BuildVolume.py 12 KB

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  1. # Copyright (c) 2015 Ultimaker B.V.
  2. # Cura is released under the terms of the AGPLv3 or higher.
  3. from UM.Scene.SceneNode import SceneNode
  4. from UM.Application import Application
  5. from UM.Resources import Resources
  6. from UM.Mesh.MeshBuilder import MeshBuilder
  7. from UM.Math.Vector import Vector
  8. from UM.Math.Color import Color
  9. from UM.Math.AxisAlignedBox import AxisAlignedBox
  10. from UM.Math.Polygon import Polygon
  11. from UM.View.RenderBatch import RenderBatch
  12. from UM.View.GL.OpenGL import OpenGL
  13. import numpy
  14. class BuildVolume(SceneNode):
  15. VolumeOutlineColor = Color(12, 169, 227, 255)
  16. def __init__(self, parent = None):
  17. super().__init__(parent)
  18. self._width = 0
  19. self._height = 0
  20. self._depth = 0
  21. self._shader = None
  22. self._grid_mesh = None
  23. self._grid_shader = None
  24. self._disallowed_areas = []
  25. self._disallowed_area_mesh = None
  26. self.setCalculateBoundingBox(False)
  27. self._active_profile = None
  28. self._active_instance = None
  29. Application.getInstance().getMachineManager().activeMachineInstanceChanged.connect(self._onActiveInstanceChanged)
  30. self._onActiveInstanceChanged()
  31. Application.getInstance().getMachineManager().activeProfileChanged.connect(self._onActiveProfileChanged)
  32. self._onActiveProfileChanged()
  33. def setWidth(self, width):
  34. if width: self._width = width
  35. def setHeight(self, height):
  36. if height: self._height = height
  37. def setDepth(self, depth):
  38. if depth: self._depth = depth
  39. def getDisallowedAreas(self):
  40. return self._disallowed_areas
  41. def setDisallowedAreas(self, areas):
  42. self._disallowed_areas = areas
  43. def render(self, renderer):
  44. if not self.getMeshData():
  45. return True
  46. if not self._shader:
  47. self._shader = OpenGL.getInstance().createShaderProgram(Resources.getPath(Resources.Shaders, "default.shader"))
  48. self._grid_shader = OpenGL.getInstance().createShaderProgram(Resources.getPath(Resources.Shaders, "grid.shader"))
  49. renderer.queueNode(self, mode = RenderBatch.RenderMode.Lines)
  50. renderer.queueNode(self, mesh = self._grid_mesh, shader = self._grid_shader, backface_cull = True)
  51. if self._disallowed_area_mesh:
  52. renderer.queueNode(self, mesh = self._disallowed_area_mesh, shader = self._shader, transparent = True, backface_cull = True, sort = -9)
  53. return True
  54. def rebuild(self):
  55. if self._width == 0 or self._height == 0 or self._depth == 0:
  56. return
  57. min_w = -self._width / 2
  58. max_w = self._width / 2
  59. min_h = 0.0
  60. max_h = self._height
  61. min_d = -self._depth / 2
  62. max_d = self._depth / 2
  63. mb = MeshBuilder()
  64. mb.addLine(Vector(min_w, min_h, min_d), Vector(max_w, min_h, min_d), color = self.VolumeOutlineColor)
  65. mb.addLine(Vector(min_w, min_h, min_d), Vector(min_w, max_h, min_d), color = self.VolumeOutlineColor)
  66. mb.addLine(Vector(min_w, max_h, min_d), Vector(max_w, max_h, min_d), color = self.VolumeOutlineColor)
  67. mb.addLine(Vector(max_w, min_h, min_d), Vector(max_w, max_h, min_d), color = self.VolumeOutlineColor)
  68. mb.addLine(Vector(min_w, min_h, max_d), Vector(max_w, min_h, max_d), color = self.VolumeOutlineColor)
  69. mb.addLine(Vector(min_w, min_h, max_d), Vector(min_w, max_h, max_d), color = self.VolumeOutlineColor)
  70. mb.addLine(Vector(min_w, max_h, max_d), Vector(max_w, max_h, max_d), color = self.VolumeOutlineColor)
  71. mb.addLine(Vector(max_w, min_h, max_d), Vector(max_w, max_h, max_d), color = self.VolumeOutlineColor)
  72. mb.addLine(Vector(min_w, min_h, min_d), Vector(min_w, min_h, max_d), color = self.VolumeOutlineColor)
  73. mb.addLine(Vector(max_w, min_h, min_d), Vector(max_w, min_h, max_d), color = self.VolumeOutlineColor)
  74. mb.addLine(Vector(min_w, max_h, min_d), Vector(min_w, max_h, max_d), color = self.VolumeOutlineColor)
  75. mb.addLine(Vector(max_w, max_h, min_d), Vector(max_w, max_h, max_d), color = self.VolumeOutlineColor)
  76. self.setMeshData(mb.getData())
  77. mb = MeshBuilder()
  78. mb.addQuad(
