This commit is contained in:
enricoturri1966 2023-05-19 09:44:52 +02:00
commit 1619152350
19 changed files with 146 additions and 73 deletions

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@ -1,4 +1,5 @@
min_slic3r_version = 2.6.0-beta0 min_slic3r_version = 2.6.0-beta0
1.9.0-beta1 Updated cooling settings for some ASA filaments to increase interlayer adhesion (XL/MK4).
1.9.0-beta0 Updated start g-code script for MK4/XL. 1.9.0-beta0 Updated start g-code script for MK4/XL.
min_slic3r_version = 2.6.0-alpha5 min_slic3r_version = 2.6.0-alpha5
1.9.0-alpha4 Updated XL and MK4 profiles. Updated PC Blend Carbon Fiber density. 1.9.0-alpha4 Updated XL and MK4 profiles. Updated PC Blend Carbon Fiber density.
@ -14,12 +15,14 @@ min_slic3r_version = 2.6.0-alpha1
1.6.0-alpha1 Updated FW version notification. Decreased min layer time for PLA. 1.6.0-alpha1 Updated FW version notification. Decreased min layer time for PLA.
1.6.0-alpha0 Default top fill set to monotonic lines. Updated infill/perimeter overlap values. Updated output filename format. Enabled dynamic overhang speeds. 1.6.0-alpha0 Default top fill set to monotonic lines. Updated infill/perimeter overlap values. Updated output filename format. Enabled dynamic overhang speeds.
min_slic3r_version = 2.5.2-rc0 min_slic3r_version = 2.5.2-rc0
1.7.5 Updated cooling settings for some ASA filaments to increase interlayer adhesion (XL/MK4). Updated LA values (XL/MK4).
1.7.4 Updated start g-code script for MK4/XL (fixed pre-print temperature for PA filaments). 1.7.4 Updated start g-code script for MK4/XL (fixed pre-print temperature for PA filaments).
1.7.3 Updated XL and MK4 profiles. Updated PC Blend Carbon Fiber density. 1.7.3 Updated XL and MK4 profiles. Updated PC Blend Carbon Fiber density.
1.7.2 Updated compatibility condition for MMU1 filaments. 1.7.2 Updated compatibility condition for MMU1 filaments.
1.7.1 Added SLA materials. Updated MK4 and XL profiles. 1.7.1 Added SLA materials. Updated MK4 and XL profiles.
1.7.0 Added profiles for Original Prusa MK4. 1.7.0 Added profiles for Original Prusa MK4.
min_slic3r_version = 2.5.1-rc0 min_slic3r_version = 2.5.1-rc0
1.6.6 Updated cooling settings for some ASA filaments to increase interlayer adhesion (XL/MK4).
1.6.5 Updated start g-code script for MK4/XL (fixed pre-print temperature for PA filaments). 1.6.5 Updated start g-code script for MK4/XL (fixed pre-print temperature for PA filaments).
1.6.4 Fixed compatibility condition for MMU1 filaments. 1.6.4 Fixed compatibility condition for MMU1 filaments.
1.6.3 Added SLA materials. 1.6.3 Added SLA materials.

