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Author SHA1 Message Date
Hanif Koh 536ef75894 Fill Settings Missing From a CLI Project From Its System Presets
A project saved before a printer or process option existed has no value
for it. The GUI takes such keys from the project's system preset; the
CLI left them at the option default, so e.g. extruder_clearance_dist_to_rod
sliced as 40 instead of the P1S's 33.

The CLI now resolves the project's system printer and process presets by
name and copies the keys the project lacks, skipping preset bookkeeping,
print-host keys, the extruder variant layout and keys the legacy handler
drops. PresetBundle::resolve_system_preset finds the vendor through its
manifest or preset cache, so it also works in release builds, which ship
vendors as caches only.
2026-09-28 18:01:00 +08:00
HanifKoh cda1588578 Draw the Toolpaths Top-Down When the Camera Looks Down on the Print (#15883)
The segments come in print order, bottom layer first, which seen from above is back to
front: every hidden fragment is shaded before the one that covers it, and on an integrated
GPU that overdraw is most of the frame. Drawing the instances last to first whenever the
camera looks down lets the depth test reject the hidden fragments instead. Side views and
views from below keep the print order, and the shadow-caster pass is unchanged.
2026-09-28 15:36:08 +08:00
17 changed files with 326 additions and 110 deletions
+50 -4
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@@ -2116,7 +2116,12 @@ int CLI::run(int argc, char **argv)
// One resolver for the whole run, so presets from the same vendor tree share its load. // One resolver for the whole run, so presets from the same vendor tree share its load.
std::unique_ptr<PresetBundle> system_preset_resolver; std::unique_ptr<PresetBundle> system_preset_resolver;
auto resolve_preset = [&ensure_cli_preset_bundle, &system_preset_resolver](const std::string &file, DynamicPrintConfig &config, auto ensure_system_preset_resolver = [&system_preset_resolver]() -> PresetBundle & {
if (!system_preset_resolver)
system_preset_resolver = std::make_unique<PresetBundle>();
return *system_preset_resolver;
};
auto resolve_preset = [&ensure_cli_preset_bundle, &ensure_system_preset_resolver](const std::string &file, DynamicPrintConfig &config,
std::string &config_type, const std::string &config_from, std::string &config_type, const std::string &config_from,
bool probe_type, std::string &error) { bool probe_type, std::string &error) {
const auto *inherits = config.option<ConfigOptionString>(BBL_JSON_KEY_INHERITS); const auto *inherits = config.option<ConfigOptionString>(BBL_JSON_KEY_INHERITS);
@@ -2126,9 +2131,7 @@ int CLI::run(int argc, char **argv)
PresetBundle *bundle = nullptr; PresetBundle *bundle = nullptr;
bool allow_source_manifest = false; bool allow_source_manifest = false;
if (config_from == "system") { if (config_from == "system") {
if (!system_preset_resolver) bundle = &ensure_system_preset_resolver();
system_preset_resolver = std::make_unique<PresetBundle>();
bundle = system_preset_resolver.get();
allow_source_manifest = true; allow_source_manifest = true;
} else { } else {
bundle = ensure_cli_preset_bundle(error); bundle = ensure_cli_preset_bundle(error);
@@ -3120,6 +3123,49 @@ int CLI::run(int argc, char **argv)
return 0; return 0;
}; };
// A project saved before a printer or process option existed has no value for it. The GUI takes such
// keys from the project's system preset (load_external_preset refreshes every key the project did not
// override), so fill them from there too instead of leaving them to the option default.
// The extruder variant keys describe the project's variant layout and are kept as they are, so an
// older project is not left with a variant list from one layout and ids from another.
auto fill_missing_project_keys = [this, &ensure_system_preset_resolver](const std::string &system_name, Preset::Type type) {
if (system_name.empty())
return;
static const std::set<std::string> skip_keys = {
"inherits", "compatible_printers", "compatible_prints", "compatible_printers_condition", "compatible_prints_condition",
"print_settings_id", "filament_settings_id", "printer_settings_id",
"print_host", "print_host_webui", "printhost_apikey", "printhost_cafile", "printhost_user", "printhost_password", "printhost_port",
"printer_extruder_id", "printer_extruder_variant", "print_extruder_id", "print_extruder_variant", "extruder_variant_list"};
const std::vector<std::string> &options = type == Preset::TYPE_PRINTER ? Preset::printer_options() : Preset::print_options();
// Keys the legacy handler drops on load can never be in a project, so they do not count as missing.
