPathColor->setIcon(createIcon(_localPathColor)); aChangeGlobalPathColor->setIcon(createIcon(_globalPathColor)); aChangeGTColor->setIcon(createIcon(_gtPathColor)); aChangeGPSColor->setIcon(createIcon(_gpsPathColor));; aChangeIntraSessionLoopColor->setIcon(createIcon(_loopIntraSessionColor)); aChangeInterSessionLoopColor->setIcon(createIcon(_loopInterSessionColor)); aChangeNeighborColor->setIconVisibleInMenu(true); aChangeGlobalLoopColor->setIconVisibleInMenu(true); aChangeLocalLoopColor->setIconVisibleInMenu(true); aChangeUserLoopColor->setIconVisibleInMenu(true); aChangeVirtualLoopColor->setIconVisibleInMenu(true); aChangeNeighborMergedColor->setIconVisibleInMenu(true); aChangeRejectedLoopColor->setIconVisibleInMenu(true); aChangeLocalPathColor->setIconVisibleInMenu(true); aChangeGlobalPathColor->setIconVisibleInMenu(true); aChangeGTColor->setIconVisibleInMenu(true); aChangeGPSColor->setIconVisibleInMenu(true); aChangeIntraSessionLoopColor->setIconVisibleInMenu(true); aChangeInterSessionLoopColor->setIconVisibleInMenu(true); aSetIntraInterSessionColors->setCheckable(true); aSetIntraInterSessionColors->setChecked(_intraInterSessionColors); menu.addSeparator(); QAction * aSetNodeSize = menu.addAction(tr("Set node radius...")); QAction * aSetLinkSize = menu.addAction(tr("Set link width...")); QAction * aChangeMinLinkLength = menu.addAction(tr("Set minimum link length...")); menu.addSeparator(); QAction * aEnsureFrameVisible; QAction * aShowHideGridMap; QAction * aShowHideGraph; QAction * aShowHideGraphNodes; QAction * aShowHideOrigin; QAction * aShowHideReferential; QAction * aShowHideLocalRadius; QAction * aShowHideGlobalPath; QAction * aShowHideLocalPath; QAction * aShowHideGtGraph; QAction * aShowHideGPSGraph; QAction * aShowHideOdomCacheOverlay; QAction * aOrientationENU; QAction * aMouseTracking; QAction * aViewPlaneXY; QAction * aViewPlaneXZ; QAction * aViewPlaneYZ; aEnsureFrameVisible = menu.addAction(tr("Ensure Frame Visible")); aEnsureFrameVisible->setCheckable(true); aEnsureFrameVisible->setChecked(_ensureFrameVisible); if(_gridMap->isVisible()) { aShowHideGridMap = menu.addAction(tr("Hide grid map")); } else { aShowHideGridMap = menu.addAction(tr("Show grid map")); } aShowHideGridMap->setEnabled(_viewPlane == XY); if(_originReferential->isVisible()) { aShowHideOrigin = menu.addAction(tr("Hide origin referential")); } else { aShowHideOrigin = menu.addAction(tr("Show origin referential")); } if(_referential->isVisible()) { aShowHideReferential = menu.addAction(tr("Hide current referential")); } else { aShowHideReferential = menu.addAction(tr("Show current referential")); } if(_localRadius->isVisible()) { aShowHideLocalRadius = menu.addAction(tr("Hide local radius")); } else { aShowHideLocalRadius = menu.addAction(tr("Show local radius")); } if(_graphRoot->isVisible()) { aShowHideGraph = menu.addAction(tr("Hide graph")); } else { aShowHideGraph = menu.addAction(tr("Show graph")); } if(_nodeVisible) { aShowHideGraphNodes = menu.addAction(tr("Hide graph nodes")); } else { aShowHideGraphNodes = menu.addAction(tr("Show graph nodes")); } if(_globalPathRoot->isVisible()) { aShowHideGlobalPath = menu.addAction(tr("Hide global path")); } else { aShowHideGlobalPath = menu.addAction(tr("Show global path")); } if(_localPathRoot->isVisible()) { aShowHideLocalPath = menu.addAction(tr("Hide local path")); } else { aShowHideLocalPath = menu.addAction(tr("Show local path")); } if(_gtGraphRoot->isVisible()) { aShowHideGtGraph = menu.addAction(tr("Hide ground truth graph")); } else { aShowHideGtGraph = menu.addAction(tr("Show ground truth graph")); } if(_gpsGraphRoot->isVisible()) { aShowHideGPSGraph = menu.addAction(tr("Hide