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@ -5,7 +5,7 @@
name = Prusa Research name = Prusa Research
# Configuration version of this file. Config file will only be installed, if the config_version differs. # Configuration version of this file. Config file will only be installed, if the config_version differs.
# This means, the server may force the PrusaSlicer configuration to be downgraded. # This means, the server may force the PrusaSlicer configuration to be downgraded.
config_version = 1.9.0-beta0 config_version = 1.9.0-beta1
# Where to get the updates from? # Where to get the updates from?
config_update_url = https://files.prusa3d.com/wp-content/uploads/repository/PrusaSlicer-settings-master/live/PrusaResearch/ config_update_url = https://files.prusa3d.com/wp-content/uploads/repository/PrusaSlicer-settings-master/live/PrusaResearch/
changelog_url = https://files.prusa3d.com/?latest=slicer-profiles&lng=%1% changelog_url = https://files.prusa3d.com/?latest=slicer-profiles&lng=%1%
@ -3618,7 +3618,7 @@ start_filament_gcode = "M900 K{if printer_notes=~/.*PRINTER_MODEL_MINI.*/ and no
compatible_printers_condition = ! (printer_notes=~/.*PRINTER_VENDOR_PRUSA3D.*/ and printer_notes=~/.*PRINTER_MODEL_MK(2.5|3).*/ and single_extruder_multi_material) and printer_notes!~/.*PG.*/ compatible_printers_condition = ! (printer_notes=~/.*PRINTER_VENDOR_PRUSA3D.*/ and printer_notes=~/.*PRINTER_MODEL_MK(2.5|3).*/ and single_extruder_multi_material) and printer_notes!~/.*PG.*/
[filament:*PLAPG*] [filament:*PLAPG*]
start_filament_gcode = "M900 K{if nozzle_diameter[0]==0.4}0.06{elsif nozzle_diameter[0]==0.25}0.14{elsif nozzle_diameter[0]==0.3}0.08{elsif nozzle_diameter[0]==0.35}0.07{elsif nozzle_diameter[0]==0.6}0.03{elsif nozzle_diameter[0]==0.5}0.035{elsif nozzle_diameter[0]==0.8}0.02{else}0{endif} ; Filament gcode\n\nM142 S36 ; set heatbreak target temp" start_filament_gcode = "M900 K{if nozzle_diameter[0]==0.4}0.05{elsif nozzle_diameter[0]==0.25}0.14{elsif nozzle_diameter[0]==0.3}0.07{elsif nozzle_diameter[0]==0.35}0.06{elsif nozzle_diameter[0]==0.6}0.03{elsif nozzle_diameter[0]==0.5}0.035{elsif nozzle_diameter[0]==0.8}0.015{else}0{endif} ; Filament gcode\n\nM142 S36 ; set heatbreak target temp"
compatible_printers_condition = printer_notes=~/.*PG.*/ and nozzle_diameter[0]!=0.8 and nozzle_diameter[0]!=0.6 compatible_printers_condition = printer_notes=~/.*PG.*/ and nozzle_diameter[0]!=0.8 and nozzle_diameter[0]!=0.6
slowdown_below_layer_time = 8 slowdown_below_layer_time = 8
filament_cooling_final_speed = 2 filament_cooling_final_speed = 2
@ -3675,7 +3675,7 @@ filament_max_volumetric_speed = 15
[filament:*PETPG*] [filament:*PETPG*]
compatible_printers_condition = printer_notes=~/.*PG.*/ and nozzle_diameter[0]!=0.6 and nozzle_diameter[0]!=0.8 compatible_printers_condition = printer_notes=~/.*PG.*/ and nozzle_diameter[0]!=0.6 and nozzle_diameter[0]!=0.8
filament_max_volumetric_speed = 10 filament_max_volumetric_speed = 10
start_filament_gcode = "M900 K{if nozzle_diameter[0]==0.4}0.08{elsif nozzle_diameter[0]==0.25}0.12{elsif nozzle_diameter[0]==0.3}0.1{elsif nozzle_diameter[0]==0.35}0.09{elsif nozzle_diameter[0]==0.6}0.04{elsif nozzle_diameter[0]==0.5}0.05{elsif nozzle_diameter[0]==0.8}0.02{else}0{endif} ; Filament gcode\n\nM142 S40 ; set heatbreak target temp" start_filament_gcode = "M900 K{if nozzle_diameter[0]==0.4}0.07{elsif nozzle_diameter[0]==0.25}0.12{elsif nozzle_diameter[0]==0.3}0.09{elsif nozzle_diameter[0]==0.35}0.08{elsif nozzle_diameter[0]==0.6}0.04{elsif nozzle_diameter[0]==0.5}0.05{elsif nozzle_diameter[0]==0.8}0.02{else}0{endif} ; Filament gcode\n\nM142 S40 ; set heatbreak target temp"
filament_cooling_final_speed = 1 filament_cooling_final_speed = 1
filament_cooling_initial_speed = 2 filament_cooling_initial_speed = 2
filament_cooling_moves = 1 filament_cooling_moves = 1
@ -4498,6 +4498,8 @@ filament_type = ASA
[filament:Fillamentum ASA @PG] [filament:Fillamentum ASA @PG]
inherits = Fillamentum ASA; *ABSPG* inherits = Fillamentum ASA; *ABSPG*
bed_temperature = 105 bed_temperature = 105
min_fan_speed = 10
max_fan_speed = 10
[filament:Fillamentum ASA @PG 0.6] [filament:Fillamentum ASA @PG 0.6]
inherits = Fillamentum ASA @PG; *ABS06PG* inherits = Fillamentum ASA @PG; *ABS06PG*
@ -4507,6 +4509,8 @@ inherits = Fillamentum ASA @PG; *ABS08PG*
[filament:Fillamentum ASA @MK4] [filament:Fillamentum ASA @MK4]
inherits = Fillamentum ASA; *ABSMK4* inherits = Fillamentum ASA; *ABSMK4*
min_fan_speed = 10
max_fan_speed = 10
[filament:Fillamentum ASA @MK4 0.6] [filament:Fillamentum ASA @MK4 0.6]
inherits = Fillamentum ASA @MK4; *ABS06MK4* inherits = Fillamentum ASA @MK4; *ABS06MK4*
@ -4541,6 +4545,8 @@ compatible_printers_condition = nozzle_diameter[0]!=0.8 and printer_model!="MINI
inherits = Prusament ASA; *ABSPG* inherits = Prusament ASA; *ABSPG*
first_layer_bed_temperature = 100 first_layer_bed_temperature = 100
bed_temperature = 105 bed_temperature = 105
min_fan_speed = 10
max_fan_speed = 10
[filament:Prusament ASA @PG 0.6] [filament:Prusament ASA @PG 0.6]
inherits = Prusament ASA @PG; *ABS06PG* inherits = Prusament ASA @PG; *ABS06PG*
@ -4552,6 +4558,8 @@ temperature = 265
[filament:Prusament ASA @MK4] [filament:Prusament ASA @MK4]
inherits = Prusament ASA; *ABSMK4* inherits = Prusament ASA; *ABSMK4*
min_fan_speed = 10
max_fan_speed = 10
[filament:Prusament ASA @MK4 0.6] [filament:Prusament ASA @MK4 0.6]
inherits = Prusament ASA @MK4; *ABS06MK4* inherits = Prusament ASA @MK4; *ABS06MK4*
@ -4590,6 +4598,8 @@ start_filament_gcode = "M900 K{if printer_notes=~/.*PRINTER_MODEL_MINI.*/ and no
[filament:Prusament PC Blend @PG] [filament:Prusament PC Blend @PG]
inherits = Prusament PC Blend; *PCPG* inherits = Prusament PC Blend; *PCPG*
filament_max_volumetric_speed = 9 filament_max_volumetric_speed = 9
min_fan_speed = 10
max_fan_speed = 10
[filament:Prusament PC Blend @PG 0.6] [filament:Prusament PC Blend @PG 0.6]
inherits = Prusament PC Blend @PG; *PC06PG* inherits = Prusament PC Blend @PG; *PC06PG*
@ -4602,6 +4612,8 @@ filament_max_volumetric_speed = 18
[filament:Prusament PC Blend @MK4] [filament:Prusament PC Blend @MK4]
inherits = Prusament PC Blend; *PCMK4* inherits = Prusament PC Blend; *PCMK4*
filament_max_volumetric_speed = 9 filament_max_volumetric_speed = 9
min_fan_speed = 10
max_fan_speed = 10
[filament:Prusament PC Blend @MK4 0.6] [filament:Prusament PC Blend @MK4 0.6]
inherits = Prusament PC Blend @MK4; *PC06MK4* inherits = Prusament PC Blend @MK4; *PC06MK4*
@ -4634,24 +4646,28 @@ compatible_printers_condition = printer_notes!~/.*PRINTER_MODEL_MK(2|2.5).*/ and
[filament:Prusament PC Blend Carbon Fiber @PG] [filament:Prusament PC Blend Carbon Fiber @PG]
inherits = Prusament PC Blend Carbon Fiber; *PCPG* inherits = Prusament PC Blend Carbon Fiber; *PCPG*
min_fan_speed = 10
max_fan_speed = 10
[filament:Prusament PC Blend Carbon Fiber @PG 0.6] [filament:Prusament PC Blend Carbon Fiber @PG 0.6]
inherits = Prusament PC Blend Carbon Fiber; *PC06PG* inherits = Prusament PC Blend Carbon Fiber @PG; *PC06PG*
filament_max_volumetric_speed = 13 filament_max_volumetric_speed = 13
[filament:Prusament PC Blend Carbon Fiber @PG 0.8] [filament:Prusament PC Blend Carbon Fiber @PG 0.8]
inherits = Prusament PC Blend Carbon Fiber; *PC08PG* inherits = Prusament PC Blend Carbon Fiber @PG; *PC08PG*
filament_max_volumetric_speed = 18 filament_max_volumetric_speed = 18
[filament:Prusament PC Blend Carbon Fiber @MK4] [filament:Prusament PC Blend Carbon Fiber @MK4]
inherits = Prusament PC Blend Carbon Fiber; *PCMK4* inherits = Prusament PC Blend Carbon Fiber; *PCMK4*
min_fan_speed = 10
max_fan_speed = 10
[filament:Prusament PC Blend Carbon Fiber @MK4 0.6] [filament:Prusament PC Blend Carbon Fiber @MK4 0.6]
inherits = Prusament PC Blend Carbon Fiber; *PC06MK4* inherits = Prusament PC Blend Carbon Fiber @MK4; *PC06MK4*
filament_max_volumetric_speed = 13 filament_max_volumetric_speed = 13
[filament:Prusament PC Blend Carbon Fiber @MK4 0.8] [filament:Prusament PC Blend Carbon Fiber @MK4 0.8]
inherits = Prusament PC Blend Carbon Fiber; *PC08MK4* inherits = Prusament PC Blend Carbon Fiber @MK4; *PC08MK4*
filament_max_volumetric_speed = 18 filament_max_volumetric_speed = 18
[filament:Prusament PC Blend Carbon Fiber @MK2] [filament:Prusament PC Blend Carbon Fiber @MK2]
@ -7290,6 +7306,8 @@ inherits = Ultrafuse ASA; *ABSPG*
first_layer_bed_temperature = 105 first_layer_bed_temperature = 105
bed_temperature = 105 bed_temperature = 105
filament_max_volumetric_speed = 5 filament_max_volumetric_speed = 5
min_fan_speed = 15
max_fan_speed = 40
[filament:Ultrafuse ASA @PG 0.6] [filament:Ultrafuse ASA @PG 0.6]
inherits = Ultrafuse ASA @PG; *ABS06PG* inherits = Ultrafuse ASA @PG; *ABS06PG*
@ -7302,6 +7320,8 @@ filament_max_volumetric_speed = 12
[filament:Ultrafuse ASA @MK4] [filament:Ultrafuse ASA @MK4]
inherits = Ultrafuse ASA; *ABSMK4* inherits = Ultrafuse ASA; *ABSMK4*
filament_max_volumetric_speed = 5 filament_max_volumetric_speed = 5
min_fan_speed = 15
max_fan_speed = 40
[filament:Ultrafuse ASA @MK4 0.6] [filament:Ultrafuse ASA @MK4 0.6]
inherits = Ultrafuse ASA @MK4; *ABS06MK4* inherits = Ultrafuse ASA @MK4; *ABS06MK4*

