mirror of
https://github.com/OrcaSlicer/OrcaSlicer.git
synced 2026-09-28 11:21:30 +00:00
Compare commits
| Author | SHA1 | Date | |
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377034104c | ||
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468fa3be86 | ||
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824b092a6e |
+6
-52
@@ -2116,14 +2116,9 @@ int CLI::run(int argc, char **argv)
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// One resolver for the whole run, so presets from the same vendor tree share its load.
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std::unique_ptr<PresetBundle> system_preset_resolver;
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auto ensure_system_preset_resolver = [&system_preset_resolver]() -> PresetBundle & {
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if (!system_preset_resolver)
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system_preset_resolver = std::make_unique<PresetBundle>();
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return *system_preset_resolver;
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};
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auto resolve_preset = [&ensure_cli_preset_bundle, &ensure_system_preset_resolver](const std::string &file, DynamicPrintConfig &config,
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std::string &config_type, const std::string &config_from,
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bool probe_type, std::string &error) {
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auto resolve_preset = [&ensure_cli_preset_bundle, &system_preset_resolver](const std::string &file, DynamicPrintConfig &config,
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std::string &config_type, const std::string &config_from,
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bool probe_type, std::string &error) {
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const auto *inherits = config.option<ConfigOptionString>(BBL_JSON_KEY_INHERITS);
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if (!probe_type && (inherits == nullptr || inherits->value.empty()))
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return true;
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@@ -2131,7 +2126,9 @@ int CLI::run(int argc, char **argv)
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PresetBundle *bundle = nullptr;
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bool allow_source_manifest = false;
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if (config_from == "system") {
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bundle = &ensure_system_preset_resolver();
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if (!system_preset_resolver)
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system_preset_resolver = std::make_unique<PresetBundle>();
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bundle = system_preset_resolver.get();
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allow_source_manifest = true;
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} else {
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bundle = ensure_cli_preset_bundle(error);
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@@ -3123,49 +3120,6 @@ int CLI::run(int argc, char **argv)
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return 0;
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};
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// A project saved before a printer or process option existed has no value for it. The GUI takes such
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// keys from the project's system preset (load_external_preset refreshes every key the project did not
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// override), so fill them from there too instead of leaving them to the option default.
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// The extruder variant keys describe the project's variant layout and are kept as they are, so an
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// older project is not left with a variant list from one layout and ids from another.
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auto fill_missing_project_keys = [this, &ensure_system_preset_resolver](const std::string &system_name, Preset::Type type) {
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if (system_name.empty())
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return;
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static const std::set<std::string> skip_keys = {
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"inherits", "compatible_printers", "compatible_prints", "compatible_printers_condition", "compatible_prints_condition",
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"print_settings_id", "filament_settings_id", "printer_settings_id",
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"print_host", "print_host_webui", "printhost_apikey", "printhost_cafile", "printhost_user", "printhost_password", "printhost_port",
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"printer_extruder_id", "printer_extruder_variant", "print_extruder_id", "print_extruder_variant", "extruder_variant_list"};
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const std::vector<std::string> &options = type == Preset::TYPE_PRINTER ? Preset::printer_options() : Preset::print_options();
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// Keys the legacy handler drops on load can never be in a project, so they do not count as missing.
