Fix of #8446: Non-planar Voronoi diagram.
This is the follow-up to 63c66f4f18
. Detection of non-planar (degenerated) Voronoi diagrams was rewritten to check if all neighboring edges of the Voronoi vertex are CCW ordered.
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@ -17,12 +17,9 @@
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#include "Utils.hpp"
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#include "SVG.hpp"
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#include "Geometry/VoronoiVisualUtils.hpp"
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#include "Geometry/VoronoiUtilsCgal.hpp"
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#include "../EdgeGrid.hpp"
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#include <CGAL/Exact_predicates_exact_constructions_kernel.h>
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#include <CGAL/Arr_segment_traits_2.h>
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#include <CGAL/Surface_sweep_2_algorithms.h>
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#define SKELETAL_TRAPEZOIDATION_BEAD_SEARCH_MAX 1000 //A limit to how long it'll keep searching for adjacent beads. Increasing will re-use beadings more often (saving performance), but search longer for beading (costing performance).
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//#define ARACHNE_DEBUG
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@ -391,40 +388,6 @@ SkeletalTrapezoidation::SkeletalTrapezoidation(const Polygons& polys, const Bead
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constructFromPolygons(polys);
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}
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using CGAL_Point = CGAL::Exact_predicates_exact_constructions_kernel::Point_2;
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using CGAL_Segment = CGAL::Arr_segment_traits_2<CGAL::Exact_predicates_exact_constructions_kernel>::Curve_2;
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inline static CGAL_Point to_cgal_point(const Voronoi::VD::vertex_type &pt)
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{
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return {pt.x(), pt.y()};
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}
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bool is_voronoi_diagram_planar(const Geometry::VoronoiDiagram &voronoi_diagram) {
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assert(std::all_of(voronoi_diagram.edges().cbegin(), voronoi_diagram.edges().cend(),
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[](const Geometry::VoronoiDiagram::edge_type &edge) { return edge.color() == 0; }));
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std::vector<CGAL_Segment> segments;
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segments.reserve(voronoi_diagram.num_edges());
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for (const Geometry::VoronoiDiagram::edge_type &edge : voronoi_diagram.edges()) {
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if (edge.color() != 0)
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continue;
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if (edge.is_finite() && edge.is_linear()) {
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segments.emplace_back(to_cgal_point(*edge.vertex0()), to_cgal_point(*edge.vertex1()));
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edge.color(1);
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assert(edge.twin() != nullptr);
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edge.twin()->color(1);
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}
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}
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for (const Geometry::VoronoiDiagram::edge_type &edge : voronoi_diagram.edges())
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edge.color(0);
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std::vector<CGAL_Point> intersections_pt;
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CGAL::compute_intersection_points(segments.begin(), segments.end(), std::back_inserter(intersections_pt));
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return intersections_pt.empty();
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}
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static bool detect_missing_voronoi_vertex(const Geometry::VoronoiDiagram &voronoi_diagram, const std::vector<SkeletalTrapezoidation::Segment> &segments) {
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for (VoronoiUtils::vd_t::cell_type cell : voronoi_diagram.cells()) {
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@ -506,7 +469,7 @@ inline static std::unordered_map<Point, Point, PointHash> try_to_fix_degenerated
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voronoi_diagram.clear();
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construct_voronoi(segments.begin(), segments.end(), &voronoi_diagram);
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assert(is_voronoi_diagram_planar(voronoi_diagram));
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assert(Geometry::VoronoiUtilsCgal::is_voronoi_diagram_planar_intersection(voronoi_diagram));
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return vertex_mapping;
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}
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@ -562,26 +525,38 @@ void SkeletalTrapezoidation::constructFromPolygons(const Polygons& polys)
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#endif
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#ifdef ARACHNE_DEBUG
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assert(is_voronoi_diagram_planar(voronoi_diagram));
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assert(is_voronoi_diagram_planar_intersection(voronoi_diagram));
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#endif
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// Try to detect cases when some Voronoi vertex is missing.
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// When any Voronoi vertex is missing, rotate input polygon and try again.
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const bool has_missing_voronoi_vertex = detect_missing_voronoi_vertex(voronoi_diagram, segments);
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const double fix_angle = PI / 6;
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// Try to detect cases when some Voronoi vertex is missing and when
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// the Voronoi diagram is not planar.