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@ -1,3 +1,4 @@
min_slic3r_version = 2.6.0-alpha0 min_slic3r_version = 2.6.0-alpha0
1.0.2 Updated compatible printer conditions.
1.0.1 Added Prusament PETG Carbon Fiber, Fiberthree F3 PA-GF30 Pro. 1.0.1 Added Prusament PETG Carbon Fiber, Fiberthree F3 PA-GF30 Pro.
1.0.0 Initial 1.0.0 Initial

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@ -2,7 +2,7 @@
[vendor] [vendor]
name = Templates name = Templates
config_version = 1.0.1 config_version = 1.0.2
config_update_url = https://files.prusa3d.com/wp-content/uploads/repository/PrusaSlicer-settings-master/live/Templates/ config_update_url = https://files.prusa3d.com/wp-content/uploads/repository/PrusaSlicer-settings-master/live/Templates/
templates_profile = 1 templates_profile = 1
@ -11,12 +11,12 @@ templates_profile = 1
[filament:*common*] [filament:*common*]
cooling = 1 cooling = 1
compatible_printers = compatible_printers =
compatible_printers_condition = compatible_printers_condition = printer_notes!~/.*PRINTER_VENDOR_TRILAB.*/ and printer_notes!~/.*PRINTER_MODEL_MK4IS.*/
end_filament_gcode = "; Filament-specific end gcode" end_filament_gcode = "; Filament-specific end gcode"
extrusion_multiplier = 1 extrusion_multiplier = 1
filament_loading_speed = 14 filament_loading_speed = 14
filament_loading_speed_start = 19 filament_loading_speed_start = 19
filament_unloading_speed = 90 filament_unloading_speed = 20
filament_unloading_speed_start = 100 filament_unloading_speed_start = 100
filament_toolchange_delay = 0 filament_toolchange_delay = 0
filament_cooling_moves = 1 filament_cooling_moves = 1
@ -1460,7 +1460,6 @@ cooling = 0
fan_always_on = 0 fan_always_on = 0
filament_max_volumetric_speed = 4 filament_max_volumetric_speed = 4
filament_type = METAL filament_type = METAL
compatible_printers_condition = nozzle_diameter[0]>=0.4
filament_colour = #FFFFFF filament_colour = #FFFFFF
[filament:Polymaker PC-Max] [filament:Polymaker PC-Max]
@ -1519,7 +1518,6 @@ first_layer_temperature = 230
max_fan_speed = 20 max_fan_speed = 20
min_fan_speed = 20 min_fan_speed = 20
temperature = 230 temperature = 230
compatible_printers_condition = nozzle_diameter[0]!=0.8 and printer_model!="MINI" and ! (printer_notes=~/.*PRINTER_VENDOR_PRUSA3D.*/ and printer_notes=~/.*PRINTER_MODEL_MK(2.5|3).*/ and single_extruder_multi_material)
[filament:Prusa PETG] [filament:Prusa PETG]
inherits = *PET* inherits = *PET*

