Merge branch 'xs-model'
This commit is contained in:
commit
1b9079ffbe
@ -143,6 +143,7 @@ sub thread_cleanup {
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*Slic3r::Polygon::DESTROY = sub {};
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*Slic3r::Polyline::DESTROY = sub {};
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*Slic3r::Polyline::Collection::DESTROY = sub {};
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*Slic3r::Print::State::DESTROY = sub {};
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*Slic3r::Surface::DESTROY = sub {};
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*Slic3r::Surface::Collection::DESTROY = sub {};
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*Slic3r::TriangleMesh::DESTROY = sub {};
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@ -9,6 +9,7 @@ use Slic3r::Geometry qw(X Y Z X1 Y1 X2 Y2 MIN MAX PI scale unscale move_points c
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convex_hull);
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use Slic3r::Geometry::Clipper qw(diff_ex union_ex union_pt intersection_ex intersection offset
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offset2 union union_pt_chained JT_ROUND JT_SQUARE);
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use Slic3r::Print::State ':steps';
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has 'config' => (is => 'rw', default => sub { Slic3r::Config->new_from_defaults }, trigger => \&init_config);
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has 'extra_variables' => (is => 'rw', default => sub {{}});
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@ -19,6 +20,7 @@ has 'regions' => (is => 'rw', default => sub {[]});
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has 'support_material_flow' => (is => 'rw');
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has 'first_layer_support_material_flow' => (is => 'rw');
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has 'has_support_material' => (is => 'lazy');
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has '_state' => (is => 'ro', default => sub { Slic3r::Print::State->new });
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# ordered collection of extrusion paths to build skirt loops
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has 'skirt' => (is => 'rw', default => sub { Slic3r::ExtrusionPath::Collection->new });
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@ -135,19 +137,29 @@ sub add_model_object {
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@{$self->extra_variables}{qw(input_filename input_filename_base)} = parse_filename($input_file);
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}
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}
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# TODO: invalidate skirt and brim
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$self->_state->invalidate(STEP_SKIRT);
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$self->_state->invalidate(STEP_BRIM);
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}
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sub delete_object {
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my ($self, $obj_idx) = @_;
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splice @{$self->objects}, $obj_idx, 1;
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# TODO: invalidate skirt and brim
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# TODO: purge unused regions
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$self->_state->invalidate(STEP_SKIRT);
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$self->_state->invalidate(STEP_BRIM);
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}
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sub delete_all_objects {
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my ($self) = @_;
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@{$self->objects} = ();
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# TODO: invalidate skirt and brim
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@{$self->regions} = ();
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$self->_state->invalidate(STEP_SKIRT);
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$self->_state->invalidate(STEP_BRIM);
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}
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sub validate {
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@ -324,108 +336,132 @@ sub _simplify_slices {
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sub process {
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my ($self) = @_;
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$self->init_extruders;
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my $status_cb = $self->status_cb // sub {};
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my $print_step = sub {
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my ($step, $cb) = @_;
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if (!$self->_state->done($step)) {
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$self->_state->set_started($step);
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$cb->();
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### Re-enable this for step-based slicing:
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### $self->_state->set_done($step);
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}
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};
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my $object_step = sub {
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my ($step, $cb) = @_;
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for my $obj_idx (0..$#{$self->objects}) {
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my $object = $self->objects->[$obj_idx];
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if (!$object->_state->done($step)) {
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$object->_state->set_started($step);
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$cb->($obj_idx);
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### Re-enable this for step-based slicing:
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### $object->_state->set_done($step);
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}
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}
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};
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# STEP_INIT_EXTRUDERS
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$print_step->(STEP_INIT_EXTRUDERS, sub {
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$self->init_extruders;
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});
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# STEP_SLICE
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# skein the STL into layers
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# each layer has surfaces with holes
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$status_cb->(10, "Processing triangulated mesh");
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$_->slice for @{$self->objects};
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$object_step->(STEP_SLICE, sub {
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$self->objects->[$_[0]]->slice;
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});
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# remove empty layers and abort if there are no more
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# as some algorithms assume all objects have at least one layer
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# note: this will change object indexes
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@{$self->objects} = grep @{$_->layers}, @{$self->objects};
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die "No layers were detected. You might want to repair your STL file(s) or check their size and retry.\n"
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if !@{$self->objects};
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if ($Slic3r::Config->resolution) {
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$status_cb->(15, "Simplifying input");
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$self->_simplify_slices(scale $Slic3r::Config->resolution);
