Store width and height in ExtrusionEntity objects for debugging purposes
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78a08e0665
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@ -9,6 +9,8 @@ sub split_at {
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polyline => $self->polygon->split_at(@_),
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role => $self->role,
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mm3_per_mm => $self->mm3_per_mm,
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width => $self->width,
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height => $self->height,
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);
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}
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@ -238,6 +238,8 @@ sub make_fill {
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? (($surface->surface_type == S_TYPE_TOP) ? EXTR_ROLE_TOPSOLIDFILL : EXTR_ROLE_SOLIDFILL)
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: EXTR_ROLE_FILL),
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mm3_per_mm => $mm3_per_mm,
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width => $flow->width,
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height => $h,
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), @polylines,
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);
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push @fills_ordering_points, $polylines[0]->first_point;
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@ -264,6 +264,8 @@ sub make_perimeters {
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polygon => $polygon,
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role => $role,
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mm3_per_mm => $mm3_per_mm,
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width => $perimeter_flow->width,
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height => $self->height,
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));
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# save the children
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@ -278,6 +280,8 @@ sub make_perimeters {
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polyline => $polyline,
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role => EXTR_ROLE_EXTERNAL_PERIMETER,
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mm3_per_mm => $mm3_per_mm,
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width => $perimeter_flow->width,
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height => $self->height,
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));
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}
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}
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@ -355,6 +359,8 @@ sub _fill_gaps {
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my %path_args = (
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role => EXTR_ROLE_GAPFILL,
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mm3_per_mm => $flow->mm3_per_mm($self->height),
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width => $flow->width,
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height => $self->height,
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);
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my @polylines = map @{$_->medial_axis($max, $min/2)}, @$this;
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@ -709,6 +709,8 @@ sub make_skirt {
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polygon => Slic3r::Polygon->new(@$loop),
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role => EXTR_ROLE_SKIRT,
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mm3_per_mm => $mm3_per_mm,
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width => $flow->width,
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height => $first_layer_height,
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));
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if ($self->config->min_skirt_length > 0) {
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@ -790,6 +792,8 @@ sub make_brim {
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polygon => Slic3r::Polygon->new(@$_),
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role => EXTR_ROLE_SKIRT,
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mm3_per_mm => $mm3_per_mm,
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width => $flow->width,
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height => $first_layer_height,
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), reverse @{union_pt_chained(\@loops)});
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}
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@ -544,6 +544,8 @@ sub generate_toolpaths {
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polyline => $_,
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role => EXTR_ROLE_SUPPORTMATERIAL,
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mm3_per_mm => $mm3_per_mm,
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width => $interface_flow->width,
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height => $layer->height,
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), @loops;
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$layer->support_interface_fills->append(@loops);
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@ -587,6 +589,8 @@ sub generate_toolpaths {
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polyline => Slic3r::Polyline->new(@$_),
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role => EXTR_ROLE_SUPPORTMATERIAL,
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mm3_per_mm => $mm3_per_mm,
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width => $params->{flow}->width,
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height => $layer->height,
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), @p;
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}
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@ -618,6 +622,8 @@ sub generate_toolpaths {
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polyline => $_->split_at_first_point,
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role => EXTR_ROLE_SUPPORTMATERIAL,
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mm3_per_mm => $mm3_per_mm,
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width => $flow->width,
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height => $layer->height,
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), map @$_, @$to_infill;
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# TODO: use offset2_ex()
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@ -638,6 +644,8 @@ sub generate_toolpaths {
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polyline => Slic3r::Polyline->new(@$_),
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role => EXTR_ROLE_SUPPORTMATERIAL,
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mm3_per_mm => $mm3_per_mm,
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width => $params->{flow}->width,
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height => $layer->height,
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), @p;
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}
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@ -5,19 +5,21 @@ use List::Util qw(first max);
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use Slic3r::Geometry qw(X Y A B X1 Y1 X2 Y2 unscale);
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use Slic3r::Geometry::Clipper qw(union_ex intersection_pl);
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use SVG;
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use Slic3r::SVG;
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has 'scale' => (is => 'ro', default => sub {30});
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has 'print' => (is => 'ro', required => 1);
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has 'y_percent' => (is => 'ro', default => sub {0.5});
