package Slic3r::GCode::Base; use Moo; use List::Util qw(min max first); has 'gcode_config' => (is => 'ro', default => sub { Slic3r::Config::GCode->new }); has '_extrusion_axis' => (is => 'rw', default => sub { 'E' }); has '_extruders' => (is => 'ro', default => sub {{}}); has '_extruder' => (is => 'rw'); has '_multiple_extruders' => (is => 'rw', default => sub { 0 }); has '_last_acceleration' => (is => 'rw', default => sub { 0 }); has '_last_fan_speed' => (is => 'rw', default => sub { 0 }); sub apply_print_config { my ($self, $print_config) = @_; $self->gcode_config->apply_print_config($print_config); if ($self->gcode_config->gcode_flavor eq 'mach3') { $self->_extrusion_axis('A'); } elsif ($self->gcode_config->gcode_flavor eq 'no-extrusion') { $self->_extrusion_axis(''); } else { $self->_extrusion_axis($self->gcode_config->extrusion_axis); } } sub set_extruders { my ($self, $extruder_ids) = @_; foreach my $i (@$extruder_ids) { $self->_extruders->{$i} = my $e = Slic3r::Extruder->new($i, $self->config); } # we enable support for multiple extruder if any extruder greater than 0 is used # (even if prints only uses that one) since we need to output Tx commands # first extruder has index 0 $self->_multiple_extruders(max(@$extruder_ids) > 0); } sub set_temperature { my ($self, $temperature, $wait, $tool) = @_; return "" if $wait && $self->gcode_config->gcode_flavor =~ /^(?:makerware|sailfish)$/; my ($code, $comment) = ($wait && $self->gcode_config->gcode_flavor ne 'teacup') ? ('M109', 'wait for temperature to be reached') : ('M104', 'set temperature'); my $gcode = sprintf "$code %s%d %s; $comment\n", ($self->gcode_config->gcode_flavor eq 'mach3' ? 'P' : 'S'), $temperature, (defined $tool && ($self->_multiple_extruders || $self->gcode_config->gcode_flavor =~ /^(?:makerware|sailfish)$/)) ? "T$tool " : ""; $gcode .= "M116 ; wait for temperature to be reached\n" if $self->gcode_config->gcode_flavor eq 'teacup' && $wait; return $gcode; } sub set_bed_temperature { my ($self, $temperature, $wait) = @_; my ($code, $comment) = ($wait && $self->gcode_config->gcode_flavor ne 'teacup') ? (($self->gcode_config->gcode_flavor =~ /^(?:makerware|sailfish)$/ ? 'M109' : 'M190'), 'wait for bed temperature to be reached') : ('M140', 'set bed temperature'); my $gcode = sprintf "$code %s%d ; $comment\n", ($self->gcode_config->gcode_flavor eq 'mach3' ? 'P' : 'S'), $temperature; $gcode .= "M116 ; wait for bed temperature to be reached\n" if $self->gcode_config->gcode_flavor eq 'teacup' && $wait; return $gcode; } sub set_fan { my ($self, $speed, $dont_save) = @_; if ($self->_last_fan_speed != $speed || $dont_save) { $self->_last_fan_speed($speed) if !$dont_save; if ($speed == 0) { my $code = $self->gcode_config->gcode_flavor eq 'teacup' ? 'M106 S0' : $self->gcode_config->gcode_flavor =~ /^(?:makerware|sailfish)$/ ? 'M127' : 'M107'; return sprintf "$code%s\n", ($self->gcode_config->gcode_comments ? ' ; disable fan' : ''); } else { if ($self->gcode_config->gcode_flavor =~ /^(?:makerware|sailfish)$/) { return sprintf "M126%s\n", ($self->gcode_config->gcode_comments ? ' ; enable fan' : ''); } else { return sprintf "M106 %s%d%s\n", ($self->gcode_config->gcode_flavor eq 'mach3' ? 'P' : 'S'), (255 * $speed / 100), ($self->gcode_config->gcode_comments ? ' ; enable fan' : ''); } } } return ""; } sub set_acceleration { my ($self, $acceleration) = @_; return "" if !$acceleration || $acceleration == $self->_last_acceleration; $self->_last_acceleration($acceleration); return sprintf "M204 S%s%s\n", $acceleration, ($self->gcode_config->gcode_comments ? ' ; adjust acceleration' : ''); } sub need_toolchange { my ($self, $extruder_id) = @_; # return false if this extruder was already selected return (!defined $self->_extruder) || ($self->_extruder->id != $extruder_id); } sub set_extruder { my ($self, $extruder_id) = @_; return "" if !