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			814 lines
		
	
	
	
		
			31 KiB
		
	
	
	
		
			Perl
		
	
	
	
	
	
			
		
		
	
	
			814 lines
		
	
	
	
		
			31 KiB
		
	
	
	
		
			Perl
		
	
	
	
	
	
| package Slic3r::GCode;
 | |
| use Moo;
 | |
| 
 | |
| use List::Util qw(min max first);
 | |
| use Slic3r::ExtrusionPath ':roles';
 | |
| use Slic3r::Geometry qw(epsilon scale unscale scaled_epsilon points_coincide PI X Y B);
 | |
| use Slic3r::Geometry::Clipper qw(union_ex);
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| use Slic3r::Surface ':types';
 | |
| 
 | |
| has 'config'             => (is => 'ro', required => 1);
 | |
| has 'extruders'          => (is => 'ro', default => sub {0}, required => 1);
 | |
| has 'multiple_extruders' => (is => 'lazy');
 | |
| has 'enable_loop_clipping' => (is => 'rw', default => sub {1});
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| has 'enable_wipe'        => (is => 'lazy');   # at least one extruder has wipe enabled
 | |
| has 'layer_count'        => (is => 'ro', required => 1 );
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| has 'layer'              => (is => 'rw');
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| has '_layer_islands'     => (is => 'rw');
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| has '_upper_layer_islands'  => (is => 'rw');
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| has '_layer_overhangs'   => (is => 'rw');
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| has 'shift_x'            => (is => 'rw', default => sub {0} );
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| has 'shift_y'            => (is => 'rw', default => sub {0} );
 | |
| has 'z'                  => (is => 'rw');
 | |
| has 'speed'              => (is => 'rw');
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| 
 | |
| has 'speeds'             => (is => 'lazy');  # mm/min
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| has 'external_mp'        => (is => 'rw');
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| has 'layer_mp'           => (is => 'rw');
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| has 'new_object'         => (is => 'rw', default => sub {0});
 | |
| has 'straight_once'      => (is => 'rw', default => sub {1});
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| has 'extruder'           => (is => 'rw');
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| has 'elapsed_time'       => (is => 'rw', default => sub {0} );  # seconds
 | |
| has 'total_extrusion_length' => (is => 'rw', default => sub {0} );
 | |
| has 'lifted'             => (is => 'rw', default => sub {0} );
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| has 'last_pos'           => (is => 'rw', default => sub { Slic3r::Point->new(0,0) } );
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| has 'last_speed'         => (is => 'rw', default => sub {""});
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| has 'last_f'             => (is => 'rw', default => sub {""});
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| has 'last_fan_speed'     => (is => 'rw', default => sub {0});
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| has 'wipe_path'          => (is => 'rw');
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| has 'dec'                => (is => 'ro', default => sub { 3 } );
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| 
 | |
| # used for vibration limit:
 | |
| has 'last_dir'           => (is => 'ro', default => sub { [0,0] });
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| has 'dir_time'           => (is => 'ro', default => sub { [0,0] });
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| 
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| sub _build_speeds {
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|     my $self = shift;
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|     return {
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|         map { $_ => 60 * $self->config->get_value("${_}_speed") }
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|             qw(travel perimeter small_perimeter external_perimeter infill
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|                 solid_infill top_solid_infill support_material bridge gap_fill retract),
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|     };
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| }
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| 
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| # assign speeds to roles
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| my %role_speeds = (
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|     &EXTR_ROLE_PERIMETER                    => 'perimeter',
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|     &EXTR_ROLE_EXTERNAL_PERIMETER           => 'external_perimeter',
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|     &EXTR_ROLE_OVERHANG_PERIMETER           => 'bridge',
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|     &EXTR_ROLE_CONTOUR_INTERNAL_PERIMETER   => 'perimeter',
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|     &EXTR_ROLE_FILL                         => 'infill',
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|     &EXTR_ROLE_SOLIDFILL                    => 'solid_infill',
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|     &EXTR_ROLE_TOPSOLIDFILL                 => 'top_solid_infill',
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|     &EXTR_ROLE_BRIDGE                       => 'bridge',
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|     &EXTR_ROLE_INTERNALBRIDGE               => 'solid_infill',
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|     &EXTR_ROLE_SKIRT                        => 'perimeter',
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|     &EXTR_ROLE_SUPPORTMATERIAL              => 'support_material',
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|     &EXTR_ROLE_GAPFILL                      => 'gap_fill',
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| );
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| 
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| sub _build_multiple_extruders {
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|     my $self = shift;
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|     return @{$self->extruders} > 1;
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| }
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| 
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| sub _build_enable_wipe {
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|     my $self = shift;
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|     return (first { $_->wipe } @{$self->extruders}) ? 1 : 0;
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| }
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| 
