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https://github.com/OrcaSlicer/OrcaSlicer.git
synced 2026-05-19 11:23:42 +00:00
Added prototype make_cylinder()
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@@ -1140,7 +1140,7 @@ TriangleMeshSlicer::~TriangleMeshSlicer()
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{
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if (this->v_scaled_shared != NULL) free(this->v_scaled_shared);
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}
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// Generate the vertex list for a cube solid of arbitrary size in X/Y/Z.
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TriangleMesh make_cube(double x, double y, double z) {
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Pointf3 pv[8] = {
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Pointf3(x, y, 0), Pointf3(x, 0, 0), Pointf3(0, 0, 0),
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@@ -1160,4 +1160,42 @@ TriangleMesh make_cube(double x, double y, double z) {
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TriangleMesh mesh(vertices ,facets);
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return mesh;
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}
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// Generate the mesh for a cylinder and return it, using
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// the generated angle to calculate the top mesh triangles.
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TriangleMesh make_cylinder(double r, double h, double fa) {
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Pointf3s vertices;
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std::vector<Point3> facets;
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// 2 special vertices, top and bottom center, rest are relative to this
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vertices.push_back(Pointf3(0.0, 0.0, 0.0));
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vertices.push_back(Pointf3(0.0, 0.0, h));
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// adjust via rounding
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double angle = (2*PI / floor(2*PI / fa));
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// for each line along the polygon approximating the top/bottom of the
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// circle, generate four points and four facets (2 for the wall, 2 for the
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// top and bottom.
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// Special case: Last line shares 2 vertices with the first line.
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unsigned id = 3;
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vertices.push_back(Pointf3(sin(0) * r , cos(0) * r, 0));
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vertices.push_back(Pointf3(sin(0) * r , cos(0) * r, h));
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for (double i = angle; i < 2*PI; i+=angle) {
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vertices.push_back(Pointf3(sin(i) * r , cos(i) * r, 0));
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vertices.push_back(Pointf3(sin(i) * r , cos(i) * r, h));
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id += 2;
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facets.push_back(Point3(0, id - 1, id - 3));
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facets.push_back(Point3(1, id, id - 2));
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facets.push_back(Point3(id, id - 1, id - 3));
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facets.push_back(Point3(id - 3, id - 2, id));
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}
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facets.push_back(Point3(0, 2, id -1));
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facets.push_back(Point3(1, 3, id));
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facets.push_back(Point3(id - 1, 2, 3));
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facets.push_back(Point3(id - 1, 3, id));
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TriangleMesh mesh(vertices ,facets);
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return mesh;
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}
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}
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