Merging new steps integration
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8fdff97eb7
@ -43,8 +43,7 @@ const std::array<unsigned, slaposCount> OBJ_STEP_LEVELS =
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30, // slaposSupportPoints,
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25, // slaposSupportTree,
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25, // slaposBasePool,
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5, // slaposSliceSupports,
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5 // slaposIndexSlices
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10, // slaposSliceSupports,
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};
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const std::array<std::string, slaposCount> OBJ_STEP_LABELS =
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@ -54,22 +53,19 @@ const std::array<std::string, slaposCount> OBJ_STEP_LABELS =
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L("Generating support tree"), // slaposSupportTree,
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L("Generating pad"), // slaposBasePool,
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L("Slicing supports"), // slaposSliceSupports,
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L("Slicing supports") // slaposIndexSlices,
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};
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// Should also add up to 100 (%)
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const std::array<unsigned, slapsCount> PRINT_STEP_LEVELS =
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{
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5, // slapsStats
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94, // slapsRasterize
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1, // slapsValidate
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95, // slapsRasterize
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};
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const std::array<std::string, slapsCount> PRINT_STEP_LABELS =
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{
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L("Calculating statistics"), // slapsStats
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L("Merging slices and calculating statistics"), // slapsStats
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L("Rasterizing layers"), // slapsRasterize
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L("Validating"), // slapsValidate
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};
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}
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@ -206,7 +202,7 @@ SLAPrint::ApplyStatus SLAPrint::apply(const Model &model, const DynamicPrintConf
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model_object_status.emplace(model_object->id(), ModelObjectStatus::Old);
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} else if (model_object_list_extended(m_model, model)) {
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// Add new objects. Their volumes and configs will be synchronized later.
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update_apply_status(this->invalidate_step(slapsRasterize));
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update_apply_status(this->invalidate_step(slapsMergeSlicesAndEval));
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for (const ModelObject *model_object : m_model.objects)
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model_object_status.emplace(model_object->id(), ModelObjectStatus::Old);
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for (size_t i = m_model.objects.size(); i < model.objects.size(); ++ i) {
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@ -218,7 +214,7 @@ SLAPrint::ApplyStatus SLAPrint::apply(const Model &model, const DynamicPrintConf
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// Reorder the objects, add new objects.
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// First stop background processing before shuffling or deleting the PrintObjects in the object list.
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this->call_cancel_callback();
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update_apply_status(this->invalidate_step(slapsRasterize));
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update_apply_status(this->invalidate_step(slapsMergeSlicesAndEval));
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// Second create a new list of objects.
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std::vector<ModelObject*> model_objects_old(std::move(m_model.objects));
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m_model.objects.clear();
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@ -390,7 +386,7 @@ SLAPrint::ApplyStatus SLAPrint::apply(const Model &model, const DynamicPrintConf
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if (new_instances != it_print_object_status->print_object->instances()) {
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// Instances changed.
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it_print_object_status->print_object->set_instances(new_instances);
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update_apply_status(this->invalidate_step(slapsRasterize));
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update_apply_status(this->invalidate_step(slapsMergeSlicesAndEval));
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}
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print_objects_new.emplace_back(it_print_object_status->print_object);
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const_cast<PrintObjectStatus&>(*it_print_object_status).status = PrintObjectStatus::Reused;
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@ -613,6 +609,18 @@ std::string SLAPrint::validate() const
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return "";
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}
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bool SLAPrint::invalidate_step(SLAPrintStep step)
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{
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bool invalidated = Inherited::invalidate_step(step);
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// propagate to dependent steps
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if (step == slapsMergeSlicesAndEval) {
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invalidated |= this->invalidate_all_steps();
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}
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return invalidated;
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}
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template<class...Args>
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void report_status(SLAPrint& p, int st, const std::string& msg, Args&&...args)
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{
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@ -639,7 +647,7 @@ void SLAPrint::process()
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const size_t objcount = m_objects.size();
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const unsigned min_objstatus = 0; // where the per object operations start
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const unsigned max_objstatus = PRINT_STEP_LEVELS[slapsRasterize]; // where the per object operations end
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const unsigned max_objstatus = PRINT_STEP_LEVELS[slapsMergeSlicesAndEval]; // where the per object operations end
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// the coefficient that multiplies the per object status values which
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// are set up for <0, 100>. They need to be scaled into the whole process
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@ -883,7 +891,7 @@ void SLAPrint::process()
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// Slicing the support geometries similarly to the model slicing procedure.
