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https://github.com/BelfrySCAD/BOSL2.git
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change tex_counts to tex_reps
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6b4a7f3dc7
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f8436dacc0
3 changed files with 47 additions and 25 deletions
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@ -1495,7 +1495,7 @@ module screw_head(screw_info,details=false, counterbore=0,flat_height,teardrop=f
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[20, .165]];
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intersection() {
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cyl(h=head_height/4, d=head_size, anchor=BOT)
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attach(TOP) cyl(l=head_height*3/4, d=head_size, anchor=BOT, texture="trunc_ribs", tex_counts=[31,1], tex_scale=-lookup(adj_diam,rib_size));
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attach(TOP) cyl(l=head_height*3/4, d=head_size, anchor=BOT, texture="trunc_ribs", tex_reps=[31,1], tex_scale=-lookup(adj_diam,rib_size));
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cyl(h=head_height,d=head_size, chamfer2=adj_diam/10, anchor=BOT);
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}
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}
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@ -1292,9 +1292,9 @@ function cylinder(h, r1, r2, center, r, d, d1, d2, anchor, spin=0, orient=UP) =
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// cyl(l|h|length|height, r|d, rounding1=, rounding2=, ...);
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//
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// Usage: Textured Cylinders
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// cyl(l|h|length|height, r|d, texture=, [tex_size=]|[tex_counts=], [tex_scale=], [tex_rot=], [tex_samples=], [style=], [tex_taper=], [tex_inset=], ...);
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// cyl(l|h|length|height, r1=, r2=, texture=, [tex_size=]|[tex_counts=], [tex_scale=], [tex_rot=], [tex_samples=], [style=], [tex_taper=], [tex_inset=], ...);
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// cyl(l|h|length|height, d1=, d2=, texture=, [tex_size=]|[tex_counts=], [tex_scale=], [tex_rot=], [tex_samples=], [style=], [tex_taper=], [tex_inset=], ...);
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// cyl(l|h|length|height, r|d, texture=, [tex_size=]|[tex_reps=], [tex_scale=], [tex_rot=], [tex_samples=], [style=], [tex_taper=], [tex_inset=], ...);
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// cyl(l|h|length|height, r1=, r2=, texture=, [tex_size=]|[tex_reps=], [tex_scale=], [tex_rot=], [tex_samples=], [style=], [tex_taper=], [tex_inset=], ...);
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// cyl(l|h|length|height, d1=, d2=, texture=, [tex_size=]|[tex_reps=], [tex_scale=], [tex_rot=], [tex_samples=], [style=], [tex_taper=], [tex_inset=], ...);
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//
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// Usage: Caled as a function to get a VNF
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// vnf = cyl(...);
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@ -1363,7 +1363,7 @@ function cylinder(h, r1, r2, center, r, d, d1, d2, anchor, spin=0, orient=UP) =
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// teardrop = If given as a number, rounding around the bottom edge of the cylinder won't exceed this many degrees from vertical. If true, the limit angle is 45 degrees. Default: `false`
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// texture = A texture name string, or a rectangular array of scalar height values (0.0 to 1.0), or a VNF tile that defines the texture to apply to vertical surfaces. See {{texture()}} for what named textures are supported.
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// tex_size = An optional 2D target size for the textures. Actual texture sizes will be scaled somewhat to evenly fit the available surface. Default: `[5,5]`
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// tex_counts = If given instead of tex_size, gives the tile repetition counts for textures over the surface length and height.
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// tex_reps = If given instead of tex_size, gives the tile repetition counts for textures over the surface length and height.
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// tex_inset = If numeric, lowers the texture into the surface by that amount, before the tex_scale multiplier is applied. If `true`, insets by exactly `1`. Default: `false`
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// tex_rot = If true, rotates the texture 90º.
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// tex_scale = Scaling multiplier for the texture depth.
