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			882 lines
		
	
	
	
		
			37 KiB
		
	
	
	
		
			Perl
		
	
	
	
	
	
			
		
		
	
	
			882 lines
		
	
	
	
		
			37 KiB
		
	
	
	
		
			Perl
		
	
	
	
	
	
| package Slic3r::Print;
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| use Moo;
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| 
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| use File::Basename qw(basename fileparse);
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| use File::Spec;
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| use List::Util qw(max);
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| use Math::ConvexHull 1.0.4 qw(convex_hull);
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| use Slic3r::ExtrusionPath ':roles';
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| use Slic3r::Geometry qw(X Y Z X1 Y1 X2 Y2 MIN PI scale unscale move_points nearest_point);
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| use Slic3r::Geometry::Clipper qw(diff_ex union_ex intersection_ex offset JT_ROUND JT_SQUARE);
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| use Time::HiRes qw(gettimeofday tv_interval);
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| 
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| has 'config'                 => (is => 'rw', default => sub { Slic3r::Config->new_from_defaults }, trigger => 1);
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| has 'extra_variables'        => (is => 'rw', default => sub {{}});
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| has 'objects'                => (is => 'rw', default => sub {[]});
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| has 'total_extrusion_length' => (is => 'rw');
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| has 'processing_time'        => (is => 'rw');
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| has 'extruders'              => (is => 'rw', default => sub {[]});
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| 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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| 
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| # ordered collection of extrusion paths to build skirt loops
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| has 'skirt' => (
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|     is      => 'rw',
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|     #isa     => 'ArrayRef[Slic3r::ExtrusionLoop]',
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|     default => sub { [] },
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| );
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| 
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| # ordered collection of extrusion paths to build a brim
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| has 'brim' => (
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|     is      => 'rw',
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|     #isa     => 'ArrayRef[Slic3r::ExtrusionLoop]',
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|     default => sub { [] },
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| );
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| 
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| sub BUILD {
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|     my $self = shift;
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|     
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|     # call this manually because the 'default' coderef doesn't trigger the trigger
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|     $self->_trigger_config;
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| }
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| 
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| sub _trigger_config {
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|     my $self = shift;
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|     
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|     # store config in a handy place
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|     $Slic3r::Config = $self->config;
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|     
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|     # legacy with existing config files
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|     $self->config->set('first_layer_height', $self->config->layer_height)
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|         if !$self->config->first_layer_height;
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|     $self->config->set_ifndef('small_perimeter_speed',  $self->config->perimeter_speed);
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|     $self->config->set_ifndef('bridge_speed',           $self->config->infill_speed);
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|     $self->config->set_ifndef('solid_infill_speed',     $self->config->infill_speed);
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|     $self->config->set_ifndef('top_solid_infill_speed', $self->config->solid_infill_speed);
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|     
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|     # G-code flavors
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|     $self->config->set('extrusion_axis', 'A') if $self->config->gcode_flavor eq 'mach3';
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|     $self->config->set('extrusion_axis', '')  if $self->config->gcode_flavor eq 'no-extrusion';
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| }
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| 
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| sub add_model {
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|     my $self = shift;
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|     my ($model) = @_;
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|     
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|     # append/merge materials and preserve a mapping between the original material ID
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|     # and our numeric material index
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|     my %materials = ();
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|     {
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|         my @material_ids = sort keys %{$model->materials};
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|         @material_ids = (0) if !@material_ids;
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|         for (my $i = $self->regions_count; $i < @material_ids; $i++) {
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|             push @{$self->regions}, Slic3r::Print::Region->new;
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|             $materials{$material_ids[$i]} = $#{$self->regions};
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|         }
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|     }
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|     
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|     foreach my $object (@{ $model->objects }) {
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|         my @meshes = ();  # by region_id
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|         
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|         foreach my $volume (@{$object->volumes}) {
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|             # should the object contain multiple volumes of the same material, merge them
