ad3be1a69e
https://github.com/prusa3d/Slic3r/issues/265
https://github.com/prusa3d/Slic3r/issues/319
Based on the implementation by @lordofhyphens
19eea19d91
611 lines
24 KiB
C++
611 lines
24 KiB
C++
// Configuration store of Slic3r.
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//
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// The configuration store is either static or dynamic.
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// DynamicPrintConfig is used mainly at the user interface. while the StaticPrintConfig is used
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// during the slicing and the g-code generation.
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//
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// The classes derived from StaticPrintConfig form a following hierarchy.
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// Virtual inheritance is used for some of the parent objects.
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//
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// FullPrintConfig
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// PrintObjectConfig
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// PrintRegionConfig
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// PrintConfig
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// GCodeConfig
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// HostConfig
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//
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#ifndef slic3r_PrintConfig_hpp_
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#define slic3r_PrintConfig_hpp_
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#include "libslic3r.h"
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#include "Config.hpp"
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#define OPT_PTR(KEY) if (opt_key == #KEY) return &this->KEY
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namespace Slic3r {
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enum GCodeFlavor {
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gcfRepRap, gcfTeacup, gcfMakerWare, gcfSailfish, gcfMach3, gcfMachinekit, gcfNoExtrusion, gcfSmoothie, gcfRepetier,
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};
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enum InfillPattern {
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ipRectilinear, ipGrid, ipTriangles, ipStars, ipCubic, ipLine, ipConcentric, ipHoneycomb, ip3DHoneycomb,
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ipHilbertCurve, ipArchimedeanChords, ipOctagramSpiral,
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};
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enum SupportMaterialPattern {
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smpRectilinear, smpRectilinearGrid, smpHoneycomb, smpPillars,
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};
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enum SeamPosition {
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spRandom, spNearest, spAligned, spRear
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};
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enum FilamentType {
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ftPLA, ftABS, ftPET, ftHIPS, ftFLEX, ftSCAFF, ftEDGE, ftNGEN, ftPVA
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};
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template<> inline t_config_enum_values ConfigOptionEnum<GCodeFlavor>::get_enum_values() {
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t_config_enum_values keys_map;
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keys_map["reprap"] = gcfRepRap;
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keys_map["repetier"] = gcfRepetier;
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keys_map["teacup"] = gcfTeacup;
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keys_map["makerware"] = gcfMakerWare;
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keys_map["sailfish"] = gcfSailfish;
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keys_map["smoothie"] = gcfSmoothie;
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keys_map["mach3"] = gcfMach3;
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keys_map["machinekit"] = gcfMachinekit;
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keys_map["no-extrusion"] = gcfNoExtrusion;
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return keys_map;
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}
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template<> inline t_config_enum_values ConfigOptionEnum<InfillPattern>::get_enum_values() {
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t_config_enum_values keys_map;
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keys_map["rectilinear"] = ipRectilinear;
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keys_map["grid"] = ipGrid;
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keys_map["triangles"] = ipTriangles;
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keys_map["stars"] = ipStars;
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keys_map["cubic"] = ipCubic;
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keys_map["line"] = ipLine;
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keys_map["concentric"] = ipConcentric;
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keys_map["honeycomb"] = ipHoneycomb;
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keys_map["3dhoneycomb"] = ip3DHoneycomb;
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keys_map["hilbertcurve"] = ipHilbertCurve;
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keys_map["archimedeanchords"] = ipArchimedeanChords;
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keys_map["octagramspiral"] = ipOctagramSpiral;
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return keys_map;
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}
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template<> inline t_config_enum_values ConfigOptionEnum<SupportMaterialPattern>::get_enum_values() {
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t_config_enum_values keys_map;
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keys_map["rectilinear"] = smpRectilinear;
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keys_map["rectilinear-grid"] = smpRectilinearGrid;
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keys_map["honeycomb"] = smpHoneycomb;
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keys_map["pillars"] = smpPillars;
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return keys_map;
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}
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template<> inline t_config_enum_values ConfigOptionEnum<SeamPosition>::get_enum_values() {
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t_config_enum_values keys_map;
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keys_map["random"] = spRandom;
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keys_map["nearest"] = spNearest;
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keys_map["aligned"] = spAligned;
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keys_map["rear"] = spRear;
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return keys_map;
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}
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template<> inline t_config_enum_values ConfigOptionEnum<FilamentType>::get_enum_values() {
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t_config_enum_values keys_map;
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keys_map["PLA"] = ftPLA;
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keys_map["ABS"] = ftABS;
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keys_map["PET"] = ftPET;
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keys_map["HIPS"] = ftHIPS;
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keys_map["FLEX"] = ftFLEX;
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keys_map["SCAFF"] = ftSCAFF;
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keys_map["EDGE"] = ftEDGE;
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keys_map["NGEN"] = ftNGEN;
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keys_map["PVA"] = ftPVA;
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return keys_map;
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}
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// Defines each and every confiuration option of Slic3r, including the properties of the GUI dialogs.