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@ -1487,7 +1487,7 @@ function cylinder(h, r1, r2, center, r, d, d1, d2, anchor, spin=0, orient=UP) =
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// ];
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// diff()
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// cyl(d=20*10/PI, h=10, chamfer=0,
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// texture=tex, tex_counts=[20,1], tex_scale=-1,
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// texture=tex, tex_reps=[20,1], tex_scale=-1,
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// tex_taper=undef, style="concave") {
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// attach([TOP,BOT]) {
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// cyl(d1=20*10/PI, d2=30, h=5, anchor=BOT)
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@ -1508,16 +1508,19 @@ function cyl(
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circum=false, realign=false, shift=[0,0],
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teardrop=false,
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from_end, from_end1, from_end2,
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texture, tex_size=[5,5], tex_counts,
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texture, tex_size=[5,5], tex_reps, tex_counts,
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tex_inset=false, tex_rot=false,
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tex_scale=1, tex_samples, length, height,
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tex_taper, style, tex_style,
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anchor, spin=0, orient=UP
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) =
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assert(num_defined([style,tex_style])<2, "In cyl() the 'tex_style' parameters has been replaced by 'style'. You cannot give both.")
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assert(num_defined([tex_reps,tex_counts])<2, "In cyl() the 'tex_counts' parameters has been replaced by 'tex_reps'. You cannot give both.")
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let(
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style = is_def(tex_style)? echo("In cyl the 'tex_style()' parameters is deprecated and has been replaced by 'style'")tex_style
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style = is_def(tex_style)? echo("In cyl() the 'tex_style' parameter is deprecated and has been replaced by 'style'")tex_style
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: default(style,"min_edge"),
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tex_reps = is_def(tex_counts)? echo("In cyl() the 'tex_counts' parameter is deprecated and has been replaced by 'tex_reps'")tex_counts
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: tex_reps,
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l = one_defined([l, h, length, height],"l,h,length,height",dflt=1),
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_r1 = get_radius(r1=r1, r=r, d1=d1, d=d, dflt=1),
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_r2 = get_radius(r1=r2, r=r, d1=d2, d=d, dflt=1),
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@ -1620,7 +1623,7 @@ function cyl(
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if (texture==undef) [0,l/2],
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]
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) rotate_sweep(path,
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texture=texture, tex_counts=tex_counts, tex_size=tex_size,
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texture=texture, tex_reps=tex_reps, tex_size=tex_size,
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tex_inset=tex_inset, tex_rot=tex_rot,
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tex_scale=tex_scale, tex_samples=tex_samples,
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tex_taper=tex_taper, style=style, closed=false
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@ -1663,14 +1666,19 @@ module cyl(
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circum=false, realign=false, shift=[0,0],
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teardrop=false,
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from_end, from_end1, from_end2,
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texture, tex_size=[5,5], tex_counts,
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texture, tex_size=[5,5], tex_reps, tex_counts,
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tex_inset=false, tex_rot=false,
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tex_scale=1, tex_samples, length, height,
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tex_taper, style, tex_style,
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anchor, spin=0, orient=UP
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) {
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dummy=
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assert(num_defined([style,tex_style])<2, "In cyl() the 'tex_style' parameters has been replaced by 'style'. You cannot give both.")
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assert(num_defined([tex_reps,tex_counts])<2, "In cyl() the 'tex_counts' parameters has been replaced by 'tex_reps'. You cannot give both.");
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style = is_def(tex_style)? echo("In cyl the 'tex_style()' parameters is deprecated and has been replaced by 'style'")tex_style
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: default(style,"min_edge");
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tex_reps = is_def(tex_counts)? echo("In cyl() the 'tex_counts' parameter is deprecated and has been replaced by 'tex_reps'")tex_counts
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: tex_reps;
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l = one_defined([l, h, length, height],"l,h,length,height",dflt=1);
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_r1 = get_radius(r1=r1, r=r, d1=d1, d=d, dflt=1);
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_r2 = get_radius(r1=r2, r=r, d1=d2, d=d, dflt=1);
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@ -1695,7 +1703,7 @@ module cyl(
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from_end=from_end, from_end1=from_end1, from_end2=from_end2,
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teardrop=teardrop,
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texture=texture, tex_size=tex_size,
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tex_counts=tex_counts, tex_scale=tex_scale,
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tex_reps=tex_reps, tex_scale=tex_scale,
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tex_inset=tex_inset, tex_rot=tex_rot,
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style=style, tex_taper=tex_taper,
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tex_samples=tex_samples
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42
skin.scad
42
skin.scad
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@ -517,10 +517,10 @@ function skin(profiles, slices, refine=1, method="direct", sampling, caps, close
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// Usage: As Module
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// linear_sweep(region, [height], [center=], [slices=], [twist=], [scale=], [style=], [caps=], [convexity=]) [ATTACHMENTS];
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// Usage: With Texturing
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// linear_sweep(region, [height], [center=], texture=, [tex_size=]|[tex_counts=], [tex_scale=], [style=], [tex_samples=], ...) [ATTACHMENTS];
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// linear_sweep(region, [height], [center=], texture=, [tex_size=]|[tex_reps=], [tex_scale=], [style=], [tex_samples=], ...) [ATTACHMENTS];
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// Usage: As Function
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// vnf = linear_sweep(region, [height], [center=], [slices=], [twist=], [scale=], [style=], [caps=]);
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// vnf = linear_sweep(region, [height], [center=], texture=, [tex_size=]|[tex_counts=], [tex_scale=], [style=], [tex_samples=], ...);
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// vnf = linear_sweep(region, [height], [center=], texture=, [tex_size=]|[tex_reps=], [tex_scale=], [style=], [tex_samples=], ...);
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// Description:
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// If called as a module, creates a polyhedron that is the linear extrusion of the given 2D region or polygon.
