fill.t 6.7 KB

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  1. use Test::More;
  2. use strict;
  3. use warnings;
  4. plan tests => 34;
  5. BEGIN {
  6. use FindBin;
  7. use lib "$FindBin::Bin/../lib";
  8. }
  9. use Slic3r;
  10. use Slic3r::Geometry qw(scale X Y);
  11. use Slic3r::Geometry::Clipper qw(diff_ex);
  12. use Slic3r::Surface qw(:types);
  13. use Slic3r::Test;
  14. sub scale_points (@) { map [scale $_->[X], scale $_->[Y]], @_ }
  15. {
  16. my $print = Slic3r::Print->new;
  17. $print->init_extruders;
  18. my $filler = Slic3r::Fill::Rectilinear->new(
  19. print => $print,
  20. bounding_box => Slic3r::Geometry::BoundingBox->new_from_points([ Slic3r::Point->new(0, 0), Slic3r::Point->new(10, 10) ]),
  21. );
  22. my $surface_width = 250;
  23. my $distance = $filler->adjust_solid_spacing(
  24. width => $surface_width,
  25. distance => 100,
  26. );
  27. is $distance, 125, 'adjusted solid distance';
  28. is $surface_width % $distance, 0, 'adjusted solid distance';
  29. }
  30. {
  31. my $expolygon = Slic3r::ExPolygon->new([ scale_points [0,0], [50,0], [50,50], [0,50] ]);
  32. my $filler = Slic3r::Fill::Rectilinear->new(
  33. bounding_box => $expolygon->bounding_box,
  34. );
  35. my $surface = Slic3r::Surface->new(
  36. surface_type => S_TYPE_TOP,
  37. expolygon => $expolygon,
  38. );
  39. foreach my $angle (0, 45) {
  40. $surface->expolygon->rotate(Slic3r::Geometry::deg2rad($angle), [0,0]);
  41. my ($params, @paths) = $filler->fill_surface($surface, flow_spacing => 0.69, density => 0.4);
  42. is scalar @paths, 1, 'one continuous path';
  43. }
  44. }
  45. {
  46. my $test = sub {
  47. my ($expolygon, $flow_spacing, $angle, $density) = @_;
  48. my $filler = Slic3r::Fill::Rectilinear->new(
  49. bounding_box => $expolygon->bounding_box,
  50. angle => $angle // 0,
  51. );
  52. my $surface = Slic3r::Surface->new(
  53. surface_type => S_TYPE_BOTTOM,
  54. expolygon => $expolygon,
  55. );
  56. my ($params, @paths) = $filler->fill_surface(
  57. $surface,
  58. flow_spacing => $flow_spacing,
  59. density => $density // 1,
  60. );
  61. # check whether any part was left uncovered
  62. my @grown_paths = map @{Slic3r::Polyline->new(@$_)->grow(scale $params->{flow_spacing}/2)}, @paths;
  63. my $uncovered = diff_ex([ @$expolygon ], [ @grown_paths ], 1);
  64. # ignore very small dots
  65. @$uncovered = grep $_->area > (scale $flow_spacing)**2, @$uncovered;
  66. is scalar(@$uncovered), 0, 'solid surface is fully filled';
  67. if (0 && @$uncovered) {
  68. require "Slic3r/SVG.pm";
  69. Slic3r::SVG::output(
  70. "uncovered.svg",
  71. expolygons => [$expolygon],
  72. red_expolygons => $uncovered,
  73. );
  74. exit;
  75. }
  76. };
  77. my $expolygon = Slic3r::ExPolygon->new([
  78. [6883102, 9598327.01296997],
  79. [6883102, 20327272.01297],
  80. [3116896, 20327272.01297],
  81. [3116896, 9598327.01296997],
  82. ]);
  83. $test->($expolygon, 0.55);
  84. for (1..20) {
  85. $expolygon->scale(1.05);
  86. $test->($expolygon, 0.55);
  87. }
  88. $expolygon = Slic3r::ExPolygon->new(
