XmlMaterialProfile.py 19 KB

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  1. # Copyright (c) 2016 Ultimaker B.V.
  2. # Cura is released under the terms of the AGPLv3 or higher.
  3. import math
  4. import copy
  5. import io
  6. import xml.etree.ElementTree as ET
  7. import uuid
  8. from UM.Logger import Logger
  9. import UM.Dictionary
  10. import UM.Settings
  11. ## Handles serializing and deserializing material containers from an XML file
  12. class XmlMaterialProfile(UM.Settings.InstanceContainer):
  13. def __init__(self, container_id, *args, **kwargs):
  14. super().__init__(container_id, *args, **kwargs)
  15. ## Overridden from InstanceContainer
  16. def duplicate(self, new_id, new_name = None):
  17. base_file = self.getMetaDataEntry("base_file", None)
  18. if base_file:
  19. containers = UM.Settings.ContainerRegistry.getInstance().findInstanceContainers(id = base_file)
  20. if containers:
  21. new_basefile = containers[0].duplicate(self.getMetaDataEntry("brand") + "_" + new_id, new_name)
  22. base_file = new_basefile.id
  23. UM.Settings.ContainerRegistry.getInstance().addContainer(new_basefile)
  24. new_id = self.getMetaDataEntry("brand") + "_" + new_id + "_" + self.getDefinition().getId()
  25. variant = self.getMetaDataEntry("variant")
  26. if variant:
  27. variant_containers = UM.Settings.ContainerRegistry.getInstance().findInstanceContainers(id = variant)
  28. if variant_containers:
  29. new_id += "_" + variant_containers[0].getName().replace(" ", "_")
  30. new_id = UM.Settings.ContainerRegistry.getInstance().createUniqueName("material", self._id, new_id, "")
  31. result = super().duplicate(new_id, new_name)
  32. if result.getMetaDataEntry("base_file", None):
  33. result.setMetaDataEntry("base_file", base_file)
  34. return result
  35. ## Overridden from InstanceContainer
  36. def setReadOnly(self, read_only):
  37. super().setReadOnly(read_only)
  38. for container in UM.Settings.ContainerRegistry.getInstance().findInstanceContainers(GUID = self.getMetaDataEntry("GUID")):
  39. container._read_only = read_only
  40. ## Overridden from InstanceContainer
  41. def setMetaDataEntry(self, key, value):
  42. if self.isReadOnly():
  43. return
  44. super().setMetaDataEntry(key, value)
  45. basefile = self.getMetaDataEntry("base_file", self._id) #if basefile is none, this is a basefile.
  46. # Update all containers that share GUID and basefile
  47. for container in UM.Settings.ContainerRegistry.getInstance().findInstanceContainers(GUID = self.getMetaDataEntry("GUID"), base_file = basefile):
  48. container.setMetaData(copy.deepcopy(self._metadata))
  49. ## Overridden from InstanceContainer
  50. def setProperty(self, key, property_name, property_value, container = None):
  51. if self.isReadOnly():
  52. return
  53. super().setProperty(key, property_name, property_value)
  54. for container in UM.Settings.ContainerRegistry.getInstance().findInstanceContainers(GUID = self.getMetaDataEntry("GUID")):
  55. container._dirty = True
  56. ## Overridden from InstanceContainer
  57. def serialize(self):
  58. registry = UM.Settings.ContainerRegistry.getInstance()
  59. base_file = self.getMetaDataEntry("base_file", "")
  60. if base_file and self.id != base_file:
  61. # Since we create an instance of XmlMaterialProfile for each machine and nozzle in the profile,
  62. # we should only serialize the "base" material definition, since that can then take care of
  63. # serializing the machine/nozzle specific profiles.
  64. raise NotImplementedError("Cannot serialize non-root XML materials")
  65. builder = ET.TreeBuilder()
  66. root = builder.start("fdmmaterial", { "xmlns": "http://www.ultimaker.com/material"})
  67. ## Begin Metadata Block
  68. builder.start("metadata")
  69. metadata = copy.deepcopy(self.getMetaData())
  70. properties = metadata.pop("properties", {})
  71. # Metadata properties that should not be serialized.
