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Merge branch 'typos' of https://github.com/martinbudden/NopSCADlib into martinbudden-typos
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2c4a498a7a
@ -29,7 +29,7 @@
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//! This is to prevent the global BOM page becoming too wide in large projects by having it include just the major assemblies.
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//!
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//! The example below shows how to define a vitamin and incorporate it into an assembly with sub-assemblies and make an exploded view.
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//! The resulting flat BOM is shown but heirachical BOMs are also generated for real projects.
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//! The resulting flat BOM is shown but hierarchical BOMs are also generated for real projects.
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//!
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//! If the code to make an STL or DXF is made a child of the `stl()` or `dxf()` module then the STL or DXF will be used in the assembly views generated by `views.py` instead of generating
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//! it with code.
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//
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//
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//! Construct arbirarily large box to partition 3D space and clip objects, useful for creating cross sections to see the inside when debugging.
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//! Construct arbitrarily large box to partition 3D space and clip objects, useful for creating cross sections to see the inside when debugging.
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//!
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//! Original version by Doug Moen on the OpenSCAD forum
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//
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//! large increase in the number of facets.
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//! When set to 1 the polygons alternate each layer, when set higher the rotation takes `twist + 1` layers to repeat.
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//! A small additional rotation is added to make the polygon rotate one more side over the length of the hole to make it appear round when
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//! veiwed end on.
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//! viewed end on.
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//!
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//! When `twist` is set the resulting cylinder is extended by `eps` at each end so that the exact length of the hole can be used without
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//! leaving a scar on either surface.
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//
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function sides(r, n = undef) = is_undef(n) ? max(round(4 * r), 3) : n ? max(n, 3) : r2sides(r); //! Optimium number of sides for specified radius
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function sides(r, n = undef) = is_undef(n) ? max(round(4 * r), 3) : n ? max(n, 3) : r2sides(r); //! Optimum number of sides for specified radius
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function corrected_radius(r, n = undef) = r / cos(180 / sides(r, n)); //! Adjusted radius to make flats lie on the circle
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function corrected_diameter(d, n = undef) = 2 * corrected_radius(d / 2 , n); //! Adjusted diameter to make flats lie on the circle
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