dynamic.t 3.1 KB

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  1. use Test::More;
  2. use strict;
  3. use warnings;
  4. plan skip_all => 'variable-width paths are currently disabled';
  5. plan tests => 20;
  6. BEGIN {
  7. use FindBin;
  8. use lib "$FindBin::Bin/../lib";
  9. }
  10. use List::Util qw(first);
  11. use Slic3r;
  12. use Slic3r::Geometry qw(X Y scale epsilon);
  13. use Slic3r::Surface ':types';
  14. sub scale_points (@) { map [scale $_->[X], scale $_->[Y]], @_ }
  15. {
  16. my $square = Slic3r::ExPolygon->new([
  17. scale_points [0,0], [10,0], [10,10], [0,10],
  18. ]);
  19. my @offsets = @{$square->noncollapsing_offset_ex(- scale 5)};
  20. is scalar @offsets, 1, 'non-collapsing offset';
  21. }
  22. {
  23. local $Slic3r::Config = Slic3r::Config->new(
  24. perimeters => 3,
  25. );
  26. my $w = 0.7;
  27. my $perimeter_flow = Slic3r::Flow->new(
  28. nozzle_diameter => 0.5,
  29. layer_height => 0.4,
  30. width => $w,
  31. );
  32. my $print = Slic3r::Print->new;
  33. my $region = Slic3r::Print::Region->new(
  34. print => $print,
  35. flows => { perimeter => $perimeter_flow },
  36. );
  37. push @{$print->regions}, $region;
  38. my $object = Slic3r::Print::Object->new(
  39. print => $print,
  40. size => [1,1],
  41. );
  42. my $make_layer = sub {
  43. my ($width) = @_;
  44. my $layer = Slic3r::Layer->new(
  45. object => $object,
  46. id => 1,
  47. slices => [
  48. Slic3r::Surface->new(
  49. surface_type => S_TYPE_INTERNAL,
  50. expolygon => Slic3r::ExPolygon->new([ scale_points [0,0], [50,0], [50,$width], [0,$width] ]),
  51. ),
  52. ],
  53. thin_walls => [],
  54. );
  55. my $layerm = $layer->region(0);
  56. $layer->make_perimeters;
  57. return $layerm;
  58. };
  59. my %widths = (
  60. 1 * $w => { perimeters => 1, gaps => 0 },
  61. 1.3 * $w => { perimeters => 1, gaps => 1, gap_flow_spacing => $perimeter_flow->clone(width => 0.2 * $w)->spacing },
  62. 1.5 * $w => { perimeters => 1, gaps => 1, gap_flow_spacing => $perimeter_flow->clone(width => 0.5 * $w)->spacing },
  63. 2 * $w => { perimeters => 1, gaps => 1, gap_flow_spacing => $perimeter_flow->spacing },
  64. 2.5 * $w => { perimeters => 1, gaps => 1, gap_flow_spacing => $perimeter_flow->clone(width => 1.5 * $w)->spacing },
  65. 3 * $w => { perimeters => 2, gaps => 0 },
  66. 4 * $w => { perimeters => 2, gaps => 1, gap_flow_spacing => $perimeter_flow->spacing },
  67. );
  68. foreach my $width (sort keys %widths) {
  69. my $layerm = $make_layer->($width);
  70. is scalar @{$layerm->perimeters}, $widths{$width}{perimeters}, 'right number of perimeters';
  71. is scalar @{$layerm->thin_fills} ? 1 : 0, $widths{$width}{gaps},
  72. ($widths{$width}{gaps} ? 'gaps were filled' : 'no gaps detected'); # TODO: we should check the exact number of gaps, but we need a better medial axis algorithm
  73. my @gaps = map $_, @{$layerm->thin_fills};
  74. if (@gaps) {
  75. ok +(!first { abs($_->flow_spacing - $widths{$width}{gap_flow_spacing}) > epsilon } @gaps),
  76. 'flow spacing was dynamically adjusted';
  77. }
  78. }
  79. }
  80. __END__