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add forest
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105
examples/forest.scad
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105
examples/forest.scad
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include <line2d.scad>;
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include <turtle/turtle2d.scad>;
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style = "MIRROR"; // [TREES, INVERTED, MIRROR]
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trunk_angle = 86; // [1:90]
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max_trunk_length = 400;
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min_trunk_length = 2;
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width = 1.5;
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k1 = 1.5;
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k2 = 1.0;
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// Style: TREES, INVERTED, MIRROR
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module forest(trunk_angle, max_trunk_length, min_trunk_length, style = "TREES", k1 = 1.5, k2 = 1.0, width = 1) {
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k = 1.0 / (k1 + 2 * k2 + 2 * (k1 + k2) * cos(trunk_angle));
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function forward(t, leng) = turtle2d("forward", t, leng);
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function turn(t, ang) = turtle2d("turn", t, ang);
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function pt(t) = turtle2d("pt", t);
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module trunk(t, length) {
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if (length > min_trunk_length) {
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// baseline
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if(style != "INVERTED") {
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line2d(t[0], pt(forward(t, length)), width);
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} else {
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inverted_trunk(t, length);
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}
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if(style == "MIRROR") {
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mirror([0, 1, 0]) inverted_trunk(t, length);
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}
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trunk(t, k * k1 * length);
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// left side of "k * k1 * length" trunks
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t1 = turn(
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forward(t, k * k1 * length),
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trunk_angle
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);
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trunk(t1, k * k1 * length);
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// right side of "k * k1 * length" trunks
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t2 = turn(
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forward(t1, k * k1 * length),
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-2 * trunk_angle
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);
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trunk(t2, k * k1 * length);
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// "k * length" trunks
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t3 = turn(
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forward(t2, k * k1 * length),
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trunk_angle
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);
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trunk(t3, k * length);
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// left side of "k * k2 * length" trunks
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t4 = turn(
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forward(t3, k * length), trunk_angle
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);
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trunk(t4, k * k2 * length);
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// right side of "k * k2 * length" trunks
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t5 = turn(
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forward(t4, k * k2 * length), -2 * trunk_angle
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);
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trunk(t5, k * k2 * length);
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// "k * k2 * length" trunks
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trunk(
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turn(
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forward(t5, k * k2 * length),
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trunk_angle
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),
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k * k2 * length
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);
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}
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}
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module inverted_trunk(t, length) {
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if(k * k1 * length > min_trunk_length) {
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t1 = forward(t, k * k1 * length);
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t2 = forward(turn(t1, trunk_angle), k * k1 * length);
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t3 = forward(turn(t2, -2 * trunk_angle), k * k1 * length);
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offset(r = width * 0.25) polygon([t1[0], t2[0], t3[0]]);
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if(k * length > min_trunk_length && k * k2 * length > min_trunk_length) {
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t4 = forward(turn(t3, trunk_angle), k * length);
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t5 = forward(turn(t4, trunk_angle), k * k2 * length);
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t6 = forward(turn(t5, -2 * trunk_angle), k * k2 * length);
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offset(r = width * 0.25) polygon([t4[0], t5[0], t6[0]]);
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}
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}
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}
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trunk(turtle2d("create", 0, 0, 0), max_trunk_length);
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if(style == "INVERTED") {
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line2d([0, 0], [max_trunk_length, 0], width);
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}
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}
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forest(trunk_angle, max_trunk_length, min_trunk_length, style, k1, k2, width);
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