feat: Item baseclass, and fasteners
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@ -1 +1,2 @@
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from nhf.materials import Material, Role
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from nhf.materials import Material, Role
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from nhf.parts.item import Item
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@ -9,6 +9,11 @@ def _color(name: str, alpha: float) -> Cq.Color:
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r, g, b, _ = Cq.Color(name).toTuple()
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r, g, b, _ = Cq.Color(name).toTuple()
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return Cq.Color(r, g, b, alpha)
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return Cq.Color(r, g, b, alpha)
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KEY_ROLE = 'role'
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KEY_MATERIAL = 'material'
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KEY_ITEM = 'item'
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class Role(Flag):
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class Role(Flag):
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"""
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"""
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Describes the role of a part
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Describes the role of a part
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@ -26,7 +31,10 @@ class Role(Flag):
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STRUCTURE = auto()
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STRUCTURE = auto()
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DECORATION = auto()
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DECORATION = auto()
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ELECTRONIC = auto()
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ELECTRONIC = auto()
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# Fasteners, etc.
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CONNECTION = auto()
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CONNECTION = auto()
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HANDLE = auto()
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# Parent and child components in a load bearing joint
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# Parent and child components in a load bearing joint
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@ -54,7 +62,8 @@ ROLE_COLOR_MAP = {
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Role.STRUCTURE: _color('gray', 0.4),
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Role.STRUCTURE: _color('gray', 0.4),
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Role.DECORATION: _color('lightseagreen', 0.4),
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Role.DECORATION: _color('lightseagreen', 0.4),
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Role.ELECTRONIC: _color('mediumorchid', 0.5),
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Role.ELECTRONIC: _color('mediumorchid', 0.5),
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Role.CONNECTION: _color('steelblue3', 0.8)
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Role.CONNECTION: _color('steelblue3', 0.8),
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Role.HANDLE: _color('tomato4', 0.8),
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}
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}
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@ -91,10 +100,10 @@ def add_with_material_role(
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metadata = {}
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metadata = {}
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color = None
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color = None
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if material:
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if material:
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metadata["material"] = material
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metadata[KEY_MATERIAL] = material
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color = material.color
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color = material.color
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if role:
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if role:
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metadata["role"] = role
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metadata[KEY_ROLE] = role
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color = role.color_avg()
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color = role.color_avg()
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if len(metadata) == 0:
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if len(metadata) == 0:
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metadata = None
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metadata = None
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@ -106,29 +115,16 @@ Cq.Assembly.addS = add_with_material_role
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def color_by_material(self: Cq.Assembly) -> Cq.Assembly:
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def color_by_material(self: Cq.Assembly) -> Cq.Assembly:
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for _, a in self.traverse():
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for _, a in self.traverse():
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if 'material' not in a.metadata:
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if KEY_MATERIAL not in a.metadata:
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continue
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continue
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a.color = a.metadata["material"].color
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a.color = a.metadata[KEY_MATERIAL].color
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return self
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return self
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Cq.Assembly.color_by_material = color_by_material
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Cq.Assembly.color_by_material = color_by_material
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def color_by_role(self: Cq.Assembly, avg: bool = True) -> Cq.Assembly:
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def color_by_role(self: Cq.Assembly, avg: bool = True) -> Cq.Assembly:
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for _, a in self.traverse():
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for _, a in self.traverse():
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if 'role' not in a.metadata:
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if KEY_ROLE not in a.metadata:
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continue
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continue
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role = a.metadata["role"]
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role = a.metadata[KEY_ROLE]
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a.color = role.color_avg() if avg else role.color_head()
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a.color = role.color_avg() if avg else role.color_head()
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return self
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return self
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Cq.Assembly.color_by_role = color_by_role
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Cq.Assembly.color_by_role = color_by_role
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def total_mass(self: Cq.Assembly) -> float:
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"""
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Calculates the total mass in units of g
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"""
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total = 0.0
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for _, a in self.traverse():
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if 'material' not in a.metadata:
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continue
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vol = a.toCompound().Volume()
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total += vol * a.metadata['material'].density
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return total / 1000.0
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Cq.Assembly.total_mass = total_mass
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@ -0,0 +1,91 @@
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from dataclasses import dataclass
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import math
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import cadquery as Cq
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from nhf import Item, Role
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import nhf.utils
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@dataclass(frozen=True)
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class ThreaddedKnob(Item):
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"""
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Sourced from:
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> Othmro Black 12mm(M12) x 50mm Thread Replacement Star Hand Knob Tightening
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> Screws
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"""
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diam_rod: float
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height_rod: float
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diam_knob: float
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diam_neck: float
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height_neck: float
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height_knob: float
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@property
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def name(self) -> str:
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return f"Knob-M{int(self.diam_rod)}-{int(self.height_rod)}mm"
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def generate(self) -> Cq.Assembly:
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print(self.name)
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knob = Cq.Solid.makeCylinder(
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radius=self.diam_knob / 2,
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height=self.height_knob,
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)
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neck = Cq.Solid.makeCylinder(