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| sub set_shift {
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|     my $self = shift;
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|     my @shift = @_;
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|     
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|     # if shift increases (goes towards right), last_pos decreases because it goes towards left
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|     my @translate = (
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|         scale ($self->shift_x - $shift[X]),
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|         scale ($self->shift_y - $shift[Y]),
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|     );
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|     $self->last_pos->translate(@translate);
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|     $self->wipe_path->translate(@translate) if $self->wipe_path;
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|     
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|     $self->shift_x($shift[X]);
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|     $self->shift_y($shift[Y]);
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| }
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| 
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| sub change_layer {
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|     my $self = shift;
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|     my ($layer) = @_;
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|     
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|     $self->layer($layer);
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|     
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|     # avoid computing islands and overhangs if they're not needed
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|     if ($self->config->only_retract_when_crossing_perimeters) {
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|         $self->_layer_islands([ $layer->islands ]);
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|         $self->_upper_layer_islands([ $layer->upper_layer_islands ]);
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|     } else {
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|         $self->_layer_islands([]);
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|         $self->_upper_layer_islands([]);
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|     }
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|     $self->_layer_overhangs(
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|         $layer->id > 0 && ($Slic3r::Config->overhangs || $Slic3r::Config->start_perimeters_at_non_overhang)
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|             ? [ map $_->expolygon, grep $_->surface_type == S_TYPE_BOTTOM, map @{$_->slices}, @{$layer->regions} ]
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|             : []
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|         );
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|     if ($self->config->avoid_crossing_perimeters) {
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|         $self->layer_mp(Slic3r::GCode::MotionPlanner->new(
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|             islands => union_ex([ map @$_, @{$layer->slices} ], undef, 1),
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|         ));
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|     }
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|     
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|     my $gcode = "";
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|     if ($self->config->gcode_flavor =~ /^(?:makerware|sailfish)$/) {
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|         $gcode .= sprintf "M73 P%s%s\n",
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|             int(99 * ($layer->id / ($self->layer_count - 1))),
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|             ($self->config->gcode_comments ? ' ; update progress' : '');
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|     }
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|     if ($self->config->first_layer_acceleration) {
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|         if ($layer->id == 0) {
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|             $gcode .= $self->set_acceleration($self->config->first_layer_acceleration);
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|         } elsif ($layer->id == 1) {
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|             $gcode .= $self->set_acceleration($self->config->default_acceleration);
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|         }
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|     }
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|     
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|     $gcode .= $self->move_z($layer->print_z);
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|     return $gcode;
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| }
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| 
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| # this method accepts Z in unscaled coordinates
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| sub move_z {
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|     my $self = shift;
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|     my ($z, $comment) = @_;
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|     
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|     $z += $self->config->z_offset;
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|     
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|     my $gcode = "";
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|     my $current_z = $self->z;
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|     if (!defined $self->z || $z > $self->z) {
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|         # if we're going over the current Z we won't be lifted anymore
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|         $self->lifted(0);
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|         
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|         # this retraction may alter $self->z
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|         $gcode .= $self->retract(move_z => $z) if $self->extruder->retract_layer_change;
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|         $self->speed('travel');
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|         $gcode .= $self->G0(undef, $z, 0, $comment || ('move to next layer (' . $self->layer->id . ')'))
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|             if !defined $self->z || abs($z - ($self->z - $self->lifted)) > epsilon;