  79. Vector(min_w, min_h - 0.2, min_d),
  80. Vector(max_w, min_h - 0.2, min_d),
  81. Vector(max_w, min_h - 0.2, max_d),
  82. Vector(min_w, min_h - 0.2, max_d)
  83. )
  84. self._grid_mesh = mb.getData()
  85. for n in range(0, 6):
  86. v = self._grid_mesh.getVertex(n)
  87. self._grid_mesh.setVertexUVCoordinates(n, v[0], v[2])
  88. disallowed_area_height = 0.1
  89. disallowed_area_size = 0
  90. if self._disallowed_areas:
  91. mb = MeshBuilder()
  92. color = Color(0.0, 0.0, 0.0, 0.15)
  93. for polygon in self._disallowed_areas:
  94. points = polygon.getPoints()
  95. first = Vector(self._clamp(points[0][0], min_w, max_w), disallowed_area_height, self._clamp(points[0][1], min_d, max_d))
  96. previous_point = Vector(self._clamp(points[0][0], min_w, max_w), disallowed_area_height, self._clamp(points[0][1], min_d, max_d))
  97. for point in points:
  98. new_point = Vector(self._clamp(point[0], min_w, max_w), disallowed_area_height, self._clamp(point[1], min_d, max_d))
  99. mb.addFace(first, previous_point, new_point, color = color)
  100. previous_point = new_point
  101. # Find the largest disallowed area to exclude it from the maximum scale bounds.
  102. # This is a very nasty hack. This pretty much only works for UM machines. This disallowed area_size needs
  103. # A -lot- of rework at some point in the future: TODO
  104. if numpy.min(points[:, 1]) >= 0: # This filters out all areas that have points to the left of the centre. This is done to filter the skirt area.
  105. size = abs(numpy.max(points[:, 1]) - numpy.min(points[:, 1]))
  106. else:
  107. size = 0
  108. disallowed_area_size = max(size, disallowed_area_size)
  109. self._disallowed_area_mesh = mb.getData()
  110. else:
  111. self._disallowed_area_mesh = None
  112. self._aabb = AxisAlignedBox(minimum = Vector(min_w, min_h - 1.0, min_d), maximum = Vector(max_w, max_h, max_d))
  113. skirt_size = 0.0
  114. profile = Application.getInstance().getMachineManager().getWorkingProfile()
  115. if profile:
  116. skirt_size = self._getSkirtSize(profile)
  117. # As this works better for UM machines, we only add the dissallowed_area_size for the z direction.
  118. # This is probably wrong in all other cases. TODO!
  119. # The +1 and -1 is added as there is always a bit of extra room required to work properly.
  120. scale_to_max_bounds = AxisAlignedBox(
  121. minimum = Vector(min_w + skirt_size + 1, min_h, min_d + disallowed_area_size - skirt_size + 1),
  122. maximum = Vector(max_w - skirt_size - 1, max_h, max_d - disallowed_area_size + skirt_size - 1)
  123. )
  124. Application.getInstance().getController().getScene()._maximum_bounds = scale_to_max_bounds
  125. def _onActiveInstanceChanged(self):
  126. self._active_instance = Application.getInstance().getMachineManager().getActiveMachineInstance()
  127. if self._active_instance:
  128. self._width = self._active_instance.getMachineSettingValue("machine_width")
  129. self._height = self._active_instance.getMachineSettingValue("machine_height")
  130. self._depth = self._active_instance.getMachineSettingValue("machine_depth")
  131. self._updateDisallowedAreas()
  132. self.rebuild()
  133. def _onActiveProfileChanged(self):
  134. if self._active_profile:
  135. self._active_profile.settingValueChanged.disconnect(self._onSettingValueChanged)
  136. self._active_profile = Application.getInstance().getMachineManager().getWorkingProfile()
  137. if self._active_profile:
  138. self._active_profile.settingValueChanged.connect(self._onSettingValueChanged)
  139. self._updateDisallowedAreas()
  140. self.rebuild()
  141. def _onSettingValueChanged(self, setting):
  142. if setting in self._skirt_settings:
  143. self._updateDisallowedAreas()
  144. self.rebuild()
  145. def _updateDisallowedAreas(self):
  146. if not self._active_instance or not self._active_profile:
  147. return
  148. disallowed_areas = self._active_instance.getMachineSettingValue("machine_disallowed_areas")
  149. areas = []
  150. skirt_size = 0.0
  151. if self._active_profile:
  152. skirt_size = self._getSkirtSize(self._active_profile)
  153. if disallowed_areas:
  154. # Extend every area already in the disallowed_areas with the skirt size.
