90 lines
2.9 KiB
Python
90 lines
2.9 KiB
Python
#!/usr/bin/env python3
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# Copyright (C) 2013-2019 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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from boxes.walledges import _WallMountedBox
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class WallPliersHolder(_WallMountedBox):
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"""Bar to hang pliers on"""
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def __init__(self) -> None:
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super().__init__()
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self.buildArgParser(sx="100*3", y=50, h=50, outside=True)
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self.argparser.add_argument(
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"--angle", action="store", type=float, default=45,
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help="bracing angle - less for more bracing")
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def brace(self, h, d, a, outside=False, move=None):
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t = self.thickness
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tw = d + self.edges["b"].spacing() + self.edges["f"].spacing()
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th = self.h_t
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if self.move(tw, th, move, True):
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return
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self.moveTo(self.edges["b"].spacing())
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r = d / 4
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l = (d + t - r) / math.sin(math.radians(a))
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if outside:
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self.polyline(t, (90-a, r), l, (a, r))
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self.edges["h"](h)
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self.polyline(0, 90, d + 2*t, 90)
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else:
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self.polyline(0, (90-a, r), l, (a, r), 0, 90, t, -90)
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self.edges["f"](h)
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self.polyline(0, 90, d, 90)
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self.edges["b"](h + (d+t-r) * math.tan(math.radians(90-a)) + r)
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self.polyline(0, 90)
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self.move(tw, th, move)
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def frontCB(self):
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t = self.thickness
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posx = -t
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for dx in self.sx[:-1]:
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posx += dx + t
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self.fingerHolesAt(posx, 0, self.h, 90)
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def backCB(self):
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t = self.thickness
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posx = -t
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for dx in self.sx[:-1]:
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posx += dx + t
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self.wallHolesAt(posx, 0, self.h_t, 90)
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def render(self):
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self.generateWallEdges()
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if self.outside:
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self.sx = self.adjustSize(self.sx)
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sx, y, h = self.sx, self.y, self.h
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t = self.thickness
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r = y / 4
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self.h_t = h + (y+t-r) * math.tan(math.radians(90-self.angle)) + r
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self.rectangularWall(sum(sx) + (len(sx)-1) * t, h, "efef", callback=[self.frontCB], move="up")
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self.rectangularWall(sum(sx) + (len(sx)-1) * t, self.h_t, "eCec", callback=[self.backCB], move="up")
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for i in range(len(sx)+1):
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self.brace(h, y, self.angle, i<2, move="right")
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