Files
OrcaSlicer/src/libslic3r/Extruder.cpp
T
Hanif Koh 0a30cfe6b0 Remove Unused Project Includes and Forward-Declare Where a Type Is Only Referenced
Generated with include-what-you-use and applied conservatively. Only OrcaSlicer's own headers, the ones under src/ and tests/, are removed or forward-declared; standard-library and third-party includes are left alone. An include is removed only when both the Release and the Debug configuration leave it unused, never from inside a conditional block, and never from a file with platform-specific blocks, which only gain includes. Files whose only use of a header sits behind a feature or debug macro (libvgcode's OpenGL ES and marker code, the ARACHNE/TESTS_EXPORT_SVGS debug output) keep their includes.

clonable_ptr.hpp gains #pragma once; it had no include guard and was only safe while Config.hpp was its sole includer.
2026-10-03 22:45:55 +08:00

246 lines
7.1 KiB
C++

#include "Extruder.hpp"
#include "Exception.hpp"
#include "PrintConfig.hpp"
#include <vector>
#include "libslic3r.h"
#include <cassert>
#include <algorithm>
#include <cmath>
#include "Config.hpp"
namespace Slic3r {
std::vector<double> Extruder::m_share_E = std::vector<double>(MAXIMUM_EXTRUDER_NUMBER, 0);
std::vector<double> Extruder::m_share_retracted = std::vector<double>(MAXIMUM_EXTRUDER_NUMBER, 0);
Extruder::Extruder(unsigned int id, GCodeConfig *config, bool share_extruder) :
m_id(id),
m_config(config),
m_share_extruder(share_extruder)
{
reset();
m_config_index = int(m_id);
// cache values that are going to be called often
m_e_per_mm3 = this->filament_flow_ratio();
m_e_per_mm3 /= this->filament_crossection();
}
void Extruder::set_config_index(int idx)
{
m_config_index = idx < 0 ? int(m_id) : idx;
// keep the cached flow term reading the same column as the getters
m_e_per_mm3 = this->filament_flow_ratio();
m_e_per_mm3 /= this->filament_crossection();
}
unsigned int Extruder::extruder_id() const
{
assert(m_config);
if (m_id < m_config->filament_map.size()) {
return m_config->filament_map.get_at(m_id) - 1;
}
return 0;
}
double Extruder::extrude(double dE)
{
// BBS
if (m_share_extruder) {
if (m_config->use_relative_e_distances)
m_share_E[extruder_id()] = 0.;
m_share_E[extruder_id()] += dE;
m_absolute_E += dE;
if (dE < 0.)
m_share_retracted[extruder_id()] -= dE;
} else {
// in case of relative E distances we always reset to 0 before any output
if (m_config->use_relative_e_distances)
m_E = 0.;
m_E += dE;
m_absolute_E += dE;
if (dE < 0.)
m_retracted -= dE;
}
return dE;
}
/* This method makes sure the extruder is retracted by the specified amount
of filament and returns the amount of filament retracted.
If the extruder is already retracted by the same or a greater amount,
this method is a no-op.
The restart_extra argument sets the extra length to be used for
unretraction. If we're actually performing a retraction, any restart_extra
value supplied will overwrite the previous one if any. */
double Extruder::retract(double length, double restart_extra)
{
// BBS
if (m_share_extruder) {
if (m_config->use_relative_e_distances)
m_share_E[extruder_id()] = 0.;
double to_retract = std::max(0., length - m_share_retracted[extruder_id()]);
m_restart_extra = restart_extra;
if (to_retract > 0.) {
m_share_E[extruder_id()] -= to_retract;
m_absolute_E -= to_retract;
m_share_retracted[extruder_id()] += to_retract;
}
return to_retract;
} else {
// in case of relative E distances we always reset to 0 before any output
if (m_config->use_relative_e_distances)
m_E = 0.;
double to_retract = std::max(0., length - m_retracted);
m_restart_extra = restart_extra;
if (to_retract > 0.) {
m_E -= to_retract;
