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ViewDesignEngine/tests/brep/test_trimmed_surface.cpp
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#include <gtest/gtest.h>
#include "vde/brep/trimmed_surface.h"
#include "vde/brep/brep.h"
#include "vde/brep/modeling.h"
#include "vde/curves/nurbs_surface.h"
#include <cmath>
using namespace vde::brep;
using namespace vde::curves;
using vde::core::Point3D;
namespace {
/// Helper: create a simple 10×10 planar NURBS surface in the XY plane
NurbsSurface make_plane() {
std::vector<std::vector<Point3D>> cp = {
{Point3D(0, 0, 0), Point3D(0, 10, 0)},
{Point3D(10, 0, 0), Point3D(10, 10, 0)}
};
std::vector<double> ku = {0, 0, 1, 1};
std::vector<double> kv = {0, 0, 1, 1};
std::vector<std::vector<double>> w = {{1, 1}, {1, 1}};
return NurbsSurface(cp, ku, kv, w, 1, 1);
}
/// Helper: create a linear p-curve line segment in parameter space
PCurve make_pcurve_line(double ua, double va, double ub, double vb) {
std::vector<Point3D> cps = { Point3D(ua, va, 0.0), Point3D(ub, vb, 0.0) };
std::vector<double> knots = { 0.0, 0.0, 1.0, 1.0 };
std::vector<double> weights = { 1.0, 1.0 };
return PCurve(cps, knots, weights, 1);
}
/// Helper: create a rectangular trim loop
TrimLoop make_rect_loop(double u0, double u1, double v0, double v1) {
TrimLoop loop;
loop.is_outer = true;
loop.p_curves.push_back(make_pcurve_line(u0, v0, u1, v0)); // bottom
loop.p_curves.push_back(make_pcurve_line(u1, v0, u1, v1)); // right
loop.p_curves.push_back(make_pcurve_line(u1, v1, u0, v1)); // top
loop.p_curves.push_back(make_pcurve_line(u0, v1, u0, v0)); // left
return loop;
}
} // anonymous namespace
// ═══════════════════════════════════════════════════════════
// 1-3: Untrimmed surface
// ═══════════════════════════════════════════════════════════
TEST(TrimmedSurfaceTest, Untrimmed_EvaluatesAllCorners) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_surface(surf);
auto p00 = ts.evaluate(0.0, 0.0);
ASSERT_TRUE(p00.has_value());
EXPECT_NEAR(p00->x(), 0.0, 1e-6);
auto p11 = ts.evaluate(1.0, 1.0);
ASSERT_TRUE(p11.has_value());
EXPECT_NEAR(p11->x(), 10.0, 1e-6);
EXPECT_NEAR(p11->y(), 10.0, 1e-6);
auto pc = ts.evaluate(0.5, 0.5);
ASSERT_TRUE(pc.has_value());
EXPECT_NEAR(pc->x(), 5.0, 1e-6);
}
TEST(TrimmedSurfaceTest, Untrimmed_IsInsideAlwaysTrue) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_surface(surf);
EXPECT_TRUE(ts.is_inside(0.0, 0.0));
EXPECT_TRUE(ts.is_inside(0.5, 0.5));
EXPECT_TRUE(ts.is_inside(1.0, 1.0));
}
TEST(TrimmedSurfaceTest, Untrimmed_WindingNumber) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_surface(surf);
EXPECT_TRUE(ts.loops.empty());
EXPECT_TRUE(ts.is_inside(0.3, 0.7));
}
// ═══════════════════════════════════════════════════════════
// 4-6: Rectangular trim
// ═══════════════════════════════════════════════════════════
TEST(TrimmedSurfaceTest, RectTrim_InsideRegion) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_rect(surf, 0.0, 0.5, 0.0, 0.5);
auto p = ts.evaluate(0.25, 0.25);
ASSERT_TRUE(p.has_value());
