Renamed Geometry::intersect() to Geometry::convex_polygons_intersect()
to convey its true meaning.
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@ -1671,7 +1671,7 @@ void visit_antipodals (Idx& ia, Idx &ib, Fn &&fn)
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} // namespace rotcalip
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bool intersects(const Polygon &A, const Polygon &B)
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bool convex_polygons_intersect(const Polygon &A, const Polygon &B)
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{
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using namespace rotcalip;
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@ -563,7 +563,7 @@ inline bool is_rotation_ninety_degrees(const Vec3d &rotation)
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// Returns true if the intersection of the two convex polygons A and B
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// is not an empty set.
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bool intersects(const Polygon &A, const Polygon &B);
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bool convex_polygons_intersect(const Polygon &A, const Polygon &B);
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} } // namespace Slicer::Geometry
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@ -468,7 +468,7 @@ TEST_CASE("Convex polygon intersection on two disjoint squares", "[Geometry][Rot
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Polygon B = A;
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B.translate(20 / SCALING_FACTOR, 0);
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bool is_inters = Geometry::intersects(A, B);
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bool is_inters = Geometry::convex_polygons_intersect(A, B);
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REQUIRE(is_inters == false);
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}
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@ -480,7 +480,7 @@ TEST_CASE("Convex polygon intersection on two intersecting squares", "[Geometry]
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Polygon B = A;
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B.translate(5 / SCALING_FACTOR, 5 / SCALING_FACTOR);
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bool is_inters = Geometry::intersects(A, B);
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bool is_inters = Geometry::convex_polygons_intersect(A, B);
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REQUIRE(is_inters == true);
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}
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@ -492,7 +492,7 @@ TEST_CASE("Convex polygon intersection on two squares touching one edge", "[Geom
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Polygon B = A;
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B.translate(10 / SCALING_FACTOR, 0);
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bool is_inters = Geometry::intersects(A, B);
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bool is_inters = Geometry::convex_polygons_intersect(A, B);
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REQUIRE(is_inters == false);
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}
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@ -509,7 +509,7 @@ TEST_CASE("Convex polygon intersection on two squares touching one vertex", "[Ge
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svg.draw(B, "green");
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svg.Close();
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bool is_inters = Geometry::intersects(A, B);
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bool is_inters = Geometry::convex_polygons_intersect(A, B);
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REQUIRE(is_inters == false);
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}
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@ -520,7 +520,7 @@ TEST_CASE("Convex polygon intersection on two overlapping squares", "[Geometry][
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Polygon B = A;
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bool is_inters = Geometry::intersects(A, B);
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bool is_inters = Geometry::convex_polygons_intersect(A, B);
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REQUIRE(is_inters == true);
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}
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@ -560,7 +560,7 @@ TEST_CASE("Convex polygon intersection on two overlapping squares", "[Geometry][
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// bench.start();
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// for (const auto &test : tests)
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// results.emplace_back(Geometry::intersects(test.first, test.second));
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// results.emplace_back(Geometry::convex_polygons_intersect(test.first, test.second));
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// bench.stop();
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// std::cout << "Test time: " << bench.getElapsedSec() << std::endl;
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@ -611,7 +611,7 @@ TEST_CASE("Convex polygon intersection test prusa polygons", "[Geometry][Rotcali
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for (size_t i = 0; i < PRINTER_PART_POLYGONS.size(); ++i) {
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Polygon P = PRINTER_PART_POLYGONS[i];
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P = Geometry::convex_hull(P.points);
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bool res = Geometry::intersects(P, P);
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bool res = Geometry::convex_polygons_intersect(P, P);
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if (!res) {
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SVG svg{std::string("fail_self") + std::to_string(i) + ".svg"};
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svg.draw(P, "green");
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@ -644,7 +644,7 @@ TEST_CASE("Convex polygon intersection test prusa polygons", "[Geometry][Rotcali
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B.translate(bba.size() + bbb.size());
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bool res = Geometry::intersects(A, B);
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bool res = Geometry::convex_polygons_intersect(A, B);
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bool ref = !intersection(A, B).empty();
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if (res != ref) {
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@ -669,7 +669,7 @@ TEST_CASE("Convex polygon intersection test prusa polygons", "[Geometry][Rotcali
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A.translate(-bba.center());
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B.translate(-bbb.center());
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bool res = Geometry::intersects(A, B);
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bool res = Geometry::convex_polygons_intersect(A, B);
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bool ref = !intersection(A, B).empty();
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if (res != ref) {
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