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|     } elsif ($z < $self->z && $z > ($self->z - $self->lifted + epsilon)) {
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|         # we're moving to a layer height which is greater than the nominal current one
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|         # (nominal = actual - lifted) and less than the actual one.  we're basically
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|         # advancing to next layer, whose nominal Z is still lower than the previous
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|         # layer Z with lift.
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|         $self->lifted($self->z - $z);
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|     }
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|     
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|     return $gcode;
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| }
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| 
 | |
| sub extrude {
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|     my $self = shift;
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|     
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|     ($_[0]->isa('Slic3r::ExtrusionLoop') || $_[0]->isa('Slic3r::ExtrusionLoop::Packed'))
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|         ? $self->extrude_loop(@_)
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|         : $self->extrude_path(@_);
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| }
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| 
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| sub extrude_loop {
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|     my $self = shift;
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|     my ($loop, $description) = @_;
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|     
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|     # extrude all loops ccw
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|     $loop = $loop->unpack if $loop->isa('Slic3r::ExtrusionLoop::Packed');
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|     my $was_clockwise = $loop->polygon->make_counter_clockwise;
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|     
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|     # find candidate starting points
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|     # start looking for concave vertices not being overhangs
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|     my @concave = ();
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|     if ($Slic3r::Config->start_perimeters_at_concave_points) {
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|         @concave = $loop->polygon->concave_points;
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|     }
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|     my @candidates = ();
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|     if ($Slic3r::Config->start_perimeters_at_non_overhang) {
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|         @candidates = grep !Boost::Geometry::Utils::point_covered_by_multi_polygon($_, $self->_layer_overhangs), @concave;
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|     }
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|     if (!@candidates) {
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|         # if none, look for any concave vertex
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|         @candidates = @concave;
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|         if (!@candidates) {
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|             # if none, look for any non-overhang vertex
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|             if ($Slic3r::Config->start_perimeters_at_non_overhang) {
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|                 @candidates = grep !Boost::Geometry::Utils::point_covered_by_multi_polygon($_, $self->_layer_overhangs), @{$loop->polygon};
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|             }
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|             if (!@candidates) {
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|                 # if none, all points are valid candidates
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|                 @candidates = @{$loop->polygon};
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|             }
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|         }
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|     }
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|     
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|     # find the point of the loop that is closest to the current extruder position
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|     # or randomize if requested
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|     my $last_pos = $self->last_pos;
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|     if ($self->config->randomize_start && $loop->role == EXTR_ROLE_CONTOUR_INTERNAL_PERIMETER) {
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|         $last_pos = Slic3r::Point->new(scale $self->config->print_center->[X], scale $self->config->bed_size->[Y]);
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|         $last_pos->rotate(rand(2*PI), $self->config->print_center);
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|     }
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|     
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|     # split the loop at the starting point and make a path
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|     my $start_at = Slic3r::Geometry::nearest_point($last_pos, \@candidates);
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|     my $extrusion_path = $loop->split_at($start_at);
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|     
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|     # clip the path to avoid the extruder to get exactly on the first point of the loop;
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|     # if polyline was shorter than the clipping distance we'd get a null polyline, so
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|     # we discard it in that case
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|     $extrusion_path->clip_end(scale $extrusion_path->flow_spacing * &Slic3r::LOOP_CLIPPING_LENGTH_OVER_SPACING)
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|         if $self->enable_loop_clipping;
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|     return '' if !@{$extrusion_path->polyline};
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|     
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|     my @paths = ();
