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			154 lines
		
	
	
	
		
			4.2 KiB
		
	
	
	
		
			Perl
		
	
	
	
	
	
			
		
		
	
	
			154 lines
		
	
	
	
		
			4.2 KiB
		
	
	
	
		
			Perl
		
	
	
	
	
	
| package Slic3r::Format::STL;
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| use Moo;
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| 
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| use Slic3r::Geometry qw(X Y Z triangle_normal);
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| 
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| sub read_file {
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|     my $self = shift;
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|     my ($file) = @_;
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|     
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|     Slic3r::open(\my $fh, '<', $file) or die "Failed to open $file\n";
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|     
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|     # let's detect whether file is ASCII or binary
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|     my $mode;
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|     {
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|         my $size = +(stat $fh)[7];
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|         $mode = 'ascii' if $size < 80 + 4;
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|         
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|         # skip binary header
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|         seek $fh, 80, 0;
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|         read $fh, my $buf, 4;
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|         my $triangle_count = unpack 'L', $buf;
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|         die "STL file seems invalid, could not read facet count\n" if !defined $triangle_count;
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|         my $expected_size =
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|             + 80 # header
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|             +  4 # count
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|             + $triangle_count * (
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|                 + 4   # normal, pt,pt,pt (vectors)
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|                   * 4   # bytes per value
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|                   * 3   # values per vector
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|                 + 2 # the trailing 'short'
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|             );
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|         $mode = ($size == $expected_size) ? 'binary' : 'ascii';
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|     }
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|     
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|     my $facets = [];
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|     my $vertices = [];
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|     $mode eq 'ascii'
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|         ? _read_ascii($fh, $facets, $vertices)
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|         : _read_binary($fh, $facets, $vertices);
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|     close $fh;
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|     
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|     my $model = Slic3r::Model->new;
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|     my $object = $model->add_object(vertices => $vertices);
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|     my $volume = $object->add_volume(facets => $facets);
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|     return $model;
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| }
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| 
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| sub _read_ascii {
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|     my ($fh, $facets, $vertices) = @_;
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|     
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|     my $point_re = qr/(([^ ]+)\s+([^ ]+)\s+([^ ]+))/;
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|     
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|     my $facet;
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|     my %vertices_map = ();
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|     seek $fh, 0, 0;
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|     while (my $_ = <$fh>) {
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|         if (!$facet) {
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|             /^\s*facet\s+normal\s+/ or next;
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|             $facet = [];  # ignore normal
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|         } else {
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|             if (/^\s*endfacet/) {
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|                 push @$facets, $facet;
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|                 undef $facet;
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|             } else {
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|                 /^\s*vertex\s+$point_re/o or next;
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|                 my $vertex_id = $1;
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|                 my $vertex_idx;
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|                 if (exists $vertices_map{$vertex_id}) {
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|                     $vertex_idx = $vertices_map{$vertex_id};
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|                 } else {
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|                     push @$vertices, [map $_ * 1, $2, $3, $4];
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|                     $vertex_idx = $vertices_map{$vertex_id} = $#$vertices;
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|                 }
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|                 push @$facet, $vertex_idx;
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|             }
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|         }
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|     }
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|     if ($facet) {
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|         die "STL file seems invalid\n";
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|     }
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| }
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| 
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| sub _read_binary {
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|     my ($fh, $facets, $vertices) = @_;
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|     
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|     die "bigfloat" unless length(pack "f", 1) == 4;
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|     
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|     my %vertices_map = ();
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|     binmode $fh;
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|     seek $fh, 80 + 4, 0;
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|     while (read $fh, my $_, 4*4*3+2) {
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|         push @$facets, my $facet = [];
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|         for (unpack 'x[f3](a[f3])3') {  # ignore normal
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|             my $vertex_idx;
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|             if (exists $vertices_map{$_}) {
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|                 $vertex_idx = $vertices_map{$_};
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|             } else {
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|                 push @$vertices, [ unpack 'f<3', $_ ];
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|                 $vertex_idx = $vertices_map{$_} = $#$vertices;
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|             }
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|             push @$facet, $vertex_idx;
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|         }
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|     }
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| }
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| 
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| sub write_file {
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|     my $self = shift;
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|     my ($file, $model, %params) = @_;
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|     
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|     Slic3r::open(\my $fh, '>', $file);
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|     
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|     $params{binary}
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|         ? _write_binary($fh, $model->mesh)
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|         : _write_ascii($fh, $model->mesh);
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|     
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|     close $fh;
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| }
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| 
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| sub _write_binary {
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|     my ($fh, $mesh) = @_;
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|     
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|     die "bigfloat" unless length(pack "f", 1) == 4;
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|     
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|     binmode $fh;
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|     print $fh pack 'x80';
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|     print $fh pack 'L', scalar(@{$mesh->facets});
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|     foreach my $facet (@{$mesh->facets}) {
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|         print $fh pack '(f<3)4S',
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|             @{_facet_normal($mesh, $facet)},
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|             (map @{$mesh->vertices->[$_]}, @$facet[-3..-1]),
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|             0;
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|     }
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| }
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| 
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| sub _write_ascii {
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|     my ($fh, $mesh) = @_;
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|     
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|     printf $fh "solid\n";
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|     foreach my $facet (@{$mesh->facets}) {
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|         printf $fh "   facet normal %f %f %f\n", @{_facet_normal($mesh, $facet)};
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|         printf $fh "      outer loop\n";
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|         printf $fh "         vertex %f %f %f\n", @{$mesh->vertices->[$_]} for @$facet[-3..-1];
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|         printf $fh "      endloop\n";
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|         printf $fh "   endfacet\n";
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|     }
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|     printf $fh "endsolid\n";
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| }
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| 
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| sub _facet_normal {
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|     my ($mesh, $facet) = @_;
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|     return triangle_normal(map $mesh->vertices->[$_], @$facet[-3..-1]);
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| }
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| 
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| 1;
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