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// When any Voronoi vertex is missing, or the Voronoi diagram is not
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// planar, rotate the input polygon and try again.
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const bool has_missing_voronoi_vertex = detect_missing_voronoi_vertex(voronoi_diagram, segments);
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// Detection of non-planar Voronoi diagram detects at least GH issues #8474, #8514 and #8446.
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const bool is_voronoi_diagram_planar = Geometry::VoronoiUtilsCgal::is_voronoi_diagram_planar_angle(voronoi_diagram);
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const double fix_angle = PI / 6;
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std::unordered_map<Point, Point, PointHash> vertex_mapping;
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// polys_copy is referenced through items stored in the std::vector segments.
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Polygons polys_copy = polys;
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if (has_missing_voronoi_vertex) {
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BOOST_LOG_TRIVIAL(warning) << "Detected missing Voronoi vertex, input polygons will be rotated back and forth.";
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if (has_missing_voronoi_vertex || !is_voronoi_diagram_planar) {
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if (has_missing_voronoi_vertex)
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BOOST_LOG_TRIVIAL(warning) << "Detected missing Voronoi vertex, input polygons will be rotated back and forth.";
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else if (!is_voronoi_diagram_planar)
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BOOST_LOG_TRIVIAL(warning) << "Detected non-planar Voronoi diagram, input polygons will be rotated back and forth.";
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vertex_mapping = try_to_fix_degenerated_voronoi_diagram_by_rotation(voronoi_diagram, polys, polys_copy, segments, fix_angle);
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assert(!detect_missing_voronoi_vertex(voronoi_diagram, segments));
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assert(Geometry::VoronoiUtilsCgal::is_voronoi_diagram_planar_angle(voronoi_diagram));
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if (detect_missing_voronoi_vertex(voronoi_diagram, segments))
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BOOST_LOG_TRIVIAL(error) << "Detected missing Voronoi vertex even after the rotation of input.";
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else if (!Geometry::VoronoiUtilsCgal::is_voronoi_diagram_planar_angle(voronoi_diagram))
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BOOST_LOG_TRIVIAL(error) << "Detected non-planar Voronoi diagram even after the rotation of input.";
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}
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bool degenerated_voronoi_diagram = has_missing_voronoi_vertex;
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bool degenerated_voronoi_diagram = has_missing_voronoi_vertex || !is_voronoi_diagram_planar;
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process_voronoi_diagram:
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assert(this->graph.edges.empty() && this->graph.nodes.empty() && this->vd_edge_to_he_edge.empty() && this->vd_node_to_he_node.empty());
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@ -644,8 +619,6 @@ process_voronoi_diagram:
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// When this degenerated Voronoi diagram is processed, the resulting half-edge structure contains some edges that don't have
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// a twin edge. Based on this, we created a fast mechanism that detects those causes and tries to recompute the Voronoi
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// diagram on slightly rotated input polygons that usually make the Voronoi generator generate a non-degenerated Voronoi diagram.
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// FIXME Lukas H.: Replace has_missing_twin_edge with detection if the Voronoi diagram is planar using a custom algorithm based on the
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// sweeping line algorithm. At least it is required to fix GH #8446.
