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			178 lines
		
	
	
	
		
			7.2 KiB
		
	
	
	
		
			Perl
		
	
	
	
	
	
			
		
		
	
	
			178 lines
		
	
	
	
		
			7.2 KiB
		
	
	
	
		
			Perl
		
	
	
	
	
	
use Test::More tests => 12;
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use strict;
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use warnings;
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BEGIN {
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    use FindBin;
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    use lib "$FindBin::Bin/../lib";
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}
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use List::Util qw(first);
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use Slic3r;
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use Slic3r::Test;
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{
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    my $config = Slic3r::Config->new_from_defaults;
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    $config->set('skirts', 0);
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    $config->set('perimeters', 0);
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    $config->set('solid_infill_speed', 99);
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    $config->set('top_solid_infill_speed', 99);
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    $config->set('first_layer_speed', '100%');
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    $config->set('cooling', 0);
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    my $test = sub {
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        my ($conf) = @_;
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        $conf ||= $config;
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        my $print = Slic3r::Test::init_print('20mm_cube', config => $config);
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        my %layers_with_shells = ();  # Z => $count
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        Slic3r::GCode::Reader->new->parse(Slic3r::Test::gcode($print), sub {
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            my ($self, $cmd, $args, $info) = @_;
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            if ($self->Z > 0) {
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                $layers_with_shells{$self->Z} //= 0;
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                $layers_with_shells{$self->Z} = 1
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                    if $info->{extruding}
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                        && $info->{dist_XY} > 0
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                        && ($args->{F} // $self->F) == $config->solid_infill_speed*60;
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            }
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        });
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        my @shells = @layers_with_shells{sort { $a <=> $b } keys %layers_with_shells};
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        fail "insufficient number of bottom solid layers"
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            unless !defined(first { !$_ } @shells[0..$config->bottom_solid_layers-1]);
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        fail "excessive number of bottom solid layers"
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            unless scalar(grep $_, @shells[0 .. $#shells/2]) == $config->bottom_solid_layers;
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        fail "insufficient number of top solid layers"
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            unless !defined(first { !$_ } @shells[-$config->top_solid_layers..-1]);
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        fail "excessive number of top solid layers"
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            unless scalar(grep $_, @shells[($#shells/2)..$#shells]) == $config->top_solid_layers;
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        1;
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    };
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    ok $test->(), "proper number of shells is applied";
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    $config->set('top_solid_layers', 0);
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    $config->set('bottom_solid_layers', 0);
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    ok $test->(), "no shells are applied when both top and bottom are set to zero";
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    $config->set('fill_density', 0);
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    ok $test->(), "proper number of shells is applied even when fill density is none";
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}
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# issue #1161
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{
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    my $config = Slic3r::Config->new_from_defaults;
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    $config->set('layer_height', 0.3);
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    $config->set('first_layer_height', '100%');
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    $config->set('bottom_solid_layers', 0);
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    $config->set('top_solid_layers', 3);
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    $config->set('cooling', 0);
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    $config->set('solid_infill_speed', 99);
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    $config->set('top_solid_infill_speed', 99);
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    $config->set('first_layer_speed', '100%');
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    my $print = Slic3r::Test::init_print('V', config => $config);
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    my %layers_with_solid_infill = ();  # Z => 1
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    Slic3r::GCode::Reader->new->parse(Slic3r::Test::gcode($print), sub {
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        my ($self, $cmd, $args, $info) = @_;
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        $layers_with_solid_infill{$self->Z} = 1
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            if $info->{extruding} && ($args->{F} // $self->F) == $config->solid_infill_speed*60;
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    });
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    is scalar(map $layers_with_solid_infill{$_}, grep $_ <= 7.2, keys %layers_with_solid_infill), 3,
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        "correct number of top solid shells is generated in V-shaped object";
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}
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{
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    my $config = Slic3r::Config->new_from_defaults;
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    # we need to check against one perimeter because this test is calibrated
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    # (shape, extrusion_width) so that perimeters cover the bottom surfaces of
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    # their lower layer - the test checks that shells are not generated on the
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    # above layers (thus 'across' the shadow perimeter)
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    # the test is actually calibrated to leave a narrow bottom region for each