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}
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if !grep @{$_->layers}, @{$self->objects};
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# make perimeters
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# this will add a set of extrusion loops to each layer
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# as well as generate infill boundaries
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$status_cb->(20, "Generating perimeters");
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$_->make_perimeters for @{$self->objects};
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$object_step->(STEP_PERIMETERS, sub {
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$self->objects->[$_[0]]->make_perimeters;
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});
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# simplify slices (both layer and region slices),
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# we only need the max resolution for perimeters
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$self->_simplify_slices(&Slic3r::SCALED_RESOLUTION);
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$status_cb->(30, "Preparing infill");
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$object_step->(STEP_PREPARE_INFILL, sub {
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my $object = $self->objects->[$_[0]];
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# this will assign a type (top/bottom/internal) to $layerm->slices
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# and transform $layerm->fill_surfaces from expolygon
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# to typed top/bottom/internal surfaces;
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$object->detect_surfaces_type;
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# this will assign a type (top/bottom/internal) to $layerm->slices
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# and transform $layerm->fill_surfaces from expolygon
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# to typed top/bottom/internal surfaces;
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$status_cb->(30, "Detecting solid surfaces");
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$_->detect_surfaces_type for @{$self->objects};
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# decide what surfaces are to be filled
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$_->prepare_fill_surfaces for map @{$_->regions}, @{$object->layers};
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# decide what surfaces are to be filled
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$status_cb->(35, "Preparing infill surfaces");
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$_->prepare_fill_surfaces for map @{$_->regions}, map @{$_->layers}, @{$self->objects};
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# this will detect bridges and reverse bridges
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# and rearrange top/bottom/internal surfaces
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$object->process_external_surfaces;
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# this will detect bridges and reverse bridges
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# and rearrange top/bottom/internal surfaces
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$status_cb->(45, "Detect bridges");
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$_->process_external_surfaces for @{$self->objects};
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# detect which fill surfaces are near external layers
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# they will be split in internal and internal-solid surfaces
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$object->discover_horizontal_shells;
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$object->clip_fill_surfaces;
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# the following step needs to be done before combination because it may need
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# to remove only half of the combined infill
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$object->bridge_over_infill;
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# detect which fill surfaces are near external layers
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# they will be split in internal and internal-solid surfaces
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$status_cb->(60, "Generating horizontal shells");
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$_->discover_horizontal_shells for @{$self->objects};
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$_->clip_fill_surfaces for @{$self->objects};
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# the following step needs to be done before combination because it may need
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# to remove only half of the combined infill
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$_->bridge_over_infill for @{$self->objects};
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# combine fill surfaces to honor the "infill every N layers" option
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$status_cb->(70, "Combining infill");
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$_->combine_infill for @{$self->objects};
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# combine fill surfaces to honor the "infill every N layers" option
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$object->combine_infill;
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});
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# this will generate extrusion paths for each layer
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$status_cb->(80, "Infilling layers");
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{
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$status_cb->(70, "Infilling layers");
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$object_step->(STEP_INFILL, sub {
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my $object = $self->objects->[$_[0]];
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Slic3r::parallelize(
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items => sub {
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my @items = (); # [obj_idx, layer_id]
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for my $obj_idx (0 .. $#{$self->objects}) {
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for my $region_id (0 .. ($self->regions_count-1)) {
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push @items, map [$obj_idx, $_, $region_id], 0..($self->objects->[$obj_idx]->layer_count-1);
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}
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my @items = (); # [layer_id, region_id]
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for my $region_id (0 .. ($self->regions_count-1)) {
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push @items, map [$_, $region_id], 0..($object->layer_count-1);
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}
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@items;
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},
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thread_cb => sub {
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my $q = shift;
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while (defined (my $obj_layer = $q->dequeue)) {
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my ($obj_idx, $layer_id, $region_id) = @$obj_layer;
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my $object = $self->objects->[$obj_idx];
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my ($layer_id, $region_id) = @$obj_layer;
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my $layerm = $object->layers->[$layer_id]->regions->[$region_id];
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$layerm->fills->append( $object->fill_maker->make_fill($layerm) );
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}
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},
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collect_cb => sub {},
