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724 lines
37 KiB
Python
724 lines
37 KiB
Python
# Copyright (c) 2018 Ultimaker B.V.
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# Cura is released under the terms of the LGPLv3 or higher.
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from collections import defaultdict, OrderedDict
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import copy
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import uuid
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from typing import Dict, Optional, TYPE_CHECKING, Any, Set, List, cast, Tuple
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from PyQt5.Qt import QTimer, QObject, pyqtSignal, pyqtSlot
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from UM.Application import Application
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from UM.ConfigurationErrorMessage import ConfigurationErrorMessage
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from UM.Logger import Logger
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from UM.Settings.ContainerRegistry import ContainerRegistry
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from UM.Settings.SettingFunction import SettingFunction
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from UM.Util import parseBool
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from .MaterialNode import MaterialNode
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from .MaterialGroup import MaterialGroup
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from .VariantType import VariantType
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if TYPE_CHECKING:
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from UM.Settings.DefinitionContainer import DefinitionContainer
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from UM.Settings.InstanceContainer import InstanceContainer
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from cura.Settings.GlobalStack import GlobalStack
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from cura.Settings.ExtruderStack import ExtruderStack
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#
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# MaterialManager maintains a number of maps and trees for material lookup.
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# The models GUI and QML use are now only dependent on the MaterialManager. That means as long as the data in
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# MaterialManager gets updated correctly, the GUI models should be updated correctly too, and the same goes for GUI.
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#
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# For now, updating the lookup maps and trees here is very simple: we discard the old data completely and recreate them
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# again. This means the update is exactly the same as initialization. There are performance concerns about this approach
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# but so far the creation of the tables and maps is very fast and there is no noticeable slowness, we keep it like this
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# because it's simple.
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#
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class MaterialManager(QObject):
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materialsUpdated = pyqtSignal() # Emitted whenever the material lookup tables are updated.
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favoritesUpdated = pyqtSignal() # Emitted whenever the favorites are changed
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def __init__(self, container_registry, parent = None):
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super().__init__(parent)
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self._application = Application.getInstance()
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self._container_registry = container_registry # type: ContainerRegistry
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# Material_type -> generic material metadata
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self._fallback_materials_map = dict() # type: Dict[str, Dict[str, Any]]
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# Root_material_id -> MaterialGroup
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self._material_group_map = dict() # type: Dict[str, MaterialGroup]
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# Approximate diameter str
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self._diameter_machine_nozzle_buildplate_material_map = dict() # type: Dict[str, Dict[str, MaterialNode]]
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# We're using these two maps to convert between the specific diameter material id and the generic material id
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# because the generic material ids are used in qualities and definitions, while the specific diameter material is meant
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# i.e. generic_pla -> generic_pla_175
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# root_material_id -> approximate diameter str -> root_material_id for that diameter
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self._material_diameter_map = defaultdict(dict) # type: Dict[str, Dict[str, str]]
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# Material id including diameter (generic_pla_175) -> material root id (generic_pla)
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self._diameter_material_map = dict() # type: Dict[str, str]
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# This is used in Legacy UM3 send material function and the material management page.
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# GUID -> a list of material_groups
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self._guid_material_groups_map = defaultdict(list) # type: Dict[str, List[MaterialGroup]]
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# The machine definition ID for the non-machine-specific materials.
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# This is used as the last fallback option if the given machine-specific material(s) cannot be found.
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self._default_machine_definition_id = "fdmprinter"
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self._default_approximate_diameter_for_quality_search = "3"
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# When a material gets added/imported, there can be more than one InstanceContainers. In those cases, we don't
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# want to react on every container/metadata changed signal. The timer here is to buffer it a bit so we don't
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# react too many time.
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self._update_timer = QTimer(self)
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self._update_timer.setInterval(300)
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self._update_timer.setSingleShot(True)
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self._update_timer.timeout.connect(self._updateMaps)
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self._container_registry.containerMetaDataChanged.connect(self._onContainerMetadataChanged)
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self._container_registry.containerAdded.connect(self._onContainerMetadataChanged)
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self._container_registry.containerRemoved.connect(self._onContainerMetadataChanged)
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self._favorites = set() # type: Set[str]
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def initialize(self) -> None:
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# Find all materials and put them in a matrix for quick search.