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|             my $region_id = defined $volume->material_id ? $materials{$volume->material_id} : 0;
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|             my $mesh = $volume->mesh->clone;
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|             $meshes[$region_id] = $meshes[$region_id]
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|                 ? Slic3r::TriangleMesh->merge($meshes[$region_id], $mesh)
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|                 : $mesh;
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|         }
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|         
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|         foreach my $mesh (@meshes) {
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|             next unless $mesh;
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|             $mesh->check_manifoldness;
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|             
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|             if ($object->instances) {
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|                 # we ignore the per-instance rotation currently and only 
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|                 # consider the first one
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|                 $mesh->rotate($object->instances->[0]->rotation);
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|             }
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|             
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|             $mesh->rotate($Slic3r::Config->rotate);
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|             $mesh->scale($Slic3r::Config->scale / &Slic3r::SCALING_FACTOR);
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|         }
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|         
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|         my $complete_mesh = Slic3r::TriangleMesh->merge(grep defined $_, @meshes);
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|         
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|         # initialize print object
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|         my $print_object = Slic3r::Print::Object->new(
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|             print       => $self,
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|             meshes      => [ @meshes ],
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|             size        => [ $complete_mesh->size ],
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|             input_file  => $object->input_file
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|         );
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|         push @{$self->objects}, $print_object;
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|         
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|         # align object to origin
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|         {
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|             my @extents = $complete_mesh->extents;
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|             foreach my $mesh (grep defined $_, @meshes) {
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|                 $mesh->move(map -$extents[$_][MIN], X,Y,Z);
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|             }
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|         }
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|         
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|         if ($object->instances) {
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|             # replace the default [0,0] instance with the custom ones
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|             @{$print_object->copies} = map [ scale $_->offset->[X], scale $_->offset->[Y] ], @{$object->instances};
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|         }
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|     }
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| }
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| 
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| sub validate {
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|     my $self = shift;
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|     
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|     if ($Slic3r::Config->complete_objects) {
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|         # check horizontal clearance
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|         {
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|             my @a = ();
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|             for my $obj_idx (0 .. $#{$self->objects}) {
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|                 my $clearance;
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|                 {
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|                     my @points = map [ @$_[X,Y] ], map @{$_->vertices}, @{$self->objects->[$obj_idx]->meshes};
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|                     my $convex_hull = Slic3r::Polygon->new(convex_hull(\@points));
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|                     $clearance = +($convex_hull->offset(scale $Slic3r::Config->extruder_clearance_radius / 2, 1, JT_ROUND))[0];
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|                 }
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|                 for my $copy (@{$self->objects->[$obj_idx]->copies}) {
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|                     my $copy_clearance = $clearance->clone;
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|                     $copy_clearance->translate(@$copy);
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|                     if (@{ intersection_ex(\@a, [$copy_clearance]) }) {
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|                         die "Some objects are too close; your extruder will collide with them.\n";
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|                     }
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|                     @a = map @$_, @{union_ex([ @a, $copy_clearance ])};
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|                 }
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|             }
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|         }
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|         
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|         # check vertical clearance
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|         {
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|             my @obj_copies = $self->object_copies;
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|             pop @obj_copies;  # ignore the last copy: its height doesn't matter
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|             my $scaled_clearance = scale $Slic3r::Config->extruder_clearance_height;
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|             if (grep { +($_->size)[Z] > $scaled_clearance } map @{$self->objects->[$_->[0]]->meshes}, @obj_copies) {
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|                 die "Some objects are too tall and cannot be printed without extruder collisions.\n";
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|             }