GPS graph")); } else { aShowHideGPSGraph = menu.addAction(tr("Show GPS graph")); } if(_odomCacheOverlay->isVisible()) { aShowHideOdomCacheOverlay = menu.addAction(tr("Hide odom cache overlay")); } else { aShowHideOdomCacheOverlay = menu.addAction(tr("Show odom cache overlay")); } aOrientationENU = menu.addAction(tr("ENU Orientation")); aOrientationENU->setCheckable(true); aOrientationENU->setChecked(_orientationENU); aMouseTracking = menu.addAction(tr("Show mouse cursor position (m)")); aMouseTracking->setCheckable(true); aMouseTracking->setChecked(_mouseTracking); aMouseTracking->setEnabled(_viewPlane == XY); aShowHideGraph->setEnabled(_viewPlane == XY); aShowHideGlobalPath->setEnabled(_globalPathLinkItems.size()); aShowHideLocalPath->setEnabled(_localPathLinkItems.size()); aShowHideOdomCacheOverlay->setEnabled(_odomCacheOverlay->rect().width()>0); QMenu * viewPlaneMenu = menu.addMenu("View Plane..."); aViewPlaneXY = viewPlaneMenu->addAction("XY"); aViewPlaneXY->setCheckable(true); aViewPlaneXY->setChecked(_viewPlane == XY); aViewPlaneXZ = viewPlaneMenu->addAction("XZ"); aViewPlaneXZ->setCheckable(true); aViewPlaneXZ->setChecked(_viewPlane == XZ); aViewPlaneYZ = viewPlaneMenu->addAction("YZ"); aViewPlaneYZ->setCheckable(true); aViewPlaneYZ->setChecked(_viewPlane == YZ); menu.addSeparator(); QAction * aRestoreDefaults = menu.addAction(tr("Restore defaults")); QAction * r = menu.exec(event->globalPos()); int aChangeHighlightingColorIndex = 0; for(int i=1; i= 0x050000 filePath = QStandardPaths::writableLocation(QStandardPaths::PicturesLocation); #endif QDir dir; if(!dir.exists(filePath)) { filePath = QDir::homePath(); } filePath += "/graph.png"; #ifdef QT_SVG_LIB filePath = QFileDialog::getSaveFileName(this, tr("Save figure to ..."), filePath, "*.png *.xpm *.jpg *.pdf *.svg"); #else filePath = QFileDialog::getSaveFileName(this, tr("Save figure to ..."), filePath, "*.png *.xpm *.jpg *.pdf"); #endif if(!filePath.isEmpty()) { if(QFileInfo(filePath).suffix() == "") { //use png by default filePath += ".png"; } if(_gridCellSize) { _root->setScale(1.0f/(_gridCellSize*100.0f)); // grid map precision (for 5cm grid cell, x20 to have 1pix/5cm) } else { _root->setScale(this->transform().m11()); // current view } this->scene()->clearSelection(); // Selections would also render to the file this->scene()->setSceneRect(this->scene()->itemsBoundingRect()); // Re-shrink the scene to it's bounding contents QSize sceneSize = this->scene()->sceneRect().size().toSize(); if(QFileInfo(filePath).suffix().compare("pdf") == 0) { QPrinter printer(QPrinter::HighResolution); printer.setPageOrientation(QPageLayout::Portrait); printer.setOutputFileName( filePath ); QPainter p(&printer); scene()->render(&p); p.end(); } else if(QFileInfo(filePath).suffix().compare("svg") == 0) { #ifdef QT_SVG_LIB QSvgGenerator svgGen; svgGen.setFileName( filePath ); svgGen.setSize(sceneSize); // add 1% border to make sure values are not cropped int borderH = sceneSize.width()/100; int borderV = sceneSize.height()/100; svgGen.setViewBox(QRect(-borderH, -borderV, sceneSize.width()+borderH*2, sceneSize.height()+borderV*2)); svgGen.setTitle(tr("RTAB-Map graph")); svgGen.setDescription(tr("RTAB-Map map and graph")); QPainter painter( &svgGen ); this->scene()->render(&painter); #else UERROR("RTAB-MAp is not built with Qt's SVG library, cannot save picture in svg format."); #endif } else { QImage image(sceneSize, QImage::Format_ARGB32); // Create the image with the exact size of the shrunk scene image.fill(Qt::transparent); // Start all pixels transparent QPainter painter(&image); this->scene()->render(&painter); if(!image.isNull()) { image.save(filePath); } else { QMessageBox::warning(this, tr("Save PNG"), tr("Could not export in PNG (the scene may be too large %1x%2), try saving in SVG.").arg(sceneSize.width()).arg(sceneSize.height())); } } //reset scale _root->setScale(1.0f); this->scene()->setSceneRect(QRectF()); QDesktopServices::openUrl(QUrl::fromLocalFile(filePath)); } } return; // without emitting configChanged } else if(r == aExportGridMap) { float xMin, yMin, cellSize; cellSize = _gridCellSize; xMin = -_gridMap->y()/100.0f; yMin = -_gridMap->x()/100.0f; QString path = QFileDialog::getSaveFileName( this, tr("Save File"), "map.pgm", tr("Map (*.pgm)")); if(!path.isEmpty()) { if(QFileInfo(path).suffix() == "") { path += ".pgm"; } _gridMap->pixmap().save(path); QFileInfo info(path); QString yaml = info.absolutePath() + "/" + info.baseName() + ".yaml"; float occupancyThr = Parameters::defaultGridGlobalOccupancyThr(); std::ofstream file; file.open (yaml.toStdString()); file << "image: " << info.baseName().toStdString() << ".pgm" << std::endl; file << "resolution: " << cellSize << std::endl; file << "origin: [" << xMin << ", " << yMin << ", 0.0]" << std::endl; file << "negate: 0" << std::endl; file << "occupied_thresh: " << occupancyThr << std::endl; file << "free_thresh: 0.196" << std::endl; file << std::endl; file.close(); QMessageBox::information(this, tr("Export 2D map"), tr("Exported %1 and %2!").arg(path).arg(yaml)); } } else if(r == aSetIntraInterSessionColors) { setIntraInterSessionColorsEnabled(aSetIntraInterSessionColors->isChecked()); } else if(r == aChangeRejectedLoopThr) { bool ok; double value = QInputDialog::getDouble(this, tr("Loop closure outlier threshold"), tr("Value (m)"), _loopClosureOutlierThr, 0.0, 1000.0, 2, &ok); if(ok) { setLoopClosureOutlierThr(value); } } else if(r == aChangeMinLinkLength) { bool ok; double value = QInputDialog::getDouble(this, tr("Minimum link length to be shown"), tr("Value (m)"), _minLinkLength, 0.0, 1000.0, 3, &ok); if(ok) { setMinLinkLength(value); } } else if(r == aChangeNodeColor || r == aChangeNodeOdomCacheColor || r == aChangeCurrentGoalColor || r == aChangeHighlightingColors[aChangeHighlightingColorIndex] || r == aChangeNeighborColor || r == aChangeGlobalLoopColor || r == aChangeLocalLoopColor || r == aChangeUserLoopColor || r == aChangeVirtualLoopColor || r == aChangeNeighborMergedColor || r == aChangeRejectedLoopColor || r == aChangeLocalPathColor || r == aChangeGlobalPathColor || r == aChangeGTColor || r == aChangeGPSColor || r == aChangeIntraSessionLoopColor || r == aChangeInterSessionLoopColor) { QColor color; if(r == aChangeNodeColor) { color = _nodeColor; } else if(r == aChangeNodeOdomCacheColor) { color = _nodeOdomCacheColor; } else if(r == aChangeCurrentGoalColor) { color = _currentGoalColor; } else if(r == aChangeHighlightingColors[aChangeHighlightingColorIndex]) { color = _highlightedNodes[aChangeHighlightingColorIndex].first; } else if(r == aChangeGlobalLoopColor) { color = _loopClosureColor; } else if(r == aChangeLocalLoopColor) { color = _loopClosureLocalColor; } else if(r == aChangeUserLoopColor) { color = _loopClosureUserColor; } else if(r == aChangeVirtualLoopColor) { color = _loopClosureVirtualColor; } else if(r == aChangeNeighborMergedColor) { color = _neighborMergedColor; } else if(r == aChangeLandmarkColor) { color = _landmarkColor; } else if(r == aChangeRejectedLoopColor) { color = _loopClosureRejectedColor; } else if(r == aChangeLocalPathColor) { color = _localPathColor; } else if(r == aChangeGlobalPathColor) { color = _globalPathColor; } else if(r == aChangeGTColor) { color = _gtPathColor; } else if(r == aChangeGPSColor) { color = _gpsPathColor; } else if(r == aChangeIntraSessionLoopColor) { color = _loopIntraSessionColor; } else if(r == aChangeInterSessionLoopColor) { color = _loopInterSessionColor; } else //if(r == aChangeNeighborColor) { color = _neighborColor; } color = QColorDialog::getColor(color, this); if(color.isValid()) { if(r == aChangeNodeColor) { this->setNodeColor(color); } else if(r == aChangeNodeOdomCacheColor) { this->setNodeOdomCacheColor(color); } else if(r == aChangeCurrentGoalColor) { this->setCurrentGoalColor(color); } else if(r == aChangeHighlightingColors[aChangeHighlightingColorIndex]) { this->setHighlightColor(color, aChangeHighlightingColorIndex); } else if(r == aChangeGlobalLoopColor) { this->setGlobalLoopClosureColor(color); } else if(r == aChangeLocalLoopColor) { this->setLocalLoopClosureColor(color); } else if(r == aChangeUserLoopColor) { this->setUserLoopClosureColor(color); } else if(r == aChangeVirtualLoopColor) { this->setVirtualLoopClosureColor(color); } else if(r == aChangeNeighborMergedColor) { this->setNeighborMergedColor(color); } else if(r == aChangeLandmarkColor) { this->setLandmarkColor(color); } else if(r == aChangeRejectedLoopColor) { this->setRejectedLoopClosureColor(color); } else if(r == aChangeLocalPathColor) { this->setLocalPathColor(color); } else if(r == aChangeGlobalPathColor) { this->setGlobalPathColor(color); } else if(r == aChangeGTColor) { this->setGTColor(color); } else if(r == aChangeGPSColor) { this->setGPSColor(color); } else if(r == aChangeIntraSessionLoopColor) { this->setIntraSessionLoopColor(color); } else if(r == aChangeInterSessionLoopColor) { this->setInterSessionLoopColor(color); } else //if(r == aChangeNeighborColor) { this->setNeighborColor(color); } } else { return; // without emitting configChanged } } else if(r == aSetNodeSize) { bool ok; double value = QInputDialog::getDouble(this, tr("Node radius"), tr("Radius (m)"), _nodeRadius, 0.001, 100, 3, &ok); if(ok) { setNodeRadius(value); } } else if(r == aSetLinkSize) { bool ok; double value = QInputDialog::getDouble(this, tr("Link width"), tr("Width (m)"), _linkWidth, 0, 100, 2, &ok); if(ok) { setLinkWidth(value); } } else if(r == aEnsureFrameVisible) { this->setEnsureFrameVisible(!this->isEnsureFrameVisible()); } else if(r == aShowHideGridMap) { this->setGridMapVisible(!this->isGridMapVisible()); if(_gridMap->isVisible()) { mapShownRequested(); } } else if(r == aShowHideOrigin) { this->setOriginVisible(!this->isOriginVisible()); } else if(r == aShowHideReferential) { this->setReferentialVisible(!this->isReferentialVisible()); } else if(r == aShowHideLocalRadius) { this->setLocalRadiusVisible(!this->isLocalRadiusVisible()); } else if(r == aRestoreDefaults) { this->restoreDefaults(); } else if(r == aShowHideGraph) { this->setGraphVisible(!this->isGraphVisible()); } else if(r == aShowHideGraphNodes) { this->setNodeVisible(!_nodeVisible); } else if(r == aShowHideGlobalPath) { this->setGlobalPathVisible(!this->isGlobalPathVisible()); } else if(r == aShowHideLocalPath) { this->setLocalPathVisible(!this->isLocalPathVisible()); } else if(r == aShowHideGtGraph) { this->setGtGraphVisible(!this->isGtGraphVisible()); } else if(r == aShowHideGPSGraph) { this->setGPSGraphVisible(!this->isGPSGraphVisible()); } else if(r == aShowHideOdomCacheOverlay) { this->setOdomCacheOverlayVisible(!this->isOdomCacheOverlayVisible()); } else if(r == aOrientationENU) { this->setOrientationENU(!this->isOrientationENU()); } else if(r == aMouseTracking) { _mouseTracking = aMouseTracking->isChecked(); } else if(r == aViewPlaneXY) { this->setViewPlane(XY); } else if(r == aViewPlaneXZ) { this->setViewPlane(XZ); } else if(r == aViewPlaneYZ) { this->setViewPlane(YZ); } if(r) { Q_EMIT configChanged(); } } } /* namespace rtabmap */