Bugfixes after PrintRegion refactoring.
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@ -2090,31 +2090,50 @@ bool model_volume_list_changed(const ModelObject &model_object_old, const ModelO
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template< typename TypeFilterFn, typename CompareFn>
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bool model_property_changed(const ModelObject &model_object_old, const ModelObject &model_object_new, typename TypeFilterFn type_filter, typename CompareFn compare)
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{
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assert(! model_volume_list_changed(model_object_old, model_object_new, type_filter));
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size_t i_old, i_new;
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for (i_old = 0, i_new = 0; i_old < model_object_old.volumes.size() && i_new < model_object_new.volumes.size();) {
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const ModelVolume &mv_old = *model_object_old.volumes[i_old];
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const ModelVolume &mv_new = *model_object_new.volumes[i_new];
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if (! type_filter(mv_old.type())) {
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++ i_old;
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continue;
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}
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if (! type_filter(mv_new.type())) {
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++ i_new;
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continue;
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}
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assert(mv_old.type() == mv_new.type() && mv_old.id() == mv_new.id());
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if (! compare(mv_old, mv_new))
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return true;
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++ i_old;
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++ i_new;
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}
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return false;
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}
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bool model_custom_supports_data_changed(const ModelObject& mo, const ModelObject& mo_new)
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{
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assert(! model_volume_list_changed(mo, mo_new, ModelVolumeType::MODEL_PART));
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for (size_t i = 0; i < mo.volumes.size(); ++ i)
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if (! mo_new.volumes[i]->supported_facets.timestamp_matches(mo.volumes[i]->supported_facets))
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return true;
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return false;
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return model_property_changed(mo, mo_new,
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[](const ModelVolumeType t) { return t == ModelVolumeType::MODEL_PART; },
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[](const ModelVolume &mv_old, const ModelVolume &mv_new){ return mv_old.supported_facets.timestamp_matches(mv_new.supported_facets); });
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}
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bool model_custom_seam_data_changed(const ModelObject& mo, const ModelObject& mo_new)
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{
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assert(! model_volume_list_changed(mo, mo_new, ModelVolumeType::MODEL_PART));
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for (size_t i = 0; i < mo.volumes.size(); ++ i)
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if (! mo_new.volumes[i]->seam_facets.timestamp_matches(mo.volumes[i]->seam_facets))
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return true;
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return false;
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return model_property_changed(mo, mo_new,
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[](const ModelVolumeType t) { return t == ModelVolumeType::MODEL_PART; },
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[](const ModelVolume &mv_old, const ModelVolume &mv_new){ return mv_old.seam_facets.timestamp_matches(mv_new.seam_facets); });
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}
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bool model_mmu_segmentation_data_changed(const ModelObject& mo, const ModelObject& mo_new)
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{
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assert(! model_volume_list_changed(mo, mo_new, ModelVolumeType::MODEL_PART));
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for (size_t i = 0; i < mo.volumes.size(); ++ i)
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if (! mo_new.volumes[i]->mmu_segmentation_facets.timestamp_matches(mo.volumes[i]->mmu_segmentation_facets))
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return true;
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return false;
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return model_property_changed(mo, mo_new,
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[](const ModelVolumeType t) { return t == ModelVolumeType::MODEL_PART; },
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[](const ModelVolume &mv_old, const ModelVolume &mv_new){ return mv_old.mmu_segmentation_facets.timestamp_matches(mv_new.mmu_segmentation_facets); });
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}
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bool model_has_multi_part_objects(const Model &model)
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@ -347,12 +347,12 @@ struct ModelObjectStatus {
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struct ModelObjectStatusDB
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{
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void add(const ModelObject &model_object, const ModelObjectStatus::Status status) {
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assert(db.find(ModelObjectStatus(model_object.id())) == db.end());
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db.emplace(model_object.id(), status);
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}
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bool add_if_new(const ModelObject &model_object, const ModelObjectStatus::Status status) {
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auto it = db.find(ModelObjectStatus(model_object.id()));
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assert(it != db.end());
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if (it == db.end()) {
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db.emplace_hint(it, model_object.id(), status);
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return true;
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@ -1057,10 +1057,10 @@ Print::ApplyStatus Print::apply(const Model &model, DynamicPrintConfig new_full_
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assert(model_object_status.status == ModelObjectStatus::Old || model_object_status.status == ModelObjectStatus::Moved);
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// Check whether a model part volume was added or removed, their transformations or order changed.
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// Only volume IDs, volume types, transformation matrices and their order are checked, configuration and other parameters are NOT checked.
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bool solid_or_modifier_differ = model_volume_list_changed(model_object, model_object_new, solid_or_modifier_types);
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bool solid_or_modifier_differ = model_volume_list_changed(model_object, model_object_new, solid_or_modifier_types) ||
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model_mmu_segmentation_data_changed(model_object, model_object_new);
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bool supports_differ = model_volume_list_changed(model_object, model_object_new, ModelVolumeType::SUPPORT_BLOCKER) ||
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model_volume_list_changed(model_object, model_object_new, ModelVolumeType::SUPPORT_ENFORCER);
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bool mmu_segmentation_differ = model_mmu_segmentation_data_changed(model_object, model_object_new);
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bool layer_height_ranges_differ = ! layer_height_ranges_equal(model_object.layer_config_ranges, model_object_new.layer_config_ranges, model_object_new.layer_height_profile.empty());
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bool model_origin_translation_differ = model_object.origin_translation != model_object_new.origin_translation;
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auto print_objects_range = print_object_status_db.get_range(model_object);
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@ -1068,7 +1068,7 @@ Print::ApplyStatus Print::apply(const Model &model, DynamicPrintConfig new_full_
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// All PrintObjects in print_objects_range shall point to the same prints_objects_regions
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model_object_status.print_object_regions = print_objects_range.begin()->print_object->m_shared_regions;
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model_object_status.print_object_regions->ref_cnt_inc();
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if (solid_or_modifier_differ || mmu_segmentation_differ || model_origin_translation_differ || layer_height_ranges_differ ||
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if (solid_or_modifier_differ || model_origin_translation_differ || layer_height_ranges_differ ||
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! model_object.layer_height_profile.timestamp_matches(model_object_new.layer_height_profile)) {
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// The very first step (the slicing step) is invalidated. One may freely remove all associated PrintObjects.
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model_object_status.print_object_regions_status = model_origin_translation_differ || layer_height_ranges_differ ?
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@ -818,9 +818,12 @@ std::vector<ExPolygons> PrintObject::slice_support_volumes(const ModelVolumeType
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bool merge = false;
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const Print *print = this->print();
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auto throw_on_cancel_callback = std::function<void()>([print](){ print->throw_if_canceled(); });
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MeshSlicingParamsEx params;
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params.trafo = this->trafo();
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params.trafo.pretranslate(Vec3d(-unscale<float>(m_center_offset.x()), -unscale<float>(m_center_offset.y()), 0));
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for (; it_volume != it_volume_end; ++ it_volume)
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if ((*it_volume)->type() == model_volume_type) {
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std::vector<ExPolygons> slices2 = slice_volume(*(*it_volume), zs, MeshSlicingParamsEx{}, throw_on_cancel_callback);
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std::vector<ExPolygons> slices2 = slice_volume(*(*it_volume), zs, params, throw_on_cancel_callback);
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if (slices.empty())
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slices = std::move(slices2);
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else if (! slices2.empty()) {
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