mirror of
https://github.com/SatDump/SatDump
synced 2026-08-13 17:47:30 -04:00
223 lines
No EOL
8.4 KiB
C++
223 lines
No EOL
8.4 KiB
C++
#include "scatterometer_handler.h"
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#include "core/config.h"
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#include "resources.h"
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#include "common/projection/reprojector.h"
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#include "core/style.h"
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#include "common/map/map_drawer.h"
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namespace satdump
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{
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void ScatterometerViewerHandler::init()
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{
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products = (ScatterometerProducts *)ViewerHandler::products;
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if (products->get_scatterometer_type() == products->SCAT_TYPE_ASCAT)
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current_scat_type = SCAT_ASCAT;
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if (current_scat_type == SCAT_ASCAT)
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{
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select_channel_image_str += std::string("Channel 1 (Back Right)") + '\0';
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select_channel_image_str += std::string("Channel 2 (Down Left)") + '\0';
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select_channel_image_str += std::string("Channel 3 (Back Left)") + '\0';
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select_channel_image_str += std::string("Channel 4 (Front Right)") + '\0';
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select_channel_image_str += std::string("Channel 5 (Back Left)") + '\0';
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select_channel_image_str += std::string("Channel 6 (Front Left)") + '\0';
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ascat_select_channel_image_str += std::string("Back") + '\0';
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ascat_select_channel_image_str += std::string("Down") + '\0';
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ascat_select_channel_image_str += std::string("Front") + '\0';
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}
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else
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{
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for (int c = 0; c < (int)products->get_channel_cnt(); c++)
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select_channel_image_str += "Channel " + std::to_string(c + 1) + '\0';
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}
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update();
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}
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void ScatterometerViewerHandler::update()
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{
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if (selected_visualization_id == 0)
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{
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GrayScaleScatCfg cfg;
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cfg.channel = select_channel_image_id;
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cfg.min = scat_grayscale_min;
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cfg.max = scat_grayscale_max;
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auto img = make_scatterometer_grayscale(*products, cfg);
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image_view.update(img);
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}
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else if (selected_visualization_id == 1)
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{
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GrayScaleScatCfg cfg;
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if (current_scat_type == SCAT_ASCAT)
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cfg.channel = ascat_select_channel_id;
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else
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cfg.channel = select_channel_image_id;
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cfg.min = scat_grayscale_min;
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cfg.max = scat_grayscale_max;
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current_image_proj.clear();
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current_img = make_scatterometer_grayscale_projs(*products, cfg, nullptr, ¤t_image_proj);
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if (map_overlay)
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{
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auto proj_func = satdump::reprojection::setupProjectionFunction(current_img.width(), current_img.height(), current_image_proj);
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logger->info("Drawing map overlay...");
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unsigned short color[3] = {(unsigned short)(color_borders.x * 65535.0f), (unsigned short)(color_borders.y * 65535.0f), (unsigned short)(color_borders.z * 65535.0f)};
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map::drawProjectedMapShapefile({resources::getResourcePath("maps/ne_10m_admin_0_countries.shp")},
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current_img,
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color,
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proj_func);
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}
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image_view.update(current_img);
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}
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}
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void ScatterometerViewerHandler::drawMenu()
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{
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if (ImGui::CollapsingHeader("Images"))
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{
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if (ImGui::RadioButton(u8"Raw Image", &selected_visualization_id, 0))
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update();
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if (ImGui::RadioButton(u8"Projected", &selected_visualization_id, 1))
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update();
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if (selected_visualization_id == 0 || selected_visualization_id == 1)
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{
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if (current_scat_type == SCAT_ASCAT && selected_visualization_id == 1)
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{
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if (ImGui::Combo("###scatchannelcomboid", &ascat_select_channel_id, ascat_select_channel_image_str.c_str()))
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update();
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}
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else
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{
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if (ImGui::Combo("###scatchannelcomboid", &select_channel_image_id, select_channel_image_str.c_str()))
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update();
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}
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ImGui::SetNextItemWidth(ImGui::GetWindowWidth() / 2);
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if (ImGui::SliderInt("##MinScat", &scat_grayscale_min, 0, 1e7, "Min: %d", ImGuiSliderFlags_AlwaysClamp))
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update();
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ImGui::SameLine();
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ImGui::SetNextItemWidth(ImGui::GetWindowWidth() / 2);
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if (ImGui::SliderInt("##MaxScat", &scat_grayscale_max, 0, 1e7, "Max: %d", ImGuiSliderFlags_AlwaysClamp))
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update();
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}
