New experimental autospeed feature. #2810
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@ -27,6 +27,7 @@ has '_seam_position' => (is => 'ro', default => sub { {} }); # $object => p
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has 'first_layer' => (is => 'rw', default => sub {0}); # this flag triggers first layer speeds
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has 'elapsed_time' => (is => 'rw', default => sub {0} ); # seconds
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has 'last_pos' => (is => 'rw', default => sub { Slic3r::Point->new(0,0) } );
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has 'volumetric_speed' => (is => 'rw', default => sub {0});
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sub apply_print_config {
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my ($self, $print_config) = @_;
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@ -298,11 +299,13 @@ sub _extrude_path {
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die "Invalid speed";
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}
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}
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my $F = $speed * 60; # convert mm/sec to mm/min
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if ($self->first_layer) {
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$F = $self->config->get_abs_value_over('first_layer_speed', $F/60) * 60;
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$speed = $self->config->get_abs_value_over('first_layer_speed', $speed);
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}
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if ($self->volumetric_speed != 0) {
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$speed ||= $self->volumetric_speed / $path->mm3_per_mm;
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}
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my $F = $speed * 60; # convert mm/sec to mm/min
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# extrude arc or line
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$gcode .= ";_BRIDGE_FAN_START\n" if $path->is_bridge && $self->enable_cooling_markers;
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@ -450,6 +450,7 @@ sub build {
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infill_every_layers infill_only_where_needed
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solid_infill_every_layers fill_angle solid_infill_below_area
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only_retract_when_crossing_perimeters infill_first
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max_print_speed max_volumetric_speed
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perimeter_speed small_perimeter_speed external_perimeter_speed infill_speed
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solid_infill_speed top_solid_infill_speed support_material_speed
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support_material_interface_speed bridge_speed gap_fill_speed
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@ -607,6 +608,11 @@ sub build {
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$optgroup->append_single_option_line('first_layer_acceleration');
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$optgroup->append_single_option_line('default_acceleration');
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}
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{
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my $optgroup = $page->new_optgroup('Autospeed (advanced)');
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$optgroup->append_single_option_line('max_print_speed');
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$optgroup->append_single_option_line('max_volumetric_speed');
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}
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}
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{
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@ -15,7 +15,7 @@ has '_brim_done' => (is => 'rw');
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has '_second_layer_things_done' => (is => 'rw');
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has '_last_obj_copy' => (is => 'rw');
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use List::Util qw(first sum);
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use List::Util qw(first sum min max);
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use Slic3r::Flow ':roles';
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use Slic3r::Geometry qw(X Y scale unscale chained_path convex_hull);
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use Slic3r::Geometry::Clipper qw(JT_SQUARE union_ex offset);
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@ -40,9 +40,60 @@ sub BUILD {
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layer_count => $layer_count,
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enable_cooling_markers => 1,
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);
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$self->_gcodegen($gcodegen);
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$gcodegen->apply_print_config($self->config);
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$gcodegen->set_extruders($self->print->extruders);
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$self->_gcodegen($gcodegen);
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# initialize autospeed
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{
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# get the minimum cross-section used in the print
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my @mm3_per_mm = ();
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foreach my $object (@{$self->print->objects}) {
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foreach my $region_id (0..$#{$self->print->regions}) {
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my $region = $self->print->get_region($region_id);
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foreach my $layer (@{$object->layers}) {
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my $layerm = $layer->get_region($region_id);
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if ($region->config->get_abs_value('perimeter_speed') == 0
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|| $region->config->get_abs_value('small_perimeter_speed') == 0
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|| $region->config->get_abs_value('external_perimeter_speed') == 0
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|| $region->config->get_abs_value('bridge_speed') == 0) {
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push @mm3_per_mm, $layerm->perimeters->min_mm3_per_mm;
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}
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if ($region->config->get_abs_value('infill_speed') == 0
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|| $region->config->get_abs_value('solid_infill_speed') == 0
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|| $region->config->get_abs_value('top_solid_infill_speed') == 0
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|| $region->config->get_abs_value('bridge_speed') == 0) {
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push @mm3_per_mm, $layerm->fills->min_mm3_per_mm;
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}
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}
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}
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if ($object->config->get_abs_value('support_material_speed') == 0
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|| $object->config->get_abs_value('support_material_interface_speed') == 0) {
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foreach my $layer (@{$object->support_layers}) {
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push @mm3_per_mm, $layer->support_fills->min_mm3_per_mm;
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push @mm3_per_mm, $layer->support_interface_fills->min_mm3_per_mm;
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}
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}
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}
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my $min_mm3_per_mm = min(@mm3_per_mm);
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if ($min_mm3_per_mm > 0) {
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# In order to honor max_print_speed we need to find a target volumetric
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# speed that we can use throughout the print. So we define this target
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# volumetric speed as the volumetric speed produced by printing the
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# smallest cross-section at the maximum speed: any larger cross-section
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# will need slower feedrates.
