402_PolyharmonicDeformation.py 3.0 KB

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  1. # This file is part of libigl, a simple c++ geometry processing library.
  2. #
  3. # Copyright (C) 2017 Sebastian Koch <s.koch@tu-berlin.de> and Daniele Panozzo <daniele.panozzo@gmail.com>
  4. #
  5. # This Source Code Form is subject to the terms of the Mozilla Public License
  6. # v. 2.0. If a copy of the MPL was not distributed with this file, You can
  7. # obtain one at http://mozilla.org/MPL/2.0/.
  8. import sys, os
  9. # Add the igl library to the modules search path
  10. sys.path.insert(0, os.getcwd() + "/../")
  11. import pyigl as igl
  12. from shared import TUTORIAL_SHARED_PATH, check_dependencies
  13. dependencies = ["viewer"]
  14. check_dependencies(dependencies)
  15. z_max = 1.0
  16. z_dir = -0.03
  17. k = 2
  18. resolve = True
  19. V = igl.eigen.MatrixXd()
  20. U = igl.eigen.MatrixXd()
  21. Z = igl.eigen.MatrixXd()
  22. F = igl.eigen.MatrixXi()
  23. b = igl.eigen.MatrixXi()
  24. bc = igl.eigen.MatrixXd()
  25. def pre_draw(viewer):
  26. global z_max, z_dir, k, resolve, V, U, Z, F, b, bc
  27. if resolve:
  28. igl.harmonic(V, F, b, bc, k, Z)
  29. resolve = False
  30. U.setCol(2, z_max * Z)
  31. viewer.data.set_vertices(U)
  32. viewer.data.compute_normals()
  33. if viewer.core.is_animating:
  34. z_max += z_dir
  35. z_dir *= (-1.0 if z_max >= 1.0 or z_max <= 0.0 else 1.0)
  36. return False
  37. def key_down(viewer, key, mods):
  38. global z_max, z_dir, k, resolve, V, U, Z, F, b, bc
  39. if key == ord(' '):
  40. viewer.core.is_animating = not viewer.core.is_animating
  41. elif key == ord('.'):
  42. k = k + 1
  43. k = (4 if k > 4 else k)
  44. resolve = True
  45. elif key == ord(','):
  46. k = k - 1
  47. k = (1 if k < 1 else k)
  48. resolve = True
  49. return True
  50. igl.readOBJ(TUTORIAL_SHARED_PATH + "bump-domain.obj", V, F)
  51. U = igl.eigen.MatrixXd(V)
  52. # Find boundary vertices outside annulus
  53. Vrn = V.rowwiseNorm()
  54. is_outer = [Vrn[i] - 1.00 > -1e-15 for i in range(0, V.rows())]
  55. is_inner = [Vrn[i] - 0.15 < 1e-15 for i in range(0, V.rows())]
  56. in_b = [is_outer[i] or is_inner[i] for i in range(0, len(is_outer))]
  57. b = igl.eigen.MatrixXi([[i for i in range(0, V.rows()) if (in_b[i])]]).transpose()
  58. bc.resize(b.size(), 1)
  59. for bi in range(0, b.size()):
  60. bc[bi] = (0.0 if is_outer[b[bi]] else 1.0)
  61. # Pseudo-color based on selection
  62. C = igl.eigen.MatrixXd(F.rows(), 3)
  63. purple = igl.eigen.MatrixXd([[80.0 / 255.0, 64.0 / 255.0, 255.0 / 255.0]])
  64. gold = igl.eigen.MatrixXd([[255.0 / 255.0, 228.0 / 255.0, 58.0 / 255.0]])
  65. for f in range(0, F.rows()):
  66. if in_b[F[f, 0]] and in_b[F[f, 1]] and in_b[F[f, 2]]:
  67. C.setRow(f, purple)
  68. else:
  69. C.setRow(f, gold)
  70. # Plot the mesh with pseudocolors
  71. viewer = igl.viewer.Viewer()
  72. viewer.data.set_mesh(U, F)
  73. viewer.core.show_lines = False
  74. viewer.data.set_colors(C)
  75. viewer.core.trackball_angle = igl.eigen.Quaterniond(0.81,-0.58,-0.03,-0.03)
  76. viewer.core.trackball_angle.normalize()
  77. viewer.callback_pre_draw = pre_draw
  78. viewer.callback_key_down = key_down
  79. viewer.core.is_animating = True
  80. viewer.core.animation_max_fps = 30.0
  81. print("Press [space] to toggle animation.")
  82. print("Press '.' to increase k.")
  83. print("Press ',' to decrease k.")
  84. viewer.launch()