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@ -1,5 +1,6 @@ |
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package sig; |
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import java.awt.Color; |
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import java.util.Arrays; |
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public class Triangle { |
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Vector A,B,C; |
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@ -20,7 +21,7 @@ public class Triangle { |
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} |
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@Override |
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public String toString() { |
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return "Triangle [A=" + A + ", B=" + B + ", C=" + C + "]"; |
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return "Triangle [A=" + A + ", B=" + B + ", C=" + C + ", col=" + col + "]"; |
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} |
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public Color getColor() { |
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return col; |
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@ -30,14 +31,13 @@ public class Triangle { |
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} |
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static float dist(Vector plane_p,Vector plane_n,Vector p) { |
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Vector n = Vector.normalize(p); |
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return plane_n.x*p.x+plane_n.y*p.y+plane_n.z*p.z-Vector.dotProduct(plane_n,plane_p); |
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} |
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public static int ClipAgainstPlane(Vector plane_p,Vector plane_n,Triangle in,Triangle[] out_tri) { |
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plane_n = Vector.normalize(plane_n); |
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Vector[] inside_points = new Vector[3]; |
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Vector[] outside_points = new Vector[3]; |
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Vector[] inside_points = new Vector[]{new Vector(),new Vector(),new Vector()}; |
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Vector[] outside_points = new Vector[]{new Vector(),new Vector(),new Vector()}; |
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int insidePointCount=0,outsidePointCount=0; |
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float d0=dist(plane_p,plane_n,in.A); |
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@ -63,15 +63,20 @@ public class Triangle { |
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if (insidePointCount==0) { |
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return 0; |
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} else |
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if (insidePointCount==3) { |
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out_tri[0] = in; |
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return 1; |
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} else |
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if (insidePointCount==1&&outsidePointCount==2) { |
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out_tri[0].col = in.col; |
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out_tri[0].col = Color.BLUE; |
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out_tri[0].A = inside_points[0]; |
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out_tri[0].B = Vector.IntersectPlane(plane_p, plane_n, inside_points[0], outside_points[0]); |
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out_tri[0].C = Vector.IntersectPlane(plane_p, plane_n, inside_points[0], outside_points[1]); |
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return 1; |
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} else |
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if (insidePointCount==2&&outsidePointCount==1) { |
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out_tri[0].col=out_tri[1].col=in.col; |
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out_tri[0].col=Color.RED; |
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out_tri[1].col=Color.GREEN; |
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out_tri[0].A = inside_points[0]; |
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out_tri[0].B = inside_points[1]; |
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out_tri[0].C = Vector.IntersectPlane(plane_p, plane_n, inside_points[0], outside_points[0]); |
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@ -79,10 +84,6 @@ public class Triangle { |
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out_tri[1].B = out_tri[0].C; |
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out_tri[1].C = Vector.IntersectPlane(plane_p, plane_n, inside_points[1], outside_points[0]); |
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return 2; |
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} else |
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if (insidePointCount==3) { |
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out_tri[0] = in; |
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return 1; |
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} |
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return 0; |
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