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* Ignore Clipper, libpng, mcut and Boost.Polygon Internals in clang-tidy Each only works through a wrapper or umbrella header: libslic3r/clipper.hpp or clipper_z.hpp configure Clipper before including it, png.h pulls in libpng's config headers, and Boost.Polygon's headers only compile through polygon.hpp or voronoi.hpp. * Ignore minilzo's Config Headers in clang-tidy lzoconf.h and lzodefs.h are internal to minilzo.h, which is what the code includes. * Add Missing Includes Across the Remaining Sources and Tests Covers src/slic3r/Utils, src/slic3r/plugin, src/slic3r/Config, src/libvgcode, src/dev-utils, src/OrcaSlicer.cpp and tests/, the directories left after src/slic3r/GUI and src/libslic3r. Generated with clang-tidy misc-include-cleaner. libvgcode's own headers are included by relative path as in the rest of that library, and Catch2 and pybind11 with angle brackets as elsewhere in the repo. * Make the GUI and Test Headers Compile on Their Own Each now includes, or forward-declares, what it uses instead of relying on what its includers happened to include first. Headers that only compile on one platform, or that nothing built includes, are left alone. * Keep Windows and nanosvg Setup Ahead of the Added Includes OrcaSlicer.cpp and several tests set _WIN32_WINNT, WIN32_LEAN_AND_MEAN or NOMINMAX before including Windows.h, and the profile validator defines NANOSVG_IMPLEMENTATION before any libslic3r header. The added includes had landed above those blocks, which broke the Windows build. * Add the GUI Includes the First Pass Missed Covers headers that only became editable once they compiled on their own, and wx symbols whose suggested header changed as the clang-tidy ignore list grew after the src/slic3r/GUI pass. * Keep the Added Test Includes Below the NOMINMAX Guard test_marchingsquares.cpp and test_texture_displacement.cpp had includes inside #ifndef NOMINMAX, which the tests inherit as defined on Windows from libslic3r, so those were skipped there. .clang-tidy also ignores the MSVC STL and UCRT internals, Boost.Multiprecision's fwd.hpp and CPython's Windows include directory, as in #16068.
154 lines
5.3 KiB
C++
154 lines
5.3 KiB
C++
#ifndef SLIC3R_HPP
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#define SLIC3R_HPP
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#include <map>
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#include "libslic3r/BoundingBox.hpp"
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#include "libslic3r/PrintConfig.hpp"
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#include "libslic3r/Format/bbs_3mf.hpp"
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#include "libslic3r/GCode/ThumbnailData.hpp"
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#include <set>
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#include <string>
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#include <vector>
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#include "libslic3r/Config.hpp"
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#include "libslic3r/Model.hpp"
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namespace Slic3r {
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namespace IO {
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enum ExportFormat : int {
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AMF,
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OBJ,
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STL,
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// SVG,
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TMF,
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Gcode
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};
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}
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#define JSON_ASSEMPLE_PLATES "plates"
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#define JSON_ASSEMPLE_PLATE_PARAMS "plate_params"
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#define JSON_ASSEMPLE_PLATE_NAME "plate_name"
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#define JSON_ASSEMPLE_PLATE_NEED_ARRANGE "need_arrange"
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#define JSON_ASSEMPLE_OBJECTS "objects"
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#define JSON_ASSEMPLE_OBJECT_PATH "path"
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#define JSON_ASSEMPLE_OBJECT_COUNT "count"
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#define JSON_ASSEMPLE_OBJECT_FILAMENTS "filaments"
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#define JSON_ASSEMPLE_OBJECT_POS_X "pos_x"
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#define JSON_ASSEMPLE_OBJECT_POS_Y "pos_y"
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#define JSON_ASSEMPLE_OBJECT_POS_Z "pos_z"
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#define JSON_ASSEMPLE_OBJECT_ASSEMBLE_INDEX "assemble_index"
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#define JSON_ASSEMPLE_OBJECT_PRINT_PARAMS "print_params"
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#define JSON_ASSEMPLE_ASSEMBLE_PARAMS "assembled_params"
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#define JSON_ASSEMPLE_OBJECT_MIN_Z "min_z"
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#define JSON_ASSEMPLE_OBJECT_MAX_Z "max_z"
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#define JSON_ASSEMPLE_OBJECT_HEIGHT_RANGES "height_ranges"
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#define JSON_ASSEMPLE_OBJECT_RANGE_PARAMS "range_params"
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typedef struct _height_range_info {
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float min_z;
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float max_z;
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std::map<std::string, std::string> range_params;
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}height_range_info_t;
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typedef struct _assembled_param_info {
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std::map<std::string, std::string> print_params;
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std::vector<height_range_info_t> height_ranges;
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}assembled_param_info_t;
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typedef struct _assemble_object_info {
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std::string path;
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int count;