  155. for area in disallowed_areas:
  156. poly = Polygon(numpy.array(area, numpy.float32))
  157. poly = poly.getMinkowskiHull(Polygon(numpy.array([
  158. [-skirt_size, 0],
  159. [-skirt_size * 0.707, skirt_size * 0.707],
  160. [0, skirt_size],
  161. [skirt_size * 0.707, skirt_size * 0.707],
  162. [skirt_size, 0],
  163. [skirt_size * 0.707, -skirt_size * 0.707],
  164. [0, -skirt_size],
  165. [-skirt_size * 0.707, -skirt_size * 0.707]
  166. ], numpy.float32)))
  167. areas.append(poly)
  168. # Add the skirt areas arround the borders of the build plate.
  169. if skirt_size > 0:
  170. half_machine_width = self._active_instance.getMachineSettingValue("machine_width") / 2
  171. half_machine_depth = self._active_instance.getMachineSettingValue("machine_depth") / 2
  172. areas.append(Polygon(numpy.array([
  173. [-half_machine_width, -half_machine_depth],
  174. [-half_machine_width, half_machine_depth],
  175. [-half_machine_width + skirt_size, half_machine_depth - skirt_size],
  176. [-half_machine_width + skirt_size, -half_machine_depth + skirt_size]
  177. ], numpy.float32)))
  178. areas.append(Polygon(numpy.array([
  179. [half_machine_width, half_machine_depth],
  180. [half_machine_width, -half_machine_depth],
  181. [half_machine_width - skirt_size, -half_machine_depth + skirt_size],
  182. [half_machine_width - skirt_size, half_machine_depth - skirt_size]
  183. ], numpy.float32)))
  184. areas.append(Polygon(numpy.array([
  185. [-half_machine_width, half_machine_depth],
  186. [half_machine_width, half_machine_depth],
  187. [half_machine_width - skirt_size, half_machine_depth - skirt_size],
  188. [-half_machine_width + skirt_size, half_machine_depth - skirt_size]
  189. ], numpy.float32)))
  190. areas.append(Polygon(numpy.array([
  191. [half_machine_width, -half_machine_depth],
  192. [-half_machine_width, -half_machine_depth],
  193. [-half_machine_width + skirt_size, -half_machine_depth + skirt_size],
  194. [half_machine_width - skirt_size, -half_machine_depth + skirt_size]
  195. ], numpy.float32)))
  196. self._disallowed_areas = areas
  197. def _getSkirtSize(self, profile):
  198. skirt_size = 0.0
  199. adhesion_type = profile.getSettingValue("adhesion_type")
  200. if adhesion_type == "skirt":
  201. skirt_distance = profile.getSettingValue("skirt_gap")
  202. skirt_line_count = profile.getSettingValue("skirt_line_count")
  203. skirt_size = skirt_distance + (skirt_line_count * profile.getSettingValue("skirt_line_width"))
  204. elif adhesion_type == "brim":
  205. skirt_size = profile.getSettingValue("brim_width")
  206. elif adhesion_type == "raft":
  207. skirt_size = profile.getSettingValue("raft_margin")
  208. if profile.getSettingValue("draft_shield_enabled"):
  209. skirt_size += profile.getSettingValue("draft_shield_dist")
  210. if profile.getSettingValue("xy_offset"):
  211. skirt_size += profile.getSettingValue("xy_offset")
  212. return skirt_size
  213. def _clamp(self, value, min_value, max_value):
  214. return max(min(value, max_value), min_value)
  215. _skirt_settings = ["adhesion_type", "skirt_gap", "skirt_line_count", "skirt_line_width", "brim_width", "brim_line_count", "raft_margin", "draft_shield_enabled", "draft_shield_dist", "xy_offset"]