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@ -1,9 +1,9 @@
#ifndef ARRANGE_HPP #ifndef ARRANGE_HPP
#define ARRANGE_HPP #define ARRANGE_HPP
#include "ExPolygon.hpp"
#include <boost/variant.hpp> #include <boost/variant.hpp>
#include <libslic3r/ExPolygon.hpp>
#include <libslic3r/BoundingBox.hpp> #include <libslic3r/BoundingBox.hpp>
namespace Slic3r { namespace Slic3r {

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@ -71,9 +71,11 @@ ThickPolylines make_fill_polylines(
vertical_lines[i].a = Point{x, y_min}; vertical_lines[i].a = Point{x, y_min};
vertical_lines[i].b = Point{x, y_max}; vertical_lines[i].b = Point{x, y_max};
} }
if (vertical_lines.size() > 0) {
vertical_lines.push_back(vertical_lines.back()); vertical_lines.push_back(vertical_lines.back());
vertical_lines.back().a = Point{coord_t(bb.min.x() + n_vlines * double(scaled_spacing) + scaled_spacing * 0.5), y_min}; vertical_lines.back().a = Point{coord_t(bb.min.x() + n_vlines * double(scaled_spacing) + scaled_spacing * 0.5), y_min};
vertical_lines.back().b = Point{vertical_lines.back().a.x(), y_max}; vertical_lines.back().b = Point{vertical_lines.back().a.x(), y_max};
}
std::vector<std::vector<Line>> polygon_sections(n_vlines); std::vector<std::vector<Line>> polygon_sections(n_vlines);
@ -276,7 +278,7 @@ ThickPolylines make_fill_polylines(
} }
} }
reconstructed_area = closing(reconstructed_area, float(SCALED_EPSILON), float(SCALED_EPSILON)); reconstructed_area = union_safety_offset(reconstructed_area);
ExPolygons gaps_for_additional_filling = diff_ex(filled_area, reconstructed_area); ExPolygons gaps_for_additional_filling = diff_ex(filled_area, reconstructed_area);
if (fill->overlap != 0) { if (fill->overlap != 0) {
gaps_for_additional_filling = offset_ex(gaps_for_additional_filling, scaled<float>(fill->overlap)); gaps_for_additional_filling = offset_ex(gaps_for_additional_filling, scaled<float>(fill->overlap));

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@ -882,14 +882,20 @@ namespace client
} }
} }
if (opt == nullptr) if (opt == nullptr)
ctx->throw_exception("Variable does not exist", IteratorRange(opt_key.begin(), opt_key.end())); ctx->throw_exception("Variable does not exist", opt_key);
if (opt->is_scalar()) if (opt->is_scalar()) {
if (opt->is_nil())
ctx->throw_exception("Trying to reference an undefined (nil) optional variable", opt_key);
output = opt->serialize(); output = opt->serialize();
else { } else {
const ConfigOptionVectorBase *vec = static_cast<const ConfigOptionVectorBase*>(opt); const ConfigOptionVectorBase *vec = static_cast<const ConfigOptionVectorBase*>(opt);
if (vec->empty()) if (vec->empty())
ctx->throw_exception("Indexing an empty vector variable", opt_key); ctx->throw_exception("Indexing an empty vector variable", opt_key);
output = vec->vserialize()[(idx >= vec->size()) ? 0 : idx]; if (idx >= vec->size())
idx = 0;
if (vec->is_nil(idx))
ctx->throw_exception("Trying to reference an undefined (nil) element of vector of optional values", opt_key);
output = vec->vserialize()[idx];
} }
} }
@ -917,7 +923,7 @@ namespace client
ctx->throw_exception("Trying to index a scalar variable", opt_key); ctx->throw_exception("Trying to index a scalar variable", opt_key);
const ConfigOptionVectorBase *vec = static_cast<const ConfigOptionVectorBase*>(opt); const ConfigOptionVectorBase *vec = static_cast<const ConfigOptionVectorBase*>(opt);
if (vec->empty()) if (vec->empty())
ctx->throw_exception("Indexing an empty vector variable", IteratorRange(opt_key.begin(), opt_key.end())); ctx->throw_exception("Indexing an empty vector variable", opt_key);
const ConfigOption *opt_index = ctx->resolve_symbol(std::string(opt_vector_index.begin(), opt_vector_index.end())); const ConfigOption *opt_index = ctx->resolve_symbol(std::string(opt_vector_index.begin(), opt_vector_index.end()));
if (opt_index == nullptr) if (opt_index == nullptr)
ctx->throw_exception("Variable does not exist", opt_key); ctx->throw_exception("Variable does not exist", opt_key);
@ -926,7 +932,11 @@ namespace client
int idx = opt_index->getInt(); int idx = opt_index->getInt();
if (idx < 0) if (idx < 0)
ctx->throw_exception("Negative vector index", opt_key); ctx->throw_exception("Negative vector index", opt_key);
output = vec->vserialize()[(idx >= (int)vec->size()) ? 0 : idx]; if (idx >= (int)vec->size())
idx = 0;
if (vec->is_nil(idx))
ctx->throw_exception("Trying to reference an undefined (nil) element of vector of optional values", opt_key);
output = vec->vserialize()[idx];
} }
static void resolve_variable( static void resolve_variable(
@ -976,6 +986,9 @@ namespace client
assert(opt.opt->is_scalar()); assert(opt.opt->is_scalar());
if (opt.opt->is_nil())
ctx->throw_exception("Trying to reference an undefined (nil) optional variable", opt.it_range);
switch (opt.opt->type()) { switch (opt.opt->type()) {
case coFloat: output.set_d(opt.opt->getFloat()); break; case coFloat: output.set_d(opt.opt->getFloat()); break;
case coInt: output.set_i(opt.opt->getInt()); break; case coInt: output.set_i(opt.opt->getInt()); break;
@ -1041,6 +1054,8 @@ namespace client
if (vec->empty()) if (vec->empty())
ctx->throw_exception("Indexing an empty vector variable", opt.it_range); ctx->throw_exception("Indexing an empty vector variable", opt.it_range);
size_t idx = (opt.index < 0) ? 0 : (opt.index >= int(vec->size())) ? 0 : size_t(opt.index); size_t idx = (opt.index < 0) ? 0 : (opt.index >= int(vec->size())) ? 0 : size_t(opt.index);
if (vec->is_nil(idx))
ctx->throw_exception("Trying to reference an undefined (nil) element of vector of optional values", opt.it_range);
switch (opt.opt->type()) { switch (opt.opt->type()) {
case coFloats: output.set_d(static_cast<const ConfigOptionFloats*>(opt.opt)->values[idx]); break; case coFloats: output.set_d(static_cast<const ConfigOptionFloats*>(opt.opt)->values[idx]); break;
case coInts: output.set_i(static_cast<const ConfigOptionInts*>(opt.opt)->values[idx]); break; case coInts: output.set_i(static_cast<const ConfigOptionInts*>(opt.opt)->values[idx]); break;
@ -1434,6 +1449,8 @@ namespace client
assert(lhs.opt->is_vector()); assert(lhs.opt->is_vector());
if (rhs.has_index() || ! rhs.opt->is_vector()) if (rhs.has_index() || ! rhs.opt->is_vector())
ctx->throw_exception("Cannot assign scalar to a vector", lhs.it_range); ctx->throw_exception("Cannot assign scalar to a vector", lhs.it_range);
if (rhs.opt->is_nil())
ctx->throw_exception("Some elements of the right hand side vector variable of optional values are undefined (nil)", rhs.it_range);
if (lhs.opt->type() != rhs.opt->type()) { if (lhs.opt->type() != rhs.opt->type()) {
// Vector types are not compatible. // Vector types are not compatible.
switch (lhs.opt->type()) { switch (lhs.opt->type()) {
@ -1470,6 +1487,8 @@ namespace client
if (rhs.has_index() || ! rhs.opt->is_vector()) if (rhs.has_index() || ! rhs.opt->is_vector())
// Stop parsing, let the other rules resolve this case. // Stop parsing, let the other rules resolve this case.
return false; return false;
if (rhs.opt->is_nil())
ctx->throw_exception("Some elements of the right hand side vector variable of optional values are undefined (nil)", rhs.it_range);
// Clone the vector variable. // Clone the vector variable.
std::unique_ptr<ConfigOption> opt_new; std::unique_ptr<ConfigOption> opt_new;
if (one_of(rhs.opt->type(), { coFloats, coInts, coStrings, coBools })) if (one_of(rhs.opt->type(), { coFloats, coInts, coStrings, coBools }))

