satdump/src-core/common/map/map_drawer.cpp
2021-10-08 00:25:37 +02:00

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No EOL
14 KiB
C++

#include "map_drawer.h"
#include "nlohmann/json.hpp"
#include <fstream>
#include "shapefile.h"
namespace map
{
template <typename T>
void drawProjectedMapGeoJson(std::vector<std::string> shapeFiles, cimg_library::CImg<T> &map_image, T color[3], std::function<std::pair<int, int>(float, float, int, int)> projectionFunc)
{
for (std::string currentShapeFile : shapeFiles)
{
nlohmann::json shapeFile;
{
std::ifstream istream(currentShapeFile);
istream >> shapeFile;
istream.close();
}
for (const nlohmann::json &mapStruct : shapeFile.at("features"))
{
if (mapStruct["type"] != "Feature")
continue;
std::string geometryType = mapStruct["geometry"]["type"];
if (geometryType == "Polygon")
{
std::vector<std::vector<std::pair<float, float>>> all_coordinates = mapStruct["geometry"]["coordinates"].get<std::vector<std::vector<std::pair<float, float>>>>();
for (std::vector<std::pair<float, float>> coordinates : all_coordinates)
{
for (int i = 0; i < (int)coordinates.size() - 1; i++)
{
std::pair<float, float> start = projectionFunc(coordinates[i].second, coordinates[i].first,
map_image.height(), map_image.width());
std::pair<float, float> end = projectionFunc(coordinates[i + 1].second, coordinates[i + 1].first,
map_image.height(), map_image.width());
if (start.first == -1 || end.first == -1)
continue;
map_image.draw_line(start.first, start.second, end.first, end.second, color);
}
{
std::pair<float, float> start = projectionFunc(coordinates[0].second, coordinates[0].first,
map_image.height(), map_image.width());
std::pair<float, float> end = projectionFunc(coordinates[coordinates.size() - 1].second, coordinates[coordinates.size() - 1].first,
map_image.height(), map_image.width());
if (start.first == -1 || end.first == -1)
continue;
map_image.draw_line(start.first, start.second, end.first, end.second, color);
}
}
}
else if (geometryType == "MultiPolygon")
{
std::vector<std::vector<std::vector<std::pair<float, float>>>> all_all_coordinates = mapStruct["geometry"]["coordinates"].get<std::vector<std::vector<std::vector<std::pair<float, float>>>>>();
for (std::vector<std::vector<std::pair<float, float>>> all_coordinates : all_all_coordinates)
{
for (std::vector<std::pair<float, float>> coordinates : all_coordinates)
{
for (int i = 0; i < (int)coordinates.size() - 1; i++)
{
std::pair<float, float> start = projectionFunc(coordinates[i].second, coordinates[i].first,
map_image.height(), map_image.width());
std::pair<float, float> end = projectionFunc(coordinates[i + 1].second, coordinates[i + 1].first,
map_image.height(), map_image.width());
if (start.first == -1 || end.first == -1)
continue;
map_image.draw_line(start.first, start.second, end.first, end.second, color);
}
{
std::pair<float, float> start = projectionFunc(coordinates[0].second, coordinates[0].first,
map_image.height(), map_image.width());
std::pair<float, float> end = projectionFunc(coordinates[coordinates.size() - 1].second, coordinates[coordinates.size() - 1].first,
map_image.height(),
map_image.width());
if (start.first == -1 || end.first == -1)
continue;
map_image.draw_line(start.first, start.second, end.first, end.second, color);
}
}
}
}
else if (geometryType == "LineString")
{
std::vector<std::pair<float, float>> coordinates = mapStruct["geometry"]["coordinates"].get<std::vector<std::pair<float, float>>>();
for (int i = 0; i < (int)coordinates.size() - 1; i++)
{
std::pair<float, float> start = projectionFunc(coordinates[i].second, coordinates[i].first,
map_image.height(), map_image.width());
std::pair<float, float> end = projectionFunc(coordinates[i + 1].second, coordinates[i + 1].first,
map_image.height(), map_image.width());
if (start.first == -1 || end.first == -1)
continue;
map_image.draw_line(start.first, start.second, end.first, end.second, color);
}
{
std::pair<float, float> start = projectionFunc(coordinates[0].second, coordinates[0].first,
map_image.height(), map_image.width());
std::pair<float, float> end = projectionFunc(coordinates[coordinates.size() - 1].second, coordinates[coordinates.size() - 1].first,
map_image.height(), map_image.width());
if (start.first == -1 || end.first == -1)
continue;
map_image.draw_line(start.first, start.second, end.first, end.second, color);
}
}
else if (geometryType == "Point")
{
std::pair<float, float> coordinates = mapStruct["geometry"]["coordinates"].get<std::pair<float, float>>();
std::pair<float, float> cc = projectionFunc(coordinates.second, coordinates.first,
map_image.height(), map_image.width());
if (cc.first == -1 || cc.first == -1)
continue;
map_image.draw_point(cc.first, cc.second, color);
}
}
}
}
template void drawProjectedMapGeoJson(std::vector<std::string>, cimg_library::CImg<unsigned char> &, unsigned char[3], std::function<std::pair<int, int>(float, float, int, int)>);
