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			81 lines
		
	
	
	
		
			2.9 KiB
		
	
	
	
		
			Perl
		
	
	
	
	
	
			
		
		
	
	
			81 lines
		
	
	
	
		
			2.9 KiB
		
	
	
	
		
			Perl
		
	
	
	
	
	
| package Slic3r::GCode::SpiralVase;
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| use Moo;
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| 
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| has 'config' => (is => 'ro', required => 1);
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| has 'enable' => (is => 'rw', default => sub { 0 });
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| has 'reader' => (is => 'ro', default => sub { Slic3r::GCode::Reader->new });
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| 
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| use Slic3r::Geometry qw(unscale);
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| 
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| sub process_layer {
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|     my $self = shift;
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|     my ($gcode) = @_;
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|     
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|     # This post-processor relies on several assumptions:
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|     # - all layers are processed through it, including those that are not supposed
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|     #   to be transformed, in order to update the reader with the XY positions
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|     # - each call to this method includes a full layer, with a single Z move
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|     #   at the beginning
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|     # - each layer is composed by suitable geometry (i.e. a single complete loop)
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|     # - loops were not clipped before calling this method
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|     
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|     # if we're not going to modify G-code, just feed it to the reader
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|     # in order to update positions
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|     if (!$self->enable) {
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|         $self->reader->parse($gcode, sub {});
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|         return $gcode;
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|     }
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|     
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|     # get total XY length for this layer by summing all extrusion moves
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|     my $total_layer_length = 0;
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|     my $layer_height = 0;
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|     my $z = undef;
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|     $self->reader->clone->parse($gcode, sub {
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|         my ($reader, $cmd, $args, $info) = @_;
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|         
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|         if ($cmd eq 'G1') {
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|             if ($info->{extruding}) {
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|                 $total_layer_length += $info->{dist_XY};
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|             } elsif (exists $args->{Z}) {
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|                 $layer_height += $info->{dist_Z};
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|                 $z //= $args->{Z};
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|             }
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|         }
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|     });
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|     
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|     #use XXX; XXX [ $gcode, $layer_height, $z, $total_layer_length ];
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|     # remove layer height from initial Z
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|     $z -= $layer_height;
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|     
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|     my $new_gcode = "";
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|     $self->reader->parse($gcode, sub {
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|         my ($reader, $cmd, $args, $info) = @_;
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|         
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|         if ($cmd eq 'G1' && exists $args->{Z}) {
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|             # if this is the initial Z move of the layer, replace it with a
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|             # (redundant) move to the last Z of previous layer
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|             my $line = $info->{raw};
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|             $line =~ s/ Z[.0-9]+/ Z$z/;
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|             $new_gcode .= "$line\n";
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|         } elsif ($cmd eq 'G1' && !exists($args->{Z}) && $info->{dist_XY}) {
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|             # horizontal move
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|             my $line = $info->{raw};
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|             if ($info->{extruding}) {
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|                 $z += $info->{dist_XY} * $layer_height / $total_layer_length;
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|                 $line =~ s/^G1 /sprintf 'G1 Z%.3f ', $z/e;
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|                 $new_gcode .= "$line\n";
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|             }
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|             # skip travel moves: the move to first perimeter point will
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|             # cause a visible seam when loops are not aligned in XY; by skipping
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|             # it we blend the first loop move in the XY plane (although the smoothness
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|             # of such blend depend on how long the first segment is; maybe we should
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|             # enforce some minimum length?)
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|         } else {
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|             $new_gcode .= "$info->{raw}\n";
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|         }
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|     });
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|     
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|     return $new_gcode;
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| }
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| 
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| 1;
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