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material_metadatas = {metadata["id"]: metadata for metadata in
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self._container_registry.findContainersMetadata(type = "material") if
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metadata.get("GUID")} # type: Dict[str, Dict[str, Any]]
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self._material_group_map = dict()
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# Map #1
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# root_material_id -> MaterialGroup
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for material_id, material_metadata in material_metadatas.items():
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# We don't store empty material in the lookup tables
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if material_id == "empty_material":
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continue
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root_material_id = material_metadata.get("base_file", "")
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if root_material_id not in material_metadatas: #Not a registered material profile. Don't store this in the look-up tables.
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continue
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if root_material_id not in self._material_group_map:
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self._material_group_map[root_material_id] = MaterialGroup(root_material_id, MaterialNode(material_metadatas[root_material_id]))
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self._material_group_map[root_material_id].is_read_only = self._container_registry.isReadOnly(root_material_id)
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group = self._material_group_map[root_material_id]
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# Store this material in the group of the appropriate root material.
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if material_id != root_material_id:
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new_node = MaterialNode(material_metadata)
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group.derived_material_node_list.append(new_node)
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# Order this map alphabetically so it's easier to navigate in a debugger
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self._material_group_map = OrderedDict(sorted(self._material_group_map.items(), key = lambda x: x[0]))
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# Map #1.5
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# GUID -> material group list
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self._guid_material_groups_map = defaultdict(list)
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for root_material_id, material_group in self._material_group_map.items():
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guid = material_group.root_material_node.getMetaDataEntry("GUID", "")
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self._guid_material_groups_map[guid].append(material_group)
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# Map #2
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# Lookup table for material type -> fallback material metadata, only for read-only materials
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grouped_by_type_dict = dict() # type: Dict[str, Any]
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material_types_without_fallback = set()
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for root_material_id, material_node in self._material_group_map.items():
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material_type = material_node.root_material_node.getMetaDataEntry("material", "")
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if material_type not in grouped_by_type_dict:
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grouped_by_type_dict[material_type] = {"generic": None,
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"others": []}
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material_types_without_fallback.add(material_type)
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brand = material_node.root_material_node.getMetaDataEntry("brand", "")
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if brand.lower() == "generic":
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to_add = True
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if material_type in grouped_by_type_dict:
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diameter = material_node.root_material_node.getMetaDataEntry("approximate_diameter", "")
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if diameter != self._default_approximate_diameter_for_quality_search:
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to_add = False # don't add if it's not the default diameter
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if to_add:
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# Checking this first allow us to differentiate between not read only materials:
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# - if it's in the list, it means that is a new material without fallback
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# - if it is not, then it is a custom material with a fallback material (parent)
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if material_type in material_types_without_fallback:
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grouped_by_type_dict[material_type] = material_node.root_material_node._metadata
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material_types_without_fallback.remove(material_type)
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# Remove the materials that have no fallback materials
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for material_type in material_types_without_fallback:
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del grouped_by_type_dict[material_type]
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self._fallback_materials_map = grouped_by_type_dict
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# Map #3
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# There can be multiple material profiles for the same material with different diameters, such as "generic_pla"
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# and "generic_pla_175". This is inconvenient when we do material-specific quality lookup because a quality can
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# be for either "generic_pla" or "generic_pla_175", but not both. This map helps to get the correct material ID
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# for quality search.
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self._material_diameter_map = defaultdict(dict)
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self._diameter_material_map = dict()
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# Group the material IDs by the same name, material, brand, and color but with different diameters.
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material_group_dict = dict() # type: Dict[Tuple[Any], Dict[str, str]]
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keys_to_fetch = ("name", "material", "brand", "color")
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for root_material_id, machine_node in self._material_group_map.items():
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root_material_metadata = machine_node.root_material_node._metadata
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key_data_list = [] # type: List[Any]
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for key in keys_to_fetch:
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key_data_list.append(machine_node.root_material_node.getMetaDataEntry(key))
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key_data = cast(Tuple[Any], tuple(key_data_list)) # type: Tuple[Any]
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# If the key_data doesn't exist, it doesn't matter if the material is read only...