$self->need_toolchange; return $self->_toolchange($extruder_id); } sub _toolchange { my ($self, $extruder_id) = @_; # set the new extruder $self->_extruder($self->_extruders->{$extruder_id}); # return the toolchange command # if we are running a single-extruder setup, just set the extruder and return nothing my $gcode = ""; if ($self->_multiple_extruders) { $gcode .= sprintf "%s%d%s\n", ($self->gcode_config->gcode_flavor eq 'makerware' ? 'M135 T' : $self->gcode_config->gcode_flavor eq 'sailfish' ? 'M108 T' : 'T'), $extruder_id, ($self->gcode_config->gcode_comments ? ' ; change extruder' : ''); $gcode .= $self->reset_e; } return $gcode; } sub reset_e { my ($self) = @_; return "" if $self->config->gcode_flavor =~ /^(?:mach3|makerware|sailfish)$/; $self->_extruder->set_E(0) if $self->_extruder; if ($self->_extrusion_axis ne '' && !$self->gcode_config->use_relative_e_distances) { return sprintf "G92 %s0%s\n", $self->gcode_config->extrusion_axis, ($self->config->gcode_comments ? ' ; reset extrusion distance' : ''); } else { return ""; } } sub has_multiple_extruders { my ($self) = @_; return $self->_multiple_extruders; } sub extruder { my ($self) = @_; return $self->_extruder; } sub extruders { my ($self) = @_; return [ sort { $a->id <=> $b->id } values %{$self->_extruders} ]; } package Slic3r::GCode; use Moo; use List::Util qw(min max first); use Slic3r::ExtrusionLoop ':roles'; use Slic3r::ExtrusionPath ':roles'; use Slic3r::Flow ':roles'; use Slic3r::Geometry qw(epsilon scale unscale scaled_epsilon points_coincide PI X Y B); use Slic3r::Geometry::Clipper qw(union_ex offset_ex); use Slic3r::Surface ':types'; extends 'Slic3r::GCode::Base'; has 'config' => (is => 'ro', default => sub { Slic3r::Config::Full->new }); has 'placeholder_parser' => (is => 'rw', default => sub { Slic3r::GCode::PlaceholderParser->new }); has 'ooze_prevention' => (is => 'rw'); has 'enable_loop_clipping' => (is => 'rw', default => sub {1}); has 'enable_wipe' => (is => 'rw', default => sub {0}); # at least one extruder has wipe enabled has 'layer_count' => (is => 'ro'); has '_layer_index' => (is => 'rw', default => sub {-1}); # just a counter has 'layer' => (is => 'rw'); has '_layer_islands' => (is => 'rw'); has '_upper_layer_islands' => (is => 'rw'); has '_seam_position' => (is => 'ro', default => sub { {} }); # $object => pos has 'shift_x' => (is => 'rw', default => sub {0} ); has 'shift_y' => (is => 'rw', default => sub {0} ); has 'z' => (is => 'rw'); has 'external_mp' => (is => 'rw'); has 'layer_mp' => (is => 'rw'); has 'new_object' => (is => 'rw', default => sub {0}); has 'straight_once' => (is => 'rw', default => sub {1}); has 'elapsed_time' => (is => 'rw', default => sub {0} ); # seconds has 'lifted' => (is => 'rw', default => sub {0} ); has 'last_pos' => (is => 'rw', default => sub { Slic3r::Point->new(0,0) } ); has 'wipe_path' => (is => 'rw'); sub apply_print_config { my ($self, $print_config) = @_; $self->SUPER::apply_print_config($print_config); $self->config->apply_print_config($print_config); } sub set_extruders { my ($self, $extruder_ids) = @_; $self->SUPER::set_extruders($extruder_ids); # enable wipe path generation if any extruder has wipe enabled $self->enable_wipe(defined first { $_->wipe } values %{$self->_extruders}); } sub set_shift { my ($self, @shift) = @_; # if shift increases (goes towards right), last_pos decreases because it goes towards left my @translate = ( scale ($self->shift_x - $shift[X]), scale ($self->shift_y - $shift[Y]), ); $self->last_pos->translate(@translate); $self->wipe_path->translate(@translate) if $self->wipe_path; $self->shift_x($shift[X]); $self->shift_y($shift[Y]); } sub change_layer { my ($self, $layer) = @_; $self->layer($layer); $self->_layer_index($self->_layer_index + 1); # avoid computing islands and overhangs if they're not needed $self->_layer_islands($layer->islands); $self->_upper_layer_islands($layer->upper_layer ? $layer->upper_layer->islands : []); if ($self->config->avoid_crossing_perimeters) { $self->layer_mp(Slic3r::MotionPlanner->new( union_ex([ map @$_, @{$layer->slices} ], 1), )); } my $gcode = ""; if ($self->config->gcode_flavor =~ /^(?:makerware|sailfish)$/ && defined $self->layer_count) { # TODO: cap this to 99% and add an explicit M73 P100 in the end G-code $gcode .= sprintf "M73 P%s%s\n", int(99 * ($self->_layer_index / ($self->layer_count - 1))), ($self->config->gcode_comments ? ' ; update progress' : ''); } $gcode .= $self->move_z($layer->print_z); return $gcode; } # this method accepts Z in unscaled coordinates sub move_z { my ($self, $z, $comment) = @_; my $gcode = ""; $z += $self->config->z_offset; my $current_z = $self->z; my $nominal_z = defined $current_z ? ($current_z - $self->lifted) : undef; if (!defined $current_z || $z > $current_z || $z < $nominal_z) { # we're moving above the current actual Z (so above the lift height of the current # layer if any) or below the current nominal layer # in both cases, we're going to the nominal Z of the next layer $self->lifted(0); if ($self->_extruder->retract_layer_change) { # this retraction may alter $self->z $gcode .= $self->retract(move_z => $z); $current_z = $self->z; # update current z in case retract() changed it $nominal_z = defined $current_z ? ($current_z - $self->lifted) : undef; } $gcode .= $self->G0(undef, $z, 0, $self->config->travel_speed*60, $comment || ('move to next layer (' . $self->layer->id . ')')) if !defined $current_z || abs($z - $nominal_z) > epsilon; } elsif ($z < $current_z) { # we're moving above the current nominal layer height and below the current actual one. # we're basically advancing to next layer, whose nominal Z is still lower than the previous # layer Z with lift. $self->lifted($current_z - $z); } return $gcode; } sub extrude { my $self = shift; $_[0]->isa('Slic3r::ExtrusionLoop') ? $self->extrude_loop(@_) : $self->extrude_path(@_); } sub extrude_loop { my ($self, $loop, $description, $speed) = @_; # make a copy; don't modify the orientation of the original loop object otherwise # next copies (if any) would not detect the correct orientation $loop = $loop->clone; # extrude all loops ccw my $was_clockwise = $loop->make_counter_clockwise; # find the point of the loop that is closest to the current extruder position # or randomize if requested my $last_pos = $self->last_pos; if ($self->config->spiral_vase) { $loop->split_at($last_pos); } elsif ($self->config->seam_position eq 'nearest' || $self->config->seam_position eq 'aligned') { # simplify polygon in order to skip false positives in concave/convex detection my $polygon = $loop->polygon; my @simplified = @{$polygon->simplify(scale $self->_extruder->nozzle_diameter/2)}; # concave vertices have priority my @candidates = map @{$_->concave_points(PI*4/3)}, @simplified; # if no concave points were found, look for convex vertices @candidates = map @{$_->convex_points(PI*2/3)}, @simplified if !@candidates; # retrieve the last start position for this object my $obj_ptr; if (defined $self->layer) { $obj_ptr = $self->layer->object->ptr; if (defined $self->_seam_position->{$self->layer->object}) { $last_pos = $self->_seam_position->{$obj_ptr}; } } my $point; if ($self->config->seam_position eq 'nearest') { @candidates = @$polygon if !