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|     # detect overhanging/bridging perimeters
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|     if ($Slic3r::Config->overhangs && $extrusion_path->is_perimeter && @{$self->_layer_overhangs}) {
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|         # get non-overhang paths by subtracting overhangs from the loop
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|         push @paths,
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|             $extrusion_path->subtract_expolygons($self->_layer_overhangs);
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|         
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|         # get overhang paths by intersecting overhangs with the loop
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|         push @paths,
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|             map { $_->role(EXTR_ROLE_OVERHANG_PERIMETER); $_ }
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|             $extrusion_path->intersect_expolygons($self->_layer_overhangs);
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|         
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|         # reapply the nearest point search for starting point
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|         @paths = Slic3r::ExtrusionPath::Collection
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|             ->new(paths => [@paths])
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|             ->chained_path($start_at, 1);
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|     } else {
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|         push @paths, $extrusion_path;
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|     }
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|     
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|     # apply the small perimeter speed
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|     my %params = ();
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|     if ($extrusion_path->is_perimeter && abs($extrusion_path->length) <= &Slic3r::SMALL_PERIMETER_LENGTH) {
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|         $params{speed} = 'small_perimeter';
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|     }
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|     
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|     # extrude along the path
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|     my $gcode = join '', map $self->extrude_path($_, $description, %params), @paths;
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|     $self->wipe_path($extrusion_path->polyline) if $self->enable_wipe;
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|     
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|     # make a little move inwards before leaving loop
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|     if ($loop->role == EXTR_ROLE_EXTERNAL_PERIMETER && $self->config->perimeters > 1) {
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|         # detect angle between last and first segment
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|         # the side depends on the original winding order of the polygon (left for contours, right for holes)
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|         my @points = $was_clockwise ? (-2, 1) : (1, -2);
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|         my $angle = Slic3r::Geometry::angle3points(@{$extrusion_path->polyline}[0, @points]) / 3;
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|         $angle *= -1 if $was_clockwise;
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|         
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|         # create the destination point along the first segment and rotate it
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|         # we make sure we don't exceed the segment length because we don't know
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|         # the rotation of the second segment so we might cross the object boundary
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|         my $first_segment = Slic3r::Line->new(@{$extrusion_path->polyline}[0,1]);
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|         my $distance = min(scale $extrusion_path->flow_spacing, $first_segment->length);
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|         my $point = Slic3r::Geometry::point_along_segment(@$first_segment, $distance);
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|         bless $point, 'Slic3r::Point';
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|         $point->rotate($angle, $extrusion_path->polyline->[0]);
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|         
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|         # generate the travel move
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|         $gcode .= $self->travel_to($point, $loop->role, "move inwards before travel");
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|     }
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|     
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|     return $gcode;
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| }
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| 
 | |
| sub extrude_path {
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|     my $self = shift;
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|     my ($path, $description, %params) = @_;
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|     
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|     $path = $path->unpack if $path->isa('Slic3r::ExtrusionPath::Packed');
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|     $path->simplify(&Slic3r::SCALED_RESOLUTION);
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|     
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|     # detect arcs
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|     if ($self->config->gcode_arcs && !$params{dont_detect_arcs}) {
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|         my $gcode = "";
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|         foreach my $arc_path ($path->detect_arcs) {
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|             $gcode .= $self->extrude_path($arc_path, $description, %params, dont_detect_arcs => 1);
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|         }
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|         return $gcode;
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|     }
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|     
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|     # go to first point of extrusion path