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auto dropped_on_load = [](std::string key) {
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std::string value;
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PrintConfigDef::handle_legacy(key, value);
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return key.empty();
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};
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std::vector<std::string> missing;
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for (const std::string &key : options)
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if (m_print_config.option(key) == nullptr && skip_keys.count(key) == 0 && !dropped_on_load(key))
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missing.push_back(key);
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if (missing.empty())
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return;
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DynamicPrintConfig system_config;
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std::string error;
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if (!ensure_system_preset_resolver().resolve_system_preset(system_config, type, system_name, config_substitution_rule, error)) {
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BOOST_LOG_TRIVIAL(warning) << boost::format("CLI: system preset '%1%' not resolved (%2%); keys missing from the project keep their defaults") % system_name % error;
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return;
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}
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for (const std::string &key : missing)
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if (const ConfigOption *opt = system_config.option(key)) {
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m_print_config.set_key_value(key, opt->clone());
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BOOST_LOG_TRIVIAL(info) << boost::format("CLI: %1% missing from the project, taken from '%2%': %3%") % key % system_name % opt->serialize();
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}
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};
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if (new_printer_name.empty())
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fill_missing_project_keys(current_printer_system_name, Preset::TYPE_PRINTER);
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if (new_process_name.empty())
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fill_missing_project_keys(current_process_system_name, Preset::TYPE_PRINT);
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std::vector<std::string>& different_settings = m_print_config.option<ConfigOptionStrings>("different_settings_to_system", true)->values;
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std::vector<std::string>& inherits_group = m_print_config.option<ConfigOptionStrings>("inherits_group", true)->values;
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inherits_group.resize(filament_count + 2, std::string());
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@@ -48,24 +48,37 @@ bool load_drc(const char *path, TriangleMesh *meshptr)
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indexed_triangle_set its;
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const PointAttribute *const positions = dracoMesh.GetNamedAttribute(GeometryAttribute::POSITION);
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if (positions == nullptr) {
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BOOST_LOG_TRIVIAL(error) << "load_drc: the mesh has no POSITION attribute";
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return false;
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}
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size_t num_vertices = positions->size();
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its.vertices.reserve(num_vertices);
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for (AttributeValueIndex i(0); i < num_vertices; ++ i) {
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float pos[3];
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positions->ConvertValue<float>(i, 3, pos);
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if (!positions->ConvertValue<float>(i, 3, pos)) {
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BOOST_LOG_TRIVIAL(error) << "load_drc: invalid vertex position";
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return false;
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}
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its.vertices.emplace_back(pos[0], pos[1], pos[2]);
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}
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// The Draco decoder does not check face indices against the point count.
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const uint32_t num_points = dracoMesh.num_points();
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size_t num_faces = dracoMesh.num_faces();
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its.indices.reserve(num_faces);
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for (FaceIndex i(0); i < num_faces; ++ i) {
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Mesh::Face face = dracoMesh.face(i);
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its.indices.emplace_back(
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positions->mapped_index(face[0]).value(),
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positions->mapped_index(face[1]).value(),
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positions->mapped_index(face[2]).value()
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);
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const Mesh::Face &face = dracoMesh.face(i);
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stl_triangle_vertex_indices facet;
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for (int k = 0; k < 3; ++ k) {
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const size_t vertex_idx = face[k].value() < num_points ? positions->mapped_index(face[k]).value() : num_vertices;
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if (vertex_idx >= num_vertices) {
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BOOST_LOG_TRIVIAL(error) << "load_drc: invalid vertex index";
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return false;
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}
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facet[k] = static_cast<int>(vertex_idx);
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}
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its.indices.emplace_back(facet);
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}
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*meshptr = TriangleMesh(std::move(its));
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@@ -166,10 +166,15 @@ bool load_obj(const char *path, TriangleMesh *meshptr, ObjInfo& obj_info, std::s
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obj_info.uv_map_pngs[face_index] = png_name;
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}
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if (data.textureCoordinates.size() > 0) {
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Vec2f uv0(data.textureCoordinates[uvs[0] * 2], data.textureCoordinates[uvs[0] * 2 + 1]);
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Vec2f uv1(data.textureCoordinates[uvs[1] * 2], data.textureCoordinates[uvs[1] * 2 + 1]);
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Vec2f uv2(data.textureCoordinates[uvs[2] * 2], data.textureCoordinates[uvs[2] * 2 + 1]);
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std::array<Vec2f, 3> uv_array{uv0, uv1, uv2};
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// A face vertex may omit vt or reference a missing one. Fall back to (0, 0) rather than
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// skipping the face, so obj_info.uvs stays aligned with the face indices.
