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@@ -83,19 +83,19 @@ module along_with(points, angles, twist = 0, scale = 1.0, method = "AXIS_ANGLE")
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module axis_angle_align_with_pts_angles(i) {
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module axis_angle_align_with_pts_angles(i) {
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translate(points[i])
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translate(points[i])
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rotate(angles[i])
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rotate(angles[i])
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rotate(twist_step_a * i)
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rotate(twist_step_a * i)
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scale([1, 1, 1] + scale_step_vt * i)
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scale([1, 1, 1] + scale_step_vt * i)
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children(0);
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children(0);
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}
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}
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module axis_angle_align_with_pts_init(a, s) {
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module axis_angle_align_with_pts_init(a, s) {
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angleyz = __angy_angz(__to3d(points[0]), __to3d(points[1]));
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angleyz = __angy_angz(__to3d(points[0]), __to3d(points[1]));
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rotate([0, -angleyz[0], angleyz[1]])
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rotate([0, -angleyz[0], angleyz[1]])
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rotate([90, 0, -90])
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rotate([90, 0, -90])
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rotate(a)
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rotate(a)
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scale(s)
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scale(s)
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children(0);
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children(0);
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}
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}
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module axis_angle_align_with_pts_local_rotate(j, init_a, init_s, cumu_rot_matrice) {
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module axis_angle_align_with_pts_local_rotate(j, init_a, init_s, cumu_rot_matrice) {
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@@ -105,8 +105,8 @@ module along_with(points, angles, twist = 0, scale = 1.0, method = "AXIS_ANGLE")
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}
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}
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else {
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else {
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multmatrix(cumu_rot_matrice[j - 1])
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multmatrix(cumu_rot_matrice[j - 1])
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axis_angle_align_with_pts_init(init_a, init_s)
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axis_angle_align_with_pts_init(init_a, init_s)
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children(0);
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children(0);
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}
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}
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}
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}
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@@ -131,11 +131,11 @@ module along_with(points, angles, twist = 0, scale = 1.0, method = "AXIS_ANGLE")
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module euler_angle_align(i, angs) {
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module euler_angle_align(i, angs) {
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translate(points[i])
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translate(points[i])
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rotate(angs[i])
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rotate(angs[i])
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rotate(angles_defined ? [0, 0, 0] : [90, 0, -90])
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rotate(angles_defined ? [0, 0, 0] : [90, 0, -90])
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rotate(twist_step_a * i)
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rotate(twist_step_a * i)
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scale([1, 1, 1] + scale_step_vt * i)
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scale([1, 1, 1] + scale_step_vt * i)
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children(0);
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children(0);
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}
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}
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// <<< end: modules and functions for "EULER-ANGLE"
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// <<< end: modules and functions for "EULER-ANGLE"
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@@ -159,20 +159,20 @@ module along_with(points, angles, twist = 0, scale = 1.0, method = "AXIS_ANGLE")
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]);
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]);
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translate(points[0])
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translate(points[0])
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axis_angle_align_with_pts_local_rotate(0, 0, [1, 1, 1], cumu_rot_matrice)
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axis_angle_align_with_pts_local_rotate(0, 0, [1, 1, 1], cumu_rot_matrice)
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children(0);
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children(0);
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if($children == 1) {
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if($children == 1) {
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for(i = [0:leng_points - 2]) {
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for(i = [0:leng_points - 2]) {
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translate(points[i + 1])
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translate(points[i + 1])
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axis_angle_align_with_pts_local_rotate(i, i * twist_step_a, [1, 1, 1] + scale_step_vt * i, cumu_rot_matrice)
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axis_angle_align_with_pts_local_rotate(i, i * twist_step_a, [1, 1, 1] + scale_step_vt * i, cumu_rot_matrice)
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children(0);
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children(0);
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}
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}
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} else {
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} else {
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for(i = [0:min(leng_points, $children) - 2]) {
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for(i = [0:min(leng_points, $children) - 2]) {
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translate(points[i + 1])
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translate(points[i + 1])
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axis_angle_align_with_pts_local_rotate(i, i * twist_step_a, [1, 1, 1] + scale_step_vt * i, cumu_rot_matrice)
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axis_angle_align_with_pts_local_rotate(i, i * twist_step_a, [1, 1, 1] + scale_step_vt * i, cumu_rot_matrice)
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children(i + 1);
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children(i + 1);
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}
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}
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}
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}
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}
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}
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