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my $volumetric_speed = $min_mm3_per_mm * $self->config->max_print_speed;
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# limit such volumetric speed with max_volumetric_speed if set
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if ($self->config->max_volumetric_speed > 0) {
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$volumetric_speed = min(
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$volumetric_speed,
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$self->config->max_volumetric_speed,
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);
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}
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$gcodegen->volumetric_speed($volumetric_speed);
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}
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}
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}
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$self->_cooling_buffer(Slic3r::GCode::CoolingBuffer->new(
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@ -6,17 +6,28 @@
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use strict;
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use warnings;
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use constant PI => 3.141592653589793238;
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my @filament_diameter = split /,/, $ENV{SLIC3R_FILAMENT_DIAMETER};
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my $E = 0;
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my ($X, $Y);
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my $T = 0;
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my ($X, $Y, $F);
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while (<>) {
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if (/^G1.*? F([0-9.]+)/) {
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$F = $1;
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}
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if (/^G1 X([0-9.]+) Y([0-9.]+).*? E([0-9.]+)/) {
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my ($x, $y, $e) = ($1, $2, $3);
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my $e_length = $e - $E;
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if ($e_length > 0 && defined $X && defined $Y) {
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my $dist = sqrt( (($x-$X)**2) + (($y-$Y)**2) );
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if ($dist > 0) {
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my $flowrate = sprintf '%.2f', $e_length / $dist;
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s/(\R+)/ ; XY dist = $dist ; E dist = $e_length ; E\/XY = $flowrate mm\/mm$1/;
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my $mm_per_mm = $e_length / $dist; # dE/dXY
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my $mm3_per_mm = ($filament_diameter[$T] ** 2) * PI/4 * $mm_per_mm;
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my $vol_speed = $F/60 * $mm3_per_mm;
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my $comment = sprintf ' ; dXY = %.3fmm ; dE = %.5fmm ; dE/XY = %.5fmm/mm; volspeed = %.5fmm^3/sec',
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$dist, $e_length, $mm_per_mm, $vol_speed;
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s/(\R+)/$comment$1/;
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}
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}
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$E = $e;
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@ -33,6 +44,9 @@ while (<>) {
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if (/^G92 E0/) {
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$E = 0;
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}
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if (/^T(\d+)/) {
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$T = $1;
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}
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print;
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}
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@ -3,6 +3,7 @@
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#include "ExPolygonCollection.hpp"
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#include "ClipperUtils.hpp"
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#include "Extruder.hpp"
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#include <cmath>
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#include <sstream>
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namespace Slic3r {
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@ -375,6 +376,20 @@ ExtrusionLoop::grow() const
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return pp;
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}
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double
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ExtrusionLoop::min_mm3_per_mm() const
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{
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double min_mm3_per_mm = 0;
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for (ExtrusionPaths::const_iterator path = this->paths.begin(); path != this->paths.end(); ++path) {
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if (min_mm3_per_mm == 0) {
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min_mm3_per_mm = path->mm3_per_mm;
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} else {
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min_mm3_per_mm = fmin(min_mm3_per_mm, path->mm3_per_mm);
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}
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}
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return min_mm3_per_mm;
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}
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#ifdef SLIC3RXS
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REGISTER_CLASS(ExtrusionLoop, "ExtrusionLoop");
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#endif
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@ -50,6 +50,7 @@ class ExtrusionEntity
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virtual Point first_point() const = 0;
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virtual Point last_point() const = 0;
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virtual Polygons grow() const = 0;
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virtual double min_mm3_per_mm() const = 0;
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};
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typedef std::vector<ExtrusionEntity*> ExtrusionEntitiesPtr;
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@ -81,6 +82,9 @@ class ExtrusionPath : public ExtrusionEntity
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double xofs, double yofs, std::string extrusion_axis,
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std::string gcode_line_suffix) const;
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Polygons grow() const;
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double min_mm3_per_mm() const {
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return this->mm3_per_mm;
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};
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private:
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void _inflate_collection(const Polylines &polylines, ExtrusionEntityCollection* collection) const;
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@ -117,6 +121,7 @@ class ExtrusionLoop : public ExtrusionEntity
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bool is_infill() const;
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bool is_solid_infill() const;
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Polygons grow() const;
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double min_mm3_per_mm() const;
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};
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}
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@ -1,5 +1,6 @@
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#include "ExtrusionEntityCollection.hpp"
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#include <algorithm>
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#include <cmath>
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#include <map>
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namespace Slic3r {
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@ -137,6 +138,37 @@ ExtrusionEntityCollection::items_count() const
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return count;
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}
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/* Returns a single vector of pointers to all non-collection items contained in this one */
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void
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ExtrusionEntityCollection::flatten(ExtrusionEntityCollection* retval) const
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{
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for (ExtrusionEntitiesPtr::const_iterator it = this->entities.begin(); it != this->entities.end(); ++it) {
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if ((*it)->is_collection()) {