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    # layer - we test that in case of fill_density = 0 such narrow shells are 
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    # discarded instead of grown
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    $config->set('perimeters', 1);
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    $config->set('fill_density', 0);
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    $config->set('cooling', 0);                 # prevent speed alteration
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    $config->set('first_layer_speed', '100%');  # prevent speed alteration
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    $config->set('layer_height', 0.4);
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    $config->set('first_layer_height', '100%');
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    $config->set('extrusion_width', 0.55);
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    $config->set('bottom_solid_layers', 3);
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    $config->set('top_solid_layers', 0);
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    $config->set('solid_infill_speed', 99);
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    my $print = Slic3r::Test::init_print('V', config => $config);
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    my %layers = ();  # Z => 1
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    Slic3r::GCode::Reader->new->parse(Slic3r::Test::gcode($print), sub {
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        my ($self, $cmd, $args, $info) = @_;
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        $layers{$self->Z} = 1
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            if $info->{extruding} && ($args->{F} // $self->F) == $config->solid_infill_speed*60;
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    });
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    is scalar(keys %layers), $config->bottom_solid_layers,
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        "shells are not propagated across perimeters of the neighbor layer";
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}
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{
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    my $config = Slic3r::Config->new_from_defaults;
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    $config->set('perimeters', 3);
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    $config->set('cooling', 0);                 # prevent speed alteration
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    $config->set('first_layer_speed', '100%');  # prevent speed alteration
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    $config->set('layer_height', 0.4);
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    $config->set('first_layer_height', '100%');
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    $config->set('bottom_solid_layers', 3);
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    $config->set('top_solid_layers', 3);
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    $config->set('solid_infill_speed', 99);
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    $config->set('top_solid_infill_speed', 99);
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    my $print = Slic3r::Test::init_print('sloping_hole', config => $config);
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    my %solid_layers = ();  # Z => 1
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    Slic3r::GCode::Reader->new->parse(Slic3r::Test::gcode($print), sub {
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        my ($self, $cmd, $args, $info) = @_;
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        $solid_layers{$self->Z} = 1
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            if $info->{extruding} && ($args->{F} // $self->F) == $config->solid_infill_speed*60;
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    });
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    is scalar(keys %solid_layers), $config->bottom_solid_layers + $config->top_solid_layers,
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        "no superfluous shells are generated";
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}
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{
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    my $config = Slic3r::Config->new_from_defaults;
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    $config->set('spiral_vase', 1);
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    $config->set('bottom_solid_layers', 0);
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    $config->set('skirts', 0);
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    $config->set('first_layer_height', '100%');
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    # TODO: this needs to be tested with a model with sloping edges, where starting
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    # points of each layer are not aligned - in that case we would test that no
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    # travel moves are left to move to the new starting point - in a cube, end
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    # points coincide with next layer starting points (provided there's no clipping)
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    my $test = sub {
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        my ($model_name, $description) = @_;
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        my $print = Slic3r::Test::init_print($model_name, config => $config);
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        my $travel_moves_after_first_extrusion = 0;
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        my $started_extruding = 0;
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        my @z_steps = ();
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        Slic3r::GCode::Reader->new->parse(Slic3r::Test::gcode($print), sub {
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            my ($self, $cmd, $args, $info) = @_;
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            $started_extruding = 1 if $info->{extruding};
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            push @z_steps, ($args->{Z} - $self->Z)
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                if $started_extruding && exists $args->{Z};
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            $travel_moves_after_first_extrusion++
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                if $info->{travel} && $started_extruding && !exists $args->{Z};
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        });
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        is $travel_moves_after_first_extrusion, 0, "no gaps in spiral vase ($description)";
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        ok !(grep { $_ > $config->layer_height } @z_steps), "no gaps in Z ($description)";
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    };
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    $test->('20mm_cube', 'solid model');
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    $test->('40x10', 'hollow model');
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    $config->set('z_offset', -10);
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    $test->('20mm_cube', 'solid model with negative z-offset');
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}
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__END__
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