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if key_data not in material_group_dict:
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material_group_dict[key_data] = dict()
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else:
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# ...but if key_data exists, we just overwrite it if the material is read only, otherwise we skip it
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if not machine_node.is_read_only:
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continue
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approximate_diameter = machine_node.root_material_node.getMetaDataEntry("approximate_diameter", "")
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material_group_dict[key_data][approximate_diameter] = machine_node.root_material_node.getMetaDataEntry("id", "")
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# Map [root_material_id][diameter] -> root_material_id for this diameter
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for data_dict in material_group_dict.values():
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for root_material_id1 in data_dict.values():
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if root_material_id1 in self._material_diameter_map:
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continue
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diameter_map = data_dict
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for root_material_id2 in data_dict.values():
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self._material_diameter_map[root_material_id2] = diameter_map
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default_root_material_id = data_dict.get(self._default_approximate_diameter_for_quality_search)
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if default_root_material_id is None:
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default_root_material_id = list(data_dict.values())[0] # no default diameter present, just take "the" only one
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for root_material_id in data_dict.values():
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self._diameter_material_map[root_material_id] = default_root_material_id
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# Map #4
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# "machine" -> "nozzle name" -> "buildplate name" -> "root material ID" -> specific material InstanceContainer
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self._diameter_machine_nozzle_buildplate_material_map = dict()
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for material_metadata in material_metadatas.values():
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self.__addMaterialMetadataIntoLookupTree(material_metadata)
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favorites = self._application.getPreferences().getValue("cura/favorite_materials")
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for item in favorites.split(";"):
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self._favorites.add(item)
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self.materialsUpdated.emit()
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def __addMaterialMetadataIntoLookupTree(self, material_metadata: Dict[str, Any]) -> None:
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material_id = material_metadata["id"]
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# We don't store empty material in the lookup tables
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if material_id == "empty_material":
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return
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root_material_id = material_metadata["base_file"]
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definition = material_metadata["definition"]
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approximate_diameter = str(material_metadata["approximate_diameter"])
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if approximate_diameter not in self._diameter_machine_nozzle_buildplate_material_map:
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self._diameter_machine_nozzle_buildplate_material_map[approximate_diameter] = {}
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machine_nozzle_buildplate_material_map = self._diameter_machine_nozzle_buildplate_material_map[
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approximate_diameter]
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if definition not in machine_nozzle_buildplate_material_map:
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machine_nozzle_buildplate_material_map[definition] = MaterialNode()
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# This is a list of information regarding the intermediate nodes:
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# nozzle -> buildplate
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nozzle_name = material_metadata.get("variant_name")
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buildplate_name = material_metadata.get("buildplate_name")
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intermediate_node_info_list = [(nozzle_name, VariantType.NOZZLE),
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(buildplate_name, VariantType.BUILD_PLATE),
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]
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variant_manager = self._application.getVariantManager()
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machine_node = machine_nozzle_buildplate_material_map[definition]
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current_node = machine_node
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current_intermediate_node_info_idx = 0
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error_message = None # type: Optional[str]
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while current_intermediate_node_info_idx < len(intermediate_node_info_list):
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variant_name, variant_type = intermediate_node_info_list[current_intermediate_node_info_idx]
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if variant_name is not None:
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# The new material has a specific variant, so it needs to be added to that specific branch in the tree.
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variant = variant_manager.getVariantNode(definition, variant_name, variant_type)
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if variant is None:
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error_message = "Material {id} contains a variant {name} that does not exist.".format(
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id = material_metadata["id"], name = variant_name)
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break
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# Update the current node to advance to a more specific branch
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if variant_name not in current_node.children_map:
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current_node.children_map[variant_name] = MaterialNode()
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current_node = current_node.children_map[variant_name]
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current_intermediate_node_info_idx += 1
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if error_message is not None:
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Logger.log("e", "%s It will not be added into the material lookup tree.", error_message)
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self._container_registry.addWrongContainerId(material_metadata["id"])
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return
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# Add the material to the current tree node, which is the deepest (the most specific) branch we can find.
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# Sanity check: Make sure that there is no duplicated materials.
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if root_material_id in current_node.material_map:
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Logger.log("e", "Duplicated material [%s] with root ID [%s]. It has already been added.",
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material_id, root_material_id)
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ConfigurationErrorMessage.getInstance().addFaultyContainers(root_material_id)
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return
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current_node.material_map[root_material_id] = MaterialNode(material_metadata)
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def _updateMaps(self):
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Logger.log("i", "Updating material lookup data ...")