  72. metadata.pop("status", "")
  73. metadata.pop("variant", "")
  74. metadata.pop("type", "")
  75. metadata.pop("base_file", "")
  76. ## Begin Name Block
  77. builder.start("name")
  78. builder.start("brand")
  79. builder.data(metadata.pop("brand", ""))
  80. builder.end("brand")
  81. builder.start("material")
  82. builder.data(metadata.pop("material", ""))
  83. builder.end("material")
  84. builder.start("color")
  85. builder.data(metadata.pop("color_name", ""))
  86. builder.end("color")
  87. builder.start("label")
  88. builder.data(self._name)
  89. builder.end("label")
  90. builder.end("name")
  91. ## End Name Block
  92. for key, value in metadata.items():
  93. builder.start(key)
  94. builder.data(value)
  95. builder.end(key)
  96. builder.end("metadata")
  97. ## End Metadata Block
  98. ## Begin Properties Block
  99. builder.start("properties")
  100. for key, value in properties.items():
  101. builder.start(key)
  102. builder.data(value)
  103. builder.end(key)
  104. builder.end("properties")
  105. ## End Properties Block
  106. ## Begin Settings Block
  107. builder.start("settings")
  108. if self.getDefinition().id == "fdmprinter":
  109. for instance in self.findInstances():
  110. self._addSettingElement(builder, instance)
  111. machine_container_map = {}
  112. machine_nozzle_map = {}
  113. all_containers = registry.findInstanceContainers(GUID = self.getMetaDataEntry("GUID"))
  114. for container in all_containers:
  115. definition_id = container.getDefinition().id
  116. if definition_id == "fdmprinter":
  117. continue
  118. if definition_id not in machine_container_map:
  119. machine_container_map[definition_id] = container
  120. if definition_id not in machine_nozzle_map:
  121. machine_nozzle_map[definition_id] = {}
  122. variant = container.getMetaDataEntry("variant")
  123. if variant:
  124. machine_nozzle_map[definition_id][variant] = container
  125. continue
  126. machine_container_map[definition_id] = container
  127. for definition_id, container in machine_container_map.items():
  128. definition = container.getDefinition()
  129. try:
  130. product = UM.Dictionary.findKey(self.__product_id_map, definition_id)
  131. except ValueError:
  132. continue
  133. builder.start("machine")
  134. builder.start("machine_identifier", { "manufacturer": definition.getMetaDataEntry("manufacturer", ""), "product": product})
  135. builder.end("machine_identifier")
  136. for instance in container.findInstances():
  137. if self.getDefinition().id == "fdmprinter" and self.getInstance(instance.definition.key) and self.getProperty(instance.definition.key, "value") == instance.value:
  138. # If the settings match that of the base profile, just skip since we inherit the base profile.
  139. continue
  140. self._addSettingElement(builder, instance)
  141. # Find all hotend sub-profiles corresponding to this material and machine and add them to this profile.
  142. for hotend_id, hotend in machine_nozzle_map[definition_id].items():
  143. variant_containers = registry.findInstanceContainers(id = hotend.getMetaDataEntry("variant"))
  144. if not variant_containers:
  145. continue
  146. builder.start("hotend", { "id": variant_containers[0].getName() })
  147. for instance in hotend.findInstances():
  148. if container.getInstance(instance.definition.key) and container.getProperty(instance.definition.key, "value") == instance.value:
  149. # If the settings match that of the machine profile, just skip since we inherit the machine profile.
  150. continue
  151. self._addSettingElement(builder, instance)
  152. builder.end("hotend")
  153. builder.end("machine")
  154. builder.end("settings")
  155. ## End Settings Block
  156. builder.end("fdmmaterial")
  157. root = builder.close()
  158. _indent(root)
  159. stream = io.StringIO()
  160. tree = ET.ElementTree(root)
  161. tree.write(stream, "unicode", True)
  162. return stream.getvalue()
  163. ## Overridden from InstanceContainer
  164. def deserialize(self, serialized):
  165. data = ET.fromstring(serialized)
  166. self.addMetaDataEntry("type", "material")
  167. # TODO: Add material verfication
  168. self.addMetaDataEntry("status", "unknown")
  169. metadata = data.iterfind("./um:metadata/*", self.__namespaces)
  170. for entry in metadata:
  171. tag_name = _tag_without_namespace(entry)
  172. if tag_name == "name":
  173. brand = entry.find("./um:brand", self.__namespaces)