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no_threads_cb => sub {
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foreach my $layerm (map @{$_->regions}, map @{$_->layers}, @{$self->objects}) {
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$layerm->fills->append($layerm->layer->object->fill_maker->make_fill($layerm));
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foreach my $layerm (map @{$_->regions}, @{$object->layers}) {
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$layerm->fills->append($object->fill_maker->make_fill($layerm));
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}
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},
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);
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}
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### we could free memory now, but this would make this step not idempotent
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### $_->fill_surfaces->clear for map @{$_->regions}, @{$object->layers};
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});
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# generate support material
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if ($self->has_support_material) {
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$status_cb->(85, "Generating support material");
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$_->generate_support_material for @{$self->objects};
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}
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# free memory (note that support material needs fill_surfaces)
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$_->fill_surfaces->clear for map @{$_->regions}, map @{$_->layers}, @{$self->objects};
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$status_cb->(85, "Generating support material") if $self->has_support_material;
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$object_step->(STEP_SUPPORTMATERIAL, sub {
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$self->objects->[$_[0]]->generate_support_material;
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});
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# make skirt
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$status_cb->(88, "Generating skirt");
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$self->make_skirt;
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$self->make_brim; # must come after make_skirt
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$print_step->(STEP_SKIRT, sub {
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$self->make_skirt;
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});
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$status_cb->(88, "Generating skirt");
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$print_step->(STEP_BRIM, sub {
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$self->make_brim; # must come after make_skirt
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});
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# time to make some statistics
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if (0) {
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@ -945,4 +981,25 @@ sub apply_extra_variables {
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$self->extra_variables->{$_} = $extra->{$_} for keys %$extra;
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}
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sub invalidate_step {
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my ($self, $step, $obj_idx) = @_;
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# invalidate $step in the correct state object
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if ($Slic3r::Print::State::print_step->{$step}) {
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$self->_state->invalidate($step);
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} else {
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# object step
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if (defined $obj_idx) {
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$self->objects->[$obj_idx]->_state->invalidate($step);
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} else {
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$_->_state->invalidate($step) for @{$self->objects};
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}
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}
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# recursively invalidate steps depending on $step
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$self->invalidate_step($_)
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for grep { grep { $_ == $step } @{$Slic3r::Print::State::prereqs{$_}} }
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keys %Slic3r::Print::State::prereqs;
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}
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1;
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|
@ -5,6 +5,7 @@ use List::Util qw(min max sum first);
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use Slic3r::Geometry qw(X Y Z PI scale unscale deg2rad rad2deg scaled_epsilon chained_path);
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use Slic3r::Geometry::Clipper qw(diff diff_ex intersection intersection_ex union union_ex
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offset offset_ex offset2 offset2_ex CLIPPER_OFFSET_SCALE JT_MITER);
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use Slic3r::Print::State ':steps';
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use Slic3r::Surface ':types';
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has 'print' => (is => 'ro', weak_ref => 1, required => 1);
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@ -21,6 +22,7 @@ has '_shifted_copies' => (is => 'rw'); # Slic3r::Point objects in scaled G-co
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has 'layers' => (is => 'rw', default => sub { [] });
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has 'support_layers' => (is => 'rw', default => sub { [] });
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has 'fill_maker' => (is => 'lazy');
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has '_state' => (is => 'ro', default => sub { Slic3r::Print::State->new });
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sub BUILD {
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my $self = shift;
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@ -70,6 +72,9 @@ sub _trigger_copies {
|
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$c;
|
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} @{$self->copies}[@{chained_path($self->copies)}]
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]);
|
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|
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$self->print->_state->invalidate(STEP_SKIRT);
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$self->print->_state->invalidate(STEP_BRIM);
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}
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# in unscaled coordinates
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@ -273,6 +278,11 @@ sub slice {
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$self->layers->[$i]->id($i);
|
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}
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}
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# simplify slices if required
|
||||
if ($self->config->resolution) {
|
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$self->_simplify_slices(scale($self->config->resolution));
|
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}
|
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}
|
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|
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sub make_perimeters {
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@ -348,6 +358,11 @@ sub make_perimeters {
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$_->make_perimeters for @{$self->layers};
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},
|
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);