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@ -2186,6 +2186,7 @@ void PrintObject::bridge_over_infill()
Polygon &new_poly = expanded_bridged_area.emplace_back(std::move(traced_poly.lows)); Polygon &new_poly = expanded_bridged_area.emplace_back(std::move(traced_poly.lows));
new_poly.points.insert(new_poly.points.end(), traced_poly.highs.rbegin(), traced_poly.highs.rend()); new_poly.points.insert(new_poly.points.end(), traced_poly.highs.rbegin(), traced_poly.highs.rend());
} }
expanded_bridged_area = union_safety_offset(expanded_bridged_area);
} }
polygons_rotate(expanded_bridged_area, -aligning_angle); polygons_rotate(expanded_bridged_area, -aligning_angle);

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@ -497,7 +497,7 @@ void TreeModelVolumes::calculateCollision(const coord_t radius, const LayerIndex
const bool calculate_placable = m_support_rests_on_model && radius == 0; const bool calculate_placable = m_support_rests_on_model && radius == 0;
LayerPolygonCache data_placeable; LayerPolygonCache data_placeable;
if (calculate_placable) if (calculate_placable)
data_placeable.allocate(data.idx_begin, data.idx_end); data_placeable.allocate(data.begin(), data.end());
for (size_t outline_idx : layer_outline_indices) for (size_t outline_idx : layer_outline_indices)
if (const std::vector<Polygons> &outlines = m_layer_outlines[outline_idx].second; ! outlines.empty()) { if (const std::vector<Polygons> &outlines = m_layer_outlines[outline_idx].second; ! outlines.empty()) {
@ -517,9 +517,9 @@ void TreeModelVolumes::calculateCollision(const coord_t radius, const LayerIndex
// 1) Calculate offsets of collision areas in parallel. // 1) Calculate offsets of collision areas in parallel.
LayerPolygonCache collision_areas_offsetted; LayerPolygonCache collision_areas_offsetted;
collision_areas_offsetted.allocate( collision_areas_offsetted.allocate(
std::max<LayerIndex>(0, data.idx_begin - z_distance_bottom_layers), std::max<LayerIndex>(0, data.begin() - z_distance_bottom_layers),
std::min<LayerIndex>(outlines.size(), data.idx_end + z_distance_top_layers)); std::min<LayerIndex>(outlines.size(), data.end() + z_distance_top_layers));
tbb::parallel_for(tbb::blocked_range<LayerIndex>(collision_areas_offsetted.idx_begin, collision_areas_offsetted.idx_end), tbb::parallel_for(tbb::blocked_range<LayerIndex>(collision_areas_offsetted.begin(), collision_areas_offsetted.end()),
[&outlines, &machine_border = std::as_const(m_machine_border), offset_value = radius + xy_distance, &collision_areas_offsetted, &throw_on_cancel] [&outlines, &machine_border = std::as_const(m_machine_border), offset_value = radius + xy_distance, &collision_areas_offsetted, &throw_on_cancel]
(const tbb::blocked_range<LayerIndex> &range) { (const tbb::blocked_range<LayerIndex> &range) {
for (LayerIndex layer_idx = range.begin(); layer_idx != range.end(); ++ layer_idx) { for (LayerIndex layer_idx = range.begin(); layer_idx != range.end(); ++ layer_idx) {
@ -536,7 +536,7 @@ void TreeModelVolumes::calculateCollision(const coord_t radius, const LayerIndex
// 2) Sum over top / bottom ranges. // 2) Sum over top / bottom ranges.
const bool processing_last_mesh = outline_idx == layer_outline_indices.size(); const bool processing_last_mesh = outline_idx == layer_outline_indices.size();
tbb::parallel_for(tbb::blocked_range<LayerIndex>(data.idx_begin, data.idx_end), tbb::parallel_for(tbb::blocked_range<LayerIndex>(data.begin(), data.end()),
[&collision_areas_offsetted, &outlines, &machine_border = m_machine_border, &anti_overhang = m_anti_overhang, radius, [&collision_areas_offsetted, &outlines, &machine_border = m_machine_border, &anti_overhang = m_anti_overhang, radius,
xy_distance, z_distance_bottom_layers, z_distance_top_layers, min_resolution = m_min_resolution, &data, processing_last_mesh, &throw_on_cancel] xy_distance, z_distance_bottom_layers, z_distance_top_layers, min_resolution = m_min_resolution, &data, processing_last_mesh, &throw_on_cancel]
(const tbb::blocked_range<LayerIndex>& range) { (const tbb::blocked_range<LayerIndex>& range) {
@ -600,7 +600,7 @@ void TreeModelVolumes::calculateCollision(const coord_t radius, const LayerIndex
// 3) Optionally calculate placables. // 3) Optionally calculate placables.
if (calculate_placable) { if (calculate_placable) {
// Now calculate the placable areas. // Now calculate the placable areas.
tbb::parallel_for(tbb::blocked_range<LayerIndex>(std::max(z_distance_bottom_layers + 1, data.idx_begin), data.idx_end), tbb::parallel_for(tbb::blocked_range<LayerIndex>(std::max(z_distance_bottom_layers + 1, data.begin()), data.end()),
[&collision_areas_offsetted, &outlines, &anti_overhang = m_anti_overhang, processing_last_mesh, [&collision_areas_offsetted, &outlines, &anti_overhang = m_anti_overhang, processing_last_mesh,
min_resolution = m_min_resolution, z_distance_bottom_layers, xy_distance, &data_placeable, &throw_on_cancel] min_resolution = m_min_resolution, z_distance_bottom_layers, xy_distance, &data_placeable, &throw_on_cancel]
(const tbb::blocked_range<LayerIndex>& range) { (const tbb::blocked_range<LayerIndex>& range) {