  89. [[59515297,5422499],[59531249,5578697],[59695801,6123186],[59965713,6630228],[60328214,7070685],[60773285,7434379],[61274561,7702115],[61819378,7866770],[62390306,7924789],[62958700,7866744],[63503012,7702244],[64007365,7434357],[64449960,7070398],[64809327,6634999],[65082143,6123325],[65245005,5584454],[65266967,5422499],[66267307,5422499],[66269190,8310081],[66275379,17810072],[66277259,20697500],[65267237,20697500],[65245004,20533538],[65082082,19994444],[64811462,19488579],[64450624,19048208],[64012101,18686514],[63503122,18415781],[62959151,18251378],[62453416,18198442],[62390147,18197355],[62200087,18200576],[61813519,18252990],[61274433,18415918],[60768598,18686517],[60327567,19047892],[59963609,19493297],[59695865,19994587],[59531222,20539379],[59515153,20697500],[58502480,20697500],[58502480,5422499]]
  90. );
  91. $test->($expolygon, 0.524341649025257);
  92. $expolygon = Slic3r::ExPolygon->new([ scale_points [0,0], [98,0], [98,10], [0,10] ]);
  93. $test->($expolygon, 0.5, 45, 0.99); # non-solid infill
  94. }
  95. {
  96. my $collection = Slic3r::Polyline::Collection->new(
  97. Slic3r::Polyline->new([0,15], [0,18], [0,20]),
  98. Slic3r::Polyline->new([0,10], [0,8], [0,5]),
  99. );
  100. is_deeply
  101. [ map $_->[Y], map @$_, @{$collection->chained_path_from(Slic3r::Point->new(0,30), 0)} ],
  102. [20, 18, 15, 10, 8, 5],
  103. 'chained path';
  104. }
  105. {
  106. my $collection = Slic3r::Polyline::Collection->new(
  107. Slic3r::Polyline->new([4,0], [10,0], [15,0]),
  108. Slic3r::Polyline->new([10,5], [15,5], [20,5]),
  109. );
  110. is_deeply
  111. [ map $_->[X], map @$_, @{$collection->chained_path_from(Slic3r::Point->new(30,0), 0)} ],
  112. [reverse 4, 10, 15, 10, 15, 20],
  113. 'chained path';
  114. }
  115. {
  116. my $collection = Slic3r::ExtrusionPath::Collection->new(
  117. map Slic3r::ExtrusionPath->new(polyline => $_, role => 0),
  118. Slic3r::Polyline->new([0,15], [0,18], [0,20]),
  119. Slic3r::Polyline->new([0,10], [0,8], [0,5]),
  120. );
  121. is_deeply
  122. [ map $_->[Y], map @{$_->polyline}, @{$collection->chained_path_from(Slic3r::Point->new(0,30), 0)} ],
  123. [20, 18, 15, 10, 8, 5],
  124. 'chained path';
  125. }
  126. {
  127. my $collection = Slic3r::ExtrusionPath::Collection->new(
  128. map Slic3r::ExtrusionPath->new(polyline => $_, role => 0),
  129. Slic3r::Polyline->new([15,0], [10,0], [4,0]),
  130. Slic3r::Polyline->new([10,5], [15,5], [20,5]),
  131. );
  132. is_deeply
  133. [ map $_->[X], map @{$_->polyline}, @{$collection->chained_path_from(Slic3r::Point->new(30,0), 0)} ],
  134. [reverse 4, 10, 15, 10, 15, 20],
  135. 'chained path';
  136. }
  137. for my $pattern (qw(hilbertcurve concentric)) {
  138. my $config = Slic3r::Config->new_from_defaults;
  139. $config->set('fill_pattern', $pattern);
  140. my $print = Slic3r::Test::init_print('20mm_cube', config => $config);
  141. ok Slic3r::Test::gcode($print), "successful $pattern infill generation";
  142. }
  143. {
  144. my $config = Slic3r::Config->new_from_defaults;
  145. $config->set('skirts', 0);
  146. $config->set('perimeters', 0);
  147. $config->set('fill_density', 0);
  148. $config->set('top_solid_layers', 0);
  149. $config->set('bottom_solid_layers', 0);
  150. $config->set('solid_infill_below_area', 20000000);
  151. $config->set('solid_infill_every_layers', 2);
  152. my $print = Slic3r::Test::init_print('20mm_cube', config => $config);
  153. my %layers_with_extrusion = ();
  154. Slic3r::GCode::Reader->new->parse(Slic3r::Test::gcode($print), sub {
  155. my ($self, $cmd, $args, $info) = @_;
  156. $layers_with_extrusion{$self->Z} = 1 if $info->{extruding};
  157. });
  158. ok !%layers_with_extrusion,
  159. "solid_infill_below_area and solid_infill_every_layers are ignored when fill_density is 0";
  160. }
  161. __END__