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self.initialize()
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def _onContainerMetadataChanged(self, container):
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self._onContainerChanged(container)
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def _onContainerChanged(self, container):
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container_type = container.getMetaDataEntry("type")
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if container_type != "material":
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return
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# update the maps
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self._update_timer.start()
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def getMaterialGroup(self, root_material_id: str) -> Optional[MaterialGroup]:
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return self._material_group_map.get(root_material_id)
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def getRootMaterialIDForDiameter(self, root_material_id: str, approximate_diameter: str) -> str:
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return self._material_diameter_map.get(root_material_id, {}).get(approximate_diameter, root_material_id)
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def getRootMaterialIDWithoutDiameter(self, root_material_id: str) -> str:
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return self._diameter_material_map.get(root_material_id, "")
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def getMaterialGroupListByGUID(self, guid: str) -> Optional[List[MaterialGroup]]:
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return self._guid_material_groups_map.get(guid)
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# Returns a dict of all material groups organized by root_material_id.
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def getAllMaterialGroups(self) -> Dict[str, "MaterialGroup"]:
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return self._material_group_map
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#
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# Return a dict with all root material IDs (k) and ContainerNodes (v) that's suitable for the given setup.
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#
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def getAvailableMaterials(self, machine_definition: "DefinitionContainer", nozzle_name: Optional[str],
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buildplate_name: Optional[str], diameter: float) -> Dict[str, MaterialNode]:
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# round the diameter to get the approximate diameter
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rounded_diameter = str(round(diameter))
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if rounded_diameter not in self._diameter_machine_nozzle_buildplate_material_map:
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Logger.log("i", "Cannot find materials with diameter [%s] (rounded to [%s])", diameter, rounded_diameter)
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return dict()
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machine_definition_id = machine_definition.getId()
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# If there are nozzle-and-or-buildplate materials, get the nozzle-and-or-buildplate material
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machine_nozzle_buildplate_material_map = self._diameter_machine_nozzle_buildplate_material_map[rounded_diameter]
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machine_node = machine_nozzle_buildplate_material_map.get(machine_definition_id)
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default_machine_node = machine_nozzle_buildplate_material_map.get(self._default_machine_definition_id)
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nozzle_node = None
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buildplate_node = None
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if nozzle_name is not None and machine_node is not None:
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nozzle_node = machine_node.getChildNode(nozzle_name)
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# Get buildplate node if possible
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if nozzle_node is not None and buildplate_name is not None:
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buildplate_node = nozzle_node.getChildNode(buildplate_name)
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nodes_to_check = [buildplate_node, nozzle_node, machine_node, default_machine_node]
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# Fallback mechanism of finding materials:
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# 1. buildplate-specific material
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# 2. nozzle-specific material
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# 3. machine-specific material
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# 4. generic material (for fdmprinter)
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machine_exclude_materials = machine_definition.getMetaDataEntry("exclude_materials", [])
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material_id_metadata_dict = dict() # type: Dict[str, MaterialNode]
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excluded_materials = set()
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for current_node in nodes_to_check:
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if current_node is None:
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continue
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# Only exclude the materials that are explicitly specified in the "exclude_materials" field.
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# Do not exclude other materials that are of the same type.
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for material_id, node in current_node.material_map.items():
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if material_id in machine_exclude_materials:
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excluded_materials.add(material_id)
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continue
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if material_id not in material_id_metadata_dict:
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material_id_metadata_dict[material_id] = node
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if excluded_materials:
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Logger.log("d", "Exclude materials {excluded_materials} for machine {machine_definition_id}".format(excluded_materials = ", ".join(excluded_materials), machine_definition_id = machine_definition_id))
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return material_id_metadata_dict
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#
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# A convenience function to get available materials for the given machine with the extruder position.
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#
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def getAvailableMaterialsForMachineExtruder(self, machine: "GlobalStack",
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extruder_stack: "ExtruderStack") -> Optional[Dict[str, MaterialNode]]:
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buildplate_name = machine.getBuildplateName()
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nozzle_name = None
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if extruder_stack.variant.getId() != "empty_variant":
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nozzle_name = extruder_stack.variant.getName()
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diameter = extruder_stack.getApproximateMaterialDiameter()
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# Fetch the available materials (ContainerNode) for the current active machine and extruder setup.