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@ -332,23 +332,26 @@ public:
private: private:
// Caching polygons for a range of layers. // Caching polygons for a range of layers.
struct LayerPolygonCache { class LayerPolygonCache {
std::vector<Polygons> polygons; public:
LayerIndex idx_begin;
LayerIndex idx_end;
void allocate(LayerIndex aidx_begin, LayerIndex aidx_end) { void allocate(LayerIndex aidx_begin, LayerIndex aidx_end) {
this->idx_begin = aidx_begin; m_idx_begin = aidx_begin;
this->idx_end = aidx_end; m_idx_end = aidx_end;
this->polygons.assign(aidx_end - aidx_begin, {}); m_polygons.assign(aidx_end - aidx_begin, {});
} }
LayerIndex begin() const { return idx_begin; } LayerIndex begin() const { return m_idx_begin; }
LayerIndex end() const { return idx_end; } LayerIndex end() const { return m_idx_end; }
size_t size() const { return polygons.size(); } size_t size() const { return m_polygons.size(); }
bool has(LayerIndex idx) const { return idx >= idx_begin && idx < idx_end; } bool has(LayerIndex idx) const { return idx >= m_idx_begin && idx < m_idx_end; }
Polygons& operator[](LayerIndex idx) { return polygons[idx + idx_begin]; } Polygons& operator[](LayerIndex idx) { assert(idx >= m_idx_begin && idx < m_idx_end); return m_polygons[idx - m_idx_begin]; }
std::vector<Polygons>& polygons_mutable() { return m_polygons; }
private:
std::vector<Polygons> m_polygons;
LayerIndex m_idx_begin;
LayerIndex m_idx_end;
}; };
/*! /*!
@ -388,9 +391,9 @@ private:
} }
void insert(LayerPolygonCache &&in, coord_t radius) { void insert(LayerPolygonCache &&in, coord_t radius) {
std::lock_guard<std::mutex> guard(m_mutex); std::lock_guard<std::mutex> guard(m_mutex);
LayerIndex i = in.idx_begin; LayerIndex i = in.begin();
allocate_layers(i + LayerIndex(in.size())); allocate_layers(i + LayerIndex(in.size()));
for (auto &d : in.polygons) for (auto &d : in.polygons_mutable())
m_data[i ++].emplace(radius, std::move(d)); m_data[i ++].emplace(radius, std::move(d));
} }
/*! /*!

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@ -4649,6 +4649,7 @@ static void generate_support_areas(Print &print, const BuildVolume &build_volume
// ### Precalculate avoidances, collision etc. // ### Precalculate avoidances, collision etc.
size_t num_support_layers = precalculate(print, overhangs, processing.first, processing.second, volumes, throw_on_cancel); size_t num_support_layers = precalculate(print, overhangs, processing.first, processing.second, volumes, throw_on_cancel);
bool has_support = num_support_layers > 0; bool has_support = num_support_layers > 0;
bool has_raft = config.raft_layers.size() > 0;
num_support_layers = std::max(num_support_layers, config.raft_layers.size()); num_support_layers = std::max(num_support_layers, config.raft_layers.size());
SupportParameters support_params(print_object); SupportParameters support_params(print_object);
@ -4661,13 +4662,13 @@ static void generate_support_areas(Print &print, const BuildVolume &build_volume
SupportGeneratorLayersPtr interface_layers; SupportGeneratorLayersPtr interface_layers;
SupportGeneratorLayersPtr base_interface_layers; SupportGeneratorLayersPtr base_interface_layers;
SupportGeneratorLayersPtr intermediate_layers(num_support_layers, nullptr); SupportGeneratorLayersPtr intermediate_layers(num_support_layers, nullptr);
if (support_params.has_top_contacts) if (support_params.has_top_contacts || has_raft)
top_contacts.assign(num_support_layers, nullptr); top_contacts.assign(num_support_layers, nullptr);
if (support_params.has_bottom_contacts) if (support_params.has_bottom_contacts)
bottom_contacts.assign(num_support_layers, nullptr); bottom_contacts.assign(num_support_layers, nullptr);
if (support_params.has_interfaces()) if (support_params.has_interfaces() || has_raft)
interface_layers.assign(num_support_layers, nullptr); interface_layers.assign(num_support_layers, nullptr);
if (support_params.has_base_interfaces()) if (support_params.has_base_interfaces() || has_raft)
base_interface_layers.assign(num_support_layers, nullptr); base_interface_layers.assign(num_support_layers, nullptr);
InterfacePlacer interface_placer{ InterfacePlacer interface_placer{