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has 'line' => (is => 'lazy');
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has 'line' => (is => 'rw');
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has 'height' => (is => 'rw');
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sub _build_line {
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sub BUILD {
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my $self = shift;
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my $bb = $self->print->bounding_box;
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my $y = $bb->size->[Y] * $self->y_percent;
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return Slic3r::Line->new([ $bb->x_min, $y ], [ $bb->x_max, $y ]);
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my $y = ($bb->y_min + $bb->y_max) * $self->y_percent;
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my $line = Slic3r::Line->new([ $bb->x_min, $y ], [ $bb->x_max, $y ]);
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$self->line($line);
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}
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sub export_svg {
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@ -79,27 +81,40 @@ sub _plot {
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my (@rectangles, @circles) = ();
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foreach my $object (@{$self->print->objects}) {
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foreach my $copy (@{$object->shifted_copies}) {
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foreach my $copy (@{$object->_shifted_copies}) {
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foreach my $layer (@{$object->layers}, @{$object->support_layers}) {
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# get all ExtrusionPath objects
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my @paths =
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map { $_->polyline->translate(@$copy); $_ }
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map { $_->isa('Slic3r::ExtrusionLoop') ? $_->split_at_first_point : $_ }
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map { $_->isa('Slic3r::ExtrusionLoop') ? $_->split_at_first_point : $_->clone }
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map { $_->isa('Slic3r::ExtrusionPath::Collection') ? @$_ : $_ }
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grep defined $_,
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$filter->($layer);
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$_->polyline->translate(@$copy) for @paths;
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require "Slic3r/SVG.pm";
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Slic3r::SVG::output(
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"line.svg",
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no_arrows => 1,
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#polygon => $line->grow(Slic3r::Geometry::scale $path->width/2),
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polygons => [ $object->bounding_box->polygon ],
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lines => [ $self->line ],
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red_polylines => [ map $_->polyline, @paths ],
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);
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exit;
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foreach my $path (@paths) {
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foreach my $line (@{$path->lines}) {
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my @intersections = @{intersection_pl(
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[ $self->line->as_polyline ],
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$line->grow(Slic3r::Geometry::scale $path->flow_spacing/2),
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$line->grow(Slic3r::Geometry::scale $path->width/2),
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)};
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die "Intersection has more than two points!\n" if first { @$_ > 2 } @intersections;
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if ($path->is_bridge) {
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foreach my $line (@intersections) {
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my $radius = $path->flow_spacing / 2;
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my $radius = $path->width / 2;
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my $width = unscale abs($line->[B][X] - $line->[A][X]);
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if ((10 * Slic3r::Geometry::scale $radius) < $width) {
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# we're cutting the path in the longitudinal direction, so we've got a rectangle
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@ -148,7 +163,7 @@ sub _plot {
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sub _y {
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my $self = shift;
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my ($y) = @_;
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return $y;
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return $self->height - $y;
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}
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@ -112,7 +112,9 @@ sub new {
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return $class->_new(
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$args{polygon}, # required
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$args{role}, # required
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$args{mm3_per_mm} // -1,
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$args{mm3_per_mm} // die("Missing required mm3_per_mm in ExtrusionLoop constructor"),
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$args{width} // -1,
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$args{height} // -1,
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);
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}
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@ -123,6 +125,8 @@ sub clone {
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$args{polygon} // $self->polygon,
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$args{role} // $self->role,
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$args{mm3_per_mm} // $self->mm3_per_mm,
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$args{width} // $self->width,
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$args{height} // $self->height,
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);
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}
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@ -142,7 +146,9 @@ sub new {
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return $class->_new(
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$args{polyline}, # required
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$args{role}, # required
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$args{mm3_per_mm} // -1,
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$args{mm3_per_mm} // die("Missing required mm3_per_mm in ExtrusionPath constructor"),
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$args{width} // -1,
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$args{height} // -1,
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);
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}
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@ -153,6 +159,8 @@ sub clone {
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$args{polyline} // $self->polyline,
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$args{role} // $self->role,
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$args{mm3_per_mm} // $self->mm3_per_mm,
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$args{width} // $self->width,
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$args{height} // $self->height,
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);