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return self.getAvailableMaterials(machine.definition, nozzle_name, buildplate_name, diameter)
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#
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# Gets MaterialNode for the given extruder and machine with the given material name.
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# Returns None if:
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# 1. the given machine doesn't have materials;
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# 2. cannot find any material InstanceContainers with the given settings.
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#
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def getMaterialNode(self, machine_definition_id: str, nozzle_name: Optional[str],
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buildplate_name: Optional[str], diameter: float, root_material_id: str) -> Optional["MaterialNode"]:
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# round the diameter to get the approximate diameter
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rounded_diameter = str(round(diameter))
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if rounded_diameter not in self._diameter_machine_nozzle_buildplate_material_map:
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Logger.log("i", "Cannot find materials with diameter [%s] (rounded to [%s]) for root material id [%s]",
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diameter, rounded_diameter, root_material_id)
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return None
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# If there are nozzle materials, get the nozzle-specific material
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machine_nozzle_buildplate_material_map = self._diameter_machine_nozzle_buildplate_material_map[rounded_diameter] # type: Dict[str, MaterialNode]
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machine_node = machine_nozzle_buildplate_material_map.get(machine_definition_id)
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nozzle_node = None
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buildplate_node = None
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# Fallback for "fdmprinter" if the machine-specific materials cannot be found
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if machine_node is None:
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machine_node = machine_nozzle_buildplate_material_map.get(self._default_machine_definition_id)
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if machine_node is not None and nozzle_name is not None:
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nozzle_node = machine_node.getChildNode(nozzle_name)
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if nozzle_node is not None and buildplate_name is not None:
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buildplate_node = nozzle_node.getChildNode(buildplate_name)
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# Fallback mechanism of finding materials:
|
|
# 1. buildplate-specific material
|
|
# 2. nozzle-specific material
|
|
# 3. machine-specific material
|
|
# 4. generic material (for fdmprinter)
|
|
nodes_to_check = [buildplate_node, nozzle_node, machine_node,
|
|
machine_nozzle_buildplate_material_map.get(self._default_machine_definition_id)]
|
|
|
|
material_node = None
|
|
for node in nodes_to_check:
|
|
if node is not None:
|
|
material_node = node.material_map.get(root_material_id)
|
|
if material_node:
|
|
break
|
|
|
|
return material_node
|
|
|
|
#
|
|
# Gets MaterialNode for the given extruder and machine with the given material type.
|
|
# Returns None if:
|
|
# 1. the given machine doesn't have materials;
|
|
# 2. cannot find any material InstanceContainers with the given settings.
|
|
#
|
|
def getMaterialNodeByType(self, global_stack: "GlobalStack", position: str, nozzle_name: str,
|
|
buildplate_name: Optional[str], material_guid: str) -> Optional["MaterialNode"]:
|
|
node = None
|
|
machine_definition = global_stack.definition
|
|
extruder_definition = global_stack.extruders[position].definition
|
|
if parseBool(machine_definition.getMetaDataEntry("has_materials", False)):
|
|
material_diameter = extruder_definition.getProperty("material_diameter", "value")
|
|
if isinstance(material_diameter, SettingFunction):
|
|
material_diameter = material_diameter(global_stack)
|
|
|
|
# Look at the guid to material dictionary
|
|
root_material_id = None
|
|
for material_group in self._guid_material_groups_map[material_guid]:
|
|
root_material_id = cast(str, material_group.root_material_node.getMetaDataEntry("id", ""))
|
|
break
|
|
|
|
if not root_material_id:
|
|
Logger.log("i", "Cannot find materials with guid [%s] ", material_guid)
|
|
return None
|
|
|
|
node = self.getMaterialNode(machine_definition.getId(), nozzle_name, buildplate_name,
|
|
material_diameter, root_material_id)