auto dropped_on_load = [](std::string key) {
std::string value;
PrintConfigDef::handle_legacy(key, value);
return key.empty();
};
std::vector<std::string> missing;
for (const std::string &key : options)
if (m_print_config.option(key) == nullptr && skip_keys.count(key) == 0 && !dropped_on_load(key))
missing.push_back(key);
if (missing.empty())
return;
DynamicPrintConfig system_config;
std::string error;
if (!ensure_system_preset_resolver().resolve_system_preset(system_config, type, system_name, config_substitution_rule, error)) {
BOOST_LOG_TRIVIAL(warning) << boost::format("CLI: system preset '%1%' not resolved (%2%); keys missing from the project keep their defaults") % system_name % error;
return;
}
for (const std::string &key : missing)
if (const ConfigOption *opt = system_config.option(key)) {
m_print_config.set_key_value(key, opt->clone());
BOOST_LOG_TRIVIAL(info) << boost::format("CLI: %1% missing from the project, taken from '%2%': %3%") % key % system_name % opt->serialize();
}
};
if (new_printer_name.empty())
fill_missing_project_keys(current_printer_system_name, Preset::TYPE_PRINTER);
if (new_process_name.empty())
fill_missing_project_keys(current_process_system_name, Preset::TYPE_PRINT);
std::vector<std::string>& different_settings = m_print_config.option<ConfigOptionStrings>("different_settings_to_system", true)->values; std::vector<std::string>& different_settings = m_print_config.option<ConfigOptionStrings>("different_settings_to_system", true)->values;
std::vector<std::string>& inherits_group = m_print_config.option<ConfigOptionStrings>("inherits_group", true)->values; std::vector<std::string>& inherits_group = m_print_config.option<ConfigOptionStrings>("inherits_group", true)->values;
inherits_group.resize(filament_count + 2, std::string()); inherits_group.resize(filament_count + 2, std::string());
+2 -2
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@@ -1692,9 +1692,9 @@ void Layer::make_ironing()
ironing_params.just_infill = false; ironing_params.just_infill = false;
// ORCA: Get filament-specific overrides if configured, otherwise use process values // ORCA: Get filament-specific overrides if configured, otherwise use process values
size_t extruder_idx = ironing_params.extruder - 1; size_t extruder_idx = ironing_params.extruder - 1;
ironing_params.line_spacing = std::max(IRONING_SPACING_MIN, !config.filament_ironing_spacing.is_nil(extruder_idx) ironing_params.line_spacing = (!config.filament_ironing_spacing.is_nil(extruder_idx)
? config.filament_ironing_spacing.get_at(extruder_idx) ? config.filament_ironing_spacing.get_at(extruder_idx)
: config.ironing_spacing.value); : config.ironing_spacing);
ironing_params.inset = (!config.filament_ironing_inset.is_nil(extruder_idx) ironing_params.inset = (!config.filament_ironing_inset.is_nil(extruder_idx)
? config.filament_ironing_inset.get_at(extruder_idx) ? config.filament_ironing_inset.get_at(extruder_idx)
: config.ironing_inset); : config.ironing_inset);
-5
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@@ -22,9 +22,6 @@ void FillConcentric::_fill_surface_single(
coord_t min_spacing = scale_(this->spacing) * params.multiline; coord_t min_spacing = scale_(this->spacing) * params.multiline;
coord_t distance = coord_t(min_spacing / params.density); coord_t distance = coord_t(min_spacing / params.density);
// A non-positive step never shrinks the region, so the inset loop below would not end.
if (min_spacing <= 0 || distance <= 0)
return;
if (params.density > 0.9999f && !params.dont_adjust) { if (params.density > 0.9999f && !params.dont_adjust) {
distance = this->_adjust_solid_spacing(bounding_box.size()(0), distance); distance = this->_adjust_solid_spacing(bounding_box.size()(0), distance);
@@ -111,8 +108,6 @@ void FillConcentric::_fill_surface_single(const FillParams& params,
// no rotation is supported for this infill pattern // no rotation is supported for this infill pattern
Point bbox_size = expolygon.contour.bounding_box().size(); Point bbox_size = expolygon.contour.bounding_box().size();
coord_t min_spacing = scaled<coord_t>(this->spacing); coord_t min_spacing = scaled<coord_t>(this->spacing);
if (min_spacing <= 0)
return;
if (params.density > 0.9999f && !params.dont_adjust) { if (params.density > 0.9999f && !params.dont_adjust) {
coord_t loops_count = std::max(bbox_size.x(), bbox_size.y()) / min_spacing + 1; coord_t loops_count = std::max(bbox_size.x(), bbox_size.y()) / min_spacing + 1;
+44 -5
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@@ -575,18 +575,20 @@ bool PresetBundle::resolve_preset_config(DynamicPrintConfig &config, Preset::Typ
const PresetBundle *PresetBundle::load_source_vendor(const boost::filesystem::path &root_dir, const PresetBundle *PresetBundle::load_source_vendor(const boost::filesystem::path &root_dir,
const std::string &vendor_id, const std::string &vendor_id,
ForwardCompatibilitySubstitutionRule compatibility_rule, ForwardCompatibilitySubstitutionRule compatibility_rule,
std::string &error) std::string &error, bool allow_cache)
{ {
auto key = std::make_tuple(root_dir.string(), vendor_id, compatibility_rule); auto key = std::make_tuple(root_dir.string(), vendor_id, compatibility_rule, allow_cache);
if (auto it = m_source_vendor_bundles.find(key); it != m_source_vendor_bundles.end()) if (auto it = m_source_vendor_bundles.find(key); it != m_source_vendor_bundles.end())
return it->second.get(); return it->second.get();
// The library loads with no base of its own, so the tree a vendor inherits from // The library loads with no base of its own, so the tree a vendor inherits from
// is the same one that resolves the library's own presets. // is the same one that resolves the library's own presets.
