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	 0558b53493
			
		
	
	
		0558b53493
		
	
	
	
	
		
			
			The XS was left only for the unit / integration tests, and it links libslic3r only. No wxWidgets are allowed to be used from Perl starting from now.
		
			
				
	
	
		
			148 lines
		
	
	
	
		
			6.7 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			148 lines
		
	
	
	
		
			6.7 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| #include "Flow.hpp"
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| #include "Print.hpp"
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| #include <cmath>
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| #include <assert.h>
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| 
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| namespace Slic3r {
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| 
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| // This static method returns a sane extrusion width default.
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| static inline float auto_extrusion_width(FlowRole role, float nozzle_diameter, float height)
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| {
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|     switch (role) {
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|     case frSupportMaterial:
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|     case frSupportMaterialInterface:
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|     case frTopSolidInfill:
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|         return nozzle_diameter;
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|     default:
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|     case frExternalPerimeter:
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|     case frPerimeter:
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|     case frSolidInfill:
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|     case frInfill:
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|         return 1.125f * nozzle_diameter;
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|     }
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| }
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| 
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| // This constructor builds a Flow object from an extrusion width config setting
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| // and other context properties.
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| Flow Flow::new_from_config_width(FlowRole role, const ConfigOptionFloatOrPercent &width, float nozzle_diameter, float height, float bridge_flow_ratio)
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| {
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|     // we need layer height unless it's a bridge
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|     if (height <= 0 && bridge_flow_ratio == 0) 
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|         throw std::invalid_argument("Invalid flow height supplied to new_from_config_width()");
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| 
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|     float w;
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|     if (bridge_flow_ratio > 0) {
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|         // If bridge flow was requested, calculate the bridge width.
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|         height = w = (bridge_flow_ratio == 1.) ?
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|             // optimization to avoid sqrt()
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|             nozzle_diameter :
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|             sqrt(bridge_flow_ratio) * nozzle_diameter;
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|     } else if (! width.percent && width.value == 0.) {
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|         // If user left option to 0, calculate a sane default width.
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|         w = auto_extrusion_width(role, nozzle_diameter, height);
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|     } else {
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|         // If user set a manual value, use it.
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|         w = float(width.get_abs_value(height));
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|     }
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|     
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|     return Flow(w, height, nozzle_diameter, bridge_flow_ratio > 0);
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| }
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| 
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| // This constructor builds a Flow object from a given centerline spacing.
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| Flow Flow::new_from_spacing(float spacing, float nozzle_diameter, float height, bool bridge) 
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| {
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|     // we need layer height unless it's a bridge
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|     if (height <= 0 && !bridge) 
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|         throw std::invalid_argument("Invalid flow height supplied to new_from_spacing()");
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|     // Calculate width from spacing.
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|     // For normal extrusons, extrusion width is wider than the spacing due to the rounding and squishing of the extrusions.
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|     // For bridge extrusions, the extrusions are placed with a tiny BRIDGE_EXTRA_SPACING gaps between the threads.
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|     float width = float(bridge ?
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|         (spacing - BRIDGE_EXTRA_SPACING) : 
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| #ifdef HAS_PERIMETER_LINE_OVERLAP
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|         (spacing + PERIMETER_LINE_OVERLAP_FACTOR * height * (1. - 0.25 * PI));
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| #else
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|         (spacing + height * (1. - 0.25 * PI)));
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| #endif
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|     return Flow(width, bridge ? width : height, nozzle_diameter, bridge);
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| }
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| 
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| // This method returns the centerline spacing between two adjacent extrusions 
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| // having the same extrusion width (and other properties).
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| float Flow::spacing() const 
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| {
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| #ifdef HAS_PERIMETER_LINE_OVERLAP
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|     if (this->bridge)
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|         return this->width + BRIDGE_EXTRA_SPACING;
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|     // rectangle with semicircles at the ends
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|     float min_flow_spacing = this->width - this->height * (1. - 0.25 * PI);