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// Does not store the actual values, but defines default values.
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class PrintConfigDef : public ConfigDef
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{
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public:
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PrintConfigDef();
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};
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// The one and only global definition of SLic3r configuration options.
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// This definition is constant.
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extern PrintConfigDef print_config_def;
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// Slic3r configuration storage with print_config_def assigned.
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class PrintConfigBase : public virtual ConfigBase
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{
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public:
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PrintConfigBase() {
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this->def = &print_config_def;
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};
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double min_object_distance() const;
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};
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// Slic3r dynamic configuration, used to override the configuration
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// per object, per modification volume or per printing material.
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// The dynamic configuration is also used to store user modifications of the print global parameters,
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// so the modified configuration values may be diffed against the active configuration
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// to invalidate the proper slicing resp. g-code generation processing steps.
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// This object is mapped to Perl as Slic3r::Config.
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class DynamicPrintConfig : public PrintConfigBase, public DynamicConfig
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{
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public:
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DynamicPrintConfig() : PrintConfigBase(), DynamicConfig() {};
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void normalize();
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};
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template<typename CONFIG>
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void normalize_and_apply_config(CONFIG &dst, const DynamicPrintConfig &src)
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{
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DynamicPrintConfig src_normalized = src;
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src_normalized.normalize();
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dst.apply(src_normalized, true);
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}
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class StaticPrintConfig : public PrintConfigBase, public StaticConfig
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{
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public:
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StaticPrintConfig() : PrintConfigBase(), StaticConfig() {};
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};
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// This object is mapped to Perl as Slic3r::Config::PrintObject.
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class PrintObjectConfig : public virtual StaticPrintConfig
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{
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public:
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ConfigOptionBool clip_multipart_objects;
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ConfigOptionBool dont_support_bridges;
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ConfigOptionFloatOrPercent extrusion_width;
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ConfigOptionFloatOrPercent first_layer_height;
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ConfigOptionBool infill_only_where_needed;
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ConfigOptionBool interface_shells;
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ConfigOptionFloat layer_height;
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ConfigOptionInt raft_layers;
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ConfigOptionEnum<SeamPosition> seam_position;
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// ConfigOptionFloat seam_preferred_direction;
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// ConfigOptionFloat seam_preferred_direction_jitter;
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ConfigOptionBool support_material;
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ConfigOptionInt support_material_angle;
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ConfigOptionBool support_material_buildplate_only;
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ConfigOptionFloat support_material_contact_distance;
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ConfigOptionInt support_material_enforce_layers;
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ConfigOptionInt support_material_extruder;
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ConfigOptionFloatOrPercent support_material_extrusion_width;
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ConfigOptionBool support_material_interface_contact_loops;
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ConfigOptionInt support_material_interface_extruder;
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ConfigOptionInt support_material_interface_layers;
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ConfigOptionFloat support_material_interface_spacing;
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ConfigOptionFloatOrPercent support_material_interface_speed;
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ConfigOptionEnum<SupportMaterialPattern> support_material_pattern;
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ConfigOptionFloat support_material_spacing;
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ConfigOptionFloat support_material_speed;
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ConfigOptionBool support_material_synchronize_layers;
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ConfigOptionInt support_material_threshold;
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ConfigOptionBool support_material_with_sheath;
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ConfigOptionFloatOrPercent support_material_xy_spacing;
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ConfigOptionFloat xy_size_compensation;
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PrintObjectConfig(bool initialize = true) : StaticPrintConfig() {
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if (initialize)
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this->set_defaults();
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}
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virtual ConfigOption* optptr(const t_config_option_key &opt_key, bool create = false) {
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OPT_PTR(clip_multipart_objects);
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OPT_PTR(dont_support_bridges);
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OPT_PTR(extrusion_width);
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OPT_PTR(first_layer_height);
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OPT_PTR(infill_only_where_needed);
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OPT_PTR(interface_shells);
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OPT_PTR(layer_height);
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OPT_PTR(raft_layers);
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OPT_PTR(seam_position);
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// OPT_PTR(seam_preferred_direction);
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// OPT_PTR(seam_preferred_direction_jitter);
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OPT_PTR(support_material);
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OPT_PTR(support_material_angle);
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OPT_PTR(support_material_buildplate_only);
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OPT_PTR(support_material_contact_distance);
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OPT_PTR(support_material_enforce_layers);
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OPT_PTR(support_material_interface_contact_loops);
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OPT_PTR(support_material_extruder);
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OPT_PTR(support_material_extrusion_width);
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OPT_PTR(support_material_interface_extruder);
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OPT_PTR(support_material_interface_layers);
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OPT_PTR(support_material_interface_spacing);
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OPT_PTR(support_material_interface_speed);
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OPT_PTR(support_material_pattern);
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OPT_PTR(support_material_spacing);
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OPT_PTR(support_material_speed);
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OPT_PTR(support_material_synchronize_layers);
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OPT_PTR(support_material_xy_spacing);
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OPT_PTR(support_material_threshold);
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OPT_PTR(support_material_with_sheath);
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OPT_PTR(xy_size_compensation);
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return NULL;
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};
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};
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// This object is mapped to Perl as Slic3r::Config::PrintRegion.