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ExtrusionEntityCollection* collection = dynamic_cast<ExtrusionEntityCollection*>(*it);
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ExtrusionEntityCollection contents;
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collection->flatten(&contents);
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retval->entities.insert(retval->entities.end(), contents.entities.begin(), contents.entities.end());
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} else {
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retval->entities.push_back((*it)->clone());
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}
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}
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}
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double
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ExtrusionEntityCollection::min_mm3_per_mm() const
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{
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double min_mm3_per_mm = 0;
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for (ExtrusionEntitiesPtr::const_iterator it = this->entities.begin(); it != this->entities.end(); ++it) {
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double mm3_per_mm = (*it)->min_mm3_per_mm();
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if (min_mm3_per_mm == 0) {
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min_mm3_per_mm = mm3_per_mm;
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} else {
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min_mm3_per_mm = fmin(min_mm3_per_mm, mm3_per_mm);
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}
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}
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return min_mm3_per_mm;
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}
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#ifdef SLIC3RXS
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// there is no ExtrusionLoop::Collection or ExtrusionEntity::Collection
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REGISTER_CLASS(ExtrusionEntityCollection, "ExtrusionPath::Collection");
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@ -30,6 +30,8 @@ class ExtrusionEntityCollection : public ExtrusionEntity
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Point last_point() const;
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Polygons grow() const;
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size_t items_count() const;
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void flatten(ExtrusionEntityCollection* retval) const;
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double min_mm3_per_mm() const;
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};
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}
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@ -501,6 +501,22 @@ PrintConfigDef::build_def() {
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Options["min_print_speed"].min = 0;
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Options["min_print_speed"].max = 1000;
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Options["max_print_speed"].type = coFloat;
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Options["max_print_speed"].label = "Max print speed";
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Options["max_print_speed"].tooltip = "When setting other speed settings to 0 Slic3r will autocalculate the optimal speed in order to keep constant extruder pressure. This experimental setting is used to set the highest print speed you want to allow.";
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Options["max_print_speed"].sidetext = "mm/s";
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Options["max_print_speed"].cli = "max-print-speed=f";
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Options["max_print_speed"].min = 1;
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Options["max_print_speed"].max = 1000;
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Options["max_volumetric_speed"].type = coFloat;
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Options["max_volumetric_speed"].label = "Max volumetric speed";
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Options["max_volumetric_speed"].tooltip = "When setting other speed settings to 0 Slic3r will autocalculate the optimal speed in order to keep constant extruder pressure. This experimental setting is used to set the maximum volumetric speed your extruder supports.";
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Options["max_volumetric_speed"].sidetext = "mm³/s";
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Options["max_volumetric_speed"].cli = "max-volumetric-speed=f";
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Options["max_volumetric_speed"].min = 0;
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Options["max_volumetric_speed"].max = 1000;
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Options["min_skirt_length"].type = coFloat;
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Options["min_skirt_length"].label = "Minimum extrusion length";
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Options["min_skirt_length"].tooltip = "Generate no less than the number of skirt loops required to consume the specified amount of filament on the bottom layer. For multi-extruder machines, this minimum applies to each extruder.";
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@ -306,6 +306,8 @@ class GCodeConfig : public virtual StaticPrintConfig
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ConfigOptionBool gcode_comments;
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ConfigOptionEnum<GCodeFlavor> gcode_flavor;
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ConfigOptionString layer_gcode;
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ConfigOptionFloat max_print_speed;
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ConfigOptionFloat max_volumetric_speed;
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ConfigOptionFloat pressure_advance;
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ConfigOptionFloats retract_length;
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ConfigOptionFloats retract_length_toolchange;
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@ -331,6 +333,8 @@ class GCodeConfig : public virtual StaticPrintConfig
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this->gcode_comments.value = false;
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this->gcode_flavor.value = gcfRepRap;
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this->layer_gcode.value = "";
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this->max_print_speed.value = 80;
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this->max_volumetric_speed.value = 0;
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this->pressure_advance.value = 0;
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this->retract_length.values.resize(1);
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this->retract_length.values[0] = 2;
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@ -361,6 +365,8 @@ class GCodeConfig : public virtual StaticPrintConfig
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if (opt_key == "gcode_comments") return &this->gcode_comments;
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if (opt_key == "gcode_flavor") return &this->gcode_flavor;
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if (opt_key == "layer_gcode") return &this->layer_gcode;
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if (opt_key == "max_print_speed") return &this->max_print_speed;
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if (opt_key == "max_volumetric_speed") return &this->max_volumetric_speed;
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if (opt_key == "pressure_advance") return &this->pressure_advance;
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if (opt_key == "retract_length") return &this->retract_length;
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if (opt_key == "retract_length_toolchange") return &this->retract_length_toolchange;
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@ -28,6 +28,12 @@
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%code{% RETVAL = THIS->entities.size(); %};
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int items_count()
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%code{% RETVAL = THIS->items_count(); %};
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ExtrusionEntityCollection* flatten()
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%code{%
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RETVAL = new ExtrusionEntityCollection();
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THIS->flatten(RETVAL);
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%};
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double min_mm3_per_mm();
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bool empty()
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%code{% RETVAL = THIS->entities.empty(); %};
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std::vector<size_t> orig_indices()
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