@candidates; $point = $last_pos->nearest_point(\@candidates); $loop->split_at_vertex($point); } elsif (@candidates) { my @non_overhang = grep !$loop->has_overhang_point($_), @candidates; @candidates = @non_overhang if @non_overhang; $point = $last_pos->nearest_point(\@candidates); $loop->split_at_vertex($point); } else { $point = $last_pos->projection_onto_polygon($polygon); $loop->split_at($point); } $self->_seam_position->{$obj_ptr} = $point; } elsif ($self->config->seam_position eq 'random') { if ($loop->role == EXTRL_ROLE_CONTOUR_INTERNAL_PERIMETER) { my $polygon = $loop->polygon; my $centroid = $polygon->centroid; $last_pos = Slic3r::Point->new($polygon->bounding_box->x_max, $centroid->y); #)) $last_pos->rotate(rand(2*PI), $centroid); } $loop->split_at($last_pos); } # clip the path to avoid the extruder to get exactly on the first point of the loop; # if polyline was shorter than the clipping distance we'd get a null polyline, so # we discard it in that case my $clip_length = $self->enable_loop_clipping ? scale($self->_extruder->nozzle_diameter) * &Slic3r::LOOP_CLIPPING_LENGTH_OVER_NOZZLE_DIAMETER : 0; # get paths my @paths = @{$loop->clip_end($clip_length)}; return '' if !@paths; # apply the small perimeter speed if ($paths[0]->is_perimeter && $loop->length <= &Slic3r::SMALL_PERIMETER_LENGTH) { $speed //= $self->config->get_abs_value('small_perimeter_speed'); } $speed //= -1; # extrude along the path my $gcode = join '', map $self->_extrude_path($_, $description, $speed), @paths; # reset acceleration $gcode .= $self->set_acceleration($self->config->default_acceleration); $self->wipe_path($paths[-1]->polyline->clone) if $self->enable_wipe; # TODO: don't limit wipe to last path # make a little move inwards before leaving loop if ($paths[-1]->role == EXTR_ROLE_EXTERNAL_PERIMETER && defined $self->layer && $self->config->perimeters > 1) { my $last_path_polyline = $paths[-1]->polyline; # detect angle between last and first segment # the side depends on the original winding order of the polygon (left for contours, right for holes) my @points = $was_clockwise ? (-2, 1) : (1, -2); my $angle = Slic3r::Geometry::angle3points(@$last_path_polyline[0, @points]) / 3; $angle *= -1 if $was_clockwise; # create the destination point along the first segment and rotate it # we make sure we don't exceed the segment length because we don't know # the rotation of the second segment so we might cross the object boundary my $first_segment = Slic3r::Line->new(@$last_path_polyline[0,1]); my $distance = min(scale($self->_extruder->nozzle_diameter), $first_segment->length); my $point = $first_segment->point_at($distance); $point->rotate($angle, $last_path_polyline->first_point); # generate the travel move $gcode .= $self->travel_to($point, $paths[-1]->role, "move inwards before travel"); } return $gcode; } sub extrude_path { my ($self, $path, $description, $speed) = @_; my $gcode = $self->_extrude_path($path, $description, $speed); # reset acceleration $gcode .= $self->set_acceleration($self->config->default_acceleration); return $gcode; } sub _extrude_path { my ($self, $path, $description, $speed) = @_; $path->simplify(&Slic3r::SCALED_RESOLUTION); # go to first point of extrusion path my $gcode = ""; { my $first_point = $path->first_point; $gcode .= $self->travel_to($first_point, $path->role, "move to first $description point") if !defined $self->last_pos || !$self->last_pos->coincides_with($first_point); } # compensate retraction $gcode .