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class PrintRegionConfig : public virtual StaticPrintConfig
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{
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public:
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ConfigOptionInt bottom_solid_layers;
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ConfigOptionFloat bridge_flow_ratio;
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ConfigOptionFloat bridge_speed;
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ConfigOptionBool ensure_vertical_shell_thickness;
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ConfigOptionEnum<InfillPattern> external_fill_pattern;
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ConfigOptionFloatOrPercent external_perimeter_extrusion_width;
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ConfigOptionFloatOrPercent external_perimeter_speed;
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ConfigOptionBool external_perimeters_first;
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ConfigOptionBool extra_perimeters;
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ConfigOptionFloat fill_angle;
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ConfigOptionPercent fill_density;
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ConfigOptionEnum<InfillPattern> fill_pattern;
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ConfigOptionFloat gap_fill_speed;
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ConfigOptionInt infill_extruder;
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ConfigOptionFloatOrPercent infill_extrusion_width;
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ConfigOptionInt infill_every_layers;
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ConfigOptionFloatOrPercent infill_overlap;
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ConfigOptionFloat infill_speed;
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ConfigOptionBool overhangs;
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ConfigOptionInt perimeter_extruder;
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ConfigOptionFloatOrPercent perimeter_extrusion_width;
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ConfigOptionFloat perimeter_speed;
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ConfigOptionInt perimeters;
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ConfigOptionFloatOrPercent small_perimeter_speed;
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ConfigOptionFloat solid_infill_below_area;
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ConfigOptionInt solid_infill_extruder;
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ConfigOptionFloatOrPercent solid_infill_extrusion_width;
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ConfigOptionInt solid_infill_every_layers;
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ConfigOptionFloatOrPercent solid_infill_speed;
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ConfigOptionBool thin_walls;
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ConfigOptionFloatOrPercent top_infill_extrusion_width;
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ConfigOptionInt top_solid_layers;
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ConfigOptionFloatOrPercent top_solid_infill_speed;
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PrintRegionConfig(bool initialize = true) : StaticPrintConfig() {
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if (initialize)
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this->set_defaults();
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}
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virtual ConfigOption* optptr(const t_config_option_key &opt_key, bool create = false) {
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OPT_PTR(bottom_solid_layers);
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OPT_PTR(bridge_flow_ratio);
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OPT_PTR(bridge_speed);
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OPT_PTR(ensure_vertical_shell_thickness);
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OPT_PTR(external_fill_pattern);
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OPT_PTR(external_perimeter_extrusion_width);
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OPT_PTR(external_perimeter_speed);
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OPT_PTR(external_perimeters_first);
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OPT_PTR(extra_perimeters);
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OPT_PTR(fill_angle);
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OPT_PTR(fill_density);
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OPT_PTR(fill_pattern);
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OPT_PTR(gap_fill_speed);
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OPT_PTR(infill_extruder);
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OPT_PTR(infill_extrusion_width);
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OPT_PTR(infill_every_layers);
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OPT_PTR(infill_overlap);
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OPT_PTR(infill_speed);
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OPT_PTR(overhangs);
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OPT_PTR(perimeter_extruder);
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OPT_PTR(perimeter_extrusion_width);
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OPT_PTR(perimeter_speed);
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OPT_PTR(perimeters);
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OPT_PTR(small_perimeter_speed);
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OPT_PTR(solid_infill_below_area);
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OPT_PTR(solid_infill_extruder);
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OPT_PTR(solid_infill_extrusion_width);
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OPT_PTR(solid_infill_every_layers);
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OPT_PTR(solid_infill_speed);
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OPT_PTR(thin_walls);
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OPT_PTR(top_infill_extrusion_width);
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OPT_PTR(top_solid_infill_speed);
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OPT_PTR(top_solid_layers);
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return NULL;
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};
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};
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// This object is mapped to Perl as Slic3r::Config::GCode.