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if (!degenerated_voronoi_diagram && has_missing_twin_edge(this->graph)) {
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BOOST_LOG_TRIVIAL(warning) << "Detected degenerated Voronoi diagram, input polygons will be rotated back and forth.";
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degenerated_voronoi_diagram = true;
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@ -655,7 +628,7 @@ process_voronoi_diagram:
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if (detect_missing_voronoi_vertex(voronoi_diagram, segments))
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BOOST_LOG_TRIVIAL(error) << "Detected missing Voronoi vertex after the rotation of input.";
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assert(is_voronoi_diagram_planar(voronoi_diagram));
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assert(Geometry::VoronoiUtilsCgal::is_voronoi_diagram_planar_intersection(voronoi_diagram));
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this->graph.edges.clear();
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this->graph.nodes.clear();
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@ -592,7 +592,5 @@ protected:
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void generateLocalMaximaSingleBeads();
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};
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bool is_voronoi_diagram_planar(const Geometry::VoronoiDiagram &voronoi_diagram);
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} // namespace Slic3r::Arachne
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#endif // VORONOI_QUADRILATERALIZATION_H
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@ -357,7 +357,7 @@ find_package(CGAL REQUIRED)
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cmake_policy(POP)
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add_library(libslic3r_cgal STATIC MeshBoolean.cpp MeshBoolean.hpp TryCatchSignal.hpp
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TryCatchSignal.cpp)
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TryCatchSignal.cpp Geometry/VoronoiUtilsCgal.hpp Geometry/VoronoiUtilsCgal.cpp)
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target_include_directories(libslic3r_cgal PRIVATE ${CMAKE_CURRENT_BINARY_DIR})
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# Reset compile options of libslic3r_cgal. Despite it being linked privately, CGAL options
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src/libslic3r/Geometry/VoronoiUtilsCgal.cpp
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src/libslic3r/Geometry/VoronoiUtilsCgal.cpp
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@ -0,0 +1,100 @@
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#include <CGAL/Exact_predicates_exact_constructions_kernel.h>
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#include <CGAL/Arr_segment_traits_2.h>
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#include <CGAL/Surface_sweep_2_algorithms.h>
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#include "libslic3r/Geometry/Voronoi.hpp"
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#include "VoronoiUtilsCgal.hpp"
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using VD = Slic3r::Geometry::VoronoiDiagram;
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namespace Slic3r::Geometry {
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using CGAL_Point = CGAL::Exact_predicates_exact_constructions_kernel::Point_2;
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using CGAL_Segment = CGAL::Arr_segment_traits_2<CGAL::Exact_predicates_exact_constructions_kernel>::Curve_2;
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inline static CGAL_Point to_cgal_point(const VD::vertex_type &pt) { return {pt.x(), pt.y()}; }
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// FIXME Lukas H.: Also includes parabolic segments.
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bool VoronoiUtilsCgal::is_voronoi_diagram_planar_intersection(const VD &voronoi_diagram)
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{
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assert(std::all_of(voronoi_diagram.edges().cbegin(), voronoi_diagram.edges().cend(),
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[](const VD::edge_type &edge) { return edge.color() == 0; }));
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std::vector<CGAL_Segment> segments;
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segments.reserve(voronoi_diagram.num_edges());
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for (const VD::edge_type &edge : voronoi_diagram.edges()) {
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if (edge.color() != 0)
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continue;
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if (edge.is_finite() && edge.is_linear()) {
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segments.emplace_back(to_cgal_point(*edge.vertex0()), to_cgal_point(*edge.vertex1()));
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edge.color(1);
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assert(edge.twin() != nullptr);
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edge.twin()->color(1);
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}
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}
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for (const VD::edge_type &edge : voronoi_diagram.edges())
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edge.color(0);
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std::vector<CGAL_Point> intersections_pt;
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CGAL::compute_intersection_points(segments.begin(), segments.end(), std::back_inserter(intersections_pt));
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return intersections_pt.empty();
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}
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static bool check_if_three_vectors_are_ccw(const CGAL_Point &common_pt, const CGAL_Point &pt_1, const CGAL_Point &pt_2, const CGAL_Point &test_pt) {
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CGAL::Orientation orientation = CGAL::orientation(common_pt, pt_1, pt_2);
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if (orientation == CGAL::Orientation::COLLINEAR) {
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// The first two edges are collinear, so the third edge must be on the right side on the first of them.
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return CGAL::orientation(common_pt, pt_1, test_pt) == CGAL::Orientation::RIGHT_TURN;
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} else if (orientation == CGAL::Orientation::LEFT_TURN) {
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// CCW oriented angle between vectors (common_pt, pt1) and (common_pt, pt2) is bellow PI.
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// So we need to check if test_pt isn't between them.
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CGAL::Orientation orientation1 = CGAL::orientation(common_pt, pt_1, test_pt);
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CGAL::Orientation orientation2 = CGAL::orientation(common_pt, pt_2, test_pt);
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return (orientation1 != CGAL::Orientation::LEFT_TURN || orientation2 != CGAL::Orientation::RIGHT_TURN);
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} else {
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assert(orientation == CGAL::Orientation::RIGHT_TURN);
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// CCW oriented angle between vectors (common_pt, pt1) and (common_pt, pt2) is upper PI.