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const int uv_count = static_cast<int>(data.textureCoordinates.size() / OBJ_TEXCOORD_LENGTH);
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auto uv_at = [&data, uv_count](int idx) -> Vec2f {
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if (idx < 0 || idx >= uv_count)
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return Vec2f::Zero();
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return Vec2f(data.textureCoordinates[idx * OBJ_TEXCOORD_LENGTH], data.textureCoordinates[idx * OBJ_TEXCOORD_LENGTH + 1]);
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};
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std::array<Vec2f, 3> uv_array{uv_at(uvs[0]), uv_at(uvs[1]), uv_at(uvs[2])};
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obj_info.uvs.emplace_back(uv_array);
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}
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obj_info.face_colors.emplace_back(face_color);
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@@ -51,19 +51,18 @@ static bool obj_parseline(const char *line, ObjData &data)
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line = endptr;
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EATWS();
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}
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/*double w = 0;
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// The optional w is accepted but not stored: only u and v are used.
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if (*line != 0) {
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w = strtod(line, &endptr);
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strtod(line, &endptr);
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if (endptr == 0 || (*endptr != ' ' && *endptr != '\t' && *endptr != 0))
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return false;
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line = endptr;
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EATWS();
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}*/
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}
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if (*line != 0)
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return false;
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data.textureCoordinates.push_back((float)u);
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data.textureCoordinates.push_back((float)v);
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//data.textureCoordinates.push_back((float)w);
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break;
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}
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case 'n':
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@@ -245,7 +244,7 @@ static bool obj_parseline(const char *line, ObjData &data)
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else
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-- vertex.normalIdx;
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if (vertex.textureCoordIdx < 0)
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vertex.textureCoordIdx += (int)data.textureCoordinates.size() / 3;
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vertex.textureCoordIdx += (int)data.textureCoordinates.size() / OBJ_TEXCOORD_LENGTH;
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else
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-- vertex.textureCoordIdx;
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data.vertices.push_back(vertex);
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@@ -92,6 +92,7 @@ inline bool operator==(const ObjSmoothingGroup &v1, const ObjSmoothingGroup &v2)
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}
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#define OBJ_VERTEX_COLOR_ALPHA 6
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#define OBJ_VERTEX_LENGTH 7 // x, y, z, color_x,color_y,color_z,color_w
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#define OBJ_TEXCOORD_LENGTH 2 // u, v
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#define ONE_FACE_SIZE 4//ONE_FACE format: f 8/4/6 7/3/6 6/2/6 -1/-1/-1
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struct ObjData {
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// Version of the data structure for load / store in the private binary format.
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@@ -100,7 +101,7 @@ struct ObjData {
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// x, y, z, color_x,color_y,color_z,color_w
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std::vector<float> coordinates;
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bool has_vertex_color{false};
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// u, v, w
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// u, v
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std::vector<float> textureCoordinates;
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// x, y, z
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std::vector<float> normals;
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@@ -575,20 +575,18 @@ bool PresetBundle::resolve_preset_config(DynamicPrintConfig &config, Preset::Typ
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const PresetBundle *PresetBundle::load_source_vendor(const boost::filesystem::path &root_dir,
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const std::string &vendor_id,
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ForwardCompatibilitySubstitutionRule compatibility_rule,
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std::string &error, bool allow_cache)
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std::string &error)
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{
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auto key = std::make_tuple(root_dir.string(), vendor_id, compatibility_rule, allow_cache);
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auto key = std::make_tuple(root_dir.string(), vendor_id, compatibility_rule);
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if (auto it = m_source_vendor_bundles.find(key); it != m_source_vendor_bundles.end())
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return it->second.get();
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// The library loads with no base of its own, so the tree a vendor inherits from
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// is the same one that resolves the library's own presets.