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class GCodeConfig : public virtual StaticPrintConfig
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{
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public:
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ConfigOptionString before_layer_gcode;
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ConfigOptionFloats deretract_speed;
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ConfigOptionString end_gcode;
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ConfigOptionStrings end_filament_gcode;
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ConfigOptionString extrusion_axis;
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ConfigOptionFloats extrusion_multiplier;
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ConfigOptionFloats filament_diameter;
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ConfigOptionFloats filament_density;
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ConfigOptionStrings filament_type;
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ConfigOptionBools filament_soluble;
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ConfigOptionFloats filament_cost;
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ConfigOptionFloats filament_max_volumetric_speed;
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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 max_volumetric_extrusion_rate_slope_positive;
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ConfigOptionFloat max_volumetric_extrusion_rate_slope_negative;
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ConfigOptionPercents retract_before_wipe;
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ConfigOptionFloats retract_length;
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ConfigOptionFloats retract_length_toolchange;
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ConfigOptionFloats retract_lift;
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ConfigOptionFloats retract_lift_above;
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ConfigOptionFloats retract_lift_below;
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ConfigOptionFloats retract_restart_extra;
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ConfigOptionFloats retract_restart_extra_toolchange;
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ConfigOptionFloats retract_speed;
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ConfigOptionString start_gcode;
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ConfigOptionStrings start_filament_gcode;
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ConfigOptionBool single_extruder_multi_material;
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ConfigOptionString toolchange_gcode;
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ConfigOptionFloat travel_speed;
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ConfigOptionBool use_firmware_retraction;
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ConfigOptionBool use_relative_e_distances;
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ConfigOptionBool use_volumetric_e;
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ConfigOptionBool set_and_wait_temperatures;
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ConfigOptionBool variable_layer_height;
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GCodeConfig(bool initialize = true) : StaticPrintConfig() {
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if (initialize)
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this->set_defaults();
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}
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virtual ConfigOption* optptr(const t_config_option_key &opt_key, bool create = false) {
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OPT_PTR(before_layer_gcode);
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OPT_PTR(deretract_speed);
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OPT_PTR(end_gcode);
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OPT_PTR(end_filament_gcode);
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OPT_PTR(extrusion_axis);
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OPT_PTR(extrusion_multiplier);
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OPT_PTR(filament_diameter);
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OPT_PTR(filament_density);
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OPT_PTR(filament_type);
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OPT_PTR(filament_soluble);
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OPT_PTR(filament_cost);
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OPT_PTR(filament_max_volumetric_speed);
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OPT_PTR(gcode_comments);
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OPT_PTR(gcode_flavor);
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OPT_PTR(layer_gcode);
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OPT_PTR(max_print_speed);
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OPT_PTR(max_volumetric_speed);
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OPT_PTR(max_volumetric_extrusion_rate_slope_positive);
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OPT_PTR(max_volumetric_extrusion_rate_slope_negative);
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OPT_PTR(retract_before_wipe);
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OPT_PTR(retract_length);
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OPT_PTR(retract_length_toolchange);
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OPT_PTR(retract_lift);
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OPT_PTR(retract_lift_above);
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OPT_PTR(retract_lift_below);
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OPT_PTR(retract_restart_extra);
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OPT_PTR(retract_restart_extra_toolchange);
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OPT_PTR(retract_speed);
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OPT_PTR(single_extruder_multi_material);
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OPT_PTR(start_gcode);
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OPT_PTR(start_filament_gcode);
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OPT_PTR(toolchange_gcode);
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OPT_PTR(travel_speed);
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OPT_PTR(use_firmware_retraction);
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OPT_PTR(use_relative_e_distances);
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OPT_PTR(use_volumetric_e);
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OPT_PTR(set_and_wait_temperatures);
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OPT_PTR(variable_layer_height);
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return NULL;
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};
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std::string get_extrusion_axis() const
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{
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if ((this->gcode_flavor.value == gcfMach3) || (this->gcode_flavor.value == gcfMachinekit)) {
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return "A";
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} else if (this->gcode_flavor.value == gcfNoExtrusion) {
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return "";
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} else {
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return this->extrusion_axis.value;
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}
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};
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};
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// This object is mapped to Perl as Slic3r::Config::Print.
