[phy, cfg] = case_config(); load(cfg.meshMatFile); mesh.incIndex = findTri(phy.inc, mesh); mesh.outIndex = findTri(phy.out, mesh); [mesh.PBCIndex, mesh.origIndex] = findPBCIndex(phy.src, phy.dst, cfg.pbcAngle, mesh); mesh.PBCphi = cfg.pbcPhi; xr = dlmread('matlab_x_real.txt'); xi = dlmread('matlab_x_imag.txt'); solver.x = xr + 1i*xi; solver.dof = numel(solver.x); % reconstruct vertex fields like C++ post try [~,~,~,nEv] = get_ele_vertices(mesh, solver); fid=fopen('matlab_norme_vert.txt','w'); fprintf(fid,'max=%.6g\nmean=%.6g\nmin=%.6g\nn=%d\n', max(nEv(:)), mean(nEv(:)), min(nEv(:)), numel(nEv)); fclose(fid); dlmwrite('matlab_normE_vert.txt', nEv(:), 'precision', 16); fprintf('vertex OK max=%.6g\n', max(nEv(:))); catch ME fprintf('err %s\n', ME.message); end