= $self->unretract; # adjust acceleration { my $acceleration; if ($self->config->first_layer_acceleration && $self->layer->id == 0) { $acceleration = $self->config->first_layer_acceleration; } elsif ($self->config->perimeter_acceleration && $path->is_perimeter) { $acceleration = $self->config->perimeter_acceleration; } elsif ($self->config->infill_acceleration && $path->is_fill) { $acceleration = $self->config->infill_acceleration; } elsif ($self->config->infill_acceleration && $path->is_bridge) { $acceleration = $self->config->bridge_acceleration; } else { $acceleration = $self->config->default_acceleration; } $gcode .= $self->set_acceleration($acceleration); } # calculate extrusion length per distance unit my $e = $self->_extruder->e_per_mm3 * $path->mm3_per_mm; $e = 0 if !$self->_extrusion_axis; # set speed my $F; if ($path->role == EXTR_ROLE_PERIMETER) { $F = $self->config->get_abs_value('perimeter_speed'); } elsif ($path->role == EXTR_ROLE_EXTERNAL_PERIMETER) { $F = $self->config->get_abs_value('external_perimeter_speed'); } elsif ($path->role == EXTR_ROLE_OVERHANG_PERIMETER || $path->role == EXTR_ROLE_BRIDGE) { $F = $self->config->get_abs_value('bridge_speed'); } elsif ($path->role == EXTR_ROLE_FILL) { $F = $self->config->get_abs_value('infill_speed'); } elsif ($path->role == EXTR_ROLE_SOLIDFILL) { $F = $self->config->get_abs_value('solid_infill_speed'); } elsif ($path->role == EXTR_ROLE_TOPSOLIDFILL) { $F = $self->config->get_abs_value('top_solid_infill_speed'); } elsif ($path->role == EXTR_ROLE_GAPFILL) { $F = $self->config->get_abs_value('gap_fill_speed'); } else { $F = $speed // -1; die "Invalid speed" if $F < 0; # $speed == -1 } $F *= 60; # convert mm/sec to mm/min if ($self->layer->id == 0) { $F = $self->config->get_abs_value_over('first_layer_speed', $F/60) * 60; } # extrude arc or line $gcode .= ";_BRIDGE_FAN_START\n" if $path->is_bridge; my $path_length = unscale $path->length; { $gcode .= $path->gcode($self->_extruder, $e, $F, $self->shift_x - $self->_extruder->extruder_offset->x, $self->shift_y - $self->_extruder->extruder_offset->y, #,, $self->_extrusion_axis, $self->config->gcode_comments ? " ; $description" : ""); if ($self->enable_wipe) { $self->wipe_path($path->polyline->clone); $self->wipe_path->reverse; } } $gcode .= ";_BRIDGE_FAN_END\n" if $path->is_bridge; $self->last_pos($path->last_point); if ($self->config->cooling) { my $path_time = $path_length / $F * 60; $self->elapsed_time($self->elapsed_time + $path_time); } return $gcode; } sub travel_to { my ($self, $point, $role, $comment) = @_; my $gcode = ""; my $travel = Slic3r::Line->new($self->last_pos, $point); # move travel back to original layer coordinates for the island check. # note that we're only considering the current object's islands, while we should # build a more complete configuration space $travel->translate(-$self->shift_x, -$self->shift_y); # skip retraction if the travel move is contained in an island in the current layer # *and* in an island in the upper layer (so that the ooze will not be visible) if ($travel->length < scale $self->_extruder->retract_before_travel || ($self->config->only_retract_when_crossing_perimeters && $self->config->fill_density > 0 && (first { $_->contains_line($travel) } @{$self->_upper_layer_islands}) && (first { $_->contains_line($travel) } @{$self->_layer_islands})) || (defined $role && $role == EXTR_ROLE_SUPPORTMATERIAL && (first { $_->contains_line($travel) } @{$self->layer->support_islands})) ) { $self->straight_once(0); $gcode .= $self->G0($point, undef, 0, $self->config->travel_speed*60, $comment || ""); } elsif (!$self->config->avoid_crossing_perimeters || $self->straight_once) { $self->straight_once(0); $gcode .= $self->retract; $gcode .