Drop rubbish tests
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@ -1,7 +1,7 @@
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get_filename_component(_TEST_NAME ${CMAKE_CURRENT_LIST_DIR} NAME)
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get_filename_component(_TEST_NAME ${CMAKE_CURRENT_LIST_DIR} NAME)
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add_executable(${_TEST_NAME}_tests ${_TEST_NAME}_tests_main.cpp
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add_executable(${_TEST_NAME}_tests ${_TEST_NAME}_tests_main.cpp
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sla_print_tests.cpp
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sla_print_tests.cpp
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sla_test_utils.hpp sla_test_utils.cpp sla_treebuilder_tests.cpp
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sla_test_utils.hpp sla_test_utils.cpp
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sla_supptgen_tests.cpp
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sla_supptgen_tests.cpp
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sla_raycast_tests.cpp)
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sla_raycast_tests.cpp)
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target_link_libraries(${_TEST_NAME}_tests test_common libslic3r)
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target_link_libraries(${_TEST_NAME}_tests test_common libslic3r)
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@ -1,99 +0,0 @@
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//#include <catch2/catch.hpp>
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//#include <test_utils.hpp>
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//#include "libslic3r/TriangleMesh.hpp"
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//#include "libslic3r/SLA/SupportTreeBuildsteps.hpp"
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//#include "libslic3r/SLA/SupportTreeMesher.hpp"
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//TEST_CASE("Test bridge_mesh_intersect on a cube's wall", "[SLABridgeMeshInters]") {
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// using namespace Slic3r;
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// TriangleMesh cube = make_cube(10., 10., 10.);
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// sla::SupportConfig cfg = {}; // use default config
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// sla::SupportPoints pts = {{10.f, 5.f, 5.f, float(cfg.head_front_radius_mm), false}};
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// sla::SupportableMesh sm{cube, pts, cfg};
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// size_t steps = 45;
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// SECTION("Bridge is straight horizontal and pointing away from the cube") {
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// sla::Bridge bridge(pts[0].pos.cast<double>(), Vec3d{15., 5., 5.},
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// pts[0].head_front_radius);
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// auto hit = sla::query_hit(sm, bridge);
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// REQUIRE(std::isinf(hit.distance()));
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// cube.merge(sla::to_triangle_mesh(get_mesh(bridge, steps)));
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// cube.require_shared_vertices();
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// cube.WriteOBJFile("cube1.obj");
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// }
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// SECTION("Bridge is tilted down in 45 degrees, pointing away from the cube") {
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// sla::Bridge bridge(pts[0].pos.cast<double>(), Vec3d{15., 5., 0.},
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// pts[0].head_front_radius);
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// auto hit = sla::query_hit(sm, bridge);
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// REQUIRE(std::isinf(hit.distance()));
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// cube.merge(sla::to_triangle_mesh(get_mesh(bridge, steps)));
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// cube.require_shared_vertices();
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// cube.WriteOBJFile("cube2.obj");
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// }
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//}
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//TEST_CASE("Test bridge_mesh_intersect on a sphere", "[SLABridgeMeshInters]") {
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// using namespace Slic3r;
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// TriangleMesh sphere = make_sphere(1.);
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// sla::SupportConfig cfg = {}; // use default config
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// cfg.head_back_radius_mm = cfg.head_front_radius_mm;
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// sla::SupportPoints pts = {{1.f, 0.f, 0.f, float(cfg.head_front_radius_mm), false}};
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// sla::SupportableMesh sm{sphere, pts, cfg};
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// size_t steps = 45;
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// SECTION("Bridge is straight horizontal and pointing away from the sphere") {
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// sla::Bridge bridge(pts[0].pos.cast<double>(), Vec3d{2., 0., 0.},
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// pts[0].head_front_radius);
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// auto hit = sla::query_hit(sm, bridge);
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// sphere.merge(sla::to_triangle_mesh(get_mesh(bridge, steps)));
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// sphere.require_shared_vertices();
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// sphere.WriteOBJFile("sphere1.obj");
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// REQUIRE(std::isinf(hit.distance()));
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// }
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// SECTION("Bridge is tilted down 45 deg and pointing away from the sphere") {
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// sla::Bridge bridge(pts[0].pos.cast<double>(), Vec3d{2., 0., -2.},
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// pts[0].head_front_radius);
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// auto hit = sla::query_hit(sm, bridge);
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// sphere.merge(sla::to_triangle_mesh(get_mesh(bridge, steps)));
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// sphere.require_shared_vertices();
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// sphere.WriteOBJFile("sphere2.obj");
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// REQUIRE(std::isinf(hit.distance()));
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// }
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// SECTION("Bridge is tilted down 90 deg and pointing away from the sphere") {
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// sla::Bridge bridge(pts[0].pos.cast<double>(), Vec3d{1., 0., -2.},
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// pts[0].head_front_radius);
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// auto hit = sla::query_hit(sm, bridge);
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// sphere.merge(sla::to_triangle_mesh(get_mesh(bridge, steps)));
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// sphere.require_shared_vertices();
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// sphere.WriteOBJFile("sphere3.obj");
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// REQUIRE(std::isinf(hit.distance()));
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// }
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//}
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