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📄 复件 test.vwf

📁 FPGA串口界面调试程序,用VHDL语言实现
💻 VWF
📖 第 1 页 / 共 4 页
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SIGNAL("LENGTH1P[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "LENGTH1P";
}

SIGNAL("LENGTH1P[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "LENGTH1P";
}

SIGNAL("LENGTH2P")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 8;
	LSB_INDEX = 0;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("LENGTH2P[7]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "LENGTH2P";
}

SIGNAL("LENGTH2P[6]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "LENGTH2P";
}

SIGNAL("LENGTH2P[5]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "LENGTH2P";
}

SIGNAL("LENGTH2P[4]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "LENGTH2P";
}

SIGNAL("LENGTH2P[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "LENGTH2P";
}

SIGNAL("LENGTH2P[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "LENGTH2P";
}

SIGNAL("LENGTH2P[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "LENGTH2P";
}

SIGNAL("LENGTH2P[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "LENGTH2P";
}

SIGNAL("STATE_1p")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 2;
	LSB_INDEX = 0;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("STATE_1p[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "STATE_1p";
}

SIGNAL("STATE_1p[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "STATE_1p";
}

SIGNAL("WPp")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 4;
	LSB_INDEX = 0;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("WPp[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "WPp";
}

SIGNAL("WPp[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "WPp";
}

SIGNAL("WPp[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "WPp";
}

SIGNAL("WPp[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "WPp";
}

SIGNAL("RPp")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 4;
	LSB_INDEX = 0;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("RPp[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "RPp";
}

SIGNAL("RPp[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "RPp";
}

SIGNAL("RPp[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "RPp";
}

SIGNAL("RPp[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "RPp";
}

SIGNAL("cnt1p")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = BUS;
	WIDTH = 9;
	LSB_INDEX = 0;
	DIRECTION = OUTPUT;
	PARENT = "";
}

SIGNAL("cnt1p[8]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "cnt1p";
}

SIGNAL("cnt1p[7]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "cnt1p";
}

SIGNAL("cnt1p[6]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "cnt1p";
}

SIGNAL("cnt1p[5]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "cnt1p";
}

SIGNAL("cnt1p[4]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "cnt1p";
}

SIGNAL("cnt1p[3]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "cnt1p";
}

SIGNAL("cnt1p[2]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "cnt1p";
}

SIGNAL("cnt1p[1]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "cnt1p";
}

SIGNAL("cnt1p[0]")
{
	VALUE_TYPE = NINE_LEVEL_BIT;
	SIGNAL_TYPE = SINGLE_BIT;
	WIDTH = 1;
	LSB_INDEX = -1;
	DIRECTION = OUTPUT;
	PARENT = "cnt1p";
}

TRANSITION_LIST("clk")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 600000;
			LEVEL 0 FOR 12.5;
			LEVEL 1 FOR 12.5;
		}
	}
}

TRANSITION_LIST("clk_serial")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 7200;
			LEVEL 0 FOR 1041.667;
			LEVEL 1 FOR 1041.666;
		}
		LEVEL 0 FOR 2.4;
	}
}

TRANSITION_LIST("dsp0_addr[3]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 4008000.0;
		LEVEL 1 FOR 8000.0;
		LEVEL 0 FOR 10984000.0;
	}
}

TRANSITION_LIST("dsp0_addr[2]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 4004000.0;
		LEVEL 1 FOR 4000.0;
		NODE
		{
			REPEAT = 1;
			LEVEL 0 FOR 4000.0;
			LEVEL 1 FOR 4000.0;
		}
		LEVEL 0 FOR 10984000.0;
	}
}

TRANSITION_LIST("dsp0_addr[1]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 4002000.0;
		LEVEL 1 FOR 2000.0;
		NODE
		{
			REPEAT = 3;
			LEVEL 0 FOR 2000.0;
			LEVEL 1 FOR 2000.0;
		}
		LEVEL 0 FOR 10984000.0;
	}
}

TRANSITION_LIST("dsp0_addr[0]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 4001000.0;
		LEVEL 1 FOR 1000.0;
		NODE
		{
			REPEAT = 7;
			LEVEL 0 FOR 1000.0;
			LEVEL 1 FOR 1000.0;
		}
		LEVEL 0 FOR 10984000.0;
	}
}

TRANSITION_LIST("dsp0_dmar[3]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL X FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("dsp0_dmar[2]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL X FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("dsp0_dmar[1]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL X FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("dsp0_dmar[0]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL X FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("dsp0_flag[3]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL 0 FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("dsp0_flag[2]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL 0 FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("dsp0_flag[1]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL 0 FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("dsp0_flag[0]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL 0 FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("dsp0_irq[3]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL X FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("dsp0_irq[2]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL X FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("dsp0_irq[1]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL X FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("dsp0_irq[0]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL X FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("dsp0_ok")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL X FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("dsp0_rd")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 1 FOR 4000090.0;
		LEVEL 0 FOR 55.0;
		LEVEL 1 FOR 905.0;
		LEVEL 0 FOR 45.0;
		LEVEL 1 FOR 985.0;
		LEVEL 0 FOR 80.0;
		LEVEL 1 FOR 905.0;
		LEVEL 0 FOR 90.0;
		LEVEL 1 FOR 950.0;
		LEVEL 0 FOR 75.0;
		LEVEL 1 FOR 885.0;
		LEVEL 0 FOR 75.0;
		LEVEL 1 FOR 935.0;
		LEVEL 0 FOR 75.0;
		LEVEL 1 FOR 915.0;
		LEVEL 0 FOR 75.0;
		LEVEL 1 FOR 945.0;
		LEVEL 0 FOR 65.0;
		LEVEL 1 FOR 910.0;
		LEVEL 0 FOR 90.0;
		LEVEL 1 FOR 910.0;
		LEVEL 0 FOR 75.0;
		LEVEL 1 FOR 975.0;
		LEVEL 0 FOR 65.0;
		LEVEL 1 FOR 895.0;
		LEVEL 0 FOR 50.0;
		LEVEL 1 FOR 950.0;
		LEVEL 0 FOR 65.0;
		LEVEL 1 FOR 960.0;
		LEVEL 0 FOR 85.0;
		LEVEL 1 FOR 885.0;
		LEVEL 0 FOR 50.0;
		LEVEL 1 FOR 10984885.0;
	}
}