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@ -159,7 +159,7 @@ BundleMap BundleMap::load()
idx_path = fs::path(cache_dir / (id + ".idx")); idx_path = fs::path(cache_dir / (id + ".idx"));
} }
if (!boost::filesystem::exists(idx_path)) { if (!boost::filesystem::exists(idx_path)) {
BOOST_LOG_TRIVIAL(error) << format("Could not load bundle %1% due to missing index %1%.", id, idx_path.string()); BOOST_LOG_TRIVIAL(error) << format("Could not load bundle %1% due to missing index %2%.", id, idx_path.string());
continue; continue;
} }
Slic3r::GUI::Config::Index index; Slic3r::GUI::Config::Index index;
@ -167,7 +167,7 @@ BundleMap BundleMap::load()
index.load(idx_path); index.load(idx_path);
} }
catch (const std::exception& /* err */) { catch (const std::exception& /* err */) {
BOOST_LOG_TRIVIAL(error) << format("Could not load bundle %1% due to invalid index %1%.", id, idx_path.string()); BOOST_LOG_TRIVIAL(error) << format("Could not load bundle %1% due to invalid index %2%.", id, idx_path.string());
continue; continue;
} }
const auto recommended_it = index.recommended(); const auto recommended_it = index.recommended();

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@ -1192,6 +1192,13 @@ void ObjectList::key_event(wxKeyEvent& event)
void ObjectList::OnBeginDrag(wxDataViewEvent &event) void ObjectList::OnBeginDrag(wxDataViewEvent &event)
{ {
if (m_is_editing_started)
m_is_editing_started = false;
#ifdef __WXGTK__
const auto renderer = dynamic_cast<BitmapTextRenderer*>(GetColumn(colName)->GetRenderer());
renderer->FinishEditing();
#endif
const wxDataViewItem item(event.GetItem()); const wxDataViewItem item(event.GetItem());
const bool mult_sel = multiple_selection(); const bool mult_sel = multiple_selection();
@ -1225,18 +1232,11 @@ void ObjectList::OnBeginDrag(wxDataViewEvent &event)
m_objects_model->GetInstanceIdByItem(item), m_objects_model->GetInstanceIdByItem(item),
type); type);
/* Under MSW or OSX, DnD moves an item to the place of another selected item
* But under GTK, DnD moves an item between another two items.
* And as a result - call EVT_CHANGE_SELECTION to unselect all items.
* To prevent such behavior use m_prevent_list_events
**/
m_prevent_list_events = true;//it's needed for GTK
/* Under GTK, DnD requires to the wxTextDataObject been initialized with some valid value, /* Under GTK, DnD requires to the wxTextDataObject been initialized with some valid value,
* so set some nonempty string * so set some nonempty string
*/ */
wxTextDataObject* obj = new wxTextDataObject; wxTextDataObject* obj = new wxTextDataObject;
obj->SetText("Some text");//it's needed for GTK obj->SetText(mult_sel ? "SomeText" : m_objects_model->GetItemName(item));//it's needed for GTK
event.SetDataObject(obj); event.SetDataObject(obj);
event.SetDragFlags(wxDrag_DefaultMove); // allows both copy and move; event.SetDragFlags(wxDrag_DefaultMove); // allows both copy and move;
@ -1300,10 +1300,8 @@ void ObjectList::OnDropPossible(wxDataViewEvent &event)
{ {
const wxDataViewItem& item = event.GetItem(); const wxDataViewItem& item = event.GetItem();
if (!can_drop(item)) { if (!can_drop(item))
event.Veto(); event.Veto();
m_prevent_list_events = false;
}
} }
void ObjectList::OnDrop(wxDataViewEvent &event) void ObjectList::OnDrop(wxDataViewEvent &event)
@ -1317,6 +1315,13 @@ void ObjectList::OnDrop(wxDataViewEvent &event)
return; return;
} }
/* Under MSW or OSX, DnD moves an item to the place of another selected item
* But under GTK, DnD moves an item between another two items.
* And as a result - call EVT_CHANGE_SELECTION to unselect all items.
* To prevent such behavior use m_prevent_list_events
**/
m_prevent_list_events = true;//it's needed for GTK
if (m_dragged_data.type() == itInstance) if (m_dragged_data.type() == itInstance)
{ {
Plater::TakeSnapshot snapshot(wxGetApp().plater(),_(L("Instances to Separated Objects"))); Plater::TakeSnapshot snapshot(wxGetApp().plater(),_(L("Instances to Separated Objects")));
@ -4841,6 +4846,9 @@ void ObjectList::OnEditingStarted(wxDataViewEvent &event)
void ObjectList::OnEditingDone(wxDataViewEvent &event) void ObjectList::OnEditingDone(wxDataViewEvent &event)
{ {
if (!m_is_editing_started)
return;
m_is_editing_started = false; m_is_editing_started = false;
if (event.GetColumn() != colName) if (event.GetColumn() != colName)
return; return;

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@ -17,6 +17,7 @@
#include <GL/glew.h> #include <GL/glew.h>
#include <algorithm>
namespace Slic3r::GUI { namespace Slic3r::GUI {
@ -521,6 +522,13 @@ void GLGizmoFdmSupports::auto_generate()
} }
ModelObject *mo = m_c->selection_info()->model_object(); ModelObject *mo = m_c->selection_info()->model_object();
bool printable = std::any_of(mo->instances.begin(), mo->instances.end(), [](const ModelInstance *p) { return p->is_printable(); });
if (!printable) {
MessageDialog dlg(GUI::wxGetApp().plater(), _L("Automatic painting requires printable object."), _L("Warning"), wxOK);
dlg.ShowModal();
return;
}
bool not_painted = std::all_of(mo->volumes.begin(), mo->volumes.end(), [](const ModelVolume* vol){ bool not_painted = std::all_of(mo->volumes.begin(), mo->volumes.end(), [](const ModelVolume* vol){
return vol->type() != ModelVolumeType::MODEL_PART || vol->supported_facets.empty(); return vol->type() != ModelVolumeType::MODEL_PART || vol->supported_facets.empty();
}); });