const std::string library_file = std::string(ORCA_FILAMENT_LIBRARY);
const PresetBundle *library = nullptr; const PresetBundle *library = nullptr;
if (vendor_id != ORCA_FILAMENT_LIBRARY && if (vendor_id != ORCA_FILAMENT_LIBRARY &&
boost::filesystem::is_regular_file(root_dir / (std::string(ORCA_FILAMENT_LIBRARY) + ".json"))) { (boost::filesystem::is_regular_file(root_dir / (library_file + ".json")) ||
library = load_source_vendor(root_dir, ORCA_FILAMENT_LIBRARY, compatibility_rule, error); (allow_cache && boost::filesystem::is_regular_file(root_dir / (library_file + ".opc"))))) {
library = load_source_vendor(root_dir, ORCA_FILAMENT_LIBRARY, compatibility_rule, error, allow_cache);
if (library == nullptr) { if (library == nullptr) {
error = "OrcaFilamentLibrary contains invalid presets"; error = "OrcaFilamentLibrary contains invalid presets";
return nullptr; return nullptr;
@@ -595,7 +597,7 @@ const PresetBundle *PresetBundle::load_source_vendor(const boost::filesystem::pa
auto bundle = std::make_unique<PresetBundle>(); auto bundle = std::make_unique<PresetBundle>();
bundle->m_preserve_vendor_source_paths = true; bundle->m_preserve_vendor_source_paths = true;
bundle->load_vendor_configs_from_json(root_dir.string(), vendor_id, LoadSystem, compatibility_rule, library, false); bundle->load_vendor_configs_from_json(root_dir.string(), vendor_id, LoadSystem, compatibility_rule, library, allow_cache);
if (bundle->error_count() != 0) { if (bundle->error_count() != 0) {
error = "Vendor bundle contains invalid presets"; error = "Vendor bundle contains invalid presets";
return nullptr; return nullptr;
@@ -638,6 +640,43 @@ bool PresetBundle::resolve_preset_config_type(DynamicPrintConfig &config, Preset
return true; return true;
} }
bool PresetBundle::resolve_system_preset(DynamicPrintConfig &config, Preset::Type type, const std::string &name,
ForwardCompatibilitySubstitutionRule compatibility_rule, std::string &error)
{
const std::string vendor_id = find_preset_vendor(name, type);
if (vendor_id.empty()) {
error = "No vendor lists the preset";
return false;
}
// Release builds ship a vendor as its preset cache alone, without the profile JSONs.
auto installed = [&vendor_id](const fs::path &root) {
return fs::is_regular_file(root / (vendor_id + ".json")) || fs::is_regular_file(root / (vendor_id + ".opc"));
};
fs::path root_dir = fs::path(data_dir()) / PRESET_SYSTEM_DIR;
if (!installed(root_dir))
root_dir = fs::path(resources_dir()) / PRESET_PROFILES_DIR;
const bool cache_only = !fs::is_regular_file(root_dir / (vendor_id + ".json"));
try {
const PresetBundle *vendor = load_source_vendor(root_dir, vendor_id, compatibility_rule, error, cache_only);
if (vendor == nullptr)
return false;
const PresetCollection &collection = type == Preset::TYPE_PRINTER ? vendor->printers :
type == Preset::TYPE_PRINT ? vendor->prints : vendor->filaments;
const Preset *preset = collection.find_preset(name, false);
if (preset == nullptr) {
error = "Preset was not found in its vendor bundle";
return false;
}
config = preset->config;
} catch (const std::exception &ex) {
error = ex.what();
return false;
}
error.clear();
return true;
}
PresetBundle::PresetBundle(const PresetBundle &rhs) PresetBundle::PresetBundle(const PresetBundle &rhs)
{ {
*this = rhs; *this = rhs;
+7 -2
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@@ -273,6 +273,10 @@ public:
const std::string &source_file, const std::string &source_file,
ForwardCompatibilitySubstitutionRule compatibility_rule, ForwardCompatibilitySubstitutionRule compatibility_rule,
std::string &error, bool allow_source_manifest = true); std::string &error, bool allow_source_manifest = true);
// Resolve a system preset by name. The vendor tree is read from data_dir()/system when installed
// there, as the GUI reads it, and from the bundled profiles otherwise.
bool resolve_system_preset(DynamicPrintConfig &config, Preset::Type type, const std::string &name,
ForwardCompatibilitySubstitutionRule compatibility_rule, std::string &error);
// Load selections (current print, current filaments, current printer) from config.ini // Load selections (current print, current filaments, current printer) from config.ini
// This is done just once on application start up. // This is done just once on application start up.
@@ -663,13 +667,14 @@ private:
// Vendor trees loaded by resolve_preset_config's manifest path, so every preset // Vendor trees loaded by resolve_preset_config's manifest path, so every preset
// resolved through this bundle shares one load per source root and vendor. The // resolved through this bundle shares one load per source root and vendor. The
// filament library is one such tree, shared by every vendor under its root. // filament library is one such tree, shared by every vendor under its root.
std::map<std::tuple<std::string, std::string, ForwardCompatibilitySubstitutionRule>, std::unique_ptr<PresetBundle>> // A tree read from its preset cache is kept apart: its presets carry no source file.
std::map<std::tuple<std::string, std::string, ForwardCompatibilitySubstitutionRule, bool>, std::unique_ptr<PresetBundle>>
m_source_vendor_bundles; m_source_vendor_bundles;
const PresetBundle *load_source_vendor(const boost::filesystem::path &root_dir, const PresetBundle *load_source_vendor(const boost::filesystem::path &root_dir,
const std::string &vendor_id, const std::string &vendor_id,
ForwardCompatibilitySubstitutionRule compatibility_rule, ForwardCompatibilitySubstitutionRule compatibility_rule,
std::string &error); std::string &error, bool allow_cache = false);
// Orca: validation only - flag any printer with two or more compatible // Orca: validation only - flag any printer with two or more compatible
// filament presets sharing one filament_id (ambiguous AMS subtype match). // filament presets sharing one filament_id (ambiguous AMS subtype match).
