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GPXSee/src/map/jnxmap.cpp

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#include <QtEndian>
#include <QPainter>
#include <QFileInfo>
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#include <QPixmapCache>
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#include "common/util.h"
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#include "rectd.h"
#include "gcs.h"
#include "pcs.h"
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#include "jnxmap.h"
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#define ic2dc(x) ((x) * 180.0 / 0x7FFFFFFF)
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template<class T> bool JNXMap::readValue(T &val)
{
T data;
if (_file.read((char*)&data, sizeof(T)) < (qint64)sizeof(T))
return false;
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val = qFromLittleEndian(data);
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return true;
}
bool JNXMap::readString(QByteArray& ba)
{
char byte;
while (true) {
if (!_file.getChar(&byte))
return false;
else if (!byte)
return true;
else
ba += byte;
}
}
bool JNXMap::readHeader()
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{
qint32 lat1, lon2, lat2, lon1;
quint32 version, dummy, levels;
if (!(readValue(version) && readValue(dummy) && readValue(lat1)
&& readValue(lon2) && readValue(lat2) && readValue(lon1)
&& readValue(levels)))
return false;
if (version < 3 || version > 4)
return false;
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_bounds = RectC(Coordinates(ic2dc(lon1), ic2dc(lat1)),
Coordinates(ic2dc(lon2), ic2dc(lat2)));
if (!levels || levels > 32 || !_bounds.isValid())
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return false;
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if (!_file.seek(version > 3 ? 0x34 : 0x30))
return false;
QVector<Level> lh(levels);
for (int i = 0; i < lh.count(); i++) {
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Level &l = lh[i];
if (!(readValue(l.count) && readValue(l.offset) && readValue(l.scale)))
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return false;
if (version > 3) {
QByteArray ba;
if (!(readValue(dummy) && readString(ba)))
return false;
}
}
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_zooms.reserve(lh.size());
for (int i = 0; i < lh.count(); i++)
_zooms.append(new Zoom(lh.at(i)));
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return true;
}
bool JNXMap::readTiles()
{
for (int i = 0; i < _zooms.size(); i++) {
Zoom *z = _zooms[i];
if (!_file.seek(z->level.offset))
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return false;
z->tiles = QVector<Tile>(z->level.count);
for (quint32 j = 0; j < z->level.count; j++) {
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Tile &tile = z->tiles[j];
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if (!(readValue(tile.top) && readValue(tile.right)
&& readValue(tile.bottom) && readValue(tile.left)
&& readValue(tile.width) && readValue(tile.height)
&& readValue(tile.size) && readValue(tile.offset)))
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return false;
RectC llrect(Coordinates(ic2dc(tile.left), ic2dc(tile.top)),
Coordinates(ic2dc(tile.right), ic2dc(tile.bottom)));
RectD rect(_projection.ll2xy(llrect.topLeft()),
_projection.ll2xy(llrect.bottomRight()));
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if (j == 0) {
ReferencePoint tl(PointD(0, 0), rect.topLeft());
ReferencePoint br(PointD(tile.width, tile.height),
rect.bottomRight());
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z->transform = Transform(tl, br);
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}
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QRectF trect(z->transform.proj2img(rect.topLeft()),
z->transform.proj2img(rect.bottomRight()));
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tile.pos = trect.topLeft();
qreal min[2], max[2];
min[0] = trect.left();
min[1] = trect.top();
max[0] = trect.right();
max[1] = trect.bottom();
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z->tree.Insert(min, max, &tile);
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}
}
return true;
}
void JNXMap::clearTiles()
{
for (int i = 0; i < _zooms.size(); i++) {
Zoom *z = _zooms[i];
z->tiles.clear();
z->tree.RemoveAll();
}
}
JNXMap::JNXMap(const QString &fileName, QObject *parent)
: Map(fileName, parent), _file(fileName), _zoom(0), _mapRatio(1.0),
_valid(false)
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{
if (!_file.open(QIODevice::ReadOnly)) {
_errorString = _file.errorString();
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return;
}
if (!readHeader()) {
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_errorString = "JNX file format error";
return;
}
_file.close();
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_valid = true;
}
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JNXMap::~JNXMap()
{
qDeleteAll(_zooms);
}
void JNXMap::load(const Projection &in, const Projection &out,
qreal deviceRatio, bool hidpi)
{
Q_UNUSED(out);
_projection = in;
_mapRatio = hidpi ? deviceRatio : 1.0;
if (_file.open(QIODevice::ReadOnly))
readTiles();
}
void JNXMap::unload()
{
_file.close();
clearTiles();
}
QPointF JNXMap::ll2xy(const Coordinates &c)
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{
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const Zoom *z = _zooms.at(_zoom);
return z->transform.proj2img(_projection.ll2xy(c)) / _mapRatio;
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}
Coordinates JNXMap::xy2ll(const QPointF &p)
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{
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const Zoom *z = _zooms.at(_zoom);
return _projection.xy2ll(z->transform.img2proj(p * _mapRatio));
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}
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QRectF JNXMap::bounds()
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{
return QRectF(ll2xy(_bounds.topLeft()), ll2xy(_bounds.bottomRight()));
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}
int JNXMap::zoomFit(const QSize &size, const RectC &rect)
{
if (!rect.isValid())
_zoom = _zooms.size() - 1;
else {
for (int i = 1; i < _zooms.count(); i++) {
_zoom = i;
QRect sbr(QPoint(ll2xy(rect.topLeft()).toPoint()),
QPoint(ll2xy(rect.bottomRight()).toPoint()));
if (sbr.size().width() >= size.width() || sbr.size().height()
>= size.height()) {
_zoom--;
break;
}
}
}
return _zoom;
}
int JNXMap::zoomIn()
{
_zoom = qMin(_zoom + 1, _zooms.size() - 1);
return _zoom;
}
int JNXMap::zoomOut()
{
_zoom = qMax(_zoom - 1, 0);
return _zoom;
}
QPixmap JNXMap::pixmap(const Tile *tile, QFile *file)
{
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QPixmap pm;
QString key = file->fileName() + "-" + QString::number(tile->offset);
if (!QPixmapCache::find(key, &pm)) {
QByteArray ba;
ba.resize(tile->size + 2);
ba[0] = (char)0xFF;
ba[1] = (char)0xD8;
char *data = ba.data() + 2;
if (!file->seek(tile->offset))
return QPixmap();
if (!file->read(data, tile->size))
return QPixmap();
pm = QPixmap::fromImage(QImage::fromData(ba));
if (!pm.isNull())
QPixmapCache::insert(key, pm);
}
return pm;
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}
bool JNXMap::cb(Tile *tile, void *context)
{
Ctx *ctx = static_cast<Ctx*>(context);
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QPixmap pm(pixmap(tile, ctx->file));
pm.setDevicePixelRatio(ctx->ratio);
ctx->painter->drawPixmap(tile->pos / ctx->ratio, pm);
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return true;
}
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void JNXMap::draw(QPainter *painter, const QRectF &rect, Flags flags)
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{
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Q_UNUSED(flags);
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const RTree<Tile*, qreal, 2> &tree = _zooms.at(_zoom)->tree;
Ctx ctx(painter, &_file, _mapRatio);
QRectF rr(rect.topLeft() * _mapRatio, rect.size() * _mapRatio);
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qreal min[2], max[2];
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min[0] = rr.left();
min[1] = rr.top();
max[0] = rr.right();
max[1] = rr.bottom();
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tree.Search(min, max, cb, &ctx);
}
Map *JNXMap::create(const QString &path, bool *isDir)
{
if (isDir)
*isDir = false;
return new JNXMap(path);
}