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📄 multi8x8.vwf

📁 用VHDL语言仿真乘法器设计。能够实现一般乘法运算。
💻 VWF
📖 第 1 页 / 共 2 页
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		}
		LEVEL 0 FOR 81920.0;
		LEVEL 1 FOR 54240.0;
	}
}

TRANSITION_LIST("dout[12]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 3;
			LEVEL 0 FOR 40960.0;
			LEVEL 1 FOR 40960.0;
		}
		LEVEL 0 FOR 40960.0;
		LEVEL 1 FOR 13280.0;
	}
}

TRANSITION_LIST("dout[11]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 7;
			LEVEL 0 FOR 20480.0;
			LEVEL 1 FOR 20480.0;
		}
		LEVEL 0 FOR 13280.0;
	}
}

TRANSITION_LIST("dout[10]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 14;
			LEVEL 0 FOR 10240.0;
			LEVEL 1 FOR 10240.0;
		}
		LEVEL 0 FOR 10240.0;
		LEVEL 1 FOR 3040.0;
	}
}

TRANSITION_LIST("dout[9]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 29;
			LEVEL 0 FOR 5120.0;
			LEVEL 1 FOR 5120.0;
		}
		LEVEL 0 FOR 3040.0;
	}
}

TRANSITION_LIST("dout[8]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 58;
			LEVEL 0 FOR 2560.0;
			LEVEL 1 FOR 2560.0;
		}
		LEVEL 0 FOR 2560.0;
		LEVEL 1 FOR 480.0;
	}
}

TRANSITION_LIST("dout[7]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 117;
			LEVEL 0 FOR 1280.0;
			LEVEL 1 FOR 1280.0;
		}
		LEVEL 0 FOR 480.0;
	}
}

TRANSITION_LIST("dout[6]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 234;
			LEVEL 0 FOR 640.0;
			LEVEL 1 FOR 640.0;
		}
		LEVEL 0 FOR 480.0;
	}
}

TRANSITION_LIST("dout[5]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 468;
			LEVEL 0 FOR 320.0;
			LEVEL 1 FOR 320.0;
		}
		LEVEL 0 FOR 320.0;
		LEVEL 1 FOR 160.0;
	}
}

TRANSITION_LIST("dout[4]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 937;
			LEVEL 0 FOR 160.0;
			LEVEL 1 FOR 160.0;
		}
		LEVEL 0 FOR 160.0;
	}
}

TRANSITION_LIST("dout[3]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1875;
			LEVEL 0 FOR 80.0;
			LEVEL 1 FOR 80.0;
		}
	}
}

TRANSITION_LIST("dout[2]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 3750;
			LEVEL 0 FOR 40.0;
			LEVEL 1 FOR 40.0;
		}
	}
}

TRANSITION_LIST("dout[1]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 7500;
			LEVEL 0 FOR 20.0;
			LEVEL 1 FOR 20.0;
		}
	}
}

TRANSITION_LIST("dout[0]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 15000;
			LEVEL 0 FOR 10.0;
			LEVEL 1 FOR 10.0;
		}
	}
}

TRANSITION_LIST("start")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 4;
			LEVEL 0 FOR 1000.0;
		}
		LEVEL 0 FOR 435.0;
		LEVEL 1 FOR 19965.0;
		LEVEL 0 FOR 600.0;
		LEVEL 0 FOR 1000.0;
		NODE
		{
			REPEAT = 274;
			LEVEL 0 FOR 1000.0;
		}
	}
}

DISPLAY_LINE
{
	CHANNEL = "clk";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 0;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "start";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 1;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "a";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Unsigned;
	TREE_INDEX = 2;
	TREE_LEVEL = 0;
	CHILDREN = 3, 4, 5, 6, 7, 8, 9, 10;
}

DISPLAY_LINE
{
	CHANNEL = "a[7]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 3;
	TREE_LEVEL = 1;
	PARENT = 2;
}

DISPLAY_LINE
{
	CHANNEL = "a[6]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 4;
	TREE_LEVEL = 1;
	PARENT = 2;
}

DISPLAY_LINE
{
	CHANNEL = "a[5]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 5;
	TREE_LEVEL = 1;
	PARENT = 2;
}

DISPLAY_LINE
{
	CHANNEL = "a[4]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 6;
	TREE_LEVEL = 1;
	PARENT = 2;
}

DISPLAY_LINE
{
	CHANNEL = "a[3]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 7;
	TREE_LEVEL = 1;
	PARENT = 2;
}

DISPLAY_LINE
{
	CHANNEL = "a[2]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 8;
	TREE_LEVEL = 1;
	PARENT = 2;
}

DISPLAY_LINE
{
	CHANNEL = "a[1]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 9;
	TREE_LEVEL = 1;
	PARENT = 2;
}

DISPLAY_LINE
{
	CHANNEL = "a[0]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 10;
	TREE_LEVEL = 1;
	PARENT = 2;
}

DISPLAY_LINE
{
	CHANNEL = "b";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Unsigned;
	TREE_INDEX = 11;
	TREE_LEVEL = 0;
	CHILDREN = 12, 13, 14, 15, 16, 17, 18, 19;
}

DISPLAY_LINE
{
	CHANNEL = "b[7]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 12;
	TREE_LEVEL = 1;
	PARENT = 11;
}

DISPLAY_LINE
{
	CHANNEL = "b[6]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 13;
	TREE_LEVEL = 1;
	PARENT = 11;
}

DISPLAY_LINE
{
	CHANNEL = "b[5]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 14;
	TREE_LEVEL = 1;
	PARENT = 11;
}

DISPLAY_LINE
{
	CHANNEL = "b[4]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 15;
	TREE_LEVEL = 1;
	PARENT = 11;
}

DISPLAY_LINE
{
	CHANNEL = "b[3]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 16;
	TREE_LEVEL = 1;
	PARENT = 11;
}

DISPLAY_LINE
{
	CHANNEL = "b[2]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 17;
	TREE_LEVEL = 1;
	PARENT = 11;
}

DISPLAY_LINE
{
	CHANNEL = "b[1]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 18;
	TREE_LEVEL = 1;
	PARENT = 11;
}

DISPLAY_LINE
{
	CHANNEL = "b[0]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 19;
	TREE_LEVEL = 1;
	PARENT = 11;
}

DISPLAY_LINE
{
	CHANNEL = "arictl";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 20;
	TREE_LEVEL = 0;
}

DISPLAY_LINE
{
	CHANNEL = "dout";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Unsigned;
	TREE_INDEX = 21;
	TREE_LEVEL = 0;
	CHILDREN = 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37;
}

DISPLAY_LINE
{
	CHANNEL = "dout[15]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 22;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[14]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 23;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[13]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 24;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[12]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 25;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[11]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 26;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[10]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 27;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[9]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 28;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[8]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 29;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[7]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 30;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[6]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 31;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[5]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 32;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[4]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 33;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[3]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 34;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[2]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 35;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[1]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 36;
	TREE_LEVEL = 1;
	PARENT = 21;
}

DISPLAY_LINE
{
	CHANNEL = "dout[0]";
	EXPAND_STATUS = COLLAPSED;
	RADIX = Binary;
	TREE_INDEX = 37;
	TREE_LEVEL = 1;
	PARENT = 21;
}

TIME_BAR
{
	TIME = 11975;
	MASTER = TRUE;
}
;

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