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|         }
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|     }
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| }
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| 
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| sub init_extruders {
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|     my $self = shift;
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|     
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|     # map regions to extruders (ghetto mapping for now)
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|     my %extruder_mapping = map { $_ => $_ } 0..$#{$self->regions};
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|     
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|     # initialize all extruder(s) we need
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|     my @used_extruders = (
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|         0,
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|         (map $self->config->get("${_}_extruder")-1, qw(perimeter infill support_material)),
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|         (values %extruder_mapping),
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|     );
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|     for my $extruder_id (keys %{{ map {$_ => 1} @used_extruders }}) {
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|         $self->extruders->[$extruder_id] = Slic3r::Extruder->new(
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|             id => $extruder_id,
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|             map { $_ => $self->config->get($_)->[$extruder_id] // $self->config->get($_)->[0] } #/
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|                 @{&Slic3r::Extruder::OPTIONS}
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|         );
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|     }
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|     
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|     # calculate regions' flows
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|     $Slic3r::flow = $self->extruders->[0]->make_flow(width => $self->config->extrusion_width);
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|     for my $region_id (0 .. $#{$self->regions}) {
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|         my $region = $self->regions->[$region_id];
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|         
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|         # per-role extruders and flows
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|         for (qw(perimeter infill)) {
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|             $region->extruders->{$_} = ($self->regions_count > 1)
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|                 ? $self->extruders->[$extruder_mapping{$region_id}]
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|                 : $self->extruders->[$self->config->get("${_}_extruder")-1];
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|             $region->flows->{$_} = $region->extruders->{$_}->make_flow(
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|                 width => $self->config->get("${_}_extrusion_width") || $self->config->extrusion_width,
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|             );
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|             $region->first_layer_flows->{$_} = $region->extruders->{$_}->make_flow(
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|                 layer_height    => $self->config->get_value('first_layer_height'),
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|                 width           => $self->config->first_layer_extrusion_width,
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|             );
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|         }
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|     }
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|     
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|     # calculate support material flow
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|     if ($self->config->support_material) {
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|         my $extruder = $self->extruders->[$self->config->support_material_extruder-1];
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|         $self->support_material_flow($extruder->make_flow(
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|             width => $self->config->support_material_extrusion_width || $self->config->extrusion_width,
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|         ));
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|         $self->first_layer_support_material_flow($extruder->make_flow(
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|             layer_height    => $self->config->get_value('first_layer_height'),
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|             width           => $self->config->first_layer_extrusion_width,
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|         ));
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|     }
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|     
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|     Slic3r::debugf "Default flow width = %s (spacing = %s)\n",
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|         $Slic3r::flow->width, $Slic3r::flow->spacing;
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| }
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| 
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| sub object_copies {
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|     my $self = shift;
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|     my @oc = ();
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|     for my $obj_idx (0 .. $#{$self->objects}) {
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|         push @oc, map [ $obj_idx, $_ ], @{$self->objects->[$obj_idx]->copies};
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|     }
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|     return @oc;
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| }
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| 
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| sub layer_count {
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|     my $self = shift;
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|     my $count = 0;
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|     foreach my $object (@{$self->objects}) {
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|         $count = @{$object->layers} if @{$object->layers} > $count;
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|     }
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|     return $count;
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| }
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| 
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| sub regions_count {
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|     my $self = shift;
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|     return scalar @{$self->regions};
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| }
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| 
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| sub duplicate {
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|     my $self = shift;
