mirror of
https://github.com/SatDump/SatDump
synced 2026-08-13 17:47:30 -04:00
154 lines
No EOL
5.6 KiB
C++
154 lines
No EOL
5.6 KiB
C++
int main(int /*argc*/, char *argv[]) {}
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#if 0
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#include "common/geodetic/vincentys_calculations.h"
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#include "image/io.h"
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#include "common/map/map_drawer.h"
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#include "common/projection/gcp_compute/gcp_compute.h"
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#include "common/projection/projs/equirectangular.h"
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#include "common/projection/warp/warp.h"
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#include "common/utils.h"
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#include "core/config.h"
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#include "init.h"
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#include "logger.h"
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#include "nlohmann/json_utils.h"
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#include "products/image_products.h"
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#include "core/resources.h"
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#include "common/projection/warp/warp_bkd.h"
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geodetic::geodetic_coords_t calculate_center_of_points(std::vector<geodetic::geodetic_coords_t> points)
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{
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double x_total = 0;
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double y_total = 0;
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double z_total = 0;
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for (auto &pt : points)
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{
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pt.toRads();
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x_total += cos(pt.lat) * cos(pt.lon);
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y_total += cos(pt.lat) * sin(pt.lon);
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z_total += sin(pt.lat);
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}
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x_total /= points.size();
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y_total /= points.size();
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z_total /= points.size();
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double lon = atan2(y_total, x_total);
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double hyp = sqrt(x_total * x_total + y_total * y_total);
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double lat = atan2(z_total, hyp);
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return geodetic::geodetic_coords_t(lat, lon, 0, true).toDegs();
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}
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int main(int /*argc*/, char *argv[])
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{
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initLogger();
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// std::string user_path = std::string(getenv("HOME")) + "/.config/satdump";
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// satdump::config::loadConfig("satdump_cfg.json", user_path);
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// initFileSink();
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// We don't wanna spam with init this time around
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logger->set_level(slog::LOG_OFF);
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satdump::initSatDump();
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completeLoggerInit();
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logger->set_level(slog::LOG_TRACE);
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satdump::ImageProducts img_pro;
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img_pro.load(argv[1]);
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printf("\n%s\n", img_pro.contents.dump(4).c_str());
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satdump::ImageCompositeCfg rgb_cfg;
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rgb_cfg.expression = "ch3,ch2,ch1"; //"(ch7421+ch7422+ch7423+ch7242)/4";
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// rgb_cfg.expression = "1-ch37";
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// rgb_cfg.expression = "1-ch33,1-ch34,1-ch35"; //"(ch3 * 0.4 + ch2 * 0.6) * 2.2 - 0.15, ch2 * 2.2 - 0.15, ch1 * 2.2 - 0.15";
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rgb_cfg.equalize = true;
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// rgb_cfg.white_balance = true;
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// rgb_cfg.normalize = true;
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// rgb_cfg.apply_lut = true;
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// img_pro.images[0].image.equalize();
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// img_pro.images[0].image.to_rgb();
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// filter_timestamps_simple(img_pro.get_timestamps(0), 1e4, 10));
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satdump::warp::WarpOperation operation_t;
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std::vector<double> final_tt;
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nlohmann::json final_mtd;
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image::Image input_image = satdump::make_composite_from_product(img_pro, rgb_cfg, nullptr, &final_tt, &final_mtd);
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input_image = input_image.to16bits();
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operation_t.input_image = &input_image;
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// operation_t.input_image.median_blur();
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nlohmann::json proj_cfg = img_pro.get_proj_cfg(); // loadJsonFile(argv[2]);
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proj_cfg["metadata"] = final_mtd;
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proj_cfg["metadata"]["tle"] = img_pro.get_tle();
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proj_cfg["metadata"]["timestamps"] = final_tt;
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printf("%s\n", final_mtd.dump(4).c_str());
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operation_t.ground_control_points = satdump::gcp_compute::compute_gcps(proj_cfg,
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operation_t.input_image->width(),
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operation_t.input_image->height());
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operation_t.output_width = 2048 * 2; // 10;
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operation_t.output_height = 1024 * 2; // 10;
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operation_t.output_rgba = true;
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#if 0
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auto warp_result = satdump::warp::performSmartWarp(operation_t);
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#else
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satdump::warp::ImageWarper warper;
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warper.op = operation_t;
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warper.update();
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auto warp_result = warper.warp();
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#endif
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logger->info("Wrapped!");
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geodetic::projection::EquirectangularProjection projector_final;
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projector_final.init(warp_result.output_image.width(), warp_result.output_image.height(), warp_result.top_left.lon, warp_result.top_left.lat, warp_result.bottom_right.lon, warp_result.bottom_right.lat);
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logger->info("Map overlay!");
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std::vector<double> color = {0, 1, 0, 1};
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map::drawProjectedMapShapefile({resources::getResourcePath("maps/ne_10m_admin_0_countries.shp")},
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warp_result.output_image,
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color,
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[&projector_final](float lat, float lon, int, int) -> std::pair<int, int>
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{
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int x, y;
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projector_final.forward(lon, lat, x, y);
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return {x, y};
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});
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{
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std::vector<double> color = {1, 1, 0, 1};
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map::drawProjectedMapShapefile(
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{resources::getResourcePath("maps/ne_10m_admin_0_countries.shp")},
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warp_result.output_image,
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color,
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[&projector_final](float lat, float lon, int, int) -> std::pair<int, int>
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{
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int x, y;
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projector_final.forward(lon, lat, x, y);
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return {x, y};
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});
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}
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#if 1
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{
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std::vector<double> color = {0, 0, 1, 1};
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map::drawProjectedMapLatLonGrid(warp_result.output_image,
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color,
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[&projector_final](float lat, float lon, int, int) -> std::pair<int, int>
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{
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int x, y;
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projector_final.forward(lon, lat, x, y);
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return {x, y};
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});
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}
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#endif
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image::save_img(warp_result.output_image, "test");
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satdump::exitSatDump();
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}
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#endif // TODOREWORK
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