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@ -86,7 +86,7 @@ arrangement::ArrangePolygon get_arrange_poly(T obj, const Plater *plater)
using ArrangePolygon = arrangement::ArrangePolygon; using ArrangePolygon = arrangement::ArrangePolygon;
ArrangePolygon ap = obj.get_arrange_polygon(); ArrangePolygon ap = obj.get_arrange_polygon();
ap.bed_idx = ap.translation.x() / bed_stride(plater); ap.bed_idx = get_extents(ap.transformed_poly()).min.x() / bed_stride(plater);
ap.setter = [obj, plater](const ArrangePolygon &p) { ap.setter = [obj, plater](const ArrangePolygon &p) {
if (p.is_arranged()) { if (p.is_arranged()) {
Vec2d t = p.translation.cast<double>(); Vec2d t = p.translation.cast<double>();

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@ -1042,6 +1042,16 @@ int ObjectDataViewModel::GetItemIdByLayerRange(const int obj_idx, const t_layer
return GetLayerIdByItem(item); return GetLayerIdByItem(item);
} }
wxString ObjectDataViewModel::GetItemName(const wxDataViewItem& item) const
{
if (!item.IsOk())
return wxEmptyString;
ObjectDataViewModelNode* node = static_cast<ObjectDataViewModelNode*>(item.GetID());
if (!node)
return wxEmptyString;
return node->GetName();
}
int ObjectDataViewModel::GetIdByItem(const wxDataViewItem& item) const int ObjectDataViewModel::GetIdByItem(const wxDataViewItem& item) const
{ {
if(!item.IsOk()) if(!item.IsOk())

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@ -311,6 +311,7 @@ public:
wxDataViewItem GetItemByLayerId(int obj_idx, int layer_idx); wxDataViewItem GetItemByLayerId(int obj_idx, int layer_idx);
wxDataViewItem GetItemByLayerRange(const int obj_idx, const t_layer_height_range& layer_range); wxDataViewItem GetItemByLayerRange(const int obj_idx, const t_layer_height_range& layer_range);
int GetItemIdByLayerRange(const int obj_idx, const t_layer_height_range& layer_range); int GetItemIdByLayerRange(const int obj_idx, const t_layer_height_range& layer_range);
wxString GetItemName(const wxDataViewItem& item) const;
int GetIdByItem(const wxDataViewItem& item) const; int GetIdByItem(const wxDataViewItem& item) const;
int GetIdByItemAndType(const wxDataViewItem& item, const ItemType type) const; int GetIdByItemAndType(const wxDataViewItem& item, const ItemType type) const;
int GetObjectIdByItem(const wxDataViewItem& item) const; int GetObjectIdByItem(const wxDataViewItem& item) const;

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@ -1411,27 +1411,25 @@ void Sidebar::update_sliced_info_sizer()
new_label = _L("Used Filament (g)"); new_label = _L("Used Filament (g)");
info_text = wxString::Format("%.2f", ps.total_weight); info_text = wxString::Format("%.2f", ps.total_weight);
const auto& extruders_filaments = wxGetApp().preset_bundle->extruders_filaments;
const PresetCollection& filaments = wxGetApp().preset_bundle->filaments;
if (ps.filament_stats.size() > 1) if (ps.filament_stats.size() > 1)
new_label += ":"; new_label += ":";
for (auto filament : ps.filament_stats) { const auto& extruders_filaments = wxGetApp().preset_bundle->extruders_filaments;
const Preset* filament_preset = filaments.find_preset(extruders_filaments[filament.first].get_selected_preset_name(), false); for (const auto& [filament_id, filament_vol] : ps.filament_stats) {
if (filament_preset) { assert(filament_id < extruders_filaments.size());
if (const Preset* preset = extruders_filaments[filament_id].get_selected_preset()) {
double filament_weight; double filament_weight;
if (ps.filament_stats.size() == 1) if (ps.filament_stats.size() == 1)
filament_weight = ps.total_weight; filament_weight = ps.total_weight;
else { else {
double filament_density = filament_preset->config.opt_float("filament_density", 0); double filament_density = preset->config.opt_float("filament_density", 0);
filament_weight = filament.second * filament_density/* *2.4052f*/ * 0.001; // assumes 1.75mm filament diameter; filament_weight = filament_vol * filament_density/* *2.4052f*/ * 0.001; // assumes 1.75mm filament diameter;
new_label += "\n - " + format_wxstr(_L("Filament at extruder %1%"), filament.first + 1); new_label += "\n - " + format_wxstr(_L("Filament at extruder %1%"), filament_id + 1);
info_text += wxString::Format("\n%.2f", filament_weight); info_text += wxString::Format("\n%.2f", filament_weight);
} }
double spool_weight = filament_preset->config.opt_float("filament_spool_weight", 0); double spool_weight = preset->config.opt_float("filament_spool_weight", 0);
if (spool_weight != 0.0) { if (spool_weight != 0.0) {
new_label += "\n " + _L("(including spool)"); new_label += "\n " + _L("(including spool)");
info_text += wxString::Format(" (%.2f)\n", filament_weight + spool_weight); info_text += wxString::Format(" (%.2f)\n", filament_weight + spool_weight);

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@ -3,7 +3,7 @@
set(SLIC3R_APP_NAME "PrusaSlicer") set(SLIC3R_APP_NAME "PrusaSlicer")
set(SLIC3R_APP_KEY "PrusaSlicer") set(SLIC3R_APP_KEY "PrusaSlicer")
set(SLIC3R_VERSION "2.6.0-beta1") set(SLIC3R_VERSION "2.6.0-beta2")
set(SLIC3R_BUILD_ID "PrusaSlicer-${SLIC3R_VERSION}+UNKNOWN") set(SLIC3R_BUILD_ID "PrusaSlicer-${SLIC3R_VERSION}+UNKNOWN")
set(SLIC3R_RC_VERSION "2,6,0,0") set(SLIC3R_RC_VERSION "2,6,0,0")
set(SLIC3R_RC_VERSION_DOTS "2.6.0.0") set(SLIC3R_RC_VERSION_DOTS "2.6.0.0")