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// If the pad had been added previously (see step "base_pool" than it will
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// be part of the slices)
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auto slice_supports = [](SLAPrintObject& po) {
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auto slice_supports = [this](SLAPrintObject& po) {
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auto& sd = po.m_supportdata;
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if(sd) sd->support_slices.clear();
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@ -906,16 +914,14 @@ void SLAPrint::process()
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{
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po.m_slice_index[i].set_support_slice_idx(po, i);
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}
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};
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// We have the layer polygon collection but we need to unite them into
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// an index where the key is the height level in discrete levels (clipper)
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auto index_slices = [this/*, ilhd*/](SLAPrintObject& /*po*/) {
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// Using RELOAD_SLA_PREVIEW to tell the Plater to pass the update status to the 3D preview to load the SLA slices.
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report_status(*this, -2, "", SlicingStatus::RELOAD_SLA_PREVIEW);
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};
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auto fillstats = [this, ilhs]() {
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// Merging the slices from all the print objects into one slice grid and
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// calculating print statistics from the merge result.
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auto merge_slices_and_eval_stats = [this, ilhs]() {
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// clear the rasterizer input
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m_printer_input.clear();
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@ -1081,15 +1087,13 @@ void SLAPrint::process()
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support_points,
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support_tree,
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base_pool,
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slice_supports,
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index_slices
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slice_supports
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};
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std::array<slapsFn, slapsCount> print_program =
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{
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fillstats,
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rasterize,
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[](){} // validate
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merge_slices_and_eval_stats,
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rasterize
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};
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unsigned st = min_objstatus;
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@ -1129,7 +1133,7 @@ void SLAPrint::process()
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}
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std::array<SLAPrintStep, slapsCount> printsteps = {
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slapsStats, slapsRasterize, slapsValidate
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slapsMergeSlicesAndEval, slapsRasterize
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};
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// this would disable the rasterization step
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@ -1195,11 +1199,11 @@ bool SLAPrint::invalidate_state_by_config_options(const std::vector<t_config_opt
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if (steps_rasterize.find(opt_key) != steps_rasterize.end()) {
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// These options only affect the final rasterization, or they are just notes without influence on the output,
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// so there is nothing to invalidate.
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steps.emplace_back(slapsRasterize);
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steps.emplace_back(slapsMergeSlicesAndEval);
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} else if (steps_ignore.find(opt_key) != steps_ignore.end()) {
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// These steps have no influence on the output. Just ignore them.
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} else if (opt_key == "initial_layer_height") {
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steps.emplace_back(slapsRasterize);
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steps.emplace_back(slapsMergeSlicesAndEval);
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osteps.emplace_back(slaposObjectSlice);
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} else {
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// All values should be covered.
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@ -1445,19 +1449,16 @@ bool SLAPrintObject::invalidate_step(SLAPrintObjectStep step)
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if (step == slaposObjectSlice) {
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invalidated |= this->invalidate_all_steps();
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} else if (step == slaposSupportPoints) {
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invalidated |= this->invalidate_steps({ slaposSupportTree, slaposBasePool, slaposSliceSupports, slaposIndexSlices });
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invalidated |= m_print->invalidate_step(slapsRasterize);
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invalidated |= this->invalidate_steps({ slaposSupportTree, slaposBasePool, slaposSliceSupports });
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invalidated |= m_print->invalidate_step(slapsMergeSlicesAndEval);
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} else if (step == slaposSupportTree) {
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invalidated |= this->invalidate_steps({ slaposBasePool, slaposSliceSupports, slaposIndexSlices });
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invalidated |= m_print->invalidate_step(slapsRasterize);
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invalidated |= this->invalidate_steps({ slaposBasePool, slaposSliceSupports });
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invalidated |= m_print->invalidate_step(slapsMergeSlicesAndEval);
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} else if (step == slaposBasePool) {
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invalidated |= this->invalidate_steps({slaposSliceSupports, slaposIndexSlices});
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invalidated |= m_print->invalidate_step(slapsRasterize);
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invalidated |= this->invalidate_steps({slaposSliceSupports});
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invalidated |= m_print->invalidate_step(slapsMergeSlicesAndEval);
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} else if (step == slaposSliceSupports) {
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invalidated |= this->invalidate_step(slaposIndexSlices);
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invalidated |= m_print->invalidate_step(slapsRasterize);
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} else if(step == slaposIndexSlices) {
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invalidated |= m_print->invalidate_step(slapsRasterize);
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invalidated |= m_print->invalidate_step(slapsMergeSlicesAndEval);
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}
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return invalidated;
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}
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@ -1533,18 +1534,6 @@ const ExPolygons &SliceRecord::get_slice(SliceOrigin o) const