-4
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@@ -178,10 +178,6 @@ enum class IroningType {
Count, Count,
}; };
// Smallest usable ironing line spacing. Anything tighter yields an unprintable number of lines,
// and zero stops the fillers from making progress.
constexpr double IRONING_SPACING_MIN = 0.05;
//BBS //BBS
enum class WallInfillOrder { enum class WallInfillOrder {
InnerOuterInfill, InnerOuterInfill,
+1 -1
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@@ -64,7 +64,7 @@ struct SupportParameters {
this->ironing = object_config.support_ironing; this->ironing = object_config.support_ironing;
this->ironing_flow = support_material_interface_flow.with_height(support_material_interface_flow.height() * 0.01 * object_config.support_ironing_flow.value); this->ironing_flow = support_material_interface_flow.with_height(support_material_interface_flow.height() * 0.01 * object_config.support_ironing_flow.value);
this->ironing_spacing = std::max(IRONING_SPACING_MIN, object_config.support_ironing_spacing.value); this->ironing_spacing = object_config.support_ironing_spacing;
this->ironing_pattern = object_config.support_ironing_pattern; this->ironing_pattern = object_config.support_ironing_pattern;
// Calculate a minimum support layer height as a minimum over all extruders, but not smaller than 10um. // Calculate a minimum support layer height as a minimum over all extruders, but not smaller than 10um.
+6 -1
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@@ -34,6 +34,10 @@ static const char* Segments_Vertex_Shader =
// ORCA: 0 during the shadow caster pass - the bias below shifts eye_position but not // ORCA: 0 during the shadow caster pass - the bias below shifts eye_position but not
// world_position, so the caster would write a depth the receiver never looks up. // world_position, so the caster would write a depth the receiver never looks up.
"uniform float bias_scale;\n" "uniform float bias_scale;\n"
// draw the instances last to first, top layers before the ones they hide, so that early depth
// rejection discards most of the hidden fragments; set when the camera looks down on the print
"uniform int reverse_order;\n"
"uniform int instance_count;\n"
"in int vertex_id;\n" "in int vertex_id;\n"
"out vec3 color;\n" "out vec3 color;\n"
"// ORCA: realistic view - the light the shadow map is able to block, kept apart from the\n" "// ORCA: realistic view - the light the shadow map is able to block, kept apart from the\n"
@@ -59,7 +63,8 @@ static const char* Segments_Vertex_Shader =
" return top_diffuse + front_diffuse + top_specular;\n" " return top_diffuse + front_diffuse + top_specular;\n"
"}\n" "}\n"
"void main() {\n" "void main() {\n"
" int id_a = int(texelFetch(segment_index_tex, gl_InstanceID).r);\n" " int instance = (reverse_order != 0) ? instance_count - 1 - gl_InstanceID : gl_InstanceID;\n"
" int id_a = int(texelFetch(segment_index_tex, instance).r);\n"
" int id_b = id_a + 1;\n" " int id_b = id_a + 1;\n"
" vec3 pos_a = texelFetch(position_tex, id_a).xyz;\n" " vec3 pos_a = texelFetch(position_tex, id_a).xyz;\n"
" vec3 pos_b = texelFetch(position_tex, id_b).xyz;\n" " vec3 pos_b = texelFetch(position_tex, id_b).xyz;\n"
+11
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@@ -763,6 +763,8 @@ void ViewerImpl::init(const std::string& opengl_context_version)
m_uni_segments_height_width_angle_tex_id = glGetUniformLocation(m_segments_shader_id, "height_width_angle_tex"); m_uni_segments_height_width_angle_tex_id = glGetUniformLocation(m_segments_shader_id, "height_width_angle_tex");
m_uni_segments_colors_tex_id = glGetUniformLocation(m_segments_shader_id, "color_tex"); m_uni_segments_colors_tex_id = glGetUniformLocation(m_segments_shader_id, "color_tex");
m_uni_segments_segment_index_tex_id = glGetUniformLocation(m_segments_shader_id, "segment_index_tex"); m_uni_segments_segment_index_tex_id = glGetUniformLocation(m_segments_shader_id, "segment_index_tex");
m_uni_segments_reverse_order_id = glGetUniformLocation(m_segments_shader_id, "reverse_order");
m_uni_segments_instance_count_id = glGetUniformLocation(m_segments_shader_id, "instance_count");
// ORCA: realistic view // ORCA: realistic view
m_uni_segments_shadow_map_id = glGetUniformLocation(m_segments_shader_id, "shadow_map"); m_uni_segments_shadow_map_id = glGetUniformLocation(m_segments_shader_id, "shadow_map");
m_uni_segments_shadow_light_vp_id = glGetUniformLocation(m_segments_shader_id, "shadow_light_vp"); m_uni_segments_shadow_light_vp_id = glGetUniformLocation(m_segments_shader_id, "shadow_light_vp");
@@ -2090,6 +2092,15 @@ void ViewerImpl::render_segments(const Mat4x4& view_matrix, const Mat4x4& projec
glsafe(glUniformMatrix4fv(m_uni_segments_view_matrix_id, 1, GL_FALSE, view_matrix.data())); glsafe(glUniformMatrix4fv(m_uni_segments_view_matrix_id, 1, GL_FALSE, view_matrix.data()));
glsafe(glUniformMatrix4fv(m_uni_segments_projection_matrix_id, 1, GL_FALSE, projection_matrix.data())); glsafe(glUniformMatrix4fv(m_uni_segments_projection_matrix_id, 1, GL_FALSE, projection_matrix.data()));
glsafe(glUniform3fv(m_uni_segments_camera_position_id, 1, camera_position.data())); glsafe(glUniform3fv(m_uni_segments_camera_position_id, 1, camera_position.data()));
// The segments come in print order, bottom layer first. Seen from above, that is back to front,
// and every hidden fragment is shaded before the one that covers it. Drawing them last to first
// lets the depth test reject the hidden ones instead. The camera looks down when the world's
// up axis points towards it, which is the view matrix's (2, 2) entry being positive.