  174. material = entry.find("./um:material", self.__namespaces)
  175. color = entry.find("./um:color", self.__namespaces)
  176. label = entry.find("./um:label", self.__namespaces)
  177. if label is not None:
  178. self.setName(label.text)
  179. else:
  180. self.setName(self._profile_name(material.text, color.text))
  181. self.addMetaDataEntry("brand", brand.text)
  182. self.addMetaDataEntry("material", material.text)
  183. self.addMetaDataEntry("color_name", color.text)
  184. continue
  185. self.addMetaDataEntry(tag_name, entry.text)
  186. if not "description" in self.getMetaData():
  187. self.addMetaDataEntry("description", "")
  188. if not "adhesion_info" in self.getMetaData():
  189. self.addMetaDataEntry("adhesion_info", "")
  190. property_values = {}
  191. properties = data.iterfind("./um:properties/*", self.__namespaces)
  192. for entry in properties:
  193. tag_name = _tag_without_namespace(entry)
  194. property_values[tag_name] = entry.text
  195. diameter = float(property_values.get("diameter", 2.85)) # In mm
  196. density = float(property_values.get("density", 1.3)) # In g/cm3
  197. self.addMetaDataEntry("properties", property_values)
  198. self.setDefinition(UM.Settings.ContainerRegistry.getInstance().findDefinitionContainers(id = "fdmprinter")[0])
  199. global_compatibility = True
  200. global_setting_values = {}
  201. settings = data.iterfind("./um:settings/um:setting", self.__namespaces)
  202. for entry in settings:
  203. key = entry.get("key")
  204. if key in self.__material_property_setting_map:
  205. self.setProperty(self.__material_property_setting_map[key], "value", entry.text, self._definition)
  206. global_setting_values[self.__material_property_setting_map[key]] = entry.text
  207. elif key in self.__unmapped_settings:
  208. if key == "hardware compatible":
  209. global_compatibility = entry.text.lower() not in ["no", "false", "0"]
  210. else:
  211. Logger.log("d", "Unsupported material setting %s", key)
  212. self._dirty = False
  213. machines = data.iterfind("./um:settings/um:machine", self.__namespaces)
  214. for machine in machines:
  215. machine_compatibility = global_compatibility
  216. machine_setting_values = {}
  217. settings = machine.iterfind("./um:setting", self.__namespaces)
  218. for entry in settings:
  219. key = entry.get("key")
  220. if key in self.__material_property_setting_map:
  221. machine_setting_values[self.__material_property_setting_map[key]] = entry.text
  222. elif key in self.__unmapped_settings:
  223. if key == "hardware compatible":
  224. machine_compatibility = entry.text.lower() not in ["no", "false", "0"]
  225. else:
  226. Logger.log("d", "Unsupported material setting %s", key)
  227. identifiers = machine.iterfind("./um:machine_identifier", self.__namespaces)
  228. for identifier in identifiers:
  229. machine_id = self.__product_id_map.get(identifier.get("product"), None)
  230. if machine_id is None:
  231. Logger.log("w", "Cannot create material for unknown machine %s", identifier.get("product"))
  232. continue
  233. definitions = UM.Settings.ContainerRegistry.getInstance().findDefinitionContainers(id = machine_id)
  234. if not definitions:
  235. Logger.log("w", "No definition found for machine ID %s", machine_id)
  236. continue
  237. definition = definitions[0]
  238. if machine_compatibility:
  239. new_material = XmlMaterialProfile(self.id + "_" + machine_id)
  240. new_material.setName(self.getName())
  241. new_material.setMetaData(copy.deepcopy(self.getMetaData()))
  242. new_material.setDefinition(definition)
  243. new_material.addMetaDataEntry("base_file", self.id)
  244. for key, value in global_setting_values.items():
  245. new_material.setProperty(key, "value", value, definition)
  246. for key, value in machine_setting_values.items():
  247. new_material.setProperty(key, "value", value, definition)
  248. new_material._dirty = False
  249. UM.Settings.ContainerRegistry.getInstance().addContainer(new_material)
  250. hotends = machine.iterfind("./um:hotend", self.__namespaces)
  251. for hotend in hotends:
  252. hotend_id = hotend.get("id")
  253. if hotend_id is None:
  254. continue
  255. variant_containers = UM.Settings.ContainerRegistry.getInstance().findInstanceContainers(id = hotend_id)
  256. if not variant_containers:
  257. # It is not really properly defined what "ID" is so also search for variants by name.