|
|
return node
|
|
|
|
# There are 2 ways to get fallback materials;
|
|
# - A fallback by type (@sa getFallbackMaterialIdByMaterialType), which adds the generic version of this material
|
|
# - A fallback by GUID; If a material has been duplicated, it should also check if the original materials do have
|
|
# a GUID. This should only be done if the material itself does not have a quality just yet.
|
|
def getFallBackMaterialIdsByMaterial(self, material: "InstanceContainer") -> List[str]:
|
|
results = [] # type: List[str]
|
|
|
|
material_groups = self.getMaterialGroupListByGUID(material.getMetaDataEntry("GUID"))
|
|
for material_group in material_groups: # type: ignore
|
|
if material_group.name != material.getId():
|
|
# If the material in the group is read only, put it at the front of the list (since that is the most
|
|
# likely one to get a result)
|
|
if material_group.is_read_only:
|
|
results.insert(0, material_group.name)
|
|
else:
|
|
results.append(material_group.name)
|
|
|
|
fallback = self.getFallbackMaterialIdByMaterialType(material.getMetaDataEntry("material"))
|
|
if fallback is not None:
|
|
results.append(fallback)
|
|
return results
|
|
|
|
#
|
|
# Used by QualityManager. Built-in quality profiles may be based on generic material IDs such as "generic_pla".
|
|
# For materials such as ultimaker_pla_orange, no quality profiles may be found, so we should fall back to use
|
|
# the generic material IDs to search for qualities.
|
|
#
|
|
# An example would be, suppose we have machine with preferred material set to "filo3d_pla" (1.75mm), but its
|
|
# extruders only use 2.85mm materials, then we won't be able to find the preferred material for this machine.
|
|
# A fallback would be to fetch a generic material of the same type "PLA" as "filo3d_pla", and in this case it will
|
|
# be "generic_pla". This function is intended to get a generic fallback material for the given material type.
|
|
#
|
|
# This function returns the generic root material ID for the given material type, where material types are "PLA",
|
|
# "ABS", etc.
|
|
#
|
|
def getFallbackMaterialIdByMaterialType(self, material_type: str) -> Optional[str]:
|
|
# For safety
|
|
if material_type not in self._fallback_materials_map:
|
|
Logger.log("w", "The material type [%s] does not have a fallback material" % material_type)
|
|
return None
|
|
fallback_material = self._fallback_materials_map[material_type]
|
|
if fallback_material:
|
|
return self.getRootMaterialIDWithoutDiameter(fallback_material["id"])
|
|
else:
|
|
return None
|
|
|
|
## Get default material for given global stack, extruder position and extruder nozzle name
|
|
# you can provide the extruder_definition and then the position is ignored (useful when building up global stack in CuraStackBuilder)
|
|
def getDefaultMaterial(self, global_stack: "GlobalStack", position: str, nozzle_name: Optional[str],
|
|
extruder_definition: Optional["DefinitionContainer"] = None) -> Optional["MaterialNode"]:
|
|
node = None
|
|
|
|
buildplate_name = global_stack.getBuildplateName()
|
|
machine_definition = global_stack.definition
|
|
|
|
# The extruder-compatible material diameter in the extruder definition may not be the correct value because
|
|
# the user can change it in the definition_changes container.
|
|
if extruder_definition is None:
|
|
extruder_stack_or_definition = global_stack.extruders[position]
|
|
is_extruder_stack = True
|
|
else:
|
|
extruder_stack_or_definition = extruder_definition
|
|
is_extruder_stack = False
|
|
|
|
if extruder_stack_or_definition and parseBool(global_stack.getMetaDataEntry("has_materials", False)):
|
|
if is_extruder_stack:
|
|
material_diameter = extruder_stack_or_definition.getCompatibleMaterialDiameter()
|
|
else:
|
|
material_diameter = extruder_stack_or_definition.getProperty("material_diameter", "value")
|
|
|
|
if isinstance(material_diameter, SettingFunction):
|
|
material_diameter = material_diameter(global_stack)
|
|
approximate_material_diameter = str(round(material_diameter))
|
|
root_material_id = machine_definition.getMetaDataEntry("preferred_material")
|
|
root_material_id = self.getRootMaterialIDForDiameter(root_material_id, approximate_material_diameter)
|
|
node = self.getMaterialNode(machine_definition.getId(), nozzle_name, buildplate_name,
|
|
material_diameter, root_material_id)
|
|
return node
|
|
|
|
def removeMaterialByRootId(self, root_material_id: str):
|
|
material_group = self.getMaterialGroup(root_material_id)
|
|
if not material_group:
|
|
Logger.log("i", "Unable to remove the material with id %s, because it doesn't exist.", root_material_id)
|
|
return
|
|
|
|
nodes_to_remove = [material_group.root_material_node] + material_group.derived_material_node_list