const bool top_down = !m_rendering_shadow_casters && view_matrix[10] > 0.0f;
glsafe(glUniform1i(m_uni_segments_reverse_order_id, top_down ? 1 : 0));
#ifndef ENABLE_OPENGL_ES
glsafe(glUniform1i(m_uni_segments_instance_count_id, static_cast<int>(m_enabled_segments_count)));
#endif // ENABLE_OPENGL_ES
// ORCA: realistic view. The depth pass writes the map it would otherwise read, so it shades // ORCA: realistic view. The depth pass writes the map it would otherwise read, so it shades
// with the lookup off. // with the lookup off.
glsafe(glUniform1i(m_uni_segments_shadow_map_id, m_shadow_map_texture_unit)); glsafe(glUniform1i(m_uni_segments_shadow_map_id, m_shadow_map_texture_unit));
+2
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@@ -362,6 +362,8 @@ private:
int m_uni_segments_height_width_angle_tex_id{ -1 }; int m_uni_segments_height_width_angle_tex_id{ -1 };
int m_uni_segments_colors_tex_id{ -1 }; int m_uni_segments_colors_tex_id{ -1 };
int m_uni_segments_segment_index_tex_id{ -1 }; int m_uni_segments_segment_index_tex_id{ -1 };
int m_uni_segments_reverse_order_id{ -1 };
int m_uni_segments_instance_count_id{ -1 };
int m_uni_segments_shadow_map_id{ -1 }; int m_uni_segments_shadow_map_id{ -1 };
int m_uni_segments_shadow_light_vp_id{ -1 }; int m_uni_segments_shadow_light_vp_id{ -1 };
int m_uni_segments_shadow_intensity_id{ -1 }; int m_uni_segments_shadow_intensity_id{ -1 };
+2 -26
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@@ -210,30 +210,6 @@ void ConfigManipulation::check_filament_max_volumetric_speed(DynamicPrintConfig
} }
void ConfigManipulation::check_filament_ironing_spacing(DynamicPrintConfig *config)
{
const auto *opt = config->option<ConfigOptionFloatsNullable>("filament_ironing_spacing");
if (opt == nullptr)
return;
std::vector<double> values = opt->values;
bool reset = false;
for (size_t i = 0; i < values.size(); ++i)
if (!opt->is_nil(i) && values[i] < IRONING_SPACING_MIN) {
values[i] = 0.1;
reset = true;
}
if (!reset)
return;
const wxString msg_text = _(L("Ironing spacing too small\nIt has been reset to 0.1"));
MessageDialog dialog(nullptr, msg_text, "", wxICON_WARNING | wxOK);
DynamicPrintConfig new_conf = *config;
is_msg_dlg_already_exist = true;
dialog.ShowModal();
new_conf.set_key_value("filament_ironing_spacing", new ConfigOptionFloatsNullable(values));
apply(config, &new_conf);
is_msg_dlg_already_exist = false;
}
void ConfigManipulation::check_chamber_temperature(DynamicPrintConfig* config) void ConfigManipulation::check_chamber_temperature(DynamicPrintConfig* config)
{ {
bool support_chamber_temp_control=GUI::wxGetApp().preset_bundle->printers.get_selected_preset().config.opt_bool("support_chamber_temp_control"); bool support_chamber_temp_control=GUI::wxGetApp().preset_bundle->printers.get_selected_preset().config.opt_bool("support_chamber_temp_control");
@@ -356,7 +332,7 @@ void ConfigManipulation::update_print_fff_config(DynamicPrintConfig* config, con
} }
//BBS: ironing_spacing shouldn't be too small or equal to zero //BBS: ironing_spacing shouldn't be too small or equal to zero
if (config->opt_float("ironing_spacing") < IRONING_SPACING_MIN) if (config->opt_float("ironing_spacing") < 0.05)
{ {
const wxString msg_text = _(L("Ironing spacing too small\nIt has been reset to 0.1")); const wxString msg_text = _(L("Ironing spacing too small\nIt has been reset to 0.1"));
MessageDialog dialog(nullptr, msg_text, "", wxICON_WARNING | wxOK); MessageDialog dialog(nullptr, msg_text, "", wxICON_WARNING | wxOK);
@@ -367,7 +343,7 @@ void ConfigManipulation::update_print_fff_config(DynamicPrintConfig* config, con
apply(config, &new_conf); apply(config, &new_conf);
is_msg_dlg_already_exist = false; is_msg_dlg_already_exist = false;
} }
if (config->opt_float("support_ironing_spacing") < IRONING_SPACING_MIN) if (config->opt_float("support_ironing_spacing") < 0.05)
{ {
const wxString msg_text = _(L("Ironing spacing too small\nIt has been reset to 0.1")); const wxString msg_text = _(L("Ironing spacing too small\nIt has been reset to 0.1"));
MessageDialog dialog(nullptr, msg_text, "", wxICON_WARNING | wxOK); MessageDialog dialog(nullptr, msg_text, "", wxICON_WARNING | wxOK);