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|     
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|     if ($Slic3r::Config->duplicate_grid->[X] > 1 || $Slic3r::Config->duplicate_grid->[Y] > 1) {
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|         if (@{$self->objects} > 1) {
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|             die "Grid duplication is not supported with multiple objects\n";
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|         }
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|         my $object = $self->objects->[0];
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|         
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|         # generate offsets for copies
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|         my $dist = scale $Slic3r::Config->duplicate_distance;
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|         @{$self->objects->[0]->copies} = ();
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|         for my $x_copy (1..$Slic3r::Config->duplicate_grid->[X]) {
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|             for my $y_copy (1..$Slic3r::Config->duplicate_grid->[Y]) {
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|                 push @{$self->objects->[0]->copies}, [
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|                     ($object->size->[X] + $dist) * ($x_copy-1),
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|                     ($object->size->[Y] + $dist) * ($y_copy-1),
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|                 ];
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|             }
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|         }
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|     } elsif ($Slic3r::Config->duplicate > 1) {
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|         foreach my $object (@{$self->objects}) {
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|             @{$object->copies} = map [0,0], 1..$Slic3r::Config->duplicate;
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|         }
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|         $self->arrange_objects;
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|     }
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| }
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| 
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| sub arrange_objects {
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|     my $self = shift;
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| 
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|     my $total_parts = scalar map @{$_->copies}, @{$self->objects};
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|     my $partx = max(map $_->size->[X], @{$self->objects});
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|     my $party = max(map $_->size->[Y], @{$self->objects});
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|     
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|     my @positions = Slic3r::Geometry::arrange
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|         ($total_parts, $partx, $party, (map scale $_, @{$Slic3r::Config->bed_size}), scale $Slic3r::Config->min_object_distance, $self->config);
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|     
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|     @{$_->copies} = splice @positions, 0, scalar @{$_->copies} for @{$self->objects};
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| }
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| 
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| sub bounding_box {
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|     my $self = shift;
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|     
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|     my @points = ();
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|     foreach my $obj_idx (0 .. $#{$self->objects}) {
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|         my $object = $self->objects->[$obj_idx];
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|         foreach my $copy (@{$self->objects->[$obj_idx]->copies}) {
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|             push @points,
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|                 [ $copy->[X], $copy->[Y] ],
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|                 [ $copy->[X] + $object->size->[X], $copy->[Y] ],
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|                 [ $copy->[X] + $object->size->[X], $copy->[Y] + $object->size->[Y] ],
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|                 [ $copy->[X], $copy->[Y] + $object->size->[Y] ];
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|         }
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|     }
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|     return Slic3r::Geometry::bounding_box(\@points);
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| }
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| 
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| sub size {
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|     my $self = shift;
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|     
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|     my @bb = $self->bounding_box;
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|     return [ $bb[X2] - $bb[X1], $bb[Y2] - $bb[Y1] ];
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| }
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| 
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| sub export_gcode {
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|     my $self = shift;
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|     my %params = @_;
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|     
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|     $self->init_extruders;
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|     my $status_cb = $params{status_cb} || sub {};
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|     my $t0 = [gettimeofday];
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|     
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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(keep_meshes => $params{keep_meshes}) for @{$self->objects};
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|     
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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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|     
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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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|     foreach my $layer (map @{$_->layers}, @{$self->objects}) {
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|         $_->simplify(scale &Slic3r::RESOLUTION)
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|             for @{$layer->slices}, (map $_->expolygon, map @{$_->slices}, @{$layer->regions});
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|     }
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|     
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|     # this will clip $layer->surfaces to the infill boundaries 
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|     # and split them in 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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|     