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std::vector<int> filaments;
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std::vector<int> assemble_index;
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std::vector<float> pos_x;
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std::vector<float> pos_y;
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std::vector<float> pos_z;
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std::map<std::string, std::string> print_params;
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std::vector<height_range_info_t> height_ranges;
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}assemble_object_info_t;
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typedef struct _assemble_plate_info {
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std::string plate_name;
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bool need_arrange {false};
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int filaments_count {0};
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std::map<std::string, std::string> plate_params;
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std::vector<assemble_object_info_t> assemble_obj_list;
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std::vector<ModelObject *> loaded_obj_list;
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std::map<int, assembled_param_info_t> assembled_param_list;
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}assemble_plate_info_t;
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typedef struct _printer_plate_info {
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std::string printer_name;
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int printable_width{0};
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int printable_depth{0};
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int printable_height{0};
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int exclude_width{0};
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int exclude_depth{0};
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int exclude_x{0};
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int exclude_y{0};
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int wrapping_width{0};
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int wrapping_depth{0};
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int wrapping_x{0};
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int wrapping_y{0};
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}printer_plate_info_t;
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typedef struct _plate_obj_size_info {
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bool has_wipe_tower{false};
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float wipe_x{0.f};
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float wipe_y{0.f};
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float wipe_width{0.f};
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float wipe_depth{0.f};
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BoundingBoxf3 obj_bbox;
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}plate_obj_size_info_t;
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class CLI {
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public:
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int run(int argc, char **argv);
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private:
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DynamicPrintAndCLIConfig m_config;
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DynamicPrintConfig m_print_config;
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DynamicPrintConfig m_extra_config;
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std::vector<std::string> m_input_files;
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std::vector<std::string> m_actions;
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std::vector<std::string> m_transforms;
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// Options the user typed; setup() fills the CLI's own options with defaults afterwards.
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std::set<std::string> m_given_option_keys;
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std::vector<Model> m_models;
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bool setup(int argc, char **argv);
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/// Prints usage of the CLI.
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void print_help(bool include_print_options = false, PrinterTechnology printer_technology = ptAny) const;
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/// Exports loaded models to a file of the specified format, according to the options affecting output filename.
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bool export_models(IO::ExportFormat format, std::string path = std::string());
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//BBS: add export_project function
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bool export_project(Model *model, std::string& path, PlateDataPtrs &partplate_data, std::vector<Preset*>& project_presets,
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std::vector<ThumbnailData *> &thumbnails,
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std::vector<ThumbnailData *> &no_light_thumbnails,
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std::vector<ThumbnailData *> &top_thumbnails,
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std::vector<ThumbnailData *> &pick_thumbnails,
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std::vector<ThumbnailData*>& calibration_thumbnails,
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std::vector<PlateBBoxData*>& plate_bboxes, const DynamicPrintConfig* config, bool minimum_save, int plate_to_export = -1);
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bool has_print_action() const { return m_config.opt_bool("export_gcode") || m_config.opt_bool("export_sla"); }
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std::string output_filepath(const Model &model, IO::ExportFormat format) const;
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std::string output_filepath(const ModelObject &object, unsigned int index, IO::ExportFormat format, std::string path_dir) const;
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};
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}
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#endif
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