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|     my $gcode = "";
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|     $gcode .= $self->travel_to($path->points->[0], $path->role, "move to first $description point")
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|         if !$self->last_pos || !$self->last_pos->coincides_with($path->points->[0]);
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|     
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|     # compensate retraction
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|     $gcode .= $self->unretract;
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|     
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|     # adjust acceleration
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|     my $acceleration;
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|     if (!$self->config->first_layer_acceleration || $self->layer->id != 0) {
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|         if ($self->config->perimeter_acceleration && $path->is_perimeter) {
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|             $acceleration = $self->config->perimeter_acceleration;
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|         } elsif ($self->config->infill_acceleration && $path->is_fill) {
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|             $acceleration = $self->config->infill_acceleration;
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|         } elsif ($self->config->infill_acceleration && $path->is_bridge) {
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|             $acceleration = $self->config->bridge_acceleration;
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|         }
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|         $gcode .= $self->set_acceleration($acceleration) if $acceleration;
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|     }
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|     
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|     my $area;  # mm^3 of extrudate per mm of tool movement 
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|     if ($path->is_bridge) {
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|         my $s = $path->flow_spacing;
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|         $area = ($s**2) * PI/4;
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|     } else {
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|         my $s = $path->flow_spacing;
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|         my $h = $path->height // $self->layer->height;
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|         $area = $self->extruder->mm3_per_mm($s, $h);
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|     }
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|     
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|     # calculate extrusion length per distance unit
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|     my $e = $self->extruder->e_per_mm3 * $area;
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|     
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|     # set speed
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|     $self->speed( $params{speed} || $role_speeds{$path->role} || die "Unknown role: " . $path->role );
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|     
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|     # extrude arc or line
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|     my $path_length = 0;
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|     if ($path->isa('Slic3r::ExtrusionPath::Arc')) {
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|         $path_length = unscale $path->length;
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|         $gcode .= $self->G2_G3($path->points->[-1], $path->orientation, 
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|             $path->center, $e * unscale $path_length, $description);
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|         $self->wipe_path(undef);
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|     } else {
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|         foreach my $line ($path->lines) {
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|             my $line_length = unscale $line->length;
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|             $path_length += $line_length;
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|             $gcode .= $self->G1($line->[B], undef, $e * $line_length, $description);
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|         }
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|         $self->wipe_path(Slic3r::Polyline->new(reverse @{$path->points}))
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|             if $self->enable_wipe;
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|     }
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|     
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|     if ($self->config->cooling) {
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|         my $path_time = $path_length / $self->speeds->{$self->last_speed} * 60;
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|         if ($self->layer->id == 0) {
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|             $path_time = $self->config->first_layer_speed =~ /^(\d+(?:\.\d+)?)%$/
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|                 ? $path_time / ($1/100)
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|                 : $path_length / $self->config->first_layer_speed * 60;
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|         }
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|         $self->elapsed_time($self->elapsed_time + $path_time);
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|     }
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|     
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|     # reset acceleration
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|     $gcode .= $self->set_acceleration($self->config->default_acceleration)
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|         if $acceleration && $self->config->default_acceleration;
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|     
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|     return $gcode;
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| }
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| 
 | |
| sub travel_to {
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|     my $self = shift;
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|     my ($point, $role, $comment) = @_;
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|     
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|     my $gcode = "";