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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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|     
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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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|     $_->process_bridges for map @{$_->regions}, map @{$_->layers}, @{$self->objects};
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|     
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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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|     
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|     # free memory
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|     $_->surfaces(undef) for map @{$_->regions}, map @{$_->layers}, @{$self->objects};
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|     
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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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|     
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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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|         my $fill_maker = Slic3r::Fill->new('print' => $self);
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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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|                 }
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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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|                 $Slic3r::Geometry::Clipper::clipper = Math::Clipper->new;
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|                 my $fills = {};
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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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|                     $fills->{$obj_idx} ||= {};
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|                     $fills->{$obj_idx}{$layer_id} ||= {};
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|                     $fills->{$obj_idx}{$layer_id}{$region_id} = [
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|                         $fill_maker->make_fill($self->objects->[$obj_idx]->layers->[$layer_id]->regions->[$region_id]),
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|                     ];
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|                 }
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|                 return $fills;
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|             },
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|             collect_cb => sub {
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|                 my $fills = shift;
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|                 foreach my $obj_idx (keys %$fills) {
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|                     my $object = $self->objects->[$obj_idx];
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|                     foreach my $layer_id (keys %{$fills->{$obj_idx}}) {
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|                         my $layer = $object->layers->[$layer_id];
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|                         foreach my $region_id (keys %{$fills->{$obj_idx}{$layer_id}}) {
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|                             $layer->regions->[$region_id]->fills($fills->{$obj_idx}{$layer_id}{$region_id});
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|                         }
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|                     }
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|                 }
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|             },
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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([ $fill_maker->make_fill($layerm) ]);
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|                 }
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|             },
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|         );
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|     }
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|     
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|     # generate support material
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|     if ($Slic3r::Config->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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|     
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|     # free memory (note that support material needs fill_surfaces)
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|     $_->fill_surfaces(undef) for map @{$_->regions}, map @{$_->layers}, @{$self->objects};
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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;
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|     
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|     # output everything to a G-code file
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|     my $output_file = $self->expanded_output_filepath($params{output_file});
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|     $status_cb->(90, "Exporting G-code to $output_file");
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|     $self->write_gcode($output_file);
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|     
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|     # run post-processing scripts
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|     if (@{$Slic3r::Config->post_process}) {
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|         $status_cb->(95, "Running post-processing scripts");
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|         $Slic3r::Config->setenv;
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|         for (@{$Slic3r::Config->post_process}) {
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|             Slic3r::debugf "  '%s' '%s'\n", $_, $output_file;
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|             system($_, $output_file);
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|         }
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|     }
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|     
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|     # output some statistics
 | |
|     $self->processing_time(tv_interval($t0));
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|     printf "Done. Process took %d minutes and %.3f seconds\n", 
 | |
|         int($self->processing_time/60),
 | |
|         $self->processing_time - int($self->processing_time/60)*60;
 | |
|     
 | |
|     # TODO: more statistics!
 | |
|     printf "Filament required: %.1fmm (%.1fcm3)\n",
 | |
|         $self->total_extrusion_length, $self->total_extrusion_volume;
 | |
| }
 | |
| 
 | |
| sub export_svg {
 | |
|     my $self = shift;
 | |
|     my %params = @_;
 | |
|     
 | |
|     $_->slice(keep_meshes => $params{keep_meshes}) for @{$self->objects};
 | |
|     $self->arrange_objects;
 | |
|     
 | |
|     my $output_file = $self->expanded_output_filepath($params{output_file});
 | |
|     $output_file =~ s/\.gcode$/.svg/i;
 | |
|     
 | |
|     open my $fh, ">", $output_file or die "Failed to open $output_file for writing\n";
 | |
|     print "Exporting to $output_file...";
 | |
|     my $print_size = $self->size;
 | |
