/**************************************************************************** ** ** Copyright (C) 2018 The Qt Company Ltd. ** Contact: http://www.qt.io/licensing/ ** ** This file is part of the QtLocation module of the Qt Toolkit. ** ** $QT_BEGIN_LICENSE:LGPL3$ ** Commercial License Usage ** Licensees holding valid commercial Qt licenses may use this file in ** accordance with the commercial license agreement provided with the ** Software or, alternatively, in accordance with the terms contained in ** a written agreement between you and The Qt Company. For licensing terms ** and conditions see http://www.qt.io/terms-conditions. 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Please review the following information to ** ensure the GNU General Public License version 2.0 requirements will be ** met: http://www.gnu.org/licenses/gpl-2.0.html. ** ** $QT_END_LICENSE$ ** ****************************************************************************/ #include "qmapcircleobjectqsg_p_p.h" QT_BEGIN_NAMESPACE static const int CircleSamples = 128; QMapCircleObjectPrivateQSG::QMapCircleObjectPrivateQSG(QGeoMapObject *q) : QMapCircleObjectPrivateDefault(q) { } QMapCircleObjectPrivateQSG::QMapCircleObjectPrivateQSG(const QMapCircleObjectPrivate &other) : QMapCircleObjectPrivateDefault(other) { // Data already cloned by the *Default copy constructor, but necessary // update operations triggered only by setters overrides updateGeometry(); if (m_map) emit m_map->sgNodeChanged(); } QMapCircleObjectPrivateQSG::~QMapCircleObjectPrivateQSG() { if (m_map) m_map->removeMapObject(q); } void QMapCircleObjectPrivateQSG::updateCirclePath() { const QGeoProjectionWebMercator &p = static_cast(m_map->geoProjection()); QList path; QDeclarativeCircleMapItemPrivateCPU::calculatePeripheralPoints(path, center(), radius(), CircleSamples, m_leftBound); m_circlePath.clear(); for (const QGeoCoordinate &c : path) m_circlePath << p.geoToMapProjection(c); } void QMapCircleObjectPrivateQSG::updateGeometry() { if (!m_map || m_map->geoProjection().projectionType() != QGeoProjection::ProjectionWebMercator || !qIsFinite(radius()) || !center().isValid()) return; const QGeoProjectionWebMercator &p = static_cast(m_map->geoProjection()); QScopedValueRollback rollback(m_updatingGeometry); m_updatingGeometry = true; updateCirclePath(); QList circlePath = m_circlePath; int pathCount = circlePath.size(); bool preserve = QDeclarativeCircleMapItemPrivateCPU::preserveCircleGeometry(circlePath, center(), radius(), p); // using leftBound_ instead of the analytically calculated circle_.boundingGeoRectangle().topLeft()); // to fix QTBUG-62154 m_geometry.markSourceDirty(); m_geometry.setPreserveGeometry(true, m_leftBound); // to set the geoLeftBound_ m_geometry.setPreserveGeometry(preserve, m_leftBound); bool invertedCircle = false; if (QDeclarativeCircleMapItemPrivateCPU::crossEarthPole(center(), radius()) && circlePath.size() == pathCount) { m_geometry.updateScreenPointsInvert(circlePath, *m_map); // invert fill area for really huge circles invertedCircle = true; } else { m_geometry.updateSourcePoints(*m_map, circlePath); m_geometry.updateScreenPoints(*m_map); } m_borderGeometry.clear(); //if (borderColor() != Qt::transparent && borderWidth() > 0) { QList closedPath = circlePath; closedPath << closedPath.first(); if (invertedCircle) { closedPath = m_circlePath; closedPath << closedPath.first(); std::reverse(closedPath.begin(), closedPath.end()); } m_borderGeometry.markSourceDirty(); m_borderGeometry.setPreserveGeometry(true, m_leftBound); m_borderGeometry.setPreserveGeometry(preserve, m_leftBound); // Use srcOrigin_ from fill geometry after clipping to ensure that translateToCommonOrigin won't fail. const QGeoCoordinate &geometryOrigin = m_geometry.origin(); m_borderGeometry.clearSource(); QDoubleVector2D borderLeftBoundWrapped; QList > clippedPaths = m_borderGeometry.clipPath(*m_map, closedPath, borderLeftBoundWrapped); if (clippedPaths.size()) { borderLeftBoundWrapped = p.geoToWrappedMapProjection(geometryOrigin); m_borderGeometry.pathToScreen(*m_map, clippedPaths, borderLeftBoundWrapped); m_borderGeometry.updateScreenPoints(*m_map, borderWidth(), false); } else { m_borderGeometry.clear(); } } QPointF origin = m_map->geoProjection().coordinateToItemPosition(m_geometry.origin(), false).toPointF(); m_geometry.translate(origin - m_geometry.firstPointOffset()); m_borderGeometry.translate(origin - m_borderGeometry.firstPointOffset()); } QGeoMapObjectPrivate *QMapCircleObjectPrivateQSG::clone() { return new QMapCircleObjectPrivateQSG(static_cast(*this)); } QSGNode *QMapCircleObjectPrivateQSG::updateMapObjectNode(QSGNode *oldNode, VisibleNode **visibleNode, QSGNode *root, QQuickWindow * /*window*/) { // Q_UNUSED(visibleNode); // coz of -Werror=unused-but-set-parameter MapPolygonNode *node = static_cast(oldNode); bool created = false; if (!node) { node = new MapPolygonNode(); *visibleNode = static_cast(node); created = true; } //TODO: update only material if (m_geometry.isScreenDirty() || !m_borderGeometry.isScreenDirty() || !oldNode || created) { //QMapPolygonObject *p = static_cast(q); node->update(color(), borderColor(), &m_geometry, &m_borderGeometry); m_geometry.setPreserveGeometry(false); m_borderGeometry.setPreserveGeometry(false); m_geometry.markClean(); m_borderGeometry.markClean(); } if (created) root->appendChildNode(node); return node; } void QMapCircleObjectPrivateQSG::setCenter(const QGeoCoordinate ¢er) { QMapCircleObjectPrivateDefault::setCenter(center); updateGeometry(); if (m_map) emit m_map->sgNodeChanged(); } void QMapCircleObjectPrivateQSG::setRadius(qreal radius) { QMapCircleObjectPrivateDefault::setRadius(radius); updateGeometry(); if (m_map) emit m_map->sgNodeChanged(); } void QMapCircleObjectPrivateQSG::setColor(const QColor &color) { QMapCircleObjectPrivateDefault::setColor(color); updateGeometry(); if (m_map) emit m_map->sgNodeChanged(); } void QMapCircleObjectPrivateQSG::setBorderColor(const QColor &color) { QMapCircleObjectPrivateDefault::setBorderColor(color); updateGeometry(); if (m_map) emit m_map->sgNodeChanged(); } void QMapCircleObjectPrivateQSG::setBorderWidth(qreal width) { QMapCircleObjectPrivateDefault::setBorderWidth(width); updateGeometry(); if (m_map) emit m_map->sgNodeChanged(); } QT_END_NAMESPACE