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class PrintConfig : public GCodeConfig
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{
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public:
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ConfigOptionBool avoid_crossing_perimeters;
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ConfigOptionPoints bed_shape;
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ConfigOptionInt bed_temperature;
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ConfigOptionFloat bridge_acceleration;
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ConfigOptionInt bridge_fan_speed;
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ConfigOptionFloat brim_width;
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ConfigOptionBool complete_objects;
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ConfigOptionBool cooling;
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ConfigOptionFloat default_acceleration;
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ConfigOptionInt disable_fan_first_layers;
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ConfigOptionFloat duplicate_distance;
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ConfigOptionFloat extruder_clearance_height;
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ConfigOptionFloat extruder_clearance_radius;
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ConfigOptionStrings extruder_colour;
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ConfigOptionPoints extruder_offset;
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ConfigOptionBool fan_always_on;
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ConfigOptionInt fan_below_layer_time;
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ConfigOptionStrings filament_colour;
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ConfigOptionStrings filament_notes;
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ConfigOptionFloat first_layer_acceleration;
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ConfigOptionInt first_layer_bed_temperature;
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ConfigOptionFloatOrPercent first_layer_extrusion_width;
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ConfigOptionFloatOrPercent first_layer_speed;
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ConfigOptionInts first_layer_temperature;
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ConfigOptionFloat infill_acceleration;
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ConfigOptionBool infill_first;
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ConfigOptionInt max_fan_speed;
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ConfigOptionFloats max_layer_height;
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ConfigOptionInt min_fan_speed;
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ConfigOptionFloats min_layer_height;
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ConfigOptionFloat min_print_speed;
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ConfigOptionFloat min_skirt_length;
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ConfigOptionString notes;
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ConfigOptionFloats nozzle_diameter;
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ConfigOptionBool only_retract_when_crossing_perimeters;
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ConfigOptionBool ooze_prevention;
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ConfigOptionString output_filename_format;
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ConfigOptionFloat perimeter_acceleration;
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ConfigOptionStrings post_process;
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ConfigOptionString printer_notes;
|
|
ConfigOptionFloat resolution;
|
|
ConfigOptionFloats retract_before_travel;
|
|
ConfigOptionBools retract_layer_change;
|
|
ConfigOptionFloat skirt_distance;
|
|
ConfigOptionInt skirt_height;
|
|
ConfigOptionInt skirts;
|
|
ConfigOptionInt slowdown_below_layer_time;
