less copy protection, more size visualization
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101 lignes
2.6 KiB

  1. import bpy
  2. from mathutils import Vector, Euler
  3. from math import pi
  4. import json
  5. import os
  6. import subprocess
  7. import xml.etree.ElementTree as ET
  8. c = bpy.data.objects["cam"]
  9. selected = bpy.context.selected_objects[0]
  10. bpy.ops.object.transform_apply( rotation = True )
  11. data = {}
  12. b = selected
  13. FRONT = [0, 1, 2, "Front"]
  14. SIDE = [1, 1, 2, "Side"]
  15. TOP = [0, 0, 1, "Top"]
  16. ANGLED = [0.5, 1, 2, "Angled"]
  17. sides = [FRONT, SIDE, TOP, ANGLED]
  18. path = "/tmp/macrovision/"
  19. media_path = "/home/crux/furry/macrovision/media/"
  20. media_folder = "buildings/Houses/"
  21. os.makedirs(path, exist_ok=True)
  22. os.makedirs(os.path.join(media_path, media_folder), exist_ok=True)
  23. ns = {"svg": "http://www.w3.org/2000/svg"}
  24. ET.register_namespace("", ns["svg"])
  25. TEMPLATE = """
  26. {{
  27. name: "{0}",
  28. sides: {{
  29. {1}
  30. }}
  31. }}"""
  32. VIEW_TEMPLATE = ' "{0}": {{ height: math.unit({1}, "meters") }}'
  33. for angles in sides:
  34. local_bbox_center = 0.125 * sum((Vector(box) for box in b.bound_box), Vector())
  35. global_bbox_center = b.matrix_world @ local_bbox_center
  36. c.location = global_bbox_center
  37. c.data.ortho_scale = max(b.dimensions) * 1.1
  38. c.rotation_euler = Euler([angles[1] * pi / 2, 0, angles[0] * pi / 2])
  39. rot = c.rotation_euler.to_matrix()
  40. rot.invert()
  41. c.location = c.location + Vector([0, 0, 100]) @ rot
  42. data[angles[3]] = b.dimensions[angles[2]]
  43. output_path = os.path.join(path, f"{b.name}-{angles[3]}")
  44. bpy.context.scene.render.filepath = output_path
  45. svg_path = output_path + "0001.svg"
  46. bpy.ops.render.render(write_still = True)
  47. os.rename(svg_path, output_path + ".svg")
  48. subprocess.check_output([
  49. "potrace",
  50. "-b",
  51. "svg",
  52. output_path + ".bmp",
  53. "-o",
  54. output_path + "-fill.svg"
  55. ])
  56. line_xml = ET.parse(output_path + ".svg")
  57. fill_xml = ET.parse(output_path + "-fill.svg")
  58. lines = line_xml.find("./svg:g", namespaces=ns)
  59. fill_xml.find("svg:g[@fill='#000000']", namespaces=ns).attrib["fill"] = "#1a1a1a"
  60. fill_xml.iter().__next__().append(lines)
  61. fill_xml.write(output_path + "-combined.svg")
  62. subprocess.Popen([
  63. "inkscape",
  64. "--without-gui",
  65. "--export-plain-svg=" + os.path.join(media_path, media_folder, f"{b.name}-{angles[3]}.svg"),
  66. "--export-area-drawing",
  67. output_path + "-combined.svg"
  68. ])
  69. fill_xml.write(os.path.join(media_path, media_folder, f"{b.name}-{angles[3]}.svg"))
  70. lines = []
  71. for key, value in data.items():
  72. lines.append(VIEW_TEMPLATE.format(key, value))
  73. print(TEMPLATE.format(b.name, ",\n".join(lines)))