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const std::string library_file = std::string(ORCA_FILAMENT_LIBRARY);
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const PresetBundle *library = nullptr;
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const PresetBundle *library = nullptr;
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if (vendor_id != ORCA_FILAMENT_LIBRARY &&
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(boost::filesystem::is_regular_file(root_dir / (library_file + ".json")) ||
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(allow_cache && boost::filesystem::is_regular_file(root_dir / (library_file + ".opc"))))) {
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library = load_source_vendor(root_dir, ORCA_FILAMENT_LIBRARY, compatibility_rule, error, allow_cache);
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boost::filesystem::is_regular_file(root_dir / (std::string(ORCA_FILAMENT_LIBRARY) + ".json"))) {
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library = load_source_vendor(root_dir, ORCA_FILAMENT_LIBRARY, compatibility_rule, error);
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if (library == nullptr) {
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error = "OrcaFilamentLibrary contains invalid presets";
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return nullptr;
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@@ -597,7 +595,7 @@ const PresetBundle *PresetBundle::load_source_vendor(const boost::filesystem::pa
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auto bundle = std::make_unique<PresetBundle>();
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bundle->m_preserve_vendor_source_paths = true;
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bundle->load_vendor_configs_from_json(root_dir.string(), vendor_id, LoadSystem, compatibility_rule, library, allow_cache);
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bundle->load_vendor_configs_from_json(root_dir.string(), vendor_id, LoadSystem, compatibility_rule, library, false);
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if (bundle->error_count() != 0) {
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error = "Vendor bundle contains invalid presets";
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return nullptr;
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@@ -640,43 +638,6 @@ bool PresetBundle::resolve_preset_config_type(DynamicPrintConfig &config, Preset
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return true;
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}
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bool PresetBundle::resolve_system_preset(DynamicPrintConfig &config, Preset::Type type, const std::string &name,
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ForwardCompatibilitySubstitutionRule compatibility_rule, std::string &error)
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{
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const std::string vendor_id = find_preset_vendor(name, type);
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if (vendor_id.empty()) {
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error = "No vendor lists the preset";
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return false;
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}
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// Release builds ship a vendor as its preset cache alone, without the profile JSONs.
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auto installed = [&vendor_id](const fs::path &root) {
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return fs::is_regular_file(root / (vendor_id + ".json")) || fs::is_regular_file(root / (vendor_id + ".opc"));
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};
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fs::path root_dir = fs::path(data_dir()) / PRESET_SYSTEM_DIR;
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if (!installed(root_dir))
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root_dir = fs::path(resources_dir()) / PRESET_PROFILES_DIR;
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const bool cache_only = !fs::is_regular_file(root_dir / (vendor_id + ".json"));
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try {
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const PresetBundle *vendor = load_source_vendor(root_dir, vendor_id, compatibility_rule, error, cache_only);
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if (vendor == nullptr)
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return false;
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const PresetCollection &collection = type == Preset::TYPE_PRINTER ? vendor->printers :
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type == Preset::TYPE_PRINT ? vendor->prints : vendor->filaments;
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const Preset *preset = collection.find_preset(name, false);
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if (preset == nullptr) {
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error = "Preset was not found in its vendor bundle";
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return false;
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}
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config = preset->config;
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} catch (const std::exception &ex) {
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error = ex.what();
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return false;
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}
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error.clear();
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return true;
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}
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PresetBundle::PresetBundle(const PresetBundle &rhs)
|
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{
|
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*this = rhs;
|
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@@ -273,10 +273,6 @@ public:
|
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const std::string &source_file,
|
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ForwardCompatibilitySubstitutionRule compatibility_rule,
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std::string &error, bool allow_source_manifest = true);
|
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// Resolve a system preset by name. The vendor tree is read from data_dir()/system when installed
|
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// there, as the GUI reads it, and from the bundled profiles otherwise.
|
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bool resolve_system_preset(DynamicPrintConfig &config, Preset::Type type, const std::string &name,
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ForwardCompatibilitySubstitutionRule compatibility_rule, std::string &error);
|
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|
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// Load selections (current print, current filaments, current printer) from config.ini
|
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// This is done just once on application start up.
|
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@@ -667,14 +663,13 @@ private:
|
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// 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
|
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// filament library is one such tree, shared by every vendor under its root.
|
||||
// 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>>
|
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std::map<std::tuple<std::string, std::string, ForwardCompatibilitySubstitutionRule>, std::unique_ptr<PresetBundle>>
|
||||
m_source_vendor_bundles;
|
||||
|
||||
const PresetBundle *load_source_vendor(const boost::filesystem::path &root_dir,
|
||||
const std::string &vendor_id,
|
||||
ForwardCompatibilitySubstitutionRule compatibility_rule,
|
||||
std::string &error, bool allow_cache = false);
|
||||
std::string &error);
|
||||
|
||||
// Orca: validation only - flag any printer with two or more compatible
|
||||
// filament presets sharing one filament_id (ambiguous AMS subtype match).