|
|
ConfigOptionBool spiral_vase;
|
|
ConfigOptionInt standby_temperature_delta;
|
|
ConfigOptionInts temperature;
|
|
ConfigOptionInt threads;
|
|
ConfigOptionBools wipe;
|
|
ConfigOptionBool wipe_tower;
|
|
ConfigOptionFloat wipe_tower_x;
|
|
ConfigOptionFloat wipe_tower_y;
|
|
ConfigOptionFloat wipe_tower_width;
|
|
ConfigOptionFloat wipe_tower_per_color_wipe;
|
|
ConfigOptionFloat z_offset;
|
|
|
|
PrintConfig(bool initialize = true) : GCodeConfig(false) {
|
|
if (initialize)
|
|
this->set_defaults();
|
|
}
|
|
|
|
virtual ConfigOption* optptr(const t_config_option_key &opt_key, bool create = false) {
|
|
OPT_PTR(avoid_crossing_perimeters);
|
|
OPT_PTR(bed_shape);
|
|
OPT_PTR(bed_temperature);
|
|
OPT_PTR(bridge_acceleration);
|
|
OPT_PTR(bridge_fan_speed);
|
|
OPT_PTR(brim_width);
|
|
OPT_PTR(complete_objects);
|
|
OPT_PTR(cooling);
|
|
OPT_PTR(default_acceleration);
|
|
OPT_PTR(disable_fan_first_layers);
|
|
OPT_PTR(duplicate_distance);
|
|
OPT_PTR(extruder_clearance_height);
|
|
OPT_PTR(extruder_clearance_radius);
|
|
OPT_PTR(extruder_colour);
|
|
OPT_PTR(extruder_offset);
|
|
OPT_PTR(fan_always_on);
|
|
OPT_PTR(fan_below_layer_time);
|
|
OPT_PTR(filament_colour);
|
|
OPT_PTR(filament_notes);
|
|
OPT_PTR(first_layer_acceleration);
|
|
OPT_PTR(first_layer_bed_temperature);
|
|
OPT_PTR(first_layer_extrusion_width);
|
|
OPT_PTR(first_layer_speed);
|
|
OPT_PTR(first_layer_temperature);
|
|
OPT_PTR(infill_acceleration);
|
|
OPT_PTR(infill_first);
|
|
OPT_PTR(max_fan_speed);
|
|
OPT_PTR(max_layer_height);
|
|
OPT_PTR(min_fan_speed);
|
|
OPT_PTR(min_layer_height);
|
|
OPT_PTR(min_print_speed);
|
|
OPT_PTR(min_skirt_length);
|
|
OPT_PTR(notes);
|
|
OPT_PTR(nozzle_diameter);
|
|
OPT_PTR(only_retract_when_crossing_perimeters);
|
|
OPT_PTR(ooze_prevention);
|
|
OPT_PTR(output_filename_format);
|
|
OPT_PTR(perimeter_acceleration);
|
|
OPT_PTR(post_process);
|
|
OPT_PTR(printer_notes);
|
|
OPT_PTR(resolution);
|
|
OPT_PTR(retract_before_travel);
|
|
OPT_PTR(retract_layer_change);
|
|
OPT_PTR(skirt_distance);
|
|
OPT_PTR(skirt_height);
|
|
OPT_PTR(skirts);
|
|
OPT_PTR(slowdown_below_layer_time);
|
|
OPT_PTR(spiral_vase);
|
|
OPT_PTR(standby_temperature_delta);
|
|
OPT_PTR(temperature);
|
|
OPT_PTR(threads);
|
|
OPT_PTR(wipe);
|
|
OPT_PTR(wipe_tower);
|
|
OPT_PTR(wipe_tower_x);
|
|
OPT_PTR(wipe_tower_y);
|
|
OPT_PTR(wipe_tower_width);
|
|
OPT_PTR(wipe_tower_per_color_wipe);
|
|
OPT_PTR(z_offset);
|
|
|
|
// look in parent class
|
|
ConfigOption* opt;
|
|
if ((opt = GCodeConfig::optptr(opt_key, create)) != NULL) return opt;
|
|
|
|
return NULL;
|
|
};
|
|
};
|
|
|
|
class HostConfig : public virtual StaticPrintConfig
|
|
{
|
|
public:
|
|
ConfigOptionString octoprint_host;
|
|
ConfigOptionString octoprint_apikey;
|
|
ConfigOptionString serial_port;
|
|
ConfigOptionInt serial_speed;
|
|
|
|
HostConfig(bool initialize = true) : StaticPrintConfig() {
|
|
if (initialize)
|
|
this->set_defaults();
|
|
}
|
|
|
|
virtual ConfigOption* optptr(const t_config_option_key &opt_key, bool create = false) {
|
|
OPT_PTR(octoprint_host);
|
|
OPT_PTR(octoprint_apikey);
|
|
OPT_PTR(serial_port);
|
|
OPT_PTR(serial_speed);
|
|
|
|
return NULL;
|
|
};
|
|
};
|
|
|
|
// This object is mapped to Perl as Slic3r::Config::Full.
|
|
class FullPrintConfig
|
|
: public PrintObjectConfig, public PrintRegionConfig, public PrintConfig, public HostConfig
|
|
{
|
|
public:
|
|
FullPrintConfig(bool initialize = true) :
|
|
PrintObjectConfig(false),
|
|
PrintRegionConfig(false),
|
|
PrintConfig(false),
|
|
HostConfig(false)
|
|
{
|
|
if (initialize)
|
|
this->set_defaults();
|
|
}
|
|
|
|
virtual ConfigOption* optptr(const t_config_option_key &opt_key, bool create = false) {
|
|
ConfigOption* opt;
|
|
if ((opt = PrintObjectConfig::optptr(opt_key, create)) != NULL) return opt;
|
|
if ((opt = PrintRegionConfig::optptr(opt_key, create)) != NULL) return opt;
|
|
if ((opt = PrintConfig::optptr(opt_key, create)) != NULL) return opt;
|
|
if ((opt = HostConfig::optptr(opt_key, create)) != NULL) return opt;
|
|
return NULL;
|
|
};
|
|
};
|
|
|
|
}
|
|
|
|
#endif
|