Experimenting with optimizations
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T-riple.scad
52
T-riple.scad
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@ -2,12 +2,10 @@ include <common.scad>
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include <AluTCommon.scad>
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semitone_strings = ["0", "1", "2", "3", "4", "5", "6", "7", "8", "9", "X", "XI"];
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octave_strings = ["", "˙", "¨", "¯"];
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octave_strings = ["", ".", "..", "_"];
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octave_scales = [1.1, 1, 0.9, 0.8];
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z_resolution = $preview ? 0.5 : 0.1;
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$fs = $preview ? 1 : 0.01;
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$fa = $preview ? 5 : 0.1;
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profile_arc_steps_backside = $preview ? 8 : 360;
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profile_arc_steps_topside = $preview ? 8 : 60;
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@ -93,15 +91,25 @@ module tube(from_fret, to_fret, scale_offset = 0, fingerboard_min_thick = 2.5, f
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o = fret_width/2 * sin(fret_angle),
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x0 = f_prev - o,
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x1 = f_next + o,
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x_mid = (x0+x1)/2,
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y0 = fingerboard_min_thick,
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y1 = fingerboard_max_thick - (fret_width/2 * cos(fret_angle)),
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pts = [[x0, y1], [x1, y1], [(x0+x1)/2, y0]],
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pts = [[x0, y1], [x1, y1], [x_mid, y0]],
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cc = tri_circumcenter(pts),
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r = norm([x0, y1] - cc)
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r = norm([x0, y1] - cc),
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r2 = r^2,
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a_start = acos((x0 - cc[0])/r),
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a_end = acos((x1 - cc[0])/r),
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a_sweep = a_end - a_start,
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a_step = a_sweep/10
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) {
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translate([0,-w/2,0])
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rotate([-90,-90,0])
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translate(cc) cylinder(h = w, r = r, $fn=max(8*ceil(r), 32));
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// echo(a_start=a_start, x0=x0, cc=cc);
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translate([cc[1], 0, cc[0]])
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rotate([90,0,0])
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// cylinder(h = w, r = r, center = true);
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linear_extrude(height = w, center = true)
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// polygon([for (i = [0:10]) [-r*sin(a_start+i*a_step), r*cos(a_start+i*a_step)]]);
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polygon([for (x = [x1-x_mid:0.05:x0-x_mid]) [-sqrt(r2 - x^2), x]]);
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}
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}
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@ -129,26 +137,28 @@ module tube(from_fret, to_fret, scale_offset = 0, fingerboard_min_thick = 2.5, f
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// color("red") scallops();
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}
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module fret_number_text(fret) {
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octave = floor(fret/12);
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semitone = fret%12;
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octave_scale = octave_scales[octave];
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text(semitone_strings[semitone], size=4*octave_scale, halign="center", valign="center", font="Noto Sans", $fa=1, $fs=0.1);
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translate([0, 2.5])
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text(octave_strings[octave], size=5*octave_scale, halign="center", valign="center", font="Noto Sans", $fa=1, $fs=0.1);
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}
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module fret_number_markers(engrave_depth=1) {
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color("purple")
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// for (fret = [from_fret:to_fret])
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for (fret = [from_fret+1:to_fret]) {
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zn = fsl(fret);
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pr = get_desired_profile_radius(get_desired_width_scale(zn));
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octave = floor(fret/12);
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semitone = fret%12;
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octave_scale = octave_scales[octave];
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// translate([-3,-16,zn-z_offset]) rotate([90,25,16]) linear_extrude(100) {
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// translate([-3,-16,zn-z_offset]) rotate([90,25,-16+16*(zn/z0)]) linear_extrude(100) {
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p_x0 = pr+x_min;
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translate([p_x0, 0, zn-z_offset]) rotate([90,25,-asin((p_x0+2)/pr)]) translate([0, 0, pr-engrave_depth]) linear_extrude(engrave_depth+1) {
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text(semitone_strings[semitone], size=4*octave_scale, halign="center", valign="center", font="Noto Sans");
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text(octave_strings[octave], size=6*octave_scale, halign="center", valign="center", font="Noto Sans");
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}
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translate([p_x0, 0, zn-z_offset]) rotate([90,-25,180+asin((p_x0+2)/pr)]) translate([0, 0, pr-engrave_depth]) linear_extrude(engrave_depth+1) {
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text(semitone_strings[semitone], size=4*octave_scale, halign="center", valign="center", font="Noto Sans");
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text(octave_strings[octave], size=6*octave_scale, halign="center", valign="center", font="Noto Sans");
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}
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translate([p_x0, 0, zn-z_offset]) rotate([90,25,-asin((p_x0+2)/pr)])
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translate([0, 0, pr-engrave_depth]) linear_extrude(engrave_depth+1)
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fret_number_text(fret);
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translate([p_x0, 0, zn-z_offset]) rotate([90,-25,180+asin((p_x0+2)/pr)])
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translate([0, 0, pr-engrave_depth]) linear_extrude(engrave_depth+1)
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fret_number_text(fret);
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}
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}
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