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@@ -0,0 +1,87 @@
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+#include <test_common.h>
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+#include <igl/grad.h>
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+#include <igl/per_face_normals.h>
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+#include <igl/doublearea.h>
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+#include <igl/boundary_loop.h>
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+#include <igl/lscm.h>
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+#include <igl/EPS.h>
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+
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+double compute_lscm_energy(
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+ const Eigen::MatrixXd& V,
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+ const Eigen::MatrixXi& F,
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+ const Eigen::VectorXd& W_flat)
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+{
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+ const int nV = V.rows();
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+ const int nF = F.rows();
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+
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+ assert(V.cols() == 3);
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+ assert(F.cols() == 3);
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+ assert(V_uv.rows() == nV);
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+ assert(V_uv.cols() == 2);
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+
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+ // Compute gradient
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+ Eigen::SparseMatrix<double> G;
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+ igl::grad(V, F, G);
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+
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+ Eigen::VectorXd nablaU_flat = G * W_flat.head(nV);
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+ Eigen::VectorXd nablaV_flat = G * W_flat.tail(nV);
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+
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+ Eigen::MatrixXd nablaU(nF, 3);
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+ Eigen::MatrixXd nablaV(nF, 3);
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+ nablaU << nablaU_flat.segment(0, nF), nablaU_flat.segment(nF, nF), nablaU_flat.segment(2 * nF, nF);
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+ nablaV << nablaV_flat.segment(0, nF), nablaV_flat.segment(nF, nF), nablaV_flat.segment(2 * nF, nF);
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+
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+ // Compute face normal
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+ Eigen::MatrixXd N;
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+ igl::per_face_normals(V, F, N);
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+
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+ // Compute area
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+ Eigen::VectorXd dblA;
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+ igl::doublearea(V, F, dblA);
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+
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+ // Sum up
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+ double sum = 0;
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+
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+ for (int i = 0; i < nF; ++i) {
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+ Eigen::Vector3d N_i = N.row(i);
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+ Eigen::Vector3d nablaU_i = nablaU.row(i);
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+ Eigen::Vector3d nablaV_i = nablaV.row(i);
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+
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+ // Rotate nablaU_i about N_i by 90 degrees ccw
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+ nablaU_i = N_i.cross(nablaU_i);
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+
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+ sum += 0.5 * dblA[i] * (nablaU_i - nablaV_i).squaredNorm();
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+ }
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+
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+ return 0.5 * sum;
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+}
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+
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+TEST_CASE("lscm: lscm_energy_check", "[igl]")
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+{
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+ // Load a mesh in OFF format
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+ Eigen::MatrixXd V;
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+ Eigen::MatrixXi F;
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+ igl::read_triangle_mesh(test_common::data_path("camelhead.off"), V, F);
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+
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+ // Fix two points on the boundary
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+ Eigen::VectorXi bnd, b(2, 1);
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+ igl::boundary_loop(F, bnd);
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+ b(0) = bnd(0);
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+ b(1) = bnd(bnd.size() / 2);
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+ Eigen::MatrixXd bc(2, 2);
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+ bc << 0, 0, 1, 0;
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+
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+ // LSCM parametrization
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+ Eigen::MatrixXd V_uv;
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+ Eigen::SparseMatrix<double> Q;
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+ igl::lscm(V, F, b, bc, V_uv, Q);
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+
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+ Eigen::VectorXd W_flat(2 * V.rows());
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+ W_flat << V_uv.col(0), V_uv.col(1);
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+
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+ // Consistency check
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+ double e1 = compute_lscm_energy(V, F, W_flat);
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+ double e2 = 0.5 * W_flat.transpose() * Q * W_flat;
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+
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+ REQUIRE(std::abs(e1 - e2) < igl::EPS<double>());
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+}
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