|     print $fh sprintf <<"EOF", unscale($print_size->[X]), unscale($print_size->[Y]);
 | |
| <?xml version="1.0" encoding="UTF-8" standalone="yes"?>
 | |
| <!DOCTYPE svg PUBLIC "-//W3C//DTD SVG 1.0//EN" "http://www.w3.org/TR/2001/REC-SVG-20010904/DTD/svg10.dtd">
 | |
| <svg width="%s" height="%s" xmlns="http://www.w3.org/2000/svg" xmlns:svg="http://www.w3.org/2000/svg" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:slic3r="http://slic3r.org/namespaces/slic3r">
 | |
|   <!-- 
 | |
|   Generated using Slic3r $Slic3r::VERSION
 | |
|   http://slic3r.org/
 | |
|    -->
 | |
| EOF
 | |
|     
 | |
|     my $print_polygon = sub {
 | |
|         my ($polygon, $type) = @_;
 | |
|         printf $fh qq{    <polygon slic3r:type="%s" points="%s" style="fill: %s" />\n},
 | |
|             $type, (join ' ', map { join ',', map unscale $_, @$_ } @$polygon),
 | |
|             ($type eq 'contour' ? 'white' : 'black');
 | |
|     };
 | |
|     
 | |
|     my @previous_layer_slices = ();
 | |
|     for my $layer_id (0..$self->layer_count-1) {
 | |
|         my @layers = map $_->layers->[$layer_id], @{$self->objects};
 | |
|         printf $fh qq{  <g id="layer%d" slic3r:z="%s">\n}, $layer_id, unscale +(grep defined $_, @layers)[0]->slice_z;
 | |
|         
 | |
|         my @current_layer_slices = ();
 | |
|         for my $obj_idx (0 .. $#{$self->objects}) {
 | |
|             my $layer = $self->objects->[$obj_idx]->layers->[$layer_id] or next;
 | |
|             
 | |
|             # sort slices so that the outermost ones come first
 | |
|             my @slices = sort { $a->expolygon->contour->encloses_point($b->expolygon->contour->[0]) ? 0 : 1 } @{$layer->slices};
 | |
|             foreach my $copy (@{$self->objects->[$obj_idx]->copies}) {
 | |
|                 foreach my $slice (@slices) {
 | |
|                     my $expolygon = $slice->expolygon->clone;
 | |
|                     $expolygon->translate(@$copy);
 | |
|                     $print_polygon->($expolygon->contour, 'contour');
 | |
|                     $print_polygon->($_, 'hole') for $expolygon->holes;
 | |
|                     push @current_layer_slices, $expolygon;
 | |
|                 }
 | |
|             }
 | |
|         }
 | |
|         # generate support material
 | |
|         if ($Slic3r::Config->support_material && $layer_id > 0) {
 | |
|             my (@supported_slices, @unsupported_slices) = ();
 | |
|             foreach my $expolygon (@current_layer_slices) {
 | |
|                 my $intersection = intersection_ex(
 | |
|                     [ map @$_, @previous_layer_slices ],
 | |
|                     $expolygon,
 | |
|                 );
 | |
|                 @$intersection
 | |
|                     ? push @supported_slices, $expolygon
 | |
|                     : push @unsupported_slices, $expolygon;
 | |
|             }
 | |
|             my @supported_points = map @$_, @$_, @supported_slices;
 | |
|             foreach my $expolygon (@unsupported_slices) {
 | |
|                 # look for the nearest point to this island among all
 | |
|                 # supported points
 | |
|                 my $support_point = nearest_point($expolygon->contour->[0], \@supported_points)
 | |
|                     or next;
 | |
|                 my $anchor_point = nearest_point($support_point, $expolygon->contour->[0]);
 | |
|                 printf $fh qq{    <line x1="%s" y1="%s" x2="%s" y2="%s" style="stroke-width: 2; stroke: white" />\n},
 | |
|                     map @$_, $support_point, $anchor_point;
 | |
|             }
 | |
|         }
 | |
|         print $fh qq{  </g>\n};
 | |
|         @previous_layer_slices = @current_layer_slices;
 | |
|     }
 | |
|     
 | |
|     print $fh "</svg>\n";
 | |
|     close $fh;
 | |
|     print "Done.\n";
 | |
| }
 | |
| 
 | |
| sub make_skirt {
 | |
|     my $self = shift;
 | |
|     return unless $Slic3r::Config->skirts > 0;
 | |
|     
 | |
|     # collect points from all layers contained in skirt height
 | |
|     my $skirt_height = $Slic3r::Config->skirt_height;
 | |
|     $skirt_height = $self->layer_count if $skirt_height > $self->layer_count;
 | |
|     my @points = ();
 | |
|     foreach my $obj_idx (0 .. $#{$self->objects}) {
 | |
|         my @layers = map $self->objects->[$obj_idx]->layer($_), 0..($skirt_height-1);
 | |
|         my @layer_points = (
 | |
|             (map @$_, map @$_, map @{$_->slices}, @layers),
 | |
|             (map @$_, map @{$_->thin_walls}, map @{$_->regions}, @layers),
 | |
|             (map @{$_->unpack->polyline}, map @{$_->support_fills->paths}, grep $_->support_fills, @layers),
 | |
|         );
 | |
|         push @points, map move_points($_, @layer_points), @{$self->objects->[$obj_idx]->copies};
 | |
|     }
 | |
|     return if @points < 3;  # at least three points required for a convex hull
 | |
|     
 | |
|     # find out convex hull
 | |
|     my $convex_hull = convex_hull(\@points);
 | |
|     
 | |
|     # draw outlines from outside to inside
 | |
|     my $flow = $Slic3r::first_layer_flow || $Slic3r::flow;
 | |
|     my @skirt = ();
 | |
|     for (my $i = $Slic3r::Config->skirts; $i > 0; $i--) {
 | |
|         my $distance = scale ($Slic3r::Config->skirt_distance + ($flow->spacing * $i));
 | |
|         my $outline = Math::Clipper::offset([$convex_hull], $distance, &Slic3r::SCALING_FACTOR * 100, JT_ROUND);
 | |
|         push @skirt, Slic3r::ExtrusionLoop->pack(
 | |
|             polygon => Slic3r::Polygon->new(@{$outline->[0]}),
 | |
|             role => EXTR_ROLE_SKIRT,
 | |
|         );
 | |
|     }
 | |
|     unshift @{$self->skirt}, @skirt;
 | |
| }
 | |
| 
 | |
| sub make_brim {
 | |
|     my $self = shift;
 | |
|     return unless $Slic3r::Config->brim_width > 0;
 | |
|     
 | |
|     my $flow = $Slic3r::first_layer_flow || $Slic3r::flow;
 | |
|     my $grow_distance = $flow->scaled_width / 2;
 | |
|     my @islands = (); # array of polygons
 | |
|     foreach my $obj_idx (0 .. $#{$self->objects}) {
 | |
|         my $layer0 = $self->objects->[$obj_idx]->layers->[0];
 | |
|         my @object_islands = (
 | |
|             (map $_->contour, @{$layer0->slices}),
 | |
|             (map { $_->isa('Slic3r::Polygon') ? $_ : $_->grow($grow_distance) } map @{$_->thin_walls}, @{$layer0->regions}),
 | |
|             (map $_->unpack->polyline->grow($grow_distance), map @{$_->support_fills->paths}, grep $_->support_fills, $layer0),
 | |
|         );
 | |
|         foreach my $copy (@{$self->objects->[$obj_idx]->copies}) {
 | |
|             push @islands, map $_->clone->translate(@$copy), @object_islands;
 | |
|         }
 | |
|     }
 | |
|     
 | |
|     my $num_loops = sprintf "%.0f", $Slic3r::Config->brim_width / $flow->width;
 | |
|     for my $i (reverse 1 .. $num_loops) {
 | |
|         # JT_SQUARE ensures no vertex is outside the given offset distance
 | |
|         push @{$self->brim}, Slic3r::ExtrusionLoop->pack(
 | |
|             polygon => Slic3r::Polygon->new($_),
 | |
|             role    => EXTR_ROLE_SKIRT,
 | |
|         ) for @{Math::Clipper::offset(\@islands, $i * $flow->scaled_spacing, 100, JT_SQUARE)};
 | |
|         # TODO: we need the offset inwards/offset outwards logic to avoid overlapping extrusions
 | |
|     }
 | |
| }
 | |
| 
 | |
| sub write_gcode {
 | |
|     my $self = shift;
 | |
|     my ($file) = @_;
 | |
|     
 | |
|     # open output gcode file
 | |
|     open my $fh, ">", $file
 | |
|         or die "Failed to open $file for writing\n";
 | |
|     
 | |
|     # write some information
 | |
|     my @lt = localtime;
 | |
|     printf $fh "; generated by Slic3r $Slic3r::VERSION on %04d-%02d-%02d at %02d:%02d:%02d\n\n",