m_absolute_E -= to_retract;
m_retracted += to_retract;
}
return to_retract;
}
}
double Extruder::unretract()
{
// BBS
if (m_share_extruder) {
double dE = m_share_retracted[extruder_id()] + m_restart_extra;
this->extrude(dE);
m_share_retracted[extruder_id()] = 0.;
m_restart_extra = 0.;
return dE;
} else {
double dE = m_retracted + m_restart_extra;
this->extrude(dE);
m_retracted = 0.;
m_restart_extra = 0.;
return dE;
}
}
// Setting the retract state from the script.
// Sets current retraction value & restart extra filament amount if retracted > 0.
void Extruder::set_retracted(double retracted, double restart_extra)
{
if (retracted < - EPSILON)
throw Slic3r::RuntimeError("Custom G-code reports negative z_retracted.");
if (restart_extra < - EPSILON)
throw Slic3r::RuntimeError("Custom G-code reports negative z_restart_extra.");
if (retracted > EPSILON) {
m_retracted = retracted;
m_restart_extra = restart_extra < EPSILON ? 0 : restart_extra;
} else {
m_retracted = 0;
m_restart_extra = 0;
}
}
// Used filament volume in mm^3.
double Extruder::extruded_volume() const
{
// BBS
if (m_share_extruder) {
// FIXME: need to count m_retracted for share extruder machine
return this->used_filament() * this->filament_crossection();
} else {
return this->used_filament() * this->filament_crossection();
}
}
// Used filament length in mm.
double Extruder::used_filament() const
{
// BBS
if (m_share_extruder) {
// FIXME: need to count retracted length for share-extruder machine
return m_absolute_E;
} else {
return m_absolute_E + m_retracted;
}
}
double Extruder::filament_diameter() const
{
return m_config->filament_diameter.get_at(m_id);
}
double Extruder::filament_density() const
{
return m_config->filament_density.get_at(m_id);
}
double Extruder::filament_cost() const
{
return m_config->filament_cost.get_at(m_id);
}
double Extruder::filament_flow_ratio() const
{
return m_config->filament_flow_ratio.get_at(m_config_index);
}
// Return a "retract_before_wipe" percentage as a factor clamped to <0, 1>
double Extruder::retract_before_wipe() const
{
return std::clamp(m_config->retract_before_wipe.get_at(m_config_index) * 0.01, 0., 1.);
}
// Orca:
// Return a "retract_after_wipe" percentage as a factor clamped to <0, 1>
double Extruder::retract_after_wipe() const
{
return std::min(std::clamp(m_config->retract_after_wipe.get_at(m_config_index) * 0.01, 0., 1.), 1. - retract_before_wipe());
}
double Extruder::retraction_length() const
{
return m_config->retraction_length.get_at(m_config_index);
}
double Extruder::retract_lift() const
{
return m_config->z_hop.get_at(m_config_index);
}
int Extruder::retract_speed() const
{
return int(floor(m_config->retraction_speed.get_at(m_config_index)+0.5));
}
bool Extruder::use_firmware_retraction() const
{
return m_config->use_firmware_retraction;
}
int Extruder::deretract_speed() const
{
int speed = int(floor(m_config->deretraction_speed.get_at(m_config_index)+0.5));
return (speed > 0) ? speed : this->retract_speed();
}
double Extruder::retract_restart_extra() const
{
return m_config->retract_restart_extra.get_at(m_config_index);
}
double Extruder::retract_length_toolchange() const
{
return m_config->retract_length_toolchange.get_at(m_config_index);
}
double Extruder::retract_restart_extra_toolchange() const
{
return m_config->retract_restart_extra_toolchange.get_at(m_config_index);
}
double Extruder::travel_slope() const
{
// Orca: deliberately keyed by the physical extruder, not the filament column — this read
// predates the per-variant merge and switching it would change existing multi-extruder output.
return m_config->travel_slope.get_at(extruder_id()) * PI / 180;
}
}