= $self->G0($point, undef, 0, $self->config->travel_speed*60, $comment || ""); } else { if ($self->new_object) { $self->new_object(0); # represent $point in G-code coordinates $point = $point->clone; my @shift = ($self->shift_x, $self->shift_y); $point->translate(map scale $_, @shift); # calculate path (external_mp uses G-code coordinates so we temporary need a null shift) $self->set_shift(0,0); $gcode .= $self->_plan($self->external_mp, $point, $comment); $self->set_shift(@shift); } else { $gcode .= $self->_plan($self->layer_mp, $point, $comment); } } return $gcode; } sub _plan { my ($self, $mp, $point, $comment) = @_; my $gcode = ""; my @travel = @{$mp->shortest_path($self->last_pos, $point)->lines}; # if the path is not contained in a single island we need to retract my $need_retract = !$self->config->only_retract_when_crossing_perimeters; if (!$need_retract) { $need_retract = 1; foreach my $island (@{$self->_upper_layer_islands}) { # discard the island if at any line is not enclosed in it next if first { !$island->contains_line($_) } @travel; # okay, this island encloses the full travel path $need_retract = 0; last; } } # do the retract (the travel_to argument is broken) $gcode .= $self->retract if $need_retract; # append the actual path and return # use G1 because we rely on paths being straight (G0 may make round paths) $gcode .= join '', map $self->G1($_->b, undef, 0, $self->config->travel_speed*60, $comment || ""), @travel; return $gcode; } sub retract { my ($self, %params) = @_; return "" if !defined $self->_extruder; # get the retraction length and abort if none my ($length, $restart_extra, $comment) = $params{toolchange} ? ($self->_extruder->retract_length_toolchange, $self->_extruder->retract_restart_extra_toolchange, "retract for tool change") : ($self->_extruder->retract_length, $self->_extruder->retract_restart_extra, "retract"); # if we already retracted, reduce the required amount of retraction $length -= $self->_extruder->retracted; return "" unless $length > 0; my $gcode = ""; # wipe my $wipe_path; if ($self->_extruder->wipe && $self->wipe_path) { my @points = @{$self->wipe_path}; $wipe_path = Slic3r::Polyline->new($self->last_pos, @{$self->wipe_path}[1..$#{$self->wipe_path}]); $wipe_path->clip_end($wipe_path->length - $self->_extruder->scaled_wipe_distance($self->config->travel_speed)); } # prepare moves my $retract = [undef, undef, -$length, $self->_extruder->retract_speed_mm_min, $comment]; my $lift = ($self->config->retract_lift->[0] == 0 || defined $params{move_z}) && !$self->lifted ? undef : [undef, $self->z + $self->config->retract_lift->[0], 0, $self->config->travel_speed*60, 'lift plate during travel']; # check that we have a positive wipe length if ($wipe_path) { # subdivide the retraction my $retracted = 0; foreach my $line (@{$wipe_path->lines}) { my $segment_length = $line->length; # reduce retraction length a bit to avoid effective retraction speed to be greater than the configured one # due to rounding my $e = $retract->[2] * ($segment_length / $self->_extruder->scaled_wipe_distance($self->config->travel_speed)) * 0.95; $retracted += $e; $gcode .= $self->G1($line->b, undef, $e, $self->config->travel_speed*60*0.8, $retract->[3] . ";_WIPE"); } if ($retracted > $retract->[2]) { # if we retracted less than we had to, retract the remainder # TODO: add regression test $gcode .= $self->G1(undef, undef, $retract->[2] - $retracted, $self->_extruder->retract_speed_mm_min, $comment); } $gcode .= $self->reset_e; } elsif ($self->gcode_config->use_firmware_retraction) { $gcode .= "G10 ; retract\n"; } else { $gcode .= $self->G1(@$retract); # reset extrusion distance during retracts # this makes sure we leave sufficient precision in the firmware $gcode .= $self->reset_e; } if (!