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// If called as a function, returns a VNF that can be used to generate a polyhedron of the linear extrusion
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@ -545,7 +545,7 @@ function skin(profiles, slices, refine=1, method="direct", sampling, caps, close
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// maxseg = If given, then any long segments of the region will be subdivided to be shorter than this length. This can refine twisting flat faces a lot. Default: `undef` (no subsampling)
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// texture = A texture name string, or a rectangular array of scalar height values (0.0 to 1.0), or a VNF tile that defines the texture to apply to vertical surfaces. See {{texture()}} for what named textures are supported.
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// tex_size = An optional 2D target size for the textures. Actual texture sizes will be scaled somewhat to evenly fit the available surface. Default: `[5,5]`
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// tex_counts = If given instead of tex_size, gives the tile repetition counts for textures over the surface length and height.
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// tex_reps = If given instead of tex_size, gives the tile repetition counts for textures over the surface length and height.
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// tex_inset = If numeric, lowers the texture into the surface by that amount, before the tex_scale multiplier is applied. If `true`, insets by exactly `1`. Default: `false`
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// tex_rot = If true, rotates the texture 90º.
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// tex_scale = Scaling multiplier for the texture depth.
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@ -707,7 +707,7 @@ module linear_sweep(
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region, height, center,
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twist=0, scale=1, shift=[0,0],
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slices, maxseg, style="default", convexity, caps=true,
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texture, tex_size=[5,5], tex_counts,
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texture, tex_size=[5,5], tex_reps, tex_counts,
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tex_inset=false, tex_rot=false,
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tex_scale=1, tex_samples,
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cp, atype="hull", h,l,length,
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@ -724,6 +724,7 @@ module linear_sweep(
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twist=twist, scale=scale, shift=shift,
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texture=texture,
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tex_size=tex_size,
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tex_reps=tex_reps,
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tex_counts=tex_counts,
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tex_inset=tex_inset,
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tex_rot=tex_rot,
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@ -759,12 +760,17 @@ function linear_sweep(
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twist=0, scale=1, shift=[0,0],
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slices, maxseg, style="default", caps=true,
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cp, atype="hull", h,
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texture, tex_size=[5,5], tex_counts,
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texture, tex_size=[5,5], tex_reps, tex_counts,
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tex_inset=false, tex_rot=false,
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tex_scale=1, tex_samples, h, l, length,
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anchor, spin=0, orient=UP
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) =
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let( region = force_region(region) )
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assert(num_defined([tex_reps,tex_counts])<2, "In linear_sweep() the 'tex_counts' parameters has been replaced by 'tex_reps'. You cannot give both.")
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let(
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region = force_region(region),
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tex_reps = is_def(tex_counts)? echo("In cyl() the 'tex_counts' parameter is deprecated and has been replaced by 'tex_reps'")tex_counts
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: tex_reps
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)
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assert(is_region(region), "Input is not a region or polygon.")
