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sfc/slicer.py: new option -o to add an offset to the last layer
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@ -33,6 +33,7 @@ height = None # height of the workpiece above the Z plane (can be
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# negative). Default: use model dimensions.
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# negative). Default: use model dimensions.
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align_top = None # align the Z position of the model to the workpiece
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align_top = None # align the Z position of the model to the workpiece
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align_bottom = None
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align_bottom = None
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end = 0 # Z adjustment of final layer
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def dist(a, b):
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def dist(a, b):
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@ -92,7 +93,7 @@ def dump_level(wires, z):
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def usage():
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def usage():
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print >>sys.stderr, "usage:", sys.argv[0], \
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print >>sys.stderr, "usage:", sys.argv[0], \
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"[-a (top|bottom)(+|-)offset] [-f] [-h height]" + \
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"[-a (top|bottom)(+|-)offset] [-f] [-h height]" + \
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"\t[-b piece_distance] [-s max_step] file.stl"
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"\t[-b piece_distance] [-o z_offset] [-s max_step] file.stl"
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sys.exit(1)
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sys.exit(1)
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@ -105,7 +106,7 @@ stdout = os.dup(1)
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os.dup2(2, 1)
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os.dup2(2, 1)
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sys.stdout = os.fdopen(stdout, "w")
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sys.stdout = os.fdopen(stdout, "w")
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opts, args = getopt.getopt(sys.argv[1:], "a:fh:p:s:")
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opts, args = getopt.getopt(sys.argv[1:], "a:e:fh:p:s:")
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for opt, arg in opts:
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for opt, arg in opts:
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if opt == "-a":
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if opt == "-a":
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if arg[0:3] == "top":
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if arg[0:3] == "top":
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@ -114,6 +115,8 @@ for opt, arg in opts:
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align_bottom = float(arg[6:])
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align_bottom = float(arg[6:])
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else:
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else:
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usage()
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usage()
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elif opt == "-o":
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end = float(arg)
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elif opt == "-f":
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elif opt == "-f":
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flip = True
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flip = True
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elif opt == "-h":
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elif opt == "-h":
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@ -213,7 +216,9 @@ else:
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last_z = None
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last_z = None
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if height is not None and height < 0 and z_levels[-1] > height:
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if height is not None and height < 0 and z_levels[-1] > height:
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z_levels.append(height - z_off)
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z_levels.append(height - z_off)
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z_levels[-1] += end
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for next_z in z_levels:
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for next_z in z_levels:
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wires = shape.slice(Base.Vector(0, 0, 1), next_z + epsilon)
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wires = shape.slice(Base.Vector(0, 0, 1), next_z + epsilon)
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if z_step is None or last_z is None or last_z - z_step <= next_z:
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if z_step is None or last_z is None or last_z - z_step <= next_z:
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