|
||||
|
||||
@@ -34,10 +34,6 @@ static const char* Segments_Vertex_Shader =
|
||||
// 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.
|
||||
"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"
|
||||
"out vec3 color;\n"
|
||||
"// ORCA: realistic view - the light the shadow map is able to block, kept apart from the\n"
|
||||
@@ -63,8 +59,7 @@ static const char* Segments_Vertex_Shader =
|
||||
" return top_diffuse + front_diffuse + top_specular;\n"
|
||||
"}\n"
|
||||
"void main() {\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_a = int(texelFetch(segment_index_tex, gl_InstanceID).r);\n"
|
||||
" int id_b = id_a + 1;\n"
|
||||
" vec3 pos_a = texelFetch(position_tex, id_a).xyz;\n"
|
||||
" vec3 pos_b = texelFetch(position_tex, id_b).xyz;\n"
|
||||
|
||||
@@ -763,8 +763,6 @@ 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_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_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
|
||||
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");
|
||||
@@ -2092,15 +2090,6 @@ 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_projection_matrix_id, 1, GL_FALSE, projection_matrix.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
|
||||
// with the lookup off.
|
||||
glsafe(glUniform1i(m_uni_segments_shadow_map_id, m_shadow_map_texture_unit));
|
||||
|
||||
@@ -362,8 +362,6 @@ private:
|
||||
int m_uni_segments_height_width_angle_tex_id{ -1 };
|
||||
int m_uni_segments_colors_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_light_vp_id{ -1 };
|
||||
int m_uni_segments_shadow_intensity_id{ -1 };
|
||||
|
||||
@@ -15,11 +15,3 @@ set_tests_properties(cli_strict_mode PROPERTIES
|
||||
LABELS "CLI;RequiresApp"
|
||||
SKIP_RETURN_CODE 77
|
||||
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}
|
||||
${CMAKE_SOURCE_DIR}/resources/profiles/BBL)
|
||||
set_tests_properties(cli_project_missing_keys PROPERTIES
|
||||
LABELS "CLI;RequiresApp"
|
||||
SKIP_RETURN_CODE 77
|
||||
TIMEOUT 900)
|
||||
|
||||
@@ -1,89 +0,0 @@
|
||||
#!/usr/bin/env bash
|
||||
# End-to-end check that the CLI fills settings missing from a project from the project's system presets.
|
||||
#
|
||||
# A project saved before an option existed has no value for it. The GUI takes such keys from the
|
||||
# project's system printer and process presets, not from the option defaults, and the CLI must slice
|
||||
# the project with the same values. A project is exported from the shipped Bambu Lab P1S presets, one
|
||||
# printer key and one process key are removed from it, one kept key is changed, and it is sliced again.
|
||||
#
|
||||
# usage: test_cli_project_missing_keys.sh <orca-slicer binary> <python3> <resources/profiles/BBL>
|
||||
set -u
|
||||
|
||||
BIN="${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"
|
||||
@@ -14,6 +14,7 @@ add_executable(${_TEST_NAME}_tests
|
||||
test_clipper_utils.cpp
|
||||
test_config.cpp
|
||||
test_config_variant_expansion.cpp
|
||||
test_drc.cpp
|
||||
test_toolordering_nozzle_group.cpp
|
||||
test_preset_bundle_loading.cpp
|
||||
test_preset_setting_id.cpp
|
||||
@@ -32,6 +33,7 @@ add_executable(${_TEST_NAME}_tests
|
||||
test_mutable_priority_queue.cpp
|
||||
test_minimum_spanning_tree.cpp
|
||||
test_nozzle_volume_type.cpp
|
||||
test_obj.cpp
|
||||
test_step.cpp
|
||||
test_stl.cpp
|
||||
test_triangle_selector.cpp
|
||||
@@ -67,7 +69,9 @@ if (TARGET OpenVDB::openvdb)
|
||||
target_sources(${_TEST_NAME}_tests PRIVATE test_hollowing.cpp)
|
||||
endif()
|
||||
|
||||
target_link_libraries(${_TEST_NAME}_tests test_common libslic3r Catch2::Catch2WithMain)
