qt5base-lts/examples/embedded/lightmaps/slippymap.cpp
Edward Welbourne 8095c33bcd Use qRadiansToDegrees() and qDegreesToRadians() more widely
Especially in examples, where we should show off our convenience
functions, prefer calling these functions over doing arithmetic with
M_PI (or approximations thereto) and 180 (give or take simple
factors).  This incidentally documents what's going on, just by the
name of the function used (and reveals at least one place where
variables were misnamed; the return from atan is in radians, *not*
degrees).

Task-number: QTBUG-58083
Change-Id: I6e5d66721cafab423378f970af525400423e971e
Reviewed-by: Jüri Valdmann <juri.valdmann@qt.io>
Reviewed-by: Allan Sandfeld Jensen <allan.jensen@qt.io>
Reviewed-by: Marc Mutz <marc.mutz@kdab.com>
2017-07-05 10:15:34 +00:00

216 lines
7.1 KiB
C++

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#include <QtWidgets>
#include <QtNetwork>
#include "slippymap.h"
#include "qmath.h"
uint qHash(const QPoint& p)
{
return p.x() * 17 ^ p.y();
}
// tile size in pixels
const int tdim = 256;
QPointF tileForCoordinate(qreal lat, qreal lng, int zoom)
{
qreal radianLat = qDegreesToRadians(lat);
qreal zn = static_cast<qreal>(1 << zoom);
qreal tx = (lng + 180.0) / 360.0;
qreal ty = 0.5 - log(tan(radianLat) + 1.0 / cos(radianLat)) / M_PI / 2.0;
return QPointF(tx * zn, ty * zn);
}
qreal longitudeFromTile(qreal tx, int zoom)
{
qreal zn = static_cast<qreal>(1 << zoom);
qreal lat = tx / zn * 360.0 - 180.0;
return lat;
}
qreal latitudeFromTile(qreal ty, int zoom)
{
qreal zn = static_cast<qreal>(1 << zoom);
qreal n = M_PI - 2 * M_PI * ty / zn;
return qRadiansToDegrees(atan(0.5 * (exp(n) - exp(-n))));
}
SlippyMap::SlippyMap(QObject *parent)
: QObject(parent), width(400), height(300), zoom(15),
latitude(59.9138204), longitude(10.7387413)
{
m_emptyTile = QPixmap(tdim, tdim);
m_emptyTile.fill(Qt::lightGray);
QNetworkDiskCache *cache = new QNetworkDiskCache;
cache->setCacheDirectory(QStandardPaths::writableLocation(QStandardPaths::CacheLocation));
m_manager.setCache(cache);
connect(&m_manager, SIGNAL(finished(QNetworkReply*)),
this, SLOT(handleNetworkData(QNetworkReply*)));
}
void SlippyMap::invalidate()
{
if (width <= 0 || height <= 0)
return;
QPointF ct = tileForCoordinate(latitude, longitude, zoom);
qreal tx = ct.x();
qreal ty = ct.y();
// top-left corner of the center tile
int xp = width / 2 - (tx - floor(tx)) * tdim;
int yp = height / 2 - (ty - floor(ty)) * tdim;
// first tile vertical and horizontal
int xa = (xp + tdim - 1) / tdim;
int ya = (yp + tdim - 1) / tdim;
int xs = static_cast<int>(tx) - xa;
int ys = static_cast<int>(ty) - ya;
// offset for top-left tile
m_offset = QPoint(xp - xa * tdim, yp - ya * tdim);
// last tile vertical and horizontal
int xe = static_cast<int>(tx) + (width - xp - 1) / tdim;
int ye = static_cast<int>(ty) + (height - yp - 1) / tdim;
// build a rect
m_tilesRect = QRect(xs, ys, xe - xs + 1, ye - ys + 1);
if (m_url.isEmpty())
download();
emit updated(QRect(0, 0, width, height));
}
void SlippyMap::render(QPainter *p, const QRect &rect)
{
for (int x = 0; x <= m_tilesRect.width(); ++x)
for (int y = 0; y <= m_tilesRect.height(); ++y) {
QPoint tp(x + m_tilesRect.left(), y + m_tilesRect.top());
QRect box = tileRect(tp);
if (rect.intersects(box)) {
if (m_tilePixmaps.contains(tp))
p->drawPixmap(box, m_tilePixmaps.value(tp));
else
p->drawPixmap(box, m_emptyTile);
}
}
}
void SlippyMap::pan(const QPoint &delta)
{
QPointF dx = QPointF(delta) / qreal(tdim);
QPointF center = tileForCoordinate(latitude, longitude, zoom) - dx;
latitude = latitudeFromTile(center.y(), zoom);
longitude = longitudeFromTile(center.x(), zoom);
invalidate();
}
void SlippyMap::handleNetworkData(QNetworkReply *reply)
{
QImage img;
QPoint tp = reply->request().attribute(QNetworkRequest::User).toPoint();
QUrl url = reply->url();
if (!reply->error())
if (!img.load(reply, 0))
img = QImage();
reply->deleteLater();
m_tilePixmaps[tp] = QPixmap::fromImage(img);
if (img.isNull())
m_tilePixmaps[tp] = m_emptyTile;
emit updated(tileRect(tp));
// purge unused spaces
QRect bound = m_tilesRect.adjusted(-2, -2, 2, 2);
foreach(QPoint tp, m_tilePixmaps.keys())
if (!bound.contains(tp))
m_tilePixmaps.remove(tp);
download();
}
void SlippyMap::download()
{
QPoint grab(0, 0);
for (int x = 0; x <= m_tilesRect.width(); ++x)
for (int y = 0; y <= m_tilesRect.height(); ++y) {
QPoint tp = m_tilesRect.topLeft() + QPoint(x, y);
if (!m_tilePixmaps.contains(tp)) {
grab = tp;
break;
}
}
if (grab == QPoint(0, 0)) {
m_url = QUrl();
return;
}
QString path = "http://tile.openstreetmap.org/%1/%2/%3.png";
m_url = QUrl(path.arg(zoom).arg(grab.x()).arg(grab.y()));
QNetworkRequest request;
request.setUrl(m_url);
request.setRawHeader("User-Agent", "The Qt Company (Qt) Graphics Dojo 1.0");
request.setAttribute(QNetworkRequest::User, QVariant(grab));
m_manager.get(request);
}
QRect SlippyMap::tileRect(const QPoint &tp)
{
QPoint t = tp - m_tilesRect.topLeft();
int x = t.x() * tdim + m_offset.x();
int y = t.y() * tdim + m_offset.y();
return QRect(x, y, tdim, tdim);
}