EXPECT_NEAR(p->x(), 2.5, 1e-6);
EXPECT_NEAR(p->y(), 2.5, 1e-6);
EXPECT_TRUE(ts.is_inside(0.25, 0.25));
}
TEST(TrimmedSurfaceTest, RectTrim_OutsideRegion) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_rect(surf, 0.0, 0.5, 0.0, 0.5);
EXPECT_FALSE(ts.evaluate(0.75, 0.25).has_value());
EXPECT_FALSE(ts.is_inside(0.75, 0.25));
EXPECT_FALSE(ts.is_inside(0.25, 0.75));
EXPECT_FALSE(ts.is_inside(0.75, 0.75));
}
TEST(TrimmedSurfaceTest, RectTrim_BoundaryIsInside) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_rect(surf, 0.0, 0.5, 0.0, 0.5);
EXPECT_TRUE(ts.is_inside(0.0, 0.0));
EXPECT_TRUE(ts.is_inside(0.5, 0.5));
EXPECT_TRUE(ts.is_inside(0.0, 0.5));
}
// ═══════════════════════════════════════════════════════════
// 7-9: Hole (inner loop)
// ═══════════════════════════════════════════════════════════
TEST(TrimmedSurfaceTest, Hole_CenterIsOutside) {
auto surf = make_plane();
TrimmedSurface ts;
ts.base_surface = surf;
ts.loops.push_back(make_rect_loop(0.0, 1.0, 0.0, 1.0));
auto hole = make_rect_loop(0.25, 0.75, 0.25, 0.75);
hole.is_outer = false;
ts.loops.push_back(hole);
EXPECT_FALSE(ts.is_inside(0.5, 0.5));
auto p_center = ts.evaluate(0.5, 0.5);
EXPECT_FALSE(p_center.has_value());
}
TEST(TrimmedSurfaceTest, Hole_CornerIsInside) {
auto surf = make_plane();
TrimmedSurface ts;
ts.base_surface = surf;
ts.loops.push_back(make_rect_loop(0.0, 1.0, 0.0, 1.0));
auto hole = make_rect_loop(0.25, 0.75, 0.25, 0.75);
hole.is_outer = false;
ts.loops.push_back(hole);
EXPECT_TRUE(ts.is_inside(0.1, 0.1));
auto p_corner = ts.evaluate(0.1, 0.1);
ASSERT_TRUE(p_corner.has_value());
EXPECT_NEAR(p_corner->x(), 1.0, 1e-6);
}
TEST(TrimmedSurfaceTest, Hole_BoundaryIsOutside) {
auto surf = make_plane();
TrimmedSurface ts;
ts.base_surface = surf;
ts.loops.push_back(make_rect_loop(0.0, 1.0, 0.0, 1.0));
auto hole = make_rect_loop(0.25, 0.75, 0.25, 0.75);
hole.is_outer = false;
ts.loops.push_back(hole);
// Point on hole boundary → outside
EXPECT_FALSE(ts.is_inside(0.25, 0.25));
}
// ═══════════════════════════════════════════════════════════
// 10-11: Circular hole (from_rect_with_hole)
// ═══════════════════════════════════════════════════════════
TEST(TrimmedSurfaceTest, CircularHole_CenterOutside) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_rect_with_hole(surf, 0.0, 1.0, 0.0, 1.0,
0.5, 0.5, 0.2, 32);
// Center of hole → outside
EXPECT_FALSE(ts.is_inside(0.5, 0.5));
auto p = ts.evaluate(0.5, 0.5);
EXPECT_FALSE(p.has_value());
}
TEST(TrimmedSurfaceTest, CircularHole_CornerInside) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_rect_with_hole(surf, 0.0, 1.0, 0.0, 1.0,
0.5, 0.5, 0.2, 32);
// Corner → inside outer, outside hole
EXPECT_TRUE(ts.is_inside(0.1, 0.1));
EXPECT_TRUE(ts.is_inside(0.9, 0.9));
}
// ═══════════════════════════════════════════════════════════
// 12-13: Bounds
// ═══════════════════════════════════════════════════════════
TEST(TrimmedSurfaceTest, Bounds_Untrimmed) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_surface(surf);
