cosplay: Touhou/Houjuu Nue #4
64
nhf/build.py
64
nhf/build.py
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@ -2,25 +2,69 @@
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The NHF build system
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Usage: For any parametric assembly, inherit the `Model` class, and mark the
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output objects with the `@target` decorator
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output objects with the `@target` decorator. Each marked function should only
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take `self` as an argument.
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```python
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class BuildScaffold(Model):
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@target(name="obj1")
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def o1(self):
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return Cq.Solid.makeBox(10, 10, 10)
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def o2(self):
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return Cq.Solid.makeCylinder(10, 20)
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```
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"""
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from enum import Enum
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from pathlib import Path
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from typing import Union
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from functools import wraps
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from colorama import Fore, Style
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import cadquery as Cq
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class TargetKind(Enum):
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STL = "stl",
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DXF = "dxf",
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def __init__(self, ext: str):
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self.ext = ext
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class Target:
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def __init__(self,
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method,
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name: str):
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name: str,
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kind: TargetKind = TargetKind.STL,
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**kwargs):
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self._method = method
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self.name = name
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self.kind = kind
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self.kwargs = kwargs
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def __str__(self):
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return f"<target {self.name}>"
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def __call__(self, obj, *args, **kwargs):
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"""
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Raw call function which passes arguments directly to `_method`
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"""
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return self._method(obj, *args, **kwargs)
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def file_name(self, file_name):
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return f"{file_name}.{self.kind.ext}"
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def write_to(self, obj, path: str):
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x = self._method(obj)
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if self.kind == TargetKind.STL:
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assert isinstance(x, Union[
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Cq.Workplane, Cq.Shape, Cq.Compound, Cq.Assembly])
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if isinstance(x, Cq.Workplane):
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x = x.val()
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if isinstance(x, Cq.Assembly):
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x = x.toCompound()
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x.exportStl(path, **self.kwargs)
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elif self.kind == TargetKind.DXF:
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assert isinstance(x, Cq.Workplane)
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Cq.exporters.exportDXF(x, path, **self.kwargs)
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else:
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assert False, f"Invalid kind: {self.kind}"
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@classmethod
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def methods(cls, subject):
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@ -49,13 +93,6 @@ def target(name, **deco_kwargs):
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return wrapper
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return f
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def _to_shape(x: Union[Cq.Workplane, Cq.Shape, Cq.Compound, Cq.Assembly]) -> Cq.Shape:
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if isinstance(x, Cq.Workplane):
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x = x.val()
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if isinstance(x, Cq.Assembly):
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x = x.toCompound()
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return x
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class Model:
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"""
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@ -76,22 +113,21 @@ class Model:
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total += 1
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return total
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def build_all(self, output_dir: Union[Path, str] ="build", verbose=1):
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def build_all(self, output_dir: Union[Path, str] = "build", verbose=1):
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"""
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Build all targets in this model
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"""
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output_dir = Path(output_dir)
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output_dir.mkdir(exist_ok=True, parents=True)
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for k, f in Target.methods(self).items():
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output_file = output_dir / f"{k}.stl"
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for k, target in Target.methods(self).items():
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output_file = output_dir / target.file_name(k)
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if output_file.is_file():
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if verbose >= 1:
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print(f"{Fore.GREEN}Skipping{Style.RESET_ALL} {output_file}")
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continue
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model = f(self)
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if verbose >= 1:
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print(f"{Fore.BLUE}Building{Style.RESET_ALL} {output_file}")
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_to_shape(model).exportStl(str(output_file))
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target.write_to(self, str(output_file))
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if verbose >= 1:
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print(f"{Fore.GREEN}Built{Style.RESET_ALL} {output_file}")
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@ -33,7 +33,7 @@ from dataclasses import dataclass, field
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import unittest
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import cadquery as Cq
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from nhf import Material
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from nhf.build import Model, target
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from nhf.build import Model, TargetKind, target
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from nhf.parts.joints import HirthJoint
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from nhf.parts.handle import Handle
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import nhf.touhou.houjuu_nue.wing as MW
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@ -113,11 +113,6 @@ class Parameters(Model):
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"Wing root must be large enough to accomodate joint"
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def print_geometries(self):
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return [
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self.hs_joint_parent()
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]
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def harness_profile(self) -> Cq.Sketch:
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"""
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Creates the harness shape
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@ -148,6 +143,7 @@ class Parameters(Model):
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)
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return sketch
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@target(name="harness", kind=TargetKind.DXF)
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def harness(self) -> Cq.Shape:
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"""
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Creates the harness shape
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@ -249,7 +245,8 @@ class Parameters(Model):
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result.faces("<Z").tag("base")
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return result
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def wing_root(self) -> Cq.Shape:
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@target(name="wing_root")
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def wing_root(self) -> Cq.Assembly:
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"""
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Generate the wing root which contains a Hirth joint at its base and a
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rectangular opening on its side, with the necessary interfaces.
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