|
|
# Sort all nodes with respect to the container ID lengths in the ascending order so the base material container
|
|
# will be the first one to be removed. We need to do this to ensure that all containers get loaded & deleted.
|
|
nodes_to_remove = sorted(nodes_to_remove, key = lambda x: len(x.getMetaDataEntry("id", "")))
|
|
# Try to load all containers first. If there is any faulty ones, they will be put into the faulty container
|
|
# list, so removeContainer() can ignore those ones.
|
|
for node in nodes_to_remove:
|
|
container_id = node.getMetaDataEntry("id", "")
|
|
results = self._container_registry.findContainers(id = container_id)
|
|
if not results:
|
|
self._container_registry.addWrongContainerId(container_id)
|
|
for node in nodes_to_remove:
|
|
self._container_registry.removeContainer(node.getMetaDataEntry("id", ""))
|
|
|
|
#
|
|
# Methods for GUI
|
|
#
|
|
@pyqtSlot("QVariant", result=bool)
|
|
def canMaterialBeRemoved(self, material_node: "MaterialNode"):
|
|
# Check if the material is active in any extruder train. In that case, the material shouldn't be removed!
|
|
# In the future we might enable this again, but right now, it's causing a ton of issues if we do (since it
|
|
# corrupts the configuration)
|
|
root_material_id = material_node.getMetaDataEntry("base_file")
|
|
material_group = self.getMaterialGroup(root_material_id)
|
|
if not material_group:
|
|
return False
|
|
|
|
nodes_to_remove = [material_group.root_material_node] + material_group.derived_material_node_list
|
|
ids_to_remove = [node.getMetaDataEntry("id", "") for node in nodes_to_remove]
|
|
|
|
for extruder_stack in self._container_registry.findContainerStacks(type="extruder_train"):
|
|
if extruder_stack.material.getId() in ids_to_remove:
|
|
return False
|
|
return True
|
|
|
|
@pyqtSlot("QVariant", str)
|
|
def setMaterialName(self, material_node: "MaterialNode", name: str) -> None:
|
|
root_material_id = material_node.getMetaDataEntry("base_file")
|
|
if root_material_id is None:
|
|
return
|
|
if self._container_registry.isReadOnly(root_material_id):
|
|
Logger.log("w", "Cannot set name of read-only container %s.", root_material_id)
|
|
return
|
|
|
|
material_group = self.getMaterialGroup(root_material_id)
|
|
if material_group:
|
|
container = material_group.root_material_node.getContainer()
|
|
if container:
|
|
container.setName(name)
|
|
|
|
#
|
|
# Removes the given material.
|
|
#
|
|
@pyqtSlot("QVariant")
|
|
def removeMaterial(self, material_node: "MaterialNode") -> None:
|
|
root_material_id = material_node.getMetaDataEntry("base_file")
|
|
if root_material_id is not None:
|
|
self.removeMaterialByRootId(root_material_id)
|
|
|
|
#
|
|
# Creates a duplicate of a material, which has the same GUID and base_file metadata.
|
|
# Returns the root material ID of the duplicated material if successful.
|
|
#
|
|
@pyqtSlot("QVariant", result = str)
|
|
def duplicateMaterial(self, material_node: MaterialNode, new_base_id: Optional[str] = None, new_metadata: Dict[str, Any] = None) -> Optional[str]:
|
|
root_material_id = cast(str, material_node.getMetaDataEntry("base_file", ""))
|
|
|
|
material_group = self.getMaterialGroup(root_material_id)
|
|
if not material_group:
|
|
Logger.log("i", "Unable to duplicate the material with id %s, because it doesn't exist.", root_material_id)
|
|
return None
|
|
|
|
base_container = material_group.root_material_node.getContainer()
|
|
if not base_container:
|
|
return None
|
|
|
|
# Ensure all settings are saved.
|
|
self._application.saveSettings()
|
|
|
|
# Create a new ID & container to hold the data.
|
|
new_containers = []
|
|
if new_base_id is None:
|
|
new_base_id = self._container_registry.uniqueName(base_container.getId())
|
|
new_base_container = copy.deepcopy(base_container)
|
|
new_base_container.getMetaData()["id"] = new_base_id
|
|
new_base_container.getMetaData()["base_file"] = new_base_id
|
|
if new_metadata is not None:
|
|
for key, value in new_metadata.items():
|
|
new_base_container.getMetaData()[key] = value
|
|
new_containers.append(new_base_container)