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}
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@ -172,6 +172,8 @@ ExtrusionLoop::split_at_index(int index) const
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path->polyline = *poly;
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path->role = this->role;
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path->mm3_per_mm = this->mm3_per_mm;
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path->width = this->width;
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path->height = this->height;
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delete poly;
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return path;
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@ -29,10 +29,13 @@ enum ExtrusionRole {
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class ExtrusionEntity
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{
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public:
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ExtrusionEntity() : mm3_per_mm(-1), width(-1), height(-1) {};
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virtual ExtrusionEntity* clone() const = 0;
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virtual ~ExtrusionEntity() {};
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ExtrusionRole role;
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double mm3_per_mm; // mm^3 of plastic per mm of linear head motion
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float width;
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float height;
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virtual void reverse() = 0;
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virtual Point first_point() const = 0;
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virtual Point last_point() const = 0;
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@ -25,16 +25,20 @@
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%{
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ExtrusionLoop*
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_new(CLASS, polygon_sv, role, mm3_per_mm)
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_new(CLASS, polygon_sv, role, mm3_per_mm, width, height)
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char* CLASS;
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SV* polygon_sv;
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ExtrusionRole role;
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double mm3_per_mm;
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float width;
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float height;
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CODE:
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RETVAL = new ExtrusionLoop ();
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RETVAL->polygon.from_SV_check(polygon_sv);
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RETVAL->role = role;
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RETVAL->mm3_per_mm = mm3_per_mm;
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RETVAL->width = width;
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RETVAL->height = height;
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OUTPUT:
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RETVAL
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@ -68,5 +72,25 @@ ExtrusionLoop::mm3_per_mm(...)
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OUTPUT:
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RETVAL
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float
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ExtrusionLoop::width(...)
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CODE:
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if (items > 1) {
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THIS->width = (float)SvNV(ST(1));
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}
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RETVAL = THIS->width;
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OUTPUT:
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RETVAL
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float
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ExtrusionLoop::height(...)
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CODE:
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if (items > 1) {
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THIS->height = (float)SvNV(ST(1));
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}
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RETVAL = THIS->height;
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OUTPUT:
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RETVAL
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%}
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};
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@ -31,16 +31,20 @@
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%{
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ExtrusionPath*
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_new(CLASS, polyline_sv, role, mm3_per_mm)
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_new(CLASS, polyline_sv, role, mm3_per_mm, width, height)
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char* CLASS;
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SV* polyline_sv;
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ExtrusionRole role;
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double mm3_per_mm;
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float width;
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float height;
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CODE:
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RETVAL = new ExtrusionPath ();
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RETVAL->polyline.from_SV_check(polyline_sv);
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RETVAL->role = role;
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RETVAL->mm3_per_mm = mm3_per_mm;
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RETVAL->width = width;
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RETVAL->height = height;
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OUTPUT:
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RETVAL
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@ -74,6 +78,26 @@ ExtrusionPath::mm3_per_mm(...)
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OUTPUT:
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RETVAL
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float
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ExtrusionPath::width(...)
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CODE:
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if (items > 1) {
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THIS->width = (float)SvNV(ST(1));
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}
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RETVAL = THIS->width;
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OUTPUT:
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RETVAL
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float
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ExtrusionPath::height(...)
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CODE:
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if (items > 1) {
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THIS->height = (float)SvNV(ST(1));
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}
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RETVAL = THIS->height;
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OUTPUT:
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RETVAL
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void
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ExtrusionPath::append(...)
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CODE:
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