-1
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@@ -84,7 +84,6 @@ public:
void check_nozzle_temperature_initial_layer_range(DynamicPrintConfig* config); void check_nozzle_temperature_initial_layer_range(DynamicPrintConfig* config);
void check_adaptive_pressure_advance_model(DynamicPrintConfig* config); void check_adaptive_pressure_advance_model(DynamicPrintConfig* config);
void check_filament_max_volumetric_speed(DynamicPrintConfig *config); void check_filament_max_volumetric_speed(DynamicPrintConfig *config);
void check_filament_ironing_spacing(DynamicPrintConfig *config);
void check_chamber_temperature(DynamicPrintConfig* config); void check_chamber_temperature(DynamicPrintConfig* config);
void check_chamber_minimal_temperature(DynamicPrintConfig* config); void check_chamber_minimal_temperature(DynamicPrintConfig* config);
bool check_layer_height(DynamicPrintConfig* config); bool check_layer_height(DynamicPrintConfig* config);
-1
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@@ -4905,7 +4905,6 @@ void TabFilament::update()
return; // ys_FIXME return; // ys_FIXME
m_config_manipulation.check_filament_max_volumetric_speed(m_config); m_config_manipulation.check_filament_max_volumetric_speed(m_config);
m_config_manipulation.check_filament_ironing_spacing(m_config);
m_update_cnt++; m_update_cnt++;
+8
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@@ -15,3 +15,11 @@ set_tests_properties(cli_strict_mode PROPERTIES
LABELS "CLI;RequiresApp" LABELS "CLI;RequiresApp"
SKIP_RETURN_CODE 77 SKIP_RETURN_CODE 77
TIMEOUT 900) TIMEOUT 900)
add_test(NAME cli_project_missing_keys
COMMAND bash ${CMAKE_CURRENT_SOURCE_DIR}/test_cli_project_missing_keys.sh $<TARGET_FILE:OrcaSlicer> ${ORCA_CLI_TEST_PYTHON}
${CMAKE_SOURCE_DIR}/resources/profiles/BBL)
set_tests_properties(cli_project_missing_keys PROPERTIES
LABELS "CLI;RequiresApp"
SKIP_RETURN_CODE 77
TIMEOUT 900)
@@ -0,0 +1,89 @@
#!/usr/bin/env bash
# End-to-end check that the CLI fills settings missing from a project from the project's system presets.
#
# A project saved before an option existed has no value for it. The GUI takes such keys from the
# project's system printer and process presets, not from the option defaults, and the CLI must slice
# the project with the same values. A project is exported from the shipped Bambu Lab P1S presets, one
# printer key and one process key are removed from it, one kept key is changed, and it is sliced again.
#
# usage: test_cli_project_missing_keys.sh <orca-slicer binary> <python3> <resources/profiles/BBL>
set -u
BIN="${1:-}"
PY="${2:-python3}"
PROFILES="${3:-}"
# 77 is the test's SKIP_RETURN_CODE.
[ -x "$BIN" ] || { echo "SKIP: orca-slicer binary not found: $BIN"; exit 77; }
[ -d "$PROFILES" ] || { echo "FAIL: profiles directory not found: $PROFILES"; exit 1; }
WORK="$(mktemp -d "${TMPDIR:-/tmp}/orca-cli-missing-keys.XXXXXX")"
trap 'rm -rf "$WORK"' EXIT
"$PY" - "$WORK/cube.stl" <<'EOF'
import sys
v = [(x, y, z) for z in (0, 10) for y in (0, 10) for x in (0, 10)]
with open(sys.argv[1], "w") as f:
f.write("solid cube\n")
for a, b, c, d in ((0, 2, 3, 1), (4, 5, 7, 6), (0, 1, 5, 4), (2, 6, 7, 3), (0, 4, 6, 2), (1, 3, 7, 5)):
for tri in ((v[a], v[b], v[c]), (v[a], v[c], v[d])):
f.write("facet normal 0 0 0\nouter loop\n")
for p in tri:
f.write("vertex %g %g %g\n" % p)
f.write("endloop\nendfacet\n")
f.write("endsolid cube\n")
EOF
# slice <tag> <input> [option...]: slice into $WORK/<tag>/out.3mf with a fresh data directory.
slice() {
local out="$WORK/$1" input="$2"; shift 2
mkdir -p "$out"
timeout 300 "$BIN" --datadir "$out/datadir" "$@" --slice 0 --outputdir "$out" --export-3mf out.3mf "$input" \
> "$out/log" 2>&1 || { echo "FAIL: $1: orca-slicer exited $?"; tail -n 40 "$out/log"; exit 1; }
}
slice base "$WORK/cube.stl" \
--load-settings "$PROFILES/machine/Bambu Lab P1S 0.4 nozzle.json;$PROFILES/process/0.20mm Standard @BBL X1C.json" \
--load-filaments "$PROFILES/filament/Bambu PLA Basic @BBL P1S 0.4 nozzle.json"
# The removed keys, with their option defaults from PrintConfig.cpp, and a kept key with a new value.
"$PY" - "$WORK/base/out.3mf" "$WORK/old.3mf" <<'EOF' || exit $?