TRANSITION_LIST("dsp0_wrl")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 1 FOR 5000040.0;
		LEVEL 0 FOR 40.0;
		LEVEL 1 FOR 960.0;
		LEVEL 0 FOR 50.0;
		LEVEL 1 FOR 950.0;
		LEVEL 0 FOR 35.0;
		LEVEL 1 FOR 960.0;
		LEVEL 0 FOR 35.0;
		LEVEL 1 FOR 985.0;
		LEVEL 0 FOR 40.0;
		LEVEL 1 FOR 9995905.0;
	}
}

TRANSITION_LIST("fpga_led0")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL X FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("reset")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 0 FOR 1445.0;
		LEVEL 1 FOR 14998555.0;
	}
}

TRANSITION_LIST("rxd")
{
	NODE
	{
		REPEAT = 1;
		LEVEL 1 FOR 62083.333;
		LEVEL 0 FOR 104166.666;
		LEVEL 1 FOR 52083.333;
		LEVEL 0 FOR 52083.333;
		NODE
		{
			REPEAT = 2;
			LEVEL 1 FOR 52083.333;
			LEVEL 0 FOR 52083.333;
		}
		LEVEL 1 FOR 104166.666;
		LEVEL 0 FOR 52083.333;
		LEVEL 1 FOR 52083.333;
		NODE
		{
			REPEAT = 5;
			LEVEL 0 FOR 52083.333;
			LEVEL 1 FOR 52083.333;
		}
		LEVEL 0 FOR 364583.331;
		LEVEL 1 FOR 52083.333;
		NODE
		{
			REPEAT = 2;
			LEVEL 0 FOR 52083.333;
			LEVEL 1 FOR 52083.333;
		}
		LEVEL 0 FOR 260416.665;
		LEVEL 1 FOR 52083.333;
		LEVEL 0 FOR 104166.666;
		LEVEL 1 FOR 104166.666;
		LEVEL 0 FOR 260416.665;
		LEVEL 1 FOR 12379278.35;
		LEVEL 0 FOR 6555.0;
	}
}

TRANSITION_LIST("status_reset")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL X FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("txd")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL X FOR 15000000.0;
		}
	}
}

TRANSITION_LIST("dsp0_data[12]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL Z FOR 5000000.0;
		}
		LEVEL 0 FOR 1000.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 3000.0;
		LEVEL Z FOR 9995000.0;
	}
}

TRANSITION_LIST("dsp0_data[13]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL Z FOR 5000000.0;
		}
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 4000.0;
		LEVEL Z FOR 9995000.0;
	}
}

TRANSITION_LIST("dsp0_data[14]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL Z FOR 5000000.0;
		}
		LEVEL 0 FOR 1000.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 3000.0;
		LEVEL Z FOR 9995000.0;
	}
}

TRANSITION_LIST("dsp0_data[15]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL Z FOR 5000000.0;
		}
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 4000.0;
		LEVEL Z FOR 9995000.0;
	}
}

TRANSITION_LIST("dsp0_data[11]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL Z FOR 5000000.0;
		}
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 4000.0;
		LEVEL Z FOR 9995000.0;
	}
}

TRANSITION_LIST("dsp0_data[8]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL Z FOR 5000000.0;
		}
		LEVEL 0 FOR 1000.0;
		LEVEL 1 FOR 3000.0;
		LEVEL 0 FOR 1000.0;
		LEVEL Z FOR 9995000.0;
	}
}

TRANSITION_LIST("dsp0_data[9]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL Z FOR 5000000.0;
		}
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 3000.0;
		LEVEL 1 FOR 1000.0;
		LEVEL Z FOR 9995000.0;
	}
}

TRANSITION_LIST("dsp0_data[10]")
{
	NODE
	{
		REPEAT = 1;
		NODE
		{
			REPEAT = 1;
			LEVEL Z FOR 5000000.0;
		}
		LEVEL 0 FOR 1000.0;
		LEVEL 1 FOR 1000.0;
		LEVEL 0 FOR 1000.0;
		LEVEL 1 FOR 2000.0;
		LEVEL Z FOR 9995000.0;
	}
}

TRANSITION_LIST("count2_1p[8]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 15000000.0;
	}
}

TRANSITION_LIST("count2_1p[7]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 15000000.0;
	}
}

TRANSITION_LIST("count2_1p[6]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 15000000.0;
	}
}

TRANSITION_LIST("count2_1p[5]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 15000000.0;
	}
}

TRANSITION_LIST("count2_1p[4]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 15000000.0;
	}
}

TRANSITION_LIST("count2_1p[3]")
{
	NODE
	{
		REPEAT = 1;
		LEVEL X FOR 15000000.0;
	}
}

TRANSITION_LIST("count2_1p[2]")

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