 | |
|     
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|     my $travel = Slic3r::Line->new($self->last_pos->clone, $point->clone);
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|     
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|     # move travel back to original layer coordinates for the island check.
 | |
|     # note that we're only considering the current object's islands, while we should
 | |
|     # build a more complete configuration space
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|     $travel->translate(-$self->shift_x, -$self->shift_y);
 | |
|     
 | |
|     # skip retraction if the travel move is contained in an island in the current layer
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|     # *and* in an island in the upper layer (so that the ooze will not be visible)
 | |
|     if ($travel->length < scale $self->extruder->retract_before_travel
 | |
|         || ($self->config->only_retract_when_crossing_perimeters
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|             && (first { $_->encloses_line($travel, scaled_epsilon) } @{$self->_upper_layer_islands})
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|             && (first { $_->encloses_line($travel, scaled_epsilon) } @{$self->_layer_islands}))
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|         || ($role == EXTR_ROLE_SUPPORTMATERIAL && (first { $_->encloses_line($travel, scaled_epsilon) } @{$self->layer->support_islands}))
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|         ) {
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|         $self->straight_once(0);
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|         $self->speed('travel');
 | |
|         $gcode .= $self->G0($point, undef, 0, $comment || "");
 | |
|     } elsif (!$self->config->avoid_crossing_perimeters || $self->straight_once) {
 | |
|         $self->straight_once(0);
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|         $gcode .= $self->retract(travel_to => $point);
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|         $self->speed('travel');
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|         $gcode .= $self->G0($point, undef, 0, $comment || "");
 | |
|     } else {
 | |
|         if ($self->new_object) {
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|             $self->new_object(0);
 | |
|             
 | |
|             # represent $point in G-code coordinates
 | |
|             $point = $point->clone;
 | |
|             my @shift = ($self->shift_x, $self->shift_y);
 | |
|             $point->translate(map scale $_, @shift);
 | |
|             
 | |
|             # calculate path (external_mp uses G-code coordinates so we temporary need a null shift)
 | |
|             $self->set_shift(0,0);
 | |
|             $gcode .= $self->_plan($self->external_mp, $point, $comment);
 | |
|             $self->set_shift(@shift);
 | |
|         } else {
 | |
|             $gcode .= $self->_plan($self->layer_mp, $point, $comment);
 | |
|         }
 | |
|     }
 | |
|     
 | |
|     return $gcode;
 | |
| }
 | |
| 
 | |
| sub _plan {
 | |
|     my $self = shift;
 | |
|     my ($mp, $point, $comment) = @_;
 | |
|     
 | |
|     my $gcode = "";
 | |
|     my @travel = $mp->shortest_path($self->last_pos, $point)->lines;
 | |
|     
 | |
|     # if the path is not contained in a single island we need to retract
 | |
|     my $need_retract = !$self->config->only_retract_when_crossing_perimeters;
 | |
|     if (!$need_retract) {
 | |
|         $need_retract = 1;
 | |
|         foreach my $island ($self->layer->upper_layer_islands) {
 | |
|             # discard the island if at any line is not enclosed in it
 | |
|             next if first { !$island->encloses_line($_, scaled_epsilon) } @travel;
 | |
|             # okay, this island encloses the full travel path
 | |
|             $need_retract = 0;
 | |
|             last;
 | |
|         }
 | |
|     }
 | |
|     
 | |
|     # do the retract (the travel_to argument is broken)
 | |
|     $gcode .= $self->retract(travel_to => $point) if $need_retract;
 | |
|     
 | |
|     # append the actual path and return
 | |
|     $self->speed('travel');
 | |
|     # use G1 because we rely on paths being straight (G0 may make round paths)
 | |
|     $gcode .= join '', map $self->G1($_->[B], undef, 0, $comment || ""), @travel;
 | |
|     return $gcode;
 | |
| }
 | |
| 
 | |
| sub retract {
 | |
|     my $self = shift;
 | |
|     my %params = @_;
 | |
|     
 | |
|     # get the retraction length and abort if none
 | |
|     my ($length, $restart_extra, $comment) = $params{toolchange}
 | |
|         ? ($self->extruder->retract_length_toolchange,  $self->extruder->retract_restart_extra_toolchange,  "retract for tool change")
 | |
|         : ($self->extruder->retract_length,             $self->extruder->retract_restart_extra,             "retract");
 | |
|     
 | |
|     # if we already retracted, reduce the required amount of retraction
 | |
|     $length -= $self->extruder->retracted;
 | |
|     return "" unless $length > 0;
 | |
|     my $gcode = "";
 | |
|     
 | |
|     # wipe
 | |
|     my $wipe_path;
 | |
|     if ($self->extruder->wipe && $self->wipe_path) {
 | |
|         $wipe_path = Slic3r::Polyline->new($self->last_pos, @{$self->wipe_path}[1..$#{$self->wipe_path}])
 | |
|             ->clip_start($self->extruder->scaled_wipe_distance);
 | |
|     }
 | |
|     
 | |
|     # prepare moves
 | |
|     my $retract = [undef, undef, -$length, $comment];
 | |
|     my $lift    = ($self->extruder->retract_lift == 0 || defined $params{move_z}) && !$self->lifted
 | |
|         ? undef
 | |
|         : [undef, $self->z + $self->extruder->retract_lift, 0, 'lift plate during travel'];
 | |
|     
 | |
|     if (($self->config->g0 || $self->config->gcode_flavor eq 'mach3') && $params{travel_to}) {
 | |
|         $self->speed('travel');
 | |
|         if ($lift) {
 | |
|             # combine lift and retract
 | |
|             $lift->[2] = $retract->[2];
 | |
|             $gcode .= $self->G0(@$lift);
 | |
|         } else {
 | |
|             # combine travel and retract
 | |
|             my $travel = [$params{travel_to}, undef, $retract->[2], "travel and $comment"];
 | |
|             $gcode .= $self->G0(@$travel);
 | |
|         }
 | |
|     } elsif (($self->config->g0 || $self->config->gcode_flavor eq 'mach3') && defined $params{move_z}) {
 | |
|         # combine Z change and retraction
 | |
|         $self->speed('travel');
 | |
|         my $travel = [undef, $params{move_z}, $retract->[2], "change layer and $comment"];
 | |
|         $gcode .= $self->G0(@$travel);
 | |
|     } else {
 | |
|         # check that we have a positive wipe length
 | |
|         if ($wipe_path && (my $total_wipe_length = $wipe_path->length)) {
 | |
|             $self->speed('travel');
 | |
|             
 | |