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return idx >= v.size() ? EMPTY_SLICE : v[idx];
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}
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const std::vector<SliceRecord> & SLAPrintObject::get_slice_index() const
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{
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// assert(is_step_done(slaposIndexSlices));
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return m_slice_index;
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}
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const std::vector<ExPolygons> &SLAPrintObject::get_model_slices() const
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{
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// assert(is_step_done(slaposObjectSlice));
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return m_model_slices;
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}
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bool SLAPrintObject::has_mesh(SLAPrintObjectStep step) const
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{
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switch (step) {
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@ -11,9 +11,8 @@
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namespace Slic3r {
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enum SLAPrintStep : unsigned int {
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slapsStats,
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slapsRasterize,
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slapsValidate,
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slapsMergeSlicesAndEval,
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slapsRasterize,
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slapsCount
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};
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@ -22,8 +21,7 @@ enum SLAPrintObjectStep : unsigned int {
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slaposSupportPoints,
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slaposSupportTree,
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slaposBasePool,
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slaposSliceSupports,
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slaposIndexSlices,
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slaposSliceSupports,
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slaposCount
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};
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@ -190,7 +188,7 @@ private:
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return it;
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}
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const std::vector<ExPolygons>& get_model_slices() const;
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const std::vector<ExPolygons>& get_model_slices() const { return m_model_slices; }
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const std::vector<ExPolygons>& get_support_slices() const;
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public:
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@ -205,7 +203,9 @@ public:
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// /////////////////////////////////////////////////////////////////////////
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// Retrieve the slice index.
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const std::vector<SliceRecord>& get_slice_index() const;
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const std::vector<SliceRecord>& get_slice_index() const {
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return m_slice_index;
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}
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// Search slice index for the closest slice to given print_level.
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// max_epsilon gives the allowable deviation of the returned slice record's
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@ -383,7 +383,7 @@ public:
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// Returns true if an object step is done on all objects and there's at least one object.
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bool is_step_done(SLAPrintObjectStep step) const;
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// Returns true if the last step was finished with success.
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bool finished() const override { return this->is_step_done(slaposIndexSlices) && this->Inherited::is_step_done(slapsRasterize); }
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bool finished() const override { return this->is_step_done(slaposSliceSupports) && this->Inherited::is_step_done(slapsRasterize); }
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template<class Fmt> void export_raster(const std::string& fname) {
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if(m_printer) m_printer->save<Fmt>(fname);
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@ -409,6 +409,9 @@ private:
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using SLAPrinter = FilePrinter<FilePrinterFormat::SLA_PNGZIP>;
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using SLAPrinterPtr = std::unique_ptr<SLAPrinter>;
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// Implement same logic as in SLAPrintObject
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bool invalidate_step(SLAPrintStep st);
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// Invalidate steps based on a set of parameters changed.
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bool invalidate_state_by_config_options(const std::vector<t_config_option_key> &opt_keys);
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@ -5010,7 +5010,7 @@ void GLCanvas3D::_render_sla_slices() const
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}
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if ((bottom_obj_triangles.empty() || bottom_sup_triangles.empty() || top_obj_triangles.empty() || top_sup_triangles.empty()) &&
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obj->is_step_done(slaposIndexSlices) && !obj->get_slice_index().empty())
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obj->is_step_done(slaposSliceSupports) && !obj->get_slice_index().empty())
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{
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double layer_height = print->default_object_config().layer_height.value;
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double initial_layer_height = print->material_config().initial_layer_height.value;
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@ -6212,7 +6212,7 @@ void GLCanvas3D::_load_shells_sla()
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int obj_idx = 0;
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for (const SLAPrintObject* obj : print->objects())
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{
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if (!obj->is_step_done(slaposIndexSlices))
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if (!obj->is_step_done(slaposSliceSupports))
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continue;
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unsigned int initial_volumes_count = (unsigned int)m_volumes.volumes.size();
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@ -772,7 +772,7 @@ void Preview::load_print_as_sla()
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std::vector<double> zs;
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double initial_layer_height = print->material_config().initial_layer_height.value;
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for (const SLAPrintObject* obj : print->objects())
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if (obj->is_step_done(slaposIndexSlices) && !obj->get_slice_index().empty())
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if (obj->is_step_done(slaposSliceSupports) && !obj->get_slice_index().empty())
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{
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auto low_coord = obj->get_slice_index().front().print_level();
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for (auto& rec : obj->get_slice_index())
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