2018-11-08 19:18:40 +00:00
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#include "SLAPrint.hpp"
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2018-11-09 17:32:35 +00:00
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#include "SLA/SLASupportTree.hpp"
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#include "I18N.hpp"
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//! macro used to mark string used at localization,
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//! return same string
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#define L(s) Slic3r::I18N::translate(s)
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2018-11-08 19:18:40 +00:00
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namespace Slic3r {
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2018-11-09 17:32:35 +00:00
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class SLAPrintObject::SupportData {
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public:
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sla::EigenMesh3D emesh; // index-triangle representation
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sla::PointSet support_points; // all the support points (manual/auto)
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std::unique_ptr<sla::SLASupportTree> support_tree_ptr; // the supports
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SlicedSupports slice_cache; // sliced supports
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};
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namespace {
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const std::array<unsigned, slaposCount> OBJ_STEP_LEVELS =
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{
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20,
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30,
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50,
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70,
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80,
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100
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};
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const std::array<std::string, slaposCount> OBJ_STEP_LABELS =
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{
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L("Slicing model"), // slaposObjectSlice,
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L("Generating islands"), // slaposSupportIslands,
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L("Scanning model structure"), // slaposSupportPoints,
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L("Generating support tree"), // slaposSupportTree,
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L("Generating base pool"), // slaposBasePool,
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L("Slicing supports") // slaposSliceSupports,
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};
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const std::array<unsigned, slapsCount> PRINT_STEP_LEVELS =
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{
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50, // slapsRasterize
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100, // slapsValidate
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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("Rasterizing layers"), // slapsRasterize
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L("Validating"), // slapsValidate
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};
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}
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2018-11-08 19:18:40 +00:00
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void SLAPrint::clear()
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{
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2018-11-09 11:02:42 +00:00
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tbb::mutex::scoped_lock lock(this->cancel_mutex());
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// The following call should stop background processing if it is running.
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this->invalidate_all_steps();
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2018-11-09 17:32:35 +00:00
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for (SLAPrintObject *object : m_objects) delete object;
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2018-11-09 11:02:42 +00:00
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m_objects.clear();
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2018-11-08 19:18:40 +00:00
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}
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2018-11-09 17:32:35 +00:00
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SLAPrint::ApplyStatus SLAPrint::apply(const Model &model,
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const DynamicPrintConfig &config)
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2018-11-08 19:18:40 +00:00
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{
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2018-11-12 10:46:38 +00:00
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// if (m_objects.empty())
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// return APPLY_STATUS_UNCHANGED;
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2018-11-09 11:02:42 +00:00
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// Grab the lock for the Print / PrintObject milestones.
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tbb::mutex::scoped_lock lock(this->cancel_mutex());
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2018-11-12 10:46:38 +00:00
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if(m_objects.empty() && model.objects.empty())
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return APPLY_STATUS_UNCHANGED;
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2018-11-09 11:02:42 +00:00
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// Temporary quick fix, just invalidate everything.
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2018-11-12 17:09:47 +00:00
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{
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2018-11-09 17:32:35 +00:00
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for (SLAPrintObject *print_object : m_objects) {
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2018-11-09 11:02:42 +00:00
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print_object->invalidate_all_steps();
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2018-11-09 17:32:35 +00:00
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delete print_object;
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2018-11-09 11:02:42 +00:00
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}
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m_objects.clear();
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this->invalidate_all_steps();
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2018-11-09 17:32:35 +00:00
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// Copy the model by value (deep copy),
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// keep the Model / ModelObject / ModelInstance / ModelVolume IDs.
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2018-11-09 11:02:42 +00:00
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m_model.assign_copy(model);
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// Generate new SLAPrintObjects.