$self->lifted) { if (defined $params{move_z} && $self->config->retract_lift->[0] > 0) { my $travel = [undef, $params{move_z} + $self->config->retract_lift->[0], 0, $self->config->travel_speed*60, 'move to next layer (' . $self->layer->id . ') and lift']; $gcode .= $self->G0(@$travel); $self->lifted($self->config->retract_lift->[0]); } elsif ($lift) { $gcode .= $self->G1(@$lift); } } $self->_extruder->set_retracted($self->_extruder->retracted + $length); $self->_extruder->set_restart_extra($restart_extra); $self->lifted($self->config->retract_lift->[0]) if $lift; $gcode .= "M103 ; extruder off\n" if $self->config->gcode_flavor eq 'makerware'; return $gcode; } sub unretract { my ($self) = @_; my $gcode = ""; $gcode .= "M101 ; extruder on\n" if $self->config->gcode_flavor eq 'makerware'; if ($self->lifted) { $gcode .= $self->G0(undef, $self->z - $self->lifted, 0, $self->config->travel_speed*60, 'restore layer Z'); $self->lifted(0); } my $to_unretract = $self->_extruder->retracted + $self->_extruder->restart_extra; if ($to_unretract) { if ($self->gcode_config->use_firmware_retraction) { $gcode .= "G11 ; unretract\n"; $gcode .= $self->reset_e; } elsif ($self->_extrusion_axis) { # use G1 instead of G0 because G0 will blend the restart with the previous travel move $gcode .= sprintf "G1 %s%.5f F%.3f", $self->_extrusion_axis, $self->_extruder->extrude($to_unretract), $self->_extruder->retract_speed_mm_min; $gcode .= " ; compensate retraction" if $self->config->gcode_comments; $gcode .= "\n"; } $self->_extruder->set_retracted(0); $self->_extruder->set_restart_extra(0); } return $gcode; } sub G0 { my $self = shift; return $self->G1(@_) if !($self->config->g0 || $self->config->gcode_flavor eq 'mach3'); return $self->_G0_G1("G0", @_); } sub G1 { my $self = shift; return $self->_G0_G1("G1", @_); } sub _G0_G1 { my ($self, $gcode, $point, $z, $e, $F, $comment) = @_; if ($point) { $gcode .= sprintf " X%.3f Y%.3f", ($point->x * &Slic3r::SCALING_FACTOR) + $self->shift_x - $self->_extruder->extruder_offset->x, ($point->y * &Slic3r::SCALING_FACTOR) + $self->shift_y - $self->_extruder->extruder_offset->y; #** $self->last_pos($point->clone); } if (defined $z && (!defined $self->z || $z != $self->z)) { $self->z($z); $gcode .= sprintf " Z%.3f", $z; } return $self->_Gx($gcode, $e, $F, $comment); } sub _Gx { my ($self, $gcode, $e, $F, $comment) = @_; $gcode .= sprintf " F%.3f", $F; # output extrusion distance if ($e && $self->_extrusion_axis) { $gcode .= sprintf " %s%.5f", $self->_extrusion_axis, $self->_extruder->extrude($e); } $gcode .= " ; $comment" if $comment && $self->config->gcode_comments; return "$gcode\n"; } sub set_extruder { my ($self, $extruder_id) = @_; return "" if !$self->need_toolchange($extruder_id); # if we are running a single-extruder setup, just set the extruder and return nothing if (!$self->_multiple_extruders) { return $self->_toolchange($extruder_id); } # prepend retraction on the current extruder my $gcode = $self->retract(toolchange => 1); # append custom toolchange G-code if (defined $self->_extruder && $self->config->toolchange_gcode) { $gcode .= sprintf "%s\n", $self->placeholder_parser->process($self->config->toolchange_gcode, { previous_extruder => $self->_extruder->id, next_extruder => $extruder_id, }); } # if ooze prevention is enabled, park current extruder in the nearest # standby point and set it to the standby temperature $gcode .= $self->ooze_prevention->pre_toolchange($self) if $self->ooze_prevention && defined $self->_extruder; # append the toolchange command $gcode .= $self->_toolchange($extruder_id); # set the new extruder to the operating temperature $gcode .= $self->ooze_prevention->post_toolchange($self) if $self->ooze_prevention; return $gcode; } 1;