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assert(is_num(scale) || is_vector(scale))
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assert(is_vector(shift, 2), str(shift))
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@ -775,7 +781,7 @@ function linear_sweep(
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!is_undef(texture)? _textured_linear_sweep(
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region, h=h, caps=caps,
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texture=texture, tex_size=tex_size,
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counts=tex_counts, inset=tex_inset,
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counts=tex_reps, inset=tex_inset,
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rot=tex_rot, tex_scale=tex_scale,
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twist=twist, scale=scale, shift=shift,
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style=style, samples=tex_samples,
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@ -851,7 +857,7 @@ function linear_sweep(
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// Usage: As Module
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// rotate_sweep(shape, [angle], ...) [ATTACHMENTS];
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// Usage: With Texturing
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// rotate_sweep(shape, texture=, [tex_size=]|[tex_counts=], [tex_scale=], [tex_samples=], [tex_rot=], [tex_inset=], ...) [ATTACHMENTS];
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// rotate_sweep(shape, texture=, [tex_size=]|[tex_reps=], [tex_scale=], [tex_samples=], [tex_rot=], [tex_inset=], ...) [ATTACHMENTS];
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// Description:
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// Takes a polygon or [region](regions.scad) and sweeps it in a rotation around the Z axis, with optional texturing.
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// When called as a function, returns a [VNF](vnf.scad).
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@ -862,7 +868,7 @@ function linear_sweep(
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// ---
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// texture = A texture name string, or a rectangular array of scalar height values (0.0 to 1.0), or a VNF tile that defines the texture to apply to vertical surfaces. See {{texture()}} for what named textures are supported.
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// tex_size = An optional 2D target size for the textures. Actual texture sizes will be scaled somewhat to evenly fit the available surface. Default: `[5,5]`
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// tex_counts = If given instead of tex_size, gives the tile repetition counts for textures over the surface length and height.
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// tex_reps = If given instead of tex_size, gives the tile repetition counts for textures over the surface length and height.
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// tex_inset = If numeric, lowers the texture into the surface by that amount, before the tex_scale multiplier is applied. If `true`, insets by exactly `1`. Default: `false`
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// tex_rot = If true, rotates the texture 90º.
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// tex_scale = Scaling multiplier for the texture depth.
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@ -951,7 +957,7 @@ function linear_sweep(
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function rotate_sweep(
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shape, angle=360,
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texture, tex_size=[5,5], tex_counts,
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texture, tex_size=[5,5], tex_counts, tex_reps,
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tex_inset=false, tex_rot=false,
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tex_scale=1, tex_samples,
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tex_taper, shift=[0,0], closed=true,
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@ -959,7 +965,11 @@ function rotate_sweep(
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atype="hull", anchor="origin",
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spin=0, orient=UP
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) =
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let( region = force_region(shape) )
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assert(num_defined([tex_reps,tex_counts])<2, "In rotate_sweep() the 'tex_counts' parameters has been replaced by 'tex_reps'. You cannot give both.")
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let( region = force_region(shape),
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tex_reps = is_def(tex_counts)? echo("In rotate_sweep() the 'tex_counts' parameter is deprecated and has been replaced by 'tex_reps'")tex_counts
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: tex_reps
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)
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assert(is_region(region), "Input is not a region or polygon.")
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let(
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bounds = pointlist_bounds(flatten(region)),
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@ -974,7 +984,7 @@ function rotate_sweep(
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shape,
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texture=texture,
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tex_size=tex_size,
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counts=tex_counts,
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counts=tex_reps,
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tex_scale=tex_scale,
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inset=tex_inset,
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rot=tex_rot,
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@ -1005,7 +1015,7 @@ function rotate_sweep(
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module rotate_sweep(
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shape, angle=360,
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texture, tex_size=[5,5], tex_counts,
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texture, tex_size=[5,5], tex_counts, tex_reps,
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tex_inset=false, tex_rot=false,
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tex_scale=1, tex_samples,
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tex_taper, shift=[0,0],
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@ -1018,6 +1028,10 @@ module rotate_sweep(
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spin=0,
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orient=UP
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) {
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dummy =
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assert(num_defined([tex_reps,tex_counts])<2, "In rotate_sweep() the 'tex_counts' parameters has been replaced by 'tex_reps'. You cannot give both.");
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tex_reps = is_def(tex_counts)? echo("In rotate_sweep() the 'tex_counts' parameter is deprecated and has been replaced by 'tex_reps'")tex_counts
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: tex_reps;
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region = force_region(shape);
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check = assert(is_region(region), "Input is not a region or polygon.");
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bounds = pointlist_bounds(flatten(region));
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@ -1032,7 +1046,7 @@ module rotate_sweep(
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shape,
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texture=texture,
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tex_size=tex_size,
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counts=tex_counts,
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counts=tex_reps,
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tex_scale=tex_scale,
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inset=tex_inset,
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rot=tex_rot,
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