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if (ImGui::Button("Save"))
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{
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std::string ch_normal = std::to_string(select_channel_image_id);
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std::string ch_ascatp = std::to_string(ascat_select_channel_id);
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std::string default_name = products->instrument_name + "_" + ((selected_visualization_id == 1 && current_scat_type == SCAT_ASCAT) ? ch_ascatp : ch_normal) + ".png";
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#ifndef __ANDROID__
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auto result = pfd::save_file("Save Image", default_name, {"*.png"});
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while (!result.ready(1000))
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std::this_thread::sleep_for(std::chrono::milliseconds(1));
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if (result.result().size() > 0)
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{
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std::string path = result.result();
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logger->info("Saving current image at {:s}", path.c_str());
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current_img.save_img(path);
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}
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#else
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std::string path = "/storage/emulated/0/" + default_name;
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logger->info("Saving current image at {:s}", path.c_str());
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current_img.save_img("" + path);
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#endif
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}
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}
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if (ImGui::CollapsingHeader("Map Overlay"))
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{
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if (selected_visualization_id != 1)
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style::beginDisabled();
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if (ImGui::Checkbox("Borders", &map_overlay))
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update();
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ImGui::SameLine();
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ImGui::ColorEdit3("##borders", (float *)&color_borders, ImGuiColorEditFlags_NoInputs | ImGuiColorEditFlags_NoLabel);
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if (selected_visualization_id != 1)
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style::endDisabled();
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}
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if (ImGui::CollapsingHeader("Projection"))
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{
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ImGui::BeginGroup();
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if (!canBeProjected())
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style::beginDisabled();
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ImGui::Checkbox("Project", &should_project);
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if (!canBeProjected())
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style::endDisabled();
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ImGui::EndGroup();
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if (ImGui::IsItemHovered(ImGuiHoveredFlags_AllowWhenDisabled))
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{
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ImGui::BeginTooltip();
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if (selected_visualization_id != 1)
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ImGui::TextColored(ImColor(255, 0, 0), "Select projection view first!");
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ImGui::EndTooltip();
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}
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}
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}
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void ScatterometerViewerHandler::drawContents(ImVec2 win_size)
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{
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if (selected_visualization_id == 0 || selected_visualization_id == 1)
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{
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image_view.draw(win_size);
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}
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}
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float ScatterometerViewerHandler::drawTreeMenu()
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{
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return 0;
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}
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bool ScatterometerViewerHandler::canBeProjected()
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{
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return products->has_proj_cfg() &&
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products->has_tle() &&
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products->has_proj_cfg() &&
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products->has_timestamps &&
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selected_visualization_id == 1;
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}
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bool ScatterometerViewerHandler::hasProjection()
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{
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return projection_ready && should_project;
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}
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bool ScatterometerViewerHandler::shouldProject()
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{
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return should_project;
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}
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void ScatterometerViewerHandler::updateProjection(int width, int height, nlohmann::json settings, float *progess)
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{
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if (canBeProjected())
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{
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reprojection::ReprojectionOperation op;
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op.source_prj_info = current_image_proj;
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op.target_prj_info = settings;
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op.img = current_img;
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op.output_width = width;
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op.output_height = height;
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// op.use_draw_algorithm = use_draw_proj_algo;
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// op.img_tle = products->get_tle();
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// op.img_tim = current_timestamps;
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reprojection::ProjectionResult res = reprojection::reproject(op, progess);
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projected_img = res.img;
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projection_ready = true;
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}
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else
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{
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logger->error("Current image can't be projected!");
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}
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}
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image::Image<uint16_t> &ScatterometerViewerHandler::getProjection()
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{
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return projected_img;
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}
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} |