124 lines
3.9 KiB
Python
124 lines
3.9 KiB
Python
#!/usr/bin/env python3
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# Copyright (C) 2013-2018 Florian Festi
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#
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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from boxes import *
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import math
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class Hook(Boxes):
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"""A hook wit a rectangular mouth to mount at the wall"""
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ui_group = "Misc" # see ./__init__.py for names
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def __init__(self):
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Boxes.__init__(self)
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self.addSettingsArgs(edges.FingerJointSettings, surroundingspaces=0.5)
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self.argparser.add_argument("--width", action="store",
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type=float, default=40.,
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help="width of the hook (back plate is a bit wider)")
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self.argparser.add_argument("--height", action="store",
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type=float, default=40.,
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help="inner height of the hook")
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self.argparser.add_argument("--depth", action="store",
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type=float, default=40.,
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help="inner depth of the hook")
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self.argparser.add_argument("--strength", action="store",
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type=float, default=20.,
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help="width of the hook from the side")
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self.argparser.add_argument("--angle", action="store",
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type=float, default=45.,
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help="angle of the support underneeth")
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def render(self):
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self.angle = min(self.angle, 80)
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t = self.thickness
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w = self.width - 2*t # inner width
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d, h, s = self.depth, self.height, self.strength
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self.rectangularWall(w + 4*t, self.height_back, 'Eeee', callback=self.back_callback, move='right')
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self.sidewall(d, h, s, self.angle, move='right')
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self.sidewall(d, h, s, self.angle, move='right')
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self.rectangularWall(d, w, 'FFFf', move='right')
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self.rectangularWall(h - t, w, 'FFFf', move='right', callback=[
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lambda: self.hole((h - t)/2, w/2, d=17)])
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self.rectangularWall(s-t, w, 'FeFf', move='right')
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def back_callback(self, n):
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if n != 0:
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return
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t = self.thickness
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h = self.h_a + self.strength
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self.fingerHolesAt(1.5*t, 0, h)
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self.fingerHolesAt(self.width + .5*t, 0, h)
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self.fingerHolesAt(2*t, h + t/2, self.width - 2*t, 0)
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x_h = self.width/2 + t
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y1 = h + self.height/2
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y2 = self.strength/2
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y3 = (y1 + y2) / 2
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self.hole(x_h, y1, d=3)
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self.hole(x_h, y2, d=3)
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self.hole(x_h, y3, d=3)
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@property
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def height_back(self):
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return self.strength + self.height + self.h_a
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@property
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def h_a(self):
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return self.depth * math.tan(math.radians(self.angle))
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def sidewall(self, depth, height, strength, angle=60., move=None):
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t = self.thickness
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h_a = depth * math.tan(math.radians(angle))
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l_a = depth / math.cos(math.radians(angle))
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f_edge = self.edges['f']
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x_total = depth + strength + f_edge.margin()
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y_total = strength + height + h_a
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if self.move(x_total, y_total, move, before=True):
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return
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self.moveTo(f_edge.margin())
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self.polyline(strength, angle, l_a, 90-angle, height+strength, 90)
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f_edge(strength - t)
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self.corner(90)
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f_edge(height - t)
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self.polyline(t, -90, t)
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f_edge(depth)
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self.corner(90)
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f_edge(h_a + strength)
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self.corner(90)
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self.move(x_total, y_total, move)
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