|             # subdivide the retraction
 | |
|             my $retracted = 0;
 | |
|             for (1 .. $#$wipe_path) {
 | |
|                 my $segment_length = $wipe_path->[$_-1]->distance_to($wipe_path->[$_]);
 | |
|                 $retracted += my $e = $retract->[2] * ($segment_length / $total_wipe_length);
 | |
|                 $gcode .= $self->G1($wipe_path->[$_], undef, $e, $retract->[3] . ";_WIPE");
 | |
|             }
 | |
|             if ($retracted > $retract->[2]) {
 | |
|                 # if we retracted less than we had to, retract the remainder
 | |
|                 # TODO: add regression test
 | |
|                 $gcode .= $self->G1(undef, undef, $retract->[2] - $retracted, $comment);
 | |
|             }
 | |
|         } else {
 | |
|             $self->speed('retract');
 | |
|             $gcode .= $self->G1(@$retract);
 | |
|         }
 | |
|         if (!$self->lifted) {
 | |
|             $self->speed('travel');
 | |
|             if (defined $params{move_z} && $self->extruder->retract_lift > 0) {
 | |
|                 my $travel = [undef, $params{move_z} + $self->extruder->retract_lift, 0, 'move to next layer (' . $self->layer->id . ') and lift'];
 | |
|                 $gcode .= $self->G0(@$travel);
 | |
|                 $self->lifted($self->extruder->retract_lift);
 | |
|             } elsif ($lift) {
 | |
|                 $gcode .= $self->G1(@$lift);
 | |
|             }
 | |
|         }
 | |
|     }
 | |
|     $self->extruder->retracted($self->extruder->retracted + $length);
 | |
|     $self->extruder->restart_extra($restart_extra);
 | |
|     $self->lifted($self->extruder->retract_lift) if $lift;
 | |
|     
 | |
|     # reset extrusion distance during retracts
 | |
|     # this makes sure we leave sufficient precision in the firmware
 | |
|     $gcode .= $self->reset_e;
 | |
|     
 | |
|     $gcode .= "M103 ; extruder off\n" if $self->config->gcode_flavor eq 'makerware';
 | |
|     
 | |
|     return $gcode;
 | |
| }
 | |
| 
 | |
| sub unretract {
 | |
|     my $self = shift;
 | |
|     
 | |
|     my $gcode = "";
 | |
|     $gcode .= "M101 ; extruder on\n" if $self->config->gcode_flavor eq 'makerware';
 | |
|     
 | |
|     if ($self->lifted) {
 | |
|         $self->speed('travel');
 | |
|         $gcode .= sprintf ";AAA selfz = %s, lifted = %s\n", $self->z // 'nd', $self->lifted // 'nd';
 | |
|         $gcode .= $self->G0(undef, $self->z - $self->lifted, 0, 'restore layer Z');
 | |
|         $self->lifted(0);
 | |
|     }
 | |
|     
 | |
|     my $to_unretract = $self->extruder->retracted + $self->extruder->restart_extra;
 | |
|     if ($to_unretract) {
 | |
|         $self->speed('retract');
 | |
|         # use G1 instead of G0 because G0 will blend the restart with the previous travel move
 | |
|         $gcode .= $self->G1(undef, undef, $to_unretract, "compensate retraction");
 | |
|         $self->extruder->retracted(0);
 | |
|         $self->extruder->restart_extra(0);
 | |
|     }
 | |
|     
 | |
|     return $gcode;
 | |
| }
 | |
| 
 | |
| sub reset_e {
 | |
|     my $self = shift;
 | |
|     return "" if $self->config->gcode_flavor =~ /^(?:mach3|makerware|sailfish)$/;
 | |
|     
 | |
|     $self->extruder->e(0) if $self->extruder;
 | |
|     return sprintf "G92 %s0%s\n", $self->config->extrusion_axis, ($self->config->gcode_comments ? ' ; reset extrusion distance' : '')
 | |
|         if $self->config->extrusion_axis && !$self->config->use_relative_e_distances;
 | |
| }
 | |
| 
 | |
| sub set_acceleration {
 | |
|     my $self = shift;
 | |
|     my ($acceleration) = @_;
 | |
|     return "" if !$acceleration;
 | |
|     
 | |
|     return sprintf "M204 S%s%s\n",
 | |
|         $acceleration, ($self->config->gcode_comments ? ' ; adjust acceleration' : '');
 | |
| }
 | |
| 
 | |
| sub G0 {
 | |
|     my $self = shift;
 | |
|     return $self->G1(@_) if !($self->config->g0 || $self->config->gcode_flavor eq 'mach3');
 | |
|     return $self->_G0_G1("G0", @_);
 | |
| }
 | |
| 
 | |
| sub G1 {
 | |
|     my $self = shift;
 | |
|     return $self->_G0_G1("G1", @_);
 | |
| }
 | |
| 
 | |
| sub _G0_G1 {
 | |
|     my $self = shift;
 | |
|     my ($gcode, $point, $z, $e, $comment) = @_;
 | |
|     my $dec = $self->dec;
 | |
|     
 | |
|     if ($point) {
 | |
|         $gcode .= sprintf " X%.${dec}f Y%.${dec}f", 
 | |
|             ($point->x * &Slic3r::SCALING_FACTOR) + $self->shift_x - $self->extruder->extruder_offset->[X], 
 | |
|             ($point->y * &Slic3r::SCALING_FACTOR) + $self->shift_y - $self->extruder->extruder_offset->[Y]; #**
 | |
|         $gcode = $self->_limit_frequency($point) . $gcode;
 | |
|         $self->last_pos($point->clone);
 | |
|     }
 | |
|     if (defined $z && (!defined $self->z || $z != $self->z)) {
 | |
|         $self->z($z);
 | |
|         $gcode .= sprintf " Z%.${dec}f", $z;
 | |
|     }
 | |
|     
 | |
|     return $self->_Gx($gcode, $e, $comment);
 | |
| }
 | |
| 
 | |
| sub G2_G3 {
 | |
|     my $self = shift;
 | |
|     my ($point, $orientation, $center, $e, $comment) = @_;
 | |
|     my $dec = $self->dec;
 | |
|     
 | |
|     my $gcode = $orientation eq 'cw' ? "G2" : "G3";
 | |
|     
 | |
|     $gcode .= sprintf " X%.${dec}f Y%.${dec}f", 
 | |
|         ($point->x * &Slic3r::SCALING_FACTOR) + $self->shift_x - $self->extruder->extruder_offset->[X], 
 | |
|         ($point->y * &Slic3r::SCALING_FACTOR) + $self->shift_y - $self->extruder->extruder_offset->[Y]; #**
 | |
|     
 | |
|     # XY distance of the center from the start position
 | |
|     $gcode .= sprintf " I%.${dec}f J%.${dec}f",
 | |
|         ($center->[X] - $self->last_pos->[X]) * &Slic3r::SCALING_FACTOR,
 | |
|         ($center->[Y] - $self->last_pos->[Y]) * &Slic3r::SCALING_FACTOR;
 | |
|     
 | |
|     $self->last_pos($point);
 | |
|     return $self->_Gx($gcode, $e, $comment);
 | |
| }
 | |
| 
 | |
| sub _Gx {
 | |
|     my $self = shift;
 | |
|     my ($gcode, $e, $comment) = @_;
 | |
|     my $dec = $self->dec;
 | |
|     
 | |
|     # output speed if it's different from last one used
 | |
|     # (goal: reduce gcode size)
 | |
|     my $append_bridge_off = 0;
 | |
|     my $F;
 | |
|     if ($self->speed ne $self->last_speed) {
 | |
|         if ($self->speed eq 'bridge') {
 | |
|             $gcode = ";_BRIDGE_FAN_START\n$gcode";
 | |
|         } elsif ($self->last_speed eq 'bridge') {
 | |
|             $append_bridge_off = 1;
 | |
|         }
 | |
|         
 | |
|         # apply the speed reduction for print moves on bottom layer
 | |
|         $F = $self->speed eq 'retract'
 | |
|             ? ($self->extruder->retract_speed_mm_min)
 | |
|             : $self->speeds->{$self->speed} // $self->speed;
 | |
|         if ($e && $self->layer && $self->layer->id == 0 && $comment !~ /retract/) {
 | |
|             $F = $self->config->first_layer_speed =~ /^(\d+(?:\.\d+)?)%$/
 | |
|                 ? ($F * $1/100)
 | |
