Make sure the m_extrusion_quality_estimator.set_current_object() is called after regional config has been applied (SoftFever/OrcaSlicer#7946)

This commit is contained in:
Noisyfox 2025-01-08 21:46:59 +08:00
parent e315586125
commit d13d4a47b7
2 changed files with 16 additions and 14 deletions

View file

@ -4190,9 +4190,6 @@ LayerResult GCode::process_layer(
} }
} }
if (m_config.enable_overhang_speed && !m_config.overhang_speed_classic)
m_extrusion_quality_estimator.set_current_object(&instance_to_print.print_object);
// When starting a new object, use the external motion planner for the first travel move. // When starting a new object, use the external motion planner for the first travel move.
const Point &offset = instance_to_print.print_object.instances()[instance_to_print.instance_id].shift; const Point &offset = instance_to_print.print_object.instances()[instance_to_print.instance_id].shift;
std::pair<const PrintObject*, Point> this_object_copy(&instance_to_print.print_object, offset); std::pair<const PrintObject*, Point> this_object_copy(&instance_to_print.print_object, offset);
@ -4293,10 +4290,10 @@ LayerResult GCode::process_layer(
has_insert_timelapse_gcode = true; has_insert_timelapse_gcode = true;
} }
gcode += this->extrude_infill(print, by_region_specific, false); gcode += this->extrude_infill(instance_to_print.print_object, by_region_specific, false);
gcode += this->extrude_perimeters(print, by_region_specific); gcode += this->extrude_perimeters(instance_to_print.print_object, by_region_specific);
} else { } else {
gcode += this->extrude_perimeters(print, by_region_specific); gcode += this->extrude_perimeters(instance_to_print.print_object, by_region_specific);
if (!has_wipe_tower && need_insert_timelapse_gcode_for_traditional && !has_insert_timelapse_gcode && has_infill(by_region_specific)) { if (!has_wipe_tower && need_insert_timelapse_gcode_for_traditional && !has_insert_timelapse_gcode && has_infill(by_region_specific)) {
gcode += this->retract(false, false, LiftType::NormalLift); gcode += this->retract(false, false, LiftType::NormalLift);
@ -4313,10 +4310,10 @@ LayerResult GCode::process_layer(
has_insert_timelapse_gcode = true; has_insert_timelapse_gcode = true;
} }
gcode += this->extrude_infill(print,by_region_specific, false); gcode += this->extrude_infill(instance_to_print.print_object, by_region_specific, false);
} }
// ironing // ironing
gcode += this->extrude_infill(print,by_region_specific, true); gcode += this->extrude_infill(instance_to_print.print_object, by_region_specific, true);
} }
if (this->config().gcode_label_objects) { if (this->config().gcode_label_objects) {
@ -4911,12 +4908,14 @@ std::string GCode::extrude_path(ExtrusionPath path, std::string description, dou
} }
// Extrude perimeters: Decide where to put seams (hide or align seams). // Extrude perimeters: Decide where to put seams (hide or align seams).
std::string GCode::extrude_perimeters(const Print &print, const std::vector<ObjectByExtruder::Island::Region> &by_region) std::string GCode::extrude_perimeters(const PrintObject& print_object, const std::vector<ObjectByExtruder::Island::Region>& by_region)
{ {
std::string gcode; std::string gcode;
for (const ObjectByExtruder::Island::Region &region : by_region) for (const ObjectByExtruder::Island::Region &region : by_region)
if (! region.perimeters.empty()) { if (! region.perimeters.empty()) {
m_config.apply(print.get_print_region(&region - &by_region.front()).config()); m_config.apply(print_object.print()->get_print_region(&region - &by_region.front()).config());
if (m_config.enable_overhang_speed && !m_config.overhang_speed_classic)
m_extrusion_quality_estimator.set_current_object(&print_object);
for (const ExtrusionEntity* ee : region.perimeters) for (const ExtrusionEntity* ee : region.perimeters)
gcode += this->extrude_entity(*ee, "perimeter", -1., region.perimeters); gcode += this->extrude_entity(*ee, "perimeter", -1., region.perimeters);
@ -4925,7 +4924,7 @@ std::string GCode::extrude_perimeters(const Print &print, const std::vector<Obje
} }
// Chain the paths hierarchically by a greedy algorithm to minimize a travel distance. // Chain the paths hierarchically by a greedy algorithm to minimize a travel distance.
std::string GCode::extrude_infill(const Print &print, const std::vector<ObjectByExtruder::Island::Region> &by_region, bool ironing) std::string GCode::extrude_infill(const PrintObject &print_object, const std::vector<ObjectByExtruder::Island::Region> &by_region, bool ironing)
{ {
std::string gcode; std::string gcode;
ExtrusionEntitiesPtr extrusions; ExtrusionEntitiesPtr extrusions;
@ -4938,7 +4937,10 @@ std::string GCode::extrude_infill(const Print &print, const std::vector<ObjectBy
if ((ee->role() == erIroning) == ironing) if ((ee->role() == erIroning) == ironing)
extrusions.emplace_back(ee); extrusions.emplace_back(ee);
if (! extrusions.empty()) { if (! extrusions.empty()) {
m_config.apply(print.get_print_region(&region - &by_region.front()).config()); m_config.apply(print_object.print()->get_print_region(&region - &by_region.front()).config());
if (m_config.enable_overhang_speed && !m_config.overhang_speed_classic)
m_extrusion_quality_estimator.set_current_object(&print_object);
chain_and_reorder_extrusion_entities(extrusions, &m_last_pos); chain_and_reorder_extrusion_entities(extrusions, &m_last_pos);
for (const ExtrusionEntity *fill : extrusions) { for (const ExtrusionEntity *fill : extrusions) {
auto *eec = dynamic_cast<const ExtrusionEntityCollection*>(fill); auto *eec = dynamic_cast<const ExtrusionEntityCollection*>(fill);

View file

@ -445,8 +445,8 @@ private:
// For sequential print, the instance of the object to be printing has to be defined. // For sequential print, the instance of the object to be printing has to be defined.
const size_t single_object_instance_idx); const size_t single_object_instance_idx);
std::string extrude_perimeters(const Print& print, const std::vector<ObjectByExtruder::Island::Region>& by_region); std::string extrude_perimeters(const PrintObject &print_object, const std::vector<ObjectByExtruder::Island::Region>& by_region);
std::string extrude_infill(const Print& print, const std::vector<ObjectByExtruder::Island::Region>& by_region, bool ironing); std::string extrude_infill(const PrintObject &print_object, const std::vector<ObjectByExtruder::Island::Region>& by_region, bool ironing);
std::string extrude_support(const ExtrusionEntityCollection& support_fills); std::string extrude_support(const ExtrusionEntityCollection& support_fills);
// BBS // BBS