|
||||
# libslic3r links Draco privately; test_drc.cpp encodes its own fixtures.
|
||||
find_package(Draco REQUIRED)
|
||||
target_link_libraries(${_TEST_NAME}_tests test_common libslic3r draco::draco Catch2::Catch2WithMain)
|
||||
target_include_directories(${_TEST_NAME}_tests PRIVATE ${CMAKE_SOURCE_DIR}/src)
|
||||
set_property(TARGET ${_TEST_NAME}_tests PROPERTY FOLDER "tests")
|
||||
|
||||
|
||||
@@ -0,0 +1,71 @@
|
||||
#include <catch2/catch_all.hpp>
|
||||
|
||||
#include "libslic3r/Format/DRC.hpp"
|
||||
#include "libslic3r/TriangleMesh.hpp"
|
||||
|
||||
#include <boost/nowide/fstream.hpp>
|
||||
|
||||
#include <draco/compression/encode.h>
|
||||
#include <draco/mesh/mesh.h>
|
||||
|
||||
#include "test_utils.hpp"
|
||||
|
||||
using namespace Slic3r;
|
||||
|
||||
namespace {
|
||||
|
||||
// Encodes one triangle whose vertices carry a single attribute of the given type.
|
||||
// The decoder accepts both a mesh without POSITION and a face index past the point count.
|
||||
void write_drc_triangle(const std::string &path, draco::GeometryAttribute::Type attribute_type, uint32_t second_point)
|
||||
{
|
||||
draco::Mesh mesh;
|
||||
mesh.set_num_points(3);
|
||||
draco::GeometryAttribute attribute;
|
||||
attribute.Init(attribute_type, nullptr, 3, draco::DT_FLOAT32, false, sizeof(float) * 3, 0);
|
||||
const int attribute_id = mesh.AddAttribute(attribute, true, 3);
|
||||
const float points[3][3] = {{0, 0, 0}, {1, 0, 0}, {0, 1, 0}};
|
||||
for (int i = 0; i < 3; ++i)
|
||||
mesh.attribute(attribute_id)->SetAttributeValue(draco::AttributeValueIndex(i), points[i]);
|
||||
draco::Mesh::Face face;
|
||||
face[0] = draco::PointIndex(0);
|
||||
face[1] = draco::PointIndex(second_point);
|
||||
face[2] = draco::PointIndex(2);
|
||||
mesh.AddFace(face);
|
||||
|
||||
draco::Encoder encoder;
|
||||
encoder.SetEncodingMethod(draco::MESH_SEQUENTIAL_ENCODING);
|
||||
draco::EncoderBuffer buffer;
|
||||
REQUIRE(encoder.EncodeMeshToBuffer(mesh, &buffer).ok());
|
||||
boost::nowide::ofstream out(path, std::ios::binary);
|
||||
out.write(buffer.data(), static_cast<std::streamsize>(buffer.size()));
|
||||
}
|
||||
|
||||
} // namespace
|
||||
|
||||
TEST_CASE("A Draco triangle with positions loads", "[DRC]")
|
||||
{
|
||||
ScopedTemporaryFile drc(".drc");
|
||||
write_drc_triangle(drc.string(), draco::GeometryAttribute::POSITION, 1);
|
||||
|
||||
TriangleMesh mesh;
|
||||
REQUIRE(load_drc(drc.string().c_str(), &mesh));
|
||||
CHECK(mesh.facets_count() == 1);
|
||||
}
|
||||
|
||||
TEST_CASE("A Draco mesh without a POSITION attribute fails to load", "[DRC][Regression]")
|
||||
{
|
||||
ScopedTemporaryFile drc(".drc");
|
||||
write_drc_triangle(drc.string(), draco::GeometryAttribute::GENERIC, 1);
|
||||
|
||||
TriangleMesh mesh;
|
||||
CHECK_FALSE(load_drc(drc.string().c_str(), &mesh));
|
||||
}
|
||||
|
||||
TEST_CASE("A Draco face referencing a missing point fails to load", "[DRC][Regression]")
|
||||
{
|
||||
ScopedTemporaryFile drc(".drc");
|
||||
write_drc_triangle(drc.string(), draco::GeometryAttribute::POSITION, 200);
|
||||
|
||||
TriangleMesh mesh;
|
||||
CHECK_FALSE(load_drc(drc.string().c_str(), &mesh));
|
||||
}
|
||||
@@ -0,0 +1,122 @@
|
||||
#include <catch2/catch_all.hpp>
|
||||
|
||||
#include "libslic3r/TriangleMesh.hpp"
|
||||
#include "libslic3r/Format/OBJ.hpp"
|
||||
|
||||
#include <boost/nowide/fstream.hpp>
|
||||
|
||||
#include "test_utils.hpp"
|
||||
|
||||
using namespace Slic3r;
|
||||
using Catch::Matchers::WithinAbs;
|
||||
|
||||
namespace {
|
||||
|
||||
struct LoadedObj
|
||||
{
|
||||
bool ok{false};
|
||||
TriangleMesh mesh;
|
||||
ObjInfo info;
|
||||
};
|
||||
|
||||
// A tetrahedron with a material and two texture coordinates, (0.25, 0.5) and (0.75, 1).
