less copy protection, more size visualization
25'ten fazla konu seçemezsiniz Konular bir harf veya rakamla başlamalı, kısa çizgiler ('-') içerebilir ve en fazla 35 karakter uzunluğunda olabilir.
 
 
 

130 satır
3.7 KiB

  1. import bpy
  2. from mathutils import Vector, Euler
  3. from math import pi, sqrt
  4. import json
  5. import os
  6. import pathlib
  7. VIEW_DATA = {
  8. "Front": [0, 1, 2, "Front"],
  9. "Angled": [0.5, 1, 2, "Angled"],
  10. "Side": [1, 1, 2, "Side"],
  11. "Back Angled": [1.5, 1, 2, "Back Angled"],
  12. "Back": [2, 1, 2, "Back"],
  13. "Top": [0, 0, 1, "Top"],
  14. "Bottom": [0, 2, 1, "Bottom"]
  15. }
  16. def get_bounds(objects):
  17. xl = []
  18. yl = []
  19. zl = []
  20. for obj in objects:
  21. if not obj.hide_render:
  22. for bounds in obj.bound_box:
  23. v = obj.matrix_world @ Vector(bounds)
  24. xl += [v[0] for c in obj.bound_box]
  25. yl += [v[1] for c in obj.bound_box]
  26. zl += [v[2] for c in obj.bound_box]
  27. return (
  28. Vector([min(xl), min(yl), min(zl)]),
  29. Vector([max(xl), max(yl), max(zl)])
  30. )
  31. path_info = pathlib.Path(bpy.data.filepath).parent.joinpath("macrovision-directory.txt")
  32. config_path = pathlib.Path(open(path_info).read().strip())
  33. json_path = config_path.joinpath("config.json")
  34. config = json.load(open(json_path.resolve(), encoding="utf-8"))
  35. parent_workdir = config["work-directory"]
  36. c = bpy.data.objects["cam"]
  37. c.data.type = "ORTHO"
  38. bpy.data.scenes["Scene"].render.resolution_x = 2000
  39. bpy.data.scenes["Scene"].render.resolution_y = 2000
  40. bpy.data.scenes["Scene"].render.film_transparent = True
  41. bpy.data.scenes["Scene"].view_settings.view_transform = "Raw"
  42. bpy.data.worlds["World"].node_tree.nodes["Background"].inputs[1].default_value = 0
  43. mv = bpy.data.collections["Macrovision"]
  44. collections = mv.children
  45. all_data = {}
  46. all_data["name"] = mv["MVName"]
  47. all_data["kind"] = mv["MVKind"]
  48. all_data["forms"] = []
  49. default_views = []
  50. for view in mv["MVViews"].split(","):
  51. default_views.append(VIEW_DATA[view])
  52. workdir = pathlib.Path(parent_workdir).joinpath(all_data["name"])
  53. os.makedirs(workdir, exist_ok=True)
  54. for coll in collections:
  55. coll.hide_render = True
  56. for coll in collections:
  57. coll.hide_render = False
  58. bpy.ops.object.select_all(action='DESELECT')
  59. for obj in coll.objects:
  60. obj.select_set(True)
  61. data = {}
  62. data["name"] = coll.name
  63. data["views"] = []
  64. bound_min, bound_max = get_bounds(coll.objects)
  65. dimensions = bound_max - bound_min
  66. size = max(dimensions)
  67. global_bbox_center = 0.5 * (bound_min + bound_max)
  68. view_list = []
  69. if "Views" in coll:
  70. for view in coll["Views"].split(","):
  71. view_list.append(VIEW_DATA[view])
  72. else:
  73. view_list = default_views
  74. for angles in view_list:
  75. c.location = global_bbox_center
  76. c.rotation_euler = Euler([angles[1] * pi / 2, 0, angles[0] * pi / 2])
  77. print(list(bound_min) + list(bound_max))
  78. _, c.data.ortho_scale = c.camera_fit_coords(bpy.context.evaluated_depsgraph_get(), list(bound_min) + list(bound_max))
  79. c.location = Vector([c.location[0], c.location[1], c.location[2]])
  80. c.data.ortho_scale *= 1.2
  81. rot = c.rotation_euler.to_matrix()
  82. rot.invert()
  83. c.location += Vector([0, 0, size * 2]) @ rot
  84. c.data.clip_start = size / 4
  85. c.data.clip_end = size * 8
  86. data["views"].append({
  87. "name": angles[3],
  88. "height": dimensions[angles[2]]
  89. })
  90. if "Volume" in coll:
  91. data["views"][-1]["volume"] = coll["Volume"]
  92. filename = f"{coll.name}-{angles[3]}.png"
  93. bpy.context.scene.render.filepath = workdir.joinpath(filename).resolve().__str__()
  94. bpy.ops.render.render(write_still = True)
  95. all_data["forms"].append(data)
  96. coll.hide_render = True
  97. with open(workdir.joinpath("data.json"), "w") as file:
  98. json.dump(all_data, file)