 | |
|         $lt[5] + 1900, $lt[4]+1, $lt[3], $lt[2], $lt[1], $lt[0];
 | |
| 
 | |
|     print $fh "; $_\n" foreach split /\R/, $Slic3r::Config->notes;
 | |
|     print $fh "\n" if $Slic3r::Config->notes;
 | |
|     
 | |
|     for (qw(layer_height perimeters solid_layers fill_density perimeter_speed infill_speed travel_speed scale)) {
 | |
|         printf $fh "; %s = %s\n", $_, $Slic3r::Config->$_;
 | |
|     }
 | |
|     for (qw(nozzle_diameter filament_diameter extrusion_multiplier)) {
 | |
|         printf $fh "; %s = %s\n", $_, $Slic3r::Config->$_->[0];
 | |
|     }
 | |
|     printf $fh "; single wall width = %.2fmm\n", $Slic3r::flow->width;
 | |
|     printf $fh "; first layer single wall width = %.2fmm\n", $Slic3r::first_layer_flow->width
 | |
|         if $Slic3r::first_layer_flow;
 | |
|     print  $fh "\n";
 | |
|     
 | |
|     # set up our extruder object
 | |
|     my $gcodegen = Slic3r::GCode->new(
 | |
|         multiple_extruders => (@{$self->extruders} > 1),
 | |
|     );
 | |
|     my $min_print_speed = 60 * $Slic3r::Config->min_print_speed;
 | |
|     my $dec = $gcodegen->dec;
 | |
|     print $fh $gcodegen->set_extruder($self->extruders->[0]);
 | |
|     print $fh $gcodegen->set_fan(0, 1) if $Slic3r::Config->cooling && $Slic3r::Config->disable_fan_first_layers;
 | |
|     
 | |
|     # write start commands to file
 | |
|     printf $fh $gcodegen->set_bed_temperature($Slic3r::Config->first_layer_bed_temperature, 1),
 | |
|         if $Slic3r::Config->first_layer_bed_temperature && $Slic3r::Config->start_gcode !~ /M190/i;
 | |
|     my $print_first_layer_temperature = sub {
 | |
|         for my $t (grep $self->extruders->[$_], 0 .. $#{$Slic3r::Config->first_layer_temperature}) {
 | |
|             printf $fh $gcodegen->set_temperature($self->extruders->[$t]->first_layer_temperature, 0, $t)
 | |
|                 if $self->extruders->[$t]->first_layer_temperature;
 | |
|         }
 | |
|     };
 | |
|     $print_first_layer_temperature->();
 | |
|     printf $fh "%s\n", $Slic3r::Config->replace_options($Slic3r::Config->start_gcode);
 | |
|     for my $t (grep $self->extruders->[$_], 0 .. $#{$Slic3r::Config->first_layer_temperature}) {
 | |
|         printf $fh $gcodegen->set_temperature($self->extruders->[$t]->first_layer_temperature, 1, $t)
 | |
|             if $self->extruders->[$t]->first_layer_temperature && $Slic3r::Config->start_gcode !~ /M109/i;
 | |
|     }
 | |
|     print  $fh "G90 ; use absolute coordinates\n";
 | |
|     print  $fh "G21 ; set units to millimeters\n";
 | |
|     if ($Slic3r::Config->gcode_flavor =~ /^(?:reprap|teacup)$/) {
 | |
|         printf $fh $gcodegen->reset_e;
 | |
|         if ($Slic3r::Config->gcode_flavor =~ /^(?:reprap|makerbot)$/) {
 | |
|             if ($Slic3r::Config->use_relative_e_distances) {
 | |
|                 print $fh "M83 ; use relative distances for extrusion\n";
 | |
|             } else {
 | |
|                 print $fh "M82 ; use absolute distances for extrusion\n";
 | |
|             }
 | |
|         }
 | |
|     }
 | |
|     
 | |
|     # calculate X,Y shift to center print around specified origin
 | |
|     my @print_bb = $self->bounding_box;
 | |
|     my @shift = (
 | |
|         $Slic3r::Config->print_center->[X] - (unscale ($print_bb[X2] - $print_bb[X1]) / 2) - unscale $print_bb[X1],
 | |
|         $Slic3r::Config->print_center->[Y] - (unscale ($print_bb[Y2] - $print_bb[Y1]) / 2) - unscale $print_bb[Y1],
 | |
|     );
 | |
|     
 | |
|     # prepare the logic to print one layer
 | |
|     my $skirt_done = 0;  # count of skirt layers done
 | |
|     my $brim_done = 0;
 | |
|     my $extrude_layer = sub {
 | |
|         my ($layer_id, $object_copies) = @_;
 | |
|         my $gcode = "";
 | |
|         
 | |
|         if ($layer_id == 1) {
 | |
|             for my $t (grep $self->extruders->[$_], 0 .. $#{$Slic3r::Config->temperature}) {
 | |
|                 $gcode .= $gcodegen->set_temperature($self->extruders->[$t]->temperature, 0, $t)
 | |
|                     if $self->extruders->[$t]->temperature && $self->extruders->[$t]->temperature != $self->extruders->[$t]->first_layer_temperature;
 | |
|             }
 | |
|             $gcode .= $gcodegen->set_bed_temperature($Slic3r::Config->bed_temperature)
 | |
|                 if $Slic3r::Config->first_layer_bed_temperature && $Slic3r::Config->bed_temperature != $Slic3r::Config->first_layer_bed_temperature;
 | |
|         }
 | |
|         
 | |
|         # go to layer (just use the first one, we only need Z from it)
 | |
|         $gcode .= $gcodegen->change_layer($self->objects->[$object_copies->[0][0]]->layers->[$layer_id]);
 | |
|         $gcodegen->elapsed_time(0);
 | |
|         
 | |
|         # extrude skirt
 | |
|         if ($skirt_done < $Slic3r::Config->skirt_height) {
 | |
|             $gcodegen->shift_x($shift[X]);
 | |
|             $gcodegen->shift_y($shift[Y]);
 | |
|             $gcode .= $gcodegen->set_acceleration($Slic3r::Config->perimeter_acceleration);
 | |
|             # skip skirt if we have a large brim
 | |
|             if ($layer_id < $Slic3r::Config->skirt_height && ($layer_id != 0 || $Slic3r::Config->skirt_distance + (($Slic3r::Config->skirts - 1) * $Slic3r::flow->spacing) > $Slic3r::Config->brim_width)) {
 | |
|                 $gcode .= $gcodegen->extrude_loop($_, 'skirt') for @{$self->skirt};
 | |
|             }
 | |
|             $skirt_done++;
 | |
|         }
 | |
|         
 | |
|         # extrude brim
 | |
|         if ($layer_id == 0 && !$brim_done) {
 | |
|             $gcode .= $gcodegen->set_extruder($self->extruders->[$Slic3r::Config->support_material_extruder-1]);
 | |
|             $gcodegen->shift_x($shift[X]);
 | |
|             $gcodegen->shift_y($shift[Y]);
 | |
|             $gcode .= $gcodegen->extrude_loop($_, 'brim') for @{$self->brim};
 | |
|             $brim_done = 1;
 | |
|         }
 | |
|         
 | |
|         for my $obj_copy (@$object_copies) {
 | |
|             my ($obj_idx, $copy) = @$obj_copy;
 | |
|             my $layer = $self->objects->[$obj_idx]->layers->[$layer_id];
 | |
|             
 | |
|             # retract explicitely because changing the shift_[xy] properties below
 | |
|             # won't always trigger the automatic retraction
 | |
|             $gcode .= $gcodegen->retract;
 | |
|             
 | |
|             $gcodegen->shift_x($shift[X] + unscale $copy->[X]);
 | |
|             $gcodegen->shift_y($shift[Y] + unscale $copy->[Y]);
 | |
|             
 | |
|             foreach my $region_id (0 .. ($self->regions_count-1)) {
 | |
|                 my $layerm = $layer->regions->[$region_id];
 | |
|                 my $region = $self->regions->[$region_id];
 | |
|                 
 | |
|                 # extrude perimeters
 | |
|                 $gcode .= $gcodegen->set_extruder($region->extruders->{perimeter});
 | |
|                 $gcode .= $gcodegen->extrude($_, 'perimeter') for @{ $layerm->perimeters };
 | |
|                 
 | |
|                 # extrude fills
 | |
|                 $gcode .= $gcodegen->set_extruder($region->extruders->{infill});
 | |
|                 $gcode .= $gcodegen->set_acceleration($Slic3r::Config->infill_acceleration);
 | |
|                 for my $fill (@{ $layerm->fills }) {
 | |
|                     if ($fill->isa('Slic3r::ExtrusionPath::Collection')) {
 | |
|                         $gcode .= $gcodegen->extrude($_, 'fill') 
 | |
|                             for $fill->shortest_path($gcodegen->last_pos);
 | |
|                     } else {
 | |
|                         $gcode .= $gcodegen->extrude($fill, 'fill') ;
 | |
|                     }