import json, sys, zipfile
src, dst = sys.argv[1], sys.argv[2]
missing = {"extruder_clearance_dist_to_rod": "40", "sparse_infill_density": "20%"}
with zipfile.ZipFile(src) as zin, zipfile.ZipFile(dst, "w", zipfile.ZIP_DEFLATED) as zout:
for item in zin.infolist():
data = zin.read(item.filename)
if item.filename == "Metadata/project_settings.config":
config = json.loads(data)
for key, default in missing.items():
if config[key] == default:
print("SKIP: %s is %s in the system preset, the option default, so the test cannot tell them apart" % (key, default))
sys.exit(77)
expected = {key: config.pop(key) for key in missing}
expected["wall_loops"] = str(int(config["wall_loops"]) + 1)
config["wall_loops"] = expected["wall_loops"]
data = json.dumps(config, indent=4)
zout.writestr(item, data)
with open(dst + ".expected.json", "w") as f:
json.dump(expected, f)
EOF
slice project "$WORK/old.3mf"
"$PY" - "$WORK/project/out.3mf" "$WORK/old.3mf.expected.json" <<'EOF'
import json, sys, zipfile
with zipfile.ZipFile(sys.argv[1]) as z:
config = json.loads(z.read("Metadata/project_settings.config"))
with open(sys.argv[2]) as f:
expected = json.load(f)
errors = ["%s is %r, want %r" % (key, config.get(key), want) for key, want in expected.items() if config.get(key) != want]
for e in errors:
print("FAIL: " + e)
sys.exit(1 if errors else 0)
EOF
status=$?
[ "$status" -eq 0 ] || { tail -n 40 "$WORK/project/log"; exit 1; }
echo "PASS"
-55
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@@ -747,61 +747,6 @@ TEST_CASE("A region with ironing turned off is never ironed", "[Fill]")
REQUIRE(Layer::choose_ironing_extruder(cfg, spiral_mode, /*is_topmost_layer=*/true) == -1); REQUIRE(Layer::choose_ironing_extruder(cfg, spiral_mode, /*is_topmost_layer=*/true) == -1);
} }
// Ironing path count and total length in mm, over the whole object.
static std::pair<size_t, double> ironing_extent(const Print &print)
{
size_t paths = 0;
double length = 0.;
for (const Layer *layer : print.objects().front()->layers())
for (const LayerRegion *region : layer->regions())
for (const ExtrusionEntity *entity : region->fills.flatten().entities)
if (ironing_role(entity->role())) {
++paths;
length += unscale<double>(entity->length());
}
return {paths, length};
}
TEST_CASE("Ironing spacing below the minimum irons at the minimum spacing", "[Fill]")
{
const std::string pattern = GENERATE("rectilinear", "concentric");
const bool via_filament = GENERATE(false, true);
const double spacing = GENERATE(0., 0.001);
CAPTURE(pattern, via_filament, spacing);
auto ironing_for = [&pattern, via_filament](double spacing) {
DynamicPrintConfig config = DynamicPrintConfig::full_print_config();
config.set_deserialize_strict({{"ironing_type", "top"},
{"ironing_pattern", pattern},
{"layer_height", 0.2}});
// The filament override replaces the process spacing, which stays at a usable value.
if (via_filament)
config.set_deserialize_strict({{"ironing_spacing", 0.1}, {"filament_ironing_spacing", spacing}});
else
config.set_deserialize_strict({{"ironing_spacing", spacing}});
Print print;
Slic3r::Test::init_and_process_print({Slic3r::Test::cube(20)}, print, config);
return ironing_extent(print);
};
const std::pair<size_t, double> clamped = ironing_for(spacing);
const std::pair<size_t, double> minimum = ironing_for(IRONING_SPACING_MIN);
REQUIRE(minimum.first > 0);
CHECK(clamped.first == minimum.first);
CHECK_THAT(clamped.second, Catch::Matchers::WithinRel(minimum.second, 1e-9));
}
TEST_CASE("Concentric fill at zero spacing returns without paths", "[Fill]")
{
std::unique_ptr<Fill> filler(Fill::new_from_type(ipConcentric));
filler->spacing = 0.;
filler->bounding_box = BoundingBox(Point(0, 0), Point::new_scale(10, 10));
FillParams params;
params.density = 1.f;
Surface surface(stTop, ExPolygon({Point(0, 0), Point::new_scale(10, 0), Point::new_scale(10, 10), Point::new_scale(0, 10)}));
CHECK(filler->fill_surface(&surface, params).empty());
}
TEST_CASE("Solid infill direction offsets every layer when no template is set", "[Fill]") TEST_CASE("Solid infill direction offsets every layer when no template is set", "[Fill]")
{ {
auto angles_for = [](int direction) { auto angles_for = [](int direction) {
@@ -5405,6 +5405,35 @@ struct ScopedDataDir
~ScopedDataDir() { set_data_dir(previous); } ~ScopedDataDir() { set_data_dir(previous); }
}; };
// resources_dir() is process-wide too; system preset lookups scan its profiles directory.
struct ScopedResourcesDir
{
std::string previous = resources_dir();
explicit ScopedResourcesDir(const fs::path &dir) { set_resources_dir(dir.string()); }
~ScopedResourcesDir() { set_resources_dir(previous); }
};
// An "Acme" vendor under root whose "Acme Printer" inherits extruder_clearance_dist_to_rod from an
// abstract base, with the printer in a nested sub_path so the name cannot be derived from the file.