auto b = ts.bounds();
EXPECT_NEAR(b.min().x(), 0.0, 1e-6);
EXPECT_NEAR(b.max().x(), 10.0, 1e-6);
EXPECT_NEAR(b.min().y(), 0.0, 1e-6);
EXPECT_NEAR(b.max().y(), 10.0, 1e-6);
}
TEST(TrimmedSurfaceTest, Bounds_RectangularTrim) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_rect(surf, 0.25, 0.75, 0.25, 0.75);
auto b = ts.bounds();
EXPECT_NEAR(b.min().x(), 2.5, 1e-6);
EXPECT_NEAR(b.max().x(), 7.5, 1e-6);
}
// ═══════════════════════════════════════════════════════════
// 14-15: Winding number
// ═══════════════════════════════════════════════════════════
TEST(TrimmedSurfaceTest, WindingNumber_RectOuter) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_rect(surf, 0.2, 0.8, 0.2, 0.8);
int w = ts.winding_number(0.5, 0.5, ts.loops[0]);
EXPECT_GT(std::abs(w), 0); // Inside outer loop
int w_out = ts.winding_number(0.0, 0.0, ts.loops[0]);
EXPECT_EQ(w_out, 0); // Outside
}
TEST(TrimmedSurfaceTest, WindingNumber_Hole) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_rect_with_hole(surf, 0.0, 1.0, 0.0, 1.0,
0.4, 0.4, 0.15, 32);
ASSERT_EQ(ts.loops.size(), 2u);
// Hole loop at center
int w_hole_in = ts.winding_number(0.4, 0.4, ts.loops[1]);
EXPECT_GT(std::abs(w_hole_in), 0);
int w_hole_out = ts.winding_number(0.1, 0.1, ts.loops[1]);
EXPECT_EQ(w_hole_out, 0);
}
// ═══════════════════════════════════════════════════════════
// 16: Closest boundary point
// ═══════════════════════════════════════════════════════════
TEST(TrimmedSurfaceTest, ClosestBoundary) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_rect(surf, 0.25, 0.75, 0.25, 0.75);
// Point outside → should project to boundary
auto bp = ts.closest_boundary_point(1.0, 0.5);
// Should be near the right edge of trimmed region in 3D
EXPECT_NEAR(bp.x(), 7.5, 1e-5); // u=0.75 → x=7.5
EXPECT_NEAR(bp.y(), 5.0, 1e-5); // v=0.5 → y=5.0
}
// ═══════════════════════════════════════════════════════════
// 17-18: to_mesh
// ═══════════════════════════════════════════════════════════
TEST(TrimmedSurfaceTest, ToMesh_Untrimmed) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_surface(surf);
auto mesh = ts.to_mesh(0.1);
EXPECT_GT(mesh.num_vertices(), 0u);
EXPECT_GT(mesh.num_faces(), 0u);
}
TEST(TrimmedSurfaceTest, ToMesh_RectTrimmed) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_rect(surf, 0.25, 0.75, 0.25, 0.75);
auto mesh = ts.to_mesh(0.1);
EXPECT_GT(mesh.num_vertices(), 0u);
EXPECT_GT(mesh.num_faces(), 0u);
// All vertices should be inside the trimmed region bounds
auto b = mesh.bounds();
EXPECT_GE(b.min().x(), 2.0);
EXPECT_LE(b.max().x(), 8.0);
}
// ═══════════════════════════════════════════════════════════
// 19-20: BrepModel integration
// ═══════════════════════════════════════════════════════════
TEST(TrimmedSurfaceTest, BrepModel_AddTrimmedSurface) {
BrepModel model;
auto surf = make_plane();
auto ts = TrimmedSurface::from_rect(surf, 0.0, 1.0, 0.0, 1.0);
int tid = model.add_trimmed_surface(ts);
EXPECT_EQ(tid, 0);
EXPECT_EQ(model.num_trimmed_surfaces(), 1u);
const auto& stored = model.trimmed_surface(tid);