 | |
|                 }
 | |
|             }
 | |
|                 
 | |
|             # extrude support material
 | |
|             if ($layer->support_fills) {
 | |
|                 $gcode .= $gcodegen->set_extruder($self->extruders->[$Slic3r::Config->support_material_extruder-1]);
 | |
|                 $gcode .= $gcodegen->extrude_path($_, 'support material') 
 | |
|                     for $layer->support_fills->shortest_path($gcodegen->last_pos);
 | |
|             }
 | |
|         }
 | |
|         return if !$gcode;
 | |
|         
 | |
|         my $fan_speed = $Slic3r::Config->fan_always_on ? $Slic3r::Config->min_fan_speed : 0;
 | |
|         my $speed_factor = 1;
 | |
|         if ($Slic3r::Config->cooling) {
 | |
|             my $layer_time = $gcodegen->elapsed_time;
 | |
|             Slic3r::debugf "Layer %d estimated printing time: %d seconds\n", $layer_id, $layer_time;
 | |
|             if ($layer_time < $Slic3r::Config->slowdown_below_layer_time) {
 | |
|                 $fan_speed = $Slic3r::Config->max_fan_speed;
 | |
|                 $speed_factor = $layer_time / $Slic3r::Config->slowdown_below_layer_time;
 | |
|             } elsif ($layer_time < $Slic3r::Config->fan_below_layer_time) {
 | |
|                 $fan_speed = $Slic3r::Config->max_fan_speed - ($Slic3r::Config->max_fan_speed - $Slic3r::Config->min_fan_speed)
 | |
|                     * ($layer_time - $Slic3r::Config->slowdown_below_layer_time)
 | |
|                     / ($Slic3r::Config->fan_below_layer_time - $Slic3r::Config->slowdown_below_layer_time); #/
 | |
|             }
 | |
|             Slic3r::debugf "  fan = %d%%, speed = %d%%\n", $fan_speed, $speed_factor * 100;
 | |
|             
 | |
|             if ($speed_factor < 1) {
 | |
|                 $gcode =~ s/^(?=.*? [XY])(?=.*? E)(G1 .*?F)(\d+(?:\.\d+)?)/
 | |
|                     my $new_speed = $2 * $speed_factor;
 | |
|                     $1 . sprintf("%.${dec}f", $new_speed < $min_print_speed ? $min_print_speed : $new_speed)
 | |
|                     /gexm;
 | |
|             }
 | |
|             $fan_speed = 0 if $layer_id < $Slic3r::Config->disable_fan_first_layers;
 | |
|         }
 | |
|         $gcode = $gcodegen->set_fan($fan_speed) . $gcode;
 | |
|         
 | |
|         # bridge fan speed
 | |
|         if (!$Slic3r::Config->cooling || $Slic3r::Config->bridge_fan_speed == 0 || $layer_id < $Slic3r::Config->disable_fan_first_layers) {
 | |
|             $gcode =~ s/^;_BRIDGE_FAN_(?:START|END)\n//gm;
 | |
|         } else {
 | |
|             $gcode =~ s/^;_BRIDGE_FAN_START\n/ $gcodegen->set_fan($Slic3r::Config->bridge_fan_speed, 1) /gmex;
 | |
|             $gcode =~ s/^;_BRIDGE_FAN_END\n/ $gcodegen->set_fan($fan_speed, 1) /gmex;
 | |
|         }
 | |
|         
 | |
|         return $gcode;
 | |
|     };
 | |
|     
 | |
|     # do all objects for each layer
 | |
|     if ($Slic3r::Config->complete_objects) {
 | |
|         
 | |
|         # print objects from the smallest to the tallest to avoid collisions
 | |
|         # when moving onto next object starting point
 | |
|         my @obj_idx = sort { $self->objects->[$a]->layer_count <=> $self->objects->[$b]->layer_count } 0..$#{$self->objects};
 | |
|         
 | |
|         my $finished_objects = 0;
 | |
|         for my $obj_idx (@obj_idx) {
 | |
|             for my $copy (@{ $self->objects->[$obj_idx]->copies }) {
 | |
|                 # move to the origin position for the copy we're going to print.
 | |
|                 # this happens before Z goes down to layer 0 again, so that 
 | |
|                 # no collision happens hopefully.
 | |
|                 if ($finished_objects > 0) {
 | |
|                     $gcodegen->shift_x($shift[X] + unscale $copy->[X]);
 | |
|                     $gcodegen->shift_y($shift[Y] + unscale $copy->[Y]);
 | |
|                     print $fh $gcodegen->retract;
 | |
|                     print $fh $gcodegen->G0(Slic3r::Point->new(0,0), undef, 0, 'move to origin position for next object');
 | |
|                 }
 | |
|                 
 | |
|                 for my $layer_id (0..$#{$self->objects->[$obj_idx]->layers}) {
 | |
|                     # if we are printing the bottom layer of an object, and we have already finished
 | |
|                     # another one, set first layer temperatures. this happens before the Z move
 | |
|                     # is triggered, so machine has more time to reach such temperatures
 | |
|                     if ($layer_id == 0 && $finished_objects > 0) {
 | |
|                         printf $fh $gcodegen->set_bed_temperature($Slic3r::Config->first_layer_bed_temperature),
 | |
|                             if $Slic3r::Config->first_layer_bed_temperature;
 | |
|                         $print_first_layer_temperature->();
 | |
|                     }
 | |
|                     print $fh $extrude_layer->($layer_id, [[ $obj_idx, $copy ]]);
 | |
|                 }
 | |
|                 $finished_objects++;
 | |
|             }
 | |
|         }
 | |
|     } else {
 | |
|         for my $layer_id (0..$self->layer_count-1) {
 | |
|             my @object_copies = ();
 | |
|             for my $obj_idx (grep $self->objects->[$_]->layers->[$layer_id], 0..$#{$self->objects}) {
 | |
|                 push @object_copies, map [ $obj_idx, $_ ], @{ $self->objects->[$obj_idx]->copies };
 | |
|             }
 | |
|             print $fh $extrude_layer->($layer_id, \@object_copies);
 | |
|         }
 | |
|     }
 | |
|     
 | |
|     # save statistic data
 | |
|     $self->total_extrusion_length($gcodegen->total_extrusion_length);
 | |
|     
 | |
|     # write end commands to file
 | |
|     print $fh $gcodegen->retract;
 | |
|     print $fh $gcodegen->set_fan(0);
 | |
|     print $fh "M501 ; reset acceleration\n" if $Slic3r::Config->acceleration;
 | |
|     printf $fh "%s\n", $Slic3r::Config->replace_options($Slic3r::Config->end_gcode);
 | |
|     
 | |
|     printf $fh "; filament used = %.1fmm (%.1fcm3)\n",
 | |
|         $self->total_extrusion_length, $self->total_extrusion_volume;
 | |
|     
 | |
|     # close our gcode file
 | |
|     close $fh;
 | |
| }
 | |
| 
 | |
| sub total_extrusion_volume {
 | |
|     my $self = shift;
 | |
|     return $self->total_extrusion_length * ($self->extruders->[0]->filament_diameter**2) * PI/4 / 1000;
 | |
| }
 | |
| 
 | |
| # this method will return the supplied input file path after expanding its
 | |
| # format variables with their values
 | |
| sub expanded_output_filepath {
 | |
|     my $self = shift;
 | |
|     my ($path, $input_file) = @_;
 | |
|     
 | |
|     # if no input file was supplied, take the first one from our objects
 | |
|     $input_file ||= $self->objects->[0]->input_file;
 | |
|     
 | |
|     # if output path is an existing directory, we take that and append
 | |
|     # the specified filename format
 | |
|     $path = File::Spec->join($path, $Slic3r::Config->output_filename_format) if ($path && -d $path);
 | |
| 
 | |
|     # if no explicit output file was defined, we take the input
 | |
|     # file directory and append the specified filename format
 | |
|     $path ||= (fileparse($input_file))[1] . $Slic3r::Config->output_filename_format;
 | |
|     
 | |
|     my $input_filename = my $input_filename_base = basename($input_file);
 | |
|     $input_filename_base =~ s/\.(?:stl|amf(?:\.xml)?)$//i;
 | |
|     
 | |
|     return $Slic3r::Config->replace_options($path, {
 | |
|         input_filename      => $input_filename,
 | |
|         input_filename_base => $input_filename_base,
 | |
|         %{ $self->extra_variables },
 | |
|     });
 | |
| }
 | |
| 
 | |
| 1;
 | 