|
||||
|
||||
# simplify slices (both layer and region slices),
|
||||
# we only need the max resolution for perimeters
|
||||
### This makes this method not-idempotent, so we keep it disabled for now.
|
||||
###$self->_simplify_slices(&Slic3r::SCALED_RESOLUTION);
|
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}
|
||||
|
||||
sub detect_surfaces_type {
|
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@ -850,4 +865,13 @@ sub generate_support_material {
|
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->generate($self);
|
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}
|
||||
|
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sub _simplify_slices {
|
||||
my ($self, $distance) = @_;
|
||||
|
||||
foreach my $layer (@{$self->layers}) {
|
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$layer->slices->simplify($distance);
|
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$_->slices->simplify($distance) for @{$layer->regions};
|
||||
}
|
||||
}
|
||||
|
||||
1;
|
||||
|
28
lib/Slic3r/Print/State.pm
Normal file
28
lib/Slic3r/Print/State.pm
Normal file
@ -0,0 +1,28 @@
|
||||
package Slic3r::Print::State;
|
||||
use strict;
|
||||
use warnings;
|
||||
|
||||
require Exporter;
|
||||
our @ISA = qw(Exporter);
|
||||
our @EXPORT_OK = qw(STEP_INIT_EXTRUDERS STEP_SLICE STEP_PERIMETERS STEP_PREPARE_INFILL
|
||||
STEP_INFILL STEP_SUPPORTMATERIAL STEP_SKIRT STEP_BRIM);
|
||||
our %EXPORT_TAGS = (steps => \@EXPORT_OK);
|
||||
|
||||
our %print_steps = map { $_ => 1 } (
|
||||
STEP_INIT_EXTRUDERS,
|
||||
STEP_SKIRT,
|
||||
STEP_BRIM,
|
||||
);
|
||||
|
||||
our %prereqs = (
|
||||
STEP_INIT_EXTRUDERS => [],
|
||||
STEP_SLICE => [],
|
||||
STEP_PERIMETERS => [STEP_SLICE, STEP_INIT_EXTRUDERS],
|
||||
STEP_PREPARE_INFILL => [STEP_PERIMETERS],
|
||||
STEP_INFILL => [STEP_INFILL],
|
||||
STEP_SUPPORTMATERIAL => [STEP_SLICE, STEP_INIT_EXTRUDERS],
|
||||
STEP_SKIRT => [STEP_PERIMETERS, STEP_INFILL],
|
||||
STEP_BRIM => [STEP_PERIMETERS, STEP_INFILL, STEP_SKIRT],
|
||||
);
|
||||
|
||||
1;
|
@ -35,6 +35,8 @@ src/Polyline.cpp
|
||||
src/Polyline.hpp
|
||||
src/PolylineCollection.cpp
|
||||
src/PolylineCollection.hpp
|
||||
src/PrintState.cpp
|
||||
src/PrintState.hpp
|
||||
src/ppport.h
|
||||
src/Surface.cpp
|
||||
src/Surface.hpp
|
||||
@ -72,6 +74,7 @@ xsp/Point.xsp
|
||||
xsp/Polygon.xsp
|
||||
xsp/Polyline.xsp
|
||||
xsp/PolylineCollection.xsp
|
||||
xsp/PrintState.xsp
|
||||
xsp/Surface.xsp
|
||||
xsp/SurfaceCollection.xsp
|
||||
xsp/TriangleMesh.xsp
|
||||
|
36
xs/src/Print.cpp
Normal file
36
xs/src/Print.cpp
Normal file
@ -0,0 +1,36 @@
|
||||
#include "Print.hpp"
|
||||
|
||||
namespace Slic3r {
|
||||
|
||||
bool
|
||||
PrintState::started(PrintStep step) const
|
||||
{
|
||||
return this->_started.find(step) != this->_started.end();
|
||||
}
|
||||
|
||||
bool
|
||||
PrintState::done(PrintStep step) const
|
||||
{
|
||||
return this->_done.find(step) != this->_done.end();
|
||||
}
|
||||
|
||||
void
|
||||
PrintState::set_started(PrintStep step)
|
