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📄 taxi_top.sim_ori.vwf

📁 基于Quartus II FPGA/CPLD数字系统设计实例(VHDL源代码文件)
💻 VWF
📖 第 1 页 / 共 5 页
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	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|comb2";
}

SIGNAL("decoder:inst1|comb2[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|comb2";
}

SIGNAL("decoder:inst1|d_hun")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 4;
	LSB_INDEX = 0;
	DIRECTION = BURIED;
	PARENT = "";
}

SIGNAL("decoder:inst1|d_hun[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_hun";
}

SIGNAL("decoder:inst1|d_hun[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_hun";
}

SIGNAL("decoder:inst1|d_hun[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_hun";
}

SIGNAL("decoder:inst1|d_hun[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_hun";
}

SIGNAL("decoder:inst1|d_one")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 4;
	LSB_INDEX = 0;
	DIRECTION = BURIED;
	PARENT = "";
}

SIGNAL("decoder:inst1|d_one[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_one";
}

SIGNAL("decoder:inst1|d_one[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_one";
}

SIGNAL("decoder:inst1|d_one[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_one";
}

SIGNAL("decoder:inst1|d_one[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_one";
}

SIGNAL("decoder:inst1|d_tho")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 4;
	LSB_INDEX = 0;
	DIRECTION = BURIED;
	PARENT = "";
}

SIGNAL("decoder:inst1|d_tho[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_tho";
}

SIGNAL("decoder:inst1|d_tho[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_tho";
}

SIGNAL("decoder:inst1|d_tho[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_tho";
}

SIGNAL("decoder:inst1|d_tho[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_tho";
}

SIGNAL("decoder:inst1|m_hun")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 4;
	LSB_INDEX = 0;
	DIRECTION = BURIED;
	PARENT = "";
}

SIGNAL("decoder:inst1|m_hun[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_hun";
}

SIGNAL("decoder:inst1|m_hun[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_hun";
}

SIGNAL("decoder:inst1|m_hun[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_hun";
}

SIGNAL("decoder:inst1|m_hun[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_hun";
}

SIGNAL("decoder:inst1|m_one")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 4;
	LSB_INDEX = 0;
	DIRECTION = BURIED;
	PARENT = "";
}

SIGNAL("decoder:inst1|m_one[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_one";
}

SIGNAL("decoder:inst1|m_one[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_one";
}

SIGNAL("decoder:inst1|m_one[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_one";
}

SIGNAL("decoder:inst1|m_one[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_one";
}

SIGNAL("decoder:inst1|m_tho")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 4;
	LSB_INDEX = 0;
	DIRECTION = BURIED;
	PARENT = "";
}

SIGNAL("decoder:inst1|m_tho[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_tho";
}

SIGNAL("decoder:inst1|m_tho[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_tho";
}

SIGNAL("decoder:inst1|m_tho[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_tho";
}

SIGNAL("decoder:inst1|m_tho[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_tho";
}

SIGNAL("decoder:inst1|m_ten")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 4;
	LSB_INDEX = 0;
	DIRECTION = BURIED;
	PARENT = "";
}

SIGNAL("decoder:inst1|m_ten[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_ten";
}

SIGNAL("decoder:inst1|m_ten[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_ten";
}

SIGNAL("decoder:inst1|m_ten[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_ten";
}

SIGNAL("decoder:inst1|m_ten[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|m_ten";
}

SIGNAL("decoder:inst1|d_ten")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 4;
	LSB_INDEX = 0;
	DIRECTION = BURIED;
	PARENT = "";
}

SIGNAL("decoder:inst1|d_ten[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_ten";
}

SIGNAL("decoder:inst1|d_ten[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_ten";
}

SIGNAL("decoder:inst1|d_ten[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_ten";
}

SIGNAL("decoder:inst1|d_ten[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = BURIED;
	PARENT = "decoder:inst1|d_ten";
}

TRANSITION_LIST("clk")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 100;
			LEVEL 0 FOR 50.0;
			LEVEL 1 FOR 50.0;
		}
	}
}

TRANSITION_LIST("clk20mhz")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1000;
			LEVEL 0 FOR 5.0;
			LEVEL 1 FOR 5.0;
		}
	}
}

TRANSITION_LIST("dp")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 25.0;
		NODE
		{
			REPEAT = 124;
			LEVEL 1 FOR 20.0;
			LEVEL 0 FOR 60.0;
		}
		LEVEL 1 FOR 20.0;
		LEVEL 0 FOR 35.0;
	}
}

TRANSITION_LIST("pause")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 10000.0;
	}
}

TRANSITION_LIST("scan[7]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 125.0;
		NODE
		{
			REPEAT = 61;
			LEVEL 1 FOR 20.0;
			LEVEL 0 FOR 140.0;
		}
		LEVEL 1 FOR 20.0;
		LEVEL 0 FOR 95.0;
	}
}

TRANSITION_LIST("scan[6]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 105.0;
		NODE
		{
			REPEAT = 61;
			LEVEL 1 FOR 20.0;
			LEVEL 0 FOR 140.0;
		}
		LEVEL 1 FOR 20.0;
		LEVEL 0 FOR 115.0;
	}
}

