New automatic built-in STL repair
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@ -90,6 +90,8 @@ The author of the Silk icon set is Mark James.
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-o, --output <file> File to output gcode to (by default, the file will be saved
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into the same directory as the input file using the
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--output-filename-format to generate the filename)
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--repair Automatically repair given STL files and saves them as _fixed.obj
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GUI options:
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--no-plater Disable the plater tab
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--gui-mode Overrides the configured mode (simple/expert)
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@ -26,6 +26,7 @@ use constant MI_QUICK_SLICE => &Wx::NewId;
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use constant MI_REPEAT_QUICK => &Wx::NewId;
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use constant MI_QUICK_SAVE_AS => &Wx::NewId;
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use constant MI_SLICE_SVG => &Wx::NewId;
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use constant MI_REPAIR_STL => &Wx::NewId;
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use constant MI_COMBINE_STLS => &Wx::NewId;
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use constant MI_PLATER_EXPORT_GCODE => &Wx::NewId;
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@ -112,6 +113,7 @@ sub OnInit {
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$fileMenu->AppendSeparator();
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$fileMenu->Append(MI_SLICE_SVG, "Slice to SV&G…\tCtrl+G", 'Slice file to SVG');
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$fileMenu->AppendSeparator();
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$fileMenu->Append(MI_REPAIR_STL, "Repair STL file…", 'Automatically repair an STL file');
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$fileMenu->Append(MI_COMBINE_STLS, "Combine multi-material STL files…", 'Combine multiple STL files into a single multi-material AMF file');
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$fileMenu->AppendSeparator();
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$fileMenu->Append(wxID_PREFERENCES, "Preferences…", 'Application preferences');
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@ -125,6 +127,7 @@ sub OnInit {
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EVT_MENU($frame, MI_QUICK_SAVE_AS, sub { $self->{skeinpanel}->quick_slice(save_as => 1);
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$repeat->Enable(defined $Slic3r::GUI::SkeinPanel::last_input_file) });
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EVT_MENU($frame, MI_SLICE_SVG, sub { $self->{skeinpanel}->quick_slice(save_as => 1, export_svg => 1) });
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EVT_MENU($frame, MI_REPAIR_STL, sub { $self->{skeinpanel}->repair_stl });
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EVT_MENU($frame, MI_COMBINE_STLS, sub { $self->{skeinpanel}->combine_stls });
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EVT_MENU($frame, wxID_PREFERENCES, sub { Slic3r::GUI::Preferences->new($frame)->ShowModal });
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EVT_MENU($frame, wxID_EXIT, sub {$_[0]->Close(0)});
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@ -192,6 +192,38 @@ sub quick_slice {
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Slic3r::GUI::catch_error($self, sub { $process_dialog->Destroy if $process_dialog });
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}
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sub repair_stl {
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my $self = shift;
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my $input_file;
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{
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my $dir = $Slic3r::GUI::Settings->{recent}{skein_directory} || $Slic3r::GUI::Settings->{recent}{config_directory} || '';
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my $dialog = Wx::FileDialog->new($self, 'Select the STL file to repair:', $dir, "", FILE_WILDCARDS->{stl}, wxFD_OPEN | wxFD_FILE_MUST_EXIST);
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if ($dialog->ShowModal != wxID_OK) {
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$dialog->Destroy;
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return;
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}
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$input_file = $dialog->GetPaths;
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$dialog->Destroy;
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}
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my $output_file = $input_file;
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{
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$output_file =~ s/\.stl$/_fixed.obj/i;
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my $dlg = Wx::FileDialog->new($self, "Save OBJ file (less prone to coordinate errors than STL) as:", dirname($output_file),
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basename($output_file), &Slic3r::GUI::SkeinPanel::FILE_WILDCARDS->{obj}, wxFD_SAVE | wxFD_OVERWRITE_PROMPT);
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if ($dlg->ShowModal != wxID_OK) {
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$dlg->Destroy;
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return undef;
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}
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$output_file = $dlg->GetPath;
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$dlg->Destroy;
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}
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Slic3r::TriangleMesh::XS::stl_repair($input_file, $output_file);
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Slic3r::GUI::show_info($self, "Your file was repaired.", "Repair");
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}
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sub init_print {
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my $self = shift;
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14
slic3r.pl
14
slic3r.pl
@ -33,6 +33,7 @@ my %cli_options = ();
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'datadir=s' => \$opt{datadir},
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'export-svg' => \$opt{export_svg},
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'merge|m' => \$opt{merge},
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'repair' => \$opt{repair},
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);
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foreach my $opt_key (keys %{$Slic3r::Config::Options}) {
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my $cli = $Slic3r::Config::Options->{$opt_key}->{cli} or next;
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@ -92,6 +93,18 @@ die $@ if $@ && $opt{gui};
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if (@ARGV) { # slicing from command line
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$config->validate;
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if ($opt{repair}) {
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foreach my $file (@ARGV) {
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die "Repair is currently supported only on STL files\n"
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if $file !~ /\.stl$/i;
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my $output_file = $file;
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$output_file =~ s/\.(stl)$/_fixed.obj/i;
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Slic3r::TriangleMesh::XS::stl_repair($file, $output_file);
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}
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exit;
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}
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while (my $input_file = shift @ARGV) {
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my $model;
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if ($opt{merge}) {
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@ -150,6 +163,7 @@ Usage: slic3r.pl [ OPTIONS ] file.stl
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-o, --output <file> File to output gcode to (by default, the file will be saved
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into the same directory as the input file using the
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--output-filename-format to generate the filename)
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--repair Automatically repair given STL files and saves them as _fixed.obj
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$j