||||
{
|
||||
this->_started.insert(step);
|
||||
}
|
||||
|
||||
void
|
||||
PrintState::set_done(PrintStep step)
|
||||
{
|
||||
this->_done.insert(step);
|
||||
}
|
||||
|
||||
void
|
||||
PrintState::invalidate(PrintStep step)
|
||||
{
|
||||
this->_started.erase(step);
|
||||
this->_done.erase(step);
|
||||
}
|
||||
|
||||
}
|
29
xs/src/Print.hpp
Normal file
29
xs/src/Print.hpp
Normal file
@ -0,0 +1,29 @@
|
||||
#ifndef slic3r_Print_hpp_
|
||||
#define slic3r_Print_hpp_
|
||||
|
||||
#include <set>
|
||||
|
||||
namespace Slic3r {
|
||||
|
||||
enum PrintStep {
|
||||
psInitExtruders, psSlice, psPerimeters, prPrepareInfill,
|
||||
psInfill, psSupportMaterial, psSkirt, psBrim,
|
||||
};
|
||||
|
||||
class PrintState
|
||||
{
|
||||
private:
|
||||
std::set<PrintStep> _started;
|
||||
std::set<PrintStep> _done;
|
||||
|
||||
public:
|
||||
bool started(PrintStep step) const;
|
||||
bool done(PrintStep step) const;
|
||||
void set_started(PrintStep step);
|
||||
void set_done(PrintStep step);
|
||||
void invalidate(PrintStep step);
|
||||
};
|
||||
|
||||
}
|
||||
|
||||
#endif
|
41
xs/xsp/Print.xsp
Normal file
41
xs/xsp/Print.xsp
Normal file
@ -0,0 +1,41 @@
|
||||
%module{Slic3r::XS};
|
||||
|
||||
%{
|
||||
#include <myinit.h>
|
||||
#include "Print.hpp"
|
||||
%}
|
||||
|
||||
%name{Slic3r::Print::State} class PrintState {
|
||||
PrintState();
|
||||
~PrintState();
|
||||
bool started(PrintStep step) const;
|
||||
bool done(PrintStep step) const;
|
||||
void set_started(PrintStep step);
|
||||
void set_done(PrintStep step);
|
||||
void invalidate(PrintStep step);
|
||||
%{
|
||||
|
||||
%}
|
||||
};
|
||||
|
||||
%package{Slic3r::Print::State};
|
||||
%{
|
||||
|
||||
IV
|
||||
_constant()
|
||||
ALIAS:
|
||||
STEP_INIT_EXTRUDERS = psInitExtruders
|
||||
STEP_SLICE = psSlice
|
||||
STEP_PERIMETERS = psPerimeters
|
||||
STEP_PREPARE_INFILL = prPrepareInfill
|
||||
STEP_INFILL = psInfill
|
||||
STEP_SUPPORTMATERIAL = psSupportMaterial
|
||||
STEP_SKIRT = psSkirt
|
||||
STEP_BRIM = psBrim
|
||||
PROTOTYPE:
|
||||
CODE:
|
||||
RETVAL = ix;
|
||||
OUTPUT: RETVAL
|
||||
|
||||
%}
|
||||
|
@ -12,10 +12,12 @@ ExPolygonCollection* O_OBJECT
|
||||
ExtrusionEntityCollection* O_OBJECT
|
||||
ExtrusionPath* O_OBJECT
|
||||
ExtrusionLoop* O_OBJECT
|
||||
PrintState* O_OBJECT
|
||||
Surface* O_OBJECT
|
||||
SurfaceCollection* O_OBJECT
|
||||
|
||||
ExtrusionRole T_UV
|
||||
PrintStep T_UV
|
||||
SurfaceType T_UV
|
||||
ClipperLib::JoinType T_UV
|
||||
ClipperLib::PolyFillType T_UV
|
||||
|
@ -18,6 +18,7 @@
|
||||
%typemap{Lines};
|
||||
%typemap{Polygons};
|
||||
%typemap{Polylines};
|
||||
%typemap{PrintState};
|
||||
%typemap{ExPolygons};
|
||||
%typemap{Surfaces};
|
||||
%typemap{Polygons*};
|
||||
@ -35,3 +36,9 @@
|
||||
$CVar = (ExtrusionRole)SvUV($PerlVar);
|
||||
%};
|
||||
};
|
||||
%typemap{PrintStep}{parsed}{
|
||||
%cpp_type{PrintStep};
|
||||
%precall_code{%
|
||||
$CVar = (PrintStep)SvUV($PerlVar);
|
||||
%};
|
||||
};
|
||||
|
Loading…
Reference in New Issue
Block a user