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|     return this->width - PERIMETER_LINE_OVERLAP_FACTOR * (this->width - min_flow_spacing);
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| #else
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|     return float(this->bridge ? (this->width + BRIDGE_EXTRA_SPACING) : (this->width - this->height * (1. - 0.25 * PI)));
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| #endif
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| }
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| 
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| // This method returns the centerline spacing between an extrusion using this
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| // flow and another one using another flow.
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| // this->spacing(other) shall return the same value as other.spacing(*this)
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| float Flow::spacing(const Flow &other) const
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| {
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|     assert(this->height == other.height);
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|     assert(this->bridge == other.bridge);
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|     return float(this->bridge ? 
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|         0.5 * this->width + 0.5 * other.width + BRIDGE_EXTRA_SPACING :
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|         0.5 * this->spacing() + 0.5 * other.spacing());
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| }
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| 
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| // This method returns extrusion volume per head move unit.
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| double Flow::mm3_per_mm() const 
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| {
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|     double res = this->bridge ?
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|         // Area of a circle with dmr of this->width.
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|         (this->width * this->width) * 0.25 * PI :
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|         // Rectangle with semicircles at the ends. ~ h (w - 0.215 h)
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|         this->height * (this->width - this->height * (1. - 0.25 * PI));
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|     assert(res > 0.);
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|     return res;
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| }
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| 
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| Flow support_material_flow(const PrintObject *object, float layer_height)
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| {
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|     return Flow::new_from_config_width(
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|         frSupportMaterial,
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|         // The width parameter accepted by new_from_config_width is of type ConfigOptionFloatOrPercent, the Flow class takes care of the percent to value substitution.
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|         (object->config().support_material_extrusion_width.value > 0) ? object->config().support_material_extrusion_width : object->config().extrusion_width,
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|         // if object->config().support_material_extruder == 0 (which means to not trigger tool change, but use the current extruder instead), get_at will return the 0th component.
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|         float(object->print()->config().nozzle_diameter.get_at(object->config().support_material_extruder-1)),
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|         (layer_height > 0.f) ? layer_height : float(object->config().layer_height.value),
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|         // bridge_flow_ratio
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|         0.f);
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| }
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| 
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| Flow support_material_1st_layer_flow(const PrintObject *object, float layer_height)
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| {
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|     const auto &width = (object->print()->config().first_layer_extrusion_width.value > 0) ? object->print()->config().first_layer_extrusion_width : object->config().support_material_extrusion_width;
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|     return Flow::new_from_config_width(
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|         frSupportMaterial,
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|         // The width parameter accepted by new_from_config_width is of type ConfigOptionFloatOrPercent, the Flow class takes care of the percent to value substitution.
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|         (width.value > 0) ? width : object->config().extrusion_width,
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|         float(object->print()->config().nozzle_diameter.get_at(object->config().support_material_extruder-1)),
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|         (layer_height > 0.f) ? layer_height : float(object->config().first_layer_height.get_abs_value(object->config().layer_height.value)),
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|         // bridge_flow_ratio
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|         0.f);
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| }
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| 
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| Flow support_material_interface_flow(const PrintObject *object, float layer_height)
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| {
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|     return Flow::new_from_config_width(
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|         frSupportMaterialInterface,
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|         // The width parameter accepted by new_from_config_width is of type ConfigOptionFloatOrPercent, the Flow class takes care of the percent to value substitution.
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|         (object->config().support_material_extrusion_width > 0) ? object->config().support_material_extrusion_width : object->config().extrusion_width,
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|         // if object->config().support_material_interface_extruder == 0 (which means to not trigger tool change, but use the current extruder instead), get_at will return the 0th component.
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|         float(object->print()->config().nozzle_diameter.get_at(object->config().support_material_interface_extruder-1)),
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|         (layer_height > 0.f) ? layer_height : float(object->config().layer_height.value),
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|         // bridge_flow_ratio
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|         0.f);
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| }
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| 
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| }
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