|
||||
// Only the first face and the vt lines are varied; the other three faces reference vt 1.
|
||||
LoadedObj load_textured_tetrahedron(const std::string &first_face, const std::string &vts = "vt 0.25 0.5\nvt 0.75 1\n")
|
||||
{
|
||||
ScopedTemporaryFile obj(".obj");
|
||||
ScopedTemporaryFile mtl(".mtl");
|
||||
{
|
||||
boost::nowide::ofstream out(mtl.string());
|
||||
out << "newmtl a\nKd 1 0 0\n";
|
||||
}
|
||||
{
|
||||
boost::nowide::ofstream out(obj.string());
|
||||
out << "mtllib " << mtl.path().filename().string() << "\n"
|
||||
<< "v 0 0 0\nv 10 0 0\nv 0 10 0\nv 0 0 10\n"
|
||||
<< vts
|
||||
<< "usemtl a\n"
|
||||
<< first_face << "\n"
|
||||
<< "f 1/1 2/1 4/1\nf 1/1 4/1 3/1\nf 2/1 3/1 4/1\n";
|
||||
}
|
||||
LoadedObj loaded;
|
||||
std::string message;
|
||||
loaded.ok = load_obj(obj.string().c_str(), &loaded.mesh, loaded.info, message);
|
||||
return loaded;
|
||||
}
|
||||
|
||||
} // namespace
|
||||
|
||||
TEST_CASE("An out-of-range texture index falls back to a zero UV and keeps the geometry", "[OBJ][Regression]")
|
||||
{
|
||||
const LoadedObj loaded = load_textured_tetrahedron("f 1/1000000000 3/1 2/1");
|
||||
|
||||
REQUIRE(loaded.ok);
|
||||
CHECK(loaded.mesh.facets_count() == 4);
|
||||
REQUIRE(loaded.info.uvs.size() == 4);
|
||||
const std::array<Vec2f, 3> &uv = loaded.info.uvs.front();
|
||||
CHECK_THAT(uv[0].x(), WithinAbs(0., 1e-6));
|
||||
CHECK_THAT(uv[0].y(), WithinAbs(0., 1e-6));
|
||||
CHECK_THAT(uv[1].x(), WithinAbs(0.25, 1e-6));
|
||||
CHECK_THAT(uv[1].y(), WithinAbs(0.5, 1e-6));
|
||||
}
|
||||
|
||||
TEST_CASE("A face without texture indices loads among faces that have them", "[OBJ][Regression]")
|
||||
{
|
||||
const LoadedObj loaded = load_textured_tetrahedron("f 1 3 2");
|
||||
|
||||
REQUIRE(loaded.ok);
|
||||
CHECK(loaded.mesh.facets_count() == 4);
|
||||
// One UV entry per face, so later faces keep their own coordinates.
