png export recovered
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1c4574d42e
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@ -260,124 +260,111 @@ void PrintController::slice()
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void PrintController::slice_to_png()
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{
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std::vector<ExPolygons> ground_layers;
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ground_layers.reserve(print_->objects.size());
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for(auto o : print_->objects) {
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ModelObject *mo = o->model_object();
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ground_layers.emplace_back();
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sla::ground_layer(mo->mesh(), ground_layers.back());
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using Pointf3 = Vec3d;
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auto exd = query_png_export_data();
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if(exd.zippath.empty()) return;
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auto presetbundle = GUI::get_preset_bundle();
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assert(presetbundle);
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auto conf = presetbundle->full_config();
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conf.validate();
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try {
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print_->apply_config(conf);
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print_->validate();
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} catch(std::exception& e) {
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report_issue(IssueType::ERR, e.what(), "Error");
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return;
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}
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for(auto& lyr : ground_layers) {
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TriangleMesh mesh;
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sla::create_base_pool(lyr, mesh);
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mesh.write_ascii("out.stl");
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// TODO: copy the model and work with the copy only
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bool correction = false;
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if(exd.corr_x != 1.0 || exd.corr_y != 1.0 || exd.corr_z != 1.0) {
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correction = true;
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print_->invalidate_all_steps();
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for(auto po : print_->objects) {
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po->model_object()->scale(
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Pointf3(exd.corr_x, exd.corr_y, exd.corr_z)
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);
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po->model_object()->invalidate_bounding_box();
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po->reload_model_instances();
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po->invalidate_all_steps();
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}
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}
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// Turn back the correction scaling on the model.
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auto scale_back = [this, correction, exd]() {
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if(correction) { // scale the model back
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print_->invalidate_all_steps();
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for(auto po : print_->objects) {
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po->model_object()->scale(
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Pointf3(1.0/exd.corr_x, 1.0/exd.corr_y, 1.0/exd.corr_z)
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);
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po->model_object()->invalidate_bounding_box();
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po->reload_model_instances();
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po->invalidate_all_steps();
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}
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}
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};
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// auto exd = query_png_export_data();
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auto print_bb = print_->bounding_box();
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Vec2d punsc = unscale(print_bb.size());
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// if(exd.zippath.empty()) return;
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// If the print does not fit into the print area we should cry about it.
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if(px(punsc) > exd.width_mm || py(punsc) > exd.height_mm) {
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std::stringstream ss;
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// auto presetbundle = GUI::get_preset_bundle();
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ss << _(L("Print will not fit and will be truncated!")) << "\n"
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<< _(L("Width needed: ")) << px(punsc) << " mm\n"
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<< _(L("Height needed: ")) << py(punsc) << " mm\n";
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// assert(presetbundle);
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if(!report_issue(IssueType::WARN_Q, ss.str(), _(L("Warning")))) {
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scale_back();
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return;
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}
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}
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// auto conf = presetbundle->full_config();
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// std::async(supports_asynch()? std::launch::async : std::launch::deferred,
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// [this, exd, scale_back]()
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// {
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// conf.validate();
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auto pri = create_progress_indicator(
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200, _(L("Slicing to zipped png files...")));
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// try {
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// print_->apply_config(conf);
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// print_->validate();
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// } catch(std::exception& e) {
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// report_issue(IssueType::ERR, e.what(), "Error");
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// return;
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// }
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try {
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pri->update(0, _(L("Slicing...")));
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slice(pri);
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} catch (std::exception& e) {
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pri->cancel();
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report_issue(IssueType::ERR, e.what(), _(L("Exception occured")));
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scale_back();
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return;
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}
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// // TODO: copy the model and work with the copy only
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// bool correction = false;
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// if(exd.corr_x != 1.0 || exd.corr_y != 1.0 || exd.corr_z != 1.0) {
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// correction = true;
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// print_->invalidate_all_steps();
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auto pbak = print_->progressindicator;
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print_->progressindicator = pri;
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// for(auto po : print_->objects) {
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// po->model_object()->scale(
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// Pointf3(exd.corr_x, exd.corr_y, exd.corr_z)
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// );
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// po->model_object()->invalidate_bounding_box();
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// po->reload_model_instances();
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// po->invalidate_all_steps();
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// }
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// }
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try {
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print_to<FilePrinterFormat::PNG>( *print_, exd.zippath,
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exd.width_mm, exd.height_mm,
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exd.width_px, exd.height_px,
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exd.exp_time_s, exd.exp_time_first_s);
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// // Turn back the correction scaling on the model.
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// auto scale_back = [this, correction, exd]() {
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// if(correction) { // scale the model back
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// print_->invalidate_all_steps();
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// for(auto po : print_->objects) {
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// po->model_object()->scale(
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// Pointf3(1.0/exd.corr_x, 1.0/exd.corr_y, 1.0/exd.corr_z)
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// );
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// po->model_object()->invalidate_bounding_box();
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// po->reload_model_instances();
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// po->invalidate_all_steps();
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// }
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// }
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// };
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} catch (std::exception& e) {
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pri->cancel();
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report_issue(IssueType::ERR, e.what(), _(L("Exception occured")));
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}
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// auto print_bb = print_->bounding_box();
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print_->progressindicator = pbak;
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scale_back();
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// // If the print does not fit into the print area we should cry about it.
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// if(unscale(print_bb.size().x) > exd.width_mm ||
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// unscale(print_bb.size().y) > exd.height_mm) {
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// std::stringstream ss;
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// ss << _(L("Print will not fit and will be truncated!")) << "\n"
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// << _(L("Width needed: ")) << unscale(print_bb.size().x) << " mm\n"
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// << _(L("Height needed: ")) << unscale(print_bb.size().y) << " mm\n";
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// if(!report_issue(IssueType::WARN_Q, ss.str(), _(L("Warning")))) {
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// scale_back();
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// return;
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// }
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// }
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//// std::async(supports_asynch()? std::launch::async : std::launch::deferred,
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//// [this, exd, scale_back]()
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//// {
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// auto pri = create_progress_indicator(
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// 200, _(L("Slicing to zipped png files...")));
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// try {
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// pri->update(0, _(L("Slicing...")));
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// slice(pri);
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// } catch (std::exception& e) {
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// pri->cancel();
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// report_issue(IssueType::ERR, e.what(), _(L("Exception occured")));
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// scale_back();
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// return;
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// }
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// auto pbak = print_->progressindicator;
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// print_->progressindicator = pri;
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// try {
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// print_to<FilePrinterFormat::PNG>( *print_, exd.zippath,
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// exd.width_mm, exd.height_mm,
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// exd.width_px, exd.height_px,
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// exd.exp_time_s, exd.exp_time_first_s);
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// } catch (std::exception& e) {
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// pri->cancel();
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// report_issue(IssueType::ERR, e.what(), _(L("Exception occured")));
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// }
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// print_->progressindicator = pbak;
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// scale_back();
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//// });
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// });
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}
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void IProgressIndicator::message_fmt(
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