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GUI options:
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--no-plater Disable the plater tab
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@ -241,3 +241,26 @@ stl_write_vrml(stl_file *stl, char *file)
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fprintf(fp, "}\n");
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fclose(fp);
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}
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void stl_write_obj (stl_file *stl, char *file) {
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int i;
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/* Open the file */
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FILE* fp = fopen(file, "w");
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if (fp == NULL) {
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char* error_msg = (char*)malloc(81 + strlen(file)); /* Allow 80 chars+file size for message */
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sprintf(error_msg, "stl_write_ascii: Couldn't open %s for writing", file);
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perror(error_msg);
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free(error_msg);
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exit(1);
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}
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for (i = 0; i < stl->stats.shared_vertices; i++) {
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fprintf(fp, "v %f %f %f\n", stl->v_shared[i].x, stl->v_shared[i].y, stl->v_shared[i].z);
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}
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for (i = 0; i < stl->stats.number_of_facets; i++) {
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fprintf(fp, "f %d %d %d\n", stl->v_indices[i].vertex[0]+1, stl->v_indices[i].vertex[1]+1, stl->v_indices[i].vertex[2]+1);
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}
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fclose(fp);
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}
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@ -164,6 +164,7 @@ extern void stl_mirror_yz(stl_file *stl);
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extern void stl_mirror_xz(stl_file *stl);
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extern void stl_open_merge(stl_file *stl, char *file);
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extern void stl_generate_shared_vertices(stl_file *stl);
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extern void stl_write_obj(stl_file *stl, char *file);
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extern void stl_write_off(stl_file *stl, char *file);
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extern void stl_write_dxf(stl_file *stl, char *file, char *label);
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extern void stl_write_vrml(stl_file *stl, char *file);
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@ -13,25 +13,72 @@ hello_world()
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OUTPUT:
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RETVAL
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float
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stl_volume(filename)
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char* filename;
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void
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stl_repair(input_file, output_file)
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char* input_file;
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char* output_file;
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CODE:
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stl_file stl_in;
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stl_open(&stl_in, filename);
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int i;
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stl_file stl_in;
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stl_open(&stl_in, input_file);
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// checking exact
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stl_check_facets_exact(&stl_in);
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stl_in.stats.facets_w_1_bad_edge = (stl_in.stats.connected_facets_2_edge - stl_in.stats.connected_facets_3_edge);
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stl_in.stats.facets_w_2_bad_edge = (stl_in.stats.connected_facets_1_edge - stl_in.stats.connected_facets_2_edge);
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stl_in.stats.facets_w_3_bad_edge = (stl_in.stats.number_of_facets - stl_in.stats.connected_facets_1_edge);
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// checking nearby
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int last_edges_fixed = 0;
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float tolerance = stl_in.stats.shortest_edge;
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float increment = stl_in.stats.bounding_diameter / 10000.0;
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int iterations = 2;
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if (stl_in.stats.connected_facets_3_edge < stl_in.stats.number_of_facets) {
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for (i = 0; i < iterations; i++) {
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if (stl_in.stats.connected_facets_3_edge < stl_in.stats.number_of_facets) {
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printf("Checking nearby. Tolerance= %f Iteration=%d of %d...", tolerance, i + 1, iterations);
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stl_check_facets_nearby(&stl_in, tolerance);
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printf(" Fixed %d edges.\n", stl_in.stats.edges_fixed - last_edges_fixed);
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last_edges_fixed = stl_in.stats.edges_fixed;
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tolerance += increment;
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} else {
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printf("All facets connected. No further nearby check necessary.\n");
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break;
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}
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}
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} else {
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printf("All facets connected. No nearby check necessary.\n");
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}
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// remove_unconnected
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if (stl_in.stats.connected_facets_3_edge < stl_in.stats.number_of_facets) {
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printf("Removing unconnected facets...\n");
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stl_remove_unconnected_facets(&stl_in);
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} else
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printf("No unconnected need to be removed.\n");
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// fill_holes
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if (stl_in.stats.connected_facets_3_edge < stl_in.stats.number_of_facets) {
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printf("Filling holes...\n");
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stl_fill_holes(&stl_in);
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} else
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printf("No holes need to be filled.\n");
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// normal_directions
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printf("Checking normal directions...\n");
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stl_fix_normal_directions(&stl_in);
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// normal_values
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printf("Checking normal values...\n");
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stl_fix_normal_values(&stl_in);
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stl_calculate_volume(&stl_in);
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RETVAL = stl_in.stats.volume;
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// write STL
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//stl_write_ascii(&stl_in, output_file, (char*)"Repaired by Slic3r + ADMesh");
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stl_generate_shared_vertices(&stl_in);
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stl_write_obj(&stl_in, output_file);
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stl_close(&stl_in);
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OUTPUT:
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RETVAL
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%}
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