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// So we need to check if test_pt is between them.
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CGAL::Orientation orientation1 = CGAL::orientation(common_pt, pt_1, test_pt);
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CGAL::Orientation orientation2 = CGAL::orientation(common_pt, pt_2, test_pt);
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return (orientation1 == CGAL::Orientation::RIGHT_TURN || orientation2 == CGAL::Orientation::LEFT_TURN);
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}
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}
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bool VoronoiUtilsCgal::is_voronoi_diagram_planar_angle(const VoronoiDiagram &voronoi_diagram)
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{
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for (const VD::vertex_type &vertex : voronoi_diagram.vertices()) {
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std::vector<const VD::edge_type *> edges;
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const VD::edge_type *edge = vertex.incident_edge();
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do {
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// FIXME Lukas H.: Also process parabolic segments.
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if (edge->is_finite() && edge->is_linear())
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edges.emplace_back(edge);
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edge = edge->rot_next();
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} while (edge != vertex.incident_edge());
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// Checking for CCW make sense for three and more edges.
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if (edges.size() > 2) {
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for (auto edge_it = edges.begin() ; edge_it != edges.end(); ++edge_it) {
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const Geometry::VoronoiDiagram::edge_type *prev_edge = edge_it == edges.begin() ? edges.back() : *std::prev(edge_it);
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const Geometry::VoronoiDiagram::edge_type *curr_edge = *edge_it;
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const Geometry::VoronoiDiagram::edge_type *next_edge = std::next(edge_it) == edges.end() ? edges.front() : *std::next(edge_it);
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if (!check_if_three_vectors_are_ccw(to_cgal_point(*prev_edge->vertex0()), to_cgal_point(*prev_edge->vertex1()),
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to_cgal_point(*curr_edge->vertex1()), to_cgal_point(*next_edge->vertex1())))
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return false;
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}
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}
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}
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return true;
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}
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} // namespace Slic3r::Geometry
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src/libslic3r/Geometry/VoronoiUtilsCgal.hpp
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21
src/libslic3r/Geometry/VoronoiUtilsCgal.hpp
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@ -0,0 +1,21 @@
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#ifndef slic3r_VoronoiUtilsCgal_hpp_
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#define slic3r_VoronoiUtilsCgal_hpp_
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#include "Voronoi.hpp"
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namespace Slic3r::Geometry {
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class VoronoiDiagram;
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class VoronoiUtilsCgal
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{
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public:
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// Check if the Voronoi diagram is planar using CGAL sweeping edge algorithm for enumerating all intersections between lines.
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static bool is_voronoi_diagram_planar_intersection(const VoronoiDiagram &voronoi_diagram);
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// Check if the Voronoi diagram is planar using verification that all neighboring edges are ordered CCW for each vertex.
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static bool is_voronoi_diagram_planar_angle(const VoronoiDiagram &voronoi_diagram);
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};
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} // namespace Slic3r::Geometry
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#endif // slic3r_VoronoiUtilsCgal_hpp_
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@ -5,7 +5,7 @@
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#include <libslic3r/Polyline.hpp>
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#include <libslic3r/EdgeGrid.hpp>
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#include <libslic3r/Geometry.hpp>
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#include <libslic3r/Arachne/SkeletalTrapezoidation.hpp>
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#include "libslic3r/Geometry/VoronoiUtilsCgal.hpp"
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#include <libslic3r/Geometry/VoronoiOffset.hpp>
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#include <libslic3r/Geometry/VoronoiVisualUtils.hpp>
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@ -2188,5 +2188,5 @@ TEST_CASE("Non-planar voronoi diagram", "[VoronoiNonPlanar]")
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dump_voronoi_to_svg(debug_out_path("voronoi-non-planar-out.svg").c_str(), vd, Points(), lines);
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#endif
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// REQUIRE(Arachne::is_voronoi_diagram_planar(vd));
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// REQUIRE(Geometry::VoronoiUtilsCgal::is_voronoi_diagram_planar_intersection(vd));
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}
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