|
||||
REQUIRE(loaded.info.uvs.size() == 4);
|
||||
for (const Vec2f &uv : loaded.info.uvs.front()) {
|
||||
CHECK_THAT(uv.x(), WithinAbs(0., 1e-6));
|
||||
CHECK_THAT(uv.y(), WithinAbs(0., 1e-6));
|
||||
}
|
||||
CHECK_THAT(loaded.info.uvs[1][0].x(), WithinAbs(0.25, 1e-6));
|
||||
CHECK_THAT(loaded.info.uvs[1][0].y(), WithinAbs(0.5, 1e-6));
|
||||
}
|
||||
|
||||
TEST_CASE("A negative texture index counts back from the last texture coordinate", "[OBJ]")
|
||||
{
|
||||
// -1 is the most recent vt (0.75, 1), -2 the one before it (0.25, 0.5).
|
||||
const LoadedObj loaded = load_textured_tetrahedron("f 1/-2 3/-1 2/-1");
|
||||
|
||||
REQUIRE(loaded.ok);
|
||||
CHECK(loaded.mesh.facets_count() == 4);
|
||||
REQUIRE(loaded.info.uvs.size() == 4);
|
||||
const std::array<Vec2f, 3> &uv = loaded.info.uvs.front();
|
||||
CHECK_THAT(uv[0].x(), WithinAbs(0.25, 1e-6));
|
||||
CHECK_THAT(uv[0].y(), WithinAbs(0.5, 1e-6));
|
||||
CHECK_THAT(uv[1].x(), WithinAbs(0.75, 1e-6));
|
||||
CHECK_THAT(uv[1].y(), WithinAbs(1., 1e-6));
|
||||
}
|
||||
|
||||
TEST_CASE("Texture coordinates with a w component are kept", "[OBJ][Regression]")
|
||||
{
|
||||
const LoadedObj loaded = load_textured_tetrahedron("f 1/1 3/2 2/2", "vt 0.25 0.5 0\nvt 0.75 1 0\n");
|
||||
|
||||
REQUIRE(loaded.ok);
|
||||
CHECK(loaded.mesh.facets_count() == 4);
|
||||
REQUIRE(loaded.info.uvs.size() == 4);
|
||||
const std::array<Vec2f, 3> &uv = loaded.info.uvs.front();
|
||||
CHECK_THAT(uv[0].x(), WithinAbs(0.25, 1e-6));
|
||||
CHECK_THAT(uv[0].y(), WithinAbs(0.5, 1e-6));
|
||||
CHECK_THAT(uv[1].x(), WithinAbs(0.75, 1e-6));
|
||||
CHECK_THAT(uv[1].y(), WithinAbs(1., 1e-6));
|
||||
}
|
||||
|
||||
TEST_CASE("A texture coordinate with w does not shift the indices of the ones after it", "[OBJ][Regression]")
|
||||
{
|
||||
// The w on the first vt used to drop that line, so vt 2 resolved to the third coordinate.
|
||||
const LoadedObj loaded = load_textured_tetrahedron("f 1/2 3/3 2/-1", "vt 0.1 0.2 0\nvt 0.25 0.5\nvt 0.75 1\n");
|
||||
|
||||
REQUIRE(loaded.ok);
|
||||
REQUIRE(loaded.info.uvs.size() == 4);
|
||||
const std::array<Vec2f, 3> &uv = loaded.info.uvs.front();
|
||||
CHECK_THAT(uv[0].x(), WithinAbs(0.25, 1e-6));
|
||||
CHECK_THAT(uv[0].y(), WithinAbs(0.5, 1e-6));
|
||||
CHECK_THAT(uv[1].x(), WithinAbs(0.75, 1e-6));
|
||||
CHECK_THAT(uv[1].y(), WithinAbs(1., 1e-6));
|
||||
CHECK_THAT(uv[2].x(), WithinAbs(0.75, 1e-6));
|
||||
CHECK_THAT(uv[2].y(), WithinAbs(1., 1e-6));
|
||||
}
|
||||
@@ -5405,35 +5405,6 @@ struct ScopedDataDir
|
||||
~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::ifstream in(file.string(), std::ios::binary);
|
||||
@@ -5511,75 +5482,3 @@ TEST_CASE("Config import confines zip entries, preset names and bundle ids to th
|
||||
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());
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user