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radius=self.diam_neck / 2,
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height=self.height_neck,
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)
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rod = (
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Cq.Workplane('XY')
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.cylinder(
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radius=self.diam_rod / 2,
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height=self.height_rod,
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centered=(True, True, False))
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)
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rod.faces("<Z").tag("tip")
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rod.faces(">Z").tag("root")
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return (
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Cq.Assembly()
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.addS(rod, name="rod", role=Role.CONNECTION)
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.addS(neck, name="neck", role=Role.HANDLE,
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loc=Cq.Location((0, 0, self.height_rod)))
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.addS(knob, name="knob", role=Role.HANDLE,
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loc=Cq.Location((0, 0, self.height_rod + self.height_neck)))
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)
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@dataclass(frozen=True)
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class HexNut(Item):
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diam: float
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pitch: float
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# FIXME: Measure these
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m: float
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s: float
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def __post_init__(self):
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assert self.s > self.diam
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@property
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def name(self):
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return f"HexNut-M{int(self.diam)}-{self.pitch}"
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@property
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def role(self):
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return Role.CONNECTION
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def generate(self) -> Cq.Workplane:
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print(self.name)
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r = self.s / math.sqrt(3)
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result = (
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Cq.Workplane("XY")
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.sketch()
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.regularPolygon(r=r, n=6)
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.circle(r=self.diam/2, mode='s')
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.finalize()
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.extrude(self.m)
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)
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result.faces("<Z").tag("bot")
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result.faces(">Z").tag("top")
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result.copyWorkplane(Cq.Workplane('XY')).tagPlane("dir", direction="+X")
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return result
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@ -0,0 +1,67 @@
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from typing import Union, Optional
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from collections import Counter
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from dataclasses import dataclass
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import cadquery as Cq
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from nhf.materials import Role, KEY_ROLE, KEY_ITEM
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@dataclass(frozen=True)
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class Item:
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"""
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A pre-fabricated item
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"""
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mass: float
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#@property
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#def mass(self) -> float:
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# """
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# Mass, in grams
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# """
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# return self._mass
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#@mass.setter
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#def mass(self, value):
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# assert value >= 0, "Mass cannot be negative"
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# self._mass = value
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@property
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def name(self) -> str:
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pass
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@property
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def role(self) -> Optional[Role]:
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return None
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def generate(self) -> Union[Cq.Assembly, Cq.Workplane]:
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"""
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Creates an assembly for this item. Subclass should implement this
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"""
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return Cq.Assembly()
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def assembly(self) -> Cq.Assembly:
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"""
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Interface for creating assembly with the necessary metadata
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"""
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a = self.generate()
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if isinstance(a, Cq.Workplane):
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a = Cq.Assembly(a)
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if role := self.role:
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a.metadata[KEY_ROLE] = role
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a.color = role.color_avg()
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assert isinstance(a, Cq.Assembly)
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assert KEY_ITEM not in a.metadata
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a.metadata[KEY_ITEM] = self
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return a
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@staticmethod
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def count(a: Cq.Assembly) -> Counter:
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"""
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Counts the number of items
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"""
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occ = Counter()
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for _, obj in a.traverse():
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if KEY_ITEM not in obj.metadata:
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continue
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item = obj.metadata[KEY_ITEM]
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assert isinstance(item, Item)
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occ[item.name] += 1
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return occ
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18
nhf/utils.py
18
nhf/utils.py
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@ -6,6 +6,7 @@ import functools
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import cadquery as Cq
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import cadquery as Cq
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from nhf import Role
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from nhf import Role
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from typing import Union, Tuple, cast
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from typing import Union, Tuple, cast
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from nhf.materials import KEY_ITEM, KEY_MATERIAL
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# Bug fixes
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# Bug fixes
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def _subloc(self, name: str) -> Tuple[Cq.Location, str]:
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def _subloc(self, name: str) -> Tuple[Cq.Location, str]:
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@ -204,3 +205,20 @@ def get_abs_location(self: Cq.Assembly,
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return loc
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return loc
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Cq.Assembly.get_abs_location = get_abs_location
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Cq.Assembly.get_abs_location = get_abs_location
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# Tallying functions
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def total_mass(self: Cq.Assembly) -> float:
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"""
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Calculates the total mass in units of g
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"""
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total = 0.0
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for _, a in self.traverse():
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if item := a.metadata.get(KEY_ITEM):
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total += item.mass
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elif material := a.metadata.get(KEY_MATERIAL):
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vol = a.toCompound().Volume()
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total += (vol / 1000) * material.density
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return total
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Cq.Assembly.total_mass = total_mass
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