EXPECT_EQ(stored.loops.size(), 1u);
EXPECT_TRUE(stored.loops[0].is_outer);
}
TEST(TrimmedSurfaceTest, BrepModel_SetFaceTrimmedSurface) {
BrepModel model;
auto surf = make_plane();
auto ts = TrimmedSurface::from_rect(surf, 0.0, 1.0, 0.0, 1.0);
int tid = model.add_trimmed_surface(ts);
int v0 = model.add_vertex({0,0,0});
int v1 = model.add_vertex({1,0,0});
int v2 = model.add_vertex({1,1,0});
int v3 = model.add_vertex({0,1,0});
int e1 = model.add_edge(v0, v1);
int e2 = model.add_edge(v1, v2);
int e3 = model.add_edge(v2, v3);
int e4 = model.add_edge(v3, v0);
int lp = model.add_loop({e1,e2,e3,e4}, true);
int sid = model.add_surface(surf);
int fid = model.add_face(sid, {lp});
model.set_face_trimmed_surface(fid, tid);
const auto& face = model.face(fid);
EXPECT_EQ(face.trimmed_surface_id, tid);
}
TEST(TrimmedSurfaceTest, BrepModel_ToMeshWithTrimmedSurface) {
auto box = make_box(10, 10, 10);
// make_box now creates TrimmedSurface-wrapped faces
auto mesh = box.to_mesh(0.1);
EXPECT_GT(mesh.num_vertices(), 0u);
EXPECT_GT(mesh.num_faces(), 0u);
// Verify each face has a trimmed_surface_id set
for (size_t fi = 0; fi < box.num_faces(); ++fi) {
const auto& face = box.face(static_cast<int>(fi));
EXPECT_GE(face.trimmed_surface_id, 0);
}
}
TEST(TrimmedSurfaceTest, BrepModel_SphereTrimmedSurface) {
auto sphere = make_sphere(5.0, 8, 4);
auto mesh = sphere.to_mesh(0.1);
EXPECT_GT(mesh.num_vertices(), 0u);
EXPECT_GT(mesh.num_faces(), 0u);
// All vertices should be approximately on the sphere surface (radius ~5)
auto b = mesh.bounds();
for (size_t vi = 0; vi < mesh.num_vertices(); ++vi) {
auto p = mesh.vertex(vi);
double dist = std::sqrt(p.x()*p.x() + p.y()*p.y() + p.z()*p.z());
EXPECT_NEAR(dist, 5.0, 1.0); // tolerance for approximation
}
}
TEST(TrimmedSurfaceTest, BrepModel_CylinderTrimmedSurface) {
auto cyl = make_cylinder(3.0, 10.0, 16);
auto mesh = cyl.to_mesh(0.1);
EXPECT_GT(mesh.num_vertices(), 0u);
EXPECT_GT(mesh.num_faces(), 0u);
for (size_t fi = 0; fi < cyl.num_faces(); ++fi) {
const auto& face = cyl.face(static_cast<int>(fi));
EXPECT_GE(face.trimmed_surface_id, 0);
}
}
// ═══════════════════════════════════════════════════════════
// 21-22: from_surface / from_rect constructors
// ═══════════════════════════════════════════════════════════
TEST(TrimmedSurfaceTest, FromSurface_HasNoLoops) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_surface(surf);
EXPECT_TRUE(ts.loops.empty());
EXPECT_TRUE(ts.is_inside(0.5, 0.5));
}
TEST(TrimmedSurfaceTest, FromRect_CreatesOneOuterLoop) {
auto surf = make_plane();
auto ts = TrimmedSurface::from_rect(surf, 0.0, 1.0, 0.0, 1.0);
EXPECT_EQ(ts.loops.size(), 1u);
EXPECT_TRUE(ts.loops[0].is_outer);
EXPECT_EQ(ts.loops[0].p_curves.size(), 4u);
}
// ═══════════════════════════════════════════════════════════
// 23: is_valid with trimmed surfaces
// ═══════════════════════════════════════════════════════════
TEST(TrimmedSurfaceTest, BrepModel_IsValidWithTrimmedFaces) {
auto box = make_box(5, 5, 5);
EXPECT_TRUE(box.is_valid());
}