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256 lines
6.1 KiB
256 lines
6.1 KiB
function point_right_of_line(a, b, p) { |
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// a bit of cross-product tomfoolery (we check sign of z of the crossproduct) |
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return ((b.x - a.x) * (a.y - p.y) - (a.y - b.y) * (p.x - a.x)) <= 0; |
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} |
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function rdp_find_max(points, start, end) { |
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const EPS = 0.5; |
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let result = -1; |
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let max_dist = 0; |
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const a = points[start]; |
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const b = points[end]; |
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const dx = b.x - a.x; |
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const dy = b.y - a.y; |
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const dist_ab = Math.sqrt(dx * dx + dy * dy); |
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const sin_theta = dy / dist_ab; |
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const cos_theta = dx / dist_ab; |
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for (let i = start; i < end; ++i) { |
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const p = points[i]; |
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const ox = p.x - a.x; |
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const oy = p.y - a.y; |
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const rx = cos_theta * ox + sin_theta * oy; |
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const ry = -sin_theta * ox + cos_theta * oy; |
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const x = rx + a.x; |
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const y = ry + a.y; |
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const dist = Math.abs(y - a.y); |
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if (dist > EPS && dist > max_dist) { |
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result = i; |
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max_dist = dist; |
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} |
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} |
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return result; |
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} |
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function process_rdp_r(points, start, end) { |
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let result = []; |
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const max = rdp_find_max(points, start, end); |
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if (max !== -1) { |
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const before = process_rdp_r(points, start, max); |
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const after = process_rdp_r(points, max, end); |
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result = [...before, points[max], ...after]; |
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} |
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return result; |
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} |
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function process_rdp(points) { |
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const result = process_rdp_r(points, 0, points.length - 1); |
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result.unshift(points[0]); |
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result.push(points[points.length - 1]); |
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return result; |
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} |
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function process_ewmv(points, round = false) { |
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const result = []; |
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const alpha = 0.4; |
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result.push(points[0]); |
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for (let i = 1; i < points.length; ++i) { |
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const p = points[i]; |
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const x = Math.round(alpha * p.x + (1 - alpha) * result[result.length - 1].x); |
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const y = Math.round(alpha * p.y + (1 - alpha) * result[result.length - 1].y); |
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result.push({'x': x, 'y': y}); |
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} |
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return result; |
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} |
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function process_stroke(points) { |
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// const result0 = process_ewmv(points); |
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const result1 = process_rdp(points, true); |
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return result1; |
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} |
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function stroke_stats(points, width) { |
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if (points.length === 0) { |
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const bbox = { |
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'xmin': 0, |
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'ymin': 0, |
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'xmax': 0, |
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'ymax': 0 |
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}; |
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return { |
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'bbox': bbox, |
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'length': 0, |
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}; |
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} |
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let length = 0; |
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let xmin = points[0].x, ymin = points[0].y; |
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let xmax = xmin, ymax = ymin; |
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for (let i = 0; i < points.length; ++i) { |
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const point = points[i]; |
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if (point.x < xmin) xmin = point.x; |
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if (point.y < ymin) ymin = point.y; |
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if (point.x > xmax) xmax = point.x; |
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if (point.y > ymax) ymax = point.y; |
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if (i > 0) { |
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const last = points[i - 1]; |
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const dx = point.x - last.x; |
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const dy = point.y - last.y; |
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length += Math.sqrt(dx * dx + dy * dy); |
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} |
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} |
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xmin -= width; |
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ymin -= width; |
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xmax += width * 2; |
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ymax += width * 2; |
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const bbox = { |
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'xmin': Math.floor(xmin), |
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'ymin': Math.floor(ymin), |
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'xmax': Math.ceil(xmax), |
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'ymax': Math.ceil(ymax) |
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}; |
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return { |
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'bbox': bbox, |
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'length': length, |
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}; |
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} |
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function rectangles_intersect(a, b) { |
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const result = ( |
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a.xmin <= b.xmax |
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&& a.xmax >= b.xmin |
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&& a.ymin <= b.ymax |
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&& a.ymax >= b.ymin |
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); |
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return result; |
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} |
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function stroke_intersects_region(points, bbox) { |
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if (points.length === 0) { |
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return false; |
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} |
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const stats = stroke_stats(points, storage.cursor.width); |
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return rectangles_intersect(stats.bbox, bbox); |
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} |
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function color_to_u32(color_str) { |
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const r = parseInt(color_str.substring(1, 3), 16); |
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const g = parseInt(color_str.substring(3, 5), 16); |
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const b = parseInt(color_str.substring(5, 7), 16); |
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return (r << 16) | (g << 8) | b; |
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} |
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function color_from_u32(color_u32) { |
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const r = (color_u32 >> 16) & 0xFF; |
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const g = (color_u32 >> 8) & 0xFF; |
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const b = color_u32 & 0xFF; |
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let r_str = r.toString(16); |
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let g_str = g.toString(16); |
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let b_str = b.toString(16); |
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if (r <= 0xF) r_str = '0' + r_str; |
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if (g <= 0xF) g_str = '0' + g_str; |
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if (b <= 0xF) b_str = '0' + b_str; |
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return '#' + r_str + g_str + b_str; |
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} |
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function ccw(A, B, C) { |
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return (C.y - A.y) * (B.x - A.x) > (B.y - A.y) * (C.x - A.x); |
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} |
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// https://stackoverflow.com/a/9997374/11420590 |
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function segments_intersect(A, B, C, D) { |
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return ccw(A, C, D) != ccw(B, C, D) && ccw(A, B, C) !== ccw(A, B, D); |
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} |
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function strokes_intersect_line(x1, y1, x2, y2) { |
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const result = []; |
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for (const event of storage.events) { |
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if (event.type === EVENT.STROKE && !event.deleted) { |
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if (event.points.length < 2) { |
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continue; |
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} |
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for (let i = 0; i < event.points.length - 1; ++i) { |
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const sx1 = event.points[i].x; |
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const sy1 = event.points[i].y; |
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const sx2 = event.points[i + 1].x; |
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const sy2 = event.points[i + 1].y; |
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const A = {'x': x1, 'y': y1}; |
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const B = {'x': x2, 'y': y2}; |
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const C = {'x': sx1, 'y': sy1}; |
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const D = {'x': sx2, 'y': sy2}; |
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if (segments_intersect(A, B, C, D)) { |
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result.push(event.stroke_id); |
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break; |
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} |
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} |
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} |
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} |
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return result; |
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} |
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function dist_v2(a, b) { |
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const dx = a.x - b.x; |
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const dy = a.y - b.y; |
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return Math.sqrt(dx * dx + dy * dy); |
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} |
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function perpendicular(ax, ay, bx, by, width) { |
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// Place points at (stroke_width / 2) distance from the line |
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const dirx = bx - ax; |
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const diry = by - ay; |
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let pdirx = diry; |
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let pdiry = -dirx; |
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const pdir_norm = Math.sqrt(pdirx * pdirx + pdiry * pdiry); |
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pdirx /= pdir_norm; |
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pdiry /= pdir_norm; |
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return { |
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'p1': { |
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'x': ax + pdirx * width / 2, |
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'y': ay + pdiry * width / 2, |
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}, |
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'p2': { |
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'x': ax - pdirx * width / 2, |
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'y': ay - pdiry * width / 2, |
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} |
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}; |
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} |