void write_acme_printer_vendor(const fs::path &root, double dist_to_rod)
{
const fs::path machine_dir = root / "Acme" / "machine";
fs::create_directories(machine_dir / "nested");
std::ofstream((root / "Acme.json").string())
<< R"({"version":"1.0.0","name":"Acme",)"
<< R"("machine_model_list":[{"name":"Acme One","sub_path":"machine/model.json"}],"machine_list":[)"
<< R"({"name":"fdm_acme_common","sub_path":"machine/base.json"},)"
<< R"({"name":"Acme Printer","sub_path":"machine/nested/printer.json"}]})";
std::ofstream((machine_dir / "model.json").string())
<< R"({"type":"machine_model","name":"Acme One","nozzle_diameter":"0.4"})";
std::ofstream((machine_dir / "base.json").string())
<< R"({"type":"machine","name":"fdm_acme_common","from":"system","instantiation":"false",)"
<< R"("extruder_clearance_dist_to_rod":")" << dist_to_rod << R"("})";
std::ofstream((machine_dir / "nested" / "printer.json").string())
<< R"({"type":"machine","name":"Acme Printer","from":"system","instantiation":"true","inherits":"fdm_acme_common",)"
<< R"("printer_model":"Acme One","printer_variant":"0.4"})";
}
std::string read_file(const fs::path &file) std::string read_file(const fs::path &file)
{ {
std::ifstream in(file.string(), std::ios::binary); std::ifstream in(file.string(), std::ios::binary);
@@ -5482,3 +5511,75 @@ TEST_CASE("Config import confines zip entries, preset names and bundle ids to th
CHECK_FALSE(any_filename_contains(temp_dir.path(), "bundle-escape")); CHECK_FALSE(any_filename_contains(temp_dir.path(), "bundle-escape"));
} }
} }
TEST_CASE("A system preset resolves by name from the bundled profiles", "[Preset][Bundle]")
{
ScopedTemporaryDir temp_dir;
ScopedDataDir data(temp_dir.path() / "data");
ScopedResourcesDir resources(temp_dir.path() / "resources");
write_acme_printer_vendor(temp_dir.path() / "resources" / "profiles", 33.);
PresetBundle bundle;
DynamicPrintConfig config;
std::string error;
REQUIRE(bundle.resolve_system_preset(config, Preset::TYPE_PRINTER, "Acme Printer",
ForwardCompatibilitySubstitutionRule::EnableSilent, error));
CHECK(error.empty());
CHECK_THAT(config.opt_float("extruder_clearance_dist_to_rod"), Catch::Matchers::WithinAbs(33., 1e-6));
}
TEST_CASE("A system preset resolves from the data directory copy of its vendor", "[Preset][Bundle]")
{
ScopedTemporaryDir temp_dir;
ScopedDataDir data(temp_dir.path() / "data");
ScopedResourcesDir resources(temp_dir.path() / "resources");
write_acme_printer_vendor(temp_dir.path() / "resources" / "profiles", 33.);
write_acme_printer_vendor(temp_dir.path() / "data" / PRESET_SYSTEM_DIR, 35.);
PresetBundle bundle;
DynamicPrintConfig config;
std::string error;
REQUIRE(bundle.resolve_system_preset(config, Preset::TYPE_PRINTER, "Acme Printer",
ForwardCompatibilitySubstitutionRule::EnableSilent, error));
CHECK_THAT(config.opt_float("extruder_clearance_dist_to_rod"), Catch::Matchers::WithinAbs(35., 1e-6));
}
TEST_CASE("A system preset resolves from a vendor shipped as its preset cache alone", "[Preset][Bundle]")
{
ScopedTemporaryDir temp_dir;
ScopedDataDir data(temp_dir.path() / "data");
ScopedResourcesDir resources(temp_dir.path() / "resources");
const fs::path profiles = temp_dir.path() / "resources" / "profiles";
write_acme_printer_vendor(profiles, 33.);
PresetBundle writer;
writer.set_generate_vendor_caches(true);
writer.load_vendor_configs_from_json(profiles.string(), "Acme", PresetBundle::LoadSystem,
ForwardCompatibilitySubstitutionRule::EnableSilent);
REQUIRE(fs::exists(profiles / "Acme.opc"));
// Release builds ship the cache and drop the profile JSONs, manifest included.
fs::remove(profiles / "Acme.json");
fs::remove_all(profiles / "Acme");
PresetBundle bundle;
DynamicPrintConfig config;
std::string error;
REQUIRE(bundle.resolve_system_preset(config, Preset::TYPE_PRINTER, "Acme Printer",
ForwardCompatibilitySubstitutionRule::EnableSilent, error));
CHECK_THAT(config.opt_float("extruder_clearance_dist_to_rod"), Catch::Matchers::WithinAbs(33., 1e-6));
}
TEST_CASE("A system preset no vendor lists is not resolved", "[Preset][Bundle]")
{
ScopedTemporaryDir temp_dir;
ScopedDataDir data(temp_dir.path() / "data");
ScopedResourcesDir resources(temp_dir.path() / "resources");
write_acme_printer_vendor(temp_dir.path() / "resources" / "profiles", 33.);
PresetBundle bundle;
DynamicPrintConfig config;
std::string error;
CHECK_FALSE(bundle.resolve_system_preset(config, Preset::TYPE_PRINTER, "Unknown Printer",
ForwardCompatibilitySubstitutionRule::EnableSilent, error));
CHECK_FALSE(error.empty());
}