TRANSITION_LIST("scan[5]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 85.0;
		NODE
		{
			REPEAT = 61;
			LEVEL 1 FOR 20.0;
			LEVEL 0 FOR 140.0;
		}
		LEVEL 1 FOR 20.0;
		LEVEL 0 FOR 135.0;
	}
}

TRANSITION_LIST("scan[4]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 65.0;
		NODE
		{
			REPEAT = 62;
			LEVEL 1 FOR 20.0;
			LEVEL 0 FOR 140.0;
		}
		LEVEL 1 FOR 15.0;
	}
}

TRANSITION_LIST("scan[3]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 45.0;
		NODE
		{
			REPEAT = 62;
			LEVEL 1 FOR 20.0;
			LEVEL 0 FOR 140.0;
		}
		LEVEL 1 FOR 20.0;
		LEVEL 0 FOR 15.0;
	}
}

TRANSITION_LIST("scan[2]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 25.0;
		NODE
		{
			REPEAT = 62;
			LEVEL 1 FOR 20.0;
			LEVEL 0 FOR 140.0;
		}
		LEVEL 1 FOR 20.0;
		LEVEL 0 FOR 35.0;
	}
}

TRANSITION_LIST("scan[1]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 5.0;
		NODE
		{
			REPEAT = 62;
			LEVEL 1 FOR 20.0;
			LEVEL 0 FOR 140.0;
		}
		LEVEL 1 FOR 20.0;
		LEVEL 0 FOR 55.0;
	}
}

TRANSITION_LIST("scan[0]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 1 FOR 5.0;
		NODE
		{
			REPEAT = 62;
			LEVEL 0 FOR 140.0;
			LEVEL 1 FOR 20.0;
		}
		LEVEL 0 FOR 75.0;
	}
}

TRANSITION_LIST("seg7[6]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 1 FOR 225.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 300.0;
		LEVEL 0 FOR 20.0;
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		LEVEL 0 FOR 40.0;
		LEVEL 1 FOR 140.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 120.0;
		LEVEL 0 FOR 40.0;
		NODE
		{
			REPEAT = 3;
			LEVEL 1 FOR 140.0;
			LEVEL 0 FOR 20.0;
		}
		LEVEL 1 FOR 440.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 1600.0;
		NODE
		{
			REPEAT = 2;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 120.0;
			LEVEL 0 FOR 40.0;
			LEVEL 1 FOR 140.0;
		}
		NODE
		{
			REPEAT = 2;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 140.0;
		}
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 120.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 300.0;
		LEVEL 0 FOR 20.0;
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		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 1740.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 300.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 620.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 300.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 475.0;
	}
}

TRANSITION_LIST("seg7[5]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 1 FOR 705.0;
		NODE
		{
			REPEAT = 3;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 940.0;
		}
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 140.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 940.0;
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		LEVEL 1 FOR 480.0;
		NODE
		{
			REPEAT = 2;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 140.0;
		}
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 120.0;
		LEVEL 0 FOR 40.0;
		NODE
		{
			REPEAT = 2;
			LEVEL 1 FOR 140.0;
			LEVEL 0 FOR 20.0;
		}
		NODE
		{
			REPEAT = 3;
			LEVEL 1 FOR 80.0;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 40.0;
			LEVEL 0 FOR 20.0;
		}
		LEVEL 1 FOR 80.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 20.0;
		LEVEL 0 FOR 40.0;
		NODE
		{
			REPEAT = 2;
			LEVEL 1 FOR 80.0;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 40.0;
			LEVEL 0 FOR 20.0;
		}
		LEVEL 1 FOR 80.0;
		NODE
		{
			REPEAT = 3;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 140.0;
		}
		NODE
		{
			REPEAT = 2;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 20.0;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 100.0;
		}
		NODE
		{
			REPEAT = 2;
			NODE
			{
				REPEAT = 5;
				LEVEL 0 FOR 20.0;
				LEVEL 1 FOR 140.0;
			}
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 20.0;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 100.0;
		}
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 140.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 35.0;
	}
}

TRANSITION_LIST("seg7[4]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 1 FOR 1345.0;
		LEVEL 0 FOR 20.0;
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		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 120.0;
		LEVEL 0 FOR 40.0;
		NODE
		{
			REPEAT = 4;
			LEVEL 1 FOR 140.0;
			LEVEL 0 FOR 20.0;
		}
		LEVEL 1 FOR 280.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 2060.0;
		NODE
		{
			REPEAT = 2;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 940.0;
		}
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 2060.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 635.0;
	}
}

TRANSITION_LIST("seg7[3]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 1 FOR 225.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 300.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 620.0;
		NODE
		{
			REPEAT = 2;
			LEVEL 0 FOR 40.0;
			LEVEL 1 FOR 140.0;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 120.0;
		}
		LEVEL 0 FOR 40.0;
		LEVEL 1 FOR 140.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 440.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 300.0;
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 1280.0;
		NODE
		{
			REPEAT = 2;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 120.0;
			LEVEL 0 FOR 40.0;
			LEVEL 1 FOR 140.0;
		}
		NODE
		{
			REPEAT = 2;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 140.0;
		}
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 120.0;
		NODE
		{
			REPEAT = 2;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 300.0;
		}
		LEVEL 0 FOR 20.0;
		LEVEL 1 FOR 620.0;
		LEVEL 0 FOR 20.0;

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