|
|
|
|
# Clone all of them.
|
|
for node in material_group.derived_material_node_list:
|
|
container_to_copy = node.getContainer()
|
|
if not container_to_copy:
|
|
continue
|
|
# Create unique IDs for every clone.
|
|
new_id = new_base_id
|
|
if container_to_copy.getMetaDataEntry("definition") != "fdmprinter":
|
|
new_id += "_" + container_to_copy.getMetaDataEntry("definition")
|
|
if container_to_copy.getMetaDataEntry("variant_name"):
|
|
nozzle_name = container_to_copy.getMetaDataEntry("variant_name")
|
|
new_id += "_" + nozzle_name.replace(" ", "_")
|
|
|
|
new_container = copy.deepcopy(container_to_copy)
|
|
new_container.getMetaData()["id"] = new_id
|
|
new_container.getMetaData()["base_file"] = new_base_id
|
|
if new_metadata is not None:
|
|
for key, value in new_metadata.items():
|
|
new_container.getMetaData()[key] = value
|
|
|
|
new_containers.append(new_container)
|
|
|
|
for container_to_add in new_containers:
|
|
container_to_add.setDirty(True)
|
|
self._container_registry.addContainer(container_to_add)
|
|
|
|
# if the duplicated material was favorite then the new material should also be added to favorite.
|
|
if root_material_id in self.getFavorites():
|
|
self.addFavorite(new_base_id)
|
|
|
|
return new_base_id
|
|
|
|
#
|
|
# Create a new material by cloning Generic PLA for the current material diameter and generate a new GUID.
|
|
# Returns the ID of the newly created material.
|
|
@pyqtSlot(result = str)
|
|
def createMaterial(self) -> str:
|
|
from UM.i18n import i18nCatalog
|
|
catalog = i18nCatalog("cura")
|
|
# Ensure all settings are saved.
|
|
self._application.saveSettings()
|
|
|
|
machine_manager = self._application.getMachineManager()
|
|
extruder_stack = machine_manager.activeStack
|
|
|
|
machine_definition = self._application.getGlobalContainerStack().definition
|
|
root_material_id = machine_definition.getMetaDataEntry("preferred_material", default = "generic_pla")
|
|
|
|
approximate_diameter = str(extruder_stack.approximateMaterialDiameter)
|
|
root_material_id = self.getRootMaterialIDForDiameter(root_material_id, approximate_diameter)
|
|
material_group = self.getMaterialGroup(root_material_id)
|
|
|
|
if not material_group: # This should never happen
|
|
Logger.log("w", "Cannot get the material group of %s.", root_material_id)
|
|
return ""
|
|
|
|
# Create a new ID & container to hold the data.
|
|
new_id = self._container_registry.uniqueName("custom_material")
|
|
new_metadata = {"name": catalog.i18nc("@label", "Custom Material"),
|
|
"brand": catalog.i18nc("@label", "Custom"),
|
|
"GUID": str(uuid.uuid4()),
|
|
}
|
|
|
|
self.duplicateMaterial(material_group.root_material_node,
|
|
new_base_id = new_id,
|
|
new_metadata = new_metadata)
|
|
return new_id
|
|
|
|
@pyqtSlot(str)
|
|
def addFavorite(self, root_material_id: str) -> None:
|
|
self._favorites.add(root_material_id)
|
|
self.materialsUpdated.emit()
|
|
|
|
# Ensure all settings are saved.
|
|
self._application.getPreferences().setValue("cura/favorite_materials", ";".join(list(self._favorites)))
|
|
self._application.saveSettings()
|
|
|
|
@pyqtSlot(str)
|
|
def removeFavorite(self, root_material_id: str) -> None:
|
|
try:
|
|
self._favorites.remove(root_material_id)
|
|
except KeyError:
|
|
Logger.log("w", "Could not delete material %s from favorites as it was already deleted", root_material_id)
|
|
return
|
|
self.materialsUpdated.emit()
|
|
|
|
# Ensure all settings are saved.
|
|
self._application.getPreferences().setValue("cura/favorite_materials", ";".join(list(self._favorites)))
|
|
self._application.saveSettings()
|
|
|
|
@pyqtSlot()
|
|
def getFavorites(self):
|
|
return self._favorites
|