template void drawProjectedMapGeoJson(std::vector<std::string>, cimg_library::CImg<unsigned short> &, unsigned short[3], std::function<std::pair<int, int>(float, float, int, int)>);
template <typename T>
void drawProjectedCapitalsGeoJson(std::vector<std::string> shapeFiles, cimg_library::CImg<T> &map_image, T color[3], std::function<std::pair<int, int>(float, float, int, int)> projectionFunc, float ratio)
{
for (std::string currentShapeFile : shapeFiles)
{
nlohmann::json shapeFile;
{
std::ifstream istream(currentShapeFile);
istream >> shapeFile;
istream.close();
}
for (const nlohmann::json &mapStruct : shapeFile.at("features"))
{
if (mapStruct["type"] != "Feature")
continue;
std::string geometryType = mapStruct["geometry"]["type"];
if (geometryType == "Point")
{
if (mapStruct["properties"]["featurecla"].get<std::string>() == "Admin-0 capital")
{
std::pair<float, float> coordinates = mapStruct["geometry"]["coordinates"].get<std::pair<float, float>>();
std::pair<float, float> cc = projectionFunc(coordinates.second, coordinates.first,
map_image.height(), map_image.width());
if (cc.first == -1 || cc.first == -1)
continue;
map_image.draw_line(cc.first - 20 * ratio, cc.second - 20 * ratio, cc.first + 20 * ratio, cc.second + 20 * ratio, color);
map_image.draw_line(cc.first + 20 * ratio, cc.second - 20 * ratio, cc.first - 20 * ratio, cc.second + 20 * ratio, color);
map_image.draw_circle(cc.first, cc.second, 10 * ratio, color);
std::string name = mapStruct["properties"]["nameascii"];
cimg_library::CImgList<unsigned char> font = cimg_library::CImgList<unsigned char>::font(50 * ratio, true);
map_image.draw_text(cc.first, cc.second + 30 * ratio, name.c_str(), color, 0, 1, font);
}
}
}
}
}
template void drawProjectedCapitalsGeoJson(std::vector<std::string>, cimg_library::CImg<unsigned char> &, unsigned char[3], std::function<std::pair<int, int>(float, float, int, int)>, float);
template void drawProjectedCapitalsGeoJson(std::vector<std::string>, cimg_library::CImg<unsigned short> &, unsigned short[3], std::function<std::pair<int, int>(float, float, int, int)>, float);
template <typename T>
void drawProjectedMapShapefile(std::vector<std::string> shapeFiles, cimg_library::CImg<T> &map_image, T color[3], std::function<std::pair<int, int>(float, float, int, int)> projectionFunc)
{
for (std::string currentShapeFile : shapeFiles)
{
std::ifstream inputFile(currentShapeFile, std::ios::binary);
shapefile::Shapefile shape_file(inputFile);
std::function<void(std::vector<std::vector<shapefile::point_t>>)> polylineDraw = [color, &map_image, &projectionFunc](std::vector<std::vector<shapefile::point_t>> parts)
{
for (std::vector<shapefile::point_t> coordinates : parts)
{
for (int i = 0; i < (int)coordinates.size() - 1; i++)
{
std::pair<float, float> start = projectionFunc(coordinates[i].y, coordinates[i].x,
map_image.height(), map_image.width());
std::pair<float, float> end = projectionFunc(coordinates[i + 1].y, coordinates[i + 1].x,
map_image.height(), map_image.width());
if (start.first == -1 || end.first == -1)
return;
map_image.draw_line(start.first, start.second, end.first, end.second, color);
}
{
std::pair<float, float> start = projectionFunc(coordinates[0].y, coordinates[0].x,
map_image.height(), map_image.width());
std::pair<float, float> end = projectionFunc(coordinates[coordinates.size() - 1].y, coordinates[coordinates.size() - 1].x,
map_image.height(), map_image.width());
if (start.first == -1 || end.first == -1)
return;
map_image.draw_line(start.first, start.second, end.first, end.second, color);
}
}
};
std::function<void(shapefile::point_t)> pointDraw = [color, &map_image, &projectionFunc](shapefile::point_t coordinates)
{
std::pair<float, float> cc = projectionFunc(coordinates.y, coordinates.x,
map_image.height(), map_image.width());
if (cc.first == -1 || cc.first == -1)
return;
map_image.draw_point(cc.first, cc.second, color);
};
for (shapefile::PolyLineRecord polylineRecord : shape_file.polyline_records)
polylineDraw(polylineRecord.parts_points);
for (shapefile::PolygonRecord polygonRecord : shape_file.polygon_records)
polylineDraw(polygonRecord.parts_points);
for (shapefile::PointRecord pointRecord : shape_file.point_records)
pointDraw(pointRecord.point);
for (shapefile::MultiPointRecord multipointRecord : shape_file.multipoint_records)
for (shapefile::point_t p : multipointRecord.points)
pointDraw(p);
}
}
template void drawProjectedMapShapefile(std::vector<std::string>, cimg_library::CImg<unsigned char> &, unsigned char[3], std::function<std::pair<int, int>(float, float, int, int)>);
template void drawProjectedMapShapefile(std::vector<std::string>, cimg_library::CImg<unsigned short> &, unsigned short[3], std::function<std::pair<int, int>(float, float, int, int)>);
}