605_Tetgen.py 1.9 KB

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  1. # Add the igl library to the modules search path
  2. import sys, os
  3. sys.path.insert(0, os.getcwd() + "/../")
  4. import pyigl as igl
  5. TUTORIAL_SHARED_PATH = "../../tutorial/shared/"
  6. # Input polygon
  7. V = igl.eigen.MatrixXd()
  8. F = igl.eigen.MatrixXi()
  9. B = igl.eigen.MatrixXd()
  10. # Tetrahedralized interior
  11. TV = igl.eigen.MatrixXd()
  12. TT = igl.eigen.MatrixXi()
  13. TF = igl.eigen.MatrixXi()
  14. viewer = igl.viewer.Viewer()
  15. def key_down(viewer, key, modifier):
  16. if key >= ord('1') and key <= ord('9'):
  17. t = float((key - ord('1')) + 1) / 9.0
  18. v = igl.eigen.MatrixXd()
  19. v = B.col(2) - B.col(2).minCoeff()
  20. v /= v.col(0).maxCoeff()
  21. s = []
  22. for i in range(v.size()):
  23. if v[i, 0] < t:
  24. s.append(i)
  25. V_temp = igl.eigen.MatrixXd(len(s) * 4, 3)
  26. F_temp = igl.eigen.MatrixXi(len(s) * 4, 3)
  27. for i in range(len(s)):
  28. V_temp.setRow(i * 4 + 0, TV.row(TT[s[i], 0]))
  29. V_temp.setRow(i * 4 + 1, TV.row(TT[s[i], 1]))
  30. V_temp.setRow(i * 4 + 2, TV.row(TT[s[i], 2]))
  31. V_temp.setRow(i * 4 + 3, TV.row(TT[s[i], 3]))
  32. F_temp.setRow(i * 4 + 0, igl.eigen.MatrixXi([[(i*4)+0, (i*4)+1, (i*4)+3]]))
  33. F_temp.setRow(i * 4 + 1, igl.eigen.MatrixXi([[(i*4)+0, (i*4)+2, (i*4)+1]]))
  34. F_temp.setRow(i * 4 + 2, igl.eigen.MatrixXi([[(i*4)+3, (i*4)+2, (i*4)+0]]))
  35. F_temp.setRow(i * 4 + 3, igl.eigen.MatrixXi([[(i*4)+1, (i*4)+2, (i*4)+3]]))
  36. viewer.data.clear()
  37. viewer.data.set_mesh(V_temp, F_temp)
  38. viewer.data.set_face_based(True)
  39. else:
  40. return False
  41. return True
  42. # Load a surface mesh
  43. igl.readOFF(TUTORIAL_SHARED_PATH + "fertility.off", V, F)
  44. # Tetrahedralize the interior
  45. igl.copyleft_tetgen_tetrahedralize(V, F, "pq1.414Y", TV, TT, TF)
  46. # Compute barycenters
  47. igl.barycenter(TV, TT, B)
  48. # Plot the generated mesh
  49. key_down(viewer, ord('5'), 0)
  50. viewer.callback_key_down = key_down
  51. viewer.launch()