/**
         * 中心位置と辺長から、オフセット情報を作成して設定する。
         * @param i_width
         * FF16で渡すこと!
         * @param i_center
         */
        public void setSquare(long i_width, NyARFixedFloat16Point2d i_center)
        {
            long w_2 = i_width >> 1;

            NyARFixedFloat16Point3d vertex3d_ptr;
            vertex3d_ptr = this.vertex[0];
            vertex3d_ptr.x = -w_2;
            vertex3d_ptr.y = w_2;
            vertex3d_ptr.z = 0;
            vertex3d_ptr = this.vertex[1];
            vertex3d_ptr.x = w_2;
            vertex3d_ptr.y = w_2;
            vertex3d_ptr.z = 0;
            vertex3d_ptr = this.vertex[2];
            vertex3d_ptr.x = w_2;
            vertex3d_ptr.y = -w_2;
            vertex3d_ptr.z = 0;
            vertex3d_ptr = this.vertex[3];
            vertex3d_ptr.x = -w_2;
            vertex3d_ptr.y = -w_2;
            vertex3d_ptr.z = 0;

            this.point.x = -i_center.x;
            this.point.y = -i_center.y;
            this.point.z = 0;
            return;
        }
 public new static NyARFixedFloat16Point2d[] createArray(int i_number)
 {
     NyARFixedFloat16Point2d[] ret = new NyARFixedFloat16Point2d[i_number];
     for (int i = 0; i < i_number; i++)
     {
         ret[i] = new NyARFixedFloat16Point2d();
     }
     return ret;
 }
Example #3
0
 public new static NyARFixedFloat16Point2d[] createArray(int i_number)
 {
     NyARFixedFloat16Point2d[] ret = new NyARFixedFloat16Point2d[i_number];
     for (int i = 0; i < i_number; i++)
     {
         ret[i] = new NyARFixedFloat16Point2d();
     }
     return(ret);
 }
 public void ideal2Observ(NyARFixedFloat16Point2d i_in, NyARFixedFloat16Point2d o_out)
 {
     double f0 = this._factor[0];
     double f1 = this._factor[1];
     double x = (((double)i_in.x / NyMath.FIXEDFLOAT16_1) - f0) * this._factor[3];
     double y = (((double)i_in.y / NyMath.FIXEDFLOAT16_1) - f1) * this._factor[3];
     if (x == 0.0 && y == 0.0)
     {
         o_out.x = (long)(f0 * NyMath.FIXEDFLOAT16_1);
         o_out.y = (long)(f1 * NyMath.FIXEDFLOAT16_1);
     }
     else
     {
         double d = 1.0 - this._factor[2] / 100000000.0 * (x * x + y * y);
         o_out.x = (long)((x * d + f0) * NyMath.FIXEDFLOAT16_1);
         o_out.y = (long)((y * d + f1) * NyMath.FIXEDFLOAT16_1);
     }
     return;
 }
        public void ideal2ObservBatch(NyARDoublePoint2d[] i_in, NyARFixedFloat16Point2d[] o_out, int i_size)
	{
		double x, y;
		double d0 = this._factor[0];
		double d1 = this._factor[1];
		double d3 = this._factor[3];
		double d2_w = this._factor[2] / 100000000.0;
		for (int i = 0; i < i_size; i++) {
			x = (i_in[i].x - d0) * d3;
			y = (i_in[i].y - d1) * d3;
			if (x == 0.0 && y == 0.0) {
				o_out[i].x = (long)(d0*NyMath.FIXEDFLOAT16_1);
				o_out[i].y = (long)(d1*NyMath.FIXEDFLOAT16_1);
			} else {
				double d = 1.0 - d2_w * (x * x + y * y);
				o_out[i].x = (long)((x * d + d0)*NyMath.FIXEDFLOAT16_1);
				o_out[i].y = (long)((y * d + d1)*NyMath.FIXEDFLOAT16_1);
			}
		}
		return;
	}