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2018-11-09 17:32:35 +00:00
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for (ModelObject *model_object : m_model.objects) {
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2018-11-09 11:02:42 +00:00
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//TODO
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2018-11-09 17:32:35 +00:00
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m_objects.emplace_back(new SLAPrintObject(this, model_object));
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2018-11-09 11:02:42 +00:00
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}
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2018-11-12 10:46:38 +00:00
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}
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2018-11-09 11:02:42 +00:00
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2018-11-08 19:18:40 +00:00
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return APPLY_STATUS_INVALIDATED;
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}
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void SLAPrint::process()
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{
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2018-11-09 17:32:35 +00:00
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using namespace sla;
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std::cout << "SLA Processing triggered" << std::endl;
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// Assumption: at this point the print objects should be populated only with
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// the model objects we have to process and the instances are also filtered
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auto slice_model = [](const SLAPrintObject&) {
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};
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auto support_points = [](const SLAPrintObject&) {
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// for(SLAPrintObject *po : pobjects) {
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// TODO: calculate automatic support points
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// po->m_supportdata->slice_cache contains the slices at this point
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//}
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};
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auto support_tree = [this](const SLAPrintObject& po) {
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auto& emesh = po.m_supportdata->emesh;
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auto& pts = po.m_supportdata->support_points; // nowhere filled yet
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auto& supportd = *po.m_supportdata;
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try {
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SupportConfig scfg; // TODO fill or replace with po.m_config
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sla::Controller ctl;
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ctl.statuscb = [this](unsigned st, const std::string& msg) {
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unsigned stinit = OBJ_STEP_LEVELS[slaposSupportTree];
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double d = (OBJ_STEP_LEVELS[slaposBasePool] - stinit) / 100.0;
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set_status(unsigned(stinit + st*d), msg);
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};
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ctl.stopcondition = [this](){ return canceled(); };
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supportd.support_tree_ptr.reset(
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new SLASupportTree(pts, emesh, scfg, ctl));
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} catch(sla::SLASupportsStoppedException&) {
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// no need to rethrow
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// throw_if_canceled();
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}
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};
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auto base_pool = [](const SLAPrintObject&) {
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};
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auto slice_supports = [](const SLAPrintObject&) {
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};
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auto rasterize = []() {
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};
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using slaposFn = std::function<void(const SLAPrintObject&)>;
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std::array<SLAPrintObjectStep, slaposCount> objectsteps = {
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slaposObjectSlice,
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slaposSupportIslands,
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slaposSupportPoints,
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slaposSupportTree,
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slaposBasePool,
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slaposSliceSupports
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};
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std::array<slaposFn, slaposCount> fullprogram =
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{
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slice_model,
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[](const SLAPrintObject&){}, // slaposSupportIslands now empty
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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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};
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for(SLAPrintObject * po : m_objects) {
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for(size_t s = 0; s < fullprogram.size(); ++s) {
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auto currentstep = objectsteps[s];
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// Cancellation checking. Each step will check for cancellation
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// on its own and return earlier gracefully. Just after it returns
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// execution gets to this point and throws the canceled signal.
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throw_if_canceled();
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if(po->m_stepmask[s]) {
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set_status(OBJ_STEP_LEVELS[currentstep],
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OBJ_STEP_LABELS[currentstep]);
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po->set_started(currentstep);
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fullprogram[s](*po);
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po->set_done(currentstep);
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}
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}
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}
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2018-11-08 19:18:40 +00:00
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}
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2018-11-12 16:35:57 +00:00
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void SLAPrint::render_supports(SLASupportRenderer &renderer)
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{
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std::cout << "Would show the SLA supports" << std::endl;
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}
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2018-11-09 17:32:35 +00:00
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SLAPrintObject::SLAPrintObject(SLAPrint *print, ModelObject *model_object):
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Inherited(print),
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m_model_object(model_object),
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m_supportdata(new SupportData()),
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m_stepmask(slaposCount, true)
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{
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m_supportdata->emesh = sla::to_eigenmesh(*m_model_object);
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2018-11-12 10:46:38 +00:00
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m_supportdata->support_points = sla::support_points(*m_model_object);
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std::cout << "support points copied " << m_supportdata->support_points.rows() << std::endl;
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2018-11-09 17:32:35 +00:00
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}
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SLAPrintObject::~SLAPrintObject() {}
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2018-11-09 11:02:42 +00:00
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} // namespace Slic3r
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