  258. variant_containers = UM.Settings.ContainerRegistry.getInstance().findInstanceContainers(definition = definition.id, name = hotend_id)
  259. if not variant_containers:
  260. Logger.log("d", "No variants found with ID or name %s for machine %s", hotend_id, definition.id)
  261. continue
  262. hotend_compatibility = machine_compatibility
  263. hotend_setting_values = {}
  264. settings = hotend.iterfind("./um:setting", self.__namespaces)
  265. for entry in settings:
  266. key = entry.get("key")
  267. if key in self.__material_property_setting_map:
  268. hotend_setting_values[self.__material_property_setting_map[key]] = entry.text
  269. elif key in self.__unmapped_settings:
  270. if key == "hardware compatible":
  271. hotend_compatibility = entry.text.lower() not in ["no", "false", "0"]
  272. else:
  273. Logger.log("d", "Unsupported material setting %s", key)
  274. if not hotend_compatibility:
  275. continue
  276. new_hotend_material = XmlMaterialProfile(self.id + "_" + machine_id + "_" + hotend_id.replace(" ", "_"))
  277. new_hotend_material.setName(self.getName())
  278. new_hotend_material.setMetaData(copy.deepcopy(self.getMetaData()))
  279. new_hotend_material.setDefinition(definition)
  280. new_hotend_material.addMetaDataEntry("base_file", self.id)
  281. new_hotend_material.addMetaDataEntry("variant", variant_containers[0].id)
  282. for key, value in global_setting_values.items():
  283. new_hotend_material.setProperty(key, "value", value, definition)
  284. for key, value in machine_setting_values.items():
  285. new_hotend_material.setProperty(key, "value", value, definition)
  286. for key, value in hotend_setting_values.items():
  287. new_hotend_material.setProperty(key, "value", value, definition)
  288. new_hotend_material._dirty = False
  289. UM.Settings.ContainerRegistry.getInstance().addContainer(new_hotend_material)
  290. if not global_compatibility:
  291. # Change the type of this container so it is not shown as an option in menus.
  292. # This uses InstanceContainer.setMetaDataEntry because otherwise all containers that
  293. # share this basefile are also updated.
  294. super().setMetaDataEntry("type", "incompatible_material")
  295. def _addSettingElement(self, builder, instance):
  296. try:
  297. key = UM.Dictionary.findKey(self.__material_property_setting_map, instance.definition.key)
  298. except ValueError:
  299. return
  300. builder.start("setting", { "key": key })
  301. builder.data(str(instance.value))
  302. builder.end("setting")
  303. def _profile_name(self, material_name, color_name):
  304. if color_name != "Generic":
  305. return "%s %s" % (color_name, material_name)
  306. else:
  307. return material_name
  308. # Map XML file setting names to internal names
  309. __material_property_setting_map = {
  310. "print temperature": "material_print_temperature",
  311. "heated bed temperature": "material_bed_temperature",
  312. "standby temperature": "material_standby_temperature",
  313. "processing temperature graph": "material_flow_temp_graph",
  314. "print cooling": "cool_fan_speed",
  315. "retraction amount": "retraction_amount",
  316. "retraction speed": "retraction_speed"
  317. }
  318. __unmapped_settings = [
  319. "hardware compatible"
  320. ]
  321. # Map XML file product names to internal ids
  322. # TODO: Move this to definition's metadata
  323. __product_id_map = {
  324. "Ultimaker 2": "ultimaker2",
  325. "Ultimaker 2+": "ultimaker2_plus",
  326. "Ultimaker 2 Go": "ultimaker2_go",
  327. "Ultimaker 2 Extended": "ultimaker2_extended",
  328. "Ultimaker 2 Extended+": "ultimaker2_extended_plus",
  329. "Ultimaker Original": "ultimaker_original",
  330. "Ultimaker Original+": "ultimaker_original_plus"
  331. }
  332. # Map of recognised namespaces with a proper prefix.
  333. __namespaces = {
  334. "um": "http://www.ultimaker.com/material"
  335. }
  336. ## Helper function for pretty-printing XML because ETree is stupid
  337. def _indent(elem, level = 0):
  338. i = "\n" + level * " "
  339. if len(elem):
  340. if not elem.text or not elem.text.strip():
  341. elem.text = i + " "
  342. if not elem.tail or not elem.tail.strip():
  343. elem.tail = i
  344. for elem in elem:
  345. _indent(elem, level + 1)
  346. if not elem.tail or not elem.tail.strip():
  347. elem.tail = i
  348. else:
  349. if level and (not elem.tail or not elem.tail.strip()):
  350. elem.tail = i
  351. # The namespace is prepended to the tag name but between {}.
  352. # We are only interested in the actual tag name, so discard everything
  353. # before the last }
  354. def _tag_without_namespace(element):
  355. return element.tag[element.tag.rfind("}") + 1:]