|                 : $self->config->first_layer_speed * 60;
 | |
|         }
 | |
|         $self->last_speed($self->speed);
 | |
|         $self->last_f($F);
 | |
|     }
 | |
|     $gcode .= sprintf " F%.${dec}f", $F if defined $F;
 | |
|     
 | |
|     # output extrusion distance
 | |
|     if ($e && $self->config->extrusion_axis) {
 | |
|         $self->extruder->e(0) if $self->config->use_relative_e_distances;
 | |
|         $self->extruder->e($self->extruder->e + $e);
 | |
|         $self->total_extrusion_length($self->total_extrusion_length + $e);
 | |
|         $gcode .= sprintf " %s%.5f", $self->config->extrusion_axis, $self->extruder->e;
 | |
|     }
 | |
|     
 | |
|     $gcode .= sprintf " ; %s", $comment if $comment && $self->config->gcode_comments;
 | |
|     if ($append_bridge_off) {
 | |
|         $gcode = ";_BRIDGE_FAN_END\n$gcode";
 | |
|     }
 | |
|     return "$gcode\n";
 | |
| }
 | |
| 
 | |
| sub set_extruder {
 | |
|     my $self = shift;
 | |
|     my ($extruder) = @_;
 | |
|     
 | |
|     # return nothing if this extruder was already selected
 | |
|     return "" if (defined $self->extruder) && ($self->extruder->id == $extruder->id);
 | |
|     
 | |
|     # if we are running a single-extruder setup, just set the extruder and return nothing
 | |
|     if (!$self->multiple_extruders) {
 | |
|         $self->extruder($extruder);
 | |
|         return "";
 | |
|     }
 | |
|     
 | |
|     # trigger retraction on the current extruder (if any) 
 | |
|     my $gcode = "";
 | |
|     $gcode .= $self->retract(toolchange => 1) if defined $self->extruder;
 | |
|     
 | |
|     # append custom toolchange G-code
 | |
|     if (defined $self->extruder && $self->config->toolchange_gcode) {
 | |
|         $gcode .= sprintf "%s\n", $self->config->replace_options($self->config->toolchange_gcode, {
 | |
|             previous_extruder   => $self->extruder->id,
 | |
|             next_extruder       => $extruder->id,
 | |
|         });
 | |
|     }
 | |
|     
 | |
|     # set the new extruder
 | |
|     $self->extruder($extruder);
 | |
|     $gcode .= sprintf "%s%d%s\n", 
 | |
|         ($self->config->gcode_flavor eq 'makerware'
 | |
|             ? 'M135 T'
 | |
|             : $self->config->gcode_flavor eq 'sailfish'
 | |
|                 ? 'M108 T'
 | |
|                 : 'T'),
 | |
|         $extruder->id,
 | |
|         ($self->config->gcode_comments ? ' ; change extruder' : '');
 | |
|     
 | |
|     $gcode .= $self->reset_e;
 | |
|     
 | |
|     return $gcode;
 | |
| }
 | |
| 
 | |
| sub set_fan {
 | |
|     my $self = shift;
 | |
|     my ($speed, $dont_save) = @_;
 | |
|     
 | |
|     if ($self->last_fan_speed != $speed || $dont_save) {
 | |
|         $self->last_fan_speed($speed) if !$dont_save;
 | |
|         if ($speed == 0) {
 | |
|             my $code = $self->config->gcode_flavor eq 'teacup'
 | |
|                 ? 'M106 S0'
 | |
|                 : $self->config->gcode_flavor =~ /^(?:makerware|sailfish)$/
 | |
|                     ? 'M127'
 | |
|                     : 'M107';
 | |
|             return sprintf "$code%s\n", ($self->config->gcode_comments ? ' ; disable fan' : '');
 | |
|         } else {
 | |
|             if ($self->config->gcode_flavor =~ /^(?:makerware|sailfish)$/) {
 | |
|                 return sprintf "M126%s\n", ($self->config->gcode_comments ? ' ; enable fan' : '');
 | |
|             } else {
 | |
|                 return sprintf "M106 %s%d%s\n", ($self->config->gcode_flavor eq 'mach3' ? 'P' : 'S'),
 | |
|                     (255 * $speed / 100), ($self->config->gcode_comments ? ' ; enable fan' : '');
 | |
|             }
 | |
|         }
 | |
|     }
 | |
|     return "";
 | |
| }
 | |
| 
 | |
| sub set_temperature {
 | |
|     my $self = shift;
 | |
|     my ($temperature, $wait, $tool) = @_;
 | |
|     
 | |
|     return "" if $wait && $self->config->gcode_flavor =~ /^(?:makerware|sailfish)$/;
 | |
|     
 | |
|     my ($code, $comment) = ($wait && $self->config->gcode_flavor ne 'teacup')
 | |
|         ? ('M109', 'wait for temperature to be reached')
 | |
|         : ('M104', 'set temperature');
 | |
|     my $gcode = sprintf "$code %s%d %s; $comment\n",
 | |
|         ($self->config->gcode_flavor eq 'mach3' ? 'P' : 'S'), $temperature,
 | |
|         (defined $tool && ($self->multiple_extruders || $self->config->gcode_flavor =~ /^(?:makerware|sailfish)$/)) ? "T$tool " : "";
 | |
|     
 | |
|     $gcode .= "M116 ; wait for temperature to be reached\n"
 | |
|         if $self->config->gcode_flavor eq 'teacup' && $wait;
 | |
|     
 | |
|     return $gcode;
 | |
| }
 | |
| 
 | |
| sub set_bed_temperature {
 | |
|     my $self = shift;
 | |
|     my ($temperature, $wait) = @_;
 | |
|     
 | |
|     my ($code, $comment) = ($wait && $self->config->gcode_flavor ne 'teacup')
 | |
|         ? (($self->config->gcode_flavor =~ /^(?:makerware|sailfish)$/ ? 'M109' : 'M190'), 'wait for bed temperature to be reached')
 | |
|         : ('M140', 'set bed temperature');
 | |
|     my $gcode = sprintf "$code %s%d ; $comment\n",
 | |
|         ($self->config->gcode_flavor eq 'mach3' ? 'P' : 'S'), $temperature;
 | |
|     
 | |
|     $gcode .= "M116 ; wait for bed temperature to be reached\n"
 | |
|         if $self->config->gcode_flavor eq 'teacup' && $wait;
 | |
|     
 | |
|     return $gcode;
 | |
| }
 | |
| 
 | |
| # http://hydraraptor.blogspot.it/2010/12/frequency-limit.html
 | |
| sub _limit_frequency {
 | |
|     my $self = shift;
 | |
|     my ($point) = @_;
 | |
|     
 | |
|     return '' if $self->config->vibration_limit == 0;
 | |
|     my $min_time = 1 / ($self->config->vibration_limit * 60);  # in minutes
 | |
|     
 | |
|     # calculate the move vector and move direction
 | |
|     my $vector = Slic3r::Line->new($self->last_pos, $point)->vector;
 | |
|     my @dir = map { $vector->[B][$_] <=> 0 } X,Y;
 | |
|     
 | |
|     my $time = (unscale $vector->length) / $self->speeds->{$self->speed};  # in minutes
 | |
|     if ($time > 0) {
 | |
|         my @pause = ();
 | |
|         foreach my $axis (X,Y) {
 | |
|             if ($dir[$axis] != 0 && $self->last_dir->[$axis] != $dir[$axis]) {
 | |
|                 if ($self->last_dir->[$axis] != 0) {
 | |
|                     # this axis is changing direction: check whether we need to pause
 | |
|                     if ($self->dir_time->[$axis] < $min_time) {
 | |
|                         push @pause, ($min_time - $self->dir_time->[$axis]);
 | |
|                     }
 | |
|                 }
 | |
|                 $self->last_dir->[$axis] = $dir[$axis];
 | |
|                 $self->dir_time->[$axis] = 0;
 | |
|             }
 | |
|             $self->dir_time->[$axis] += $time;
 | |
|         }
 | |
|         
 | |
|         if (@pause) {
 | |
|             return sprintf "G4 P%d\n", max(@pause) * 60 * 1000;
 | |
|         }
 | |
|     }
 | |
|     
 | |
|     return '';
 | |
| }
 | |
| 
 | |
| 1;
 | 
