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204 lines
5.0 KiB
C++
204 lines
5.0 KiB
C++
#include <QtCore>
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#include <QPainter>
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#include <QDir>
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#include "common/rectc.h"
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#include "common/wgs84.h"
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#include "common/programpaths.h"
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#include "transform.h"
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#include "tileloader.h"
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#include "wmts.h"
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#include "wmtsmap.h"
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#define CAPABILITIES_FILE "capabilities.xml"
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bool WMTSMap::loadWMTS()
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{
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QString file = tilesDir() + "/" + CAPABILITIES_FILE;
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WMTS wmts(file, _setup);
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if (!wmts.isValid()) {
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_errorString = wmts.errorString();
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return false;
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}
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_zooms = wmts.zooms();
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_projection = wmts.projection();
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_tileLoader->setUrl(wmts.tileUrl());
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_bounds = RectD(wmts.bounds(), _projection);
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if (_setup.coordinateSystem().axisOrder() == CoordinateSystem::Unknown)
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_cs = _projection.coordinateSystem();
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else
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_cs = _setup.coordinateSystem();
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updateTransform();
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return true;
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}
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WMTSMap::WMTSMap(const QString &name, const WMTS::Setup &setup, qreal tileRatio,
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QObject *parent) : Map(parent), _name(name), _setup(setup), _tileLoader(0),
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_zoom(0), _mapRatio(1.0), _tileRatio(tileRatio), _valid(false)
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{
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_tileLoader = new TileLoader(tilesDir(), this);
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_tileLoader->setAuthorization(_setup.authorization());
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connect(_tileLoader, SIGNAL(finished()), this, SIGNAL(loaded()));
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_valid = loadWMTS();
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}
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void WMTSMap::clearCache()
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{
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_tileLoader->clearCache();
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_zoom = 0;
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if (!loadWMTS())
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qWarning("%s: %s", qPrintable(_name), qPrintable(_errorString));
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}
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QString WMTSMap::tilesDir() const
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{
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return QString(QDir(ProgramPaths::tilesDir()).filePath(_name));
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}
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double WMTSMap::sd2res(double scaleDenominator) const
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{
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return scaleDenominator * 0.28e-3 * _projection.units().fromMeters(1.0);
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}
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void WMTSMap::updateTransform()
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{
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const WMTS::Zoom &z = _zooms.at(_zoom);
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PointD topLeft = (_cs.axisOrder() == CoordinateSystem::YX)
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? PointD(z.topLeft().y(), z.topLeft().x()) : z.topLeft();
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double pixelSpan = sd2res(z.scaleDenominator());
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if (_projection.isGeographic())
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pixelSpan /= deg2rad(WGS84_RADIUS);
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_transform = Transform(ReferencePoint(PointD(0, 0), topLeft),
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PointD(pixelSpan, pixelSpan));
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}
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QRectF WMTSMap::bounds()
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{
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const WMTS::Zoom &z = _zooms.at(_zoom);
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QRectF tileBounds, bounds;
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tileBounds = (z.limits().isNull()) ?
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QRectF(QPointF(0, 0), QSize(z.tile().width() * z.matrix().width(),
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z.tile().height() * z.matrix().height()))
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: QRectF(QPointF(z.limits().left() * z.tile().width(), z.limits().top()
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* z.tile().height()), QSize(z.tile().width() * z.limits().width(),
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z.tile().height() * z.limits().height()));
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if (_bounds.isValid())
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bounds = QRectF(_transform.proj2img(_bounds.topLeft())
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/ coordinatesRatio(), _transform.proj2img(_bounds.bottomRight())
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/ coordinatesRatio());
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return bounds.isValid() ? tileBounds.intersected(bounds) : tileBounds;
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}
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int WMTSMap::zoomFit(const QSize &size, const RectC &rect)
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{
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if (rect.isValid()) {
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RectD prect(rect, _projection);
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PointD sc(prect.width() / size.width(), prect.height() / size.height());
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double resolution = qMax(qAbs(sc.x()), qAbs(sc.y()));
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if (_projection.isGeographic())
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resolution *= deg2rad(WGS84_RADIUS);
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_zoom = 0;
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for (int i = 0; i < _zooms.size(); i++) {
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if (sd2res(_zooms.at(i).scaleDenominator()) < resolution
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/ coordinatesRatio())
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break;
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_zoom = i;
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}
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} else
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_zoom = _zooms.size() - 1;
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updateTransform();
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return _zoom;
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}
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void WMTSMap::setZoom(int zoom)
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{
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_zoom = zoom;
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updateTransform();
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}
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int WMTSMap::zoomIn()
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{
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_zoom = qMin(_zoom + 1, _zooms.size() - 1);
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updateTransform();
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return _zoom;
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}
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int WMTSMap::zoomOut()
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{
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_zoom = qMax(_zoom - 1, 0);
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updateTransform();
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return _zoom;
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}
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qreal WMTSMap::coordinatesRatio() const
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{
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return _mapRatio > 1.0 ? _mapRatio / _tileRatio : 1.0;
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}
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qreal WMTSMap::imageRatio() const
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{
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return _mapRatio > 1.0 ? _mapRatio : _tileRatio;
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}
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QSizeF WMTSMap::tileSize(const WMTS::Zoom &zoom) const
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{
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return QSizeF(zoom.tile().width() / coordinatesRatio(),
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zoom.tile().height() / coordinatesRatio());
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}
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void WMTSMap::draw(QPainter *painter, const QRectF &rect, Flags flags)
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{
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const WMTS::Zoom &z = _zooms.at(_zoom);
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QSizeF ts(tileSize(z));
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QPoint tl = QPoint(qFloor(rect.left() / ts.width()),
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qFloor(rect.top() / ts.height()));
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QPoint br = QPoint(qCeil(rect.right() / ts.width()),
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qCeil(rect.bottom() / ts.height()));
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QVector<Tile> tiles;
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tiles.reserve((br.x() - tl.x()) * (br.y() - tl.y()));
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for (int i = tl.x(); i < br.x(); i++)
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for (int j = tl.y(); j < br.y(); j++)
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tiles.append(Tile(QPoint(i, j), z.id()));
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if (flags & Map::Block)
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_tileLoader->loadTilesSync(tiles);
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else
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_tileLoader->loadTilesAsync(tiles);
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for (int i = 0; i < tiles.count(); i++) {
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Tile &t = tiles[i];
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QPointF tp(t.xy().x() * ts.width(), t.xy().y() * ts.height());
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if (!t.pixmap().isNull()) {
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#ifdef ENABLE_HIDPI
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t.pixmap().setDevicePixelRatio(imageRatio());
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#endif // ENABLE_HIDPI
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painter->drawPixmap(tp, t.pixmap());
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}
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}
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}
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QPointF WMTSMap::ll2xy(const Coordinates &c)
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{
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return _transform.proj2img(_projection.ll2xy(c)) / coordinatesRatio();
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}
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Coordinates WMTSMap::xy2ll(const QPointF &p)
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{
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return _projection.xy2ll(_transform.img2proj(p * coordinatesRatio()));
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}
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