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* Run every profile maintenance job from one tool orca_id_tool.py becomes orca_profile_tool.py, and orca_extra_profile_check.py and orca_filament_lib.py fold into it as subcommands: check, generate-id, fix, trim, update-index and update-snapshot. The three scripts already overlapped -- the checker imported half of its rules from the id tool, which in turn kept a copy-pasted set of output helpers to avoid the resulting import cycle -- while disagreeing on how a vendor is enumerated, how a JSON file is read and what the exit code means. One file settles all three. check, normalize, trim and update-index reproduce their predecessors exactly; normalize and update-index were diffed byte-for-byte against the old scripts over a copy of the whole tree. Deliberate changes: the compatible-printers check no longer switches itself off when --check-materials is passed, an error exits 1 rather than -1, update-index honours --profile-type and reports a profile it cannot place instead of dropping it from the index, fix and update-index gained --dry-run, trim keeps an unindexed file some surviving profile still inherits from, and vendors are enumerated as directories with an index -- which is why blacklist.json, a data file that an unscoped index rebuild once wrote four empty list sections into, loses them here and will not collect them again. The dead rename_filament_system() helper is gone. The suite under scripts/tests now covers the maintenance commands too, and CI runs it; nothing there ran in CI before. No shipped profile data changes apart from those four keys. * update vendor index files with "python3 ./scripts/orca_profile_tool.py update-index" and "python3 ./scripts/orca_profile_tool.py normalize"
42 lines
2.4 KiB
C++
42 lines
2.4 KiB
C++
#include <catch2/catch_all.hpp>
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#include "libslic3r/Preset.hpp"
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using namespace Slic3r;
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// Golden vectors from the Python reference generate_preset_setting_id (defined in
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// scripts/orca_profile_tool.py). The C++ generate_preset_setting_id() MUST stay byte-identical
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// to it, otherwise app-side on-the-fly ids would diverge from the
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// script-assigned ones in the profiles. Regenerate a vector with:
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// python3 -c "import sys; sys.path.insert(0, 'scripts'); from orca_profile_tool import generate_preset_setting_id as g; print(g('Afinia','filament','Afinia ABS @Afinia H400'))"
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TEST_CASE("preset setting_id matches the Python reference", "[Preset][setting_id]") {
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struct Vec { const char* vendor; const char* type; const char* name; const char* expected; };
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const Vec vectors[] = {
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{"Afinia", "filament", "Afinia ABS @Afinia H400", "TL34qSVkppBvMvgH"},
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{"Afinia", "process", "0.20mm Standard @Afinia H400", "FzmtNsy7XQvpd7w0"},
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{"Afinia", "machine", "Afinia H400 0.4 nozzle", "r4FZagW0S8uoaJPd"},
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{"Anycubic", "filament", "Generic PLA @Anycubic Kobra 2", "YIWGGLQ8Oepd30Fv"},
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{"Creality", "process", "0.16mm Optimal @Creality Ender-3 V3", "2Nrbq8PxssUPBLza"},
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{"Elegoo", "machine", "Elegoo Neptune 4 0.4 nozzle", "69QdWuRQwAZk9rFu"},
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};
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for (const auto& v : vectors) {
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const std::string id = generate_preset_setting_id(v.vendor, v.type, v.name);
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INFO(v.vendor << "/" << v.type << "/" << v.name);
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CHECK(id.size() == 16);
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CHECK(id == v.expected);
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}
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}
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TEST_CASE("preset setting_id is deterministic and identity-sensitive", "[Preset][setting_id]") {
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const std::string a = generate_preset_setting_id("VendorX", "filament", "My PLA");
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CHECK(a == generate_preset_setting_id("VendorX", "filament", "My PLA")); // stable
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CHECK(a != generate_preset_setting_id("VendorY", "filament", "My PLA")); // vendor matters
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CHECK(a != generate_preset_setting_id("VendorX", "process", "My PLA")); // type matters
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CHECK(a != generate_preset_setting_id("VendorX", "filament", "My PETG")); // name matters
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// Empty identity yields no id (callers must not assign one).
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CHECK(generate_preset_setting_id("", "filament", "My PLA").empty());
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CHECK(generate_preset_setting_id("VendorX", "filament", "").empty());
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}
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